| 1 |
< |
/* |
| 1 |
> |
/* |
| 2 |
|
* Copyright (c) 2005 The University of Notre Dame. All Rights Reserved. |
| 3 |
|
* |
| 4 |
|
* The University of Notre Dame grants you ("Licensee") a |
| 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 |
| 9 |
> |
* 1. Redistributions of source code must retain the above copyright |
| 10 |
|
* notice, this list of conditions and the following disclaimer. |
| 11 |
|
* |
| 12 |
< |
* 3. Redistributions in binary form must reproduce the above copyright |
| 12 |
> |
* 2. Redistributions in binary form must reproduce the above copyright |
| 13 |
|
* notice, this list of conditions and the following disclaimer in the |
| 14 |
|
* documentation and/or other materials provided with the |
| 15 |
|
* distribution. |
| 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 |
+ |
* |
| 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 |
|
*/ |
| 41 |
|
|
| 42 |
|
#include <iostream> |
| 48 |
|
#include "utils/MoLocator.hpp" |
| 49 |
|
#include "types/AtomType.hpp" |
| 50 |
|
|
| 51 |
< |
namespace oopse { |
| 51 |
> |
namespace OpenMD { |
| 52 |
|
MoLocator::MoLocator( MoleculeStamp* theStamp, ForceField* theFF){ |
| 53 |
|
|
| 54 |
|
myStamp = theStamp; |
| 58 |
|
} |
| 59 |
|
|
| 60 |
|
void MoLocator::placeMol( const Vector3d& offset, const Vector3d& ort, Molecule* mol){ |
| 61 |
+ |
|
| 62 |
|
Vector3d newCoor; |
| 63 |
|
Vector3d curRefCoor; |
| 64 |
|
RotMat3x3d rotMat = latVec2RotMat(ort); |
| 79 |
|
|
| 80 |
|
newCoor = rotMat * refCoords[i]; |
| 81 |
|
newCoor += offset; |
| 82 |
< |
|
| 83 |
< |
integrableObject->setPos( newCoor); |
| 82 |
> |
|
| 83 |
> |
integrableObject->setPos(newCoor); |
| 84 |
|
integrableObject->setVel(V3Zero); |
| 85 |
|
|
| 86 |
|
if(integrableObject->isDirectional()){ |
| 95 |
|
RigidBodyStamp* rbStamp; |
| 96 |
|
int nAtoms; |
| 97 |
|
int nRigidBodies; |
| 98 |
< |
std::vector<double> mass; |
| 98 |
> |
std::vector<RealType> mass; |
| 99 |
|
Vector3d coor; |
| 100 |
|
Vector3d refMolCom; |
| 101 |
|
int nAtomsInRb; |
| 102 |
< |
double totMassInRb; |
| 103 |
< |
double currAtomMass; |
| 104 |
< |
double molMass; |
| 102 |
> |
RealType totMassInRb; |
| 103 |
> |
RealType currAtomMass; |
| 104 |
> |
RealType molMass; |
| 105 |
|
|
| 106 |
|
nAtoms= myStamp->getNAtoms(); |
| 107 |
|
nRigidBodies = myStamp->getNRigidBodies(); |
| 108 |
|
|
| 109 |
|
for(size_t i=0; i<nAtoms; i++){ |
| 110 |
|
|
| 111 |
< |
currAtomStamp = myStamp->getAtom(i); |
| 111 |
> |
currAtomStamp = myStamp->getAtomStamp(i); |
| 112 |
|
|
| 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 |
< |
myStamp->getID(), |
| 119 |
< |
currAtomStamp->getType() ); |
| 118 |
> |
myStamp->getName().c_str(), |
| 119 |
> |
currAtomStamp->getType().c_str()); |
| 120 |
|
|
| 121 |
|
painCave.isFatal = 1; |
| 122 |
|
simError(); |
| 139 |
|
|
| 140 |
|
for(int i = 0; i < nRigidBodies; i++){ |
| 141 |
|
|
| 142 |
< |
rbStamp = myStamp->getRigidBody(i); |
| 142 |
> |
rbStamp = myStamp->getRigidBodyStamp(i); |
| 143 |
|
nAtomsInRb = rbStamp->getNMembers(); |
| 144 |
|
|
| 145 |
|
coor.x() = 0.0; |
| 149 |
|
|
| 150 |
|
for(int j = 0; j < nAtomsInRb; j++){ |
| 151 |
|
|
| 152 |
< |
currAtomStamp = myStamp->getAtom(rbStamp->getMember(j)); |
| 152 |
> |
currAtomStamp = myStamp->getAtomStamp(rbStamp->getMemberAt(j)); |
| 153 |
|
currAtomMass = getAtomMass(currAtomStamp->getType(), myFF); |
| 154 |
|
totMassInRb += currAtomMass; |
| 155 |
|
|
| 179 |
|
|
| 180 |
|
//move the reference center of mass to (0,0,0) and adjust the reference coordinate |
| 181 |
|
//of the integrabel objects |
| 182 |
< |
for(int i = 0; i < nIntegrableObjects; i++) |
| 183 |
< |
refCoords[i] -= refMolCom; |
| 182 |
> |
for(int i = 0; i < nIntegrableObjects; i++) |
| 183 |
> |
refCoords[i] -= refMolCom; |
| 184 |
|
} |
| 185 |
|
|
| 186 |
< |
double getAtomMass(const std::string& at, ForceField* myFF) { |
| 187 |
< |
double mass; |
| 186 |
> |
RealType getAtomMass(const std::string& at, ForceField* myFF) { |
| 187 |
> |
RealType mass; |
| 188 |
|
AtomType* atomType= myFF->getAtomType(at); |
| 189 |
|
if (atomType != NULL) { |
| 190 |
|
mass = atomType->getMass(); |
| 195 |
|
return mass; |
| 196 |
|
} |
| 197 |
|
|
| 198 |
< |
double getMolMass(MoleculeStamp *molStamp, ForceField *myFF) { |
| 198 |
> |
RealType getMolMass(MoleculeStamp *molStamp, ForceField *myFF) { |
| 199 |
|
int nAtoms; |
| 200 |
< |
double totMass = 0; |
| 200 |
> |
RealType totMass = 0; |
| 201 |
|
nAtoms = molStamp->getNAtoms(); |
| 202 |
|
|
| 203 |
|
for(size_t i = 0; i < nAtoms; i++) { |
| 204 |
< |
AtomStamp *currAtomStamp = molStamp->getAtom(i); |
| 204 |
> |
AtomStamp *currAtomStamp = molStamp->getAtomStamp(i); |
| 205 |
|
totMass += getAtomMass(currAtomStamp->getType(), myFF); |
| 206 |
|
} |
| 207 |
|
return totMass; |
| 208 |
|
} |
| 209 |
|
RotMat3x3d latVec2RotMat(const Vector3d& lv){ |
| 210 |
|
|
| 211 |
< |
double theta =acos(lv[2]); |
| 212 |
< |
double phi = atan2(lv[1], lv[0]); |
| 213 |
< |
double psi = 0; |
| 211 |
> |
RealType theta =acos(lv[2]); |
| 212 |
> |
RealType phi = atan2(lv[1], lv[0]); |
| 213 |
> |
RealType psi = 0; |
| 214 |
|
|
| 215 |
|
return RotMat3x3d(phi, theta, psi); |
| 216 |
|
|