/* -------------------------------------------------------------------------- *
* OpenMM *
* -------------------------------------------------------------------------- *
* This is part of the OpenMM molecular simulation toolkit originating from *
* Simbios, the NIH National Center for Physics-Based Simulation of *
* Biological Structures at Stanford, funded under the NIH Roadmap for *
* Medical Research, grant U54 GM072970. See https://simtk.org. *
* *
* Portions copyright (c) 2009 Stanford University and the Authors. *
* Authors: Peter Eastman, Mark Friedrichs *
* Contributors: *
* *
* This program is free software: you can redistribute it and/or modify *
* it under the terms of the GNU Lesser General Public License as published *
* by the Free Software Foundation, either version 3 of the License, or *
* (at your option) any later version. *
* *
* This program is distributed in the hope that it will be useful, *
* but WITHOUT ANY WARRANTY; without even the implied warranty of *
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
* GNU Lesser General Public License for more details. *
* *
* You should have received a copy of the GNU Lesser General Public License *
* along with this program. If not, see . *
* -------------------------------------------------------------------------- */
#include "../../../tests/AssertionUtilities.h"
#include "BrookPlatform.h"
#include "openmm/Context.h"
#include "openmm/HarmonicBondForce.h"
#include "openmm/System.h"
#include "openmm/LangevinIntegrator.h"
#include
using namespace OpenMM;
using namespace std;
const double TOL = 1e-5;
void testBrookBonds( FILE* log ){
// ---------------------------------------------------------------------------------------
static const std::string methodName = "testBrookBonds";
int PrintOn = 0;
int numberOfParticles = 3;
double mass = 2.0;
// ---------------------------------------------------------------------------------------
PrintOn = log ? PrintOn : 0;
if( PrintOn ){
(void) fprintf( log, "%s\n", methodName.c_str() ); (void) fflush( log );
}
BrookPlatform platform( 32, "cal", log );
System system;
for (int i = 0; i < numberOfParticles; i++)
system.addParticle(1.0);
LangevinIntegrator integrator(0, 0.1, 0.01);
// int numParticles, int numBonds, int numAngles, int numPeriodicTorsions, int numRBTorsions
HarmonicBondForce* forceField = new HarmonicBondForce();
// ( index, atom1, atom2, length, k )
forceField->addBond(0, 1, 1.5, 0.8);
forceField->addBond(1, 2, 1.2, 0.7);
system.addForce(forceField);
Context context(system, integrator, platform);
vector positions(3);
positions[0] = Vec3(0, 2, 0);
positions[1] = Vec3(0, 0, 0);
positions[2] = Vec3(1, 0, 0);
context.setPositions(positions);
//(void) fprintf( log, "testBrookBonds:Calling getState\n");
//(void) fflush( log );
State state = context.getState( State::Forces | State::Energy );
const vector& forces = state.getForces();
if( PrintOn ){
(void) fprintf( log, "Harmonic bond forces\n");
for( int ii = 0; ii < numberOfParticles; ii++ ){
(void) fprintf( log, "%d [%.5e %.5e %.5e]\n", ii, forces[ii][0], forces[ii][1], forces[ii][2] );
}
(void) fflush( log );
}
ASSERT_EQUAL_VEC(Vec3(0, -0.8*0.5, 0), forces[0], TOL);
ASSERT_EQUAL_VEC(Vec3(0.7*0.2, 0, 0), forces[2], TOL);
ASSERT_EQUAL_VEC(Vec3(-forces[0][0]-forces[2][0], -forces[0][1]-forces[2][1], -forces[0][2]-forces[2][2]), forces[1], TOL);
if( PrintOn ){
(void) fprintf( log, "Harmonic bond forces ok -- checking energy\n"); (void) fflush( log );
}
ASSERT_EQUAL_TOL( 0.5*0.8*0.5*0.5 + 0.5*0.7*0.2*0.2, state.getPotentialEnergy(), TOL);
if( PrintOn ){
(void) fprintf( log, "Harmonic bond energy ok\n"); (void) fflush( log );
}
}
int main( ){
// ---------------------------------------------------------------------------------------
static const std::string methodName = "testBrookBonds";
FILE* log = stdout;
// ---------------------------------------------------------------------------------------
(void) fflush( stdout );
(void) fflush( stderr );
try {
testBrookBonds( log );
} catch( const exception& e ){
(void) fprintf( log, "Exception %s %.s\n", methodName.c_str(), e.what() ); (void) fflush( log );
return 1;
}
(void) fprintf( log, "\n%s done\n", methodName.c_str() ); (void) fflush( log );
return 0;
}