TestCudaGBSAOBCForce.cpp 9.6 KB
Newer Older
1
2
3
4
5
6
7
8
/* -------------------------------------------------------------------------- *
 *                                   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.               *
 *                                                                            *
9
 * Portions copyright (c) 2008-2009 Stanford University and the Authors.      *
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
 * Authors: Peter Eastman                                                     *
 * Contributors:                                                              *
 *                                                                            *
 * Permission is hereby granted, free of charge, to any person obtaining a    *
 * copy of this software and associated documentation files (the "Software"), *
 * to deal in the Software without restriction, including without limitation  *
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,   *
 * and/or sell copies of the Software, and to permit persons to whom the      *
 * Software is furnished to do so, subject to the following conditions:       *
 *                                                                            *
 * The above copyright notice and this permission notice shall be included in *
 * all copies or substantial portions of the Software.                        *
 *                                                                            *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR *
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,   *
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL    *
 * THE AUTHORS, CONTRIBUTORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,    *
 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR      *
 * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE  *
 * USE OR OTHER DEALINGS IN THE SOFTWARE.                                     *
 * -------------------------------------------------------------------------- */

/**
33
 * This tests the Cuda implementation of GBSAOBCForce.
34
35
36
 */

#include "../../../tests/AssertionUtilities.h"
37
#include "openmm/OpenMMContext.h"
38
#include "CudaPlatform.h"
39
#include "ReferencePlatform.h"
40
41
42
#include "openmm/GBSAOBCForce.h"
#include "openmm/System.h"
#include "openmm/LangevinIntegrator.h"
43
44
#include "../src/SimTKUtilities/SimTKOpenMMRealType.h"
#include "../src/sfmt/SFMT.h"
45
#include "openmm/NonbondedForce.h"
46
47
48
49
50
51
52
53
#include <iostream>
#include <vector>

using namespace OpenMM;
using namespace std;

const double TOL = 1e-5;

Peter Eastman's avatar
Peter Eastman committed
54
void testSingleParticle() {
55
    CudaPlatform platform;
56
57
    System system;
    system.addParticle(2.0);
58
    LangevinIntegrator integrator(0, 0.1, 0.01);
59
    GBSAOBCForce* gbsa = new GBSAOBCForce();
60
    NonbondedForce* nonbonded = new NonbondedForce();
61
    gbsa->addParticle( 0.5, 0.15, 1);
62
    nonbonded->addParticle(0.5, 1, 0);
63
64
    system.addForce(gbsa);
    system.addForce(nonbonded);
65
66
67
68
69
    OpenMMContext context(system, integrator, platform);
    vector<Vec3> positions(1);
    positions[0] = Vec3(0, 0, 0);
    context.setPositions(positions);
    State state = context.getState(State::Energy);
70
    double bornRadius = 0.15-0.009; // dielectric offset
71
    double eps0 = EPSILON0;
72
    double bornEnergy = (-0.5*0.5/(8*PI_M*eps0))*(1.0/gbsa->getSoluteDielectric()-1.0/gbsa->getSolventDielectric())/bornRadius;
73
74
75
76
77
    double extendedRadius = bornRadius+0.14; // probe radius
    double nonpolarEnergy = CAL2JOULE*PI_M*0.0216*(10*extendedRadius)*(10*extendedRadius)*std::pow(0.15/bornRadius, 6.0); // Where did this formula come from?  Just copied it from CpuImplicitSolvent.cpp
    ASSERT_EQUAL_TOL((bornEnergy+nonpolarEnergy), state.getPotentialEnergy(), 0.01);
}

78
79
void testCutoffAndPeriodic() {
    CudaPlatform cuda;
80
81
82
    System system;
    system.addParticle(1.0);
    system.addParticle(1.0);
83
    LangevinIntegrator integrator(0, 0.1, 0.01);
84
    GBSAOBCForce* gbsa = new GBSAOBCForce();
85
    NonbondedForce* nonbonded = new NonbondedForce();
86
    gbsa->addParticle(-1, 0.15, 1);
87
    nonbonded->addParticle(-1, 1, 0);
88
    gbsa->addParticle(1, 0.15, 1);
89
    nonbonded->addParticle(1, 1, 0);
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
    const double cutoffDistance = 3.0;
    const double boxSize = 10.0;
    nonbonded->setCutoffDistance(cutoffDistance);
    nonbonded->setPeriodicBoxVectors(Vec3(boxSize, 0, 0), Vec3(0, boxSize, 0), Vec3(0, 0, boxSize));
    system.addForce(gbsa);
    system.addForce(nonbonded);
    vector<Vec3> positions(2);
    positions[0] = Vec3(0, 0, 0);
    positions[1] = Vec3(2, 0, 0);

    // Calculate the forces for both cutoff and periodic with two different atom positions.

    nonbonded->setNonbondedMethod(NonbondedForce::CutoffNonPeriodic);
    OpenMMContext context(system, integrator, cuda);
    context.setPositions(positions);
    State state1 = context.getState(State::Forces);
    nonbonded->setNonbondedMethod(NonbondedForce::CutoffPeriodic);
    context.reinitialize();
    context.setPositions(positions);
    State state2 = context.getState(State::Forces);
    positions[1][0]+= boxSize;
    nonbonded->setNonbondedMethod(NonbondedForce::CutoffNonPeriodic);
    context.reinitialize();
    context.setPositions(positions);
    State state3 = context.getState(State::Forces);
    nonbonded->setNonbondedMethod(NonbondedForce::CutoffPeriodic);
    context.reinitialize();
    context.setPositions(positions);
    State state4 = context.getState(State::Forces);

    // All forces should be identical, exception state3 which should be zero.

    ASSERT_EQUAL_VEC(state1.getForces()[0], state2.getForces()[0], 0.01);
    ASSERT_EQUAL_VEC(state1.getForces()[1], state2.getForces()[1], 0.01);
    ASSERT_EQUAL_VEC(state1.getForces()[0], state4.getForces()[0], 0.01);
    ASSERT_EQUAL_VEC(state1.getForces()[1], state4.getForces()[1], 0.01);
    ASSERT_EQUAL_VEC(state3.getForces()[0], Vec3(0, 0, 0), 0.01);
    ASSERT_EQUAL_VEC(state3.getForces()[1], Vec3(0, 0, 0), 0.01);
}

void testForce(int numParticles, NonbondedForce::NonbondedMethod method) {
    CudaPlatform cuda;
    ReferencePlatform reference;
133
    System system;
134
    LangevinIntegrator integrator(0, 0.1, 0.01);
135
    GBSAOBCForce* gbsa = new GBSAOBCForce();
136
    NonbondedForce* nonbonded = new NonbondedForce();
Peter Eastman's avatar
Peter Eastman committed
137
    for (int i = 0; i < numParticles; ++i) {
138
        system.addParticle(1.0);
139
        double charge = i%2 == 0 ? -1 : 1;
140
        gbsa->addParticle(charge, 0.15, 1);
141
        nonbonded->addParticle(charge, 1, 0);
142
    }
143
144
145
146
147
148
149
150
151
152
153
    nonbonded->setNonbondedMethod(method);
    nonbonded->setCutoffDistance(3.0);
    int grid = (int) floor(0.5+pow(numParticles, 1.0/3.0));
    if (method == NonbondedForce::CutoffPeriodic) {
        double boxSize = (grid+1)*2.0;
        nonbonded->setPeriodicBoxVectors(Vec3(boxSize, 0, 0), Vec3(0, boxSize, 0), Vec3(0, 0, boxSize));
    }
    system.addForce(gbsa);
    system.addForce(nonbonded);
    OpenMMContext context(system, integrator, cuda);
    OpenMMContext refContext(system, integrator, reference);
154
    
155
    // Set random (but uniformly distributed) positions for all the particles.
156
    
Peter Eastman's avatar
Peter Eastman committed
157
    vector<Vec3> positions(numParticles);
158
    init_gen_rand(0);
159
160
161
162
    for (int i = 0; i < grid; i++)
        for (int j = 0; j < grid; j++)
            for (int k = 0; k < grid; k++)
                positions[i*grid*grid+j*grid+k] = Vec3(i*2.0, j*2.0, k*2.0);
Peter Eastman's avatar
Peter Eastman committed
163
    for (int i = 0; i < numParticles; ++i)
164
        positions[i] = positions[i] + Vec3(0.5*genrand_real2(), 0.5*genrand_real2(), 0.5*genrand_real2());
165
    context.setPositions(positions);
166
    refContext.setPositions(positions);
167
    State state = context.getState(State::Forces | State::Energy);
168
169
170
171
    State refState = refContext.getState(State::Forces | State::Energy);

    // Make sure the Cuda and Reference platforms agree.

172
    double norm = 0.0;
173
    double diff = 0.0;
Peter Eastman's avatar
Peter Eastman committed
174
    for (int i = 0; i < numParticles; ++i) {
175
176
        Vec3 f = state.getForces()[i];
        norm += f[0]*f[0] + f[1]*f[1] + f[2]*f[2];
177
178
        Vec3 delta = f-refState.getForces()[i];
        diff += delta[0]*delta[0] + delta[1]*delta[1] + delta[2]*delta[2];
179
180
    }
    norm = std::sqrt(norm);
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
    diff = std::sqrt(diff);
    ASSERT_EQUAL_TOL(0.0, diff, 0.001*norm); 

    // Take a small step in the direction of the energy gradient.  (This doesn't work with cutoffs, since the energy
    // changes discontinuously at the cutoff distance.)

    if (method == NonbondedForce::NoCutoff)
    {
        const double delta = 1e-2;
        double step = delta/norm;
        for (int i = 0; i < numParticles; ++i) {
            Vec3 p = positions[i];
            Vec3 f = state.getForces()[i];
            positions[i] = Vec3(p[0]-f[0]*step, p[1]-f[1]*step, p[2]-f[2]*step);
        }
        context.setPositions(positions);

        // See whether the potential energy changed by the expected amount.

        State state2 = context.getState(State::Energy);
        ASSERT_EQUAL_TOL(norm, (state2.getPotentialEnergy()-state.getPotentialEnergy())/delta, 1e-3*abs(state.getPotentialEnergy()));
202
203
204
205
206
    }
}

int main() {
    try {
Peter Eastman's avatar
Peter Eastman committed
207
        testSingleParticle();
208
209
210
211
212
213
        testCutoffAndPeriodic();
        for (int i = 2; i < 11; i++) {
            testForce(i*i*i, NonbondedForce::NoCutoff);
            testForce(i*i*i, NonbondedForce::CutoffNonPeriodic);
            testForce(i*i*i, NonbondedForce::CutoffPeriodic);
        }
214
215
216
217
218
219
220
221
    }
    catch(const exception& e) {
        cout << "exception: " << e.what() << endl;
        return 1;
    }
    cout << "Done" << endl;
    return 0;
}