NonbondedForceImpl.cpp 12.5 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) 2008-2010 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
 * 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.                                     *
 * -------------------------------------------------------------------------- */

32
33
34
#ifdef WIN32
  #define _USE_MATH_DEFINES // Needed to get M_PI
#endif
35
#include "openmm/OpenMMException.h"
36
#include "openmm/internal/ContextImpl.h"
37
38
#include "openmm/internal/NonbondedForceImpl.h"
#include "openmm/kernels.h"
39
#include <cmath>
40
#include <map>
41
#include <sstream>
42
43

using namespace OpenMM;
44
using namespace std;
45

46
NonbondedForceImpl::NonbondedForceImpl(const NonbondedForce& owner) : owner(owner) {
47
48
}

49
NonbondedForceImpl::~NonbondedForceImpl() {
50
51
}

52
void NonbondedForceImpl::initialize(ContextImpl& context) {
53
    kernel = context.getPlatform().createKernel(CalcNonbondedForceKernel::Name(), context);
Peter Eastman's avatar
Peter Eastman committed
54

55
    // Check for errors in the specification of exceptions.
Peter Eastman's avatar
Peter Eastman committed
56

57
    const System& system = context.getSystem();
58
59
    if (owner.getNumParticles() != system.getNumParticles())
        throw OpenMMException("NonbondedForce must have exactly as many particles as the System it belongs to.");
60
61
62
63
    if (owner.getUseSwitchingFunction()) {
        if (owner.getSwitchingDistance() < 0 || owner.getSwitchingDistance() >= owner.getCutoffDistance())
            throw OpenMMException("NonbondedForce: Switching distance must satisfy 0 <= r_switch < r_cutoff");
    }
64
65
    vector<set<int> > exceptions(owner.getNumParticles());
    for (int i = 0; i < owner.getNumExceptions(); i++) {
Peter Eastman's avatar
Peter Eastman committed
66
        int particle1, particle2;
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
        double chargeProd, sigma, epsilon;
        owner.getExceptionParameters(i, particle1, particle2, chargeProd, sigma, epsilon);
        if (particle1 < 0 || particle1 >= owner.getNumParticles()) {
            stringstream msg;
            msg << "NonbondedForce: Illegal particle index for an exception: ";
            msg << particle1;
            throw OpenMMException(msg.str());
        }
        if (particle2 < 0 || particle2 >= owner.getNumParticles()) {
            stringstream msg;
            msg << "NonbondedForce: Illegal particle index for an exception: ";
            msg << particle2;
            throw OpenMMException(msg.str());
        }
        if (exceptions[particle1].count(particle2) > 0 || exceptions[particle2].count(particle1) > 0) {
            stringstream msg;
            msg << "NonbondedForce: Multiple exceptions are specified for particles ";
            msg << particle1;
            msg << " and ";
            msg << particle2;
            throw OpenMMException(msg.str());
        }
        exceptions[particle1].insert(particle2);
        exceptions[particle2].insert(particle1);
Peter Eastman's avatar
Peter Eastman committed
91
    }
92
93
94
95
    if (owner.getNonbondedMethod() == NonbondedForce::CutoffPeriodic ||
            owner.getNonbondedMethod() == NonbondedForce::Ewald ||
            owner.getNonbondedMethod() == NonbondedForce::PME) {
        Vec3 boxVectors[3];
96
        system.getDefaultPeriodicBoxVectors(boxVectors[0], boxVectors[1], boxVectors[2]);
97
98
99
100
        double cutoff = owner.getCutoffDistance();
        if (cutoff > 0.5*boxVectors[0][0] || cutoff > 0.5*boxVectors[1][1] || cutoff > 0.5*boxVectors[2][2])
            throw OpenMMException("NonbondedForce: The cutoff distance cannot be greater than half the periodic box size.");
    }
101
    kernel.getAs<CalcNonbondedForceKernel>().initialize(context.getSystem(), owner);
102
103
}

104
105
double NonbondedForceImpl::calcForcesAndEnergy(ContextImpl& context, bool includeForces, bool includeEnergy, int groups) {
    bool includeDirect = ((groups&(1<<owner.getForceGroup())) != 0);
106
107
108
    bool includeReciprocal = includeDirect;
    if (owner.getReciprocalSpaceForceGroup() >= 0)
        includeReciprocal = ((groups&(1<<owner.getReciprocalSpaceForceGroup())) != 0);
109
    return kernel.getAs<CalcNonbondedForceKernel>().execute(context, includeForces, includeEnergy, includeDirect, includeReciprocal);
110
111
}

112
std::vector<std::string> NonbondedForceImpl::getKernelNames() {
113
    std::vector<std::string> names;
114
    names.push_back(CalcNonbondedForceKernel::Name());
115
116
    return names;
}
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136

class NonbondedForceImpl::ErrorFunction {
public:
    virtual double getValue(int arg) const = 0;
};

class NonbondedForceImpl::EwaldErrorFunction : public ErrorFunction {
public:
    EwaldErrorFunction(double width, double alpha, double target) : width(width), alpha(alpha), target(target) {
    }
    double getValue(int arg) const {
        double temp = arg*M_PI/(width*alpha);
        return target-0.05*sqrt(width*alpha)*arg*exp(-temp*temp);
    }
private:
    double width, alpha, target;
};

void NonbondedForceImpl::calcEwaldParameters(const System& system, const NonbondedForce& force, double& alpha, int& kmaxx, int& kmaxy, int& kmaxz) {
    Vec3 boxVectors[3];
137
    system.getDefaultPeriodicBoxVectors(boxVectors[0], boxVectors[1], boxVectors[2]);
138
    double tol = force.getEwaldErrorTolerance();
Peter Eastman's avatar
Peter Eastman committed
139
    alpha = (1.0/force.getCutoffDistance())*std::sqrt(-log(2.0*tol));
140
141
142
143
144
145
146
147
148
149
150
151
152
    kmaxx = findZero(EwaldErrorFunction(boxVectors[0][0], alpha, tol), 10);
    kmaxy = findZero(EwaldErrorFunction(boxVectors[1][1], alpha, tol), 10);
    kmaxz = findZero(EwaldErrorFunction(boxVectors[2][2], alpha, tol), 10);
    if (kmaxx%2 == 0)
        kmaxx++;
    if (kmaxy%2 == 0)
        kmaxy++;
    if (kmaxz%2 == 0)
        kmaxz++;
}

void NonbondedForceImpl::calcPMEParameters(const System& system, const NonbondedForce& force, double& alpha, int& xsize, int& ysize, int& zsize) {
    Vec3 boxVectors[3];
153
    system.getDefaultPeriodicBoxVectors(boxVectors[0], boxVectors[1], boxVectors[2]);
154
155
    double tol = force.getEwaldErrorTolerance();
    alpha = (1.0/force.getCutoffDistance())*std::sqrt(-log(2.0*tol));
156
157
158
    xsize = (int) ceil(2*alpha*boxVectors[0][0]/(3*pow(tol, 0.2)));
    ysize = (int) ceil(2*alpha*boxVectors[1][1]/(3*pow(tol, 0.2)));
    zsize = (int) ceil(2*alpha*boxVectors[2][2]/(3*pow(tol, 0.2)));
159
160
161
    xsize = max(xsize, 5);
    ysize = max(ysize, 5);
    zsize = max(zsize, 5);
162
163
}

164
int NonbondedForceImpl::findZero(const NonbondedForceImpl::ErrorFunction& f, int initialGuess) {
165
166
167
168
169
170
171
172
173
174
175
    int arg = initialGuess;
    double value = f.getValue(arg);
    if (value > 0.0) {
        while (value > 0.0 && arg > 0)
            value = f.getValue(--arg);
        return arg+1;
    }
    while (value < 0.0)
        value = f.getValue(++arg);
    return arg;
}
176

177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
double NonbondedForceImpl::evalIntegral(double r, double rs, double rc, double sigma) {
    // Compute the indefinite integral of the LJ interaction multiplied by the switching function.
    // This is a large and somewhat horrifying expression, though it does grow on you if you look
    // at it long enough.  Perhaps it could be simplified further, but I got tired of working on it.
    
    double A = 1/(rc-rs);
    double A2 = A*A;
    double A3 = A2*A;
    double sig2 = sigma*sigma;
    double sig6 = sig2*sig2*sig2;
    double rs2 = rs*rs;
    double rs3 = rs*rs2;
    double r2 = r*r;
    double r3 = r*r2;
    double r4 = r*r3;
    double r5 = r*r4;
    double r6 = r*r5;
    double r9 = r3*r6;
    return sig6*A3*((
        sig6*(
            + rs3*28*(6*rs2*A2 + 15*rs*A + 10)
            - r*rs2*945*(rs2*A2 + 2*rs*A + 1)
            + r2*rs*1080*(2*rs2*A2 + 3*rs*A + 1)
            - r3*420*(6*rs2*A2 + 6*rs*A + 1)
            + r4*756*(2*rs*A2 + A)
            - r5*378*A2)
        -r6*(
            + rs3*84*(6*rs2*A2 + 15*rs*A + 10)
            - r*rs2*3780*(rs2*A2 + 2*rs*A + 1)
            + r2*rs*7560*(2*rs2*A2 + 3*rs*A + 1))
        )/(252*r9)
     - log(r)*10*(6*rs2*A2 + 6*rs*A + 1)
     + r*15*(2*rs*A2 + A)
     - r2*3*A2
    );
}

214
double NonbondedForceImpl::calcDispersionCorrection(const System& system, const NonbondedForce& force) {
215
216
217
    if (force.getNonbondedMethod() == NonbondedForce::NoCutoff || force.getNonbondedMethod() == NonbondedForce::CutoffNonPeriodic)
        return 0.0;
    
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
    // Identify all particle classes (defined by sigma and epsilon), and count the number of
    // particles in each class.

    map<pair<double, double>, int> classCounts;
    for (int i = 0; i < force.getNumParticles(); i++) {
        double charge, sigma, epsilon;
        force.getParticleParameters(i, charge, sigma, epsilon);
        pair<double, double> key = make_pair(sigma, epsilon);
        map<pair<double, double>, int>::iterator entry = classCounts.find(key);
        if (entry == classCounts.end())
            classCounts[key] = 1;
        else
            entry->second++;
    }

    // Loop over all pairs of classes to compute the coefficient.

235
236
237
238
    double sum1 = 0, sum2 = 0, sum3 = 0;
    bool useSwitch = force.getUseSwitchingFunction();
    double cutoff = force.getCutoffDistance();
    double switchDist = force.getSwitchingDistance();
239
240
241
242
243
244
245
246
    for (map<pair<double, double>, int>::const_iterator entry = classCounts.begin(); entry != classCounts.end(); ++entry) {
        double sigma = entry->first.first;
        double epsilon = entry->first.second;
        int count = (entry->second*(entry->second+1))/2;
        double sigma2 = sigma*sigma;
        double sigma6 = sigma2*sigma2*sigma2;
        sum1 += count*epsilon*sigma6*sigma6;
        sum2 += count*epsilon*sigma6;
247
248
        if (useSwitch)
            sum3 += count*epsilon*(evalIntegral(cutoff, switchDist, cutoff, sigma)-evalIntegral(switchDist, switchDist, cutoff, sigma));
249
250
251
252
253
254
255
256
257
258
    }
    for (map<pair<double, double>, int>::const_iterator class1 = classCounts.begin(); class1 != classCounts.end(); ++class1)
        for (map<pair<double, double>, int>::const_iterator class2 = classCounts.begin(); class2 != class1; ++class2) {
            double sigma = 0.5*(class1->first.first+class2->first.first);
            double epsilon = sqrt(class1->first.second*class2->first.second);
            int count = class1->second*class2->second;
            double sigma2 = sigma*sigma;
            double sigma6 = sigma2*sigma2*sigma2;
            sum1 += count*epsilon*sigma6*sigma6;
            sum2 += count*epsilon*sigma6;
259
260
            if (useSwitch)
                sum3 += count*epsilon*(evalIntegral(cutoff, switchDist, cutoff, sigma)-evalIntegral(switchDist, switchDist, cutoff, sigma));
261
262
263
264
265
        }
    int numParticles = system.getNumParticles();
    int numInteractions = (numParticles*(numParticles+1))/2;
    sum1 /= numInteractions;
    sum2 /= numInteractions;
266
267
    sum3 /= numInteractions;
    return 8*numParticles*numParticles*M_PI*(sum1/(9*pow(cutoff, 9))-sum2/(3*pow(cutoff, 3))+sum3);
268
}
269
270
271
272

void NonbondedForceImpl::updateParametersInContext(ContextImpl& context) {
    kernel.getAs<CalcNonbondedForceKernel>().copyParametersToContext(context, owner);
}