"examples/cpp-examples/HelloSodiumChloride.cpp" did not exist on "9c8db8bfbb8c265a949fae890a496d88d0f9b345"
ReferenceKernels.cpp 34 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.                                     *
 * -------------------------------------------------------------------------- */

#include "ReferenceKernels.h"
33
#include "ReferenceFloatStreamImpl.h"
34
#include "gbsa/CpuObc.h"
35
#include "SimTKReference/ReferenceAndersenThermostat.h"
36
37
#include "SimTKReference/ReferenceAngleBondIxn.h"
#include "SimTKReference/ReferenceBondForce.h"
38
#include "SimTKReference/ReferenceBrownianDynamics.h"
39
40
41
42
43
#include "SimTKReference/ReferenceHarmonicBondIxn.h"
#include "SimTKReference/ReferenceLJCoulomb14.h"
#include "SimTKReference/ReferenceLJCoulombIxn.h"
#include "SimTKReference/ReferenceProperDihedralBond.h"
#include "SimTKReference/ReferenceRbDihedralBond.h"
44
45
#include "SimTKReference/ReferenceStochasticDynamics.h"
#include "SimTKReference/ReferenceShakeAlgorithm.h"
46
#include "SimTKReference/ReferenceVerletDynamics.h"
47
48
49
50
#include "CMMotionRemover.h"
#include "System.h"
#include "internal/OpenMMContextImpl.h"
#include "Integrator.h"
51
#include "SimTKUtilities/SimTKOpenMMUtilities.h"
52
#include <cmath>
53
#include <limits>
54
55
56
57

using namespace OpenMM;
using namespace std;

58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
int** allocateIntArray(int length, int width) {
    int** array = new int*[length];
    for (int i = 0; i < length; ++i)
        array[i] = new int[width];
    return array;
}

RealOpenMM** allocateRealArray(int length, int width) {
    RealOpenMM** array = new RealOpenMM*[length];
    for (int i = 0; i < length; ++i)
        array[i] = new RealOpenMM[width];
    return array;
}

int** copyToArray(const vector<vector<int> > vec) {
    if (vec.size() == 0)
        return new int*[0];
    int** array = allocateIntArray(vec.size(), vec[0].size());
76
77
    for (size_t i = 0; i < vec.size(); ++i)
        for (size_t j = 0; j < vec[i].size(); ++j)
78
79
80
81
82
83
84
85
            array[i][j] = vec[i][j];
    return array;
}

RealOpenMM** copyToArray(const vector<vector<double> > vec) {
    if (vec.size() == 0)
        return new RealOpenMM*[0];
    RealOpenMM** array = allocateRealArray(vec.size(), vec[0].size());
86
87
88
    for (size_t i = 0; i < vec.size(); ++i)
        for (size_t j = 0; j < vec[i].size(); ++j)
            array[i][j] = static_cast<RealOpenMM>(vec[i][j]);
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
    return array;
}

void disposeIntArray(int** array, int size) {
    if (array) {
        for (int i = 0; i < size; ++i)
            delete[] array[i];
        delete[] array;
    }
}

void disposeRealArray(RealOpenMM** array, int size) {
    if (array) {
        for (int i = 0; i < size; ++i)
            delete[] array[i];
        delete[] array;
    }
}

108
109
110
void ReferenceInitializeForcesKernel::initialize(const System& system) {
}

111
void ReferenceInitializeForcesKernel::execute(OpenMMContextImpl& context) {
112
113
114
115
    double zero[] = {0.0, 0.0, 0.0};
    context.getForces().fillWithValue(zero);
}

116
ReferenceCalcHarmonicBondForceKernel::~ReferenceCalcHarmonicBondForceKernel() {
117
118
119
120
    disposeIntArray(bondIndexArray, numBonds);
    disposeRealArray(bondParamArray, numBonds);
}

121
void ReferenceCalcHarmonicBondForceKernel::initialize(const System& system, const HarmonicBondForce& force) {
122
123
124
125
    numBonds = force.getNumBonds();
    bondIndexArray = allocateIntArray(numBonds, 2);
    bondParamArray = allocateRealArray(numBonds, 2);
    for (int i = 0; i < force.getNumBonds(); ++i) {
Peter Eastman's avatar
Peter Eastman committed
126
        int particle1, particle2;
127
        double length, k;
Peter Eastman's avatar
Peter Eastman committed
128
129
130
        force.getBondParameters(i, particle1, particle2, length, k);
        bondIndexArray[i][0] = particle1;
        bondIndexArray[i][1] = particle2;
131
132
        bondParamArray[i][0] = (RealOpenMM) length;
        bondParamArray[i][1] = (RealOpenMM) k;
133
    }
134
135
136
137
138
139
140
141
142
143
144
145
}

void ReferenceCalcHarmonicBondForceKernel::executeForces(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
    RealOpenMM** forceData = ((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData();
    ReferenceBondForce refBondForce;
    ReferenceHarmonicBondIxn harmonicBond;
    refBondForce.calculateForce(numBonds, bondIndexArray, posData, bondParamArray, forceData, 0, 0, 0, harmonicBond);
}

double ReferenceCalcHarmonicBondForceKernel::executeEnergy(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
Peter Eastman's avatar
Peter Eastman committed
146
    RealOpenMM** forceData = allocateRealArray(context.getSystem().getNumParticles(), 3);
147
148
149
150
151
152
153
    RealOpenMM* energyArray = new RealOpenMM[numBonds];
    RealOpenMM energy = 0;
    ReferenceBondForce refBondForce;
    ReferenceHarmonicBondIxn harmonicBond;
    for (int i = 0; i < numBonds; ++i)
        energyArray[i] = 0;
    refBondForce.calculateForce(numBonds, bondIndexArray, posData, bondParamArray, forceData, energyArray, 0, &energy, harmonicBond);
Peter Eastman's avatar
Peter Eastman committed
154
    disposeRealArray(forceData, context.getSystem().getNumParticles());
155
156
157
158
159
160
161
162
163
164
165
166
167
    delete[] energyArray;
    return energy;
}

ReferenceCalcHarmonicAngleForceKernel::~ReferenceCalcHarmonicAngleForceKernel() {
    disposeIntArray(angleIndexArray, numAngles);
    disposeRealArray(angleParamArray, numAngles);
}

void ReferenceCalcHarmonicAngleForceKernel::initialize(const System& system, const HarmonicAngleForce& force) {
    numAngles = force.getNumAngles();
    angleIndexArray = allocateIntArray(numAngles, 3);
    angleParamArray = allocateRealArray(numAngles, 2);
168
    for (int i = 0; i < force.getNumAngles(); ++i) {
Peter Eastman's avatar
Peter Eastman committed
169
        int particle1, particle2, particle3;
170
        double angle, k;
Peter Eastman's avatar
Peter Eastman committed
171
172
173
174
        force.getAngleParameters(i, particle1, particle2, particle3, angle, k);
        angleIndexArray[i][0] = particle1;
        angleIndexArray[i][1] = particle2;
        angleIndexArray[i][2] = particle3;
175
176
        angleParamArray[i][0] = (RealOpenMM) angle;
        angleParamArray[i][1] = (RealOpenMM) k;
177
    }
178
179
180
181
182
183
184
185
186
187
188
189
}

void ReferenceCalcHarmonicAngleForceKernel::executeForces(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
    RealOpenMM** forceData = ((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData();
    ReferenceBondForce refBondForce;
    ReferenceAngleBondIxn angleBond;
    refBondForce.calculateForce(numAngles, angleIndexArray, posData, angleParamArray, forceData, 0, 0, 0, angleBond);
}

double ReferenceCalcHarmonicAngleForceKernel::executeEnergy(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
Peter Eastman's avatar
Peter Eastman committed
190
    RealOpenMM** forceData = allocateRealArray(context.getSystem().getNumParticles(), 3);
191
192
193
194
195
196
197
    RealOpenMM* energyArray = new RealOpenMM[numAngles];
    RealOpenMM energy = 0;
    ReferenceBondForce refBondForce;
    ReferenceAngleBondIxn angleBond;
    for (int i = 0; i < numAngles; ++i)
        energyArray[i] = 0;
    refBondForce.calculateForce(numAngles, angleIndexArray, posData, angleParamArray, forceData, energyArray, 0, &energy, angleBond);
Peter Eastman's avatar
Peter Eastman committed
198
    disposeRealArray(forceData, context.getSystem().getNumParticles());
199
200
201
202
203
204
205
206
207
208
209
210
211
212
    delete[] energyArray;
    return energy;
}

ReferenceCalcPeriodicTorsionForceKernel::~ReferenceCalcPeriodicTorsionForceKernel() {
    disposeIntArray(torsionIndexArray, numTorsions);
    disposeRealArray(torsionParamArray, numTorsions);
}

void ReferenceCalcPeriodicTorsionForceKernel::initialize(const System& system, const PeriodicTorsionForce& force) {
    numTorsions = force.getNumTorsions();
    torsionIndexArray = allocateIntArray(numTorsions, 4);
    torsionParamArray = allocateRealArray(numTorsions, 3);
    for (int i = 0; i < force.getNumTorsions(); ++i) {
Peter Eastman's avatar
Peter Eastman committed
213
        int particle1, particle2, particle3, particle4, periodicity;
214
        double phase, k;
Peter Eastman's avatar
Peter Eastman committed
215
216
217
218
219
        force.getTorsionParameters(i, particle1, particle2, particle3, particle4, periodicity, phase, k);
        torsionIndexArray[i][0] = particle1;
        torsionIndexArray[i][1] = particle2;
        torsionIndexArray[i][2] = particle3;
        torsionIndexArray[i][3] = particle4;
220
221
222
        torsionParamArray[i][0] = (RealOpenMM) k;
        torsionParamArray[i][1] = (RealOpenMM) phase;
        torsionParamArray[i][2] = (RealOpenMM) periodicity;
223
    }
224
225
226
227
228
229
230
231
232
233
234
235
}

void ReferenceCalcPeriodicTorsionForceKernel::executeForces(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
    RealOpenMM** forceData = ((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData();
    ReferenceBondForce refBondForce;
    ReferenceProperDihedralBond periodicTorsionBond;
    refBondForce.calculateForce(numTorsions, torsionIndexArray, posData, torsionParamArray, forceData, 0, 0, 0, periodicTorsionBond);
}

double ReferenceCalcPeriodicTorsionForceKernel::executeEnergy(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
Peter Eastman's avatar
Peter Eastman committed
236
    RealOpenMM** forceData = allocateRealArray(context.getSystem().getNumParticles(), 3);
237
238
239
240
241
242
243
    RealOpenMM* energyArray = new RealOpenMM[numTorsions];
    RealOpenMM energy = 0;
    ReferenceBondForce refBondForce;
    ReferenceProperDihedralBond periodicTorsionBond;
    for (int i = 0; i < numTorsions; ++i)
        energyArray[i] = 0;
    refBondForce.calculateForce(numTorsions, torsionIndexArray, posData, torsionParamArray, forceData, energyArray, 0, &energy, periodicTorsionBond);
Peter Eastman's avatar
Peter Eastman committed
244
    disposeRealArray(forceData, context.getSystem().getNumParticles());
245
246
247
248
249
250
251
252
253
254
255
256
257
258
    delete[] energyArray;
    return energy;
}

ReferenceCalcRBTorsionForceKernel::~ReferenceCalcRBTorsionForceKernel() {
    disposeIntArray(torsionIndexArray, numTorsions);
    disposeRealArray(torsionParamArray, numTorsions);
}

void ReferenceCalcRBTorsionForceKernel::initialize(const System& system, const RBTorsionForce& force) {
    numTorsions = force.getNumTorsions();
    torsionIndexArray = allocateIntArray(numTorsions, 4);
    torsionParamArray = allocateRealArray(numTorsions, 6);
    for (int i = 0; i < force.getNumTorsions(); ++i) {
Peter Eastman's avatar
Peter Eastman committed
259
        int particle1, particle2, particle3, particle4;
260
        double c0, c1, c2, c3, c4, c5;
Peter Eastman's avatar
Peter Eastman committed
261
262
263
264
265
        force.getTorsionParameters(i, particle1, particle2, particle3, particle4, c0, c1, c2, c3, c4, c5);
        torsionIndexArray[i][0] = particle1;
        torsionIndexArray[i][1] = particle2;
        torsionIndexArray[i][2] = particle3;
        torsionIndexArray[i][3] = particle4;
266
267
268
269
270
271
        torsionParamArray[i][0] = (RealOpenMM) c0;
        torsionParamArray[i][1] = (RealOpenMM) c1;
        torsionParamArray[i][2] = (RealOpenMM) c2;
        torsionParamArray[i][3] = (RealOpenMM) c3;
        torsionParamArray[i][4] = (RealOpenMM) c4;
        torsionParamArray[i][5] = (RealOpenMM) c5;
272
    }
273
274
275
276
277
278
279
280
281
282
283
284
}

void ReferenceCalcRBTorsionForceKernel::executeForces(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
    RealOpenMM** forceData = ((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData();
    ReferenceBondForce refBondForce;
    ReferenceRbDihedralBond rbTorsionBond;
    refBondForce.calculateForce(numTorsions, torsionIndexArray, posData, torsionParamArray, forceData, 0, 0, 0, rbTorsionBond);
}

double ReferenceCalcRBTorsionForceKernel::executeEnergy(OpenMMContextImpl& context) {
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
Peter Eastman's avatar
Peter Eastman committed
285
    RealOpenMM** forceData = allocateRealArray(context.getSystem().getNumParticles(), 3);
286
287
288
289
290
291
292
    RealOpenMM* energyArray = new RealOpenMM[numTorsions];
    RealOpenMM energy = 0;
    ReferenceBondForce refBondForce;
    ReferenceRbDihedralBond rbTorsionBond;
    for (int i = 0; i < numTorsions; ++i)
        energyArray[i] = 0;
    refBondForce.calculateForce(numTorsions, torsionIndexArray, posData, torsionParamArray, forceData, energyArray, 0, &energy, rbTorsionBond);
Peter Eastman's avatar
Peter Eastman committed
293
    disposeRealArray(forceData, context.getSystem().getNumParticles());
294
295
296
297
298
    delete[] energyArray;
    return energy;
}

ReferenceCalcNonbondedForceKernel::~ReferenceCalcNonbondedForceKernel() {
Peter Eastman's avatar
Peter Eastman committed
299
300
    disposeRealArray(particleParamArray, numParticles);
    disposeIntArray(exclusionArray, numParticles);
301
302
303
304
305
306
307
    disposeIntArray(bonded14IndexArray, num14);
    disposeRealArray(bonded14ParamArray, num14);
    if (neighborList != NULL)
        delete neighborList;
}

void ReferenceCalcNonbondedForceKernel::initialize(const System& system, const NonbondedForce& force, const std::vector<std::set<int> >& exclusions) {
Peter Eastman's avatar
Peter Eastman committed
308
    numParticles = force.getNumParticles();
309
310
311
    num14 = force.getNumNonbonded14();
    bonded14IndexArray = allocateIntArray(num14, 2);
    bonded14ParamArray = allocateRealArray(num14, 3);
Peter Eastman's avatar
Peter Eastman committed
312
    particleParamArray = allocateRealArray(numParticles, 3);
313
    RealOpenMM sqrtEps = static_cast<RealOpenMM>( std::sqrt(138.935485) );
Peter Eastman's avatar
Peter Eastman committed
314
    for (int i = 0; i < numParticles; ++i) {
315
        double charge, radius, depth;
Peter Eastman's avatar
Peter Eastman committed
316
317
318
319
        force.getParticleParameters(i, charge, radius, depth);
        particleParamArray[i][0] = static_cast<RealOpenMM>(0.5*radius);
        particleParamArray[i][1] = static_cast<RealOpenMM>(2.0*sqrt(depth));
        particleParamArray[i][2] = static_cast<RealOpenMM>(charge*sqrtEps);
320
    }
321
    this->exclusions = exclusions;
Peter Eastman's avatar
Peter Eastman committed
322
323
    exclusionArray = new int*[numParticles];
    for (int i = 0; i < numParticles; ++i) {
324
325
326
327
328
329
330
        exclusionArray[i] = new int[exclusions[i].size()+1];
        exclusionArray[i][0] = exclusions[i].size();
        int index = 0;
        for (set<int>::const_iterator iter = exclusions[i].begin(); iter != exclusions[i].end(); ++iter)
            exclusionArray[i][++index] = *iter;
    }
    for (int i = 0; i < num14; ++i) {
Peter Eastman's avatar
Peter Eastman committed
331
        int particle1, particle2;
332
        double charge, radius, depth;
Peter Eastman's avatar
Peter Eastman committed
333
334
335
        force.getNonbonded14Parameters(i, particle1, particle2, charge, radius, depth);
        bonded14IndexArray[i][0] = particle1;
        bonded14IndexArray[i][1] = particle2;
336
337
338
        bonded14ParamArray[i][0] = static_cast<RealOpenMM>(radius);
        bonded14ParamArray[i][1] = static_cast<RealOpenMM>(4.0*depth);
        bonded14ParamArray[i][2] = static_cast<RealOpenMM>(charge*sqrtEps*sqrtEps);
339
    }
340
    nonbondedMethod = CalcNonbondedForceKernel::NonbondedMethod(force.getNonbondedMethod());
341
    nonbondedCutoff = (RealOpenMM) force.getCutoffDistance();
342
343
344
345
346
    Vec3 boxVectors[3];
    force.getPeriodicBoxVectors(boxVectors[0], boxVectors[1], boxVectors[2]);
    periodicBoxSize[0] = (RealOpenMM) boxVectors[0][0];
    periodicBoxSize[1] = (RealOpenMM) boxVectors[1][1];
    periodicBoxSize[2] = (RealOpenMM) boxVectors[2][2];
347
348
349
350
351
    if (nonbondedMethod == NoCutoff)
        neighborList = NULL;
    else
        neighborList = new NeighborList();
        
352
353
}

354
void ReferenceCalcNonbondedForceKernel::executeForces(OpenMMContextImpl& context) {
355
356
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
    RealOpenMM** forceData = ((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData();
357
    ReferenceLJCoulombIxn clj;
358
359
    bool periodic = (nonbondedMethod == CutoffPeriodic);
    if (nonbondedMethod != NoCutoff) {
Peter Eastman's avatar
Peter Eastman committed
360
        computeNeighborListVoxelHash(*neighborList, numParticles, posData, exclusions, periodic ? periodicBoxSize : NULL, nonbondedCutoff, 0.0);
361
        clj.setUseCutoff(nonbondedCutoff, *neighborList, 78.3f);
362
363
364
    }
    if (periodic)
        clj.setPeriodic(periodicBoxSize);
Peter Eastman's avatar
Peter Eastman committed
365
    clj.calculatePairIxn(numParticles, posData, particleParamArray, exclusionArray, 0, forceData, 0, 0);
366
    ReferenceBondForce refBondForce;
367
    ReferenceLJCoulomb14 nonbonded14;
368
    if (nonbondedMethod != NoCutoff)
369
        nonbonded14.setUseCutoff(nonbondedCutoff, 78.3f);
370
371
372
    refBondForce.calculateForce(num14, bonded14IndexArray, posData, bonded14ParamArray, forceData, 0, 0, 0, nonbonded14);
}

373
double ReferenceCalcNonbondedForceKernel::executeEnergy(OpenMMContextImpl& context) {
374
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
Peter Eastman's avatar
Peter Eastman committed
375
    RealOpenMM** forceData = allocateRealArray(numParticles, 3);
376
377
    RealOpenMM energy = 0;
    ReferenceLJCoulombIxn clj;
378
379
    bool periodic = (nonbondedMethod == CutoffPeriodic);
    if (nonbondedMethod != NoCutoff) {
Peter Eastman's avatar
Peter Eastman committed
380
        computeNeighborListVoxelHash(*neighborList, numParticles, posData, exclusions, periodic ? periodicBoxSize : NULL, nonbondedCutoff, 0.0);
381
        clj.setUseCutoff(nonbondedCutoff, *neighborList, 78.3f);
382
383
384
    }
    if (periodic)
        clj.setPeriodic(periodicBoxSize);
Peter Eastman's avatar
Peter Eastman committed
385
    clj.calculatePairIxn(numParticles, posData, particleParamArray, exclusionArray, 0, forceData, 0, &energy);
386
    ReferenceBondForce refBondForce;
387
    ReferenceLJCoulomb14 nonbonded14;
388
    if (nonbondedMethod != NoCutoff)
389
        nonbonded14.setUseCutoff(nonbondedCutoff, 78.3f);
Peter Eastman's avatar
Peter Eastman committed
390
391
    RealOpenMM* energyArray = new RealOpenMM[num14];
    for (int i = 0; i < num14; ++i)
392
393
        energyArray[i] = 0;
    refBondForce.calculateForce(num14, bonded14IndexArray, posData, bonded14ParamArray, forceData, energyArray, 0, &energy, nonbonded14);
Peter Eastman's avatar
Peter Eastman committed
394
    disposeRealArray(forceData, numParticles);
395
396
397
398
    delete[] energyArray;
    return energy;
}

399
ReferenceCalcGBSAOBCForceKernel::~ReferenceCalcGBSAOBCForceKernel() {
400
    if (obc) {
401
        // delete obc->getObcParameters();
402
403
404
405
        delete obc;
    }
}

406
void ReferenceCalcGBSAOBCForceKernel::initialize(const System& system, const GBSAOBCForce& force) {
Peter Eastman's avatar
Peter Eastman committed
407
408
409
410
411
    int numParticles = system.getNumParticles();
    charges.resize(numParticles);
    vector<RealOpenMM> atomicRadii(numParticles);
    vector<RealOpenMM> scaleFactors(numParticles);
    for (int i = 0; i < numParticles; ++i) {
412
        double charge, radius, scalingFactor;
Peter Eastman's avatar
Peter Eastman committed
413
        force.getParticleParameters(i, charge, radius, scalingFactor);
414
415
416
        charges[i] = static_cast<RealOpenMM>(charge);
        atomicRadii[i] = static_cast<RealOpenMM>(radius);
        scaleFactors[i] = static_cast<RealOpenMM>(scalingFactor);
417
    }
Peter Eastman's avatar
Peter Eastman committed
418
    ObcParameters* obcParameters  = new ObcParameters(numParticles, ObcParameters::ObcTypeII);
419
    obcParameters->setAtomicRadii(atomicRadii);
420
    obcParameters->setScaledRadiusFactors(scaleFactors);
421
422
    obcParameters->setSolventDielectric( static_cast<RealOpenMM>(force.getSolventDielectric()) );
    obcParameters->setSoluteDielectric( static_cast<RealOpenMM>(force.getSoluteDielectric()) );
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442

    // If there is a NonbondedForce in this system, use it to initialize cutoffs and periodic boundary conditions.

    for (int i = 0; i < system.getNumForces(); i++) {
        const NonbondedForce* nonbonded = dynamic_cast<const NonbondedForce*>(&system.getForce(i));
        if (nonbonded != NULL) {
            if (nonbonded->getNonbondedMethod() != NonbondedForce::NoCutoff)
                obcParameters->setUseCutoff(nonbonded->getCutoffDistance());
            if (nonbonded->getNonbondedMethod() == NonbondedForce::CutoffPeriodic) {
                Vec3 boxVectors[3];
                nonbonded->getPeriodicBoxVectors(boxVectors[0], boxVectors[1], boxVectors[2]);
                RealOpenMM periodicBoxSize[3];
                periodicBoxSize[0] = (RealOpenMM) boxVectors[0][0];
                periodicBoxSize[1] = (RealOpenMM) boxVectors[1][1];
                periodicBoxSize[2] = (RealOpenMM) boxVectors[2][2];
                obcParameters->setPeriodic(periodicBoxSize);
            }
            break;
        }
    }
443
444
    obc = new CpuObc(obcParameters);
    obc->setIncludeAceApproximation(true);
445
446
}

447
void ReferenceCalcGBSAOBCForceKernel::executeForces(OpenMMContextImpl& context) {
448
449
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
    RealOpenMM** forceData = ((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData();
450
    obc->computeImplicitSolventForces(posData, &charges[0], forceData, 1);
451
452
}

453
double ReferenceCalcGBSAOBCForceKernel::executeEnergy(OpenMMContextImpl& context) {
454
    RealOpenMM** posData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData()); // Reference code needs to be made const correct
Peter Eastman's avatar
Peter Eastman committed
455
    RealOpenMM** forceData = allocateRealArray(context.getSystem().getNumParticles(), 3);
456
    obc->computeImplicitSolventForces(posData, &charges[0], forceData, 1);
Peter Eastman's avatar
Peter Eastman committed
457
    disposeRealArray(forceData, context.getSystem().getNumParticles());
458
    return obc->getEnergy();
459
460
}

461
462
463
464
465
466
467
468
469
470
471
472
473
ReferenceIntegrateVerletStepKernel::~ReferenceIntegrateVerletStepKernel() {
    if (dynamics)
        delete dynamics;
    if (shake)
        delete shake;
    if (masses)
        delete[] masses;
    if (constraintIndices)
        disposeIntArray(constraintIndices, numConstraints);
    if (shakeParameters)
        disposeRealArray(shakeParameters, numConstraints);
}

474
void ReferenceIntegrateVerletStepKernel::initialize(const System& system, const VerletIntegrator& integrator) {
Peter Eastman's avatar
Peter Eastman committed
475
476
    int numParticles = system.getNumParticles();
    masses = new RealOpenMM[numParticles];
477
    for (int i = 0; i < numParticles; ++i)
Peter Eastman's avatar
Peter Eastman committed
478
        masses[i] = static_cast<RealOpenMM>(system.getParticleMass(i));
479
480
481
    numConstraints = system.getNumConstraints();
    constraintIndices = allocateIntArray(numConstraints, 2);
    shakeParameters = allocateRealArray(numConstraints, 1);
482
    for (int i = 0; i < numConstraints; ++i) {
Peter Eastman's avatar
Peter Eastman committed
483
        int particle1, particle2;
484
        double distance;
Peter Eastman's avatar
Peter Eastman committed
485
486
487
        system.getConstraintParameters(i, particle1, particle2, distance);
        constraintIndices[i][0] = particle1;
        constraintIndices[i][1] = particle2;
488
        shakeParameters[i][0] = static_cast<RealOpenMM>(distance);
489
    }
490
491
}

492
493
494
495
496
void ReferenceIntegrateVerletStepKernel::execute(OpenMMContextImpl& context, const VerletIntegrator& integrator) {
    double stepSize = integrator.getStepSize();
    RealOpenMM** posData = ((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData();
    RealOpenMM** velData = ((ReferenceFloatStreamImpl&) context.getVelocities().getImpl()).getData();
    RealOpenMM** forceData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData()); // Reference code needs to be made const correct
497
498
499
500
501
502
503
    if (dynamics == 0 || stepSize != prevStepSize) {
        // Recreate the computation objects with the new parameters.
        
        if (dynamics) {
            delete dynamics;
            delete shake;
        }
Peter Eastman's avatar
Peter Eastman committed
504
        dynamics = new ReferenceVerletDynamics(context.getSystem().getNumParticles(), static_cast<RealOpenMM>(stepSize) );
505
506
507
508
        shake = new ReferenceShakeAlgorithm(numConstraints, constraintIndices, shakeParameters);
        dynamics->setReferenceShakeAlgorithm(shake);
        prevStepSize = stepSize;
    }
509
    shake->setTolerance(integrator.getConstraintTolerance());
Peter Eastman's avatar
Peter Eastman committed
510
    dynamics->update(context.getSystem().getNumParticles(), posData, velData, forceData, masses);
511
}
512

513
514
515
516
517
518
519
520
521
522
523
524
ReferenceIntegrateLangevinStepKernel::~ReferenceIntegrateLangevinStepKernel() {
    if (dynamics)
        delete dynamics;
    if (shake)
        delete shake;
    if (masses)
        delete[] masses;
    if (constraintIndices)
        disposeIntArray(constraintIndices, numConstraints);
    if (shakeParameters)
        disposeRealArray(shakeParameters, numConstraints);
}
525

526
void ReferenceIntegrateLangevinStepKernel::initialize(const System& system, const LangevinIntegrator& integrator) {
Peter Eastman's avatar
Peter Eastman committed
527
528
    int numParticles = system.getNumParticles();
    masses = new RealOpenMM[numParticles];
529
    for (int i = 0; i < numParticles; ++i)
Peter Eastman's avatar
Peter Eastman committed
530
        masses[i] = static_cast<RealOpenMM>(system.getParticleMass(i));
531
532
533
    numConstraints = system.getNumConstraints();
    constraintIndices = allocateIntArray(numConstraints, 2);
    shakeParameters = allocateRealArray(numConstraints, 1);
534
    for (int i = 0; i < numConstraints; ++i) {
Peter Eastman's avatar
Peter Eastman committed
535
        int particle1, particle2;
536
        double distance;
Peter Eastman's avatar
Peter Eastman committed
537
538
539
        system.getConstraintParameters(i, particle1, particle2, distance);
        constraintIndices[i][0] = particle1;
        constraintIndices[i][1] = particle2;
540
        shakeParameters[i][0] = static_cast<RealOpenMM>(distance);
541
    }
542
    SimTKOpenMMUtilities::setRandomNumberSeed((unsigned int) integrator.getRandomNumberSeed());
543
544
}

545
546
547
548
549
550
551
void ReferenceIntegrateLangevinStepKernel::execute(OpenMMContextImpl& context, const LangevinIntegrator& integrator) {
    double temperature = integrator.getTemperature();
    double friction = integrator.getFriction();
    double stepSize = integrator.getStepSize();
    RealOpenMM** posData = ((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData();
    RealOpenMM** velData = ((ReferenceFloatStreamImpl&) context.getVelocities().getImpl()).getData();
    RealOpenMM** forceData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData()); // Reference code needs to be made const correct
552
553
554
555
556
557
558
    if (dynamics == 0 || temperature != prevTemp || friction != prevFriction || stepSize != prevStepSize) {
        // Recreate the computation objects with the new parameters.
        
        if (dynamics) {
            delete dynamics;
            delete shake;
        }
559
560
        RealOpenMM tau = static_cast<RealOpenMM>( friction == 0.0 ? 0.0 : 1.0/friction );
        dynamics = new ReferenceStochasticDynamics(
Peter Eastman's avatar
Peter Eastman committed
561
				context.getSystem().getNumParticles(), 
562
563
564
				static_cast<RealOpenMM>(stepSize), 
				static_cast<RealOpenMM>(tau), 
				static_cast<RealOpenMM>(temperature) );
565
566
567
568
569
570
        shake = new ReferenceShakeAlgorithm(numConstraints, constraintIndices, shakeParameters);
        dynamics->setReferenceShakeAlgorithm(shake);
        prevTemp = temperature;
        prevFriction = friction;
        prevStepSize = stepSize;
    }
571
    shake->setTolerance(integrator.getConstraintTolerance());
Peter Eastman's avatar
Peter Eastman committed
572
    dynamics->update(context.getSystem().getNumParticles(), posData, velData, forceData, masses);
573
574
}

575
576
577
578
579
580
581
582
583
584
585
586
587
ReferenceIntegrateBrownianStepKernel::~ReferenceIntegrateBrownianStepKernel() {
    if (dynamics)
        delete dynamics;
    if (shake)
        delete shake;
    if (masses)
        delete[] masses;
    if (constraintIndices)
        disposeIntArray(constraintIndices, numConstraints);
    if (shakeParameters)
        disposeRealArray(shakeParameters, numConstraints);
}

588
void ReferenceIntegrateBrownianStepKernel::initialize(const System& system, const BrownianIntegrator& integrator) {
Peter Eastman's avatar
Peter Eastman committed
589
590
    int numParticles = system.getNumParticles();
    masses = new RealOpenMM[numParticles];
591
    for (int i = 0; i < numParticles; ++i)
Peter Eastman's avatar
Peter Eastman committed
592
        masses[i] = static_cast<RealOpenMM>(system.getParticleMass(i));
593
594
595
    numConstraints = system.getNumConstraints();
    constraintIndices = allocateIntArray(numConstraints, 2);
    shakeParameters = allocateRealArray(numConstraints, 1);
596
    for (int i = 0; i < numConstraints; ++i) {
Peter Eastman's avatar
Peter Eastman committed
597
        int particle1, particle2;
598
        double distance;
Peter Eastman's avatar
Peter Eastman committed
599
600
601
        system.getConstraintParameters(i, particle1, particle2, distance);
        constraintIndices[i][0] = particle1;
        constraintIndices[i][1] = particle2;
602
        shakeParameters[i][0] = static_cast<RealOpenMM>(distance);
603
    }
604
    SimTKOpenMMUtilities::setRandomNumberSeed((unsigned int) integrator.getRandomNumberSeed());
605
606
}

607
608
609
610
611
612
613
void ReferenceIntegrateBrownianStepKernel::execute(OpenMMContextImpl& context, const BrownianIntegrator& integrator) {
    double temperature = integrator.getTemperature();
    double friction = integrator.getFriction();
    double stepSize = integrator.getStepSize();
    RealOpenMM** posData = ((ReferenceFloatStreamImpl&) context.getPositions().getImpl()).getData();
    RealOpenMM** velData = ((ReferenceFloatStreamImpl&) context.getVelocities().getImpl()).getData();
    RealOpenMM** forceData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getForces().getImpl()).getData()); // Reference code needs to be made const correct
614
615
616
617
618
619
620
    if (dynamics == 0 || temperature != prevTemp || friction != prevFriction || stepSize != prevStepSize) {
        // Recreate the computation objects with the new parameters.
        
        if (dynamics) {
            delete dynamics;
            delete shake;
        }
621
        dynamics = new ReferenceBrownianDynamics(
Peter Eastman's avatar
Peter Eastman committed
622
				context.getSystem().getNumParticles(), 
623
624
625
				static_cast<RealOpenMM>(stepSize), 
				static_cast<RealOpenMM>(friction), 
				static_cast<RealOpenMM>(temperature) );
626
627
628
629
630
631
        shake = new ReferenceShakeAlgorithm(numConstraints, constraintIndices, shakeParameters);
        dynamics->setReferenceShakeAlgorithm(shake);
        prevTemp = temperature;
        prevFriction = friction;
        prevStepSize = stepSize;
    }
632
    shake->setTolerance(integrator.getConstraintTolerance());
Peter Eastman's avatar
Peter Eastman committed
633
    dynamics->update(context.getSystem().getNumParticles(), posData, velData, forceData, masses);
634
635
}

636
637
638
639
640
641
642
ReferenceApplyAndersenThermostatKernel::~ReferenceApplyAndersenThermostatKernel() {
    if (thermostat)
        delete thermostat;
    if (masses)
        delete[] masses;
}

643
void ReferenceApplyAndersenThermostatKernel::initialize(const System& system, const AndersenThermostat& thermostat) {
Peter Eastman's avatar
Peter Eastman committed
644
645
    int numParticles = system.getNumParticles();
    masses = new RealOpenMM[numParticles];
646
    for (int i = 0; i < numParticles; ++i)
Peter Eastman's avatar
Peter Eastman committed
647
        masses[i] = static_cast<RealOpenMM>(system.getParticleMass(i));
648
    this->thermostat = new ReferenceAndersenThermostat();
649
    SimTKOpenMMUtilities::setRandomNumberSeed((unsigned int) thermostat.getRandomNumberSeed());
650
651
}

652
653
void ReferenceApplyAndersenThermostatKernel::execute(OpenMMContextImpl& context) {
    RealOpenMM** velData = ((ReferenceFloatStreamImpl&) context.getVelocities().getImpl()).getData();
654
    thermostat->applyThermostat(
655
			context.getVelocities().getSize(), 
656
657
			velData, 
			masses, 
658
659
			static_cast<RealOpenMM>(context.getParameter(AndersenThermostat::Temperature())), 
			static_cast<RealOpenMM>(context.getParameter(AndersenThermostat::CollisionFrequency())), 
660
			static_cast<RealOpenMM>(context.getIntegrator().getStepSize()) );
661
662
}

663
void ReferenceCalcKineticEnergyKernel::initialize(const System& system) {
Peter Eastman's avatar
Peter Eastman committed
664
665
    int numParticles = system.getNumParticles();
    masses.resize(numParticles);
666
    for (int i = 0; i < numParticles; ++i)
Peter Eastman's avatar
Peter Eastman committed
667
        masses[i] = system.getParticleMass(i);
668
669
}

670
671
double ReferenceCalcKineticEnergyKernel::execute(OpenMMContextImpl& context) {
    RealOpenMM** velData = const_cast<RealOpenMM**>(((ReferenceFloatStreamImpl&) context.getVelocities().getImpl()).getData()); // Reference code needs to be made const correct
672
    double energy = 0.0;
673
    for (size_t i = 0; i < masses.size(); ++i)
674
675
        energy += masses[i]*(velData[i][0]*velData[i][0]+velData[i][1]*velData[i][1]+velData[i][2]*velData[i][2]);
    return 0.5*energy;
676
}
677

678
679
void ReferenceRemoveCMMotionKernel::initialize(const System& system, const CMMotionRemover& force) {
    frequency = force.getFrequency();
Peter Eastman's avatar
Peter Eastman committed
680
    masses.resize(system.getNumParticles());
681
    for (size_t i = 0; i < masses.size(); ++i)
Peter Eastman's avatar
Peter Eastman committed
682
        masses[i] = system.getParticleMass(i);
683
684
}

685
void ReferenceRemoveCMMotionKernel::execute(OpenMMContextImpl& context) {
686
    int step = (int)std::floor(context.getTime()/context.getIntegrator().getStepSize());
687
688
689
    if (step%frequency != 0)
        return;
    RealOpenMM** velData = ((ReferenceFloatStreamImpl&) context.getVelocities().getImpl()).getData();
690
691
692
693
    
    // Calculate the center of mass momentum.
    
    RealOpenMM momentum[] = {0.0, 0.0, 0.0};
694
695
696
697
    for (size_t i = 0; i < masses.size(); ++i) {
        momentum[0] += static_cast<RealOpenMM>( masses[i]*velData[i][0] );
        momentum[1] += static_cast<RealOpenMM>( masses[i]*velData[i][1] );
        momentum[2] += static_cast<RealOpenMM>( masses[i]*velData[i][2] );
698
699
    }
    
Peter Eastman's avatar
Peter Eastman committed
700
    // Adjust the particle velocities.
701
    
702
703
704
705
706
707
708
    momentum[0] /= static_cast<RealOpenMM>( masses.size() );
    momentum[1] /= static_cast<RealOpenMM>( masses.size() );
    momentum[2] /= static_cast<RealOpenMM>( masses.size() );
    for (size_t i = 0; i < masses.size(); ++i) {
        velData[i][0] -= static_cast<RealOpenMM>( momentum[0]/masses[i] );
        velData[i][1] -= static_cast<RealOpenMM>( momentum[1]/masses[i] );
        velData[i][2] -= static_cast<RealOpenMM>( momentum[2]/masses[i] );
709
710
    }
}