kernels.h 16.9 KB
Newer Older
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
#ifndef OPENMM_KERNELS_H_
#define OPENMM_KERNELS_H_

/* -------------------------------------------------------------------------- *
 *                                   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) 2008 Stanford University and the Authors.           *
 * 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.                                     *
 * -------------------------------------------------------------------------- */

35
36
37
#include "AndersenThermostat.h"
#include "BrownianIntegrator.h"
#include "CMMotionRemover.h"
38
#include "GBSAOBCForce.h"
Mark Friedrichs's avatar
Mark Friedrichs committed
39
#include "GBVIForce.h"
40
41
#include "HarmonicAngleForce.h"
#include "HarmonicBondForce.h"
42
#include "KernelImpl.h"
43
#include "LangevinIntegrator.h"
44
45
46
#include "PeriodicTorsionForce.h"
#include "RBTorsionForce.h"
#include "NonbondedForce.h"
47
#include "Stream.h"
48
49
#include "System.h"
#include "VerletIntegrator.h"
50
51
52
53
54
55
#include <set>
#include <string>
#include <vector>

namespace OpenMM {

56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
/**
 * This kernel is invoked at the start of each force evaluation to clear the forces.
 */
class InitializeForcesKernel : public KernelImpl {
public:
    static std::string Name() {
        return "InitializeForces";
    }
    InitializeForcesKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
     * Initialize the kernel.
     * 
     * @param system     the System this kernel will be applied to
     */
    virtual void initialize(const System& system) = 0;
    /**
     * Execute the kernel.
     * 
     * @param context    the context in which to execute this kernel
     */
77
    virtual void execute(OpenMMContextImpl& context) = 0;
78
79
};

80
/**
81
 * This kernel is invoked by HarmonicBondForce to calculate the forces acting on the system and the energy of the system.
82
 */
83
84
85
86
87
88
89
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
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
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
class CalcHarmonicBondForceKernel : public KernelImpl {
public:
    static std::string Name() {
        return "CalcHarmonicBondForce";
    }
    CalcHarmonicBondForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
     * Initialize the kernel.
     * 
     * @param system     the System this kernel will be applied to
     * @param force      the HarmonicBondForce this kernel will be used for
     */
    virtual void initialize(const System& system, const HarmonicBondForce& force) = 0;
    /**
     * Execute the kernel to calculate the forces.
     * 
     * @param context    the context in which to execute this kernel
     */
    virtual void executeForces(OpenMMContextImpl& context) = 0;
    /**
     * Execute the kernel to calculate the energy.
     * 
     * @param context    the context in which to execute this kernel
     * @return the potential energy due to the HarmonicBondForce
     */
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
};

/**
 * This kernel is invoked by HarmonicAngleForce to calculate the forces acting on the system and the energy of the system.
 */
class CalcHarmonicAngleForceKernel : public KernelImpl {
public:
    static std::string Name() {
        return "CalcHarmonicAngleForce";
    }
    CalcHarmonicAngleForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
     * Initialize the kernel.
     * 
     * @param system     the System this kernel will be applied to
     * @param force      the HarmonicAngleForce this kernel will be used for
     */
    virtual void initialize(const System& system, const HarmonicAngleForce& force) = 0;
    /**
     * Execute the kernel to calculate the forces.
     * 
     * @param context    the context in which to execute this kernel
     */
    virtual void executeForces(OpenMMContextImpl& context) = 0;
    /**
     * Execute the kernel to calculate the energy.
     * 
     * @param context    the context in which to execute this kernel
     * @return the potential energy due to the HarmonicAngleForce
     */
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
};

/**
 * This kernel is invoked by PeriodicTorsionForce to calculate the forces acting on the system and the energy of the system.
 */
class CalcPeriodicTorsionForceKernel : public KernelImpl {
public:
    static std::string Name() {
        return "CalcPeriodicTorsionForce";
    }
    CalcPeriodicTorsionForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
     * Initialize the kernel.
     * 
     * @param system     the System this kernel will be applied to
     * @param force      the PeriodicTorsionForce this kernel will be used for
     */
    virtual void initialize(const System& system, const PeriodicTorsionForce& force) = 0;
    /**
     * Execute the kernel to calculate the forces.
     * 
     * @param context    the context in which to execute this kernel
     */
    virtual void executeForces(OpenMMContextImpl& context) = 0;
    /**
     * Execute the kernel to calculate the energy.
     * 
     * @param context    the context in which to execute this kernel
     * @return the potential energy due to the PeriodicTorsionForce
     */
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
};

/**
 * This kernel is invoked by RBTorsionForce to calculate the forces acting on the system and the energy of the system.
 */
class CalcRBTorsionForceKernel : public KernelImpl {
public:
    static std::string Name() {
        return "CalcRBTorsionForce";
    }
    CalcRBTorsionForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
     * Initialize the kernel.
     * 
     * @param system     the System this kernel will be applied to
     * @param force      the RBTorsionForce this kernel will be used for
     */
    virtual void initialize(const System& system, const RBTorsionForce& force) = 0;
    /**
     * Execute the kernel to calculate the forces.
     * 
     * @param context    the context in which to execute this kernel
     */
    virtual void executeForces(OpenMMContextImpl& context) = 0;
    /**
     * Execute the kernel to calculate the energy.
     * 
     * @param context    the context in which to execute this kernel
     * @return the potential energy due to the RBTorsionForce
     */
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
};

/**
 * This kernel is invoked by NonbondedForce to calculate the forces acting on the system and the energy of the system.
 */
class CalcNonbondedForceKernel : public KernelImpl {
212
public:
213
214
215
    enum NonbondedMethod {
        NoCutoff = 0,
        CutoffNonPeriodic = 1,
216
217
        CutoffPeriodic = 2,
        Ewald = 3
218
    };
219
    static std::string Name() {
220
        return "CalcNonbondedForce";
221
    }
222
    CalcNonbondedForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
223
224
    }
    /**
225
     * Initialize the kernel.
226
     * 
227
     * @param system     the System this kernel will be applied to
228
     * @param force      the NonbondedForce this kernel will be used for
Peter Eastman's avatar
Peter Eastman committed
229
     * @param exclusions the i'th element lists the indices of all particles with which the i'th particle should not interact through
230
231
     *                   nonbonded forces.  Bonded 1-4 pairs are also included in this list, since they should be omitted from
     *                   the standard nonbonded calculation.
232
     */
233
    virtual void initialize(const System& system, const NonbondedForce& force, const std::vector<std::set<int> >& exclusions) = 0;
234
    /**
235
     * Execute the kernel to calculate the forces.
236
     * 
237
     * @param context    the context in which to execute this kernel
238
     */
239
    virtual void executeForces(OpenMMContextImpl& context) = 0;
240
    /**
241
     * Execute the kernel to calculate the energy.
242
     * 
243
     * @param context    the context in which to execute this kernel
244
     * @return the potential energy due to the NonbondedForce
245
     */
246
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
247
248
249
};

/**
250
 * This kernel is invoked by GBSAOBCForce to calculate the forces acting on the system and the energy of the system.
251
 */
252
class CalcGBSAOBCForceKernel : public KernelImpl {
253
254
255
256
public:
    static std::string Name() {
        return "CalcGBSAOBCForces";
    }
257
    CalcGBSAOBCForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
258
259
    }
    /**
260
     * Initialize the kernel.
261
     * 
262
     * @param system     the System this kernel will be applied to
263
     * @param force      the GBSAOBCForce this kernel will be used for
264
     */
265
    virtual void initialize(const System& system, const GBSAOBCForce& force) = 0;
266
    /**
267
     * Execute the kernel to calculate the forces.
268
     * 
269
     * @param context    the context in which to execute this kernel
270
     */
271
    virtual void executeForces(OpenMMContextImpl& context) = 0;
272
    /**
273
     * Execute the kernel to calculate the energy.
274
     * 
275
     * @param context    the context in which to execute this kernel
276
     * @return the potential energy due to the GBSAOBCForce
277
     */
278
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
279
280
};

Mark Friedrichs's avatar
Mark Friedrichs committed
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
/**
 * This kernel is invoked by GBVIForce to calculate the forces acting on the system and the energy of the system.
 */
class CalcGBVIForceKernel : public KernelImpl {
public:
    static std::string Name() {
        return "CalcGBVIForces";
    }
    CalcGBVIForceKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
     * Initialize the kernel.
     * 
     * @param system      the System this kernel will be applied to
     * @param force       the GBVIForce this kernel will be used for
     * @param scaledRadii scaled radii
     */
    virtual void initialize(const System& system, const GBVIForce& force, const std::vector<double>& scaledRadii) = 0;
    /**
     * Execute the kernel to calculate the forces.
     * 
     * @param context    the context in which to execute this kernel
     */
    virtual void executeForces(OpenMMContextImpl& context) = 0;
    /**
     * Execute the kernel to calculate the energy.
     * 
     * @param context    the context in which to execute this kernel
     * @return the potential energy due to the GBVIForce
     */
    virtual double executeEnergy(OpenMMContextImpl& context) = 0;
};

314
315
316
317
318
319
320
321
/**
 * This kernel is invoked by VerletIntegrator to take one time step.
 */
class IntegrateVerletStepKernel : public KernelImpl {
public:
    static std::string Name() {
        return "IntegrateVerletStep";
    }
322
    IntegrateVerletStepKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
323
324
    }
    /**
325
     * Initialize the kernel.
326
     * 
327
328
     * @param system     the System this kernel will be applied to
     * @param integrator the VerletIntegrator this kernel will be used for
329
     */
330
    virtual void initialize(const System& system, const VerletIntegrator& integrator) = 0;
331
332
333
    /**
     * Execute the kernel.
     * 
334
335
     * @param context    the context in which to execute this kernel
     * @param integrator the VerletIntegrator this kernel is being used for
336
     */
337
    virtual void execute(OpenMMContextImpl& context, const VerletIntegrator& integrator) = 0;
338
339
340
341
342
343
344
345
346
347
};

/**
 * This kernel is invoked by LangevinIntegrator to take one time step.
 */
class IntegrateLangevinStepKernel : public KernelImpl {
public:
    static std::string Name() {
        return "IntegrateLangevinStep";
    }
348
    IntegrateLangevinStepKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
349
350
    }
    /**
351
     * Initialize the kernel.
352
     * 
353
354
     * @param system     the System this kernel will be applied to
     * @param integrator the LangevinIntegrator this kernel will be used for
355
     */
356
    virtual void initialize(const System& system, const LangevinIntegrator& integrator) = 0;
357
358
359
    /**
     * Execute the kernel.
     * 
360
361
     * @param context    the context in which to execute this kernel
     * @param integrator the LangevinIntegrator this kernel is being used for
362
     */
363
    virtual void execute(OpenMMContextImpl& context, const LangevinIntegrator& integrator) = 0;
364
365
366
367
368
369
370
371
372
373
};

/**
 * This kernel is invoked by BrownianIntegrator to take one time step.
 */
class IntegrateBrownianStepKernel : public KernelImpl {
public:
    static std::string Name() {
        return "IntegrateBrownianStep";
    }
374
    IntegrateBrownianStepKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
375
376
    }
    /**
377
     * Initialize the kernel.
378
     * 
379
380
     * @param system     the System this kernel will be applied to
     * @param integrator the BrownianIntegrator this kernel will be used for
381
     */
382
    virtual void initialize(const System& system, const BrownianIntegrator& integrator) = 0;
383
384
385
    /**
     * Execute the kernel.
     * 
386
387
     * @param context    the context in which to execute this kernel
     * @param integrator the BrownianIntegrator this kernel is being used for
388
     */
389
    virtual void execute(OpenMMContextImpl& context, const BrownianIntegrator& integrator) = 0;
390
391
392
};

/**
Peter Eastman's avatar
Peter Eastman committed
393
 * This kernel is invoked by AndersenThermostat at the start of each time step to adjust the particle velocities.
394
395
396
397
398
399
 */
class ApplyAndersenThermostatKernel : public KernelImpl {
public:
    static std::string Name() {
        return "ApplyAndersenThermostat";
    }
400
    ApplyAndersenThermostatKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
401
402
    }
    /**
403
     * Initialize the kernel.
404
     * 
405
406
     * @param system     the System this kernel will be applied to
     * @param thermostat the AndersenThermostat this kernel will be used for
407
     */
408
    virtual void initialize(const System& system, const AndersenThermostat& thermostat) = 0;
409
410
411
    /**
     * Execute the kernel.
     * 
412
     * @param context    the context in which to execute this kernel
413
     */
414
    virtual void execute(OpenMMContextImpl& context) = 0;
415
416
417
418
419
420
421
422
423
424
};

/**
 * This kernel is invoked to calculate the kinetic energy of the system.
 */
class CalcKineticEnergyKernel : public KernelImpl {
public:
    static std::string Name() {
        return "CalcKineticEnergy";
    }
425
    CalcKineticEnergyKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
426
427
    }
    /**
428
     * Initialize the kernel.
429
     * 
430
     * @param system     the System this kernel will be applied to
431
     */
432
    virtual void initialize(const System& system) = 0;
433
434
435
    /**
     * Execute the kernel.
     * 
436
     * @param context    the context in which to execute this kernel
437
     */
438
    virtual double execute(OpenMMContextImpl& context) = 0;
439
440
};

441
442
443
444
445
446
447
448
449
450
451
/**
 * This kernel is invoked to remove center of mass motion from the system.
 */
class RemoveCMMotionKernel : public KernelImpl {
public:
    static std::string Name() {
        return "RemoveCMMotion";
    }
    RemoveCMMotionKernel(std::string name, const Platform& platform) : KernelImpl(name, platform) {
    }
    /**
452
     * Initialize the kernel.
453
     * 
454
455
     * @param system     the System this kernel will be applied to
     * @param force      the CMMotionRemover this kernel will be used for
456
     */
457
    virtual void initialize(const System& system, const CMMotionRemover& force) = 0;
458
459
460
    /**
     * Execute the kernel.
     * 
461
     * @param context    the context in which to execute this kernel
462
     */
463
    virtual void execute(OpenMMContextImpl& context) = 0;
464
465
};

466
467
468
} // namespace OpenMM

#endif /*OPENMM_KERNELS_H_*/