kCalculateAmoebaCudaPmeMutualInducedField.h 10.6 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
/* -------------------------------------------------------------------------- *
 *                                   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: Scott Le Grand, Peter Eastman                                     *
 * 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 <http://www.gnu.org/licenses/>.      *
 * -------------------------------------------------------------------------- */

#include "amoebaScaleFactors.h"

__global__
#if (__CUDA_ARCH__ >= 200)
__launch_bounds__(GF1XX_NONBOND_THREADS_PER_BLOCK, 1)
Peter Eastman's avatar
Peter Eastman committed
32
#elif (__CUDA_ARCH__ >= 120)
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
__launch_bounds__(GT2XX_NONBOND_THREADS_PER_BLOCK, 1)
#else
__launch_bounds__(G8X_NONBOND_THREADS_PER_BLOCK, 1)
#endif
void METHOD_NAME(kCalculateAmoebaPmeMutualInducedField, _kernel)(
                            unsigned int* workUnit,
                            float* outputField, float* outputFieldPolar
#ifdef AMOEBA_DEBUG
                           , float4* debugArray, unsigned int targetAtom
#endif
){

    extern __shared__ MutualInducedParticle sA[];

    unsigned int totalWarps      = gridDim.x*blockDim.x/GRID;
    unsigned int warp            = (blockIdx.x*blockDim.x+threadIdx.x)/GRID;
    unsigned int numWorkUnits    = cSim.pInteractionCount[0];
    unsigned int pos             = warp*numWorkUnits/totalWarps;
    unsigned int end             = (warp+1)*numWorkUnits/totalWarps;
    unsigned int lasty           = 0xFFFFFFFF;
    const float uscale           = 1.0f;

#ifdef AMOEBA_DEBUG
    float4 pullBack[4];
#endif

    while (pos < end)
    {

        unsigned int x;
        unsigned int y;
        bool bExclusionFlag;

        // Extract cell coordinates

        decodeCell( workUnit[pos], &x, &y, &bExclusionFlag );

        unsigned int tgx                 = threadIdx.x & (GRID - 1);
        unsigned int tbx                 = threadIdx.x - tgx;
        unsigned int tj                  = tgx;

        MutualInducedParticle*  psA      = &sA[tbx];
        unsigned int atomI               = x + tgx;
        MutualInducedParticle localParticle;
        loadMutualInducedShared( &localParticle, atomI );

        float fieldSum[3];
        float fieldPolarSum[3];

        // 0: field at i due to j
        // 1: field at i due to j polar

        fieldSum[0]                      = 0.0f;
        fieldSum[1]                      = 0.0f;
        fieldSum[2]                      = 0.0f;

        fieldPolarSum[0]                 = 0.0f;
        fieldPolarSum[1]                 = 0.0f;
        fieldPolarSum[2]                 = 0.0f;

        if (x == y) // Handle diagonals uniquely at 50% efficiency
        {

            // load shared data

            loadMutualInducedShared( &(sA[threadIdx.x]), atomI );

            for (unsigned int j = 0; j < GRID; j++)
            {

                // load coords, charge, ...

Mark Friedrichs's avatar
Mark Friedrichs committed
105
106
                float4 delta;
                float prefactor2;
Mark Friedrichs's avatar
Mark Friedrichs committed
107
                if(  ( (atomI != (y + j)) && (atomI < cSim.atoms) && ((y+j) < cSim.atoms) ) ){
Mark Friedrichs's avatar
Mark Friedrichs committed
108
                    setupMutualInducedFieldPairIxn_kernel( localParticle, psA[j], uscale, &delta, &prefactor2 );
Mark Friedrichs's avatar
Mark Friedrichs committed
109
110
111
//delta.w = prefactor2 = 0.0f;
                    calculateMutualInducedFieldPairIxn_kernel(  psA[j].inducedDipole,      delta, prefactor2, fieldSum );
                    calculateMutualInducedFieldPairIxn_kernel(  psA[j].inducedDipolePolar, delta, prefactor2, fieldPolarSum );
Mark Friedrichs's avatar
Mark Friedrichs committed
112
                }
Mark Friedrichs's avatar
Mark Friedrichs committed
113

114
115
116
117
118
            }

            // Write results

#ifdef USE_OUTPUT_BUFFER_PER_WARP
119
            unsigned int offset            = 3*(x + tgx + warp*cSim.paddedNumberOfAtoms);
120
#else
121
            unsigned int offset            = 3*(x + tgx + (x >> GRIDBITS) * cSim.paddedNumberOfAtoms);
Mark Friedrichs's avatar
Mark Friedrichs committed
122
#endif
123
124
125
126
            load3dArray( offset, fieldSum,      outputField );
            load3dArray( offset, fieldPolarSum, outputFieldPolar);


Mark Friedrichs's avatar
Mark Friedrichs committed
127
        } else {
128

Mark Friedrichs's avatar
Mark Friedrichs committed
129
130
131
132
133
134
            if (lasty != y)
            {
                unsigned int atomJ        = y + tgx;
                loadMutualInducedShared( &(sA[threadIdx.x]), atomJ );
            }
    
Mark Friedrichs's avatar
Mark Friedrichs committed
135
136
137
138
            unsigned int flags = cSim.pInteractionFlag[pos];
            if (flags == 0) {
                // No interactions in this block.
            } else {
139

Mark Friedrichs's avatar
Mark Friedrichs committed
140
141
142
143
#ifndef INCLUDE_MI_FIELD_BUFFERS
                flags = 0xFFFFFFFF;
#endif

Mark Friedrichs's avatar
Mark Friedrichs committed
144
145
146
147
               // zero shared fields
    
                zeroMutualInducedParticleSharedField(  &(sA[threadIdx.x]) );
    
Mark Friedrichs's avatar
Mark Friedrichs committed
148
149
                for (unsigned int j = 0; j < GRID; j++){
                    if ((flags&(1<<j)) != 0) {
Peter Eastman's avatar
Peter Eastman committed
150
                        unsigned int jIdx = (flags == 0xFFFFFFFF) ? tj : j;
Mark Friedrichs's avatar
Mark Friedrichs committed
151
152
                        float4 delta;
                        float prefactor2;
Mark Friedrichs's avatar
Mark Friedrichs committed
153
                        if( (atomI < cSim.atoms) && ((y+jIdx) < cSim.atoms) ){
Mark Friedrichs's avatar
Mark Friedrichs committed
154
                            setupMutualInducedFieldPairIxn_kernel( localParticle, psA[jIdx], uscale, &delta, &prefactor2 );
Mark Friedrichs's avatar
Mark Friedrichs committed
155
156
                            calculateMutualInducedFieldPairIxn_kernel(  psA[jIdx].inducedDipole,          delta, prefactor2, fieldSum );
                            calculateMutualInducedFieldPairIxn_kernel(  psA[jIdx].inducedDipolePolar,     delta, prefactor2, fieldPolarSum );
Mark Friedrichs's avatar
Mark Friedrichs committed
157
158
159
#ifndef INCLUDE_MI_FIELD_BUFFERS
                            calculateMutualInducedFieldPairIxn_kernel(  localParticle.inducedDipole,      delta, prefactor2, psA[jIdx].field );
                            calculateMutualInducedFieldPairIxn_kernel(  localParticle.inducedDipolePolar, delta, prefactor2, psA[jIdx].fieldPolar );
Mark Friedrichs's avatar
Mark Friedrichs committed
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
#else
                            if( flags == 0xFFFFFFFF ){
                                calculateMutualInducedFieldPairIxn_kernel(  localParticle.inducedDipole,      delta, prefactor2, psA[jIdx].field );
                                calculateMutualInducedFieldPairIxn_kernel(  localParticle.inducedDipolePolar, delta, prefactor2, psA[jIdx].fieldPolar );
                            } else {
                                calculateMutualInducedFieldPairIxnNoAdd_kernel(  localParticle.inducedDipole,      delta, prefactor2,  sA[threadIdx.x].tempBuffer );
                                calculateMutualInducedFieldPairIxnNoAdd_kernel(  localParticle.inducedDipolePolar, delta, prefactor2,  sA[threadIdx.x].tempBufferP );
    
                                if( tgx % 2 == 0 ){
                                    sumTempBuffer( sA[threadIdx.x], sA[threadIdx.x+1] );
                                }
                                if( tgx % 4 == 0 ){
                                    sumTempBuffer( sA[threadIdx.x], sA[threadIdx.x+2] );
                                }
                                if( tgx % 8 == 0 ){
                                    sumTempBuffer( sA[threadIdx.x], sA[threadIdx.x+4] );
                                }
                                if( tgx % 16 == 0 ){
                                    sumTempBuffer( sA[threadIdx.x], sA[threadIdx.x+8] );
                                }
    
                                if (tgx == 0)
                                {
                                    psA[jIdx].field[0]         += sA[threadIdx.x].tempBuffer[0]  + sA[threadIdx.x+16].tempBuffer[0];
                                    psA[jIdx].field[1]         += sA[threadIdx.x].tempBuffer[1]  + sA[threadIdx.x+16].tempBuffer[1];
                                    psA[jIdx].field[2]         += sA[threadIdx.x].tempBuffer[2]  + sA[threadIdx.x+16].tempBuffer[2];
    
                                    psA[jIdx].fieldPolar[0]    += sA[threadIdx.x].tempBufferP[0] + sA[threadIdx.x+16].tempBufferP[0];
                                    psA[jIdx].fieldPolar[1]    += sA[threadIdx.x].tempBufferP[1] + sA[threadIdx.x+16].tempBufferP[1];
                                    psA[jIdx].fieldPolar[2]    += sA[threadIdx.x].tempBufferP[2] + sA[threadIdx.x+16].tempBufferP[2];
                                }
    
Peter Eastman's avatar
Peter Eastman committed
192
                            }
193
#endif
Mark Friedrichs's avatar
Mark Friedrichs committed
194
                        }
Peter Eastman's avatar
Peter Eastman committed
195
                    }
Mark Friedrichs's avatar
Mark Friedrichs committed
196
197
198
199
200
201
202
    
                    tj                  = (tj + 1) & (GRID - 1);
    
                } // end of j-loop
    
                // Write results
    
203
#ifdef USE_OUTPUT_BUFFER_PER_WARP
204
                unsigned int offset     = 3*(x + tgx + warp*cSim.paddedNumberOfAtoms);
Mark Friedrichs's avatar
Mark Friedrichs committed
205
206
207
                load3dArrayBufferPerWarp( offset, fieldSum,      outputField );
                load3dArrayBufferPerWarp( offset, fieldPolarSum, outputFieldPolar);
    
208
                offset                  = 3*(y + tgx + warp*cSim.paddedNumberOfAtoms);
Mark Friedrichs's avatar
Mark Friedrichs committed
209
210
211
212
    
                load3dArrayBufferPerWarp( offset, sA[threadIdx.x].field,      outputField );
                load3dArrayBufferPerWarp( offset, sA[threadIdx.x].fieldPolar, outputFieldPolar);
    
213
#else
214
                unsigned int offset     = 3*(x + tgx + (y >> GRIDBITS) * cSim.paddedNumberOfAtoms);
Mark Friedrichs's avatar
Mark Friedrichs committed
215
216
217
                load3dArray( offset, fieldSum,      outputField );
                load3dArray( offset, fieldPolarSum, outputFieldPolar);
    
218
                offset                  = 3*(y + tgx + (x >> GRIDBITS) * cSim.paddedNumberOfAtoms);
Mark Friedrichs's avatar
Mark Friedrichs committed
219
220
221
                load3dArray( offset, sA[threadIdx.x].field,      outputField );
                load3dArray( offset, sA[threadIdx.x].fieldPolar, outputFieldPolar);
    
222
#endif
Mark Friedrichs's avatar
Mark Friedrichs committed
223
224
225
                lasty = y;
    
            } // end of pInteractionFlag block
226

Mark Friedrichs's avatar
Mark Friedrichs committed
227
        } // end of x == y block
228
229
230
        pos++;
    }
}