source: src/interface/interface_particles.cpp@ ac6d04

Last change on this file since ac6d04 was ac6d04, checked in by Julian Iseringhausen <isering@…>, 14 years ago

Merge recent changes of the vmg library into ScaFaCos.

Includes a fix for the communication problems on Jugene.

git-svn-id: https://svn.version.fz-juelich.de/scafacos/trunk@1666 5161e1c8-67bf-11de-9fd5-51895aff932f

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File size: 6.9 KB
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1/**
2 * @file interface_particles.cpp
3 * @author Julian Iseringhausen <isering@ins.uni-bonn.de>
4 * @date Mon Apr 18 12:56:48 2011
5 *
6 * @brief VMG::InterfaceParticles
7 *
8 */
9
10#ifdef HAVE_CONFIG_H
11#include <config.h>
12#endif
13
14#ifdef HAVE_MPI
15#include <mpi.h>
16#ifdef HAVE_MARMOT
17#include <enhancempicalls.h>
18#include <sourceinfompicalls.h>
19#endif
20#endif
21
22#include <cmath>
23#include <cstring>
24
25#include "base/helper.hpp"
26#include "base/index.hpp"
27#include "base/linked_cell_list.hpp"
28#include "base/math.hpp"
29#include "base/vector.hpp"
30#include "comm/comm.hpp"
31#include "grid/grid.hpp"
32#include "grid/multigrid.hpp"
33#include "grid/tempgrid.hpp"
34#include "interface/interface_particles.hpp"
35#include "mg.hpp"
36
37using namespace VMG;
38
39void InterfaceParticles::ImportRightHandSide(Multigrid& multigrid)
40{
41 Index index_global, index_local, index;
42 Vector pos_rel, pos_abs, grid_val;
43
44 Factory& factory = MG::GetFactory();
45 Comm& comm = *MG::GetComm();
46
47 const int& near_field_cells = factory.GetObjectStorageVal<int>("PARTICLE_NEAR_FIELD_CELLS");
48
49 Grid& grid = multigrid(multigrid.MaxLevel());
50 Grid& particle_grid = comm.GetParticleGrid();
51
52 particle_grid.Clear();
53
54 assert(particle_grid.Global().LocalSize().IsComponentwiseGreater(near_field_cells));
55
56 /*
57 * Distribute particles to their processes
58 */
59 particles.clear();
60 comm.CommParticles(grid, particles);
61
62 /*
63 * Charge assignment on the grid
64 */
65 std::list<Particle::Particle>::iterator iter;
66
67#ifdef DEBUG_OUTPUT
68 vmg_float particle_charges = 0.0;
69 for (iter=particles.begin(); iter!=particles.end(); ++iter)
70 particle_charges += iter->Charge();
71 particle_charges = MG::GetComm()->GlobalSumRoot(particle_charges);
72 comm.PrintStringOnce("Particle list charge sum: %e", particle_charges);
73 comm.PrintString("Local number of particles: %d", particles.size());
74#endif
75
76 for (iter=particles.begin(); iter!=particles.end(); ++iter)
77 spl.SetSpline(particle_grid, *iter, near_field_cells);
78
79 // Communicate charges over halo
80 comm.CommFromGhosts(particle_grid);
81
82 // Assign charge values to the right hand side
83 for (index.X()=0; index.X()<grid.Local().Size().X(); ++index.X())
84 for (index.Y()=0; index.Y()<grid.Local().Size().Y(); ++index.Y())
85 for (index.Z()=0; index.Z()<grid.Local().Size().Z(); ++index.Z())
86 grid(index + grid.Local().Begin()) = 4.0 * Math::pi * particle_grid.GetVal(index + particle_grid.Local().Begin());
87
88#ifdef DEBUG_OUTPUT
89 Grid::iterator grid_iter;
90 vmg_float charge_sum = 0.0;
91 for (grid_iter=grid.Iterators().Local().Begin(); grid_iter!=grid.Iterators().Local().End(); ++grid_iter)
92 charge_sum += grid.GetVal(*grid_iter);
93 charge_sum = MG::GetComm()->GlobalSum(charge_sum);
94 comm.PrintStringOnce("Grid charge sum: %e", charge_sum);
95#endif
96}
97
98void InterfaceParticles::ExportSolution(Grid& grid)
99{
100 Index index;
101 vmg_float length;
102 Vector dist_vec;
103
104#ifdef DEBUG_OUTPUT
105 vmg_float e = 0.0;
106 vmg_float e_long = 0.0;
107 vmg_float e_self = 0.0;
108 vmg_float e_short = 0.0;
109 vmg_float e_shortcorr = 0.0;
110#endif
111
112 Factory& factory = MG::GetFactory();
113 Comm& comm = *MG::GetComm();
114
115 /*
116 * Get parameters and arrays
117 */
118 const vmg_int& num_particles_local = factory.GetObjectStorageVal<vmg_int>("PARTICLE_NUM_LOCAL");
119 const int& near_field_cells = factory.GetObjectStorageVal<int>("PARTICLE_NEAR_FIELD_CELLS");
120 vmg_float* p = factory.GetObjectStorageArray<vmg_float>("PARTICLE_POTENTIAL_ARRAY");
121 vmg_float* f = factory.GetObjectStorageArray<vmg_float>("PARTICLE_FORCE_ARRAY");
122
123 const vmg_float r_cut = (near_field_cells+0.5) * grid.Extent().MeshWidth().Max();
124
125 /*
126 * Initialize potential
127 */
128 for (vmg_int i=0; i<num_particles_local; ++i) {
129 p[i] = 0.0;
130 for (vmg_int j=0;j<3;++j)
131 f[3*i+j] = 0.;
132 }
133
134 /*
135 * Copy potential values to a grid with sufficiently large halo size.
136 * This may be optimized in future.
137 * The parameters of this grid have been set in the import step.
138 */
139 Grid& particle_grid = comm.GetParticleGrid();
140
141 for (index.X()=0; index.X()<grid.Local().Size().X(); ++index.X())
142 for (index.Y()=0; index.Y()<grid.Local().Size().Y(); ++index.Y())
143 for (index.Z()=0; index.Z()<grid.Local().Size().Z(); ++index.Z())
144 particle_grid(index + particle_grid.Local().Begin()) = grid.GetVal(index + grid.Local().Begin());
145
146 comm.CommToGhosts(particle_grid);
147
148 /*
149 * Do potential back-interpolation
150 */
151 std::list<Particle::Particle>::iterator p_iter;
152 for (p_iter=particles.begin(); p_iter!=particles.end(); ++p_iter) {
153
154 // Interpolate long range part of potential minus self-interaction
155 p_iter->Pot() = Helper::InterpolateTrilinear(p_iter->Pos(), particle_grid)
156 - p_iter->Charge() * spl.GetAntiDerivativeAtZero();
157
158#ifdef DEBUG_OUTPUT
159 // TODO The scaling with 1/2 may not be correct. Check that.
160 e_long += 0.5 * p_iter->Charge() * Helper::InterpolateTrilinear(p_iter->Pos(), particle_grid);
161 e_self += 0.5 * p_iter->Charge() * p_iter->Charge() * spl.GetAntiDerivativeAtZero();
162#endif
163
164 }
165
166 /*
167 * Compute near field correction
168 */
169 Particle::LinkedCellList lc(particles, near_field_cells, grid);
170 Particle::LinkedCellList::iterator p1, p2;
171 Grid::iterator iter;
172
173 comm.CommLCListToGhosts(grid, lc);
174
175 for (iter=lc.Iterators().Local().Begin(); iter!=lc.Iterators().Local().End(); ++iter) {
176 std::list<Particle::Particle*>& lc_1 = lc(*iter);
177 for (p1=lc_1.begin(); p1!=lc_1.end(); ++p1)
178 for (index.X()=-1*near_field_cells-1; index.X()<=near_field_cells+1; ++index.X())
179 for (index.Y()=-1*near_field_cells-1; index.Y()<=near_field_cells+1; ++index.Y())
180 for (index.Z()=-1*near_field_cells-1; index.Z()<=near_field_cells+1; ++index.Z()) {
181 std::list<Particle::Particle*>& lc_2 = lc(*iter+index);
182 for (p2=lc_2.begin(); p2!=lc_2.end(); ++p2)
183 if (*p1 != *p2) {
184
185 length = ((*p2)->Pos() - (*p1)->Pos()).Length();
186
187 //TODO Rewrite this equation more efficiently
188 if (length < r_cut) {
189 (*p1)->Pot() += (*p2)->Charge() / length * (1.0 - spl.EvaluatePotential(length));
190
191#ifdef DEBUG_OUTPUT
192 e_short += 0.5 * (*p1)->Charge() * (*p2)->Charge() / length;
193 e_shortcorr -= 0.5 * (*p1)->Charge() * (*p2)->Charge() / length * spl.EvaluatePotential(length);
194#endif
195
196 }
197 }
198 }
199 }
200
201 comm.CommParticlesBack(particles);
202
203#ifdef DEBUG_OUTPUT
204 vmg_float* q = factory.GetObjectStorageArray<vmg_float>("PARTICLE_CHARGE_ARRAY");
205
206 for (int i=0; i<num_particles_local; ++i)
207 e += 0.5 * p[i] * q[i];
208
209 e = comm.GlobalSumRoot(e);
210 e_long = comm.GlobalSumRoot(e_long);
211 e_self = comm.GlobalSumRoot(e_self);
212 e_short = comm.GlobalSumRoot(e_short);
213 e_shortcorr = comm.GlobalSumRoot(e_shortcorr);
214
215 comm.PrintStringOnce("E_long: %e", e_long);
216 comm.PrintStringOnce("E_short: %e", e_short);
217 comm.PrintStringOnce("E_shortcorr: %e", e_shortcorr);
218 comm.PrintStringOnce("E_short*: %e", e - e_long + e_self);
219 comm.PrintStringOnce("E_self: %e", e_self);
220 comm.PrintStringOnce("E_total: %e", e);
221
222#endif /* DEBUG_OUTPUT */
223
224}
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