source: src/units/particle/interface_fcs.cpp@ 30f2139

Last change on this file since 30f2139 was 30f2139, checked in by Olaf Lenz <olenz@…>, 13 years ago

Merge branch 'p3m-ad-i'

git-svn-id: https://svn.version.fz-juelich.de/scafacos/trunk@2418 5161e1c8-67bf-11de-9fd5-51895aff932f

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1/*
2 * vmg - a versatile multigrid solver
3 * Copyright (C) 2012 Institute for Numerical Simulation, University of Bonn
4 *
5 * vmg is free software: you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation, either version 3 of the License, or
8 * (at your option) any later version.
9 *
10 * vmg is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program. If not, see <http://www.gnu.org/licenses/>.
17 */
18
19/**
20 * @file interface_fcs.cpp
21 * @author Julian Iseringhausen <isering@ins.uni-bonn.de>
22 * @date Mon Apr 18 12:56:20 2011
23 *
24 * @brief VMG::InterfaceFCS
25 *
26 */
27
28#ifdef HAVE_CONFIG_H
29#include <config.h>
30#endif
31
32#ifndef HAVE_MPI
33#error MPI is needed to use the Scafacos interface.
34#endif
35
36#include <mpi.h>
37#ifdef HAVE_MARMOT
38#include <enhancempicalls.h>
39#include <sourceinfompicalls.h>
40#endif
41
42#include "base/object.hpp"
43#include "base/timer.hpp"
44#include "comm/domain_decomposition_mpi.hpp"
45#ifdef DEBUG
46#include "comm/mpi/error_handler.hpp"
47#endif
48#include "cycles/cycle_cs_periodic.hpp"
49#include "cycles/cycle_fas_dirichlet.hpp"
50#include "level/level_operator_cs.hpp"
51#include "level/level_operator_fas.hpp"
52#include "level/stencils.hpp"
53#include "samples/discretization_poisson_fd.hpp"
54#include "samples/discretization_poisson_fv.hpp"
55#include "smoother/gsrb_poisson_2.hpp"
56#include "smoother/gsrb_poisson_4.hpp"
57#include "solver/givens.hpp"
58#include "solver/solver_regular.hpp"
59#include "solver/solver_singular.hpp"
60#include "units/particle/comm_mpi_particle.hpp"
61#include "units/particle/interface_fcs.h"
62#include "units/particle/interface_particles.hpp"
63
64
65using namespace VMG;
66
67namespace VMGBackupSettings
68{
69 static vmg_int level = -1;
70 static vmg_int periodic[3] = {-1, -1, -1};
71 static vmg_int max_iter = -1;
72 static vmg_int smoothing_steps = -1;
73 static vmg_int cycle_type = -1;
74 static vmg_float precision = -1;
75 static vmg_float box_offset[3];
76 static vmg_float box_size = -1.0;
77 static vmg_int near_field_cells = -1;
78 static vmg_int interpolation_degree = -1;
79 static vmg_int discretization_order = -1;
80 static MPI_Comm mpi_comm;
81}
82
83static void VMG_fcs_init(vmg_int level, vmg_int* periodic,vmg_int max_iter,
84 vmg_int smoothing_steps, vmg_int cycle_type, vmg_float precision,
85 vmg_float* box_offset, vmg_float box_size,
86 vmg_int near_field_cells, vmg_int interpolation_degree,
87 vmg_int discretization_order, MPI_Comm mpi_comm)
88{
89 VMGBackupSettings::level = level;
90 std::memcpy(VMGBackupSettings::periodic, periodic, 3*sizeof(vmg_int));
91 VMGBackupSettings::max_iter = max_iter;
92 VMGBackupSettings::smoothing_steps = smoothing_steps;
93 VMGBackupSettings::cycle_type = cycle_type;
94 VMGBackupSettings::precision = precision;
95 std::memcpy(VMGBackupSettings::box_offset, box_offset, 3*sizeof(vmg_float));
96 VMGBackupSettings::box_size = box_size;
97 VMGBackupSettings::near_field_cells = near_field_cells;
98 VMGBackupSettings::interpolation_degree = interpolation_degree;
99 VMGBackupSettings::discretization_order = discretization_order;
100 VMGBackupSettings::mpi_comm = mpi_comm;
101
102#ifdef DEBUG
103 MPI_Errhandler mpiErrorHandler;
104 MPI_Comm_create_errhandler(VMG::MPI::ConvertToException, &mpiErrorHandler);
105 MPI_Comm_set_errhandler(mpi_comm, mpiErrorHandler);
106#endif
107
108 const Boundary boundary(periodic[0] ? Periodic : Open,
109 periodic[1] ? Periodic : Open,
110 periodic[2] ? Periodic : Open);
111
112 const bool singular = periodic[0] * periodic[1] * periodic[2];
113
114 /*
115 * Choose multigrid components
116 */
117 if (singular) {
118
119 new Particle::CommMPI(boundary, new DomainDecompositionMPI(), mpi_comm);
120 new DiscretizationPoissonFD(discretization_order);
121 new InterfaceParticles(boundary, 2, level, Vector(box_offset), box_size, near_field_cells, 0, 1.0);
122 new LevelOperatorCS(Stencils::RestrictionFullWeight, Stencils::InterpolationTrilinear);
123 new Givens<SolverSingular>();
124 new CycleCSPeriodic(cycle_type);
125
126 }else {
127
128 new Particle::CommMPI(boundary, new DomainDecompositionMPI(), mpi_comm);
129 new DiscretizationPoissonFV(discretization_order);
130 new InterfaceParticles(boundary, 2, level, Vector(box_offset), box_size, near_field_cells, 2, 1.6);
131 new LevelOperatorFAS(Stencils::RestrictionFullWeight, Stencils::Injection, Stencils::InterpolationTrilinear);
132 new Givens<SolverRegular>();
133 new CycleFASDirichlet(cycle_type);
134
135 }
136
137 /*
138 * Use Gauss-Seidel Red-Black ordering
139 */
140 if (discretization_order == 2)
141 new GaussSeidelRBPoisson2();
142 else
143 new GaussSeidelRBPoisson4();
144
145 /*
146 * Register required parameters
147 */
148 new ObjectStorage<int>("PRESMOOTHSTEPS", smoothing_steps);
149 new ObjectStorage<int>("POSTSMOOTHSTEPS", smoothing_steps);
150 new ObjectStorage<vmg_float>("PRECISION", precision);
151 new ObjectStorage<int>("MAX_ITERATION", max_iter);
152 new ObjectStorage<int>("PARTICLE_NEAR_FIELD_CELLS", near_field_cells);
153 new ObjectStorage<int>("PARTICLE_INTERPOLATION_DEGREE", interpolation_degree);
154
155 /*
156 * Post init
157 */
158 MG::PostInit();
159
160 /*
161 * Check whether the library is correctly initialized now.
162 */
163 MG::IsInitialized();
164}
165
166void VMG_fcs_setup(vmg_int level, vmg_int* periodic, vmg_int max_iter,
167 vmg_int smoothing_steps, vmg_int cycle_type, vmg_float precision,
168 vmg_float* box_offset, vmg_float box_size,
169 vmg_int near_field_cells, vmg_int interpolation_degree,
170 vmg_int discretization_order, MPI_Comm mpi_comm)
171{
172 if (VMGBackupSettings::level != level ||
173 VMGBackupSettings::periodic[0] != periodic[0] ||
174 VMGBackupSettings::periodic[1] != periodic[1] ||
175 VMGBackupSettings::periodic[2] != periodic[2] ||
176 VMGBackupSettings::max_iter != max_iter ||
177 VMGBackupSettings::smoothing_steps != smoothing_steps ||
178 VMGBackupSettings::cycle_type != cycle_type ||
179 VMGBackupSettings::precision != precision ||
180 VMGBackupSettings::box_offset[0] != box_offset[0] ||
181 VMGBackupSettings::box_offset[1] != box_offset[1] ||
182 VMGBackupSettings::box_offset[2] != box_offset[2] ||
183 VMGBackupSettings::box_size != box_size ||
184 VMGBackupSettings::near_field_cells != near_field_cells ||
185 VMGBackupSettings::interpolation_degree != interpolation_degree ||
186 VMGBackupSettings::discretization_order != discretization_order ||
187 VMGBackupSettings::mpi_comm != mpi_comm) {
188
189 VMG_fcs_destroy();
190 VMG_fcs_init(level, periodic, max_iter,
191 smoothing_steps, cycle_type, precision,
192 box_offset, box_size, near_field_cells,
193 interpolation_degree, discretization_order,
194 mpi_comm);
195
196 }
197}
198
199int VMG_fcs_check()
200{
201 const int& near_field_cells = MG::GetFactory().GetObjectStorageVal<int>("PARTICLE_NEAR_FIELD_CELLS");
202 const Multigrid& multigrid = *MG::GetRhs();
203 const Grid& grid = multigrid(multigrid.MaxLevel());
204
205 int error_code = 0;
206
207 if (!grid.Global().LocalSize().IsComponentwiseGreater(near_field_cells))
208 error_code = 1;
209
210 return MG::GetComm()->GlobalMax(error_code);
211}
212
213void VMG_fcs_run(vmg_float* x, vmg_float* q, vmg_float* p, vmg_float* f, vmg_int num_particles_local)
214{
215 /*
216 * Register parameters for later use.
217 */
218 new ObjectStorage<vmg_float*>("PARTICLE_POS_ARRAY", x);
219 new ObjectStorage<vmg_float*>("PARTICLE_CHARGE_ARRAY", q);
220 new ObjectStorage<vmg_float*>("PARTICLE_POTENTIAL_ARRAY", p);
221 new ObjectStorage<vmg_float*>("PARTICLE_FIELD_ARRAY", f);
222 new ObjectStorage<vmg_int>("PARTICLE_NUM_LOCAL", num_particles_local);
223
224 /*
225 * Start the multigrid solver
226 */
227 MG::Solve();
228
229#ifdef DEBUG_MEASURE_TIME
230 Timer::Print();
231#endif
232}
233
234void VMG_fcs_print_timer()
235{
236 Timer::Print();
237}
238
239void VMG_fcs_destroy(void)
240{
241 /*
242 * Delete all data.
243 */
244 MG::Destroy();
245}
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