source: src/Jobs/VMGJob.cpp@ a86666

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Last change on this file since a86666 was e2925fd, checked in by Frederik Heber <heber@…>, 12 years ago

Split long-range calculations into two parts to overcome E-N-potential problems.

The general problem is that smeared-out nuclei charges cannot interact with
electron charge densities as they always overlap, hence we always make a large
error. The idea then is - as the potential energy is symmetric both
densities - to flip from N-E to E-N, i.\,e. to take the electron potential and
evaluate at nuclei positions instead of smeared-out nuclei charges with
eletronic charge distribution. However, then we need to make two calculations
for the four contributions: E-E, E-N and N-N, N-E (=E-N).

  • new enums SampleParticles_t eventually tells InterfaceVMGJob whether to sample the nuclei charges onto the grid or not.
  • TreatGrid_t tells InterfaceVMGJob whether to actually add the electronic charge onto the grid (this was added but is actually not required anymore).
  • FragmentationAutomationAction::performCall() now creates twice as many long-range jobs. This requires two variables in VMGData for storing integrated long-range energy: electron_long, nuclei_long, as both calculations are combined into a single VMGData instance per fragment.
  • Summation of long-range contributions is split into three instead of formerly two parts: electron (E-E), nuclei (N-N), and mixed (E-N). This allows to easierly check their cancellation. This needs new member in fusion map and name in printKeyNames.
  • naturally, the enums have to be passed a long way: VMGFragmentController, VMGJob, VMGData.
  • VMGData now has serialization version 1 due to new entry.
  • we enhanced documentation in FragmentationLongRangeResults::operator()() of how and what is summed per level.
  • FIX: InterfaceVMGJob::ImportRightHandSide() subtracted grid instead of adding it. Now, we set correct sign of electron charge distribution in MPQC.
  • TESTFIX: Regression test AnalyseFragmentResults now has short- and long-range part. Long-range part is only diff'ed when the compiled code has the capabilities.
  • Property mode set to 100644
File size: 7.1 KB
Line 
1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2012 University of Bonn. All rights reserved.
5 *
6 *
7 * This file is part of MoleCuilder.
8 *
9 * MoleCuilder is free software: you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation, either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * MoleCuilder is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with MoleCuilder. If not, see <http://www.gnu.org/licenses/>.
21 */
22
23/*
24 * VMGJob.cpp
25 *
26 * Created on: Jul 13, 2012
27 * Author: heber
28 */
29
30
31// include config.h
32#ifdef HAVE_CONFIG_H
33#include <config.h>
34#endif
35
36#ifdef HAVE_MPI
37#include "mpi.h"
38#endif
39
40// include headers that implement a archive in simple text format
41// otherwise BOOST_CLASS_EXPORT_IMPLEMENT has no effect
42#include <boost/archive/text_oarchive.hpp>
43#include <boost/archive/text_iarchive.hpp>
44
45#include "mg.hpp"
46#include "base/object.hpp"
47#include "base/defs.hpp"
48
49#ifdef HAVE_MPI
50#include "comm/comm_mpi.hpp"
51#include "comm/domain_decomposition_mpi.hpp"
52#else
53#include "comm/comm_serial.hpp"
54#endif
55#include "cycles/cycle_cs_periodic.hpp"
56#include "grid/multigrid.hpp"
57//#include "grid/tempgrid.hpp"
58#include "level/level_operator_cs.hpp"
59#include "level/stencils.hpp"
60#include "samples/discretization_poisson_fd.hpp"
61#include "smoother/gsrb_poisson_4.hpp"
62#include "solver/givens.hpp"
63//#include "solver/solver_regular.hpp"
64#include "solver/solver_singular.hpp"
65#include "units/particle/comm_mpi_particle.hpp"
66
67#include "CodePatterns/MemDebug.hpp"
68
69#include "Jobs/VMGJob.hpp"
70
71#include "LinearAlgebra/defs.hpp"
72#include "Jobs/InterfaceVMGJob.hpp"
73
74#include "CodePatterns/Assert.hpp"
75
76using namespace VMG;
77
78VMGJob::VMGJob(
79 const JobId_t _JobId,
80 const SamplingGrid &_density_grid,
81 const std::vector< std::vector< double > > &_particle_positions,
82 const std::vector< double > &_particle_charges,
83 const size_t _near_field_cells,
84 const size_t _interpolation_degree,
85 const bool _DoImportParticles,
86 const bool _DoPrintDebug) :
87 FragmentJob(_JobId),
88 density_grid(_density_grid),
89 particle_positions(_particle_positions),
90 particle_charges(_particle_charges),
91 near_field_cells(_near_field_cells),
92 interpolation_degree(_interpolation_degree),
93 DoImportParticles(_DoImportParticles),
94 DoPrintDebug(_DoPrintDebug),
95 returndata(static_cast<const SamplingGridProperties &>(_density_grid)),
96 particles()
97{}
98
99VMGJob::VMGJob() :
100 FragmentJob(JobId::IllegalJob),
101 near_field_cells(3),
102 interpolation_degree(3),
103 DoImportParticles(true),
104 DoPrintDebug(false),
105 particles()
106{}
107
108VMGJob::~VMGJob()
109{
110}
111
112
113VMGJob::particle_arrays::particle_arrays() :
114 num_particles(0),
115 f(NULL),
116 x(NULL),
117 p(NULL),
118 q(NULL)
119{}
120
121VMGJob::particle_arrays::~particle_arrays()
122{
123 delete[] f;
124 delete[] x;
125 delete[] p;
126 delete[] q;
127}
128
129void VMGJob::particle_arrays::init(const size_t _num_particles)
130{
131 num_particles = _num_particles;
132 f = new double[num_particles*3];
133 x = new double[num_particles*3];
134 p = new double[num_particles];
135 q = new double[num_particles];
136}
137
138void VMGJob::InitVMGArrays()
139{
140 particles.init(particle_charges.size());
141
142 {
143 size_t index=0;
144 for (std::vector< std::vector< double > >::const_iterator iter = particle_positions.begin();
145 iter != particle_positions.end(); ++iter) {
146 for (std::vector< double >::const_iterator positer = (*iter).begin();
147 positer != (*iter).end(); ++positer) {
148 particles.f[index] = 0.;
149 particles.x[index++] = *positer;
150 }
151 }
152 ASSERT( index == particles.num_particles*3,
153 "VMGJob::VMGJob() - too many particles or components in particle_positions.");
154 }
155 {
156 size_t index = 0;
157 for (std::vector< double >::const_iterator iter = particle_charges.begin();
158 iter != particle_charges.end(); ++iter) {
159 particles.p[index] = 0.;
160 particles.q[index++] = *iter;
161 }
162 ASSERT( index == particles.num_particles,
163 "VMGJob::VMGJob() - too many charges in particle_charges.");
164 }
165}
166
167
168FragmentResult::ptr VMGJob::Work()
169{
170 // initialize VMG library solver
171 InitVMG();
172
173 /*
174 * Start the multigrid solver
175 */
176 MG::Solve();
177
178 /// create and fill result object
179 // place into returnstream
180 std::stringstream returnstream;
181 boost::archive::text_oarchive oa(returnstream);
182 oa << returndata;
183
184 FragmentResult::ptr ptr( new FragmentResult(getId(), returnstream.str()) );
185
186 /*
187 * Delete all data.
188 */
189 MG::Destroy();
190
191 return ptr;
192}
193
194/** Initialization of VMG library.
195 *
196 * The contents is heavily inspired from interface_fcs.cpp: VMG_fcs_init() of
197 * the ScaFaCoS project.
198 *
199 */
200void VMGJob::InitVMG()
201{
202 // TODO: As a matter of fact should use open boundary conditions
203 const Boundary boundary(Periodic, Periodic, Periodic);
204
205 /*
206 * Choose multigrid components (self-registering)
207 */
208#ifdef HAVE_MPI
209 new Particle::CommMPI(boundary, new DomainDecompositionMPI());
210#else
211 new CommSerial(boundary);
212#endif
213 new DiscretizationPoissonFD(4);
214 new VMGInterfaces::InterfaceVMGJob(
215 density_grid,
216 returndata,
217 particle_positions,
218 particle_charges,
219 boundary,
220 2,
221 density_grid.level,
222 Vector(density_grid.begin),
223 density_grid.end[0]-density_grid.begin[0],
224 near_field_cells,
225 DoImportParticles ?
226 VMGInterfaces::InterfaceVMGJob::DoImportParticles
227 : VMGInterfaces::InterfaceVMGJob::DontImportParticles,
228 DoPrintDebug);
229 new LevelOperatorCS(Stencils::RestrictionFullWeight, Stencils::InterpolationTrilinear);
230 new Givens<SolverSingular>();
231 const int cycle_type = 1; // V-type
232 new CycleCSPeriodic(cycle_type);
233 new GaussSeidelRBPoisson4();
234
235 /*
236 * Register required parameters
237 */
238 new ObjectStorage<int>("PRESMOOTHSTEPS", 3);
239 new ObjectStorage<int>("POSTSMOOTHSTEPS", 3);
240 new ObjectStorage<vmg_float>("PRECISION", 1.0e-10);
241 new ObjectStorage<int>("MAX_ITERATION", 15);
242 new ObjectStorage<int>("PARTICLE_NEAR_FIELD_CELLS", near_field_cells);
243 new ObjectStorage<int>("PARTICLE_INTERPOLATION_DEGREE", interpolation_degree);
244
245 // first initialize f,x,p,q,... from STL vectors
246 InitVMGArrays();
247 // then initialize as objects with VMG's storage
248 new ObjectStorage<vmg_float*>("PARTICLE_POS_ARRAY", particles.x);
249 new ObjectStorage<vmg_float*>("PARTICLE_CHARGE_ARRAY", particles.q);
250 new ObjectStorage<vmg_float*>("PARTICLE_POTENTIAL_ARRAY", particles.p);
251 new ObjectStorage<vmg_float*>("PARTICLE_FIELD_ARRAY", particles.f);
252 new ObjectStorage<vmg_int>("PARTICLE_NUM_LOCAL", particles.num_particles);
253
254 /*
255 * Post init
256 */
257 MG::PostInit();
258
259 /*
260 * Check whether the library is correctly initialized now.
261 */
262 MG::IsInitialized();
263}
264
265// we need to explicitly instantiate the serialization functions as
266// its is only serialized through its base class FragmentJob
267BOOST_CLASS_EXPORT_IMPLEMENT(VMGJob)
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