source: src/Fragmentation/Summation/Containers/FragmentationLongRangeResults.cpp@ 5c78e3

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Last change on this file since 5c78e3 was d29b31, checked in by Frederik Heber <heber@…>, 11 years ago

Longrange energy is now also calculated for level 1.

  • level 1 sum is incorrect within a molecule but correct between molecules.
  • TESTFIX: both analysing long range results required new ..LongRangeResults.dat as level 1 full_potential is missing for new summation.
  • TESTFIX: note that only change in O/PBC's .._LongRangeEnergy.dat is additional line for level 1. All other values are exactly the same as must be expected. (and .._Times.dat required replacement, too)
  • Property mode set to 100644
File size: 10.8 KB
Line 
1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2012 University of Bonn. All rights reserved.
5 * Copyright (C) 2013 Frederik Heber. All rights reserved.
6 *
7 *
8 * This file is part of MoleCuilder.
9 *
10 * MoleCuilder is free software: you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation, either version 2 of the License, or
13 * (at your option) any later version.
14 *
15 * MoleCuilder is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with MoleCuilder. If not, see <http://www.gnu.org/licenses/>.
22 */
23
24/*
25 * FragmentationLongRangeResults.cpp
26 *
27 * Created on: Aug 31, 2012
28 * Author: heber
29 */
30
31
32// include config.h
33#ifdef HAVE_CONFIG_H
34#include <config.h>
35#endif
36
37#include "CodePatterns/MemDebug.hpp"
38
39#include "FragmentationLongRangeResults.hpp"
40
41#include <boost/mpl/for_each.hpp>
42#include <boost/mpl/remove.hpp>
43#include <sstream>
44
45#include "CodePatterns/Assert.hpp"
46#include "CodePatterns/Log.hpp"
47
48#include "Fragmentation/KeySetsContainer.hpp"
49#include "Fragmentation/parseKeySetFile.hpp"
50#include "Fragmentation/Summation/Converter/DataConverter.hpp"
51#include "Fragmentation/Summation/Containers/createMatrixNrLookup.hpp"
52#include "Fragmentation/Summation/Containers/extractJobIds.hpp"
53#include "Fragmentation/Summation/AllLevelOrthogonalSummator.hpp"
54#include "Fragmentation/Summation/IndexSetContainer.hpp"
55#include "Fragmentation/Summation/OrthogonalSumUpPerLevel.hpp"
56#include "Fragmentation/Summation/SubsetMap.hpp"
57#include "Fragmentation/Summation/SumUpPerLevel.hpp"
58
59#include "Helpers/defs.hpp"
60
61FragmentationLongRangeResults::FragmentationLongRangeResults(
62 const std::map<JobId_t,MPQCData> &fragmentData,
63 std::map<JobId_t,VMGData> &longrangeData,
64 const KeySetsContainer& _KeySet,
65 const KeySetsContainer& _ForceKeySet) :
66 KeySet(_KeySet),
67 ForceKeySet(_ForceKeySet)
68{
69 initLookups(fragmentData, longrangeData);
70
71 // convert KeySetContainer to IndexSetContainer
72 container.reset(new IndexSetContainer(KeySet));
73 // create the map of all keysets
74 subsetmap.reset(new SubsetMap(*container));
75}
76
77void FragmentationLongRangeResults::initLookups(
78 const std::map<JobId_t,MPQCData> &fragmentData,
79 std::map<JobId_t,VMGData> &longrangeData
80 )
81{
82 // create lookup from job nr to fragment number
83 {
84 size_t MPQCFragmentCounter = 0;
85 std::vector<bool> ValueMask(fragmentData.size(), true);
86 const std::vector<JobId_t> mpqcjobids = extractJobIds<MPQCData>(fragmentData);
87 MPQCMatrixNrLookup =
88 createMatrixNrLookup(mpqcjobids, MPQCFragmentCounter, ValueMask);
89 }
90
91 {
92 size_t VMGFragmentCounter = 0;
93 std::vector<bool> ValueMask(longrangeData.size(), true);
94 const std::vector<JobId_t> vmgjobids = extractJobIds<VMGData>(longrangeData);
95 VMGMatrixNrLookup =
96 createMatrixNrLookup(vmgjobids, VMGFragmentCounter, ValueMask);
97 }
98}
99
100void FragmentationLongRangeResults::operator()(
101 const std::map<JobId_t,MPQCData> &fragmentData,
102 std::map<JobId_t,VMGData> &longrangeData,
103 const std::vector<VMGData> &fullsolutionData,
104 const std::vector<SamplingGrid> &full_sample)
105{
106 MaxLevel = subsetmap->getMaximumSetLevel();
107 LOG(1, "INFO: Summing up results till level " << MaxLevel << ".");
108 /// convert all MPQCData to MPQCDataMap_t
109 {
110 ASSERT( ForceKeySet.KeySets.size() == fragmentData.size(),
111 "FragmentationLongRangeResults::FragmentationLongRangeResults() - ForceKeySet's KeySets and fragmentData differ in size.");
112
113 OrthogonalSumUpPerLevel<MPQCDataGridMap_t, MPQCData, MPQCDataGridVector_t>(
114 fragmentData, MPQCMatrixNrLookup, container, subsetmap,
115 Result_Grid_fused, Result_perIndexSet_Grid);
116 OrthogonalSumUpPerLevel<MPQCDataFragmentMap_t, MPQCData, MPQCDataFragmentVector_t>(
117 fragmentData, MPQCMatrixNrLookup, container, subsetmap,
118 Result_Fragment_fused, Result_perIndexSet_Fragment);
119
120 // multiply each short-range potential with the respective charge
121 std::map<JobId_t,MPQCData>::const_iterator mpqciter = fragmentData.begin();
122 std::map<JobId_t,VMGData>::iterator vmgiter = longrangeData.begin();
123 for (; vmgiter != longrangeData.end(); ++mpqciter, ++vmgiter) {
124 vmgiter->second.sampled_potential *= mpqciter->second.sampled_grid;
125 }
126 // then sum up
127 OrthogonalSumUpPerLevel<VMGDataMap_t, VMGData, VMGDataVector_t>(
128 longrangeData, VMGMatrixNrLookup, container, subsetmap,
129 Result_LongRange_fused, Result_perIndexSet_LongRange);
130
131 Result_LongRangeIntegrated_fused.reserve(MaxLevel);
132 // NOTE: potential for level 1 is wrongly calculated within a molecule
133 // as saturation hydrogen are not removed on this level yet
134 for (size_t level = 1; level <= MaxLevel; ++level) {
135 // We have calculated three different contributions: e-e, e-n+n-n, and n-n.
136 // And we want to have e-e+e-n, n-n+n-e (where e-n = n-e).
137 // For each of these three contributions we have a full solution and summed
138 // up short range solutions.
139
140 // first we obtain the full e-e energy as potential times charge on the
141 // respective level.
142 const SamplingGrid &charge_weight =
143 boost::fusion::at_key<MPQCDataFused::sampled_grid>(Result_Grid_fused[level-1]);
144 SamplingGrid full_sample_solution = fullsolutionData[level-1].sampled_potential;
145 full_sample_solution *= charge_weight;
146 double electron_solution_energy = full_sample_solution.integral();
147
148 // then we subtract the summed-up short-range e-e interaction energy from
149 // the full solution.
150 const SamplingGrid &short_range_correction =
151 boost::fusion::at_key<VMGDataFused::sampled_potential>(Result_LongRange_fused[level-1]);
152 double electron_short_range_energy = short_range_correction.integral();
153 full_sample_solution -= short_range_correction;
154 electron_solution_energy -= electron_short_range_energy;
155 ASSERT( fabs(electron_solution_energy - full_sample_solution.integral()) < 1e-7,
156 "FragmentationLongRangeResults::operator() - integral and energy are not exchangeable.");
157
158 // then, we obtain the e-n+n-n full solution in the same way
159 double nuclei_solution_energy = fullsolutionData[level-1].nuclei_long;
160 double nuclei_short_range_energy =
161 boost::fusion::at_key<VMGDataFused::nuclei_long>(Result_LongRange_fused[level-1]);
162 nuclei_solution_energy -= nuclei_short_range_energy;
163
164 // and also the e-n full solution
165 double both_solution_energy = fullsolutionData[level-1].electron_long;
166 double both_short_range_energy =
167 boost::fusion::at_key<VMGDataFused::electron_long>(Result_LongRange_fused[level-1]);
168 both_solution_energy -= both_short_range_energy;
169
170 // energies from interpolation at nuclei position has factor of 1/2 already
171 electron_solution_energy *= .5;
172 electron_short_range_energy *= .5;
173
174 // At last, we subtract e-n from n-n+e-n for full solution and short-range
175 // correction.
176 nuclei_solution_energy -= both_solution_energy;
177 nuclei_short_range_energy -= both_short_range_energy;
178
179 VMGDataLongRangeMap_t instance;
180 boost::fusion::at_key<VMGDataFused::electron_longrange>(instance) = electron_solution_energy;
181// LOG(0, "Remaining long-range potential integral of level " << level << " is "
182// << full_sample_solution.integral() << ".");
183 boost::fusion::at_key<VMGDataFused::electron_shortrange>(instance) = electron_short_range_energy;
184// LOG(0, "Short-range correction potential integral of level " << level << " is "
185// << short_range_correction.integral() << ".");
186 boost::fusion::at_key<VMGDataFused::mixed_longrange>(instance) = both_solution_energy;
187// LOG(0, "Remaining long-range energy from potential integral of level " << level << " is "
188// << full_solution_energy << ".");
189 boost::fusion::at_key<VMGDataFused::mixed_shortrange>(instance) = both_short_range_energy;
190// LOG(0, "Short-range correction energy from potential integral of level " << level << " is "
191// << short_range_energy << ".");
192 boost::fusion::at_key<VMGDataFused::nuclei_longrange>(instance) = nuclei_solution_energy;
193// LOG(0, "Remaining long-range energy from potential integral of level " << level << " is "
194// << full_solution_energy << ".");
195 boost::fusion::at_key<VMGDataFused::nuclei_shortrange>(instance) = nuclei_short_range_energy;
196// LOG(0, "Short-range correction energy from potential integral of level " << level << " is "
197// << short_range_energy << ".");
198 boost::fusion::at_key<VMGDataFused::total_longrange>(instance) =
199 boost::fusion::at_key<VMGDataFused::electron_longrange>(instance)
200 + 2.*boost::fusion::at_key<VMGDataFused::mixed_longrange>(instance)
201 + boost::fusion::at_key<VMGDataFused::nuclei_longrange>(instance);
202 boost::fusion::at_key<VMGDataFused::total_shortrange>(instance) =
203 boost::fusion::at_key<VMGDataFused::electron_shortrange>(instance)
204 + 2.*boost::fusion::at_key<VMGDataFused::mixed_shortrange>(instance)
205 + boost::fusion::at_key<VMGDataFused::nuclei_shortrange>(instance);
206 Result_LongRangeIntegrated_fused.push_back(instance);
207 }
208// {
209// // LOG(0, "Remaining long-range energy from energy_potential is " << full_sample_solution.integral()-epotentialSummer.getFullContribution() << ".");
210// SamplingGrid full_sample_solution = fullsolutionData.back().sampled_potential;
211// const SamplingGrid &short_range_correction =
212// boost::fusion::at_key<VMGDataFused::sampled_potential>(Result_LongRange_fused.back()).getFullContribution();
213// full_sample_solution -= short_range_correction;
214// // multiply element-wise with charge distribution
215// LOG(0, "Remaining long-range potential integral is " << full_sample_solution.integral() << ".");
216// LOG(0, "Short-range correction potential integral of level is " << short_range_correction.integral() << ".");
217// LOG(0, "Remaining long-range energy from potential integral is "
218// << full_sample_solution.integral(full_sample.back()) << ".");
219// LOG(0, "Short-range correction energy from potential integral is "
220// << short_range_correction.integral(full_sample.back()) << ".");
221//
222// double e_long = fullsolutionData.back().e_long;
223// e_long -= boost::fusion::at_key<VMGDataFused::energy_long>(Result_LongRange_fused.back()).getFullContribution();
224// LOG(0, "Remaining long-range energy is " << e_long << ".");
225// }
226
227 // TODO: Extract long-range corrections to forces
228 // NOTE: potential is in atomic length units, NOT IN ANGSTROEM!
229
230 }
231}
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