source: src/Actions/AnalysisAction/DipoleAngularCorrelationAction.cpp@ a860a1

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Last change on this file since a860a1 was a860a1, checked in by Frederik Heber <heber@…>, 14 years ago

TESTFIX: Regression test Analysis/DipoleAngularCorrelation now also checks per time step not over all time steps.

  • split up zero change (X) and true change (Y) case of the rotating water molecule; otherwise output files get mixed.
  • removed AT_XFAIL_IF from these tests.
  • Property mode set to 100644
File size: 3.7 KB
Line 
1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2010 University of Bonn. All rights reserved.
5 * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
6 */
7
8/*
9 * DipoleAngularCorrelationAction.cpp
10 *
11 * Created on: Feb 11, 2011
12 * Author: heber
13 */
14
15// include config.h
16#ifdef HAVE_CONFIG_H
17#include <config.h>
18#endif
19
20#include "CodePatterns/MemDebug.hpp"
21
22#include "Analysis/analysis_correlation.hpp"
23#include "Tesselation/boundary.hpp"
24#include "linkedcell.hpp"
25#include "CodePatterns/Log.hpp"
26#include "Element/element.hpp"
27#include "molecule.hpp"
28#include "Element/periodentafel.hpp"
29#include "LinearAlgebra/Vector.hpp"
30#include "World.hpp"
31#include "WorldTime.hpp"
32
33#include <iostream>
34#include <map>
35#include <string>
36
37#include "Actions/AnalysisAction/DipoleAngularCorrelationAction.hpp"
38
39using namespace MoleCuilder;
40
41// and construct the stuff
42#include "DipoleAngularCorrelationAction.def"
43#include "Action_impl_pre.hpp"
44
45/** =========== define the function ====================== */
46Action::state_ptr AnalysisDipoleAngularCorrelationAction::performCall() {
47 //int ranges[3] = {1, 1, 1};
48 string type;
49
50 // obtain information
51 getParametersfromValueStorage();
52 ASSERT(!params.periodic, "AnalysisDipoleAngularCorrelationAction() - periodic case not implemented.");
53
54 // get selected atoms
55 std::vector<atom*> atoms = World::getInstance().getSelectedAtoms();
56 ASSERT(atoms.size() != 0, "AnalysisDipoleAngularCorrelationAction() - not atoms selected.");
57
58 // get current time step
59 const unsigned int oldtime = WorldTime::getTime();
60
61 // obtain zero dipole orientation
62 World::getInstance().setTime(0);
63 std::map<atomId_t, Vector> ZeroVector = CalculateZeroAngularDipole(atoms);
64
65 // go through each step of common trajectory of all atoms in set
66 range<size_t> timesteps = getMaximumTrajectoryBounds(atoms);
67 for (size_t step = 0; step < timesteps.first; ++step) {
68 // calculate dipoles relative to zero orientation
69 DipoleAngularCorrelationMap *correlationmap = NULL;
70 correlationmap = DipoleAngularCorrelation(atoms, step, ZeroVector);
71
72 // prepare step string in filename
73 std::stringstream stepstream;
74 stepstream << std::setw(4) << std::setfill('0') << step;
75 const std::string stepname(stepstream.str());
76
77 // output correlation map
78 ofstream output;
79 std::string filename = params.outputname.string()+"."+stepname+".dat";
80 output.open(filename.c_str());
81 OutputCorrelationMap<DipoleAngularCorrelationMap>(&output, correlationmap, OutputDipoleAngularCorrelation_Header, OutputDipoleAngularCorrelation_Value);
82 output.close();
83
84 // bin map
85 BinPairMap *binmap = BinData( correlationmap, params.BinWidth, params.BinStart, params.BinEnd );
86
87 // free correlation map
88 delete(correlationmap);
89
90 // output binned map
91 ofstream binoutput;
92 std::string binfilename = params.binoutputname.string()+"."+stepname+".dat";
93 binoutput.open(binfilename.c_str());
94 OutputCorrelationMap<BinPairMap> ( &binoutput, binmap, OutputCorrelation_Header, OutputCorrelation_Value );
95 binoutput.close();
96
97 // free binned map
98 delete(binmap);
99 }
100
101 // reset to old time step
102 World::getInstance().setTime(oldtime);
103
104 // exit
105 return Action::success;
106}
107
108Action::state_ptr AnalysisDipoleAngularCorrelationAction::performUndo(Action::state_ptr _state) {
109 return Action::success;
110}
111
112Action::state_ptr AnalysisDipoleAngularCorrelationAction::performRedo(Action::state_ptr _state){
113 return Action::success;
114}
115
116bool AnalysisDipoleAngularCorrelationAction::canUndo() {
117 return true;
118}
119
120bool AnalysisDipoleAngularCorrelationAction::shouldUndo() {
121 return true;
122}
123/** =========== end of function ====================== */
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