source: src/analyzer.cpp@ 674220

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Last change on this file since 674220 was 674220, checked in by Frederik Heber <heber@…>, 17 years ago

Implemented analysis of magnetic susceptibilites.

This is very similar to Sigma(PAS), however not with ForceMatrix class but with EnergyMatrix. This is still not finished and yet not working. However, it does not impact on other functions of joiner or analyzer.

  • Property mode set to 100644
File size: 29.2 KB
Line 
1/** \file analyzer.cpp
2 *
3 * Takes evaluated fragments (energy and forces) and does evaluation of how sensible the BOSSANOVA
4 * approach was, e.g. in the decay of the many-body-contributions.
5 *
6 */
7
8//============================ INCLUDES ===========================
9
10#include "datacreator.hpp"
11#include "helpers.hpp"
12#include "parser.hpp"
13#include "periodentafel.hpp"
14
15// include config.h
16#ifdef HAVE_CONFIG_H
17#include <config.h>
18#endif
19
20
21//============================== MAIN =============================
22
23int main(int argc, char **argv)
24{
25 periodentafel *periode = NULL; // and a period table of all elements
26 EnergyMatrix Energy;
27 EnergyMatrix Hcorrection;
28 ForceMatrix Force;
29 ForceMatrix Shielding;
30 ForceMatrix ShieldingPAS;
31 ForceMatrix Chi;
32 ForceMatrix ChiPAS;
33 EnergyMatrix Time;
34 EnergyMatrix EnergyFragments;
35 EnergyMatrix HcorrectionFragments;
36 ForceMatrix ForceFragments;
37 ForceMatrix ShieldingFragments;
38 ForceMatrix ShieldingPASFragments;
39 ForceMatrix ChiFragments;
40 ForceMatrix ChiPASFragments;
41 KeySetsContainer KeySet;
42 ofstream output;
43 ofstream output2;
44 ofstream output3;
45 ofstream output4;
46 ifstream input;
47 stringstream filename;
48 time_t t = time(NULL);
49 struct tm *ts = localtime(&t);
50 char *datum = asctime(ts);
51 stringstream Orderxrange;
52 stringstream Fragmentxrange;
53 stringstream yrange;
54 char *dir = NULL;
55 bool Hcorrected = true;
56 double norm;
57 int counter;
58
59 cout << "ANOVA Analyzer" << endl;
60 cout << "==============" << endl;
61
62 // Get the command line options
63 if (argc < 4) {
64 cout << "Usage: " << argv[0] << " <inputdir> <prefix> <outputdir> [elementsdb]" << endl;
65 cout << "<inputdir>\ttherein the output of a molecuilder fragmentation is expected, each fragment with a subdir containing an energy.all and a forces.all file." << endl;
66 cout << "<prefix>\tprefix of energy and forces file." << endl;
67 cout << "<outputdir>\tcreated plotfiles and datafiles are placed into this directory " << endl;
68 cout << "[elementsdb]\tpath to elements database, needed for shieldings." << endl;
69 return 1;
70 } else {
71 dir = (char *) Malloc(sizeof(char)*(strlen(argv[2])+2), "main: *dir");
72 strcpy(dir, "/");
73 strcat(dir, argv[2]);
74 }
75
76 if (argc > 4) {
77 cout << "Loading periodentafel." << endl;
78 periode = new periodentafel;
79 periode->LoadPeriodentafel(argv[4]);
80 }
81
82 // Test the given directory
83 if (!TestParams(argc, argv))
84 return 1;
85
86 // +++++++++++++++++ PARSING +++++++++++++++++++++++++++++++
87
88 // ------------- Parse through all Fragment subdirs --------
89 if (!Energy.ParseFragmentMatrix(argv[1], dir, EnergySuffix,0,0)) return 1;
90 Hcorrected = Hcorrection.ParseFragmentMatrix(argv[1], "", HCORRECTIONSUFFIX,0,0);
91 if (!Force.ParseFragmentMatrix(argv[1], dir, ForcesSuffix,0,0)) return 1;
92 if (!Time.ParseFragmentMatrix(argv[1], dir, TimeSuffix, 10,1)) return 1;
93 if (periode != NULL) { // also look for PAS values
94 if (!Shielding.ParseFragmentMatrix(argv[1], dir, ShieldingSuffix, 1, 0)) return 1;
95 if (!ShieldingPAS.ParseFragmentMatrix(argv[1], dir, ShieldingPASSuffix, 1, 0)) return 1;
96 if (!Chi.ParseFragmentMatrix(argv[1], dir, ChiSuffix, 1, 0)) return 1;
97 if (!ChiPAS.ParseFragmentMatrix(argv[1], dir, ChiPASSuffix, 1, 0)) return 1;
98 }
99
100 // ---------- Parse the TE Factors into an array -----------------
101 if (!Energy.ParseIndices()) return 1;
102 if (Hcorrected) Hcorrection.ParseIndices();
103
104 // ---------- Parse the Force indices into an array ---------------
105 if (!Force.ParseIndices(argv[1])) return 1;
106 if (!ForceFragments.AllocateMatrix(Force.Header, Force.MatrixCounter, Force.RowCounter, Force.ColumnCounter)) return 1;
107 if (!ForceFragments.ParseIndices(argv[1])) return 1;
108
109 // ---------- Parse the shielding indices into an array ---------------
110 if (periode != NULL) { // also look for PAS values
111 if(!Shielding.ParseIndices(argv[1])) return 1;
112 if(!ShieldingPAS.ParseIndices(argv[1])) return 1;
113 if (!ShieldingFragments.AllocateMatrix(Shielding.Header, Shielding.MatrixCounter, Shielding.RowCounter, Shielding.ColumnCounter)) return 1;
114 if (!ShieldingPASFragments.AllocateMatrix(ShieldingPAS.Header, ShieldingPAS.MatrixCounter, ShieldingPAS.RowCounter, ShieldingPAS.ColumnCounter)) return 1;
115 if(!ShieldingFragments.ParseIndices(argv[1])) return 1;
116 if(!ShieldingPASFragments.ParseIndices(argv[1])) return 1;
117 if(!Chi.ParseIndices(argv[1])) return 1;
118 if(!ChiPAS.ParseIndices(argv[1])) return 1;
119 if (!ChiFragments.AllocateMatrix(Chi.Header, Chi.MatrixCounter, Chi.RowCounter, Chi.ColumnCounter)) return 1;
120 if (!ChiPASFragments.AllocateMatrix(ChiPAS.Header, ChiPAS.MatrixCounter, ChiPAS.RowCounter, ChiPAS.ColumnCounter)) return 1;
121 if(!ChiFragments.ParseIndices(argv[1])) return 1;
122 if(!ChiPASFragments.ParseIndices(argv[1])) return 1;
123 }
124
125 // ---------- Parse the KeySets into an array ---------------
126 if (!KeySet.ParseKeySets(argv[1], Force.RowCounter, Force.MatrixCounter)) return 1;
127 if (!KeySet.ParseManyBodyTerms()) return 1;
128
129 // ---------- Parse fragment files created by 'joiner' into an array -------------
130 if (!EnergyFragments.ParseFragmentMatrix(argv[1], dir, EnergyFragmentSuffix,0,0)) return 1;
131 if (Hcorrected) HcorrectionFragments.ParseFragmentMatrix(argv[1], dir, HcorrectionFragmentSuffix,0,0);
132 if (!ForceFragments.ParseFragmentMatrix(argv[1], dir, ForceFragmentSuffix,0,0)) return 1;
133 if (periode != NULL) { // also look for PAS values
134 if (!ShieldingFragments.ParseFragmentMatrix(argv[1], dir, ShieldingFragmentSuffix, 1, 0)) return 1;
135 if (!ShieldingPASFragments.ParseFragmentMatrix(argv[1], dir, ShieldingPASFragmentSuffix, 1, 0)) return 1;
136 if (!ChiFragments.ParseFragmentMatrix(argv[1], dir, ChiFragmentSuffix, 1, 0)) return 1;
137 if (!ChiPASFragments.ParseFragmentMatrix(argv[1], dir, ChiPASFragmentSuffix, 1, 0)) return 1;
138 }
139
140 // +++++++++++++++ TESTING ++++++++++++++++++++++++++++++
141
142 // print energy and forces to file
143 filename.str("");
144 filename << argv[3] << "/" << "energy-forces.all";
145 output.open(filename.str().c_str(), ios::out);
146 output << endl << "Total Energy" << endl << "==============" << endl << Energy.Header << endl;
147 for(int j=0;j<Energy.RowCounter[Energy.MatrixCounter];j++) {
148 for(int k=0;k<Energy.ColumnCounter;k++)
149 output << scientific << Energy.Matrix[ Energy.MatrixCounter ][j][k] << "\t";
150 output << endl;
151 }
152 output << endl;
153
154 output << endl << "Total Forces" << endl << "===============" << endl << Force.Header << endl;
155 for(int j=0;j<Force.RowCounter[Force.MatrixCounter];j++) {
156 for(int k=0;k<Force.ColumnCounter;k++)
157 output << scientific << Force.Matrix[ Force.MatrixCounter ][j][k] << "\t";
158 output << endl;
159 }
160 output << endl;
161
162 if (periode != NULL) { // also look for PAS values
163 output << endl << "Total Shieldings" << endl << "===============" << endl << Shielding.Header << endl;
164 for(int j=0;j<Shielding.RowCounter[Shielding.MatrixCounter];j++) {
165 for(int k=0;k<Shielding.ColumnCounter;k++)
166 output << scientific << Shielding.Matrix[ Shielding.MatrixCounter ][j][k] << "\t";
167 output << endl;
168 }
169 output << endl;
170
171 output << endl << "Total Shieldings PAS" << endl << "===============" << endl << ShieldingPAS.Header << endl;
172 for(int j=0;j<ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter];j++) {
173 for(int k=0;k<ShieldingPAS.ColumnCounter;k++)
174 output << scientific << ShieldingPAS.Matrix[ ShieldingPAS.MatrixCounter ][j][k] << "\t";
175 output << endl;
176 }
177 output << endl;
178
179 output << endl << "Total Chis" << endl << "===============" << endl << Chi.Header[Hessian.MatrixCounter] << endl;
180 for(int j=0;j<Chi.RowCounter[Chi.MatrixCounter];j++) {
181 for(int k=0;k<Chi.ColumnCounter[Chi.MatrixCounter];k++)
182 output << scientific << Chi.Matrix[ Chi.MatrixCounter ][j][k] << "\t";
183 output << endl;
184 }
185 output << endl;
186
187 output << endl << "Total Chis PAS" << endl << "===============" << endl << ChiPAS.Header[ChiPAS.MatrixCounter] << endl;
188 for(int j=0;j<ChiPAS.RowCounter[ChiPAS.MatrixCounter];j++) {
189 for(int k=0;k<ChiPAS.ColumnCounter[ChiPAS.MatrixCounter];k++)
190 output << scientific << ChiPAS.Matrix[ ChiPAS.MatrixCounter ][j][k] << "\t";
191 output << endl;
192 }
193 output << endl;
194 }
195
196 output << endl << "Total Times" << endl << "===============" << endl << Time.Header << endl;
197 for(int j=0;j<Time.RowCounter[Time.MatrixCounter];j++) {
198 for(int k=0;k<Time.ColumnCounter;k++) {
199 output << scientific << Time.Matrix[ Time.MatrixCounter ][j][k] << "\t";
200 }
201 output << endl;
202 }
203 output << endl;
204 output.close();
205 for(int k=0;k<Time.ColumnCounter;k++)
206 Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter] ][k] = Time.Matrix[ Time.MatrixCounter ][Time.RowCounter[Time.MatrixCounter]-1][k];
207
208 // +++++++++++++++ ANALYZING ++++++++++++++++++++++++++++++
209
210 cout << "Analyzing ..." << endl;
211
212 // ======================================= Creating the data files ==============================================================
213
214 // +++++++++++++++++++++++++++++++++++++++ Plotting Simtime vs Bond Order
215 // +++++++++++++++++++++++++++++++++++++++ Plotting Delta Simtime vs Bond Order
216 if (!OpenOutputFile(output, argv[3], "SimTime-Order.dat" )) return false;
217 if (!OpenOutputFile(output2, argv[3], "DeltaSimTime-Order.dat" )) return false;
218 for(int j=Time.RowCounter[Time.MatrixCounter];j--;)
219 for(int k=Time.ColumnCounter;k--;) {
220 Time.Matrix[ Time.MatrixCounter ][j][k] = 0.;
221 }
222 counter = 0;
223 output << "#Order\tFrag.No.\t" << Time.Header << endl;
224 output2 << "#Order\tFrag.No.\t" << Time.Header << endl;
225 for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
226 for(int i=KeySet.FragmentsPerOrder[BondOrder];i--;)
227 for(int j=Time.RowCounter[Time.MatrixCounter];j--;)
228 for(int k=Time.ColumnCounter;k--;) {
229 Time.Matrix[ Time.MatrixCounter ][j][k] += Time.Matrix[ KeySet.OrderSet[BondOrder][i] ][j][k];
230 }
231 counter += KeySet.FragmentsPerOrder[BondOrder];
232 output << BondOrder+1 << "\t" << counter;
233 output2 << BondOrder+1 << "\t" << counter;
234 for(int k=0;k<Time.ColumnCounter;k++) {
235 output << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter]-1 ][k];
236 if (fabs(Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter] ][k]) > MYEPSILON)
237 output2 << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter]-1 ][k] / Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter] ][k];
238 else
239 output2 << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter]-1 ][k];
240 }
241 output << endl;
242 output2 << endl;
243 }
244 output.close();
245 output2.close();
246
247 // +++++++++++++++++++++++++++++++++++++++ Plotting shieldings
248
249 if (periode != NULL) { // also look for PAS values
250 if (!CreateDataDeltaForcesOrderPerAtom(ShieldingPAS, ShieldingPASFragments, KeySet, argv[3], "DeltaShieldingsPAS-Order", "Plot of error between approximated shieldings and full shieldings versus the Bond Order", datum)) return 1;
251 if (!CreateDataForcesOrderPerAtom(ShieldingPASFragments, KeySet, argv[3], "ShieldingsPAS-Order", "Plot of approximated shieldings versus the Bond Order", datum)) return 1;
252 if (!AppendOutputFile(output, argv[3], "ShieldingsPAS-Order.dat" )) return false;
253 output << endl << "# Full" << endl;
254 for(int j=0;j<ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter];j++) {
255 output << j << "\t";
256 for(int k=0;k<ShieldingPAS.ColumnCounter;k++)
257 output << scientific << ShieldingPAS.Matrix[ ShieldingPAS.MatrixCounter ][j][k] << "\t"; //*(((k>1) && (k<6))? 1.e6 : 1.) << "\t";
258 output << endl;
259 }
260 output.close();
261 if (!CreateDataDeltaForcesOrderPerAtom(ChiPAS, ChiPASFragments, KeySet, argv[3], "DeltaChisPAS-Order", "Plot of error between approximated Chis and full Chis versus the Bond Order", datum)) return 1;
262 if (!CreateDataForcesOrderPerAtom(ChiPASFragments, KeySet, argv[3], "ChisPAS-Order", "Plot of approximated Chis versus the Bond Order", datum)) return 1;
263 if (!AppendOutputFile(output, argv[3], "ChisPAS-Order.dat" )) return false;
264 output << endl << "# Full" << endl;
265 for(int j=0;j<ChiPAS.RowCounter[ChiPAS.MatrixCounter];j++) {
266 output << j << "\t";
267 for(int k=0;k<ChiPAS.ColumnCounter[ChiPAS.MatrixCounter];k++)
268 output << scientific << ChiPAS.Matrix[ ChiPAS.MatrixCounter ][j][k] << "\t"; //*(((k>1) && (k<6))? 1.e6 : 1.) << "\t";
269 output << endl;
270 }
271 output.close();
272 }
273
274
275 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in energy to full QM
276 if (!CreateDataDeltaEnergyOrder(Energy, EnergyFragments, KeySet, argv[3], "DeltaEnergies-Order", "Plot of error between approximated and full energies energies versus the Bond Order", datum)) return 1;
277
278 // +++++++++++++++++++++++++++++++++++Plotting Energies vs. Order
279 if (!CreateDataEnergyOrder(EnergyFragments, KeySet, argv[3], "Energies-Order", "Plot of approximated energies versus the Bond Order", datum)) return 1;
280
281 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in forces to full QM
282 if (!CreateDataDeltaForcesOrderPerAtom(Force, ForceFragments, KeySet, argv[3], "DeltaForces-Order", "Plot of error between approximated forces and full forces versus the Bond Order", datum)) return 1;
283
284 // min force
285 if (!CreateDataDeltaForcesOrder(Force, ForceFragments, KeySet, argv[3], "DeltaMinForces-Order", "Plot of min error between approximated forces and full forces versus the Bond Order", datum, CreateMinimumForce)) return 1;
286
287 // mean force
288 if (!CreateDataDeltaForcesOrder(Force, ForceFragments, KeySet, argv[3], "DeltaMeanForces-Order", "Plot of mean error between approximated forces and full forces versus the Bond Order", datum, CreateMeanForce)) return 1;
289
290 // max force
291 if (!CreateDataDeltaForcesOrder(Force, ForceFragments, KeySet, argv[3], "DeltaMaxForces-Order", "Plot of max error between approximated forces and full forces versus the Bond Order", datum, CreateMaximumForce)) return 1;
292
293 // ++++++++++++++++++++++++++++++++++++++Plotting Forces vs. Order
294 if (!CreateDataForcesOrderPerAtom(ForceFragments, KeySet, argv[3], "Forces-Order", "Plot of approximated forces versus the Bond Order", datum)) return 1;
295 if (!AppendOutputFile(output, argv[3], "Forces-Order.dat" )) return false;
296 output << endl << "# Full" << endl;
297 for(int j=0;j<Force.RowCounter[Force.MatrixCounter];j++) {
298 output << j << "\t";
299 for(int k=0;k<Force.ColumnCounter;k++)
300 output << scientific << Force.Matrix[ Force.MatrixCounter ][j][k] << "\t";
301 output << endl;
302 }
303 output.close();
304 // min force
305 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "MinForces-Order", "Plot of min approximated forces versus the Bond Order", datum, CreateMinimumForce)) return 1;
306
307 // mean force
308 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "MeanForces-Order", "Plot of mean approximated forces versus the Bond Order", datum, CreateMeanForce)) return 1;
309
310 // max force
311 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "MaxForces-Order", "Plot of max approximated forces versus the Bond Order", datum, CreateMaximumForce)) return 1;
312
313 // ++++++++++++++++++++++++++++++++++++++Plotting vector sum (should be 0) vs. bond order
314 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "VectorSum-Order", "Plot of vector sum of the approximated forces versus the Bond Order", datum, CreateVectorSumForce)) return 1;
315
316 // +++++++++++++++++++++++++++++++Plotting energyfragments vs. order
317 if (!CreateDataFragment(EnergyFragments, KeySet, argv[3], "Energies-Fragment", "Plot of fragment energy versus the Fragment No", datum, CreateEnergy)) return 1;
318 if (!CreateDataFragment(EnergyFragments, KeySet, argv[3], "Energies-FragmentOrder", "Plot of fragment energy of each Fragment No vs. Bond Order", datum, CreateEnergy)) return 1;
319 if (!CreateDataFragmentOrder(EnergyFragments, KeySet, argv[3], "MaxEnergies-FragmentOrder", "Plot of maximum of fragment energy vs. Bond Order", datum, CreateMaxFragmentOrder)) return 1;
320 if (!CreateDataFragmentOrder(EnergyFragments, KeySet, argv[3], "MinEnergies-FragmentOrder", "Plot of minimum of fragment energy vs. Bond Order", datum, CreateMinFragmentOrder)) return 1;
321
322 // +++++++++++++++++++++++++++++++Ploting min/mean/max forces for each fragment
323 // min force
324 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MinForces-Fragment", "Plot of min approximated forces versus the Fragment No", datum, CreateMinimumForce)) return 1;
325
326 // mean force
327 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MeanForces-Fragment", "Plot of mean approximated forces versus the Fragment No", datum, CreateMeanForce)) return 1;
328
329 // max force
330 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MaxForces-Fragment", "Plot of max approximated forces versus the Fragment No", datum, CreateMaximumForce)) return 1;
331
332 // +++++++++++++++++++++++++++++++Ploting min/mean/max forces for each fragment per order
333 // min force
334 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MinForces-FragmentOrder", "Plot of min approximated forces of each Fragment No vs. Bond Order", datum, CreateMinimumForce)) return 1;
335
336 // mean force
337 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MeanForces-FragmentOrder", "Plot of mean approximated forces of each Fragment No vs. Bond Order", datum, CreateMeanForce)) return 1;
338
339 // max force
340 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MaxForces-FragmentOrder", "Plot of max approximated forces of each Fragment No vs. Bond Order", datum, CreateMaximumForce)) return 1;
341
342 // ======================================= Creating the plot files ==============================================================
343
344 Orderxrange << "[1:" << KeySet.Order << "]";
345 Fragmentxrange << "[0:" << KeySet.FragmentCounter+1 << "]";
346 yrange.str("[1e-8:1e+1]");
347
348 // +++++++++++++++++++++++++++++++++++++++ Plotting Simtime vs Bond Order
349 if (!CreatePlotOrder(Time, KeySet, argv[3], "SimTime-Order", 1, "below", "y", "", 1, 1, "bond order k", "Evaluation time [s]", Orderxrange.str().c_str(), "", "1" , "with linespoints", EnergyPlotLine)) return 1;
350
351 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in energy to full QM
352 if (!CreatePlotOrder(Energy, KeySet, argv[3], "DeltaEnergies-Order", 1, "outside", "y", "", 1, 1, "bond order k", "absolute error in energy [Ht]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with linespoints", AbsEnergyPlotLine)) return 1;
353
354 // +++++++++++++++++++++++++++++++++++Plotting Energies vs. Order
355 if (!CreatePlotOrder(Energy, KeySet, argv[3], "Energies-Order", 1, "outside", "", "", 1, 1, "bond order k", "approximate energy [Ht]", Orderxrange.str().c_str(), "", "1" , "with linespoints", EnergyPlotLine)) return 1;
356
357 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in forces to full QM
358 yrange.str("[1e-8:1e+0]");
359 // min force
360 if (!CreatePlotOrder(Force, KeySet, argv[3], "DeltaMinForces-Order", 2, "top right", "y", "", 1, 1, "bond order k", "absolute error in min force [Ht/a.u.]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
361
362 // mean force
363 if (!CreatePlotOrder(Force, KeySet, argv[3], "DeltaMeanForces-Order", 2, "top right", "y", "", 1, 1, "bond order k", "absolute error in mean force [Ht/a.u.]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with linespoints", AbsFirstForceValuePlotLine)) return 1;
364
365 // max force
366 if (!CreatePlotOrder(Force, KeySet, argv[3], "DeltaMaxForces-Order", 2, "top right", "y", "", 1, 1, "bond order k", "absolute error in max force [Ht/a.u.]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
367
368 // min/mean/max comparison for total force
369 if(!OpenOutputFile(output, argv[3], "DeltaMinMeanMaxTotalForce-Order.pyx")) return 1;
370 CreatePlotHeader(output, "DeltaMinMeanMaxTotalForce-Order", 1, "bottom left", "y", NULL, 1, 1, "bond order k", "absolute error in total forces [Ht/a.u.]");
371 output << "plot " << Orderxrange.str().c_str() << " [1e-8:1e+0] \\" << endl;
372 output << "'DeltaMinForces-Order.dat' title 'minimum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints, \\" << endl;
373 output << "'DeltaMeanForces-Order.dat' title 'mean' using 1:(abs($" << 8 << ")) with linespoints, \\" << endl;
374 output << "'DeltaMaxForces-Order.dat' title 'maximum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints" << endl;
375 output.close();
376
377 // ++++++++++++++++++++++++++++++++++++++Plotting Forces vs. Order
378 // min force
379 if (!CreatePlotOrder(Force, KeySet, argv[3], "MinForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated min force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
380
381 // mean force
382 if (!CreatePlotOrder(Force, KeySet, argv[3], "MeanForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated mean force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", AbsFirstForceValuePlotLine)) return 1;
383
384 // max force
385 if (!CreatePlotOrder(Force, KeySet, argv[3], "MaxForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated max force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
386
387 // min/mean/max comparison for total force
388 if(!OpenOutputFile(output, argv[3],"MinMeanMaxTotalForce-Order.pyx")) return 1;
389 CreatePlotHeader(output, "MinMeanMaxTotalForce-Order", 1, "bottom left", "y", NULL, 1, 1, "bond order k", "absolute total force [Ht/a.u.]");
390 output << "plot "<< Orderxrange.str().c_str() << " [1e-8:1e+0] \\" << endl;
391 output << "'MinForces-Order.dat' title 'minimum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints, \\" << endl;
392 output << "'MeanForces-Order.dat' title 'mean' using 1:(abs($" << 8 << ")) with linespoints, \\" << endl;
393 output << "'MaxForces-Order.dat' title 'maximum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints" << endl;
394 output.close();
395
396 // ++++++++++++++++++++++++++++++++++++++Plotting vector sum vs. Order
397
398 if (!CreatePlotOrder(Force, KeySet, argv[3], "VectorSum-Order", 2, "bottom right", "y" ,"", 1, 1, "bond order k", "vector sum of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
399
400 // +++++++++++++++++++++++++++++++Plotting energyfragments vs. order
401 yrange.str("");
402 yrange << "[" << EnergyFragments.FindMinValue() << ":" << EnergyFragments.FindMaxValue() << "]";
403 if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "Energies-Fragment", 5, "below", "y", "", 1, 5, "fragment number", "Energies of each fragment [Ht]", Fragmentxrange.str().c_str(), yrange.str().c_str(), "2" , "with points", AbsEnergyPlotLine)) return 1;
404 if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "Energies-FragmentOrder", 5, "below", "y", "", 1, 1, "bond order", "Energies of each fragment [Ht]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with points", AbsEnergyPlotLine)) return 1;
405 if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "MaxEnergies-FragmentOrder", 5, "below", "y", "", 1, 1, "bond order", "Maximum fragment energy [Ht]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with linespoints", AbsEnergyPlotLine)) return 1;
406 if (!CreatePlotOrder(EnergyFragments, KeySet, argv[3], "MinEnergies-FragmentOrder", 5, "below", "y", "", 1, 1, "bond order", "Minimum fragment energy [Ht]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with linespoints", AbsEnergyPlotLine)) return 1;
407
408 // +++++++++++++++++++++++++++++++=Ploting min/mean/max forces for each fragment
409 yrange.str("");
410 yrange << "[" << ForceFragments.FindMinValue() << ":" << ForceFragments.FindMaxValue()<< "]";
411 // min
412 if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MinForces-Fragment", 5, "below", "y", "set boxwidth 0.2", 1, 5, "fragment number", "minimum of approximated forces [Ht/a.u.]", Fragmentxrange.str().c_str(), yrange.str().c_str(), "2" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
413
414 // mean
415 if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MeanForces-Fragment", 5, "below", "y", "set boxwidth 0.2", 1, 5, "fragment number", "mean of approximated forces [Ht/a.u.]", Fragmentxrange.str().c_str(), yrange.str().c_str(), "2" , "with boxes fillcolor", BoxesFirstForceValuePlotLine)) return 1;
416
417 // max
418 if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MaxForces-Fragment", 5, "below", "y", "set boxwidth 0.2", 1, 5, "fragment number", "maximum of approximated forces [Ht/a.u.]", Fragmentxrange.str().c_str(), yrange.str().c_str(), "2" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
419
420 // +++++++++++++++++++++++++++++++=Ploting min/mean/max forces for each fragment per bond order
421 // min
422 if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MinForces-FragmentOrder", 5, "below", "y", "set boxwidth 0.2", 1, 1, "bond order", "minimum of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
423
424 // mean
425 if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MeanForces-FragmentOrder", 5, "below", "y", "set boxwidth 0.2", 1, 1, "bond order", "mean of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with boxes fillcolor", BoxesFirstForceValuePlotLine)) return 1;
426
427 // max
428 if (!CreatePlotOrder(ForceFragments, KeySet, argv[3], "MaxForces-FragmentOrder", 5, "below", "y", "set boxwidth 0.2", 1, 1, "bond order", "maximum of approximated forces [Ht/a.u.]", Orderxrange.str().c_str(), yrange.str().c_str(), "1" , "with boxes fillcolor", BoxesForcePlotLine)) return 1;
429
430 // +++++++++++++++++++++++++++++++=Ploting approximated and true shielding for each atom
431 if (periode != NULL) { // also look for PAS values
432 if(!OpenOutputFile(output, argv[3], "ShieldingsPAS-Order.pyx")) return 1;
433 if(!OpenOutputFile(output2, argv[3], "DeltaShieldingsPAS-Order.pyx")) return 1;
434 CreatePlotHeader(output, "ShieldingsPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical shielding value [ppm]");
435 CreatePlotHeader(output2, "DeltaShieldingsPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical shielding value [ppm]");
436 double step=0.8/KeySet.Order;
437 output << "set boxwidth " << step << endl;
438 output << "plot [0:" << ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter]+10 << "]\\" << endl;
439 output2 << "plot [0:" << ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter]+10 << "]\\" << endl;
440 for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
441 output << "'ShieldingsPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1+" << step*(double)BondOrder << "):7 with boxes, \\" << endl;
442 output2 << "'DeltaShieldingsPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1):7 with linespoints";
443 if (BondOrder-1 != KeySet.Order)
444 output2 << ", \\" << endl;
445 }
446 output << "'ShieldingsPAS-Order.dat' index " << KeySet.Order << " title 'Full' using ($1+" << step*(double)KeySet.Order << "):7 with boxes" << endl;
447 output.close();
448 output2.close();
449
450 if(!OpenOutputFile(output, argv[3], "ChisPAS-Order.pyx")) return 1;
451 if(!OpenOutputFile(output2, argv[3], "DeltaChisPAS-Order.pyx")) return 1;
452 CreatePlotHeader(output, "ChisPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical Chi value [ppm]");
453 CreatePlotHeader(output2, "DeltaChisPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical Chi value [ppm]");
454 output << "set boxwidth " << step << endl;
455 output << "plot [0:" << ChiPAS.RowCounter[ChiPAS.MatrixCounter]+10 << "]\\" << endl;
456 output2 << "plot [0:" << ChiPAS.RowCounter[ChiPAS.MatrixCounter]+10 << "]\\" << endl;
457 for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
458 output << "'ChisPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1+" << step*(double)BondOrder << "):7 with boxes, \\" << endl;
459 output2 << "'DeltaChisPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1):7 with linespoints";
460 if (BondOrder-1 != KeySet.Order)
461 output2 << ", \\" << endl;
462 }
463 output << "'ChisPAS-Order.dat' index " << KeySet.Order << " title 'Full' using ($1+" << step*(double)KeySet.Order << "):7 with boxes" << endl;
464 output.close();
465 output2.close();
466 }
467
468 // create Makefile
469 if(!OpenOutputFile(output, argv[3], "Makefile")) return 1;
470 output << "PYX = $(shell ls *.pyx)" << endl << endl;
471 output << "EPS = $(PYX:.pyx=.eps)" << endl << endl;
472 output << "%.eps: %.pyx" << endl;
473 output << "\t~/build/pyxplot/pyxplot $<" << endl << endl;
474 output << "all: $(EPS)" << endl << endl;
475 output << ".PHONY: clean" << endl;
476 output << "clean:" << endl;
477 output << "\trm -rf $(EPS)" << endl;
478 output.close();
479
480 // ++++++++++++++++ exit ++++++++++++++++++++++++++++++++++
481 delete(periode);
482 Free((void **)&dir, "main: *dir");
483 cout << "done." << endl;
484 return 0;
485};
486
487//============================ END ===========================
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