source: src/analyzer.cpp@ b38b64

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Last change on this file since b38b64 was b38b64, checked in by Frederik Heber <heber@…>, 16 years ago

Merge branch 'HessianMatrix'

  • Property mode set to 100755
File size: 32.3 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 EnergyFragments;
28 ForceMatrix Force;
29 ForceMatrix ForceFragments;
30 HessianMatrix Hessian;
31 HessianMatrix HessianFragments;
32 EnergyMatrix Hcorrection;
33 EnergyMatrix HcorrectionFragments;
34 ForceMatrix Shielding;
35 ForceMatrix ShieldingPAS;
36 ForceMatrix Chi;
37 ForceMatrix ChiPAS;
38 EnergyMatrix Time;
39 ForceMatrix ShieldingFragments;
40 ForceMatrix ShieldingPASFragments;
41 ForceMatrix ChiFragments;
42 ForceMatrix ChiPASFragments;
43 KeySetsContainer KeySet;
44 ofstream output;
45 ofstream output2;
46 ofstream output3;
47 ofstream output4;
48 ifstream input;
49 stringstream filename;
50 time_t t = time(NULL);
51 struct tm *ts = localtime(&t);
52 char *datum = asctime(ts);
53 stringstream Orderxrange;
54 stringstream Fragmentxrange;
55 stringstream yrange;
56 char *dir = NULL;
57 bool NoHCorrection = false;
58 bool NoHessian = false;
59 bool NoTime = false;
60 double norm;
61 int counter;
62
63 cout << "ANOVA Analyzer" << endl;
64 cout << "==============" << endl;
65
66 // Get the command line options
67 if (argc < 4) {
68 cout << "Usage: " << argv[0] << " <inputdir> <prefix> <outputdir> [elementsdb]" << endl;
69 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;
70 cout << "<prefix>\tprefix of energy and forces file." << endl;
71 cout << "<outputdir>\tcreated plotfiles and datafiles are placed into this directory " << endl;
72 cout << "[elementsdb]\tpath to elements database, needed for shieldings." << endl;
73 return 1;
74 } else {
75 dir = (char *) Malloc(sizeof(char)*(strlen(argv[2])+2), "main: *dir");
76 strcpy(dir, "/");
77 strcat(dir, argv[2]);
78 }
79
80 if (argc > 4) {
81 cout << "Loading periodentafel." << endl;
82 periode = new periodentafel;
83 periode->LoadPeriodentafel(argv[4]);
84 }
85
86 // Test the given directory
87 if (!TestParams(argc, argv))
88 return 1;
89
90 // +++++++++++++++++ PARSING +++++++++++++++++++++++++++++++
91
92 // ------------- Parse through all Fragment subdirs --------
93 if (!Energy.ParseFragmentMatrix(argv[1], dir, EnergySuffix,0,0)) return 1;
94 if (!Hcorrection.ParseFragmentMatrix(argv[1], "", HCORRECTIONSUFFIX,0,0)) {
95 NoHCorrection = true;
96 cout << "No HCorrection file found, skipping these." << endl;
97 }
98
99 if (!Force.ParseFragmentMatrix(argv[1], dir, ForcesSuffix,0,0)) return 1;
100 if (!Hessian.ParseFragmentMatrix(argv[1], dir, HessianSuffix,0,0)) {
101 NoHessian = true;
102 cout << "No Hessian file found, skipping these." << endl;
103 }
104 if (!Time.ParseFragmentMatrix(argv[1], dir, TimeSuffix, 10,1)) {
105 NoTime = true;
106 cout << "No speed file found, skipping these." << endl;
107 }
108 if (periode != NULL) { // also look for PAS values
109 if (!Shielding.ParseFragmentMatrix(argv[1], dir, ShieldingSuffix, 1, 0)) return 1;
110 if (!ShieldingPAS.ParseFragmentMatrix(argv[1], dir, ShieldingPASSuffix, 1, 0)) return 1;
111 if (!Chi.ParseFragmentMatrix(argv[1], dir, ChiSuffix, 1, 0)) return 1;
112 if (!ChiPAS.ParseFragmentMatrix(argv[1], dir, ChiPASSuffix, 1, 0)) return 1;
113 }
114
115 // ---------- Parse the TE Factors into an array -----------------
116 if (!Energy.InitialiseIndices()) return 1;
117 if (!NoHCorrection)
118 Hcorrection.InitialiseIndices();
119
120 // ---------- Parse the Force indices into an array ---------------
121 if (!Force.ParseIndices(argv[1])) return 1;
122 if (!ForceFragments.AllocateMatrix(Force.Header, Force.MatrixCounter, Force.RowCounter, Force.ColumnCounter)) return 1;
123 if (!ForceFragments.InitialiseIndices((class MatrixContainer *)&Force)) return 1;
124
125 // ---------- Parse hessian indices into an array -----------------
126 if (!NoHessian) {
127 if (!Hessian.InitialiseIndices((class MatrixContainer *)&Force)) return 1;
128 if (!HessianFragments.AllocateMatrix(Hessian.Header, Hessian.MatrixCounter, Hessian.RowCounter, Hessian.ColumnCounter)) return 1;
129 if (!HessianFragments.InitialiseIndices((class MatrixContainer *)&Force)) return 1;
130 }
131
132 // ---------- Parse the shielding indices into an array ---------------
133 if (periode != NULL) { // also look for PAS values
134 if(!Shielding.ParseIndices(argv[1])) return 1;
135 if(!ShieldingPAS.ParseIndices(argv[1])) return 1;
136 if (!ShieldingFragments.AllocateMatrix(Shielding.Header, Shielding.MatrixCounter, Shielding.RowCounter, Shielding.ColumnCounter)) return 1;
137 if (!ShieldingPASFragments.AllocateMatrix(ShieldingPAS.Header, ShieldingPAS.MatrixCounter, ShieldingPAS.RowCounter, ShieldingPAS.ColumnCounter)) return 1;
138 if(!ShieldingFragments.ParseIndices(argv[1])) return 1;
139 if(!ShieldingPASFragments.ParseIndices(argv[1])) return 1;
140 if(!Chi.ParseIndices(argv[1])) return 1;
141 if(!ChiPAS.ParseIndices(argv[1])) return 1;
142 if (!ChiFragments.AllocateMatrix(Chi.Header, Chi.MatrixCounter, Chi.RowCounter, Chi.ColumnCounter)) return 1;
143 if (!ChiPASFragments.AllocateMatrix(ChiPAS.Header, ChiPAS.MatrixCounter, ChiPAS.RowCounter, ChiPAS.ColumnCounter)) return 1;
144 if(!ChiFragments.ParseIndices(argv[1])) return 1;
145 if(!ChiPASFragments.ParseIndices(argv[1])) return 1;
146 }
147
148 // ---------- Parse the KeySets into an array ---------------
149 if (!KeySet.ParseKeySets(argv[1], Force.RowCounter, Force.MatrixCounter)) return 1;
150 if (!KeySet.ParseManyBodyTerms()) return 1;
151
152 // ---------- Parse fragment files created by 'joiner' into an array -------------
153 if (!EnergyFragments.ParseFragmentMatrix(argv[1], dir, EnergyFragmentSuffix,0,0)) return 1;
154 if (!NoHCorrection)
155 HcorrectionFragments.ParseFragmentMatrix(argv[1], dir, HcorrectionFragmentSuffix,0,0);
156 if (!ForceFragments.ParseFragmentMatrix(argv[1], dir, ForceFragmentSuffix,0,0)) return 1;
157 if (!NoHessian)
158 if (!HessianFragments.ParseFragmentMatrix(argv[1], dir, HessianFragmentSuffix,0,0)) return 1;
159 if (periode != NULL) { // also look for PAS values
160 if (!ShieldingFragments.ParseFragmentMatrix(argv[1], dir, ShieldingFragmentSuffix, 1, 0)) return 1;
161 if (!ShieldingPASFragments.ParseFragmentMatrix(argv[1], dir, ShieldingPASFragmentSuffix, 1, 0)) return 1;
162 if (!ChiFragments.ParseFragmentMatrix(argv[1], dir, ChiFragmentSuffix, 1, 0)) return 1;
163 if (!ChiPASFragments.ParseFragmentMatrix(argv[1], dir, ChiPASFragmentSuffix, 1, 0)) return 1;
164 }
165
166 // +++++++++++++++ TESTING ++++++++++++++++++++++++++++++
167
168 // print energy and forces to file
169 filename.str("");
170 filename << argv[3] << "/" << "energy-forces.all";
171 output.open(filename.str().c_str(), ios::out);
172 output << endl << "Total Energy" << endl << "==============" << endl << Energy.Header[Energy.MatrixCounter] << endl;
173 for(int j=0;j<Energy.RowCounter[Energy.MatrixCounter];j++) {
174 for(int k=0;k<Energy.ColumnCounter[Energy.MatrixCounter];k++)
175 output << scientific << Energy.Matrix[ Energy.MatrixCounter ][j][k] << "\t";
176 output << endl;
177 }
178 output << endl;
179
180 output << endl << "Total Forces" << endl << "===============" << endl << Force.Header[Force.MatrixCounter] << endl;
181 for(int j=0;j<Force.RowCounter[Force.MatrixCounter];j++) {
182 for(int k=0;k<Force.ColumnCounter[Force.MatrixCounter];k++)
183 output << scientific << Force.Matrix[ Force.MatrixCounter ][j][k] << "\t";
184 output << endl;
185 }
186 output << endl;
187
188 if (!NoHessian) {
189 output << endl << "Total Hessian" << endl << "===============" << endl << Hessian.Header[Hessian.MatrixCounter] << endl;
190 for(int j=0;j<Hessian.RowCounter[Hessian.MatrixCounter];j++) {
191 for(int k=0;k<Hessian.ColumnCounter[Hessian.MatrixCounter];k++)
192 output << scientific << Hessian.Matrix[ Hessian.MatrixCounter ][j][k] << "\t";
193 output << endl;
194 }
195 output << endl;
196 }
197
198 if (periode != NULL) { // also look for PAS values
199 output << endl << "Total Shieldings" << endl << "===============" << endl << Shielding.Header[Hessian.MatrixCounter] << endl;
200 for(int j=0;j<Shielding.RowCounter[Shielding.MatrixCounter];j++) {
201 for(int k=0;k<Shielding.ColumnCounter[Shielding.MatrixCounter];k++)
202 output << scientific << Shielding.Matrix[ Shielding.MatrixCounter ][j][k] << "\t";
203 output << endl;
204 }
205 output << endl;
206
207 output << endl << "Total Shieldings PAS" << endl << "===============" << endl << ShieldingPAS.Header[ShieldingPAS.MatrixCounter] << endl;
208 for(int j=0;j<ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter];j++) {
209 for(int k=0;k<ShieldingPAS.ColumnCounter[ShieldingPAS.MatrixCounter];k++)
210 output << scientific << ShieldingPAS.Matrix[ ShieldingPAS.MatrixCounter ][j][k] << "\t";
211 output << endl;
212 }
213 output << endl;
214
215 output << endl << "Total Chis" << endl << "===============" << endl << Chi.Header[Chi.MatrixCounter] << endl;
216 for(int j=0;j<Chi.RowCounter[Chi.MatrixCounter];j++) {
217 for(int k=0;k<Chi.ColumnCounter;k++)
218 output << scientific << Chi.Matrix[ Chi.MatrixCounter ][j][k] << "\t";
219 output << endl;
220 }
221 output << endl;
222
223 output << endl << "Total Chis PAS" << endl << "===============" << endl << ChiPAS.Header[ChiPAS.MatrixCounter] << endl;
224 for(int j=0;j<ChiPAS.RowCounter[ChiPAS.MatrixCounter];j++) {
225 for(int k=0;k<ChiPAS.ColumnCounter;k++)
226 output << scientific << ChiPAS.Matrix[ ChiPAS.MatrixCounter ][j][k] << "\t";
227 output << endl;
228 }
229 output << endl;
230 }
231
232 if (!NoTime) {
233 output << endl << "Total Times" << endl << "===============" << endl << Time.Header[Time.MatrixCounter] << endl;
234 for(int j=0;j<Time.RowCounter[Time.MatrixCounter];j++) {
235 for(int k=0;k<Time.ColumnCounter[Time.MatrixCounter];k++) {
236 output << scientific << Time.Matrix[ Time.MatrixCounter ][j][k] << "\t";
237 }
238 output << endl;
239 }
240 output << endl;
241 }
242 output.close();
243 if (!NoTime)
244 for(int k=0;k<Time.ColumnCounter[Time.MatrixCounter];k++)
245 Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter] ][k] = Time.Matrix[ Time.MatrixCounter ][Time.RowCounter[Time.MatrixCounter]-1][k];
246
247 // +++++++++++++++ ANALYZING ++++++++++++++++++++++++++++++
248
249 cout << "Analyzing ..." << endl;
250
251 // ======================================= Creating the data files ==============================================================
252
253 // +++++++++++++++++++++++++++++++++++++++ Plotting Simtime vs Bond Order
254 // +++++++++++++++++++++++++++++++++++++++ Plotting Delta Simtime vs Bond Order
255 if (!NoTime) {
256 if (!OpenOutputFile(output, argv[3], "SimTime-Order.dat" )) return false;
257 if (!OpenOutputFile(output2, argv[3], "DeltaSimTime-Order.dat" )) return false;
258 for(int j=Time.RowCounter[Time.MatrixCounter];j--;)
259 for(int k=Time.ColumnCounter[Time.MatrixCounter];k--;) {
260 Time.Matrix[ Time.MatrixCounter ][j][k] = 0.;
261 }
262 counter = 0;
263 output << "#Order\tFrag.No.\t" << Time.Header[Time.MatrixCounter] << endl;
264 output2 << "#Order\tFrag.No.\t" << Time.Header[Time.MatrixCounter] << endl;
265 for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
266 for(int i=KeySet.FragmentsPerOrder[BondOrder];i--;)
267 for(int j=Time.RowCounter[Time.MatrixCounter];j--;)
268 for(int k=Time.ColumnCounter[Time.MatrixCounter];k--;) {
269 Time.Matrix[ Time.MatrixCounter ][j][k] += Time.Matrix[ KeySet.OrderSet[BondOrder][i] ][j][k];
270 }
271 counter += KeySet.FragmentsPerOrder[BondOrder];
272 output << BondOrder+1 << "\t" << counter;
273 output2 << BondOrder+1 << "\t" << counter;
274 for(int k=0;k<Time.ColumnCounter[Time.MatrixCounter];k++) {
275 output << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter]-1 ][k];
276 if (fabs(Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter] ][k]) > MYEPSILON)
277 output2 << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter]-1 ][k] / Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter] ][k];
278 else
279 output2 << "\t" << scientific << Time.Matrix[ Time.MatrixCounter ][ Time.RowCounter[Time.MatrixCounter]-1 ][k];
280 }
281 output << endl;
282 output2 << endl;
283 }
284 output.close();
285 output2.close();
286 }
287
288 if (!NoHessian) {
289 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in hessian to full QM
290 if (!CreateDataDeltaHessianOrderPerAtom(Hessian, HessianFragments, KeySet, argv[3], "DeltaHessian_xx-Order", "Plot of error between approximated hessian and full hessian versus the Bond Order", datum)) return 1;
291
292 if (!CreateDataDeltaFrobeniusOrderPerAtom(Hessian, HessianFragments, KeySet, argv[3], "DeltaFrobeniusHessian_xx-Order", "Plot of error between approximated hessian and full hessian in the frobenius norm versus the Bond Order", datum)) return 1;
293
294 // ++++++++++++++++++++++++++++++++++++++Plotting Hessian vs. Order
295 if (!CreateDataHessianOrderPerAtom(HessianFragments, KeySet, argv[3], "Hessian_xx-Order", "Plot of approximated hessian versus the Bond Order", datum)) return 1;
296 if (!AppendOutputFile(output, argv[3], "Hessian_xx-Order.dat" )) return false;
297 output << endl << "# Full" << endl;
298 for(int j=0;j<Hessian.RowCounter[Hessian.MatrixCounter];j++) {
299 output << j << "\t";
300 for(int k=0;k<Hessian.ColumnCounter[Force.MatrixCounter];k++)
301 output << scientific << Hessian.Matrix[ Hessian.MatrixCounter ][j][k] << "\t";
302 output << endl;
303 }
304 output.close();
305 }
306
307 // +++++++++++++++++++++++++++++++++++++++ Plotting shieldings
308
309 if (periode != NULL) { // also look for PAS values
310 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;
311 if (!CreateDataForcesOrderPerAtom(ShieldingPASFragments, KeySet, argv[3], "ShieldingsPAS-Order", "Plot of approximated shieldings versus the Bond Order", datum)) return 1;
312 if (!AppendOutputFile(output, argv[3], "ShieldingsPAS-Order.dat" )) return false;
313 output << endl << "# Full" << endl;
314 for(int j=0;j<ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter];j++) {
315 output << j << "\t";
316 for(int k=0;k<ShieldingPAS.ColumnCounter[ShieldingPAS.MatrixCounter];k++)
317 output << scientific << ShieldingPAS.Matrix[ ShieldingPAS.MatrixCounter ][j][k] << "\t"; //*(((k>1) && (k<6))? 1.e6 : 1.) << "\t";
318 output << endl;
319 }
320 output.close();
321 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;
322 if (!CreateDataForcesOrderPerAtom(ChiPASFragments, KeySet, argv[3], "ChisPAS-Order", "Plot of approximated Chis versus the Bond Order", datum)) return 1;
323 if (!AppendOutputFile(output, argv[3], "ChisPAS-Order.dat" )) return false;
324 output << endl << "# Full" << endl;
325 for(int j=0;j<ChiPAS.RowCounter[ChiPAS.MatrixCounter];j++) {
326 output << j << "\t";
327 for(int k=0;k<ChiPAS.ColumnCounter;k++)
328 output << scientific << ChiPAS.Matrix[ ChiPAS.MatrixCounter ][j][k] << "\t"; //*(((k>1) && (k<6))? 1.e6 : 1.) << "\t";
329 output << endl;
330 }
331 output.close();
332 }
333
334
335 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in energy to full QM
336 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;
337
338 // +++++++++++++++++++++++++++++++++++Plotting Energies vs. Order
339 if (!CreateDataEnergyOrder(EnergyFragments, KeySet, argv[3], "Energies-Order", "Plot of approximated energies versus the Bond Order", datum)) return 1;
340
341 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in forces to full QM
342 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;
343
344 // min force
345 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;
346
347 // mean force
348 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;
349
350 // max force
351 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;
352
353 // ++++++++++++++++++++++++++++++++++++++Plotting Forces vs. Order
354 if (!CreateDataForcesOrderPerAtom(ForceFragments, KeySet, argv[3], "Forces-Order", "Plot of approximated forces versus the Bond Order", datum)) return 1;
355 if (!AppendOutputFile(output, argv[3], "Forces-Order.dat" )) return false;
356 output << endl << "# Full" << endl;
357 for(int j=0;j<Force.RowCounter[Force.MatrixCounter];j++) {
358 output << j << "\t";
359 for(int k=0;k<Force.ColumnCounter[Force.MatrixCounter];k++)
360 output << scientific << Force.Matrix[ Force.MatrixCounter ][j][k] << "\t";
361 output << endl;
362 }
363 output.close();
364 // min force
365 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "MinForces-Order", "Plot of min approximated forces versus the Bond Order", datum, CreateMinimumForce)) return 1;
366
367 // mean force
368 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "MeanForces-Order", "Plot of mean approximated forces versus the Bond Order", datum, CreateMeanForce)) return 1;
369
370 // max force
371 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "MaxForces-Order", "Plot of max approximated forces versus the Bond Order", datum, CreateMaximumForce)) return 1;
372
373 // ++++++++++++++++++++++++++++++++++++++Plotting vector sum (should be 0) vs. bond order
374 if (!CreateDataForcesOrder(ForceFragments, KeySet, argv[3], "VectorSum-Order", "Plot of vector sum of the approximated forces versus the Bond Order", datum, CreateVectorSumForce)) return 1;
375
376 // +++++++++++++++++++++++++++++++Plotting energyfragments vs. order
377 if (!CreateDataFragment(EnergyFragments, KeySet, argv[3], "Energies-Fragment", "Plot of fragment energy versus the Fragment No", datum, CreateEnergy)) return 1;
378 if (!CreateDataFragment(EnergyFragments, KeySet, argv[3], "Energies-FragmentOrder", "Plot of fragment energy of each Fragment No vs. Bond Order", datum, CreateEnergy)) return 1;
379 if (!CreateDataFragmentOrder(EnergyFragments, KeySet, argv[3], "MaxEnergies-FragmentOrder", "Plot of maximum of fragment energy vs. Bond Order", datum, CreateMaxFragmentOrder)) return 1;
380 if (!CreateDataFragmentOrder(EnergyFragments, KeySet, argv[3], "MinEnergies-FragmentOrder", "Plot of minimum of fragment energy vs. Bond Order", datum, CreateMinFragmentOrder)) return 1;
381
382 // +++++++++++++++++++++++++++++++Ploting min/mean/max forces for each fragment
383 // min force
384 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MinForces-Fragment", "Plot of min approximated forces versus the Fragment No", datum, CreateMinimumForce)) return 1;
385
386 // mean force
387 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MeanForces-Fragment", "Plot of mean approximated forces versus the Fragment No", datum, CreateMeanForce)) return 1;
388
389 // max force
390 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MaxForces-Fragment", "Plot of max approximated forces versus the Fragment No", datum, CreateMaximumForce)) return 1;
391
392 // +++++++++++++++++++++++++++++++Ploting min/mean/max forces for each fragment per order
393 // min force
394 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MinForces-FragmentOrder", "Plot of min approximated forces of each Fragment No vs. Bond Order", datum, CreateMinimumForce)) return 1;
395
396 // mean force
397 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MeanForces-FragmentOrder", "Plot of mean approximated forces of each Fragment No vs. Bond Order", datum, CreateMeanForce)) return 1;
398
399 // max force
400 if (!CreateDataFragment(ForceFragments, KeySet, argv[3], "MaxForces-FragmentOrder", "Plot of max approximated forces of each Fragment No vs. Bond Order", datum, CreateMaximumForce)) return 1;
401
402 // ======================================= Creating the plot files ==============================================================
403
404 Orderxrange << "[1:" << KeySet.Order << "]";
405 Fragmentxrange << "[0:" << KeySet.FragmentCounter+1 << "]";
406 yrange.str("[1e-8:1e+1]");
407
408 if (!NoTime) {
409 // +++++++++++++++++++++++++++++++++++++++ Plotting Simtime vs Bond Order
410 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;
411 }
412
413 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in energy to full QM
414 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;
415
416 // +++++++++++++++++++++++++++++++++++Plotting Energies vs. Order
417 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;
418
419 // +++++++++++++++++++++++++++++++++++++++ Plotting deviation in forces to full QM
420 yrange.str("[1e-8:1e+0]");
421 // min force
422 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;
423
424 // mean force
425 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;
426
427 // max force
428 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;
429
430 // min/mean/max comparison for total force
431 if(!OpenOutputFile(output, argv[3], "DeltaMinMeanMaxTotalForce-Order.pyx")) return 1;
432 CreatePlotHeader(output, "DeltaMinMeanMaxTotalForce-Order", 1, "bottom left", "y", NULL, 1, 1, "bond order k", "absolute error in total forces [Ht/a.u.]");
433 output << "plot " << Orderxrange.str().c_str() << " [1e-8:1e+0] \\" << endl;
434 output << "'DeltaMinForces-Order.dat' title 'minimum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints, \\" << endl;
435 output << "'DeltaMeanForces-Order.dat' title 'mean' using 1:(abs($" << 8 << ")) with linespoints, \\" << endl;
436 output << "'DeltaMaxForces-Order.dat' title 'maximum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints" << endl;
437 output.close();
438
439 // ++++++++++++++++++++++++++++++++++++++Plotting Forces vs. Order
440 // min force
441 if (!CreatePlotOrder(Force, KeySet, argv[3], "MinForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated min force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
442
443 // mean force
444 if (!CreatePlotOrder(Force, KeySet, argv[3], "MeanForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated mean force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", AbsFirstForceValuePlotLine)) return 1;
445
446 // max force
447 if (!CreatePlotOrder(Force, KeySet, argv[3], "MaxForces-Order", 2, "bottom right", "y", "", 1, 1, "bond order k", "absolute approximated max force [Ht/a.u.]", Orderxrange.str().c_str(), "", "1" , "with linespoints", ForceMagnitudePlotLine)) return 1;
448
449 // min/mean/max comparison for total force
450 if(!OpenOutputFile(output, argv[3],"MinMeanMaxTotalForce-Order.pyx")) return 1;
451 CreatePlotHeader(output, "MinMeanMaxTotalForce-Order", 1, "bottom left", "y", NULL, 1, 1, "bond order k", "absolute total force [Ht/a.u.]");
452 output << "plot "<< Orderxrange.str().c_str() << " [1e-8:1e+0] \\" << endl;
453 output << "'MinForces-Order.dat' title 'minimum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints, \\" << endl;
454 output << "'MeanForces-Order.dat' title 'mean' using 1:(abs($" << 8 << ")) with linespoints, \\" << endl;
455 output << "'MaxForces-Order.dat' title 'maximum' using 1:(sqrt($" << 8 << "*$" << 8 << "+$" << 8+1 << "*$" << 8+1 << "+$" << 8+2 << "*$" << 8+2 << ")) with linespoints" << endl;
456 output.close();
457
458 // ++++++++++++++++++++++++++++++++++++++Plotting vector sum vs. Order
459
460 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;
461
462 // +++++++++++++++++++++++++++++++Plotting energyfragments vs. order
463 yrange.str("");
464 yrange << "[" << EnergyFragments.FindMinValue() << ":" << EnergyFragments.FindMaxValue() << "]";
465 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;
466 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;
467 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;
468 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;
469
470 // +++++++++++++++++++++++++++++++=Ploting min/mean/max forces for each fragment
471 yrange.str("");
472 yrange << "[" << ForceFragments.FindMinValue() << ":" << ForceFragments.FindMaxValue()<< "]";
473 // min
474 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;
475
476 // mean
477 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;
478
479 // max
480 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;
481
482 // +++++++++++++++++++++++++++++++=Ploting min/mean/max forces for each fragment per bond order
483 // min
484 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;
485
486 // mean
487 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;
488
489 // max
490 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;
491
492 // +++++++++++++++++++++++++++++++=Ploting approximated and true shielding for each atom
493 if (periode != NULL) { // also look for PAS values
494 if(!OpenOutputFile(output, argv[3], "ShieldingsPAS-Order.pyx")) return 1;
495 if(!OpenOutputFile(output2, argv[3], "DeltaShieldingsPAS-Order.pyx")) return 1;
496 CreatePlotHeader(output, "ShieldingsPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical shielding value [ppm]");
497 CreatePlotHeader(output2, "DeltaShieldingsPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical shielding value [ppm]");
498 double step=0.8/KeySet.Order;
499 output << "set boxwidth " << step << endl;
500 output << "plot [0:" << ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter]+10 << "]\\" << endl;
501 output2 << "plot [0:" << ShieldingPAS.RowCounter[ShieldingPAS.MatrixCounter]+10 << "]\\" << endl;
502 for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
503 output << "'ShieldingsPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1+" << step*(double)BondOrder << "):7 with boxes, \\" << endl;
504 output2 << "'DeltaShieldingsPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1):7 with linespoints";
505 if (BondOrder-1 != KeySet.Order)
506 output2 << ", \\" << endl;
507 }
508 output << "'ShieldingsPAS-Order.dat' index " << KeySet.Order << " title 'Full' using ($1+" << step*(double)KeySet.Order << "):7 with boxes" << endl;
509 output.close();
510 output2.close();
511
512 if(!OpenOutputFile(output, argv[3], "ChisPAS-Order.pyx")) return 1;
513 if(!OpenOutputFile(output2, argv[3], "DeltaChisPAS-Order.pyx")) return 1;
514 CreatePlotHeader(output, "ChisPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical Chi value [ppm]");
515 CreatePlotHeader(output2, "DeltaChisPAS-Order", 1, "top right", NULL, NULL, 1, 5, "nuclei index", "iso chemical Chi value [ppm]");
516 output << "set boxwidth " << step << endl;
517 output << "plot [0:" << ChiPAS.RowCounter[ChiPAS.MatrixCounter]+10 << "]\\" << endl;
518 output2 << "plot [0:" << ChiPAS.RowCounter[ChiPAS.MatrixCounter]+10 << "]\\" << endl;
519 for (int BondOrder=0;BondOrder<KeySet.Order;BondOrder++) {
520 output << "'ChisPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1+" << step*(double)BondOrder << "):7 with boxes, \\" << endl;
521 output2 << "'DeltaChisPAS-Order.dat' index " << BondOrder << " title 'Order " << BondOrder+1 << "' using ($1):7 with linespoints";
522 if (BondOrder-1 != KeySet.Order)
523 output2 << ", \\" << endl;
524 }
525 output << "'ChisPAS-Order.dat' index " << KeySet.Order << " title 'Full' using ($1+" << step*(double)KeySet.Order << "):7 with boxes" << endl;
526 output.close();
527 output2.close();
528 }
529
530 // create Makefile
531 if(!OpenOutputFile(output, argv[3], "Makefile")) return 1;
532 output << "PYX = $(shell ls *.pyx)" << endl << endl;
533 output << "EPS = $(PYX:.pyx=.eps)" << endl << endl;
534 output << "%.eps: %.pyx" << endl;
535 output << "\t~/build/pyxplot/pyxplot $<" << endl << endl;
536 output << "all: $(EPS)" << endl << endl;
537 output << ".PHONY: clean" << endl;
538 output << "clean:" << endl;
539 output << "\trm -rf $(EPS)" << endl;
540 output.close();
541
542 // ++++++++++++++++ exit ++++++++++++++++++++++++++++++++++
543 delete(periode);
544 Free((void **)&dir, "main: *dir");
545 cout << "done." << endl;
546 return 0;
547};
548
549//============================ END ===========================
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