source: src/periodentafel.cpp@ dc322a

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Last change on this file since dc322a was 255829, checked in by Frederik Heber <heber@…>, 14 years ago

Removed Helpers.hpp, deleted Helpers.cpp and libMoleCuilderHelpers.la is history.

  • defs.cpp is now compiled into libmolecuilder.la.
  • ShapeUnitTest alone needs defs.cpp.
  • Most changes are removal of Helpers/helpers.hpp.
  • performCriticalExit() now inline function in Helpers/helpers.hpp.
  • also inclusion possible where performCriticalExit() is needed.
  • Helpers/helpers.hpp does not include defs.hpp anymore and this causes lots of missing Helpers/defs.hpp, CodePatterns/Log.hpp and alikes.
  • removed src/Helpers from configure.ac.
  • Property mode set to 100755
File size: 16.7 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/** \file periodentafel.cpp
9 *
10 * Function implementations for the class periodentafel.
11 *
12 */
13
14// include config.h
15#ifdef HAVE_CONFIG_H
16#include <config.h>
17#endif
18
19#include "CodePatterns/MemDebug.hpp"
20
21#include <iomanip>
22#include <iostream>
23#include <fstream>
24#include <cstring>
25
26#include "CodePatterns/Assert.hpp"
27#include "element.hpp"
28#include "elements_db.hpp"
29#include "CodePatterns/Log.hpp"
30#include "periodentafel.hpp"
31#include "CodePatterns/Verbose.hpp"
32
33using namespace std;
34
35/************************************* Functions for class periodentafel ***************************/
36
37/** constructor for class periodentafel
38 * Initialises start and end of list and resets periodentafel::checkliste to false.
39 */
40periodentafel::periodentafel()
41{
42 {
43 stringstream input(elementsDB,ios_base::in);
44#ifndef NDEBUG
45 bool status =
46#endif
47 LoadElementsDatabase(input);
48 ASSERT(status, "General element initialization failed");
49 }
50 {
51 stringstream input(ElectronegativitiesDB,ios_base::in);
52#ifndef NDEBUG
53 bool status =
54#endif
55 LoadElectronegativityDatabase(input);
56 ASSERT(status, "Electronegativities entry of element initialization failed");
57 }
58 {
59 stringstream input(valenceDB,ios_base::in);
60#ifndef NDEBUG
61 bool status =
62#endif
63 LoadValenceDatabase(input);
64 ASSERT(status, "Valence entry of element initialization failed");
65 }
66 {
67 stringstream input(orbitalsDB,ios_base::in);
68#ifndef NDEBUG
69 bool status =
70#endif
71 LoadOrbitalsDatabase(input);
72 ASSERT(status, "Orbitals entry of element initialization failed");
73 }
74 {
75 stringstream input(HbondangleDB,ios_base::in);
76#ifndef NDEBUG
77 bool status =
78#endif
79 LoadHBondAngleDatabase(input);
80 ASSERT(status, "HBond angle entry of element initialization failed");
81 }
82 {
83 stringstream input(HbonddistanceDB,ios_base::in);
84#ifndef NDEBUG
85 bool status =
86#endif
87 LoadHBondLengthsDatabase(input);
88 ASSERT(status, "HBond distance entry of element initialization failed");
89 }
90};
91
92/** destructor for class periodentafel
93 * Removes every element and afterwards deletes start and end of list.
94 * TODO: Handle when elements have changed and store databases then
95 */
96periodentafel::~periodentafel()
97{
98 CleanupPeriodtable();
99};
100
101/** Adds element to period table list
102 * \param *pointer element to be added
103 * \return iterator to added element
104 */
105periodentafel::iterator periodentafel::AddElement(element * pointer)
106{
107 atomicNumber_t Z = pointer->getNumber();
108 ASSERT(!elements.count(Z), "Element is already present.");
109 if (pointer->getNumber() < 1 && pointer->getNumber() >= MAX_ELEMENTS)
110 DoeLog(0) && (eLog() << Verbose(0) << "Invalid Z number!\n");
111 pair<iterator,bool> res = elements.insert(pair<atomicNumber_t,element*>(Z,pointer));
112 return res.first;
113};
114
115/** Removes element from list.
116 * \param *pointer element to be removed
117 */
118size_t periodentafel::RemoveElement(const element * pointer)
119{
120 return RemoveElement(pointer->getNumber());
121};
122
123/** Removes element from list.
124 * \param Z element to be removed
125 */
126size_t periodentafel::RemoveElement(atomicNumber_t Z)
127{
128 return elements.erase(Z);
129};
130
131/** Removes every element from the period table.
132 */
133void periodentafel::CleanupPeriodtable()
134{
135 for(iterator iter=elements.begin();iter!=elements.end();++iter){
136 delete(*iter).second;
137 }
138 elements.clear();
139};
140
141/** Finds an element by its atomic number.
142 * If element is not yet in list, returns NULL.
143 * \param Z atomic number
144 * \return pointer to element or NULL if not found
145 */
146const element * periodentafel::FindElement(atomicNumber_t Z) const
147{
148 const_iterator res = elements.find(Z);
149 return res!=elements.end()?((*res).second):0;
150};
151
152/** Finds an element by its atomic number.
153 * If element is not yet in list, datas are asked and stored in database.
154 * \param shorthand chemical symbol of the element, e.g. H for hydrogene
155 * \return pointer to element
156 */
157const element * periodentafel::FindElement(const string &shorthand) const
158{
159 element *res = 0;
160 for(const_iterator iter=elements.begin();iter!=elements.end();++iter) {
161 if((*iter).second->getSymbol() == shorthand){
162 res = (*iter).second;
163 break;
164 }
165 }
166 return res;
167};
168
169/** Asks for element number and returns pointer to element
170 * \return desired element or NULL
171 */
172const element * periodentafel::AskElement() const
173{
174 const element * walker = NULL;
175 int Z;
176 do {
177 DoLog(0) && (Log() << Verbose(0) << "Atomic number Z: ");
178 cin >> Z;
179 walker = this->FindElement(Z); // give type
180 } while (walker == NULL);
181 return walker;
182};
183
184/** Asks for element and if not found, presents mask to enter info.
185 * \return pointer to either present or newly created element
186 */
187const element * periodentafel::EnterElement()
188{
189 atomicNumber_t Z = 0;
190 DoLog(0) && (Log() << Verbose(0) << "Atomic number: " << Z << endl);
191 cin >> Z;
192 const element *res = FindElement(Z);
193 if (!res) {
194 // TODO: make this using the constructor
195 DoLog(0) && (Log() << Verbose(0) << "Element not found in database, please enter." << endl);
196 element *tmp = new element;
197 tmp->Z = Z;
198 DoLog(0) && (Log() << Verbose(0) << "Mass: " << endl);
199 cin >> tmp->mass;
200 DoLog(0) && (Log() << Verbose(0) << "Name [max 64 chars]: " << endl);
201 cin >> tmp->getName();
202 DoLog(0) && (Log() << Verbose(0) << "Short form [max 3 chars]: " << endl);
203 cin >> tmp->getSymbol();
204 AddElement(tmp);
205 return tmp;
206 }
207 return res;
208};
209
210
211/******************** Access to iterators ****************************/
212periodentafel::const_iterator periodentafel::begin() const{
213 return elements.begin();
214}
215
216periodentafel::const_iterator periodentafel::end() const{
217 return elements.end();
218}
219
220periodentafel::reverse_iterator periodentafel::rbegin() const{
221 return reverse_iterator(elements.end());
222}
223
224periodentafel::reverse_iterator periodentafel::rend() const{
225 return reverse_iterator(elements.begin());
226}
227
228/** Prints period table to given stream.
229 * \param output stream
230 */
231bool periodentafel::Output(ostream * const output) const
232{
233 bool result = true;
234 if (output != NULL) {
235 for(const_iterator iter=elements.begin(); iter !=elements.end();++iter){
236 result = result && (*iter).second->Output(output);
237 }
238 return result;
239 } else
240 return false;
241};
242
243/** Loads element list from file.
244 * \param *path to to standard file names
245 */
246bool periodentafel::LoadPeriodentafel(const char *path)
247{
248 ifstream input;
249 bool status = true;
250 bool otherstatus = true;
251 char filename[255];
252
253 // fill elements DB
254 strncpy(filename, path, MAXSTRINGSIZE);
255 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
256 strncat(filename, STANDARDELEMENTSDB, MAXSTRINGSIZE-strlen(filename));
257 input.open(filename);
258 if (!input.fail())
259 DoLog(0) && (Log() << Verbose(0) << "Using " << filename << " as elements database." << endl);
260 status = status && LoadElementsDatabase(input);
261 input.close();
262 input.clear();
263
264 // fill valence DB per element
265 strncpy(filename, path, MAXSTRINGSIZE);
266 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
267 strncat(filename, STANDARDELECTRONEGATIVITYDB, MAXSTRINGSIZE-strlen(filename));
268 input.open(filename);
269 if (!input.fail())
270 DoLog(0) && (Log() << Verbose(0) << "Using " << filename << " as electronegativity database." << endl);
271 otherstatus = otherstatus && LoadElectronegativityDatabase(input);
272 input.close();
273 input.clear();
274
275 // fill valence DB per element
276 strncpy(filename, path, MAXSTRINGSIZE);
277 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
278 strncat(filename, STANDARDVALENCEDB, MAXSTRINGSIZE-strlen(filename));
279 input.open(filename);
280 if (!input.fail())
281 DoLog(0) && (Log() << Verbose(0) << "Using " << filename << " as valence database." << endl);
282 otherstatus = otherstatus && LoadValenceDatabase(input);
283 input.close();
284 input.clear();
285
286 // fill orbitals DB per element
287 strncpy(filename, path, MAXSTRINGSIZE);
288 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
289 strncat(filename, STANDARDORBITALDB, MAXSTRINGSIZE-strlen(filename));
290 input.open(filename);
291 if (!input.fail())
292 DoLog(0) && (Log() << Verbose(0) << "Using " << filename << " as orbitals database." << endl);
293 otherstatus = otherstatus && LoadOrbitalsDatabase(input);
294 input.close();
295 input.clear();
296
297 // fill H-BondAngle DB per element
298 strncpy(filename, path, MAXSTRINGSIZE);
299 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
300 strncat(filename, STANDARDHBONDANGLEDB, MAXSTRINGSIZE-strlen(filename));
301 input.open(filename);
302 if (!input.fail())
303 DoLog(0) && (Log() << Verbose(0) << "Using " << filename << " as H bond angle database." << endl);
304 otherstatus = otherstatus && LoadHBondAngleDatabase(input);
305 input.close();
306 input.clear();
307
308 // fill H-BondDistance DB per element
309 strncpy(filename, path, MAXSTRINGSIZE);
310 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
311 strncat(filename, STANDARDHBONDDISTANCEDB, MAXSTRINGSIZE-strlen(filename));
312 input.open(filename);
313 if (!input.fail())
314 DoLog(0) && (Log() << Verbose(0) << "Using " << filename << " as H bond length database." << endl);
315 otherstatus = otherstatus && LoadHBondLengthsDatabase(input);
316 input.close();
317 input.clear();
318
319 if (!otherstatus){
320 DoeLog(2) && (eLog()<< Verbose(2) << "Something went wrong while parsing the other databases!" << endl);
321 }
322
323 return status;
324};
325
326/** load the element info.
327 * \param *input stream to parse from
328 * \return true - parsing successful, false - something went wrong
329 */
330bool periodentafel::LoadElementsDatabase(istream &input)
331{
332 bool status = true;
333 string header1tmp,header2tmp;
334 // first parse into a map, so we can revert to old status in case something goes wront
335 map<atomicNumber_t,element*> parsedElements;
336 if (!input.fail()) {
337 getline(input,header1tmp);
338 getline(input,header2tmp); // skip first two header lines
339 //cout << "First header: " << header1tmp << endl;
340 //cout << "Second header: " << header2tmp << endl;
341// DoLog(0) && (Log() << Verbose(0) << "Parsed elements:");
342 while (!input.eof()) {
343 element *neues = new element;
344 input >> neues->name;
345 //input >> ws;
346 input >> neues->symbol;
347 //input >> ws;
348 input >> neues->period;
349 //input >> ws;
350 input >> neues->group;
351 //input >> ws;
352 input >> neues->block;
353 //input >> ws;
354 input >> neues->Z;
355 //input >> ws;
356 input >> neues->mass;
357 //input >> ws;
358 input >> neues->CovalentRadius;
359 //input >> ws;
360 input >> neues->VanDerWaalsRadius;
361 //input >> ws;
362 input >> ws;
363 //neues->Output((ofstream *)&cout);
364 if ((neues->getNumber() > 0) && (neues->getNumber() < MAX_ELEMENTS)) {
365 parsedElements[neues->Z] = neues;
366// DoLog(0) && (Log() << Verbose(0) << " " << *neues);
367 } else {
368 DoeLog(2) && (eLog() << Verbose(2) << "Detected empty line or invalid element in elements db, discarding." << endl);
369 DoLog(0) && (Log() << Verbose(0) << " <?>");
370 delete(neues);
371 }
372 // when the input is in failed state, we most likely just read garbage
373 if(input.fail()) {
374 DoeLog(2) && (eLog() << Verbose(2) << "Error parsing elements db." << endl);
375 status = false;
376 break;
377 }
378 }
379// DoLog(0) && (Log() << Verbose(0) << endl);
380 } else {
381 DoeLog(1) && (eLog() << Verbose(1) << "Could not open the database." << endl);
382 status = false;
383 }
384
385 if (!parsedElements.size())
386 status = false;
387
388 if(status){
389 for(map<atomicNumber_t,element*>::iterator iter=parsedElements.begin();
390 iter!=parsedElements.end();
391 ++iter){
392 if (elements.count(iter->first)) {
393 // if element already present, replace the old one
394 // pointer to old element might still be in use, so we have to replace into the old element
395 *(elements[iter->first])=*iter->second;
396 delete(iter->second);
397 }
398 else {
399 // no such element in periodentafel... we can just insert
400 elements[iter->first] = iter->second;
401 }
402 }
403 // all went well.. we now copy the header
404 strncpy(header1,header1tmp.c_str(),MAXSTRINGSIZE);
405 header1[MAXSTRINGSIZE-1]=0;
406 strncpy(header2,header2tmp.c_str(),MAXSTRINGSIZE);
407 header2[MAXSTRINGSIZE-1]=0;
408 }
409
410 return status;
411}
412
413/** load the electronegativity info.
414 * \param *input stream to parse from
415 * \return true - parsing successful, false - something went wrong
416 */
417bool periodentafel::LoadElectronegativityDatabase(std::istream &input)
418{
419 char dummy[MAXSTRINGSIZE];
420 if (!input.fail()) {
421 input.getline(dummy, MAXSTRINGSIZE);
422 while (!input.eof()) {
423 atomicNumber_t Z;
424 input >> Z;
425 ASSERT(elements.count(Z), "Element not present");
426 input >> ws;
427 input >> elements[Z]->Electronegativity;
428 input >> ws;
429 //DoLog(1) && (Log() << Verbose(1)
430 // << "Element " << Z << " has " << FindElement(Z)->Electronegativity << " valence electrons." << endl);
431 }
432 return true;
433 } else
434 return false;
435}
436
437/** load the valence info.
438 * \param *input stream to parse from
439 * \return true - parsing successful, false - something went wrong
440 */
441bool periodentafel::LoadValenceDatabase(istream &input)
442{
443 char dummy[MAXSTRINGSIZE];
444 if (!input.fail()) {
445 input.getline(dummy, MAXSTRINGSIZE);
446 while (!input.eof()) {
447 atomicNumber_t Z;
448 input >> Z;
449 ASSERT(elements.count(Z), "Element not present");
450 input >> ws;
451 input >> elements[Z]->Valence;
452 input >> ws;
453 //Log() << Verbose(3) << "Element " << Z << " has " << FindElement(Z)->Valence << " valence electrons." << endl;
454 }
455 return true;
456 } else
457 return false;
458}
459
460/** load the orbitals info.
461 * \param *input stream to parse from
462 * \return true - parsing successful, false - something went wrong
463 */
464bool periodentafel::LoadOrbitalsDatabase(istream &input)
465{
466 char dummy[MAXSTRINGSIZE];
467 if (!input.fail()) {
468 input.getline(dummy, MAXSTRINGSIZE);
469 while (!input.eof()) {
470 atomicNumber_t Z;
471 input >> Z;
472 ASSERT(elements.count(Z), "Element not present");
473 input >> ws;
474 input >> elements[Z]->NoValenceOrbitals;
475 input >> ws;
476 //Log() << Verbose(3) << "Element " << Z << " has " << FindElement(Z)->NoValenceOrbitals << " number of singly occupied valence orbitals." << endl;
477 }
478 return true;
479 } else
480 return false;
481}
482
483/** load the hbond angles info.
484 * \param *input stream to parse from
485 * \return true - parsing successful, false - something went wrong
486 */
487bool periodentafel::LoadHBondAngleDatabase(istream &input)
488{
489 char dummy[MAXSTRINGSIZE];
490 if (!input.fail()) {
491 input.getline(dummy, MAXSTRINGSIZE);
492 while (!input.eof()) {
493 atomicNumber_t Z;
494 input >> Z;
495 ASSERT(elements.count(Z), "Element not present");
496 input >> ws;
497 input >> elements[Z]->HBondAngle[0];
498 input >> elements[Z]->HBondAngle[1];
499 input >> elements[Z]->HBondAngle[2];
500 input >> ws;
501 //Log() << Verbose(3) << "Element " << (int)tmp << " has " << FindElement((int)tmp)->HBondAngle[0] << ", " << FindElement((int)tmp)->HBondAngle[1] << ", " << FindElement((int)tmp)->HBondAngle[2] << " degrees bond angle for one, two, three connected hydrogens." << endl;
502 }
503 return true;
504 } else
505 return false;
506}
507
508/** load the hbond lengths info.
509 * \param *input stream to parse from
510 * \return true - parsing successful, false - something went wrong
511 */
512bool periodentafel::LoadHBondLengthsDatabase(istream &input)
513{
514 char dummy[MAXSTRINGSIZE];
515 if (!input.fail()) {
516 input.getline(dummy, MAXSTRINGSIZE);
517 while (!input.eof()) {
518 atomicNumber_t Z;
519 input >> Z;
520 ASSERT(elements.count(Z), "Element not present");
521 input >> ws;
522 input >> elements[Z]->HBondDistance[0];
523 input >> elements[Z]->HBondDistance[1];
524 input >> elements[Z]->HBondDistance[2];
525 input >> ws;
526 //Log() << Verbose(3) << "Element " << (int)tmp << " has " << FindElement((int)tmp)->HBondDistance[0] << " Angstrom typical distance to hydrogen." << endl;
527 }
528 return true;
529 } else
530 return false;
531}
532
533/** Stores element list to file.
534 */
535bool periodentafel::StorePeriodentafel(const char *path) const
536{
537 bool result = true;
538 ofstream f;
539 char filename[MAXSTRINGSIZE];
540
541 strncpy(filename, path, MAXSTRINGSIZE);
542 strncat(filename, "/", MAXSTRINGSIZE-strlen(filename));
543 strncat(filename, STANDARDELEMENTSDB, MAXSTRINGSIZE-strlen(filename));
544 f.open(filename);
545 if (f != NULL) {
546 f << header1 << endl;
547 f << header2 << endl;
548 for(const_iterator iter=elements.begin();iter!=elements.end();++iter){
549 result = result && (*iter).second->Output(&f);
550 }
551 f.close();
552 return true;
553 } else
554 return result;
555};
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