source: src/Parser/PdbParser.cpp@ 45b45d

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Last change on this file since 45b45d was 45b45d, checked in by Frederik Heber <heber@…>, 9 years ago

FIX: PdbParser would calculate trajectors over all atoms, not just given set.

  • this is only to determine maximum number of trajectory steps but nonetheless unnecessary.
  • Property mode set to 100644
File size: 34.4 KB
Line 
1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
4 * Copyright (C) 2010-2012 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 * PdbParser.cpp
26 *
27 * Created on: Aug 17, 2010
28 * Author: heber
29 */
30
31// include config.h
32#ifdef HAVE_CONFIG_H
33#include <config.h>
34#endif
35
36#include "CodePatterns/MemDebug.hpp"
37
38#include "CodePatterns/Assert.hpp"
39#include "CodePatterns/Log.hpp"
40#include "CodePatterns/toString.hpp"
41#include "CodePatterns/Verbose.hpp"
42
43#include "Atom/atom.hpp"
44#include "Bond/bond.hpp"
45#include "Descriptors/AtomIdDescriptor.hpp"
46#include "Element/element.hpp"
47#include "Element/periodentafel.hpp"
48#include "molecule.hpp"
49#include "MoleculeListClass.hpp"
50#include "Parser/PdbParser.hpp"
51#include "World.hpp"
52#include "WorldTime.hpp"
53
54#include <algorithm>
55#include <cmath>
56#include <map>
57#include <vector>
58
59#include <iostream>
60#include <iomanip>
61
62using namespace std;
63
64// declare specialized static variables
65const std::string FormatParserTrait<pdb>::name = "pdb";
66const std::string FormatParserTrait<pdb>::suffix = "pdb";
67const ParserTypes FormatParserTrait<pdb>::type = pdb;
68
69/**
70 * Constructor.
71 */
72FormatParser< pdb >::FormatParser() :
73 FormatParser_common(NULL)
74{
75 knownTokens["ATOM"] = PdbKey::Atom;
76 knownTokens["HETATM"] = PdbKey::Atom;
77 knownTokens["TER"] = PdbKey::Filler;
78 knownTokens["END"] = PdbKey::EndOfTimestep;
79 knownTokens["CONECT"] = PdbKey::Connect;
80 knownTokens["REMARK"] = PdbKey::Remark;
81 knownTokens[""] = PdbKey::EndOfTimestep;
82
83 // argh, why can't just PdbKey::X+(size_t)i
84 PositionEnumMap[0] = PdbKey::X;
85 PositionEnumMap[1] = PdbKey::Y;
86 PositionEnumMap[2] = PdbKey::Z;
87}
88
89/**
90 * Destructor.
91 */
92FormatParser< pdb >::~FormatParser()
93{
94 PdbAtomInfoContainer::clearknownDataKeys();
95 additionalAtomData.clear();
96}
97
98
99/** Parses the initial word of the given \a line and returns the token type.
100 *
101 * @param line line to scan
102 * @return token type
103 */
104enum PdbKey::KnownTokens FormatParser< pdb >::getToken(std::string &line)
105{
106 // look for first space
107 std::string token = line.substr(0,6);
108 const size_t space_location = token.find(' ');
109 const size_t tab_location = token.find('\t');
110 size_t location = space_location < tab_location ? space_location : tab_location;
111 if (location != string::npos) {
112 //LOG(1, "Found space at position " << space_location);
113 token = token.substr(0,space_location);
114 }
115
116 //LOG(1, "Token is " << token);
117 if (knownTokens.count(token) == 0)
118 return PdbKey::NoToken;
119 else
120 return knownTokens[token];
121
122 return PdbKey::NoToken;
123}
124
125/**
126 * Loads atoms from a PDB-formatted file.
127 *
128 * \param PDB file
129 */
130void FormatParser< pdb >::load(istream* file) {
131 string line;
132 size_t linecount = 0;
133 enum PdbKey::KnownTokens token;
134
135 // reset id maps for this file (to correctly parse CONECT entries)
136 resetIdAssociations();
137
138 bool NotEndOfFile = true;
139 molecule *newmol = World::getInstance().createMolecule();
140 newmol->ActiveFlag = true;
141 unsigned int step = 0;
142 // TODO: Remove the insertion into molecule when saving does not depend on them anymore. Also, remove molecule.hpp include
143 World::getInstance().getMolecules()->insert(newmol);
144 while (NotEndOfFile) {
145 bool NotEndOfTimestep = true;
146 while (NotEndOfTimestep && NotEndOfFile) {
147 std::getline(*file, line, '\n');
148 if (!line.empty()) {
149 // extract first token
150 token = getToken(line);
151 switch (token) {
152 case PdbKey::Atom:
153 LOG(3,"INFO: Parsing ATOM entry for time step " << step << ".");
154 readAtomDataLine(step, line, newmol);
155 break;
156 case PdbKey::Remark:
157 LOG(3,"INFO: Parsing REM entry for time step " << step << ".");
158 break;
159 case PdbKey::Connect:
160 LOG(3,"INFO: Parsing CONECT entry for time step " << step << ".");
161 readNeighbors(step, line);
162 break;
163 case PdbKey::Filler:
164 LOG(3,"INFO: Stumbled upon Filler entry for time step " << step << ".");
165 break;
166 case PdbKey::EndOfTimestep:
167 LOG(1,"INFO: Parsing END entry or empty line for time step " << step << ".");
168 NotEndOfTimestep = false;
169 break;
170 default:
171 // TODO: put a throw here
172 ELOG(2, "Unknown token: '" << line << "' for time step " << step << ".");
173 //ASSERT(0, "FormatParser< pdb >::load() - Unknown token in line "+toString(linecount)+": "+line+".");
174 break;
175 }
176 }
177 NotEndOfFile = NotEndOfFile && (file->good());
178 linecount++;
179 }
180 ++step;
181 }
182 LOG(4, "INFO: Listing all newly parsed atoms.");
183 BOOST_FOREACH(atom *_atom, *newmol)
184 LOG(4, "INFO: Atom " << _atom->getName() << " " << *dynamic_cast<AtomInfo *>(_atom) << ".");
185
186 // refresh atom::nr and atom::name
187 newmol->getAtomCount();
188}
189
190/**
191 * Saves the \a atoms into as a PDB file.
192 *
193 * \param file where to save the state
194 * \param atoms atoms to store
195 */
196void FormatParser< pdb >::save(
197 ostream* file,
198 const std::vector<const atom *> &AtomList)
199{
200 LOG(2, "DEBUG: Saving changes to pdb.");
201
202 // check for maximum number of time steps
203 size_t max_timesteps = 0;
204 for (vector<const atom *>::const_iterator atomIt = AtomList.begin();
205 atomIt != AtomList.end(); atomIt++) {
206 const atom * _atom = *atomIt;
207 LOG(4, "INFO: Atom " << _atom->getName() << " "
208 << *dynamic_cast<const AtomInfo *>(_atom) << ".");
209 if (_atom->getTrajectorySize() > max_timesteps)
210 max_timesteps = _atom->getTrajectorySize();
211 }
212 LOG(2,"INFO: Found a maximum of " << max_timesteps << " time steps to store.");
213
214 // re-distribute serials
215 resetIdAssociations();
216 // (new atoms might have been added)
217 int AtomNo = 1; // serial number starts at 1 in pdb
218 for (vector<const atom *>::const_iterator atomIt = AtomList.begin();
219 atomIt != AtomList.end(); atomIt++) {
220 PdbAtomInfoContainer &atomInfo = getadditionalAtomData(*atomIt);
221 associateLocaltoGlobalId(AtomNo, (*atomIt)->getId());
222 atomInfo.set(PdbKey::serial, toString(AtomNo));
223 ++AtomNo;
224 }
225
226 // store all time steps (always do first step)
227 for (size_t step = 0; (step == 0) || (step < max_timesteps); ++step) {
228 {
229 // add initial remark
230 *file << "REMARK created by molecuilder on ";
231 time_t now = time((time_t *)NULL); // Get the system time and put it into 'now' as 'calender time'
232 // ctime ends in \n\0, we have to cut away the newline
233 std::string time(ctime(&now));
234 size_t pos = time.find('\n');
235 if (pos != 0)
236 *file << time.substr(0,pos);
237 else
238 *file << time;
239 *file << ", time step " << step;
240 *file << endl;
241 }
242
243 {
244 std::map<size_t,size_t> MolIdMap;
245 size_t MolNo = 1; // residue number starts at 1 in pdb
246 for (vector<const atom *>::const_iterator atomIt = AtomList.begin();
247 atomIt != AtomList.end(); atomIt++) {
248 const molecule *mol = (*atomIt)->getMolecule();
249 if ((mol != NULL) && (MolIdMap.find(mol->getId()) == MolIdMap.end())) {
250 MolIdMap[mol->getId()] = MolNo++;
251 }
252 }
253 const size_t MaxMol = MolNo;
254
255 // have a count per element and per molecule (0 is for all homeless atoms)
256 std::vector<int> **elementNo = new std::vector<int>*[MaxMol];
257 for (size_t i = 0; i < MaxMol; ++i)
258 elementNo[i] = new std::vector<int>(MAX_ELEMENTS,1);
259 char name[MAXSTRINGSIZE];
260 std::string ResidueName;
261
262 // write ATOMs
263 for (vector<const atom *>::const_iterator atomIt = AtomList.begin();
264 atomIt != AtomList.end(); atomIt++) {
265 PdbAtomInfoContainer &atomInfo = getadditionalAtomData(*atomIt);
266 // gather info about residue
267 const molecule *mol = (*atomIt)->getMolecule();
268 if (mol == NULL) {
269 MolNo = 0;
270 atomInfo.set(PdbKey::resSeq, "0");
271 } else {
272 ASSERT(MolIdMap.find(mol->getId()) != MolIdMap.end(),
273 "FormatParser< pdb >::save() - Mol id "+toString(mol->getId())+" not present despite we set it?!");
274 MolNo = MolIdMap[mol->getId()];
275 atomInfo.set(PdbKey::resSeq, toString(MolIdMap[mol->getId()]));
276 if (atomInfo.get<std::string>(PdbKey::resName) == "-")
277 atomInfo.set(PdbKey::resName, mol->getName().substr(0,3));
278 }
279 // get info about atom
280 const size_t Z = (*atomIt)->getType()->getAtomicNumber();
281 if (atomInfo.get<std::string>(PdbKey::name) == "-") { // if no name set, give it a new name
282 sprintf(name, "%2s%02d",(*atomIt)->getType()->getSymbol().c_str(), (*elementNo[MolNo])[Z]);
283 (*elementNo[MolNo])[Z] = ((*elementNo[MolNo])[Z]+1) % 100; // confine to two digits
284 atomInfo.set(PdbKey::name, name);
285 }
286 // set position
287 for (size_t i=0; i<NDIM;++i) {
288 stringstream position;
289 position << setprecision(7) << (*atomIt)->getPositionAtStep(step).at(i);
290 atomInfo.set(PositionEnumMap[i], position.str());
291 }
292 // change element and charge if changed
293 if (atomInfo.get<std::string>(PdbKey::element) != (*atomIt)->getType()->getSymbol()) {
294 std::string symbol = (*atomIt)->getType()->getSymbol();
295 if ((symbol[1] >= 'a') && (symbol[1] <= 'z'))
296 symbol[1] = (symbol[1] - 'a') + 'A';
297 atomInfo.set(PdbKey::element, symbol);
298 }
299
300 // finally save the line
301 saveLine(file, atomInfo);
302 }
303 for (size_t i = 0; i < MaxMol; ++i)
304 delete elementNo[i];
305 delete[] elementNo;
306
307 // write CONECTs
308 for (vector<const atom *>::const_iterator atomIt = AtomList.begin();
309 atomIt != AtomList.end(); atomIt++) {
310 writeNeighbors(file, 4, *atomIt);
311 }
312 }
313 // END
314 *file << "END" << endl;
315 }
316
317}
318
319/** Add default info, when new atom is added to World.
320 *
321 * @param id of atom
322 */
323void FormatParser< pdb >::AtomInserted(atomId_t id)
324{
325 //LOG(3, "FormatParser< pdb >::AtomInserted() - notified of atom " << id << "'s insertion.");
326 ASSERT(!isPresentadditionalAtomData(id),
327 "FormatParser< pdb >::AtomInserted() - additionalAtomData already present for newly added atom "
328 +toString(id)+".");
329 // don't insert here as this is our check whether we are in the first time step
330 //additionalAtomData.insert( std::make_pair(id, defaultAdditionalData) );
331}
332
333/** Remove additional AtomData info, when atom has been removed from World.
334 *
335 * @param id of atom
336 */
337void FormatParser< pdb >::AtomRemoved(atomId_t id)
338{
339 //LOG(3, "FormatParser< pdb >::AtomRemoved() - notified of atom " << id << "'s removal.");
340 std::map<const atomId_t, PdbAtomInfoContainer>::iterator iter = additionalAtomData.find(id);
341 // as we do not insert AtomData on AtomInserted, we cannot be assured of its presence
342// ASSERT(iter != additionalAtomData.end(),
343// "FormatParser< pdb >::AtomRemoved() - additionalAtomData is not present for atom "
344// +toString(id)+" to remove.");
345 if (iter != additionalAtomData.end()) {
346 additionalAtomData.erase(iter);
347 }
348}
349
350
351/** Checks whether there is an entry for the given atom's \a _id.
352 *
353 * @param _id atom's id we wish to check on
354 * @return true - entry present, false - only for atom's father or no entry
355 */
356bool FormatParser< pdb >::isPresentadditionalAtomData(const atomId_t _id) const
357{
358 std::map<const atomId_t, PdbAtomInfoContainer>::const_iterator iter = additionalAtomData.find(_id);
359 return (iter != additionalAtomData.end());
360}
361
362
363/** Either returns reference to present entry or creates new with default values.
364 *
365 * @param _atom atom whose entry we desire
366 * @return
367 */
368PdbAtomInfoContainer& FormatParser< pdb >::getadditionalAtomData(const atom * const _atom)
369{
370 if (additionalAtomData.find(_atom->getId()) != additionalAtomData.end()) {
371 } else if (additionalAtomData.find(_atom->getFather()->getId()) != additionalAtomData.end()) {
372 // use info from direct father
373 additionalAtomData[_atom->getId()] = additionalAtomData[_atom->getFather()->getId()];
374 } else if (additionalAtomData.find(_atom->GetTrueFather()->getId()) != additionalAtomData.end()) {
375 // use info from topmost father
376 additionalAtomData[_atom->getId()] = additionalAtomData[_atom->GetTrueFather()->getId()];
377 } else {
378 // create new entry use default values if nothing else is known
379 additionalAtomData[_atom->getId()] = defaultAdditionalData;
380 }
381 return additionalAtomData[_atom->getId()];
382}
383
384/** Tiny helper function to print a float with a most 8 digits.
385 *
386 * A few examples best give the picture:
387 * 1234.678
388 * 1.234
389 * 0.001
390 * 0.100
391 * 1234567.
392 * 123456.7
393 * -1234.56
394 *
395 * \param value
396 * \return string representation
397 */
398const std::string FormatParser< pdb >::printCoordinate(
399 const double value)
400{
401 size_t meaningful_bits=7; // one for decimal dot
402 if (value < 0) //one for the minus sign
403 --meaningful_bits;
404 // count digits before dot (without minus and round towards zero!)
405 int full = floor(fabs(value));
406 size_t bits_before_dot = 1;
407 {
408 int tmp = full;
409 for (;bits_before_dot < meaningful_bits;++bits_before_dot) {
410 // even if value is 0...somethingish, we still must start at one digit
411 tmp = tmp/10;
412 if (tmp == 0)
413 break;
414 }
415 }
416 // this fixes bits available after dot
417 const size_t bits_after_dot = std::min((int)meaningful_bits - (int)bits_before_dot, 3);
418 stringstream position;
419 if (bits_after_dot > 0) {
420 if (value < 0)
421 position << "-";
422 // truncate 999.9 to 999 and not to 1000! (hence, extra check!)
423 int remainder = round((abs(value)-full)*pow(10,bits_after_dot));
424 if (remainder >= pow(10,bits_after_dot)) {
425 remainder = 0;
426 ++full;
427 }
428 position << full << "." << setfill('0') << setw(bits_after_dot) << remainder;
429 if (bits_after_dot == 2)
430 ELOG(2, "PdbParser is writing coordinates with just a two decimal places.");
431 if (bits_after_dot == 1)
432 ELOG(1, "PdbParser is writing coordinates with just a single decimal places.");
433 } else {
434 ELOG(0, "PdbParser is writing coordinates without any decimal places.");
435 position << full << ".";
436 }
437 return position.str();
438}
439
440/**
441 * Writes one line of PDB-formatted data to the provided stream.
442 *
443 * \param stream where to write the line to
444 * \param *currentAtom the atom of which information should be written
445 * \param AtomNo serial number of atom
446 * \param *name name of atom, i.e. H01
447 * \param ResidueName Name of molecule
448 * \param ResidueNo number of residue
449 */
450void FormatParser< pdb >::saveLine(
451 ostream* file,
452 const PdbAtomInfoContainer &atomInfo)
453{
454 *file << setfill(' ') << left << setw(6)
455 << atomInfo.get<std::string>(PdbKey::token);
456 *file << setfill(' ') << right << setw(5)
457 << (atomInfo.get<int>(PdbKey::serial) % 100000); /* atom serial number */
458 *file << " "; /* char 12 is empty */
459 *file << setfill(' ') << left << setw(4)
460 << atomInfo.get<std::string>(PdbKey::name); /* atom name */
461 *file << setfill(' ') << left << setw(1)
462 << atomInfo.get<std::string>(PdbKey::altLoc); /* alternate location/conformation */
463 *file << setfill(' ') << left << setw(3)
464 << atomInfo.get<std::string>(PdbKey::resName); /* residue name */
465 *file << " "; /* char 21 is empty */
466 *file << setfill(' ') << left << setw(1)
467 << atomInfo.get<std::string>(PdbKey::chainID); /* chain identifier */
468 *file << setfill(' ') << left << setw(4)
469 << (atomInfo.get<int>(PdbKey::resSeq) % 10000); /* residue sequence number */
470 *file << setfill(' ') << left << setw(1)
471 << atomInfo.get<std::string>(PdbKey::iCode); /* iCode */
472 *file << " "; /* char 28-30 are empty */
473 // have the following operate on stringstreams such that format specifiers
474 // only act on these
475 for (size_t i=0;i<NDIM;++i) {
476 *file << setfill(' ') << right << setw(8)
477 << printCoordinate(atomInfo.get<double>(PositionEnumMap[i]));
478 }
479 {
480 stringstream occupancy;
481 occupancy << fixed << setprecision(2) << showpoint
482 << atomInfo.get<double>(PdbKey::occupancy); /* occupancy */
483 *file << setfill(' ') << right << setw(6) << occupancy.str();
484 }
485 {
486 stringstream tempFactor;
487 tempFactor << fixed << setprecision(2) << showpoint
488 << atomInfo.get<double>(PdbKey::tempFactor); /* temperature factor */
489 *file << setfill(' ') << right << setw(6) << tempFactor.str();
490 }
491 *file << " "; /* char 68-76 are empty */
492 *file << setfill(' ') << right << setw(2) << atomInfo.get<std::string>(PdbKey::element); /* element */
493 *file << setfill(' ') << right << setw(2) << atomInfo.get<int>(PdbKey::charge); /* charge */
494
495 *file << endl;
496}
497
498/**
499 * Writes the neighbor information of one atom to the provided stream.
500 *
501 * Note that ListOfBonds of WorldTime::CurrentTime is used.
502 *
503 * Also, we fill up the CONECT line to extend over 80 chars.
504 *
505 * \param *file where to write neighbor information to
506 * \param MaxnumberOfNeighbors of neighbors
507 * \param *currentAtom to the atom of which to take the neighbor information
508 */
509void FormatParser< pdb >::writeNeighbors(
510 ostream* file,
511 int MaxnumberOfNeighbors,
512 const atom * const currentAtom) {
513 int MaxNo = MaxnumberOfNeighbors;
514 int charsleft = 80;
515 const BondList & ListOfBonds = currentAtom->getListOfBonds();
516 if (!ListOfBonds.empty()) {
517 for(BondList::const_iterator currentBond = ListOfBonds.begin(); currentBond != ListOfBonds.end(); ++currentBond) {
518 if (MaxNo >= MaxnumberOfNeighbors) {
519 *file << "CONECT";
520 *file << setw(5) << getLocalId(currentAtom->getId());
521 charsleft = 80-6-5;
522 MaxNo = 0;
523 }
524 *file << setw(5) << getLocalId((*currentBond)->GetOtherAtom(currentAtom)->getId());
525 charsleft -= 5;
526 MaxNo++;
527 if (MaxNo == MaxnumberOfNeighbors) {
528 for (;charsleft > 0; charsleft--)
529 *file << ' ';
530 *file << "\n";
531 }
532 }
533 if (MaxNo != MaxnumberOfNeighbors) {
534 for (;charsleft > 0; charsleft--)
535 *file << ' ';
536 *file << "\n";
537 }
538 }
539}
540
541/** Either returns present atom with given id or a newly created one.
542 *
543 * @param id_string
544 * @return
545 */
546atom* FormatParser< pdb >::getAtomToParse(std::string id_string)
547{
548 // get the local ID
549 ConvertTo<int> toInt;
550 const unsigned int AtomID_local = toInt(id_string);
551 LOG(4, "INFO: Local id is "+toString(AtomID_local)+".");
552 // get the atomic ID if present
553 atom* newAtom = NULL;
554 if (getGlobalId(AtomID_local) != -1) {
555 const unsigned int AtomID_global = getGlobalId(AtomID_local);
556 LOG(4, "INFO: Global id present as " << AtomID_global << ".");
557 // check if atom exists
558 newAtom = World::getInstance().getAtom(AtomById(AtomID_global));
559 LOG(5, "INFO: Listing all present atoms with id.");
560 BOOST_FOREACH(const atom *_atom, const_cast<const World &>(World::getInstance()).getAllAtoms())
561 LOG(5, "INFO: " << *_atom << " with id " << _atom->getId());
562 }
563 // if not exists, create
564 if (newAtom == NULL) {
565 newAtom = World::getInstance().createAtom();
566 //const unsigned int AtomID_global = newAtom->getId();
567 LOG(4, "INFO: No association to global id present, creating atom.");
568 } else {
569 LOG(4, "INFO: Existing atom found: " << *newAtom << ".");
570 }
571 return newAtom;
572}
573
574/** read a line starting with key ATOM.
575 *
576 * We check for line's length and parse only up to this value.
577 *
578 * @param atomInfo container to put information in
579 * @param line line containing key ATOM
580 */
581void FormatParser< pdb >::readPdbAtomInfoContainer(PdbAtomInfoContainer &atomInfo, std::string &line) const
582{
583 const size_t length = line.length();
584 if (length < 80)
585 ELOG(2, "FormatParser< pdb >::readPdbAtomInfoContainer() - pdb is mal-formed, containing less than 80 chars!");
586 if (length >= 6) {
587 LOG(4,"INFO: Parsing token from "+line.substr(0,6)+".");
588 atomInfo.set(PdbKey::token, line.substr(0,6));
589 }
590 if (length >= 11) {
591 LOG(4,"INFO: Parsing serial from "+line.substr(6,5)+".");
592 atomInfo.set(PdbKey::serial, line.substr(6,5));
593 ASSERT(atomInfo.get<int>(PdbKey::serial) != 0,
594 "FormatParser< pdb >::readPdbAtomInfoContainer() - serial 0 is invalid (filler id for conect entries).");
595 }
596
597 if (length >= 16) {
598 LOG(4,"INFO: Parsing name from "+line.substr(12,4)+".");
599 atomInfo.set(PdbKey::name, line.substr(12,4));
600 }
601 if (length >= 17) {
602 LOG(4,"INFO: Parsing altLoc from "+line.substr(16,1)+".");
603 atomInfo.set(PdbKey::altLoc, line.substr(16,1));
604 }
605 if (length >= 20) {
606 LOG(4,"INFO: Parsing resName from "+line.substr(17,3)+".");
607 atomInfo.set(PdbKey::resName, line.substr(17,3));
608 }
609 if (length >= 22) {
610 LOG(4,"INFO: Parsing chainID from "+line.substr(21,1)+".");
611 atomInfo.set(PdbKey::chainID, line.substr(21,1));
612 }
613 if (length >= 26) {
614 LOG(4,"INFO: Parsing resSeq from "+line.substr(22,4)+".");
615 atomInfo.set(PdbKey::resSeq, line.substr(22,4));
616 }
617 if (length >= 27) {
618 LOG(4,"INFO: Parsing iCode from "+line.substr(26,1)+".");
619 atomInfo.set(PdbKey::iCode, line.substr(26,1));
620 }
621
622 if (length >= 60) {
623 LOG(4,"INFO: Parsing occupancy from "+line.substr(54,6)+".");
624 atomInfo.set(PdbKey::occupancy, line.substr(54,6));
625 }
626 if (length >= 66) {
627 LOG(4,"INFO: Parsing tempFactor from "+line.substr(60,6)+".");
628 atomInfo.set(PdbKey::tempFactor, line.substr(60,6));
629 }
630 if (length >= 80) {
631 LOG(4,"INFO: Parsing charge from "+line.substr(78,2)+".");
632 atomInfo.set(PdbKey::charge, line.substr(78,2));
633 }
634 if (length >= 78) {
635 LOG(4,"INFO: Parsing element from "+line.substr(76,2)+".");
636 atomInfo.set(PdbKey::element, line.substr(76,2));
637 } else {
638 LOG(4,"INFO: Trying to parse alternative element from name "+line.substr(12,4)+".");
639 atomInfo.set(PdbKey::element, line.substr(12,4));
640 }
641}
642
643/** Parse an ATOM line from a PDB file.
644 *
645 * Reads one data line of a pdstatus file and interprets it according to the
646 * specifications of the PDB 3.2 format: http://www.wwpdb.org/docs.html
647 *
648 * A new atom is created and filled with available information, non-
649 * standard information is placed in additionalAtomData at the atom's id.
650 *
651 * \param _step time step to use
652 * \param line to parse as an atom
653 * \param newmol molecule to add parsed atoms to
654 */
655void FormatParser< pdb >::readAtomDataLine(const unsigned int _step, std::string &line, molecule *newmol = NULL) {
656 vector<string>::iterator it;
657
658 atom* newAtom = getAtomToParse(line.substr(6,5));
659 LOG(3,"INFO: Parsing END entry or empty line.");
660 bool FirstTimestep = isPresentadditionalAtomData(newAtom->getId()) ? false : true;
661 ASSERT((FirstTimestep && (_step == 0)) || (!FirstTimestep && (_step !=0)),
662 "FormatParser< pdb >::readAtomDataLine() - additionalAtomData present though atom is newly parsed.");
663 if (FirstTimestep) {
664 LOG(3,"INFO: Parsing new atom "+toString(*newAtom)+" "+toString(newAtom->getId())+".");
665 } else {
666 LOG(3,"INFO: Parsing present atom "+toString(*newAtom)+".");
667 }
668 PdbAtomInfoContainer &atomInfo = getadditionalAtomData(newAtom);
669 LOG(4,"INFO: Information in container is "+toString(atomInfo)+".");
670
671 string word;
672 ConvertTo<size_t> toSize_t;
673
674 // check whether serial exists, if so, assign next available
675
676// LOG(2, "Split line:"
677// << line.substr(6,5) << "|"
678// << line.substr(12,4) << "|"
679// << line.substr(16,1) << "|"
680// << line.substr(17,3) << "|"
681// << line.substr(21,1) << "|"
682// << line.substr(22,4) << "|"
683// << line.substr(26,1) << "|"
684// << line.substr(30,8) << "|"
685// << line.substr(38,8) << "|"
686// << line.substr(46,8) << "|"
687// << line.substr(54,6) << "|"
688// << line.substr(60,6) << "|"
689// << line.substr(76,2) << "|"
690// << line.substr(78,2));
691
692 if (FirstTimestep) {
693 // first time step
694 // then fill info container
695 readPdbAtomInfoContainer(atomInfo, line);
696 // associate local with global id
697 associateLocaltoGlobalId(toSize_t(atomInfo.get<std::string>(PdbKey::serial)), newAtom->getId());
698 // set position
699 Vector tempVector;
700 LOG(4,"INFO: Parsing position from ("
701 +line.substr(30,8)+","
702 +line.substr(38,8)+","
703 +line.substr(46,8)+").");
704 PdbAtomInfoContainer::ScanKey(tempVector[0], line.substr(30,8));
705 PdbAtomInfoContainer::ScanKey(tempVector[1], line.substr(38,8));
706 PdbAtomInfoContainer::ScanKey(tempVector[2], line.substr(46,8));
707 newAtom->setPosition(tempVector);
708 // set element
709 std::string value = atomInfo.get<std::string>(PdbKey::element);
710 // make second character lower case if not
711 if ((value[1] >= 'A') && (value[1] <= 'Z'))
712 value[1] = (value[1] - 'A') + 'a';
713 const element *elem = World::getInstance().getPeriode()
714 ->FindElement(value);
715 ASSERT(elem != NULL,
716 "FormatParser< pdb >::readAtomDataLine() - element "+atomInfo.get<std::string>(PdbKey::element)+" is unknown!");
717 newAtom->setType(elem);
718
719 if (newmol != NULL)
720 newmol->AddAtom(newAtom);
721 } else {
722 // not first time step
723 // then parse into different container
724 PdbAtomInfoContainer consistencyInfo;
725 readPdbAtomInfoContainer(consistencyInfo, line);
726 // then check additional info for consistency
727 ASSERT(atomInfo.get<std::string>(PdbKey::token) == consistencyInfo.get<std::string>(PdbKey::token),
728 "FormatParser< pdb >::readAtomDataLine() - difference in token on multiple time step for atom with id "
729 +atomInfo.get<std::string>(PdbKey::serial)+"!");
730 ASSERT(atomInfo.get<std::string>(PdbKey::name) == consistencyInfo.get<std::string>(PdbKey::name),
731 "FormatParser< pdb >::readAtomDataLine() - difference in name on multiple time step for atom with id "
732 +atomInfo.get<std::string>(PdbKey::serial)+":"
733 +atomInfo.get<std::string>(PdbKey::name)+"!="
734 +consistencyInfo.get<std::string>(PdbKey::name)+".");
735 ASSERT(atomInfo.get<std::string>(PdbKey::altLoc) == consistencyInfo.get<std::string>(PdbKey::altLoc),
736 "FormatParser< pdb >::readAtomDataLine() - difference in altLoc on multiple time step for atom with id "
737 +atomInfo.get<std::string>(PdbKey::serial)+"!");
738 ASSERT(atomInfo.get<std::string>(PdbKey::resName) == consistencyInfo.get<std::string>(PdbKey::resName),
739 "FormatParser< pdb >::readAtomDataLine() - difference in resName on multiple time step for atom with id "
740 +atomInfo.get<std::string>(PdbKey::serial)+"!");
741 ASSERT(atomInfo.get<std::string>(PdbKey::chainID) == consistencyInfo.get<std::string>(PdbKey::chainID),
742 "FormatParser< pdb >::readAtomDataLine() - difference in chainID on multiple time step for atom with id "
743 +atomInfo.get<std::string>(PdbKey::serial)+"!");
744 ASSERT(atomInfo.get<std::string>(PdbKey::resSeq) == consistencyInfo.get<std::string>(PdbKey::resSeq),
745 "FormatParser< pdb >::readAtomDataLine() - difference in resSeq on multiple time step for atom with id "
746 +atomInfo.get<std::string>(PdbKey::serial)+"!");
747 ASSERT(atomInfo.get<std::string>(PdbKey::iCode) == consistencyInfo.get<std::string>(PdbKey::iCode),
748 "FormatParser< pdb >::readAtomDataLine() - difference in iCode on multiple time step for atom with id "
749 +atomInfo.get<std::string>(PdbKey::serial)+"!");
750 ASSERT(atomInfo.get<std::string>(PdbKey::occupancy) == consistencyInfo.get<std::string>(PdbKey::occupancy),
751 "FormatParser< pdb >::readAtomDataLine() - difference in occupancy on multiple time step for atom with id "
752 +atomInfo.get<std::string>(PdbKey::serial)+"!");
753 ASSERT(atomInfo.get<std::string>(PdbKey::tempFactor) == consistencyInfo.get<std::string>(PdbKey::tempFactor),
754 "FormatParser< pdb >::readAtomDataLine() - difference in tempFactor on multiple time step for atom with id "
755 +atomInfo.get<std::string>(PdbKey::serial)+"!");
756 ASSERT(atomInfo.get<std::string>(PdbKey::charge) == consistencyInfo.get<std::string>(PdbKey::charge),
757 "FormatParser< pdb >::readAtomDataLine() - difference in charge on multiple time step for atom with id "
758 +atomInfo.get<std::string>(PdbKey::serial)+"!");
759 ASSERT(atomInfo.get<std::string>(PdbKey::element) == consistencyInfo.get<std::string>(PdbKey::element),
760 "FormatParser< pdb >::readAtomDataLine() - difference in element on multiple time step for atom with id "
761 +atomInfo.get<std::string>(PdbKey::serial)+"!");
762 // and parse in trajectory
763 Vector tempVector;
764 LOG(4,"INFO: Parsing trajectory position from ("
765 +line.substr(30,8)+","
766 +line.substr(38,8)+","
767 +line.substr(46,8)+").");
768 PdbAtomInfoContainer::ScanKey(tempVector[0], line.substr(30,8));
769 PdbAtomInfoContainer::ScanKey(tempVector[1], line.substr(38,8));
770 PdbAtomInfoContainer::ScanKey(tempVector[2], line.substr(46,8));
771 LOG(4,"INFO: Adding trajectory point to time step "+toString(_step)+".");
772 // and set position at new time step
773 newAtom->setPositionAtStep(_step, tempVector);
774 }
775
776
777// printAtomInfo(newAtom);
778}
779
780/** Prints all PDB-specific information known about an atom.
781 *
782 */
783void FormatParser< pdb >::printAtomInfo(const atom * const newAtom) const
784{
785 const PdbAtomInfoContainer &atomInfo = additionalAtomData.at(newAtom->getId()); // operator[] const does not exist
786
787 LOG(1, "We know about atom " << newAtom->getId() << ":");
788 LOG(1, "\ttoken is " << atomInfo.get<std::string>(PdbKey::token));
789 LOG(1, "\tserial is " << atomInfo.get<int>(PdbKey::serial));
790 LOG(1, "\tname is " << atomInfo.get<std::string>(PdbKey::name));
791 LOG(1, "\taltLoc is " << atomInfo.get<std::string>(PdbKey::altLoc));
792 LOG(1, "\tresName is " << atomInfo.get<std::string>(PdbKey::resName));
793 LOG(1, "\tchainID is " << atomInfo.get<std::string>(PdbKey::chainID));
794 LOG(1, "\tresSeq is " << atomInfo.get<int>(PdbKey::resSeq));
795 LOG(1, "\tiCode is " << atomInfo.get<std::string>(PdbKey::iCode));
796 LOG(1, "\tX is " << atomInfo.get<double>(PdbKey::X));
797 LOG(1, "\tY is " << atomInfo.get<double>(PdbKey::Y));
798 LOG(1, "\tZ is " << atomInfo.get<double>(PdbKey::Z));
799 LOG(1, "\toccupancy is " << atomInfo.get<double>(PdbKey::occupancy));
800 LOG(1, "\ttempFactor is " << atomInfo.get<double>(PdbKey::tempFactor));
801 LOG(1, "\telement is '" << *(newAtom->getType()) << "'");
802 LOG(1, "\tcharge is " << atomInfo.get<int>(PdbKey::charge));
803}
804
805/**
806 * Reads neighbor information for one atom from the input.
807 *
808 * \param _step time step to use
809 * \param line to parse as an atom
810 */
811void FormatParser< pdb >::readNeighbors(const unsigned int _step, std::string &line)
812{
813 const size_t length = line.length();
814 std::list<size_t> ListOfNeighbors;
815 ConvertTo<size_t> toSize_t;
816
817 // obtain neighbours
818 // show split line for debugging
819 string output;
820 ASSERT(length >=16,
821 "FormatParser< pdb >::readNeighbors() - CONECT entry has not enough entries: "+line+"!");
822// output = "Split line:|";
823// output += line.substr(6,5) + "|";
824 const size_t id = toSize_t(line.substr(6,5));
825 for (size_t index = 11; index <= 26; index+=5) {
826 if (index+5 <= length) {
827 output += line.substr(index,5) + "|";
828 // search for digits
829 int otherid = -1;
830 PdbAtomInfoContainer::ScanKey(otherid, line.substr(index,5));
831 if (otherid > 0)
832 ListOfNeighbors.push_back(otherid);
833 else
834 ELOG(3, "FormatParser< pdb >::readNeighbors() - discarding CONECT entry with id 0.");
835 } else {
836 break;
837 }
838 }
839 LOG(4, output);
840
841 // add neighbours
842 atom * const _atom = World::getInstance().getAtom(AtomById(getGlobalId(id)));
843 LOG(2, "STATUS: Atom " << _atom->getId() << " gets " << ListOfNeighbors.size() << " more neighbours.");
844 for (std::list<size_t>::const_iterator iter = ListOfNeighbors.begin();
845 iter != ListOfNeighbors.end();
846 ++iter) {
847 atom * const _Otheratom = World::getInstance().getAtom(AtomById(getGlobalId(*iter)));
848 LOG(3, "INFO: Adding Bond (" << *_atom << "," << *_Otheratom << ")");
849 _atom->addBond(_step, _Otheratom);
850 }
851}
852
853bool FormatParser< pdb >::operator==(const FormatParser< pdb >& b) const
854{
855 bool status = true;
856 World::ConstAtomComposite atoms = const_cast<const World &>(World::getInstance()).
857 getAllAtoms();
858 for (World::ConstAtomComposite::const_iterator iter = atoms.begin(); iter != atoms.end(); ++iter) {
859 if ((additionalAtomData.find((*iter)->getId()) != additionalAtomData.end())
860 && (b.additionalAtomData.find((*iter)->getId()) != b.additionalAtomData.end())) {
861 const PdbAtomInfoContainer &atomInfo = additionalAtomData.at((*iter)->getId());
862 const PdbAtomInfoContainer &OtheratomInfo = b.additionalAtomData.at((*iter)->getId());
863
864 status = status && (atomInfo.get<std::string>(PdbKey::serial) == OtheratomInfo.get<std::string>(PdbKey::serial));
865 if (!status) ELOG(1, "Mismatch in serials!");
866 status = status && (atomInfo.get<std::string>(PdbKey::name) == OtheratomInfo.get<std::string>(PdbKey::name));
867 if (!status) ELOG(1, "Mismatch in names!");
868 status = status && (atomInfo.get<std::string>(PdbKey::altLoc) == OtheratomInfo.get<std::string>(PdbKey::altLoc));
869 if (!status) ELOG(1, "Mismatch in altLocs!");
870 status = status && (atomInfo.get<std::string>(PdbKey::resName) == OtheratomInfo.get<std::string>(PdbKey::resName));
871 if (!status) ELOG(1, "Mismatch in resNames!");
872 status = status && (atomInfo.get<std::string>(PdbKey::chainID) == OtheratomInfo.get<std::string>(PdbKey::chainID));
873 if (!status) ELOG(1, "Mismatch in chainIDs!");
874 status = status && (atomInfo.get<std::string>(PdbKey::resSeq) == OtheratomInfo.get<std::string>(PdbKey::resSeq));
875 if (!status) ELOG(1, "Mismatch in resSeqs!");
876 status = status && (atomInfo.get<std::string>(PdbKey::iCode) == OtheratomInfo.get<std::string>(PdbKey::iCode));
877 if (!status) ELOG(1, "Mismatch in iCodes!");
878 status = status && (atomInfo.get<std::string>(PdbKey::occupancy) == OtheratomInfo.get<std::string>(PdbKey::occupancy));
879 if (!status) ELOG(1, "Mismatch in occupancies!");
880 status = status && (atomInfo.get<std::string>(PdbKey::tempFactor) == OtheratomInfo.get<std::string>(PdbKey::tempFactor));
881 if (!status) ELOG(1, "Mismatch in tempFactors!");
882 status = status && (atomInfo.get<std::string>(PdbKey::charge) == OtheratomInfo.get<std::string>(PdbKey::charge));
883 if (!status) ELOG(1, "Mismatch in charges!");
884 }
885 }
886
887 return status;
888}
889
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