source: src/World.cpp@ e3c4c5

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Last change on this file since e3c4c5 was f02b53, checked in by Frederik Heber <heber@…>, 10 years ago

World now first releases id and then destroys the atom/molecule.

  • this prevents any access to atoms/molecules in the phase of destruction.
  • Property mode set to 100644
File size: 29.8 KB
RevLine 
[bcf653]1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
[0aa122]4 * Copyright (C) 2010-2012 University of Bonn. All rights reserved.
[5aaa43]5 * Copyright (C) 2013 Frederik Heber. All rights reserved.
[94d5ac6]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/>.
[bcf653]22 */
23
[5d1611]24/*
25 * World.cpp
26 *
27 * Created on: Feb 3, 2010
28 * Author: crueger
29 */
30
[bf3817]31// include config.h
32#ifdef HAVE_CONFIG_H
33#include <config.h>
34#endif
35
[ad011c]36#include "CodePatterns/MemDebug.hpp"
[112b09]37
[5d1611]38#include "World.hpp"
39
[90c4280]40#include <functional>
[5d1611]41
[3139b2]42#include "Actions/ActionTrait.hpp"
[d297a3]43#include "Actions/ManipulateAtomsProcess.hpp"
[6f0841]44#include "Atom/atom.hpp"
[d297a3]45#include "Box.hpp"
46#include "CodePatterns/Assert.hpp"
[8e1f7af]47#include "config.hpp"
[fc1b24]48#include "Descriptors/AtomDescriptor.hpp"
[865a945]49#include "Descriptors/AtomDescriptor_impl.hpp"
[c1d837]50#include "Descriptors/AtomIdDescriptor.hpp"
[ebc499]51#include "Descriptors/AtomSelectionDescriptor.hpp"
[1c51c8]52#include "Descriptors/MoleculeDescriptor.hpp"
53#include "Descriptors/MoleculeDescriptor_impl.hpp"
[c1d837]54#include "Descriptors/MoleculeIdDescriptor.hpp"
[ebc499]55#include "Descriptors/MoleculeSelectionDescriptor.hpp"
[feb5d0]56#include "Descriptors/SelectiveConstIterator_impl.hpp"
[6e97e5]57#include "Descriptors/SelectiveIterator_impl.hpp"
[42127c]58#include "Element/periodentafel.hpp"
[98dbee]59#include "Fragmentation/Homology/HomologyContainer.hpp"
[3139b2]60#include "Graph/BondGraph.hpp"
[4b8630]61#include "Graph/DepthFirstSearchAnalysis.hpp"
[e4fe8d]62#include "Helpers/defs.hpp"
[d297a3]63#include "LinearAlgebra/RealSpaceMatrix.hpp"
[4834f4]64#include "LinkedCell/LinkedCell_Controller.hpp"
65#include "LinkedCell/PointCloudAdaptor.hpp"
[d297a3]66#include "molecule.hpp"
[42127c]67#include "MoleculeListClass.hpp"
[ab26c3]68#include "Thermostats/ThermoStatContainer.hpp"
[d297a3]69#include "WorldTime.hpp"
[d346b6]70
[3e4fb6]71#include "IdPool_impl.hpp"
72
[4834f4]73#include "CodePatterns/IteratorAdaptors.hpp"
[ad011c]74#include "CodePatterns/Singleton_impl.hpp"
[02ce36]75#include "CodePatterns/Observer/Channels.hpp"
76#include "CodePatterns/Observer/ObservedContainer_impl.hpp"
[23b547]77
[ce7fdc]78using namespace MoleCuilder;
[4d9c01]79
[7188b1]80/******************************* Notifications ************************/
81
82
83atom* World::_lastchangedatom = NULL;
[fb95a5]84atomId_t World::_lastchangedatomid = -1;
[7188b1]85molecule* World::_lastchangedmol = NULL;
[fb95a5]86moleculeId_t World::_lastchangedmolid = -1;
[7188b1]87
[5d1611]88/******************************* getter and setter ************************/
[f71baf]89periodentafel *&World::getPeriode()
90{
[5d1611]91 return periode;
92}
93
[f71baf]94BondGraph *&World::getBondGraph()
95{
96 return BG;
97}
98
[98dbee]99HomologyContainer &World::getHomologies()
100{
101 return *homologies;
102}
103
104void World::resetHomologies(HomologyContainer *&_homologies)
105{
106 HomologyContainer *oldhomologies = homologies;
107
108 // install new instance, resetting given pointer
109 homologies = _homologies;
110 _homologies = NULL;
111
112 // delete old instance which also informs all observers
113 delete oldhomologies;
114}
115
[f71baf]116void World::setBondGraph(BondGraph *_BG){
117 delete (BG);
118 BG = _BG;
119}
120
[8e1f7af]121config *&World::getConfig(){
122 return configuration;
123}
124
[1c51c8]125// Atoms
126
[7a1ce5]127atom* World::getAtom(AtomDescriptor descriptor){
[fc1b24]128 return descriptor.find();
129}
130
[795c0f]131const atom* World::getAtom(AtomDescriptor descriptor) const{
132 return const_cast<const AtomDescriptor &>(descriptor).find();
133}
134
[4d72e4]135World::AtomComposite World::getAllAtoms(AtomDescriptor descriptor){
[fc1b24]136 return descriptor.findAll();
137}
138
[795c0f]139World::ConstAtomComposite World::getAllAtoms(AtomDescriptor descriptor) const {
140 return const_cast<const AtomDescriptor &>(descriptor).findAll();
141}
142
[4d72e4]143World::AtomComposite World::getAllAtoms(){
[0e2a47]144 return getAllAtoms(AllAtoms());
145}
146
[795c0f]147World::ConstAtomComposite World::getAllAtoms() const {
148 return getAllAtoms(AllAtoms());
149}
150
151int World::numAtoms() const {
[354859]152 return atoms.size();
153}
154
[1c51c8]155// Molecules
156
157molecule *World::getMolecule(MoleculeDescriptor descriptor){
158 return descriptor.find();
159}
160
[97445f]161const molecule *World::getMolecule(MoleculeDescriptor descriptor) const {
162 return const_cast<const MoleculeDescriptor &>(descriptor).find();
163}
164
[1c51c8]165std::vector<molecule*> World::getAllMolecules(MoleculeDescriptor descriptor){
166 return descriptor.findAll();
167}
168
[97445f]169std::vector<const molecule*> World::getAllMolecules(MoleculeDescriptor descriptor) const {
170 return const_cast<const MoleculeDescriptor &>(descriptor).findAll();
171}
172
[97ebf8]173std::vector<molecule*> World::getAllMolecules(){
174 return getAllMolecules(AllMolecules());
175}
176
[97445f]177std::vector<const molecule*> World::getAllMolecules() const {
178 return getAllMolecules(AllMolecules());
179}
180
181int World::numMolecules() const {
[354859]182 return molecules_deprecated->ListOfMolecules.size();
183}
184
[5f612ee]185// system
186
[84c494]187Box& World::getDomain() {
188 return *cell_size;
189}
190
[cca9ef]191void World::setDomain(const RealSpaceMatrix &mat){
[be97a8]192 OBSERVE;
[84c494]193 *cell_size = mat;
[5f612ee]194}
195
196void World::setDomain(double * matrix)
197{
[b9c847]198 OBSERVE;
[cca9ef]199 RealSpaceMatrix M = ReturnFullMatrixforSymmetric(matrix);
[84c494]200 cell_size->setM(M);
[5f612ee]201}
202
[03abd0]203LinkedCell::LinkedCell_View World::getLinkedCell(double distance)
[4834f4]204{
[d067e35]205 ASSERT( distance >= 0,
[03abd0]206 "World::getLinkedCell() - distance is not positive.");
207 if (distance < 1.) {
208 ELOG(2, "Linked cell grid with length less than 1. is very memory-intense!");
209 distance = 1.;
210 }
[4834f4]211 // we have to grope past the ObservedContainer mechanism and transmorph the map
212 // into a traversable list for the adaptor
213 PointCloudAdaptor< AtomSet::set_t, MapValueIterator<AtomSet::set_t::iterator> > atomset(
214 &(atoms.getContent()),
215 std::string("WorldsAtoms"));
216 return LCcontroller->getView(distance, atomset);
217}
218
[2a8731]219const unsigned World::getTime() const
220{
221 return WorldTime::getTime();
222}
223
[388ddd]224bool areBondsPresent(const unsigned int _step)
225{
226 bool status = false;
227
228 for (World::AtomConstIterator iter = const_cast<const World &>(World::getInstance()).getAtomIter();
229 (!status) && (iter != const_cast<const World &>(World::getInstance()).atomEnd()); ++iter) {
230 const atom * const Walker = *iter;
231 status |= !Walker->getListOfBondsAtStep(_step).empty();
232 }
233
234 return status;
235}
236
237void copyBondgraph(const unsigned int _srcstep, const unsigned int _deststep)
238{
239 // gather all bonds from _srcstep
240 std::set<bond *> SetOfBonds;
241 for (World::AtomConstIterator iter = const_cast<const World &>(World::getInstance()).getAtomIter();
242 iter != const_cast<const World &>(World::getInstance()).atomEnd(); ++iter) {
243 const atom * const Walker = *iter;
244 const BondList bonds = Walker->getListOfBondsAtStep(_srcstep);
245 BOOST_FOREACH( bond::ptr bondptr, bonds) {
246 SetOfBonds.insert(bondptr.get());
247 }
248 }
249 LOG(4, "DEBUG: We gathered " << SetOfBonds.size() << " bonds in total.");
250
251 // copy bond to new time step
252 for (std::set<bond *>::const_iterator bonditer = SetOfBonds.begin();
253 bonditer != SetOfBonds.end(); ++bonditer) {
254 const atom * const Walker = (*bonditer)->leftatom;
255 const atom * const OtherWalker = (*bonditer)->rightatom;
[0763ce]256 bond::ptr const _bond =
257 const_cast<atom *>(Walker)->addBond(_deststep, const_cast<atom *>(OtherWalker));
258 _bond->setDegree((*bonditer)->getDegree());
[388ddd]259 }
260}
261
[d297a3]262void World::setTime(const unsigned int _step)
263{
[76163d]264 if (_step != WorldTime::getTime()) {
[388ddd]265 const unsigned int oldstep = WorldTime::getTime();
[46ce1c]266
267 // 1. copy bond graph (such not each addBond causes GUI update)
268 if (!areBondsPresent(_step)) {
269// AtomComposite Set = getAllAtoms();
270// BG->cleanAdjacencyList(Set);
271 copyBondgraph(oldstep, _step);
272 }
273
274 // 2. set new time
[040a5c]275 WorldTime::getInstance().setTime(_step);
[46ce1c]276
277 // 4. scan for connected subgraphs => molecules
[4b8630]278 DepthFirstSearchAnalysis DFS;
279 DFS();
280 DFS.UpdateMoleculeStructure();
[76163d]281 }
[d297a3]282}
283
[387b36]284std::string World::getDefaultName() {
[5f612ee]285 return defaultName;
286}
287
[387b36]288void World::setDefaultName(std::string name)
[5f612ee]289{
[be97a8]290 OBSERVE;
[387b36]291 defaultName = name;
[5f612ee]292};
293
[43dad6]294class ThermoStatContainer * World::getThermostats()
295{
296 return Thermostats;
297}
298
299
[e4b5de]300int World::getExitFlag() {
301 return ExitFlag;
302}
303
304void World::setExitFlag(int flag) {
305 if (ExitFlag < flag)
306 ExitFlag = flag;
307}
[5f612ee]308
[afb47f]309/******************** Methods to change World state *********************/
310
[354859]311molecule* World::createMolecule(){
312 OBSERVE;
313 molecule *mol = NULL;
[cbc5fb]314 mol = NewMolecule();
[3e4fb6]315 moleculeId_t id = moleculeIdPool.getNextId();
[127a8e]316 ASSERT(!molecules.count(id),"proposed id did not specify an unused ID");
317 mol->setId(id);
[244d26]318 // store the molecule by ID
[cbc5fb]319 molecules[mol->getId()] = mol;
[7188b1]320 _lastchangedmol = mol;
[fb95a5]321 _lastchangedmolid = mol->getId();
[7188b1]322 NOTIFY(MoleculeInserted);
[354859]323 return mol;
324}
325
[cbc5fb]326void World::destroyMolecule(molecule* mol){
[fa7989]327 ASSERT(mol,"Molecule that was meant to be destroyed did not exist");
[cbc5fb]328 destroyMolecule(mol->getId());
329}
330
331void World::destroyMolecule(moleculeId_t id){
332 molecule *mol = molecules[id];
[6d574a]333 ASSERT(mol,"Molecule id that was meant to be destroyed did not exist");
[38f991]334 // give notice about immediate removal
335 {
336 OBSERVE;
337 _lastchangedmol = mol;
[fb95a5]338 _lastchangedmolid = mol->getId();
[38f991]339 NOTIFY(MoleculeRemoved);
340 }
[a7aebd]341 // TODO: removed when depcreated MoleculeListClass is gone
342 molecules_deprecated->erase(mol);
[38f991]343 if (isMoleculeSelected(id))
344 selectedMolecules.erase(id);
[cbc5fb]345 molecules.erase(id);
[f02b53]346 DeleteMolecule(mol);
[3e4fb6]347 moleculeIdPool.releaseId(id);
[cbc5fb]348}
349
[46d958]350atom *World::createAtom(){
351 OBSERVE;
[3e4fb6]352 atomId_t id = atomIdPool.getNextId();
[127a8e]353 ASSERT(!atoms.count(id),"proposed id did not specify an unused ID");
[88d586]354 atom *res = NewAtom(id);
[46d958]355 res->setWorld(this);
[244d26]356 // store the atom by ID
[46d958]357 atoms[res->getId()] = res;
[7188b1]358 _lastchangedatom = res;
[fb95a5]359 _lastchangedatomid = res->getId();
[7188b1]360 NOTIFY(AtomInserted);
[46d958]361 return res;
362}
363
[5f612ee]364
[46d958]365int World::registerAtom(atom *atom){
366 OBSERVE;
[3e4fb6]367 atomId_t id = atomIdPool.getNextId();
[88d586]368 atom->setId(id);
[46d958]369 atom->setWorld(this);
370 atoms[atom->getId()] = atom;
[65d7ca]371 _lastchangedatom = atom;
[fb95a5]372 _lastchangedatomid = atom->getId();
[65d7ca]373 NOTIFY(AtomInserted);
[46d958]374 return atom->getId();
375}
376
377void World::destroyAtom(atom* atom){
378 int id = atom->getId();
379 destroyAtom(id);
380}
381
[cbc5fb]382void World::destroyAtom(atomId_t id) {
[46d958]383 atom *atom = atoms[id];
[6d574a]384 ASSERT(atom,"Atom ID that was meant to be destroyed did not exist");
[ab4a33]385 // give notice about immediate removal
386 {
387 OBSERVE;
388 _lastchangedatom = atom;
[fb95a5]389 _lastchangedatomid = atom->getId();
[ab4a33]390 NOTIFY(AtomRemoved);
391 }
[a7aebd]392 // check if it's the last atom
[270bdf]393 molecule *_mol = const_cast<molecule *>(atom->getMolecule());
[cad383]394 if ((_mol == NULL) || (_mol->getAtomCount() > 1))
[a7aebd]395 _mol = NULL;
[38f991]396 if (isAtomSelected(id))
397 selectedAtoms.erase(id);
[46d958]398 atoms.erase(id);
[f02b53]399 DeleteAtom(atom);
[3e4fb6]400 atomIdPool.releaseId(id);
[a7aebd]401 // remove molecule if empty
402 if (_mol != NULL)
403 destroyMolecule(_mol);
[88d586]404}
405
406bool World::changeAtomId(atomId_t oldId, atomId_t newId, atom* target){
407 OBSERVE;
408 // in case this call did not originate from inside the atom, we redirect it,
409 // to also let it know that it has changed
410 if(!target){
411 target = atoms[oldId];
[6d574a]412 ASSERT(target,"Atom with that ID not found");
[88d586]413 return target->changeId(newId);
414 }
415 else{
[3e4fb6]416 if(atomIdPool.reserveId(newId)){
[88d586]417 atoms.erase(oldId);
418 atoms.insert(pair<atomId_t,atom*>(newId,target));
419 return true;
420 }
421 else{
422 return false;
423 }
424 }
[46d958]425}
426
[a7a087]427bool World::changeMoleculeId(moleculeId_t oldId, moleculeId_t newId, molecule* target){
428 OBSERVE;
429 // in case this call did not originate from inside the atom, we redirect it,
430 // to also let it know that it has changed
431 if(!target){
432 target = molecules[oldId];
433 ASSERT(target,"Molecule with that ID not found");
434 return target->changeId(newId);
435 }
436 else{
[3e4fb6]437 if(moleculeIdPool.reserveId(newId)){
[a7a087]438 molecules.erase(oldId);
439 molecules.insert(pair<moleculeId_t,molecule*>(newId,target));
440 return true;
441 }
442 else{
443 return false;
444 }
445 }
446}
447
[7c4e29]448ManipulateAtomsProcess* World::manipulateAtoms(boost::function<void(atom*)> op,std::string name,AtomDescriptor descr){
[3139b2]449 ActionTrait manipulateTrait(name);
[126867]450 return new ManipulateAtomsProcess(op, descr,manipulateTrait);
[7c4e29]451}
452
[0e2a47]453ManipulateAtomsProcess* World::manipulateAtoms(boost::function<void(atom*)> op,std::string name){
454 return manipulateAtoms(op,name,AllAtoms());
455}
456
[afb47f]457/********************* Internal Change methods for double Callback and Observer mechanism ********/
458
459void World::doManipulate(ManipulateAtomsProcess *proc){
460 proc->signOn(this);
461 {
462 OBSERVE;
463 proc->doManipulate(this);
464 }
465 proc->signOff(this);
466}
[865a945]467/******************************* Iterators ********************************/
468
[fa0b18]469// external parts with observers
470
[feb5d0]471CONSTRUCT_SELECTIVE_ITERATOR(atom*,World::AtomSet,AtomDescriptor)
472
473CONSTRUCT_SELECTIVE_CONST_ITERATOR(atom*,World::AtomSet,AtomDescriptor)
[6e97e5]474
[fa0b18]475World::AtomIterator
476World::getAtomIter(AtomDescriptor descr){
477 return AtomIterator(descr,atoms);
478}
[865a945]479
[feb5d0]480World::AtomConstIterator
481World::getAtomIter(AtomDescriptor descr) const{
482 return AtomConstIterator(descr,atoms);
483}
484
[fa0b18]485World::AtomIterator
486World::getAtomIter(){
487 return AtomIterator(AllAtoms(),atoms);
[865a945]488}
[354859]489
[feb5d0]490World::AtomConstIterator
491World::getAtomIter() const{
492 return AtomConstIterator(AllAtoms(),atoms);
493}
494
[fa0b18]495World::AtomIterator
496World::atomEnd(){
[6e97e5]497 return AtomIterator(AllAtoms(),atoms,atoms.end());
[7c4e29]498}
499
[feb5d0]500World::AtomConstIterator
501World::atomEnd() const{
502 return AtomConstIterator(AllAtoms(),atoms,atoms.end());
503}
504
505CONSTRUCT_SELECTIVE_ITERATOR(molecule*,World::MoleculeSet,MoleculeDescriptor)
506
507CONSTRUCT_SELECTIVE_CONST_ITERATOR(molecule*,World::MoleculeSet,MoleculeDescriptor)
[6e97e5]508
[5d880e]509World::MoleculeIterator
510World::getMoleculeIter(MoleculeDescriptor descr){
511 return MoleculeIterator(descr,molecules);
512}
513
[feb5d0]514World::MoleculeConstIterator
515World::getMoleculeIter(MoleculeDescriptor descr) const{
516 return MoleculeConstIterator(descr,molecules);
517}
518
[5d880e]519World::MoleculeIterator
520World::getMoleculeIter(){
521 return MoleculeIterator(AllMolecules(),molecules);
[1c51c8]522}
523
[feb5d0]524World::MoleculeConstIterator
525World::getMoleculeIter() const{
526 return MoleculeConstIterator(AllMolecules(),molecules);
527}
528
[5d880e]529World::MoleculeIterator
530World::moleculeEnd(){
[6e97e5]531 return MoleculeIterator(AllMolecules(),molecules,molecules.end());
[1c51c8]532}
533
[feb5d0]534World::MoleculeConstIterator
535World::moleculeEnd() const{
536 return MoleculeConstIterator(AllMolecules(),molecules,molecules.end());
537}
538
[fa0b18]539// Internal parts, without observers
540
541// Build the AtomIterator from template
542CONSTRUCT_SELECTIVE_ITERATOR(atom*,World::AtomSet::set_t,AtomDescriptor);
543
544
545World::internal_AtomIterator
546World::getAtomIter_internal(AtomDescriptor descr){
547 return internal_AtomIterator(descr,atoms.getContent());
548}
549
550World::internal_AtomIterator
551World::atomEnd_internal(){
552 return internal_AtomIterator(AllAtoms(),atoms.getContent(),atoms.end_internal());
553}
554
[6e97e5]555// build the MoleculeIterator from template
[e3d865]556CONSTRUCT_SELECTIVE_ITERATOR(molecule*,World::MoleculeSet::set_t,MoleculeDescriptor);
[6e97e5]557
[e3d865]558World::internal_MoleculeIterator World::getMoleculeIter_internal(MoleculeDescriptor descr){
559 return internal_MoleculeIterator(descr,molecules.getContent());
[1c51c8]560}
561
[e3d865]562World::internal_MoleculeIterator World::moleculeEnd_internal(){
563 return internal_MoleculeIterator(AllMolecules(),molecules.getContent(),molecules.end_internal());
[1c51c8]564}
565
[90c4280]566/************************** Selection of Atoms and molecules ******************/
567
568// Atoms
569
570void World::clearAtomSelection(){
[69643a]571 OBSERVE;
572 NOTIFY(SelectionChanged);
[90c4280]573 selectedAtoms.clear();
574}
575
[ebc499]576void World::invertAtomSelection(){
577 // get all atoms not selected
578 AtomComposite invertedSelection(getAllAtoms());
579 bool (World::*predicate)(const atom*) const = &World::isSelected; // needed for type resolution of overloaded function
580 AtomComposite::iterator iter =
581 std::remove_if(invertedSelection.begin(), invertedSelection.end(),
582 std::bind1st(std::mem_fun(predicate), this));
583 invertedSelection.erase(iter, invertedSelection.end());
584 // apply new selection
585 selectedAtoms.clear();
586 void (World::*selector)(const atom*) = &World::selectAtom; // needed for type resolution of overloaded function
587 std::for_each(invertedSelection.begin(),invertedSelection.end(),
588 std::bind1st(std::mem_fun(selector),this)); // func is select... see above
589}
590
[cad383]591void World::popAtomSelection(){
592 OBSERVE;
593 NOTIFY(SelectionChanged);
[c1d837]594 const atomIdsVector_t atomids = selectedAtoms_Stack.top();
595 boost::function<void (const atomId_t)> IdSelector =
596 boost::bind(static_cast<void (World::*)(const atomId_t)>(&World::selectAtom), this, _1);
597 selectedAtoms.clear();
598 std::for_each(atomids.begin(),atomids.end(), IdSelector);
[cad383]599 selectedAtoms_Stack.pop();
600}
601
602void World::pushAtomSelection(){
603 OBSERVE;
604 NOTIFY(SelectionChanged);
[c1d837]605 atomIdsVector_t atomids(countSelectedAtoms(), (atomId_t)-1);
606 std::copy(
607 MapKeyIterator<AtomSelectionConstIterator>(beginAtomSelection()),
608 MapKeyIterator<AtomSelectionConstIterator>(endAtomSelection()),
609 atomids.begin());
610 selectedAtoms_Stack.push( atomids );
[cad383]611 selectedAtoms.clear();
612}
613
[e4afb4]614void World::selectAtom(const atom *_atom){
[69643a]615 OBSERVE;
616 NOTIFY(SelectionChanged);
[e4afb4]617 // atom * is unchanged in this function, but we do store entity as changeable
618 ASSERT(_atom,"Invalid pointer in selection of atom");
619 selectedAtoms[_atom->getId()]=const_cast<atom *>(_atom);
[90c4280]620}
621
[e4afb4]622void World::selectAtom(const atomId_t id){
[69643a]623 OBSERVE;
624 NOTIFY(SelectionChanged);
[90c4280]625 ASSERT(atoms.count(id),"Atom Id selected that was not in the world");
626 selectedAtoms[id]=atoms[id];
627}
628
629void World::selectAllAtoms(AtomDescriptor descr){
[69643a]630 OBSERVE;
631 NOTIFY(SelectionChanged);
[90c4280]632 internal_AtomIterator begin = getAtomIter_internal(descr);
633 internal_AtomIterator end = atomEnd_internal();
[e4afb4]634 void (World::*func)(const atom*) = &World::selectAtom; // needed for type resolution of overloaded function
[90c4280]635 for_each(begin,end,bind1st(mem_fun(func),this)); // func is select... see above
636}
637
[e4afb4]638void World::selectAtomsOfMolecule(const molecule *_mol){
[69643a]639 OBSERVE;
640 NOTIFY(SelectionChanged);
[90c4280]641 ASSERT(_mol,"Invalid pointer to molecule in selection of Atoms of Molecule");
642 // need to make it const to get the fast iterators
643 const molecule *mol = _mol;
[e4afb4]644 void (World::*func)(const atom*) = &World::selectAtom; // needed for type resolution of overloaded function
[90c4280]645 for_each(mol->begin(),mol->end(),bind1st(mem_fun(func),this)); // func is select... see above
646}
647
[e4afb4]648void World::selectAtomsOfMolecule(const moleculeId_t id){
[69643a]649 OBSERVE;
650 NOTIFY(SelectionChanged);
[90c4280]651 ASSERT(molecules.count(id),"No molecule with the given id upon Selection of atoms from molecule");
652 selectAtomsOfMolecule(molecules[id]);
653}
654
[e4afb4]655void World::unselectAtom(const atom *_atom){
[69643a]656 OBSERVE;
657 NOTIFY(SelectionChanged);
[e4afb4]658 ASSERT(_atom,"Invalid pointer in unselection of atom");
659 unselectAtom(_atom->getId());
[61d655e]660}
661
[e4afb4]662void World::unselectAtom(const atomId_t id){
[69643a]663 OBSERVE;
664 NOTIFY(SelectionChanged);
[61d655e]665 ASSERT(atoms.count(id),"Atom Id unselected that was not in the world");
666 selectedAtoms.erase(id);
667}
668
669void World::unselectAllAtoms(AtomDescriptor descr){
[69643a]670 OBSERVE;
671 NOTIFY(SelectionChanged);
[61d655e]672 internal_AtomIterator begin = getAtomIter_internal(descr);
673 internal_AtomIterator end = atomEnd_internal();
[e4afb4]674 void (World::*func)(const atom*) = &World::unselectAtom; // needed for type resolution of overloaded function
[61d655e]675 for_each(begin,end,bind1st(mem_fun(func),this)); // func is unselect... see above
676}
677
[e4afb4]678void World::unselectAtomsOfMolecule(const molecule *_mol){
[69643a]679 OBSERVE;
680 NOTIFY(SelectionChanged);
[61d655e]681 ASSERT(_mol,"Invalid pointer to molecule in selection of Atoms of Molecule");
682 // need to make it const to get the fast iterators
683 const molecule *mol = _mol;
[e4afb4]684 void (World::*func)(const atom*) = &World::unselectAtom; // needed for type resolution of overloaded function
[992bd5]685 for_each(mol->begin(),mol->end(),bind1st(mem_fun(func),this)); // func is unselect... see above
[61d655e]686}
687
[e4afb4]688void World::unselectAtomsOfMolecule(const moleculeId_t id){
[69643a]689 OBSERVE;
690 NOTIFY(SelectionChanged);
[61d655e]691 ASSERT(molecules.count(id),"No molecule with the given id upon Selection of atoms from molecule");
692 unselectAtomsOfMolecule(molecules[id]);
693}
694
[e472eab]695size_t World::countSelectedAtoms() const {
[eacc3b]696 size_t count = 0;
[e472eab]697 for (AtomSet::const_iterator iter = selectedAtoms.begin(); iter != selectedAtoms.end(); ++iter)
[eacc3b]698 count++;
699 return count;
700}
701
[e4afb4]702bool World::isSelected(const atom *_atom) const {
[89643d]703 return isAtomSelected(_atom->getId());
704}
705
706bool World::isAtomSelected(const atomId_t no) const {
707 return selectedAtoms.find(no) != selectedAtoms.end();
[e0e156]708}
709
[99db9b]710std::vector<atom *> World::getSelectedAtoms() {
[e472eab]711 std::vector<atom *> returnAtoms;
[99db9b]712 std::transform(
713 selectedAtoms.begin(),
714 selectedAtoms.end(),
715 back_inserter(returnAtoms),
716 _take<atom*,World::AtomSet::value_type>::get);
717 return returnAtoms;
718}
719
720std::vector<const atom *> World::getSelectedAtoms() const {
721 std::vector<const atom *> returnAtoms;
722 std::transform(
723 selectedAtoms.begin(),
724 selectedAtoms.end(),
725 back_inserter(returnAtoms),
726 _take<atom*,World::AtomSet::value_type>::get);
[e472eab]727 return returnAtoms;
728}
729
[143263]730std::vector<atomId_t> World::getSelectedAtomIds() const {
731 std::vector<atomId_t> returnAtomIds;
732 std::transform(
733 selectedAtoms.begin(),
734 selectedAtoms.end(),
735 back_inserter(returnAtomIds),
736 _take<atom*,World::AtomSet::value_type>::getKey);
737 return returnAtomIds;
738}
[e472eab]739
[90c4280]740// Molecules
741
742void World::clearMoleculeSelection(){
[69643a]743 OBSERVE;
744 NOTIFY(SelectionChanged);
[90c4280]745 selectedMolecules.clear();
746}
747
[ebc499]748void World::invertMoleculeSelection(){
749 // get all molecules not selected
750 typedef std::vector<molecule *> MoleculeVector_t;
751 MoleculeVector_t invertedSelection(getAllMolecules());
752 bool (World::*predicate)(const molecule*) const = &World::isSelected; // needed for type resolution of overloaded function
753 MoleculeVector_t::iterator iter =
754 std::remove_if(invertedSelection.begin(), invertedSelection.end(),
755 std::bind1st(std::mem_fun(predicate), this));
756 invertedSelection.erase(iter, invertedSelection.end());
757 // apply new selection
758 selectedMolecules.clear();
759 void (World::*selector)(const molecule*) = &World::selectMolecule; // needed for type resolution of overloaded function
760 std::for_each(invertedSelection.begin(),invertedSelection.end(),
761 std::bind1st(std::mem_fun(selector),this)); // func is select... see above
762}
763
[cad383]764void World::popMoleculeSelection(){
765 OBSERVE;
766 NOTIFY(SelectionChanged);
[c1d837]767 const moleculeIdsVector_t moleculeids = selectedMolecules_Stack.top();
768 boost::function<void (const moleculeId_t)> IdSelector =
769 boost::bind(static_cast<void (World::*)(const moleculeId_t)>(&World::selectMolecule), this, _1);
770 selectedMolecules.clear();
771 std::for_each(moleculeids.begin(),moleculeids.end(), IdSelector);
[cad383]772 selectedMolecules_Stack.pop();
773}
774
775void World::pushMoleculeSelection(){
776 OBSERVE;
777 NOTIFY(SelectionChanged);
[c1d837]778 moleculeIdsVector_t moleculeids(countSelectedMolecules(), (moleculeId_t)-1);
779 boost::function<moleculeId_t (const molecule*)> IdRetriever =
780 boost::bind(&molecule::getId, _1);
781 std::copy(
782 MapKeyIterator<MoleculeSelectionConstIterator>(beginMoleculeSelection()),
783 MapKeyIterator<MoleculeSelectionConstIterator>(endMoleculeSelection()),
784 moleculeids.begin());
785 selectedMolecules_Stack.push( moleculeids );
[cad383]786 selectedMolecules.clear();
787}
788
[e4afb4]789void World::selectMolecule(const molecule *_mol){
[69643a]790 OBSERVE;
791 NOTIFY(SelectionChanged);
[e4afb4]792 // molecule * is unchanged in this function, but we do store entity as changeable
793 ASSERT(_mol,"Invalid pointer to molecule in selection");
794 selectedMolecules[_mol->getId()]=const_cast<molecule *>(_mol);
[90c4280]795}
796
[e4afb4]797void World::selectMolecule(const moleculeId_t id){
[69643a]798 OBSERVE;
799 NOTIFY(SelectionChanged);
[90c4280]800 ASSERT(molecules.count(id),"Molecule Id selected that was not in the world");
801 selectedMolecules[id]=molecules[id];
802}
803
[e472eab]804void World::selectAllMolecules(MoleculeDescriptor descr){
[69643a]805 OBSERVE;
806 NOTIFY(SelectionChanged);
[90c4280]807 internal_MoleculeIterator begin = getMoleculeIter_internal(descr);
808 internal_MoleculeIterator end = moleculeEnd_internal();
[e4afb4]809 void (World::*func)(const molecule*) = &World::selectMolecule; // needed for type resolution of overloaded function
[90c4280]810 for_each(begin,end,bind1st(mem_fun(func),this)); // func is select... see above
811}
812
[e4afb4]813void World::selectMoleculeOfAtom(const atom *_atom){
[69643a]814 OBSERVE;
815 NOTIFY(SelectionChanged);
[e4afb4]816 ASSERT(_atom,"Invalid atom pointer in selection of MoleculeOfAtom");
[270bdf]817 const molecule *mol=_atom->getMolecule();
[90c4280]818 // the atom might not be part of a molecule
819 if(mol){
820 selectMolecule(mol);
821 }
822}
823
[e4afb4]824void World::selectMoleculeOfAtom(const atomId_t id){
[69643a]825 OBSERVE;
826 NOTIFY(SelectionChanged);
[90c4280]827 ASSERT(atoms.count(id),"No such atom with given ID in selection of Molecules of Atom");\
828 selectMoleculeOfAtom(atoms[id]);
829}
830
[e4afb4]831void World::unselectMolecule(const molecule *_mol){
[69643a]832 OBSERVE;
833 NOTIFY(SelectionChanged);
[e4afb4]834 ASSERT(_mol,"invalid pointer in unselection of molecule");
835 unselectMolecule(_mol->getId());
[61d655e]836}
837
[e4afb4]838void World::unselectMolecule(const moleculeId_t id){
[69643a]839 OBSERVE;
840 NOTIFY(SelectionChanged);
[61d655e]841 ASSERT(molecules.count(id),"No such molecule with ID in unselection");
842 selectedMolecules.erase(id);
843}
844
[e472eab]845void World::unselectAllMolecules(MoleculeDescriptor descr){
[69643a]846 OBSERVE;
847 NOTIFY(SelectionChanged);
[61d655e]848 internal_MoleculeIterator begin = getMoleculeIter_internal(descr);
849 internal_MoleculeIterator end = moleculeEnd_internal();
[e4afb4]850 void (World::*func)(const molecule*) = &World::unselectMolecule; // needed for type resolution of overloaded function
[61d655e]851 for_each(begin,end,bind1st(mem_fun(func),this)); // func is unselect... see above
852}
853
[e4afb4]854void World::unselectMoleculeOfAtom(const atom *_atom){
[69643a]855 OBSERVE;
856 NOTIFY(SelectionChanged);
[e4afb4]857 ASSERT(_atom,"Invalid atom pointer in selection of MoleculeOfAtom");
[270bdf]858 const molecule *mol=_atom->getMolecule();
[61d655e]859 // the atom might not be part of a molecule
860 if(mol){
861 unselectMolecule(mol);
862 }
863}
864
[e4afb4]865void World::unselectMoleculeOfAtom(const atomId_t id){
[69643a]866 OBSERVE;
867 NOTIFY(SelectionChanged);
[61d655e]868 ASSERT(atoms.count(id),"No such atom with given ID in selection of Molecules of Atom");\
869 unselectMoleculeOfAtom(atoms[id]);
870}
871
[e472eab]872size_t World::countSelectedMolecules() const {
[eacc3b]873 size_t count = 0;
[e472eab]874 for (MoleculeSet::const_iterator iter = selectedMolecules.begin(); iter != selectedMolecules.end(); ++iter)
[eacc3b]875 count++;
876 return count;
877}
878
[e4afb4]879bool World::isSelected(const molecule *_mol) const {
[89643d]880 return isMoleculeSelected(_mol->getId());
881}
882
883bool World::isMoleculeSelected(const moleculeId_t no) const {
884 return selectedMolecules.find(no) != selectedMolecules.end();
[e0e156]885}
886
[97445f]887std::vector<molecule *> World::getSelectedMolecules() {
[e472eab]888 std::vector<molecule *> returnMolecules;
[97445f]889 std::transform(
890 selectedMolecules.begin(),
891 selectedMolecules.end(),
892 back_inserter(returnMolecules),
893 _take<molecule*,World::MoleculeSet::value_type>::get);
894 return returnMolecules;
895}
896
897std::vector<const molecule *> World::getSelectedMolecules() const {
898 std::vector<const molecule *> returnMolecules;
899 std::transform(
900 selectedMolecules.begin(),
901 selectedMolecules.end(),
902 back_inserter(returnMolecules),
903 _take<molecule*,World::MoleculeSet::value_type>::get);
[e472eab]904 return returnMolecules;
905}
906
[143263]907std::vector<moleculeId_t> World::getSelectedMoleculeIds() const {
908 std::vector<moleculeId_t> returnMoleculeIds;
909 std::transform(
910 selectedMolecules.begin(),
911 selectedMolecules.end(),
912 back_inserter(returnMoleculeIds),
913 _take<molecule*,World::MoleculeSet::value_type>::getKey);
914 return returnMoleculeIds;
915}
916
[3839e5]917/******************* Iterators over Selection *****************************/
918World::AtomSelectionIterator World::beginAtomSelection(){
919 return selectedAtoms.begin();
920}
921
922World::AtomSelectionIterator World::endAtomSelection(){
923 return selectedAtoms.end();
924}
925
[38f991]926World::AtomSelectionConstIterator World::beginAtomSelection() const{
927 return selectedAtoms.begin();
928}
929
930World::AtomSelectionConstIterator World::endAtomSelection() const{
931 return selectedAtoms.end();
932}
933
[3839e5]934
935World::MoleculeSelectionIterator World::beginMoleculeSelection(){
936 return selectedMolecules.begin();
937}
938
939World::MoleculeSelectionIterator World::endMoleculeSelection(){
940 return selectedMolecules.end();
941}
942
[38f991]943World::MoleculeSelectionConstIterator World::beginMoleculeSelection() const{
944 return selectedMolecules.begin();
945}
946
947World::MoleculeSelectionConstIterator World::endMoleculeSelection() const{
948 return selectedMolecules.end();
949}
950
[5d1611]951/******************************* Singleton Stuff **************************/
952
[7a1ce5]953World::World() :
[cd5047]954 Observable("World"),
[f71baf]955 BG(new BondGraph(true)), // assume Angstroem for the moment
[4ae823]956 periode(new periodentafel(true)),
[8e1f7af]957 configuration(new config),
[98dbee]958 homologies(new HomologyContainer()),
[43dad6]959 Thermostats(new ThermoStatContainer),
[e4b5de]960 ExitFlag(0),
[fa0b18]961 atoms(this),
[90c4280]962 selectedAtoms(this),
[3e4fb6]963 atomIdPool(0, 20, 100),
[51be2a]964 molecules(this),
[90c4280]965 selectedMolecules(this),
[3e4fb6]966 moleculeIdPool(0, 20,100),
[24a5e0]967 molecules_deprecated(new MoleculeListClass(this))
[7dad10]968{
[84c494]969 cell_size = new Box;
[cca9ef]970 RealSpaceMatrix domain;
[84c494]971 domain.at(0,0) = 20;
972 domain.at(1,1) = 20;
973 domain.at(2,2) = 20;
974 cell_size->setM(domain);
[4834f4]975 LCcontroller = new LinkedCell::LinkedCell_Controller(*cell_size);
[387b36]976 defaultName = "none";
[02ce36]977 Channels *OurChannel = new Channels;
[574d377]978 Observable::insertNotificationChannel( std::make_pair( static_cast<Observable *>(this), OurChannel) );
[7188b1]979 for (size_t type = 0; type < (size_t)NotificationType_MAX; ++type)
[02ce36]980 OurChannel->addChannel(type);
[7dad10]981}
[5d1611]982
983World::~World()
[354859]984{
[4834f4]985 delete LCcontroller;
[84c494]986 delete cell_size;
[46d958]987 delete molecules_deprecated;
[cbc5fb]988 MoleculeSet::iterator molIter;
989 for(molIter=molecules.begin();molIter!=molecules.end();++molIter){
990 DeleteMolecule((*molIter).second);
991 }
992 molecules.clear();
993 AtomSet::iterator atIter;
994 for(atIter=atoms.begin();atIter!=atoms.end();++atIter){
995 DeleteAtom((*atIter).second);
[46d958]996 }
997 atoms.clear();
[7188b1]998
[f71baf]999 delete BG;
[6cb9c76]1000 delete periode;
1001 delete configuration;
1002 delete Thermostats;
[09f615]1003 delete homologies;
[354859]1004}
[5d1611]1005
[23b547]1006// Explicit instantiation of the singleton mechanism at this point
[5d1611]1007
[3e4fb6]1008// moleculeId_t und atomId_t sind gleicher Basistyp, deswegen nur einen von beiden konstruieren
[b97a60]1009CONSTRUCT_IDPOOL(atomId_t, uniqueId)
1010CONSTRUCT_IDPOOL(moleculeId_t, continuousId)
[3e4fb6]1011
[23b547]1012CONSTRUCT_SINGLETON(World)
[5d1611]1013
[5f1d5b8]1014CONSTRUCT_OBSERVEDCONTAINER(World::AtomSTLSet)
1015
1016CONSTRUCT_OBSERVEDCONTAINER(World::MoleculeSTLSet)
1017
[5d1611]1018/******************************* deprecated Legacy Stuff ***********************/
1019
[354859]1020MoleculeListClass *&World::getMolecules() {
1021 return molecules_deprecated;
[5d1611]1022}
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