source: src/World.hpp@ 40f928

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Last change on this file since 40f928 was fa0b18, checked in by Tillmann Crueger <crueger@…>, 15 years ago

Added Observed and Selectiv iterators over internal Structures of the World.

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File size: 9.4 KB
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[5d1611]1/*
2 * World.hpp
3 *
4 * Created on: Feb 3, 2010
5 * Author: crueger
6 */
7
8#ifndef WORLD_HPP_
9#define WORLD_HPP_
10
[b34306]11/*********************************************** includes ***********************************/
12
[7c4e29]13#include <string>
[d346b6]14#include <map>
[fc1b24]15#include <vector>
[354859]16#include <set>
[7c4e29]17#include <boost/thread.hpp>
[865a945]18#include <boost/shared_ptr.hpp>
[5d1611]19
[ead4e6]20#include "types.hpp"
[6e97e5]21#include "Descriptors/SelectiveIterator.hpp"
[5d1611]22#include "Patterns/Observer.hpp"
23#include "Patterns/Cacheable.hpp"
[23b547]24#include "Patterns/Singleton.hpp"
[fa0b18]25#include "AtomSet.hpp"
[23b547]26
[b34306]27// include config.h
28#ifdef HAVE_CONFIG_H
29#include <config.h>
30#endif
[5d1611]31
32// forward declarations
[4d9c01]33class atom;
[fc1b24]34class AtomDescriptor;
[7a1ce5]35class AtomDescriptor_impl;
[43dad6]36template<typename T> class AtomsCalculation;
[84c494]37class Box;
[43dad6]38class config;
39class ManipulateAtomsProcess;
[84c494]40class Matrix;
[43dad6]41class molecule;
[1c51c8]42class MoleculeDescriptor;
43class MoleculeDescriptor_impl;
[43dad6]44class MoleculeListClass;
45class periodentafel;
46class ThermoStatContainer;
[5d1611]47
[fa0b18]48
[b34306]49/****************************************** forward declarations *****************************/
[23b547]50
[b34306]51/********************************************** Class World *******************************/
[23b547]52
53class World : public Singleton<World>, public Observable
[5d1611]54{
[23b547]55
56// Make access to constructor and destructor possible from inside the singleton
57friend class Singleton<World>;
58
[b54ac8]59// necessary for coupling with descriptors
[7a1ce5]60friend class AtomDescriptor_impl;
[865a945]61friend class AtomDescriptor;
[1c51c8]62friend class MoleculeDescriptor_impl;
63friend class MoleculeDescriptor;
[865a945]64
[b54ac8]65// Actions, calculations etc associated with the World
[7c4e29]66friend class ManipulateAtomsProcess;
[b54ac8]67template<typename> friend class AtomsCalculation;
[5d1611]68public:
[23b547]69
70 // Types for Atom and Molecule structures
[fa0b18]71 typedef _AtomSet AtomSet;
[7042f45]72 typedef std::map<moleculeId_t,molecule*> MoleculeSet;
[5d1611]73
74 /***** getter and setter *****/
[354859]75 // reference to pointer is used for legacy reason... reference will be removed latter to keep encapsulation of World object
[02ee15]76 /**
77 * returns the periodentafel for the world.
78 */
[354859]79 periodentafel *&getPeriode();
[02ee15]80
[8e1f7af]81 /**
82 * returns the configuration for the world.
83 */
84 config *&getConfig();
85
[02ee15]86 /**
87 * returns the first atom that matches a given descriptor.
88 * Do not rely on ordering for descriptors that match more than one atom.
89 */
[7a1ce5]90 atom* getAtom(AtomDescriptor descriptor);
[02ee15]91
92 /**
93 * returns a vector containing all atoms that match a given descriptor
94 */
[7a1ce5]95 std::vector<atom*> getAllAtoms(AtomDescriptor descriptor);
[0e2a47]96 std::vector<atom*> getAllAtoms();
[b54ac8]97
[02ee15]98 /**
99 * returns a calculation that calls a given function on all atoms matching a descriptor.
100 * the calculation is not called at this point and can be used as an action, i.e. be stored in
101 * menus, be kept around for later use etc.
102 */
[0e2a47]103 template<typename T> AtomsCalculation<T>* calcOnAtoms(boost::function<T(atom*)>,std::string,AtomDescriptor);
104 template<typename T> AtomsCalculation<T>* calcOnAtoms(boost::function<T(atom*)>,std::string);
[b54ac8]105
[02ee15]106 /**
107 * get the number of atoms in the World
108 */
[354859]109 int numAtoms();
[02ee15]110
[1c51c8]111 /**
112 * returns the first molecule that matches a given descriptor.
113 * Do not rely on ordering for descriptors that match more than one molecule.
114 */
115 molecule *getMolecule(MoleculeDescriptor descriptor);
116
117 /**
118 * returns a vector containing all molecules that match a given descriptor
119 */
120 std::vector<molecule*> getAllMolecules(MoleculeDescriptor descriptor);
[97ebf8]121 std::vector<molecule*> getAllMolecules();
[1c51c8]122
[02ee15]123 /**
124 * get the number of molecules in the World
125 */
[354859]126 int numMolecules();
127
[5f612ee]128 /**
129 * get the domain size as a symmetric matrix (6 components)
130 */
[84c494]131 Box& getDomain();
132
133 /**
134 * Set the domain size from a matrix object
135 *
136 * Matrix needs to be symmetric
137 */
138 void setDomain(const Matrix &mat);
[5f612ee]139
140 /**
141 * set the domain size as a symmetric matrix (6 components)
142 */
143 void setDomain(double * matrix);
144
145 /**
146 * get the default name
147 */
[387b36]148 std::string getDefaultName();
[5f612ee]149
150 /**
151 * set the default name
152 */
[387b36]153 void setDefaultName(std::string name);
[5f612ee]154
[43dad6]155 /**
156 * get pointer to World's ThermoStatContainer
157 */
158 ThermoStatContainer * getThermostats();
159
[e4b5de]160 /*
161 * get the ExitFlag
162 */
163 int getExitFlag();
164
165 /*
166 * set the ExitFlag
167 */
168 void setExitFlag(int flag);
169
[354859]170 /***** Methods to work with the World *****/
[02ee15]171
172 /**
173 * create a new molecule. This method should be used whenever any kind of molecule is needed. Assigns a unique
174 * ID to the molecule and stores it in the World for later retrieval. Do not create molecules directly.
175 */
[354859]176 molecule *createMolecule();
[02ee15]177
[cbc5fb]178 void destroyMolecule(molecule*);
179 void destroyMolecule(moleculeId_t);
180
[02ee15]181 /**
182 * Create a new atom. This method should be used whenever any atom is needed. Assigns a unique ID and stores
183 * the atom in the World. If the atom is not destroyed it will automatically be destroyed when the world ends.
184 */
[46d958]185 atom *createAtom();
[02ee15]186
187 /**
188 * Registers a Atom unknown to world. Needed in some rare cases, e.g. when cloning atoms, or in some unittests.
189 * Do not re-register Atoms already known to the world since this will cause double-frees.
190 */
[46d958]191 int registerAtom(atom*);
[02ee15]192
193 /**
194 * Delete some atom and erase it from the world. Use this whenever you need to destroy any atom. Do not call delete on
195 * atom directly since this will leave the pointer inside the world.
196 */
[46d958]197 void destroyAtom(atom*);
[02ee15]198
199 /**
200 * Delete some atom and erase it from the world. Use this whenever you need to destroy any atom. Do not call delete on
201 * atom directly since this will leave the pointer inside the world.
202 */
[cbc5fb]203 void destroyAtom(atomId_t);
[865a945]204
[88d586]205 /**
206 * used when changing an atom Id.
207 * Unless you are calling this method from inside an atom don't fiddle with the third parameter.
208 *
209 * Return value indicates wether the change could be done or not.
210 */
211 bool changeAtomId(atomId_t oldId, atomId_t newId, atom* target=0);
212
[02ee15]213 /**
214 * Produces a process that calls a function on all Atoms matching a given descriptor. The process is not
215 * called at this time, so it can be passed around, stored inside menuItems etc.
216 */
[7c4e29]217 ManipulateAtomsProcess* manipulateAtoms(boost::function<void(atom*)>,std::string,AtomDescriptor);
[0e2a47]218 ManipulateAtomsProcess* manipulateAtoms(boost::function<void(atom*)>,std::string);
[7c4e29]219
[fa0b18]220 /****
221 * Iterators to use internal data structures
222 * All these iterators are observed to track changes.
223 * There is a corresponding protected section with unobserved iterators,
224 * which ca be used internally when the extra speed is needed
225 */
226
227 typedef SelectiveIterator<atom*,AtomSet,AtomDescriptor> AtomIterator;
228
229 /**
230 * returns an iterator over all Atoms matching a given descriptor.
231 * This iterator is observed, so don't keep it around unnecessary to
232 * avoid unintended blocking.
233 */
234 AtomIterator getAtomIter(AtomDescriptor descr);
235 AtomIterator getAtomIter();
236
237 AtomIterator atomEnd();
238
[865a945]239protected:
[fa0b18]240 /****
241 * Iterators to use internal data structures
242 * All these iterators are unobserved for speed reasons.
243 * There is a corresponding public section to these methods,
244 * which produce observed iterators.*/
[1c51c8]245
246 // Atoms
[fa0b18]247 typedef AtomSet::selective_internal_iterator internal_AtomIterator;
[865a945]248
[02ee15]249 /**
250 * returns an iterator over all Atoms matching a given descriptor.
251 * used for internal purposes, like AtomProcesses and AtomCalculations.
252 */
[fa0b18]253 internal_AtomIterator getAtomIter_internal(AtomDescriptor descr);
[02ee15]254
255 /**
[d2dbac0]256 * returns an iterator to the end of the AtomSet. Due to overloading this iterator
[02ee15]257 * can be compared to iterators produced by getAtomIter (see the mis-matching types).
258 * Thus it can be used to detect when such an iterator is at the end of the list.
259 * used for internal purposes, like AtomProcesses and AtomCalculations.
260 */
[fa0b18]261 internal_AtomIterator atomEnd_internal();
[865a945]262
[1c51c8]263 // Molecules
264
[6e97e5]265 typedef SelectiveIterator<molecule*,MoleculeSet,MoleculeDescriptor> MoleculeIterator;
[1c51c8]266
267 /**
268 * returns an iterator over all Molecules matching a given descriptor.
269 * used for internal purposes, like MoleculeProcesses and MoleculeCalculations.
270 */
271 MoleculeIterator getMoleculeIter(MoleculeDescriptor descr);
272
273 /**
274 * returns an iterator to the end of the MoleculeSet. Due to overloading this iterator
275 * can be compared to iterators produced by getMoleculeIter (see the mis-matching types).
276 * Thus it can be used to detect when such an iterator is at the end of the list.
277 * used for internal purposes, like MoleculeProcesses and MoleculeCalculations.
278 */
[6e97e5]279 MoleculeIterator moleculeEnd();
[1c51c8]280
281
[afb47f]282 /******* Internal manipulation routines for double callback and Observer mechanism ******/
283 void doManipulate(ManipulateAtomsProcess *);
284
[5d1611]285private:
[88d586]286
287 atomId_t getNextAtomId();
288 void releaseAtomId(atomId_t);
289 bool reserveAtomId(atomId_t);
290
[5d1611]291 periodentafel *periode;
[8e1f7af]292 config *configuration;
[84c494]293 Box *cell_size;
[387b36]294 std::string defaultName;
[43dad6]295 class ThermoStatContainer *Thermostats;
[e4b5de]296 int ExitFlag;
[6e97e5]297public:
[d2dbac0]298 AtomSet atoms;
[6e97e5]299private:
[88d586]300 std::set<atomId_t> atomIdPool; //<!stores the pool for all available AtomIds below currAtomId
[cbc5fb]301 atomId_t currAtomId; //!< stores the next available Id for atoms
[d2dbac0]302 MoleculeSet molecules;
[cbc5fb]303 moleculeId_t currMoleculeId;
[5d1611]304private:
[02ee15]305 /**
306 * private constructor to ensure creation of the world using
307 * the singleton pattern.
308 */
[5d1611]309 World();
[02ee15]310
311 /**
312 * private destructor to ensure destruction of the world using the
313 * singleton pattern.
314 */
[5d1611]315 virtual ~World();
316
317 /*****
318 * some legacy stuff that is include for now but will be removed later
319 *****/
320public:
[354859]321 MoleculeListClass *&getMolecules();
[4d9c01]322
[5d1611]323private:
[354859]324 MoleculeListClass *molecules_deprecated;
[5d1611]325};
326
327#endif /* WORLD_HPP_ */
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