source: src/UIElements/Qt4/InstanceBoard/QtObservedInstanceBoard.hpp@ 65c323

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Last change on this file since 65c323 was 65c323, checked in by Frederik Heber <heber@…>, 9 years ago

Extracted all ObservedValue functionality out of GLMoleculeObject_atom.

  • i.e. GLMoleculeObject_atom is reduced to simple displaying, updated via Qt signals. These signals are connected to a QtObservedAtom which in turn now contains all the ObservedValue functionality.
  • this is preparatory for having a single (Observed)Atom as representer of its associated World's atom in the QtGui part of the code.
  • Property mode set to 100644
File size: 6.5 KB
Line 
1/*
2 * QtObservedInstanceBoard.hpp
3 *
4 * Created on: Oct 17, 2015
5 * Author: heber
6 */
7
8
9#ifndef QTOBSERVEDINSTANCEBOARD_HPP_
10#define QTOBSERVEDINSTANCEBOARD_HPP_
11
12// include config.h
13#ifdef HAVE_CONFIG_H
14#include <config.h>
15#endif
16
17#include <QtGui/QWidget>
18
19#include "UIElements/Qt4/InstanceBoard/QtObservedAtom.hpp"
20#include "UIElements/Qt4/InstanceBoard/QtObservedMolecule.hpp"
21
22#include <map>
23#include <boost/function.hpp>
24
25#include "CodePatterns/Observer/Observer.hpp"
26
27#include "UIElements/Qt4/InstanceBoard/ObservedValue_types.hpp"
28#include "UIElements/Qt4/InstanceBoard/ObservedValuesContainer.hpp"
29#include "types.hpp"
30
31class GLWorldScene;
32class GLMoleculeObject_bond;
33class GLMoleculeObject_molecule;
34
35/** The QtObservedInstanceBoard is the central class for communicating instance
36 * creation and destruction from MoleCuilder into the QtGui realm. It should be
37 * thought of as an interface to allow for safe multi-threaded computing.
38 *
39 * The idea is as follows: As soon as a molecule is instantiated, all the QtGui
40 * needs to access the instance (for displaying it) is wrapped up in a
41 * ObservedValue. This ObservedValue separates the lifetime of the molecule object
42 * from the information contained therein and thus makes the visual representation
43 * independent of the life time. The Observer/Observable signal from the World,
44 * i.e. World::MoleculeInserted, is caught (directly within the same thread) by
45 * the QtObservedInstanceBoard. Here, we instantiate all ObservedValue's needed
46 * for this specific molecule and store them in an internal map. Next, we emit
47 * a Qt signal informing the QtGui part about the new molecule.
48 * At some later stage, the QtGui will (probably in a different thread)
49 * instantiate a GLMoleculeObject_molecule as a visual representation of the
50 * molecule. It requests the ObservedValues from the QtObservedInstanceBoard
51 * and uses these directly.
52 * The QtObservedInstanceBoard also records all subjectKilled() signals from
53 * each ObservedValue. Additionally, each class using the ObservedValues
54 * additionally informs the QtObservedInstanceBoard when subjectKilled() was
55 * called. If subjectKilled() for each ObservedValue of a molecule and from the
56 * visual representation have been received, a removal Qt signal is emitted.
57 *
58 * The same holds for the atom
59 */
60class QtObservedInstanceBoard : public QWidget, public Observer
61{
62 Q_OBJECT
63
64public:
65 /** Cstor of QtObservedInstanceBoard.
66 *
67 * \param _parent Qt parent to automatically destroy when parent is destroyed
68 */
69 QtObservedInstanceBoard(QWidget * _parent=0);
70
71 /** Dstor of QtObservedInstanceBoard.
72 *
73 */
74 ~QtObservedInstanceBoard();
75
76 // Observer functions
77 void update(Observable *publisher);
78 void subjectKilled(Observable *publisher);
79 void recieveNotification(Observable *publisher, Notification_ptr notification);
80
81 QtObservedAtom::ptr getObservedAtom(const atomId_t _id);
82 QtObservedMolecule::ptr getObservedMolecule(const moleculeId_t _id);
83 void returnObservedAtom(const atomId_t _id);
84 void returnObservedMolecule(const moleculeId_t _id);
85
86 ObservedValues_t getAtomObservedValues(const atomId_t _id);
87 ObservedValues_t getMoleculeObservedValues(const moleculeId_t _id);
88
89 void returnAtomObservedValues(const atomId_t _id, ObservedValues_t &_observedvalues);
90 void returnMoleculeObservedValues(const moleculeId_t _id, ObservedValues_t &_observedvalues);
91
92signals:
93 void atomInserted(const moleculeId_t _molid, const atomId_t _atomid);
94 void atomRemoved(const moleculeId_t _molid, const atomId_t _atomid);
95 void atomIndexChanged(const atomId_t _oldid, const atomId_t _newid);
96 void moleculeInserted(const moleculeId_t _molid);
97 void moleculeRemoved(const moleculeId_t _molid);
98 void moleculeIndexChanged(const moleculeId_t _oldid, const moleculeId_t _newid);
99
100private:
101 friend class GLWorldScene;
102 friend class GLMoleculeObject_bond;
103 friend class GLMoleculeObject_molecule;
104 friend class QtObservedAtom;
105
106 //!> indicating whether we are still signedOn to World or not
107 bool WorldSignedOn;
108
109 typedef std::multiset<Observable *> SignedOn_t;
110 //!> map indicating to which atom we are currently signed on
111 SignedOn_t AtomSignedOn;
112 //!> map indicating to which molecule we are currently signed on
113 SignedOn_t MoleculeSignedOn;
114
115 /** Counts how many atom's ObservedValues got subjectKilled.
116 *
117 * This is used to give removal signal only when each and every
118 * ObservedValue (and the instance itself) has been subjectKilled by the
119 * monitored Observable. Only then can we safely remove the instance.
120 *
121 * \param _atomid id of the atom
122 */
123 void atomcountsubjectKilled(const atomId_t _atomid);
124
125 /** Counts how many molecule's ObservedValues got subjectKilled.
126 *
127 * This is used to give removal signal only when each and every
128 * ObservedValue (and the instance itself) has been subjectKilled by the
129 * monitored Observable. Only then can we safely remove the instance.
130 *
131 * \param _molid id of the molecule
132 */
133 void moleculecountsubjectKilled(const moleculeId_t _molid);
134
135 //!> typedef for map with subjectKilledCounts for each atom
136 typedef typename std::map<atomId_t, size_t> atomsubjectKilledCount_t;
137
138 //!> typedef for map with subjectKilledCounts for each molecule
139 typedef typename std::map<moleculeId_t, size_t> moleculesubjectKilledCount_t;
140
141 //!> counts how many ObservedValues have already been subjectKilled()
142 atomsubjectKilledCount_t atomsubjectKilledCount;
143
144 //!> counts how many ObservedValues have already been subjectKilled()
145 moleculesubjectKilledCount_t moleculesubjectKilledCount;
146
147 //!> container with all ObservedValues for each atom, associated by id
148 ObservedValuesContainer<QtObservedAtom, atomId_t> atomObservedValues;
149 //!> container with all ObservedValues for each molecule, associated by id
150 ObservedValuesContainer<QtObservedMolecule, moleculeId_t> moleculeObservedValues;
151
152 //!> stored callback function for notifying QtObservedInstanceBoard about subjectKilled in atom
153 boost::function<void (atomId_t)> atomSubjectKilled;
154 //!> stored callback function for notifying QtObservedInstanceBoard about subjectKilled in molecule
155 boost::function<void (moleculeId_t)> moleculeSubjectKilled;
156
157 //!> note down atom id of last removed atom to drop its ObservedValues
158 atomId_t lastremovedatom;
159
160 //!> note down atom id of last removed atom to drop its ObservedValues
161 std::pair<moleculeId_t, atomId_t> lastremovedatomsmolecule;
162
163 //!> note down molecule id of last removed molecule to drop its ObservedValues
164 moleculeId_t lastremovedmolecule;
165
166};
167
168#endif /* QTOBSERVEDINSTANCEBOARD_HPP_ */
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