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1 \section{Run time class information overview}\label{runtimeclassoverview}
2
3 Classes: \helpref{wxObject}{wxobject}, \helpref{wxClassInfo}{wxclassinfo}.
4
5 One of the failings of C++ is that no run-time information is provided
6 about a class and its position in the inheritance hierarchy.
7 Another is that instances of a class cannot be created just by knowing the name of a class,
8 which makes facilities such as persistent storage hard to implement.
9
10 Most C++ GUI frameworks overcome these limitations by means of a set of
11 macros and functions and wxWindows is no exception.
12 Each class that you wish to be known the type system should have
13 a macro such as DECLARE\_DYNAMIC\_CLASS just inside the class declaration.
14 The macro IMPLEMENT\_DYNAMIC\_CLASS should be in the implementation file.
15 Note that these are entirely optional; use them if you wish to check object
16 types, or create instances of classes using the class name. However,
17 it is good to get into the habit of adding these macros for all classes.
18
19 Variations on these \helpref{macros}{macros} are used for multiple inheritance, and abstract
20 classes that cannot be instantiated dynamically or otherwise.
21
22 DECLARE\_DYNAMIC\_CLASS inserts a static wxClassInfo declaration into the
23 class, initialized by IMPLEMENT\_DYNAMIC\_CLASS. When initialized, the
24 wxClassInfo object inserts itself into a linked list (accessed through
25 wxClassInfo::first and wxClassInfo::next pointers). The linked list
26 is fully created by the time all global initialisation is done.
27
28 IMPLEMENT\_DYNAMIC\_CLASS is a macro that not only initialises the static
29 wxClassInfo member, but defines a global function capable of creating a
30 dynamic object of the class in question. A pointer to this function is
31 stored in wxClassInfo, and is used when an object should be created
32 dynamically.
33
34 wxObject::IsKindOf uses the linked list of wxClassInfo. It takes
35 a wxClassInfo argument, so use CLASSINFO(className) to return an
36 appropriate wxClassInfo pointer to use in this function.
37
38 The function \helpref{wxCreateDynamicObject}{wxcreatedynamicobject} can be used
39 to construct a new object of a given type, by supplying a string name.
40 If you have a pointer to the wxClassInfo object instead, then you
41 can simply call wxClassInfo::CreateObject.
42
43 \subsection{wxClassInfo}\label{wxclassinfooverview}
44
45 \overview{Run time class information overview}{runtimeclassoverview}
46
47 Class: \helpref{wxClassInfo}{wxclassinfo}
48
49 This class stores meta-information about classes. An application
50 may use macros such as DECLARE\_DYNAMIC\_CLASS and IMPLEMENT\_DYNAMIC\_CLASS
51 to record run-time information about a class, including:
52
53 \begin{itemize}\itemsep=0pt
54 \item its position in the inheritance hierarchy;
55 \item the base class name(s) (up to two base classes are permitted);
56 \item a string representation of the class name;
57 \item a function that can be called to construct an instance of this class.
58 \end{itemize}
59
60 The DECLARE\_... macros declare a static wxClassInfo variable in a class, which is initialized
61 by macros of the form IMPLEMENT\_... in the implementation C++ file. Classes whose instances may be
62 constructed dynamically are given a global constructor function which returns a new object.
63
64 You can get the wxClassInfo for a class by using the CLASSINFO macro, e.g. CLASSINFO(wxFrame).
65 You can get the wxClassInfo for an object using wxObject::GetClassInfo.
66
67 See also \helpref{wxObject}{wxobject} and \helpref{wxCreateDynamicObject}{wxcreatedynamicobject}.
68
69 \subsection{Example}
70
71 In a header file wx\_frame.h:
72
73 \begin{verbatim}
74 class wxFrame: public wxWindow
75 {
76 DECLARE_DYNAMIC_CLASS(wxFrame)
77
78 private:
79 char *frameTitle;
80 public:
81 ...
82 };
83 \end{verbatim}
84
85 In a C++ file wx\_frame.cc:
86
87 \begin{verbatim}
88 IMPLEMENT_DYNAMIC_CLASS(wxFrame, wxWindow)
89
90 wxFrame::wxFrame(void)
91 {
92 ...
93 }
94 \end{verbatim}
95
96