source: trunk/source/global/management/include/G4ReferenceCountedHandle.hh@ 1340

Last change on this file since 1340 was 1337, checked in by garnier, 15 years ago

tag geant4.9.4 beta 1 + modifs locales

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1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26//
27// $Id: G4ReferenceCountedHandle.hh,v 1.15 2006/06/29 19:02:46 gunter Exp $
28// GEANT4 tag $Name: geant4-09-04-beta-01 $
29//
30//
31// Class G4ReferenceCountedHandle
32//
33// Class description:
34//
35// A class to provide reference counting mechanism.
36// It is a templated class, acting as a smart pointer,
37// wrapping the type to be counted. It performs the reference counting
38// during the life-time of the counted object. When its count reaches zero
39// the counted object is destroyed by explicit call to its destructor.
40// This class provides overloaded operators *() and ->() to allow similar
41// syntax as for the normal "dumb" pointers.
42// The basic rule for the use of this class is that a handle must always
43// be exchanged by reference never dinamically allocated (i.e. never
44// instantiated using 'new').
45// The validity of a smart pointer object can be verified by using the
46// operator !() or operator bool(). I.e.:
47// if( !smartPtrObj ) { ... } // Problem! We must initialize it first!
48// else { ... } // OK!
49// Trying to 'delete' a smart pointer object will generate a compilation
50// error (since we're dealing with objects, not pointers!).
51
52// Author: Radovan Chytracek, CERN (Radovan.Chytracek@cern.ch)
53// Version: 3.0
54// Date: November 2001
55// ----------------------------------------------------------------------
56#ifndef _G4REFERENCECOUNTEDHANDLE_H_
57#define _G4REFERENCECOUNTEDHANDLE_H_ 1
58
59#include "G4Allocator.hh"
60
61template <class X> class G4CountedObject;
62
63template <class X>
64class G4ReferenceCountedHandle
65{
66
67public: // with description
68
69 inline G4ReferenceCountedHandle( X* rep = 0 );
70 // Constructor.
71
72 inline G4ReferenceCountedHandle( const G4ReferenceCountedHandle<X>& right );
73 // Copy constructor.
74
75 inline ~G4ReferenceCountedHandle();
76 // Destructor.
77
78 inline G4ReferenceCountedHandle<X>&
79 operator =( const G4ReferenceCountedHandle<X>& right );
80 // Assignment operator by reference.
81
82 inline G4ReferenceCountedHandle<X>& operator =( X* objPtr );
83 // Assignment operator by pointer.
84
85 inline unsigned int Count() const;
86 // Forward to Counter class.
87
88 inline X* operator ->() const;
89 // Operator -> allowing the access to counted object.
90 // The check for 0-ness is left out for performance reasons,
91 // see operator () below.
92 // May be called on initialised smart-pointer only!
93
94 inline G4bool operator !() const;
95 // Validity test operator.
96
97 inline operator bool() const;
98 // Boolean operator.
99
100 inline X* operator ()() const;
101 // Functor operator (for convenience).
102
103 // There is no provision that this class is subclassed.
104 // If it is subclassed & new data members are added then the
105 // following "new" & "delete" will fail and give errors.
106 //
107 inline void* operator new( size_t );
108 // Operator new defined for G4Allocator.
109
110 inline void operator delete( void *pObj );
111 // Operator delete defined for G4Allocator.
112
113public:
114
115#ifdef G4RF_DEBUG
116 void* operator new( size_t, void *pObj );
117 // This is required on some compilers (Windows/VC++, Linux/g++) when this
118 // class is used in the context of STL container. It generates a warning
119 // saying something about not existing correspondent delete...
120#endif
121
122private:
123
124 G4CountedObject<X>* fObj;
125 // The object subject to reference counting.
126
127 static G4Allocator<G4ReferenceCountedHandle<X> > aRCHAllocator;
128};
129
130template <class X>
131class G4CountedObject
132{
133
134 friend class G4ReferenceCountedHandle<X>;
135
136public: // with description
137
138 G4CountedObject( X* pObj = 0 );
139 // Constructor.
140
141 ~G4CountedObject();
142 // Destructor.
143
144 inline void AddRef();
145 // Increase the count.
146
147 inline void Release();
148 // Decrease the count and if zero destroy itself.
149
150 // There is no provision that this class is subclassed.
151 // If it is subclassed & new data members are added then the
152 // following "new" & "delete" will fail and give errors.
153 //
154 inline void* operator new( size_t );
155 // Operator new defined for G4Allocator.
156
157 inline void operator delete( void *pObj );
158 // operator delete defined for G4Allocator.
159
160private:
161
162 unsigned int fCount;
163 // Reference counter.
164 X* fRep;
165 // The counted object.
166
167 static G4Allocator<G4CountedObject<X> > aCountedObjectAllocator;
168};
169
170
171// --------- G4CountedObject<X> Inline function definitions ---------
172
173template <class X>
174G4CountedObject<X>::G4CountedObject( X* pObj )
175 : fCount(0), fRep( pObj )
176{
177 if( pObj != 0 ) {
178 fCount = 1;
179 }
180}
181
182template <class X>
183G4CountedObject<X>::~G4CountedObject()
184{
185 delete fRep;
186}
187
188template <class X>
189void G4CountedObject<X>::AddRef()
190{
191 ++fCount;
192}
193
194template <class X>
195void G4CountedObject<X>::Release()
196{
197 if( --fCount == 0 ) delete this;
198}
199
200template <class X>
201void* G4CountedObject<X>::operator new( size_t )
202{
203 return( (void *)aCountedObjectAllocator.MallocSingle() );
204}
205
206template <class X>
207void G4CountedObject<X>::operator delete( void *pObj )
208{
209 aCountedObjectAllocator.FreeSingle( (G4CountedObject<X>*)pObj );
210}
211
212// --------- G4ReferenceCountedHandle<X> Inline function definitions ---------
213
214template <class X>
215G4ReferenceCountedHandle<X>::
216 G4ReferenceCountedHandle( X* rep )
217 : fObj( 0 )
218{
219 if( rep != 0 ) {
220 fObj = new G4CountedObject<X>( rep );
221 }
222}
223
224template <class X>
225G4ReferenceCountedHandle<X>::
226 G4ReferenceCountedHandle( const G4ReferenceCountedHandle<X>& right )
227 : fObj( right.fObj )
228{
229 fObj->AddRef();
230}
231
232template <class X>
233G4ReferenceCountedHandle<X>::~G4ReferenceCountedHandle()
234{
235 if( fObj ) fObj->Release();
236}
237
238template <class X>
239G4ReferenceCountedHandle<X>& G4ReferenceCountedHandle<X>::
240 operator =( const G4ReferenceCountedHandle<X>& right )
241{
242 if( fObj != right.fObj ) {
243 if( fObj )
244 fObj->Release();
245 this->fObj = right.fObj;
246 fObj->AddRef();
247 }
248 return *this;
249}
250
251template <class X>
252G4ReferenceCountedHandle<X>& G4ReferenceCountedHandle<X>::
253 operator =( X* objPtr )
254{
255 if( fObj )
256 fObj->Release();
257 this->fObj = new G4CountedObject<X>( objPtr );
258 return *this;
259}
260
261template <class X>
262unsigned int G4ReferenceCountedHandle<X>::Count() const
263{
264 return( fObj ? fObj->fCount : 0 );
265}
266
267template <class X>
268X* G4ReferenceCountedHandle<X>::operator ->() const
269{
270 return( fObj ? fObj->fRep : 0 );
271}
272
273template <class X>
274G4bool G4ReferenceCountedHandle<X>::operator !() const
275{
276 return( ( !fObj ) ? true : false );
277}
278
279template <class X>
280G4ReferenceCountedHandle<X>::operator bool() const
281{
282 return( ( fObj ) ? true : false );
283}
284
285template <class X>
286X* G4ReferenceCountedHandle<X>::operator ()() const
287{
288 return( fObj ? fObj->fRep : 0 );
289}
290
291template <class X>
292void* G4ReferenceCountedHandle<X>::operator new( size_t )
293{
294 return( (void *)aRCHAllocator.MallocSingle() );
295}
296
297template <class X>
298void G4ReferenceCountedHandle<X>::operator delete( void *pObj )
299{
300 aRCHAllocator.FreeSingle( (G4ReferenceCountedHandle<X>*)pObj );
301}
302
303#ifdef G4RF_DEBUG
304template <class X>
305void* G4ReferenceCountedHandle<X>::operator new( size_t, void *pObj )
306{
307 return pObj;
308}
309#endif
310
311// ------------------ Static allocators definitions -----------------
312
313template <class X>
314G4Allocator<G4CountedObject<X> >
315 G4CountedObject<X>::aCountedObjectAllocator;
316
317template <class X>
318G4Allocator<G4ReferenceCountedHandle<X> >
319 G4ReferenceCountedHandle<X>::aRCHAllocator;
320
321#endif // _G4REFERENCECOUNTEDHANDLE_H_
322
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