source: trunk/source/global/management/include/G4Allocator.hh@ 1343

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[833]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//
[1340]27// $Id: G4Allocator.hh,v 1.21 2010/04/01 12:43:12 gcosmo Exp $
28// GEANT4 tag $Name: global-V09-03-22 $
[833]29//
30//
31// ------------------------------------------------------------
32// GEANT 4 class header file
33//
34// Class Description:
35//
36// A class for fast allocation of objects to the heap through a pool of
37// chunks organised as linked list. It's meant to be used by associating
38// it to the object to be allocated and defining for it new and delete
39// operators via MallocSingle() and FreeSingle() methods.
40
41// ---------------- G4Allocator ----------------
42//
43// Author: G.Cosmo (CERN), November 2000
44// ------------------------------------------------------------
45
46#ifndef G4Allocator_h
47#define G4Allocator_h 1
48
49#include <cstddef>
50
51#include "G4AllocatorPool.hh"
52
53template <class Type>
54class G4Allocator
55{
56 public: // with description
57
58 G4Allocator() throw();
59 ~G4Allocator() throw();
60 // Constructor & destructor
61
62 inline Type* MallocSingle();
63 inline void FreeSingle(Type* anElement);
64 // Malloc and Free methods to be used when overloading
65 // new and delete operators in the client <Type> object
66
67 inline void ResetStorage();
[1340]68 // Returns allocated storage to the free store, resets allocator.
[833]69 // Note: contents in memory are lost using this call !
70
71 inline size_t GetAllocatedSize() const;
72 // Returns the size of the total memory allocated
[1340]73 inline int GetNoPages() const;
74 // Returns the total number of allocated pages
75 inline size_t GetPageSize() const;
76 // Returns the current size of a page
77 inline void IncreasePageSize( unsigned int sz );
78 // Resets allocator and increases default page size of a given factor
[833]79
80 public: // without description
81
82 // This public section includes standard methods and types
83 // required if the allocator is to be used as alternative
84 // allocator for STL containers.
85 // NOTE: the code below is a trivial implementation to make
86 // this class an STL compliant allocator.
87 // It is anyhow NOT recommended to use this class as
88 // alternative allocator for STL containers !
89
90 typedef Type value_type;
91 typedef size_t size_type;
92 typedef ptrdiff_t difference_type;
93 typedef Type* pointer;
94 typedef const Type* const_pointer;
95 typedef Type& reference;
96 typedef const Type& const_reference;
97
98 template <class U> G4Allocator(const G4Allocator<U>& right) throw()
99 : mem(right.mem) {}
100 // Copy constructor
101
102 pointer address(reference r) const { return &r; }
103 const_pointer address(const_reference r) const { return &r; }
104 // Returns the address of values
105
[1193]106 pointer allocate(size_type n, void* = 0)
[833]107 {
108 // Allocates space for n elements of type Type, but does not initialise
109 //
110 Type* mem_alloc = 0;
111 if (n == 1)
112 mem_alloc = MallocSingle();
113 else
114 mem_alloc = static_cast<Type*>(::operator new(n*sizeof(Type)));
115 return mem_alloc;
116 }
117 void deallocate(pointer p, size_type n)
118 {
119 // Deallocates n elements of type Type, but doesn't destroy
120 //
121 if (n == 1)
122 FreeSingle(p);
123 else
124 ::operator delete((void*)p);
125 return;
126 }
127
128 void construct(pointer p, const Type& val) { new((void*)p) Type(val); }
129 // Initialises *p by val
130 void destroy(pointer p) { p->~Type(); }
131 // Destroy *p but doesn't deallocate
132
133 size_type max_size() const throw()
134 {
135 // Returns the maximum number of elements that can be allocated
136 //
137 return 2147483647/sizeof(Type);
138 }
139
140 template <class U>
141 struct rebind { typedef G4Allocator<U> other; };
142 // Rebind allocator to type U
143
144 G4AllocatorPool mem;
145 // Pool of elements of sizeof(Type)
146};
147
148// ------------------------------------------------------------
149// Inline implementation
150// ------------------------------------------------------------
151
152// Initialization of the static pool
153//
154// template <class Type> G4AllocatorPool G4Allocator<Type>::mem(sizeof(Type));
155
156// ************************************************************
157// G4Allocator constructor
158// ************************************************************
159//
160template <class Type>
161G4Allocator<Type>::G4Allocator() throw()
162 : mem(sizeof(Type))
163{
164}
165
166// ************************************************************
167// G4Allocator destructor
168// ************************************************************
169//
170template <class Type>
171G4Allocator<Type>::~G4Allocator() throw()
172{
173}
174
175// ************************************************************
176// MallocSingle
177// ************************************************************
178//
179template <class Type>
180Type* G4Allocator<Type>::MallocSingle()
181{
182 return static_cast<Type*>(mem.Alloc());
183}
184
185// ************************************************************
186// FreeSingle
187// ************************************************************
188//
189template <class Type>
190void G4Allocator<Type>::FreeSingle(Type* anElement)
191{
192 mem.Free(anElement);
193 return;
194}
195
196// ************************************************************
197// ResetStorage
198// ************************************************************
199//
200template <class Type>
201void G4Allocator<Type>::ResetStorage()
202{
203 // Clear all allocated storage and return it to the free store
204 //
205 mem.Reset();
206 return;
207}
208
209// ************************************************************
210// GetAllocatedSize
211// ************************************************************
212//
213template <class Type>
214size_t G4Allocator<Type>::GetAllocatedSize() const
215{
216 return mem.Size();
217}
218
219// ************************************************************
[1340]220// GetNoPages
221// ************************************************************
222//
223template <class Type>
224int G4Allocator<Type>::GetNoPages() const
225{
226 return mem.GetNoPages();
227}
228
229// ************************************************************
230// GetPageSize
231// ************************************************************
232//
233template <class Type>
234size_t G4Allocator<Type>::GetPageSize() const
235{
236 return mem.GetPageSize();
237}
238
239// ************************************************************
240// IncreasePageSize
241// ************************************************************
242//
243template <class Type>
244void G4Allocator<Type>::IncreasePageSize( unsigned int sz )
245{
246 ResetStorage();
247 mem.GrowPageSize(sz);
248}
249
250// ************************************************************
[833]251// operator==
252// ************************************************************
253//
254template <class T1, class T2>
255bool operator== (const G4Allocator<T1>&, const G4Allocator<T2>&) throw()
256{
257 return true;
258}
259
260// ************************************************************
261// operator!=
262// ************************************************************
263//
264template <class T1, class T2>
265bool operator!= (const G4Allocator<T1>&, const G4Allocator<T2>&) throw()
266{
267 return false;
268}
269
270#endif
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