summaryrefslogtreecommitdiff
path: root/ace/Atomic_Op_T.h
blob: 549ee67274b8d3889b807859ed22a91df766bbdd (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
/* -*- C++ -*- */

//=============================================================================
/**
 *  @file    Atomic_Op_T.h
 *
 *  $Id$
 *
 *  @author Douglas C. Schmidt <schmidt@uci.edu>
 */
//=============================================================================

#ifndef ACE_ATOMIC_OP_T_H
#define ACE_ATOMIC_OP_T_H
#include /**/ "ace/pre.h"

#include "ace/config-all.h"

#if !defined (ACE_LACKS_PRAGMA_ONCE)
# pragma once
#endif /* ACE_LACKS_PRAGMA_ONCE */

ACE_BEGIN_VERSIONED_NAMESPACE_DECL

/**
 * @class ACE_Atomic_Op_Ex
 *
 * @brief Transparently parameterizes synchronization into basic
 * arithmetic operations.
 *
 * This class is described in an article in the July/August 1994
 * issue of the C++ Report magazine.  It implements a
 * templatized version of the Decorator pattern from the GoF book.
 *
 * ACE_Atomic_Op_Ex objects must be constructed with a reference
 * to an existing lock. A single lock can be shared between
 * multiple ACE_Atomic_Op_Ex objects. If you do not require this
 * ability consider using the ACE_Atomic_Op class instead, which
 * may be able to take advantage of platform-specific
 * optimisations to provide atomic operations without requiring a
 * lock.
 */
template <class ACE_LOCK, class TYPE>
class ACE_Atomic_Op_Ex
{
public:
  // = Initialization methods.

  /// Initialize <value_> to 0.
  ACE_Atomic_Op_Ex (ACE_LOCK &mtx);

  /// Initialize <value_> to c.
  ACE_Atomic_Op_Ex (ACE_LOCK &mtx, const TYPE &c);

  // = Accessors.

  /// Atomically pre-increment <value_>.
  TYPE operator++ (void);

  /// Atomically post-increment <value_>.
  TYPE operator++ (int);

  /// Atomically increment <value_> by rhs.
  TYPE operator+= (const TYPE &rhs);

  /// Atomically pre-decrement <value_>.
  TYPE operator-- (void);

  /// Atomically post-decrement <value_>.
  TYPE operator-- (int);

  /// Atomically decrement <value_> by rhs.
  TYPE operator-= (const TYPE &rhs);

  /// Atomically compare <value_> with rhs.
  bool operator== (const TYPE &rhs) const;

  /// Atomically compare <value_> with rhs.
  bool operator!= (const TYPE &rhs) const;

  /// Atomically check if <value_> greater than or equal to rhs.
  bool operator>= (const TYPE &rhs) const;

  /// Atomically check if <value_> greater than rhs.
  bool operator> (const TYPE &rhs) const;

  /// Atomically check if <value_> less than or equal to rhs.
  bool operator<= (const TYPE &rhs) const;

  /// Atomically check if <value_> less than rhs.
  bool operator< (const TYPE &rhs) const;

  /// Atomically assign rhs to <value_>.
  ACE_Atomic_Op_Ex<ACE_LOCK, TYPE> &operator= (const TYPE &rhs);

  /// Atomically assign <rhs> to <value_>.
  ACE_Atomic_Op_Ex<ACE_LOCK, TYPE> &operator= (const ACE_Atomic_Op_Ex<ACE_LOCK, TYPE> &rhs);

  /// Explicitly return <value_>.
  TYPE value (void) const;

  /// Dump the state of an object.
  void dump (void) const;

  // ACE_ALLOC_HOOK_DECLARE;
  // Declare the dynamic allocation hooks.

  /// Manage copying...
  ACE_Atomic_Op_Ex (const ACE_Atomic_Op_Ex<ACE_LOCK, TYPE> &);

  /**
   * Returns a reference to the underlying <ACE_LOCK>.  This makes it
   * possible to acquire the lock explicitly, which can be useful in
   * some cases if you instantiate the <ACE_Atomic_Op_Ex> with an
   * ACE_Recursive_Mutex or ACE_Process_Mutex.  @note the right
   * name would be lock_, but HP/C++ will choke on that!
   */
  ACE_LOCK &mutex (void);

  /**
   * Explicitly return <value_> (by reference).  This gives the user
   * full, unrestricted access to the underlying value.  This method
   * will usually be used in conjunction with explicit access to the
   * lock.  Use with care ;-)
   */
  TYPE &value_i (void);

private:
  /// Type of synchronization mechanism.
  ACE_LOCK &mutex_;

  /// Current object decorated by the atomic op.
  TYPE value_;
};

/**
 * @class ACE_Atomic_Op
 *
 * @brief Transparently parameterizes synchronization into basic
 * arithmetic operations.
 *
 * This class is described in an article in the July/August 1994
 * issue of the C++ Report magazine.  It implements a
 * templatized version of the Decorator pattern from the GoF book.
 *
 * Certain platforms may provide a template specialization for
 * ACE_Atomic_Op <ACE_Thread_Mutex, long> that provides optimized
 * atomic integer operations without actually requiring a mutex.
 */
template <class ACE_LOCK, class TYPE>
class ACE_Atomic_Op
{
public:
  /// Initialize <value_> to 0.
  ACE_Atomic_Op (void);

  /// Initialize <value_> to c.
  ACE_Atomic_Op (const TYPE &c);

  /// Manage copying...
  ACE_Atomic_Op (const ACE_Atomic_Op<ACE_LOCK, TYPE> &c);

  /// Atomically assign rhs to <value_>.
  ACE_Atomic_Op<ACE_LOCK, TYPE> &operator= (const TYPE &rhs);

  /// Atomically assign <rhs> to <value_>.
  ACE_Atomic_Op<ACE_LOCK, TYPE> &operator= (const ACE_Atomic_Op<ACE_LOCK, TYPE> &rhs);

  /// Atomically pre-increment <value_>.
  TYPE operator++ (void);

  /// Atomically post-increment <value_>.
  TYPE operator++ (int);

  /// Atomically increment <value_> by rhs.
  TYPE operator+= (const TYPE &rhs);

  /// Atomically pre-decrement <value_>.
  TYPE operator-- (void);

  /// Atomically post-decrement <value_>.
  TYPE operator-- (int);

  /// Atomically decrement <value_> by rhs.
  TYPE operator-= (const TYPE &rhs);

  /// Atomically compare <value_> with rhs.
  bool operator== (const TYPE &rhs) const;

  /// Atomically compare <value_> with rhs.
  bool operator!= (const TYPE &rhs) const;

  /// Atomically check if <value_> greater than or equal to rhs.
  bool operator>= (const TYPE &rhs) const;

  /// Atomically check if <value_> greater than rhs.
  bool operator> (const TYPE &rhs) const;

  /// Atomically check if <value_> less than or equal to rhs.
  bool operator<= (const TYPE &rhs) const;

  /// Atomically check if <value_> less than rhs.
  bool operator< (const TYPE &rhs) const;

  /// Explicitly return <value_>.
  TYPE value (void) const;

  /// Dump the state of an object.
  void dump (void) const;

  /**
   * Returns a reference to the underlying <ACE_LOCK>.  This makes it
   * possible to acquire the lock explicitly, which can be useful in
   * some cases if you instantiate the ACE_Atomic_Op with an
   * ACE_Recursive_Mutex or ACE_Process_Mutex.
   *
   * @deprecated This member function is deprecated and so may go away in
   * the future. If you need access to the underlying mutex, consider
   * using the ACE_Atomic_Op_Ex template instead.
   */
  ACE_LOCK &mutex (void);

  /**
   * Explicitly return <value_> (by reference).  This gives the user
   * full, unrestricted access to the underlying value.  This method
   * will usually be used in conjunction with explicit access to the
   * lock.  Use with care ;-)
   */
  TYPE &value_i (void);

private:
  /// Type of synchronization mechanism.
  ACE_LOCK own_mutex_;

  /// Underlying atomic op implementation.
  ACE_Atomic_Op_Ex <ACE_LOCK, TYPE> impl_;
};

ACE_END_VERSIONED_NAMESPACE_DECL

#if defined (__ACE_INLINE__)
#include "ace/Atomic_Op_T.inl"
#endif /* __ACE_INLINE__ */

#if defined (ACE_TEMPLATES_REQUIRE_SOURCE)
#include "ace/Atomic_Op_T.cpp"
#endif /* ACE_TEMPLATES_REQUIRE_SOURCE */

#if defined (ACE_TEMPLATES_REQUIRE_PRAGMA)
#pragma implementation ("Atomic_Op_T.cpp")
#endif /* ACE_TEMPLATES_REQUIRE_PRAGMA */

#include /**/ "ace/post.h"
#endif /*ACE_ATOMIC_OP_T_H*/