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concurrence.h: Fix __gthread_cond_t initialisation function macro name.
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1 // Support for concurrent programing -*- C++ -*-
2
3 // Copyright (C) 2003, 2004, 2005, 2006, 2007
4 // Free Software Foundation, Inc.
5 //
6 // This file is part of the GNU ISO C++ Library. This library is free
7 // software; you can redistribute it and/or modify it under the
8 // terms of the GNU General Public License as published by the
9 // Free Software Foundation; either version 2, or (at your option)
10 // any later version.
11
12 // This library is distributed in the hope that it will be useful,
13 // but WITHOUT ANY WARRANTY; without even the implied warranty of
14 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 // GNU General Public License for more details.
16
17 // You should have received a copy of the GNU General Public License along
18 // with this library; see the file COPYING. If not, write to the Free
19 // Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301,
20 // USA.
21
22 // As a special exception, you may use this file as part of a free software
23 // library without restriction. Specifically, if other files instantiate
24 // templates or use macros or inline functions from this file, or you compile
25 // this file and link it with other files to produce an executable, this
26 // file does not by itself cause the resulting executable to be covered by
27 // the GNU General Public License. This exception does not however
28 // invalidate any other reasons why the executable file might be covered by
29 // the GNU General Public License.
30
31 /** @file concurrence.h
32 * This is an internal header file, included by other library headers.
33 * You should not attempt to use it directly.
34 */
35
36 #ifndef _CONCURRENCE_H
37 #define _CONCURRENCE_H 1
38
39 #include <exception>
40 #include <bits/gthr.h>
41 #include <bits/functexcept.h>
42
43 _GLIBCXX_BEGIN_NAMESPACE(__gnu_cxx)
44
45 // Available locking policies:
46 // _S_single single-threaded code that doesn't need to be locked.
47 // _S_mutex multi-threaded code that requires additional support
48 // from gthr.h or abstraction layers in concurrence.h.
49 // _S_atomic multi-threaded code using atomic operations.
50 enum _Lock_policy { _S_single, _S_mutex, _S_atomic };
51
52 // Compile time constant that indicates prefered locking policy in
53 // the current configuration.
54 static const _Lock_policy __default_lock_policy =
55 #ifdef __GTHREADS
56 #if (defined(__GCC_HAVE_SYNC_COMPARE_AND_SWAP_2) \
57 && defined(__GCC_HAVE_SYNC_COMPARE_AND_SWAP_4))
58 _S_atomic;
59 #else
60 _S_mutex;
61 #endif
62 #else
63 _S_single;
64 #endif
65
66 // NB: As this is used in libsupc++, need to only depend on
67 // exception. No stdexception classes, no use of std::string.
68 class __concurrence_lock_error : public std::exception
69 {
70 public:
71 virtual char const*
72 what() const throw()
73 { return "__gnu_cxx::__concurrence_lock_error"; }
74 };
75
76 class __concurrence_unlock_error : public std::exception
77 {
78 public:
79 virtual char const*
80 what() const throw()
81 { return "__gnu_cxx::__concurrence_unlock_error"; }
82 };
83
84 class __concurrence_broadcast_error : public std::exception
85 {
86 public:
87 virtual char const*
88 what() const throw()
89 { return "__gnu_cxx::__concurrence_broadcast_error"; }
90 };
91
92 class __concurrence_wait_error : public std::exception
93 {
94 public:
95 virtual char const*
96 what() const throw()
97 { return "__gnu_cxx::__concurrence_wait_error"; }
98 };
99
100 // Substitute for concurrence_error object in the case of -fno-exceptions.
101 inline void
102 __throw_concurrence_lock_error()
103 {
104 #if __EXCEPTIONS
105 throw __concurrence_lock_error();
106 #else
107 __builtin_abort();
108 #endif
109 }
110
111 inline void
112 __throw_concurrence_unlock_error()
113 {
114 #if __EXCEPTIONS
115 throw __concurrence_unlock_error();
116 #else
117 __builtin_abort();
118 #endif
119 }
120
121 #ifdef __GTHREAD_HAS_COND
122 inline void
123 __throw_concurrence_broadcast_error()
124 {
125 #if __EXCEPTIONS
126 throw __concurrence_broadcast_error();
127 #else
128 __builtin_abort();
129 #endif
130 }
131
132 inline void
133 __throw_concurrence_wait_error()
134 {
135 #if __EXCEPTIONS
136 throw __concurrence_wait_error();
137 #else
138 __builtin_abort();
139 #endif
140 }
141 #endif
142
143 class __mutex
144 {
145 private:
146 __gthread_mutex_t _M_mutex;
147
148 __mutex(const __mutex&);
149 __mutex& operator=(const __mutex&);
150
151 public:
152 __mutex()
153 {
154 #if __GTHREADS
155 if (__gthread_active_p())
156 {
157 #if defined __GTHREAD_MUTEX_INIT
158 __gthread_mutex_t __tmp = __GTHREAD_MUTEX_INIT;
159 _M_mutex = __tmp;
160 #else
161 __GTHREAD_MUTEX_INIT_FUNCTION(&_M_mutex);
162 #endif
163 }
164 #endif
165 }
166
167 void lock()
168 {
169 #if __GTHREADS
170 if (__gthread_active_p())
171 {
172 if (__gthread_mutex_lock(&_M_mutex) != 0)
173 __throw_concurrence_lock_error();
174 }
175 #endif
176 }
177
178 void unlock()
179 {
180 #if __GTHREADS
181 if (__gthread_active_p())
182 {
183 if (__gthread_mutex_unlock(&_M_mutex) != 0)
184 __throw_concurrence_unlock_error();
185 }
186 #endif
187 }
188
189 __gthread_mutex_t* gthread_mutex(void)
190 { return &_M_mutex; }
191 };
192
193 class __recursive_mutex
194 {
195 private:
196 __gthread_recursive_mutex_t _M_mutex;
197
198 __recursive_mutex(const __recursive_mutex&);
199 __recursive_mutex& operator=(const __recursive_mutex&);
200
201 public:
202 __recursive_mutex()
203 {
204 #if __GTHREADS
205 if (__gthread_active_p())
206 {
207 #if defined __GTHREAD_RECURSIVE_MUTEX_INIT
208 __gthread_recursive_mutex_t __tmp = __GTHREAD_RECURSIVE_MUTEX_INIT;
209 _M_mutex = __tmp;
210 #else
211 __GTHREAD_RECURSIVE_MUTEX_INIT_FUNCTION(&_M_mutex);
212 #endif
213 }
214 #endif
215 }
216
217 void lock()
218 {
219 #if __GTHREADS
220 if (__gthread_active_p())
221 {
222 if (__gthread_recursive_mutex_lock(&_M_mutex) != 0)
223 __throw_concurrence_lock_error();
224 }
225 #endif
226 }
227
228 void unlock()
229 {
230 #if __GTHREADS
231 if (__gthread_active_p())
232 {
233 if (__gthread_recursive_mutex_unlock(&_M_mutex) != 0)
234 __throw_concurrence_unlock_error();
235 }
236 #endif
237 }
238
239 __gthread_recursive_mutex_t* gthread_recursive_mutex(void)
240 { return &_M_mutex; }
241 };
242
243 /// Scoped lock idiom.
244 // Acquire the mutex here with a constructor call, then release with
245 // the destructor call in accordance with RAII style.
246 class __scoped_lock
247 {
248 public:
249 typedef __mutex __mutex_type;
250
251 private:
252 __mutex_type& _M_device;
253
254 __scoped_lock(const __scoped_lock&);
255 __scoped_lock& operator=(const __scoped_lock&);
256
257 public:
258 explicit __scoped_lock(__mutex_type& __name) : _M_device(__name)
259 { _M_device.lock(); }
260
261 ~__scoped_lock() throw()
262 { _M_device.unlock(); }
263 };
264
265 #ifdef __GTHREAD_HAS_COND
266 class __cond
267 {
268 private:
269 __gthread_cond_t _M_cond;
270
271 __cond(const __cond&);
272 __cond& operator=(const __cond&);
273
274 public:
275 __cond()
276 {
277 #if __GTHREADS
278 if (__gthread_active_p())
279 {
280 #if defined __GTHREAD_COND_INIT
281 __gthread_cond_t __tmp = __GTHREAD_COND_INIT;
282 _M_cond = __tmp;
283 #else
284 __GTHREAD_COND_INIT_FUNCTION(&_M_cond);
285 #endif
286 }
287 #endif
288 }
289
290 void broadcast()
291 {
292 #if __GTHREADS
293 if (__gthread_active_p())
294 {
295 if (__gthread_cond_broadcast(&_M_cond) != 0)
296 __throw_concurrence_broadcast_error();
297 }
298 #endif
299 }
300
301 void wait(__mutex *mutex)
302 {
303 #if __GTHREADS
304 {
305 if (__gthread_cond_wait(&_M_cond, mutex->gthread_mutex()) != 0)
306 __throw_concurrence_wait_error();
307 }
308 #endif
309 }
310
311 void wait_recursive(__recursive_mutex *mutex)
312 {
313 #if __GTHREADS
314 {
315 if (__gthread_cond_wait_recursive(&_M_cond,
316 mutex->gthread_recursive_mutex())
317 != 0)
318 __throw_concurrence_wait_error();
319 }
320 #endif
321 }
322 };
323 #endif
324
325 _GLIBCXX_END_NAMESPACE
326
327 #endif
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