1 // Copyright (C) 2002, 2004, 2006, 2008, 2009, 2010, 2011
2 // Free Software Foundation, Inc.
4 // This file is part of GCC.
6 // GCC is free software; you can redistribute it and/or modify
7 // it under the terms of the GNU General Public License as published by
8 // the Free Software Foundation; either version 3, or (at your option)
11 // GCC is distributed in the hope that it will be useful,
12 // but WITHOUT ANY WARRANTY; without even the implied warranty of
13 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 // GNU General Public License for more details.
16 // Under Section 7 of GPL version 3, you are granted additional
17 // permissions described in the GCC Runtime Library Exception, version
18 // 3.1, as published by the Free Software Foundation.
20 // You should have received a copy of the GNU General Public License and
21 // a copy of the GCC Runtime Library Exception along with this program;
22 // see the files COPYING3 and COPYING.RUNTIME respectively. If not, see
23 // <http://www.gnu.org/licenses/>.
25 // Written by Mark Mitchell, CodeSourcery LLC, <mark@codesourcery.com>
26 // Thread support written by Jason Merrill, Red Hat Inc. <jason@redhat.com>
28 #include <bits/c++config.h>
32 #include <ext/atomicity.h>
33 #include <ext/concurrence.h>
34 #if defined(__GTHREADS) && defined(__GTHREAD_HAS_COND) \
35 && defined(_GLIBCXX_ATOMIC_BUILTINS_4) && defined(_GLIBCXX_HAVE_LINUX_FUTEX)
39 # define _GLIBCXX_USE_FUTEX
40 # define _GLIBCXX_FUTEX_WAIT 0
41 # define _GLIBCXX_FUTEX_WAKE 1
44 // The IA64/generic ABI uses the first byte of the guard variable.
45 // The ARM EABI uses the least significant bit.
47 // Thread-safe static local initialization support.
49 # ifndef _GLIBCXX_USE_FUTEX
52 // A single mutex controlling all static initializations.
53 static __gnu_cxx::__recursive_mutex
* static_mutex
;
55 typedef char fake_recursive_mutex
[sizeof(__gnu_cxx::__recursive_mutex
)]
56 __attribute__ ((aligned(__alignof__(__gnu_cxx::__recursive_mutex
))));
57 fake_recursive_mutex fake_mutex
;
60 { static_mutex
= new (&fake_mutex
) __gnu_cxx::__recursive_mutex(); }
62 __gnu_cxx::__recursive_mutex
&
65 static __gthread_once_t once
= __GTHREAD_ONCE_INIT
;
66 __gthread_once(&once
, init
);
70 // Simple wrapper for exception safety.
74 mutex_wrapper() : unlock(true)
75 { get_static_mutex().lock(); }
80 static_mutex
->unlock();
86 # if defined(__GTHREAD_HAS_COND) && !defined(_GLIBCXX_USE_FUTEX)
89 // A single condition variable controlling all static initializations.
90 static __gnu_cxx::__cond
* static_cond
;
92 // using a fake type to avoid initializing a static class.
93 typedef char fake_cond_t
[sizeof(__gnu_cxx::__cond
)]
94 __attribute__ ((aligned(__alignof__(__gnu_cxx::__cond
))));
95 fake_cond_t fake_cond
;
97 static void init_static_cond()
98 { static_cond
= new (&fake_cond
) __gnu_cxx::__cond(); }
103 static __gthread_once_t once
= __GTHREAD_ONCE_INIT
;
104 __gthread_once(&once
, init_static_cond
);
110 # ifndef _GLIBCXX_GUARD_TEST_AND_ACQUIRE
112 __test_and_acquire (__cxxabiv1::__guard
*g
)
114 bool b
= _GLIBCXX_GUARD_TEST (g
);
115 _GLIBCXX_READ_MEM_BARRIER
;
118 # define _GLIBCXX_GUARD_TEST_AND_ACQUIRE(G) __test_and_acquire (G)
121 # ifndef _GLIBCXX_GUARD_SET_AND_RELEASE
123 __set_and_release (__cxxabiv1::__guard
*g
)
125 _GLIBCXX_WRITE_MEM_BARRIER
;
126 _GLIBCXX_GUARD_SET (g
);
128 # define _GLIBCXX_GUARD_SET_AND_RELEASE(G) __set_and_release (G)
131 #else /* !__GTHREADS */
133 # undef _GLIBCXX_GUARD_TEST_AND_ACQUIRE
134 # undef _GLIBCXX_GUARD_SET_AND_RELEASE
135 # define _GLIBCXX_GUARD_SET_AND_RELEASE(G) _GLIBCXX_GUARD_SET (G)
137 #endif /* __GTHREADS */
140 // Here are C++ run-time routines for guarded initialization of static
141 // variables. There are 4 scenarios under which these routines are called:
143 // 1. Threads not supported (__GTHREADS not defined)
144 // 2. Threads are supported but not enabled at run-time.
145 // 3. Threads enabled at run-time but __gthreads_* are not fully POSIX.
146 // 4. Threads enabled at run-time and __gthreads_* support all POSIX threads
147 // primitives we need here.
149 // The old code supported scenarios 1-3 but was broken since it used a global
150 // mutex for all threads and had the mutex locked during the whole duration of
151 // initialization of a guarded static variable. The following created a
152 // dead-lock with the old code.
154 // Thread 1 acquires the global mutex.
155 // Thread 1 starts initializing static variable.
156 // Thread 1 creates thread 2 during initialization.
157 // Thread 2 attempts to acquire mutex to initialize another variable.
158 // Thread 2 blocks since thread 1 is locking the mutex.
159 // Thread 1 waits for result from thread 2 and also blocks. A deadlock.
161 // The new code here can handle this situation and thus is more robust. However,
162 // we need to use the POSIX thread condition variable, which is not supported
163 // in all platforms, notably older versions of Microsoft Windows. The gthr*.h
164 // headers define a symbol __GTHREAD_HAS_COND for platforms that support POSIX
165 // like condition variables. For platforms that do not support condition
166 // variables, we need to fall back to the old code.
168 // If _GLIBCXX_USE_FUTEX, no global mutex or condition variable is used,
169 // only atomic operations are used together with futex syscall.
170 // Valid values of the first integer in guard are:
171 // 0 No thread encountered the guarded init
172 // yet or it has been aborted.
173 // _GLIBCXX_GUARD_BIT The guarded static var has been successfully
175 // _GLIBCXX_GUARD_PENDING_BIT The guarded static var is being initialized
176 // and no other thread is waiting for its
178 // (_GLIBCXX_GUARD_PENDING_BIT The guarded static var is being initialized
179 // | _GLIBCXX_GUARD_WAITING_BIT) and some other threads are waiting until
180 // it is initialized.
184 #ifdef _GLIBCXX_USE_FUTEX
187 static inline int __guard_test_bit (const int __byte
, const int __val
)
189 union { int __i
; char __c
[sizeof (int)]; } __u
= { 0 };
190 __u
.__c
[__byte
] = __val
;
197 init_in_progress_flag(__guard
* g
)
198 { return ((char *)g
)[1]; }
201 set_init_in_progress_flag(__guard
* g
, int v
)
202 { ((char *)g
)[1] = v
; }
205 throw_recursive_init_exception()
208 throw __gnu_cxx::recursive_init_error();
210 // Use __builtin_trap so we don't require abort().
215 // acquire() is a helper function used to acquire guard if thread support is
216 // not compiled in or is compiled in but not enabled at run-time.
220 // Quit if the object is already initialized.
221 if (_GLIBCXX_GUARD_TEST(g
))
224 if (init_in_progress_flag(g
))
225 throw_recursive_init_exception();
227 set_init_in_progress_flag(g
, 1);
232 int __cxa_guard_acquire (__guard
*g
)
235 // If the target can reorder loads, we need to insert a read memory
236 // barrier so that accesses to the guarded variable happen after the
238 if (_GLIBCXX_GUARD_TEST_AND_ACQUIRE (g
))
241 # ifdef _GLIBCXX_USE_FUTEX
242 // If __sync_* and futex syscall are supported, don't use any global
244 if (__gthread_active_p ())
246 int *gi
= (int *) (void *) g
;
247 const int guard_bit
= _GLIBCXX_GUARD_BIT
;
248 const int pending_bit
= _GLIBCXX_GUARD_PENDING_BIT
;
249 const int waiting_bit
= _GLIBCXX_GUARD_WAITING_BIT
;
253 int old
= __sync_val_compare_and_swap (gi
, 0, pending_bit
);
255 return 1; // This thread should do the initialization.
257 if (old
== guard_bit
)
258 return 0; // Already initialized.
260 if (old
== pending_bit
)
262 int newv
= old
| waiting_bit
;
263 if (__sync_val_compare_and_swap (gi
, old
, newv
) != old
)
269 syscall (SYS_futex
, gi
, _GLIBCXX_FUTEX_WAIT
, old
, 0);
273 if (__gthread_active_p ())
277 while (1) // When this loop is executing, mutex is locked.
279 # ifdef __GTHREAD_HAS_COND
280 // The static is already initialized.
281 if (_GLIBCXX_GUARD_TEST(g
))
282 return 0; // The mutex will be unlocked via wrapper
284 if (init_in_progress_flag(g
))
286 // The guarded static is currently being initialized by
287 // another thread, so we release mutex and wait for the
288 // condition variable. We will lock the mutex again after
290 get_static_cond().wait_recursive(&get_static_mutex());
294 set_init_in_progress_flag(g
, 1);
295 return 1; // The mutex will be unlocked via wrapper.
298 // This provides compatibility with older systems not supporting
299 // POSIX like condition variables.
303 return 1; // The mutex still locked.
305 return 0; // The mutex will be unlocked via wrapper.
316 void __cxa_guard_abort (__guard
*g
) throw ()
318 #ifdef _GLIBCXX_USE_FUTEX
319 // If __sync_* and futex syscall are supported, don't use any global
321 if (__gthread_active_p ())
323 int *gi
= (int *) (void *) g
;
324 const int waiting_bit
= _GLIBCXX_GUARD_WAITING_BIT
;
325 int old
= __sync_lock_test_and_set (gi
, 0);
327 if ((old
& waiting_bit
) != 0)
328 syscall (SYS_futex
, gi
, _GLIBCXX_FUTEX_WAKE
, INT_MAX
);
331 #elif defined(__GTHREAD_HAS_COND)
332 if (__gthread_active_p())
336 set_init_in_progress_flag(g
, 0);
338 // If we abort, we still need to wake up all other threads waiting for
339 // the condition variable.
340 get_static_cond().broadcast();
345 set_init_in_progress_flag(g
, 0);
346 #if defined(__GTHREADS) && !defined(__GTHREAD_HAS_COND)
347 // This provides compatibility with older systems not supporting POSIX like
348 // condition variables.
349 if (__gthread_active_p ())
350 static_mutex
->unlock();
355 void __cxa_guard_release (__guard
*g
) throw ()
357 #ifdef _GLIBCXX_USE_FUTEX
358 // If __sync_* and futex syscall are supported, don't use any global
360 if (__gthread_active_p ())
362 int *gi
= (int *) (void *) g
;
363 const int guard_bit
= _GLIBCXX_GUARD_BIT
;
364 const int waiting_bit
= _GLIBCXX_GUARD_WAITING_BIT
;
365 int old
= __sync_lock_test_and_set (gi
, guard_bit
);
367 if ((old
& waiting_bit
) != 0)
368 syscall (SYS_futex
, gi
, _GLIBCXX_FUTEX_WAKE
, INT_MAX
);
371 #elif defined(__GTHREAD_HAS_COND)
372 if (__gthread_active_p())
376 set_init_in_progress_flag(g
, 0);
377 _GLIBCXX_GUARD_SET_AND_RELEASE(g
);
379 get_static_cond().broadcast();
384 set_init_in_progress_flag(g
, 0);
385 _GLIBCXX_GUARD_SET_AND_RELEASE (g
);
387 #if defined(__GTHREADS) && !defined(__GTHREAD_HAS_COND)
388 // This provides compatibility with older systems not supporting POSIX like
389 // condition variables.
390 if (__gthread_active_p())
391 static_mutex
->unlock();