Merged trunk at revision 161680 into branch.
[official-gcc.git] / libstdc++-v3 / testsuite / 23_containers / list / pthread1.cc
blob00dc817b15262e10722a1d7b69e251df29c64108
1 // 2002-01-23 Loren J. Rittle <rittle@labs.mot.com> <ljrittle@acm.org>
2 //
3 // Copyright (C) 2002, 2003, 2004, 2005, 2006, 2007, 2009, 2010
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 3, or (at your option)
10 // any later version.
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.
17 // You should have received a copy of the GNU General Public License along
18 // with this library; see the file COPYING3. If not see
19 // <http://www.gnu.org/licenses/>.
21 // { dg-do run { target *-*-freebsd* *-*-netbsd* *-*-linux* *-*-solaris* *-*-cygwin *-*-darwin* alpha*-*-osf* mips-sgi-irix6* } }
22 // { dg-options "-pthread" { target *-*-freebsd* *-*-netbsd* *-*-linux* alpha*-*-osf* mips-sgi-irix6* } }
23 // { dg-options "-pthreads" { target *-*-solaris* } }
25 // This multi-threading C++/STL/POSIX code adheres to rules outlined here:
26 // http://www.sgi.com/tech/stl/thread_safety.html
28 // It is believed to exercise the allocation code in a manner that
29 // should reveal memory leaks (and, under rare cases, race conditions,
30 // if the STL threading support is fubar'd).
32 #include <list>
33 #include <cstdlib>
34 #include <pthread.h>
36 const int thread_cycles = 10;
37 const int thread_pairs = 10;
38 const unsigned max_size = 100;
39 const int iters = 10000;
41 class task_queue
43 typedef std::list<int> list_type;
45 public:
46 task_queue ()
48 pthread_mutex_init (&fooLock, 0);
49 pthread_cond_init (&fooCond1, 0);
50 pthread_cond_init (&fooCond2, 0);
52 ~task_queue ()
54 pthread_mutex_destroy (&fooLock);
55 pthread_cond_destroy (&fooCond1);
56 pthread_cond_destroy (&fooCond2);
59 list_type foo;
60 pthread_mutex_t fooLock;
61 pthread_cond_t fooCond1;
62 pthread_cond_t fooCond2;
65 void*
66 produce(void* t)
68 task_queue& tq = *(static_cast<task_queue*> (t));
69 int num = 0;
70 while (num < iters)
72 pthread_mutex_lock (&tq.fooLock);
73 while (tq.foo.size () >= max_size)
74 pthread_cond_wait (&tq.fooCond1, &tq.fooLock);
75 tq.foo.push_back (num++);
76 pthread_cond_signal (&tq.fooCond2);
77 pthread_mutex_unlock (&tq.fooLock);
79 return 0;
82 void*
83 consume(void* t)
85 task_queue& tq = *(static_cast<task_queue*> (t));
86 int num = 0;
87 while (num < iters)
89 pthread_mutex_lock (&tq.fooLock);
90 while (tq.foo.size () == 0)
91 pthread_cond_wait (&tq.fooCond2, &tq.fooLock);
92 if (tq.foo.front () != num++)
93 abort ();
94 tq.foo.pop_front ();
95 pthread_cond_signal (&tq.fooCond1);
96 pthread_mutex_unlock (&tq.fooLock);
98 return 0;
102 main()
104 pthread_t prod[thread_pairs];
105 pthread_t cons[thread_pairs];
107 task_queue* tq[thread_pairs];
109 #if defined(__sun) && defined(__svr4__) && _XOPEN_VERSION >= 500
110 pthread_setconcurrency (thread_pairs * 2);
111 #endif
113 for (int j = 0; j < thread_cycles; j++)
115 for (int i = 0; i < thread_pairs; i++)
117 tq[i] = new task_queue;
118 pthread_create (&prod[i], 0, produce, static_cast<void*> (tq[i]));
119 pthread_create (&cons[i], 0, consume, static_cast<void*> (tq[i]));
122 for (int i = 0; i < thread_pairs; i++)
124 pthread_join (prod[i], 0);
125 pthread_join (cons[i], 0);
126 delete tq[i];
130 return 0;