#include <pthread.h>
#include <errno.h>
#include <time.h>
+#include <sys/time.h> // needed for at least __QNX__
#ifdef HAVE_SCHED_H
#include <sched.h>
#endif
// we use wxFFile under Linux in GetCPUCount()
#ifdef __LINUX__
#include "wx/ffile.h"
- // For setpriority.
- #include <sys/time.h>
- #include <sys/resource.h>
+ #include <sys/resource.h> // for setpriority()
#endif
#ifdef __VMS
static const wxThread::ExitCode EXITCODE_CANCELLED = (wxThread::ExitCode)-1;
// trace mask for wxThread operations
-#define TRACE_THREADS _T("thread")
+#define TRACE_THREADS wxT("thread")
// you can get additional debugging messages for the semaphore operations
-#define TRACE_SEMA _T("semaphore")
+#define TRACE_SEMA wxT("semaphore")
// ----------------------------------------------------------------------------
// private functions
break;
default:
- wxFAIL_MSG( _T("unknown mutex type") );
+ wxFAIL_MSG( wxT("unknown mutex type") );
// fall through
case wxMUTEX_DEFAULT:
case EDEADLK:
// only error checking mutexes return this value and so it's an
// unexpected situation -- hence use assert, not wxLogDebug
- wxFAIL_MSG( _T("mutex deadlock prevented") );
+ wxFAIL_MSG( wxT("mutex deadlock prevented") );
return wxMUTEX_DEAD_LOCK;
case EINVAL:
- wxLogDebug(_T("pthread_mutex_[timed]lock(): mutex not initialized"));
+ wxLogDebug(wxT("pthread_mutex_[timed]lock(): mutex not initialized"));
break;
case ETIMEDOUT:
return wxMUTEX_NO_ERROR;
default:
- wxLogApiError(_T("pthread_mutex_[timed]lock()"), err);
+ wxLogApiError(wxT("pthread_mutex_[timed]lock()"), err);
}
return wxMUTEX_MISC_ERROR;
return wxMUTEX_BUSY;
case EINVAL:
- wxLogDebug(_T("pthread_mutex_trylock(): mutex not initialized."));
+ wxLogDebug(wxT("pthread_mutex_trylock(): mutex not initialized."));
break;
case 0:
return wxMUTEX_NO_ERROR;
default:
- wxLogApiError(_T("pthread_mutex_trylock()"), err);
+ wxLogApiError(wxT("pthread_mutex_trylock()"), err);
}
return wxMUTEX_MISC_ERROR;
return wxMUTEX_UNLOCKED;
case EINVAL:
- wxLogDebug(_T("pthread_mutex_unlock(): mutex not initialized."));
+ wxLogDebug(wxT("pthread_mutex_unlock(): mutex not initialized."));
break;
case 0:
return wxMUTEX_NO_ERROR;
default:
- wxLogApiError(_T("pthread_mutex_unlock()"), err);
+ wxLogApiError(wxT("pthread_mutex_unlock()"), err);
}
return wxMUTEX_MISC_ERROR;
if ( !m_isOk )
{
- wxLogApiError(_T("pthread_cond_init()"), err);
+ wxLogApiError(wxT("pthread_cond_init()"), err);
}
}
int err = pthread_cond_destroy(&m_cond);
if ( err != 0 )
{
- wxLogApiError(_T("pthread_cond_destroy()"), err);
+ wxLogApiError(wxT("pthread_cond_destroy()"), err);
}
}
}
int err = pthread_cond_wait(&m_cond, GetPMutex());
if ( err != 0 )
{
- wxLogApiError(_T("pthread_cond_wait()"), err);
+ wxLogApiError(wxT("pthread_cond_wait()"), err);
return wxCOND_MISC_ERROR;
}
return wxCOND_NO_ERROR;
default:
- wxLogApiError(_T("pthread_cond_timedwait()"), err);
+ wxLogApiError(wxT("pthread_cond_timedwait()"), err);
}
return wxCOND_MISC_ERROR;
int err = pthread_cond_signal(&m_cond);
if ( err != 0 )
{
- wxLogApiError(_T("pthread_cond_signal()"), err);
+ wxLogApiError(wxT("pthread_cond_signal()"), err);
return wxCOND_MISC_ERROR;
}
int err = pthread_cond_broadcast(&m_cond);
if ( err != 0 )
{
- wxLogApiError(_T("pthread_cond_broadcast()"), err);
+ wxLogApiError(wxT("pthread_cond_broadcast()"), err);
return wxCOND_MISC_ERROR;
}
if ( (initialcount < 0 || maxcount < 0) ||
((maxcount > 0) && (initialcount > maxcount)) )
{
- wxFAIL_MSG( _T("wxSemaphore: invalid initial or maximal count") );
+ wxFAIL_MSG( wxT("wxSemaphore: invalid initial or maximal count") );
m_isOk = false;
}
while ( m_count == 0 )
{
wxLogTrace(TRACE_SEMA,
- _T("Thread %p waiting for semaphore to become signalled"),
+ wxT("Thread %p waiting for semaphore to become signalled"),
wxThread::GetCurrentId());
if ( m_cond.Wait() != wxCOND_NO_ERROR )
return wxSEMA_MISC_ERROR;
wxLogTrace(TRACE_SEMA,
- _T("Thread %p finished waiting for semaphore, count = %lu"),
+ wxT("Thread %p finished waiting for semaphore, count = %lu"),
wxThread::GetCurrentId(), (unsigned long)m_count);
}
m_count++;
wxLogTrace(TRACE_SEMA,
- _T("Thread %p about to signal semaphore, count = %lu"),
+ wxT("Thread %p about to signal semaphore, count = %lu"),
wxThread::GetCurrentId(), (unsigned long)m_count);
return m_cond.Signal() == wxCOND_NO_ERROR ? wxSEMA_NO_ERROR
void SetState(wxThreadState state)
{
#if wxUSE_LOG_TRACE
- static const wxChar *stateNames[] =
+ static const wxChar *const stateNames[] =
{
- _T("NEW"),
- _T("RUNNING"),
- _T("PAUSED"),
- _T("EXITED"),
+ wxT("NEW"),
+ wxT("RUNNING"),
+ wxT("PAUSED"),
+ wxT("EXITED"),
};
- wxLogTrace(TRACE_THREADS, _T("Thread %p: %s => %s."),
+ wxLogTrace(TRACE_THREADS, wxT("Thread %p: %s => %s."),
GetId(), stateNames[m_state], stateNames[state]);
#endif // wxUSE_LOG_TRACE
{
wxThreadInternal *pthread = thread->m_internal;
- wxLogTrace(TRACE_THREADS, _T("Thread %p started."), THR_ID(pthread));
+ wxLogTrace(TRACE_THREADS, wxT("Thread %p started."), THR_ID(pthread));
// associate the thread pointer with the newly created thread so that
// wxThread::This() will work
{
// call the main entry
wxLogTrace(TRACE_THREADS,
- _T("Thread %p about to enter its Entry()."),
+ wxT("Thread %p about to enter its Entry()."),
THR_ID(pthread));
wxTRY
pthread->m_exitcode = thread->Entry();
wxLogTrace(TRACE_THREADS,
- _T("Thread %p Entry() returned %lu."),
+ wxT("Thread %p Entry() returned %lu."),
THR_ID(pthread), wxPtrToUInt(pthread->m_exitcode));
}
wxCATCH_ALL( wxTheApp->OnUnhandledException(); )
void wxThreadInternal::Wait()
{
- wxCHECK_RET( !m_isDetached, _T("can't wait for a detached thread") );
+ wxCHECK_RET( !m_isDetached, wxT("can't wait for a detached thread") );
// if the thread we're waiting for is waiting for the GUI mutex, we will
// deadlock so make sure we release it temporarily
wxMutexGuiLeave();
wxLogTrace(TRACE_THREADS,
- _T("Starting to wait for thread %p to exit."),
+ wxT("Starting to wait for thread %p to exit."),
THR_ID(this));
// to avoid memory leaks we should call pthread_join(), but it must only be
wxT("thread must first be paused with wxThread::Pause().") );
wxLogTrace(TRACE_THREADS,
- _T("Thread %p goes to sleep."), THR_ID(this));
+ wxT("Thread %p goes to sleep."), THR_ID(this));
// wait until the semaphore is Post()ed from Resume()
m_semSuspend.Wait();
if ( IsReallyPaused() )
{
wxLogTrace(TRACE_THREADS,
- _T("Waking up thread %p"), THR_ID(this));
+ wxT("Waking up thread %p"), THR_ID(this));
// wake up Pause()
m_semSuspend.Post();
else
{
wxLogTrace(TRACE_THREADS,
- _T("Thread %p is not yet really paused"), THR_ID(this));
+ wxT("Thread %p is not yet really paused"), THR_ID(this));
}
SetState(STATE_RUNNING);
// it has 0 size but still can be read from)
wxLogNull nolog;
- wxFFile file(_T("/proc/cpuinfo"));
+ wxFFile file(wxT("/proc/cpuinfo"));
if ( file.IsOpened() )
{
// slurp the whole file
if ( file.ReadAll(&s) )
{
// (ab)use Replace() to find the number of "processor: num" strings
- size_t count = s.Replace(_T("processor\t:"), _T(""));
+ size_t count = s.Replace(wxT("processor\t:"), wxT(""));
if ( count > 0 )
{
return count;
}
- wxLogDebug(_T("failed to parse /proc/cpuinfo"));
+ wxLogDebug(wxT("failed to parse /proc/cpuinfo"));
}
else
{
- wxLogDebug(_T("failed to read /proc/cpuinfo"));
+ wxLogDebug(wxT("failed to read /proc/cpuinfo"));
}
}
#endif // different ways to get number of CPUs
int rc = thr_setconcurrency(level);
if ( rc != 0 )
{
- wxLogSysError(rc, _T("thr_setconcurrency() failed"));
+ wxLogSysError(rc, wxT("thr_setconcurrency() failed"));
}
return rc == 0;
struct sched_param sp;
if ( pthread_attr_getschedparam(&attr, &sp) != 0 )
{
- wxFAIL_MSG(_T("pthread_attr_getschedparam() failed"));
+ wxFAIL_MSG(wxT("pthread_attr_getschedparam() failed"));
}
sp.sched_priority = min_prio + (prio*(max_prio - min_prio))/100;
if ( pthread_attr_setschedparam(&attr, &sp) != 0 )
{
- wxFAIL_MSG(_T("pthread_attr_setschedparam(priority) failed"));
+ wxFAIL_MSG(wxT("pthread_attr_setschedparam(priority) failed"));
}
}
#endif // HAVE_THREAD_PRIORITY_FUNCTIONS
// this will make the threads created by this process really concurrent
if ( pthread_attr_setscope(&attr, PTHREAD_SCOPE_SYSTEM) != 0 )
{
- wxFAIL_MSG(_T("pthread_attr_setscope(PTHREAD_SCOPE_SYSTEM) failed"));
+ wxFAIL_MSG(wxT("pthread_attr_setscope(PTHREAD_SCOPE_SYSTEM) failed"));
}
#endif // HAVE_PTHREAD_ATTR_SETSCOPE
{
if ( pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED) != 0 )
{
- wxFAIL_MSG(_T("pthread_attr_setdetachstate(DETACHED) failed"));
+ wxFAIL_MSG(wxT("pthread_attr_setdetachstate(DETACHED) failed"));
}
// never try to join detached threads
if ( pthread_attr_destroy(&attr) != 0 )
{
- wxFAIL_MSG(_T("pthread_attr_destroy() failed"));
+ wxFAIL_MSG(wxT("pthread_attr_destroy() failed"));
}
if ( rc != 0 )
wxThreadError wxThread::Pause()
{
wxCHECK_MSG( This() != this, wxTHREAD_MISC_ERROR,
- _T("a thread can't pause itself") );
+ wxT("a thread can't pause itself") );
wxCriticalSectionLocker lock(m_critsect);
wxThreadError wxThread::Resume()
{
wxCHECK_MSG( This() != this, wxTHREAD_MISC_ERROR,
- _T("a thread can't resume itself") );
+ wxT("a thread can't resume itself") );
wxCriticalSectionLocker lock(m_critsect);
switch ( state )
{
case STATE_PAUSED:
- wxLogTrace(TRACE_THREADS, _T("Thread %p suspended, resuming."),
+ wxLogTrace(TRACE_THREADS, wxT("Thread %p suspended, resuming."),
GetId());
m_internal->Resume();
return wxTHREAD_NO_ERROR;
case STATE_EXITED:
- wxLogTrace(TRACE_THREADS, _T("Thread %p exited, won't resume."),
+ wxLogTrace(TRACE_THREADS, wxT("Thread %p exited, won't resume."),
GetId());
return wxTHREAD_NO_ERROR;
default:
- wxLogDebug(_T("Attempt to resume a thread which is not paused."));
+ wxLogDebug(wxT("Attempt to resume a thread which is not paused."));
return wxTHREAD_MISC_ERROR;
}
wxThread::ExitCode wxThread::Wait()
{
wxCHECK_MSG( This() != this, (ExitCode)-1,
- _T("a thread can't wait for itself") );
+ wxT("a thread can't wait for itself") );
wxCHECK_MSG( !m_isDetached, (ExitCode)-1,
- _T("can't wait for detached thread") );
+ wxT("can't wait for detached thread") );
m_internal->Wait();
wxThreadError wxThread::Delete(ExitCode *rc)
{
wxCHECK_MSG( This() != this, wxTHREAD_MISC_ERROR,
- _T("a thread can't delete itself") );
+ wxT("a thread can't delete itself") );
bool isDetached = m_isDetached;
}
//else: can't wait for detached threads
}
+
+ if (state == STATE_NEW)
+ return wxTHREAD_MISC_ERROR;
+ // for coherency with the MSW implementation, signal the user that
+ // Delete() was called on a thread which didn't start to run yet.
return wxTHREAD_NO_ERROR;
}
wxThreadError wxThread::Kill()
{
wxCHECK_MSG( This() != this, wxTHREAD_MISC_ERROR,
- _T("a thread can't kill itself") );
+ wxT("a thread can't kill itself") );
switch ( m_internal->GetState() )
{
void wxThread::Exit(ExitCode status)
{
wxASSERT_MSG( This() == this,
- _T("wxThread::Exit() can only be called in the context of the same thread") );
+ wxT("wxThread::Exit() can only be called in the context of the same thread") );
if ( m_isDetached )
{
// terminate the thread (pthread_exit() never returns)
pthread_exit(status);
- wxFAIL_MSG(_T("pthread_exit() failed"));
+ wxFAIL_MSG(wxT("pthread_exit() failed"));
}
// also test whether we were paused
bool wxThread::TestDestroy()
{
wxASSERT_MSG( This() == this,
- _T("wxThread::TestDestroy() can only be called in the context of the same thread") );
+ wxT("wxThread::TestDestroy() can only be called in the context of the same thread") );
m_critsect.Enter();
if ( m_internal->GetState() != STATE_EXITED &&
m_internal->GetState() != STATE_NEW )
{
- wxLogDebug(_T("The thread %ld is being destroyed although it is still running! The application may crash."),
+ wxLogDebug(wxT("The thread %ld is being destroyed although it is still running! The application may crash."),
(long)GetId());
}
if ( nThreadsBeingDeleted > 0 )
{
wxLogTrace(TRACE_THREADS,
- _T("Waiting for %lu threads to disappear"),
+ wxT("Waiting for %lu threads to disappear"),
(unsigned long)nThreadsBeingDeleted);
// have to wait until all of them disappear
gs_nThreadsBeingDeleted++;
- wxLogTrace(TRACE_THREADS, _T("%lu thread%s waiting to be deleted"),
+ wxLogTrace(TRACE_THREADS, wxT("%lu thread%s waiting to be deleted"),
(unsigned long)gs_nThreadsBeingDeleted,
- gs_nThreadsBeingDeleted == 1 ? _T("") : _T("s"));
+ gs_nThreadsBeingDeleted == 1 ? wxT("") : wxT("s"));
}
static void DeleteThread(wxThread *This)
{
- // gs_mutexDeleteThread should be unlocked before signalling the condition
- // or wxThreadModule::OnExit() would deadlock
- wxMutexLocker locker( *gs_mutexDeleteThread );
-
- wxLogTrace(TRACE_THREADS, _T("Thread %p auto deletes."), This->GetId());
+ wxLogTrace(TRACE_THREADS, wxT("Thread %p auto deletes."), This->GetId());
delete This;
+ // only lock gs_mutexDeleteThread after deleting the thread to avoid
+ // calling out into user code with it locked as this may result in
+ // deadlocks if the thread dtor deletes another thread (see #11501)
+ wxMutexLocker locker( *gs_mutexDeleteThread );
+
wxCHECK_RET( gs_nThreadsBeingDeleted > 0,
- _T("no threads scheduled for deletion, yet we delete one?") );
+ wxT("no threads scheduled for deletion, yet we delete one?") );
- wxLogTrace(TRACE_THREADS, _T("%lu threads remain scheduled for deletion."),
+ wxLogTrace(TRACE_THREADS, wxT("%lu threads remain scheduled for deletion."),
(unsigned long)gs_nThreadsBeingDeleted - 1);
if ( !--gs_nThreadsBeingDeleted )