version 1.1.2.1, 2006/07/27 23:11:52
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version 1.13.2.4, 2008/06/30 14:28:44
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// | // |
//============================================================================== | //============================================================================== |
// | // |
// Author: Mike Brasher (m.brasher@inovadevelopment.com) |
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// |
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//%///////////////////////////////////////////////////////////////////////////// | //%///////////////////////////////////////////////////////////////////////////// |
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#include <errno.h> |
#include "Threads.h" | #include "Threads.h" |
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#include "IDFactory.h" |
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#include "TSDKey.h" |
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#include "Once.h" |
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#if defined(PEGASUS_OS_TYPE_WINDOWS) |
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# include <sys/timeb.h> |
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#endif |
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#if defined(PEGASUS_OS_ZOS) |
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# include <unistd.h> |
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#endif |
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#if defined(PEGASUS_OS_ZOS) |
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# include <unistd.h> |
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#endif |
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#if defined(PEGASUS_OS_SOLARIS) |
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# include <unistd.h> |
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#endif |
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PEGASUS_NAMESPACE_BEGIN | PEGASUS_NAMESPACE_BEGIN |
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{ | { |
#if defined(PEGASUS_HAVE_NANOSLEEP) | #if defined(PEGASUS_HAVE_NANOSLEEP) |
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struct timespec wait; |
struct timespec wait, remwait; |
wait.tv_sec = msec / 1000; | wait.tv_sec = msec / 1000; |
wait.tv_nsec = (msec % 1000) * 1000000; | wait.tv_nsec = (msec % 1000) * 1000000; |
nanosleep(&wait, NULL); |
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#elif defined(PEGASUS_PLATFORM_OS400_ISERIES_IBM) |
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int loop; |
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int microsecs = msec * 1000; /* convert from milliseconds to microseconds */ |
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if (microsecs < 1000000) |
while ((nanosleep(&wait, &remwait) == -1) && (errno == EINTR)) |
usleep(microsecs); |
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else |
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{ | { |
loop = microsecs / 1000000; |
wait.tv_sec = remwait.tv_sec; |
for(int i = 0; i < loop; i++) |
wait.tv_nsec = remwait.tv_nsec; |
usleep(1000000); |
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if ((loop*1000000) < microsecs) |
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usleep(microsecs - (loop*1000000)); |
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} | } |
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#elif defined(PEGASUS_PLATFORM_WIN32_IX86_MSVC) |
#elif defined(PEGASUS_OS_TYPE_WINDOWS) |
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if (ms == 0) |
if (msec == 0) |
{ | { |
Sleep(0); | Sleep(0); |
return; | return; |
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struct _timeb end, now; | struct _timeb end, now; |
_ftime( &end ); | _ftime( &end ); |
end.time += (ms / 1000); |
end.time += (msec / 1000); |
ms -= (ms / 1000); |
msec -= (msec / 1000); |
end.millitm += ms; |
end.millitm += msec; |
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do | do |
{ | { |
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} | } |
while( end.millitm > now.millitm && end.time >= now.time); | while( end.millitm > now.millitm && end.time >= now.time); |
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#elif defined(PEGASUS_PLATFORM_ZOS_ZSERIES_IBM) |
#else |
int seconds; |
if (msec < 1000) |
int microsecs = msec * 1000; |
{ |
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usleep(msec*1000); |
if (microsecs < 1000000) |
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{ |
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usleep(microsecs/2); |
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pthread_testintr(); |
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usleep(microsecs/2); |
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} | } |
else | else |
{ | { |
// sleep for loop seconds | // sleep for loop seconds |
seconds = microsecs / 1000000; |
::sleep(msec / 1000); |
sleep(seconds); |
// Usleep the remaining micro seconds |
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usleep( (msec*1000) % 1000000 ); |
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} |
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#endif |
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} |
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//============================================================================== |
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// |
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// _get_stack_multiplier() |
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// |
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//============================================================================== |
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static inline int _get_stack_multiplier() |
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{ |
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#if defined(PEGASUS_OS_VMS) |
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static int _multiplier = 0; |
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static MutexType _multiplier_mutex = PEGASUS_MUTEX_INITIALIZER; |
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// Usleep the remaining time |
// |
if ((seconds*1000000) < microsecs) |
// This code uses a, 'hidden' (non-documented), VMS only, logical |
usleep(microsecs - (seconds*1000000)); |
// name (environment variable), PEGASUS_VMS_THREAD_STACK_MULTIPLIER, |
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// to allow in the field adjustment of the thread stack size. |
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// |
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// We only check for the logical name once to not have an |
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// impact on performance. |
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// |
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// Note: This code may have problems in a multithreaded environment |
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// with the setting of doneOnce to true. |
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// |
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// Current code in Cimserver and the clients do some serial thread |
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// creations first so this is not a problem now. |
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// |
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if (_multiplier == 0) |
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{ |
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mutex_lock(&_multiplier_mutex); |
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if (_multiplier == 0) |
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{ |
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const char *env = getenv("PEGASUS_VMS_THREAD_STACK_MULTIPLIER"); |
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if (env) |
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_multiplier = atoi(env); |
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if (_multiplier == 0) |
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_multiplier = 2; |
} | } |
#elif defined(PEGASUS_OS_VMS) |
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sleep(msec / 1000); |
mutex_unlock(&_multiplier_mutex); |
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} |
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return _multiplier; |
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#elif defined(PEGASUS_PLATFORM_HPUX_PARISC_ACC) |
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return 2; |
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#else |
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return 1; |
#endif | #endif |
} | } |
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//============================================================================== |
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// |
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// PEGASUS_HAVE_PTHREADS |
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// |
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//============================================================================== |
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#if defined(PEGASUS_HAVE_PTHREADS) |
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int Threads::create( |
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ThreadType& thread, |
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Type type, |
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void* (*start)(void*), |
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void* arg) |
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{ |
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// Initialize thread attributes: |
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pthread_attr_t attr; |
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pthread_attr_init(&attr); |
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// Detached: |
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if (type == DETACHED) |
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{ |
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#if defined(PEGASUS_PLATFORM_ZOS_ZSERIES_IBM) |
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int ds = 1; |
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pthread_attr_setdetachstate(&attr, &ds); |
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#else |
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pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED); |
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#endif |
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} |
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// Stack size: |
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int multiplier = _get_stack_multiplier(); |
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if (multiplier != 1) |
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{ |
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size_t stacksize; |
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if (pthread_attr_getstacksize(&attr, &stacksize) == 0) |
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{ |
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int rc = pthread_attr_setstacksize(&attr, stacksize * multiplier); |
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PEGASUS_ASSERT(rc == 0); |
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} |
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} |
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// Scheduling policy: |
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#if defined(PEGASUS_OS_SOLARIS) |
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# if (defined SUNOS_5_7) |
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pthread_attr_setschedpolicy(&attr, SCHED_RR); |
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# else |
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pthread_attr_setschedpolicy(&attr, SCHED_OTHER); |
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# endif |
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#endif // defined(PEGASUS_OS_SOLARIS) |
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// Create thread: |
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int rc = pthread_create(&thread.thread, &attr, start, arg); |
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if (rc != 0) |
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{ |
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thread = ThreadType(); |
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return rc; |
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} |
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// Destroy attributes now. |
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pthread_attr_destroy(&attr); |
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// Return: |
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return 0; |
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} |
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ThreadType Threads::self() |
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{ |
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ThreadType tt; |
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tt.thread = pthread_self(); |
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return tt; |
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} |
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#endif /* PEGASUS_HAVE_PTHREADS */ |
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PEGASUS_NAMESPACE_END | PEGASUS_NAMESPACE_END |