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397 lines
11 KiB
C
397 lines
11 KiB
C
/*
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* pte_main.c
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*
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* Description:
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* This translation unit instantiates data associated with the implementation
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* as a whole.
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*
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* --------------------------------------------------------------------------
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*
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* Pthreads-embedded (PTE) - POSIX Threads Library for embedded systems
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* Copyright(C) 2008 Jason Schmidlapp
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*
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* Contact Email: jschmidlapp@users.sourceforge.net
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*
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*
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* Based upon Pthreads-win32 - POSIX Threads Library for Win32
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* Copyright(C) 1998 John E. Bossom
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* Copyright(C) 1999,2005 Pthreads-win32 contributors
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*
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* Contact Email: rpj@callisto.canberra.edu.au
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*
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* The original list of contributors to the Pthreads-win32 project
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* is contained in the file CONTRIBUTORS.ptw32 included with the
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* source code distribution. The list can also be seen at the
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* following World Wide Web location:
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* http://sources.redhat.com/pthreads-win32/contributors.html
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library in the file COPYING.LIB;
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* if not, write to the Free Software Foundation, Inc.,
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* 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include "pte_osal.h"
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#include "pthread.h"
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#include "implement.h"
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int pte_processInitialized = PTE_FALSE;
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pte_thread_t * pte_threadReuseTop = PTE_THREAD_REUSE_EMPTY;
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pte_thread_t * pte_threadReuseBottom = PTE_THREAD_REUSE_EMPTY;
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pthread_key_t pte_selfThreadKey = NULL;
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pthread_key_t pte_cleanupKey = NULL;
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pthread_cond_t pte_cond_list_head = NULL;
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pthread_cond_t pte_cond_list_tail = NULL;
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int pte_concurrency = 0;
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/* What features have been auto-detaected */
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int pte_features = 0;
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unsigned char pte_smp_system = PTE_TRUE; /* Safer if assumed true initially. */
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/*
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* Global lock for managing pthread_t struct reuse.
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*/
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pte_osMutexHandle pte_thread_reuse_lock;
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/*
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* Global lock for testing internal state of statically declared mutexes.
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*/
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pte_osMutexHandle pte_mutex_test_init_lock;
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/*
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* Global lock for testing internal state of PTHREAD_COND_INITIALIZER
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* created condition variables.
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*/
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pte_osMutexHandle pte_cond_test_init_lock;
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/*
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* Global lock for testing internal state of PTHREAD_RWLOCK_INITIALIZER
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* created read/write locks.
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*/
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pte_osMutexHandle pte_rwlock_test_init_lock;
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/*
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* Global lock for testing internal state of PTHREAD_SPINLOCK_INITIALIZER
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* created spin locks.
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*/
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pte_osMutexHandle pte_spinlock_test_init_lock;
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/*
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* Global lock for condition variable linked list. The list exists
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* to wake up CVs when a WM_TIMECHANGE message arrives. See
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* w32_TimeChangeHandler.c.
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*/
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pte_osMutexHandle pte_cond_list_lock;
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int pthread_create (pthread_t * tid,
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const pthread_attr_t * attr,
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void *(*start) (void *), void *arg)
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/*
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* ------------------------------------------------------
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* DOCPUBLIC
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* This function creates a thread running the start function,
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* passing it the parameter value, 'arg'. The 'attr'
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* argument specifies optional creation attributes.
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* The identity of the new thread is returned
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* via 'tid', which should not be NULL.
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*
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* PARAMETERS
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* tid
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* pointer to an instance of pthread_t
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*
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* attr
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* optional pointer to an instance of pthread_attr_t
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*
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* start
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* pointer to the starting routine for the new thread
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*
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* arg
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* optional parameter passed to 'start'
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*
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*
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* DESCRIPTION
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* This function creates a thread running the start function,
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* passing it the parameter value, 'arg'. The 'attr'
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* argument specifies optional creation attributes.
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* The identity of the new thread is returned
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* via 'tid', which should not be the NULL pointer.
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*
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* RESULTS
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* 0 successfully created thread,
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* EINVAL attr invalid,
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* EAGAIN insufficient resources.
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*
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* ------------------------------------------------------
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*/
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{
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pthread_t thread;
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pte_thread_t * tp;
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int result = EAGAIN;
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int run = PTE_TRUE;
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ThreadParms *parms = NULL;
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long stackSize;
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int priority = 0;
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pthread_t self;
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pte_osResult osResult;
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register pthread_attr_t a = NULL;
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/*
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* Before doing anything, check that tid can be stored through
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* without invoking a memory protection error (segfault).
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* Make sure that the assignment below can't be optimised out by the compiler.
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* This is assured by conditionally assigning *tid again at the end.
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*/
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if (attr != NULL)
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a = *attr;
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if ((thread = pte_new ()) == NULL)
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goto FAIL0;
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tp = (pte_thread_t *) thread;
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priority = tp->sched_priority;
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if ((parms = (ThreadParms *) malloc (sizeof (*parms))) == NULL)
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goto FAIL0;
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parms->tid = thread;
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parms->start = start;
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parms->arg = arg;
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if (a != NULL)
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{
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stackSize = a->stacksize;
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tp->detachState = a->detachstate;
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priority = a->param.sched_priority;
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if ( (priority > pte_osThreadGetMaxPriority()) ||
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(priority < pte_osThreadGetMinPriority()) )
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{
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result = EINVAL;
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goto FAIL0;
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}
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/* Everything else */
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/*
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* Thread priority must be set to a valid system level
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* without altering the value set by pthread_attr_setschedparam().
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*/
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if (PTHREAD_INHERIT_SCHED == a->inheritsched)
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{
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/*
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* If the thread that called pthread_create() is an OS thread
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* then the inherited priority could be the result of a temporary
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* system adjustment. This is not the case for POSIX threads.
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*/
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self = pthread_self ();
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priority = ((pte_thread_t *) self)->sched_priority;
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}
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}
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else
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{
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/*
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* Default stackSize
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*/
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stackSize = PTHREAD_STACK_MIN;
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}
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tp->state = run ? PThreadStateInitial : PThreadStateSuspended;
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tp->keys = NULL;
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/*
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* Threads must be started in suspended mode and resumed if necessary
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* after _beginthreadex returns us the handle. Otherwise we set up a
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* race condition between the creating and the created threads.
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* Note that we also retain a local copy of the handle for use
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* by us in case thread.p->threadH gets NULLed later but before we've
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* finished with it here.
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*/
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result = pthread_mutex_lock (&tp->threadLock);
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if (result == 0)
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{
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/*
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* Must record the thread's sched_priority as given,
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* not as finally adjusted.
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*/
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tp->sched_priority = priority;
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(void) pthread_mutex_unlock (&tp->threadLock);
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}
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osResult = pte_osThreadCreate(pte_threadStart,
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stackSize,
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priority,
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parms,
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&(tp->threadId));
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if (osResult == PTE_OS_OK)
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{
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pte_osThreadStart(tp->threadId);
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result = 0;
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}
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else
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{
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tp->threadId = 0;
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result = EAGAIN;
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goto FAIL0;
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}
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/*
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* Fall Through Intentionally
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*/
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/*
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* ------------
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* Failure Code
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* ------------
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*/
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FAIL0:
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if (result != 0)
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{
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pte_threadDestroy (thread);
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tp = NULL;
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if (parms != NULL)
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free (parms);
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}
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else
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{
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if (tid != NULL)
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*tid = thread;
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}
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return (result);
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}
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/*
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* The functions pte_pop_cleanup and pte_push_cleanup
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* are implemented here for applications written in C with no
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* C++ destructor support.
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*/
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pte_cleanup_t *pte_pop_cleanup (int execute)
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/*
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* ------------------------------------------------------
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* DOCPUBLIC
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* This function pops the most recently pushed cleanup
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* handler. If execute is nonzero, then the cleanup handler
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* is executed if non-null.
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*
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* PARAMETERS
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* execute
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* if nonzero, execute the cleanup handler
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*
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*
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* DESCRIPTION
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* This function pops the most recently pushed cleanup
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* handler. If execute is nonzero, then the cleanup handler
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* is executed if non-null.
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* NOTE: specify 'execute' as nonzero to avoid duplication
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* of common cleanup code.
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*
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* RESULTS
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* N/A
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*
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* ------------------------------------------------------
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*/
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{
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pte_cleanup_t *cleanup;
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cleanup = (pte_cleanup_t *) pthread_getspecific (pte_cleanupKey);
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if (cleanup != NULL)
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{
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if (execute && (cleanup->routine != NULL))
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{
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(*cleanup->routine) (cleanup->arg);
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}
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pthread_setspecific (pte_cleanupKey, (void *) cleanup->prev);
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}
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return (cleanup);
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} /* pte_pop_cleanup */
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void
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pte_push_cleanup (pte_cleanup_t * cleanup,
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pte_cleanup_callback_t routine, void *arg)
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/*
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* ------------------------------------------------------
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* DOCPUBLIC
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* This function pushes a new cleanup handler onto the thread's stack
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* of cleanup handlers. Each cleanup handler pushed onto the stack is
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* popped and invoked with the argument 'arg' when
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* a) the thread exits by calling 'pthread_exit',
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* b) when the thread acts on a cancellation request,
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* c) or when the thread calls pthread_cleanup_pop with a nonzero
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* 'execute' argument
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*
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* PARAMETERS
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* cleanup
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* a pointer to an instance of pthread_cleanup_t,
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*
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* routine
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* pointer to a cleanup handler,
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*
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* arg
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* parameter to be passed to the cleanup handler
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*
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*
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* DESCRIPTION
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* This function pushes a new cleanup handler onto the thread's stack
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* of cleanup handlers. Each cleanup handler pushed onto the stack is
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* popped and invoked with the argument 'arg' when
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* a) the thread exits by calling 'pthread_exit',
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* b) when the thread acts on a cancellation request,
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* c) or when the thrad calls pthread_cleanup_pop with a nonzero
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* 'execute' argument
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* NOTE: pthread_push_cleanup, pte_pop_cleanup must be paired
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* in the same lexical scope.
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*
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* RESULTS
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* pthread_cleanup_t *
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* pointer to the previous cleanup
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*
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* ------------------------------------------------------
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*/
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{
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cleanup->routine = routine;
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cleanup->arg = arg;
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cleanup->prev = (pte_cleanup_t *) pthread_getspecific (pte_cleanupKey);
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pthread_setspecific (pte_cleanupKey, (void *) cleanup);
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}
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