| 1 | // -*- c++ -*- | 
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| 2 | // posix-threads.h - Defines for using POSIX threads. | 
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| 3 |  | 
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| 4 | /* Copyright (C) 1998, 1999, 2001  Free Software Foundation | 
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| 5 |  | 
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| 6 | This file is part of libgcj. | 
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| 7 |  | 
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| 8 | This software is copyrighted work licensed under the terms of the | 
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| 9 | Libgcj License.  Please consult the file "LIBGCJ_LICENSE" for | 
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| 10 | details.  */ | 
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| 11 |  | 
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| 12 | #ifndef __JV_POSIX_THREADS__ | 
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| 13 | #define __JV_POSIX_THREADS__ | 
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| 14 |  | 
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| 15 | // NOTE: This file may only reference those pthread functions which | 
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| 16 | // are known not to be overridden by the Boehm GC.  If in doubt, scan | 
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| 17 | // boehm-gc/gc.h.  This is yucky but lets us avoid including gc.h | 
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| 18 | // everywhere (which would be truly yucky). | 
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| 19 |  | 
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| 20 | #include <pthread.h> | 
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| 21 | #include <sched.h> | 
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| 22 |  | 
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| 23 | // | 
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| 24 | // Typedefs. | 
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| 25 | // | 
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| 26 |  | 
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| 27 | typedef struct _Jv_Thread_t | 
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| 28 | { | 
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| 29 | // Flag values are defined in implementation. | 
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| 30 | int flags; | 
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| 31 |  | 
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| 32 | // Actual thread id. | 
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| 33 | pthread_t thread; | 
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| 34 |  | 
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| 35 | // Java Thread object. | 
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| 36 | java::lang::Thread *thread_obj; | 
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| 37 |  | 
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| 38 | // Condition variable and corresponding mutex, used to implement the | 
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| 39 | // interruptable wait/notify mechanism. | 
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| 40 | pthread_cond_t wait_cond; | 
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| 41 | pthread_mutex_t wait_mutex; | 
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| 42 |  | 
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| 43 | // Next thread for Condition Variable wait-list chain. | 
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| 44 | _Jv_Thread_t *next; | 
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| 45 |  | 
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| 46 | } _Jv_Thread_t; | 
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| 47 |  | 
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| 48 | typedef void _Jv_ThreadStartFunc (java::lang::Thread *); | 
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| 49 |  | 
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| 50 |  | 
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| 51 | // Condition Variables used to implement wait/notify/sleep/interrupt. | 
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| 52 | typedef struct | 
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| 53 | { | 
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| 54 | // Linked list of Threads that are waiting to be notified. | 
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| 55 | _Jv_Thread_t *first; | 
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| 56 |  | 
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| 57 | } _Jv_ConditionVariable_t; | 
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| 58 |  | 
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| 59 | typedef struct | 
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| 60 | { | 
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| 61 | // For compatibility, simplicity, and correctness, we do not use the native | 
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| 62 | // pthreads recursive mutex implementation, but simulate them instead. | 
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| 63 |  | 
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| 64 | // Mutex the thread holds the entire time this mutex is held. | 
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| 65 | pthread_mutex_t mutex; | 
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| 66 |  | 
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| 67 | // Thread holding this mutex. | 
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| 68 | pthread_t owner; | 
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| 69 |  | 
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| 70 | // Number of times mutex is held (lock depth).  If 0, the lock is not held. | 
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| 71 | int count; | 
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| 72 | } _Jv_Mutex_t; | 
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| 73 |  | 
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| 74 | // This is a convenience function used only by the pthreads thread | 
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| 75 | // implementation.  This is slow, but that's too bad -- we need to do | 
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| 76 | // the checks for correctness.  It might be nice to be able to compile | 
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| 77 | // this out.  Returns 0 if the lock is held by the current thread, and | 
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| 78 | // 1 otherwise. | 
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| 79 | inline int | 
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| 80 | _Jv_PthreadCheckMonitor (_Jv_Mutex_t *mu) | 
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| 81 | { | 
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| 82 | pthread_t self = pthread_self(); | 
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| 83 | if (mu->owner == self) | 
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| 84 | return 0; | 
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| 85 | else return 1; | 
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| 86 | } | 
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| 87 |  | 
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| 88 | // | 
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| 89 | // Condition variables. | 
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| 90 | // | 
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| 91 |  | 
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| 92 | int _Jv_CondWait (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu, | 
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| 93 | jlong millis, jint nanos); | 
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| 94 |  | 
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| 95 | int _Jv_CondNotify (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu); | 
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| 96 |  | 
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| 97 | int _Jv_CondNotifyAll (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu); | 
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| 98 |  | 
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| 99 | inline void | 
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| 100 | _Jv_CondInit (_Jv_ConditionVariable_t *cv) | 
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| 101 | { | 
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| 102 | cv->first = 0; | 
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| 103 | } | 
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| 104 |  | 
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| 105 | // | 
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| 106 | // Mutexes. | 
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| 107 | // | 
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| 108 |  | 
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| 109 | #ifdef LOCK_DEBUG | 
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| 110 | # include <stdio.h> | 
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| 111 | #endif | 
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| 112 |  | 
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| 113 | inline void | 
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| 114 | _Jv_MutexInit (_Jv_Mutex_t *mu) | 
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| 115 | { | 
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| 116 | # ifdef LOCK_DEBUG /* Assumes Linuxthreads */ | 
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| 117 | pthread_mutexattr_t attr; | 
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| 118 | pthread_mutexattr_init(&attr); | 
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| 119 | pthread_mutexattr_settype(&attr, PTHREAD_MUTEX_ERRORCHECK); | 
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| 120 | pthread_mutex_init (&mu->mutex, &attr); | 
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| 121 | # else | 
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| 122 | pthread_mutex_init (&mu->mutex, 0); | 
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| 123 | # endif | 
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| 124 |  | 
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| 125 | mu->count = 0; | 
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| 126 | mu->owner = 0; | 
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| 127 | } | 
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| 128 |  | 
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| 129 | inline int | 
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| 130 | _Jv_MutexLock (_Jv_Mutex_t *mu) | 
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| 131 | { | 
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| 132 | pthread_t self = pthread_self (); | 
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| 133 | if (mu->owner == self) | 
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| 134 | { | 
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| 135 | mu->count++; | 
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| 136 | } | 
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| 137 | else | 
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| 138 | { | 
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| 139 | #     ifdef LOCK_DEBUG | 
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| 140 | int result = pthread_mutex_lock (&mu->mutex); | 
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| 141 | if (0 != result) | 
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| 142 | { | 
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| 143 | fprintf(stderr, "Pthread_mutex_lock returned %d\n", result); | 
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| 144 | for (;;) {} | 
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| 145 | } | 
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| 146 | #     else | 
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| 147 | pthread_mutex_lock (&mu->mutex); | 
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| 148 | #     endif | 
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| 149 | mu->count = 1; | 
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| 150 | mu->owner = self; | 
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| 151 | } | 
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| 152 | return 0; | 
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| 153 | } | 
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| 154 |  | 
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| 155 | inline int | 
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| 156 | _Jv_MutexUnlock (_Jv_Mutex_t *mu) | 
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| 157 | { | 
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| 158 | if (_Jv_PthreadCheckMonitor (mu)) | 
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| 159 | { | 
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| 160 | #     ifdef LOCK_DEBUG | 
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| 161 | fprintf(stderr, "_Jv_MutexUnlock: Not owner\n"); | 
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| 162 | for (;;) {} | 
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| 163 | #     endif | 
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| 164 | return 1; | 
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| 165 | } | 
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| 166 |  | 
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| 167 | mu->count--; | 
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| 168 |  | 
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| 169 | if (mu->count == 0) | 
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| 170 | { | 
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| 171 | mu->owner = 0; | 
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| 172 | #     ifdef LOCK_DEBUG | 
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| 173 | int result = pthread_mutex_unlock (&mu->mutex); | 
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| 174 | if (0 != result) | 
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| 175 | { | 
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| 176 | fprintf(stderr, "Pthread_mutex_unlock returned %d\n", result); | 
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| 177 | for (;;) {} | 
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| 178 | } | 
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| 179 | #     else | 
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| 180 | pthread_mutex_unlock (&mu->mutex); | 
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| 181 | #     endif | 
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| 182 | } | 
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| 183 | return 0; | 
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| 184 | } | 
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| 185 |  | 
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| 186 | #ifndef LINUX_THREADS | 
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| 187 |  | 
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| 188 | // pthread_mutex_destroy does nothing on Linux and it is a win to avoid | 
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| 189 | // defining this macro. | 
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| 190 |  | 
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| 191 | #define _Jv_HaveMutexDestroy | 
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| 192 |  | 
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| 193 | inline void | 
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| 194 | _Jv_MutexDestroy (_Jv_Mutex_t *mu) | 
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| 195 | { | 
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| 196 | pthread_mutex_destroy (&mu->mutex); | 
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| 197 | } | 
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| 198 |  | 
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| 199 | #endif /* LINUX_THREADS */ | 
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| 200 |  | 
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| 201 | // | 
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| 202 | // Thread creation and manipulation. | 
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| 203 | // | 
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| 204 |  | 
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| 205 | void _Jv_InitThreads (void); | 
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| 206 |  | 
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| 207 | _Jv_Thread_t *_Jv_ThreadInitData (java::lang::Thread *thread); | 
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| 208 | void _Jv_ThreadDestroyData (_Jv_Thread_t *data); | 
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| 209 |  | 
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| 210 | inline java::lang::Thread * | 
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| 211 | _Jv_ThreadCurrent (void) | 
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| 212 | { | 
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| 213 | extern pthread_key_t _Jv_ThreadKey; | 
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| 214 | return (java::lang::Thread *) pthread_getspecific (_Jv_ThreadKey); | 
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| 215 | } | 
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| 216 |  | 
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| 217 | #ifdef JV_HASH_SYNCHRONIZATION | 
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| 218 | // Should be specialized to just load the "current thread" register | 
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| 219 | // on platforms that support it.   Speed is of the essence.  The value | 
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| 220 | // of the descriptor is not, so long as there is a one-to-one correspondence | 
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| 221 | // to threads. | 
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| 222 |  | 
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| 223 |  | 
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| 224 | #ifdef __ia64__ | 
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| 225 |  | 
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| 226 | typedef size_t _Jv_ThreadId_t; | 
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| 227 |  | 
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| 228 | register size_t _Jv_self __asm__("r13"); | 
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| 229 | // For linux_threads this is really a pointer to its thread data | 
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| 230 | // structure.  We treat it as opaque.  That should also work | 
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| 231 | // on other operating systems that follow the ABI standard. | 
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| 232 |  | 
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| 233 | // This should become the prototype for machines that maintain a thread | 
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| 234 | // pointer in a register. | 
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| 235 | inline _Jv_ThreadId_t | 
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| 236 | _Jv_ThreadSelf (void) | 
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| 237 | { | 
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| 238 | return _Jv_self; | 
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| 239 | } | 
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| 240 |  | 
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| 241 | #define JV_SELF_DEFINED | 
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| 242 |  | 
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| 243 | #endif /* __ia64__ */ | 
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| 244 |  | 
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| 245 | #ifdef __alpha__ | 
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| 246 |  | 
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| 247 | #ifdef __FreeBSD__ | 
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| 248 | #include <machine/pal.h> | 
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| 249 | #define PAL_rduniq PAL_rdunique | 
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| 250 | #else | 
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| 251 | #include <asm/pal.h> | 
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| 252 | #endif | 
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| 253 |  | 
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| 254 | typedef unsigned long _Jv_ThreadId_t; | 
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| 255 |  | 
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| 256 | inline _Jv_ThreadId_t | 
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| 257 | _Jv_ThreadSelf (void) | 
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| 258 | { | 
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| 259 | register unsigned long id __asm__("$0"); | 
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| 260 | __asm__ ("call_pal %1" : "=r"(id) : "i"(PAL_rduniq)); | 
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| 261 | return id; | 
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| 262 | } | 
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| 263 |  | 
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| 264 | #define JV_SELF_DEFINED | 
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| 265 |  | 
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| 266 | #endif /* __alpha__ */ | 
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| 267 |  | 
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| 268 | #if defined(SLOW_PTHREAD_SELF) | 
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| 269 |  | 
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| 270 | #include "sysdep/locks.h" | 
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| 271 |  | 
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| 272 | typedef pthread_t _Jv_ThreadId_t; | 
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| 273 |  | 
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| 274 | // E.g. on X86 Linux, pthread_self() is too slow for our purpose. | 
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| 275 | // Instead we maintain a cache based on the current sp value. | 
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| 276 | // This is similar to what's done for thread local allocation in the | 
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| 277 | // GC, only far simpler. | 
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| 278 | // This code should probably go away when Linux/X86 starts using a | 
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| 279 | // segment register to hold the thread id. | 
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| 280 | # define LOG_THREAD_SPACING 12 | 
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| 281 | // If two thread pointer values are closer than | 
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| 282 | // 1 << LOG_THREAD_SPACING, we assume they belong | 
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| 283 | // to the same thread. | 
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| 284 | # define SELF_CACHE_SIZE 1024 | 
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| 285 | # define SC_INDEX(sp) (((unsigned long)(sp) >> 19) & (SELF_CACHE_SIZE-1)) | 
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| 286 | // Mapping from sp value to cache index. | 
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| 287 | // Note that this is not in any real sense a hash | 
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| 288 | // function, since we need to be able to clear | 
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| 289 | // all possibly matching slots on thread startup. | 
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| 290 | // Thus all entries that might correspond to | 
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| 291 | // a given thread are intentionally contiguous. | 
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| 292 | // Works well with anything that allocates at least | 
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| 293 | // 512KB stacks. | 
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| 294 | # define SC_CLEAR_MIN (-16)     // When starting a new thread, we clear | 
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| 295 | # define SC_CLEAR_MAX 0         // all self cache entries between | 
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| 296 | // SC_INDEX(sp)+SC_CLEAR_MIN and | 
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| 297 | // SC_INDEX(sp)+SC_CLEAR_MAX to ensure | 
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| 298 | // we never see stale values.  The | 
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| 299 | // current values assume a downward | 
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| 300 | // growing stack of size <= 7.5 MB. | 
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| 301 | # define BAD_HIGH_SP_VALUE ((size_t)(-1)) | 
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| 302 |  | 
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| 303 | extern volatile | 
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| 304 | struct self_cache_entry { | 
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| 305 | size_t high_sp_bits;  // sp value >> LOG_THREAD_SPACING | 
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| 306 | pthread_t self;       // Corresponding thread | 
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| 307 | } _Jv_self_cache[]; | 
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| 308 |  | 
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| 309 | void _Jv_Self_Cache_Init(); | 
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| 310 |  | 
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| 311 | _Jv_ThreadId_t | 
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| 312 | _Jv_ThreadSelf_out_of_line(volatile self_cache_entry *sce, | 
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| 313 | size_t high_sp_bits); | 
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| 314 |  | 
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| 315 | inline _Jv_ThreadId_t | 
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| 316 | _Jv_ThreadSelf (void) | 
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| 317 | { | 
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| 318 | int dummy; | 
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| 319 | size_t sp = (size_t)(&dummy); | 
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| 320 | unsigned h = SC_INDEX(sp); | 
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| 321 | volatile self_cache_entry *sce = _Jv_self_cache + h; | 
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| 322 | pthread_t candidate_self = sce -> self;  // Read must precede following one. | 
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| 323 | read_barrier(); | 
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| 324 | if (sce -> high_sp_bits == sp >> LOG_THREAD_SPACING) | 
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| 325 | { | 
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| 326 | // The sce -> self value we read must be valid.  An intervening | 
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| 327 | // cache replacement by another thread would have first replaced | 
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| 328 | // high_sp_bits by something else, and it can't possibly change | 
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| 329 | // back without our intervention. | 
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| 330 | return candidate_self; | 
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| 331 | } | 
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| 332 | else | 
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| 333 | return _Jv_ThreadSelf_out_of_line(sce, sp >> LOG_THREAD_SPACING); | 
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| 334 | } | 
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| 335 |  | 
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| 336 | #define JV_SELF_DEFINED | 
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| 337 |  | 
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| 338 | #endif /* SLOW_PTHREAD_SELF */ | 
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| 339 |  | 
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| 340 | #ifndef JV_SELF_DEFINED /* If all else fails, call pthread_self directly */ | 
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| 341 |  | 
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| 342 | typedef pthread_t _Jv_ThreadId_t; | 
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| 343 |  | 
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| 344 | inline _Jv_ThreadId_t | 
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| 345 | _Jv_ThreadSelf (void) | 
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| 346 | { | 
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| 347 | return pthread_self(); | 
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| 348 | } | 
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| 349 |  | 
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| 350 | #endif /* !JV_SELF_DEFINED */ | 
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| 351 |  | 
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| 352 | #endif /* JV_HASH_SYNCHRONIZATION */ | 
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| 353 |  | 
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| 354 | inline _Jv_Thread_t * | 
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| 355 | _Jv_ThreadCurrentData (void) | 
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| 356 | { | 
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| 357 | extern pthread_key_t _Jv_ThreadDataKey; | 
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| 358 | return (_Jv_Thread_t *) pthread_getspecific (_Jv_ThreadDataKey); | 
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| 359 | } | 
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| 360 |  | 
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| 361 | inline void | 
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| 362 | _Jv_ThreadYield (void) | 
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| 363 | { | 
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| 364 | #ifdef HAVE_SCHED_YIELD | 
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| 365 | sched_yield (); | 
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| 366 | #endif /* HAVE_SCHED_YIELD */ | 
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| 367 | } | 
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| 368 |  | 
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| 369 | void _Jv_ThreadRegister (_Jv_Thread_t *data); | 
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| 370 | void _Jv_ThreadUnRegister (); | 
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| 371 |  | 
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| 372 | void _Jv_ThreadSetPriority (_Jv_Thread_t *data, jint prio); | 
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| 373 |  | 
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| 374 | void _Jv_ThreadStart (java::lang::Thread *thread, _Jv_Thread_t *data, | 
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| 375 | _Jv_ThreadStartFunc *meth); | 
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| 376 |  | 
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| 377 | void _Jv_ThreadWait (void); | 
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| 378 |  | 
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| 379 | void _Jv_ThreadInterrupt (_Jv_Thread_t *data); | 
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| 380 |  | 
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| 381 | #endif /* __JV_POSIX_THREADS__ */ | 
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