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[/] [scarts/] [trunk/] [toolchain/] [scarts-gcc/] [gcc-4.1.1/] [libobjc/] [thr-mach.c] - Blame information for rev 14

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1 14 jlechner
/* GNU Objective C Runtime Thread Implementation
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   Copyright (C) 1996, 1997, 2002 Free Software Foundation, Inc.
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   Contributed by Galen C. Hunt (gchunt@cs.rochester.edu)
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   Modified for Mach threads by Bill Bumgarner <bbum@friday.com>
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   Condition functions added by Mircea Oancea <mircea@first.elcom.pub.ro>
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7
This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify it under the
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terms of the GNU General Public License as published by the Free Software
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Foundation; either version 2, or (at your option) any later version.
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13
GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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FOR A PARTICULAR PURPOSE.  See the GNU General Public License for more
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details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING.  If not, write to
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the Free Software Foundation, 51 Franklin Street, Fifth Floor,
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Boston, MA 02110-1301, USA.  */
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/* As a special exception, if you link this library with files compiled with
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   GCC to produce an executable, this does not cause the resulting executable
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   to be covered by the GNU General Public License. This exception does not
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   however invalidate any other reasons why the executable file might be
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   covered by the GNU General Public License.  */
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#include <mach/mach.h>
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#include <mach/cthreads.h>
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#include "objc/thr.h"
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#include "objc/runtime.h"
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/*
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  Obtain the maximum thread priority that can set for t.  Under the
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  mach threading model, it is possible for the developer to adjust the
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  maximum priority downward only-- cannot be raised without superuser
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  privileges.  Once lowered, it cannot be raised.
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  */
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static int
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__mach_get_max_thread_priority (cthread_t t, int *base)
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{
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  thread_t threadP;
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  kern_return_t error;
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  struct thread_sched_info info;
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  unsigned int info_count=THREAD_SCHED_INFO_COUNT;
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  if (t == NULL)
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    return -1;
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  threadP  = cthread_thread (t);        /* get thread underlying */
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  error = thread_info (threadP, THREAD_SCHED_INFO,
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                       (thread_info_t) &info, &info_count);
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56
  if (error != KERN_SUCCESS)
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    return -1;
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  if (base != NULL)
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    *base = info.base_priority;
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  return info.max_priority;
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}
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/* Backend initialization functions */
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67
/* Initialize the threads subsystem. */
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int
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__objc_init_thread_system (void)
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{
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  return 0;
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}
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/* Close the threads subsystem. */
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int
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__objc_close_thread_system (void)
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{
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  return 0;
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}
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/* Backend thread functions */
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/* Create a new thread of execution. */
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objc_thread_t
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__objc_thread_detach (void (*func) (void *arg), void *arg)
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{
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  objc_thread_t thread_id;
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  cthread_t new_thread_handle;
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  /* create thread */
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  new_thread_handle = cthread_fork ((cthread_fn_t) func, arg);
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93
  if (new_thread_handle)
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    {
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      /* this is not terribly portable */
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      thread_id = *(objc_thread_t *) &new_thread_handle;
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      cthread_detach (new_thread_handle);
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    }
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  else
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    thread_id = NULL;
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  return thread_id;
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}
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/* Set the current thread's priority. */
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int
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__objc_thread_set_priority (int priority)
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{
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  objc_thread_t *t = objc_thread_id ();
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  cthread_t cT = (cthread_t) t;
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  int maxPriority = __mach_get_max_thread_priority (cT, NULL);
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  int sys_priority = 0;
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  if (maxPriority == -1)
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    return -1;
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  switch (priority)
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    {
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    case OBJC_THREAD_INTERACTIVE_PRIORITY:
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      sys_priority = maxPriority;
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      break;
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    case OBJC_THREAD_BACKGROUND_PRIORITY:
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      sys_priority = (maxPriority * 2) / 3;
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      break;
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    case OBJC_THREAD_LOW_PRIORITY:
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      sys_priority = maxPriority / 3;
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      break;
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    default:
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      return -1;
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    }
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  if (sys_priority == 0)
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    return -1;
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  /* Change the priority */
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  if (cthread_priority (cT, sys_priority, 0) == KERN_SUCCESS)
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    return 0;
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  else
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    return -1;
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}
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/* Return the current thread's priority. */
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int
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__objc_thread_get_priority (void)
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{
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  objc_thread_t *t = objc_thread_id ();
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  cthread_t cT = (cthread_t) t; /* see objc_thread_id () */
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  int basePriority;
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  int maxPriority;
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  int sys_priority = 0;
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  int interactiveT, backgroundT, lowT; /* thresholds */
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  maxPriority = __mach_get_max_thread_priority (cT, &basePriority);
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156
  if (maxPriority == -1)
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    return -1;
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159
  if (basePriority > ( (maxPriority * 2) / 3))
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    return OBJC_THREAD_INTERACTIVE_PRIORITY;
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162
  if (basePriority > ( maxPriority / 3))
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    return OBJC_THREAD_BACKGROUND_PRIORITY;
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165
  return OBJC_THREAD_LOW_PRIORITY;
166
}
167
 
168
/* Yield our process time to another thread. */
169
void
170
__objc_thread_yield (void)
171
{
172
  cthread_yield ();
173
}
174
 
175
/* Terminate the current thread. */
176
int
177
__objc_thread_exit (void)
178
{
179
  /* exit the thread */
180
  cthread_exit (&__objc_thread_exit_status);
181
 
182
  /* Failed if we reached here */
183
  return -1;
184
}
185
 
186
/* Returns an integer value which uniquely describes a thread. */
187
objc_thread_t
188
__objc_thread_id (void)
189
{
190
  cthread_t self = cthread_self ();
191
 
192
  return *(objc_thread_t *) &self;
193
}
194
 
195
/* Sets the thread's local storage pointer. */
196
int
197
__objc_thread_set_data (void *value)
198
{
199
  cthread_set_data (cthread_self (), (any_t) value);
200
  return 0;
201
}
202
 
203
/* Returns the thread's local storage pointer. */
204
void *
205
__objc_thread_get_data (void)
206
{
207
  return (void *) cthread_data (cthread_self ());
208
}
209
 
210
/* Backend mutex functions */
211
 
212
/* Allocate a mutex. */
213
int
214
__objc_mutex_allocate (objc_mutex_t mutex)
215
{
216
  int err = 0;
217
  mutex->backend = objc_malloc (sizeof (struct mutex));
218
 
219
  err = mutex_init ((mutex_t) (mutex->backend));
220
 
221
  if (err != 0)
222
    {
223
      objc_free (mutex->backend);
224
      return -1;
225
    }
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  else
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    return 0;
228
}
229
 
230
/* Deallocate a mutex. */
231
int
232
__objc_mutex_deallocate (objc_mutex_t mutex)
233
{
234
  mutex_clear ((mutex_t) (mutex->backend));
235
 
236
  objc_free (mutex->backend);
237
  mutex->backend = NULL;
238
  return 0;
239
}
240
 
241
/* Grab a lock on a mutex. */
242
int
243
__objc_mutex_lock (objc_mutex_t mutex)
244
{
245
  mutex_lock ((mutex_t) (mutex->backend));
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  return 0;
247
}
248
 
249
/* Try to grab a lock on a mutex. */
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int
251
__objc_mutex_trylock (objc_mutex_t mutex)
252
{
253
  if (mutex_try_lock ((mutex_t) (mutex->backend)) == 0)
254
    return -1;
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  else
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    return 0;
257
}
258
 
259
/* Unlock the mutex */
260
int
261
__objc_mutex_unlock (objc_mutex_t mutex)
262
{
263
  mutex_unlock ((mutex_t) (mutex->backend));
264
  return 0;
265
}
266
 
267
/* Backend condition mutex functions */
268
 
269
/* Allocate a condition. */
270
int
271
__objc_condition_allocate (objc_condition_t condition)
272
{
273
  condition->backend = objc_malloc (sizeof (struct condition));
274
  condition_init ((condition_t) (condition->backend));
275
  return 0;
276
}
277
 
278
/* Deallocate a condition. */
279
int
280
__objc_condition_deallocate (objc_condition_t condition)
281
{
282
  condition_clear ((condition_t) (condition->backend));
283
  objc_free (condition->backend);
284
  condition->backend = NULL;
285
  return 0;
286
}
287
 
288
/* Wait on the condition */
289
int
290
__objc_condition_wait (objc_condition_t condition, objc_mutex_t mutex)
291
{
292
  condition_wait ((condition_t) (condition->backend),
293
                  (mutex_t) (mutex->backend));
294
  return 0;
295
}
296
 
297
/* Wake up all threads waiting on this condition. */
298
int
299
__objc_condition_broadcast (objc_condition_t condition)
300
{
301
  condition_broadcast ((condition_t) (condition->backend));
302
  return 0;
303
}
304
 
305
/* Wake up one thread waiting on this condition. */
306
int
307
__objc_condition_signal (objc_condition_t condition)
308
{
309
  condition_signal ((condition_t) (condition->backend));
310
  return 0;
311
}
312
 
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/* End of File */

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