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1 /* GNU Objective C Runtime Thread Implementation
2 Copyright (C) 1996, 1997, 2002 Free Software Foundation, Inc.
3 Contributed by Galen C. Hunt (gchunt@cs.rochester.edu)
4 Modified for Mach threads by Bill Bumgarner <bbum@friday.com>
5 Condition functions added by Mircea Oancea <mircea@first.elcom.pub.ro>
6
7 This file is part of GCC.
8
9 GCC is free software; you can redistribute it and/or modify it under the
10 terms of the GNU General Public License as published by the Free Software
11 Foundation; either version 2, or (at your option) any later version.
12
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
15 FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
16 details.
17
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING. If not, write to
20 the Free Software Foundation, 51 Franklin Street, Fifth Floor,
21 Boston, MA 02110-1301, USA. */
22
23 /* As a special exception, if you link this library with files compiled with
24 GCC to produce an executable, this does not cause the resulting executable
25 to be covered by the GNU General Public License. This exception does not
26 however invalidate any other reasons why the executable file might be
27 covered by the GNU General Public License. */
28
29 #include <mach/mach.h>
30 #include <mach/cthreads.h>
31 #include "objc/thr.h"
32 #include "objc/runtime.h"
33
34 /*
35 Obtain the maximum thread priority that can set for t. Under the
36 mach threading model, it is possible for the developer to adjust the
37 maximum priority downward only-- cannot be raised without superuser
38 privileges. Once lowered, it cannot be raised.
39 */
40 static int
41 __mach_get_max_thread_priority (cthread_t t, int *base)
42 {
43 thread_t threadP;
44 kern_return_t error;
45 struct thread_sched_info info;
46 unsigned int info_count=THREAD_SCHED_INFO_COUNT;
47
48 if (t == NULL)
49 return -1;
50
51 threadP = cthread_thread (t); /* get thread underlying */
52
53 error = thread_info (threadP, THREAD_SCHED_INFO,
54 (thread_info_t) &info, &info_count);
55
56 if (error != KERN_SUCCESS)
57 return -1;
58
59 if (base != NULL)
60 *base = info.base_priority;
61
62 return info.max_priority;
63 }
64
65 /* Backend initialization functions */
66
67 /* Initialize the threads subsystem. */
68 int
69 __objc_init_thread_system (void)
70 {
71 return 0;
72 }
73
74 /* Close the threads subsystem. */
75 int
76 __objc_close_thread_system (void)
77 {
78 return 0;
79 }
80
81 /* Backend thread functions */
82
83 /* Create a new thread of execution. */
84 objc_thread_t
85 __objc_thread_detach (void (*func) (void *arg), void *arg)
86 {
87 objc_thread_t thread_id;
88 cthread_t new_thread_handle;
89
90 /* create thread */
91 new_thread_handle = cthread_fork ((cthread_fn_t) func, arg);
92
93 if (new_thread_handle)
94 {
95 /* this is not terribly portable */
96 thread_id = *(objc_thread_t *) &new_thread_handle;
97 cthread_detach (new_thread_handle);
98 }
99 else
100 thread_id = NULL;
101
102 return thread_id;
103 }
104
105 /* Set the current thread's priority. */
106 int
107 __objc_thread_set_priority (int priority)
108 {
109 objc_thread_t *t = objc_thread_id ();
110 cthread_t cT = (cthread_t) t;
111 int maxPriority = __mach_get_max_thread_priority (cT, NULL);
112 int sys_priority = 0;
113
114 if (maxPriority == -1)
115 return -1;
116
117 switch (priority)
118 {
119 case OBJC_THREAD_INTERACTIVE_PRIORITY:
120 sys_priority = maxPriority;
121 break;
122 case OBJC_THREAD_BACKGROUND_PRIORITY:
123 sys_priority = (maxPriority * 2) / 3;
124 break;
125 case OBJC_THREAD_LOW_PRIORITY:
126 sys_priority = maxPriority / 3;
127 break;
128 default:
129 return -1;
130 }
131
132 if (sys_priority == 0)
133 return -1;
134
135 /* Change the priority */
136 if (cthread_priority (cT, sys_priority, 0) == KERN_SUCCESS)
137 return 0;
138 else
139 return -1;
140 }
141
142 /* Return the current thread's priority. */
143 int
144 __objc_thread_get_priority (void)
145 {
146 objc_thread_t *t = objc_thread_id ();
147 cthread_t cT = (cthread_t) t; /* see objc_thread_id () */
148 int basePriority;
149 int maxPriority;
150 int sys_priority = 0;
151
152 int interactiveT, backgroundT, lowT; /* thresholds */
153
154 maxPriority = __mach_get_max_thread_priority (cT, &basePriority);
155
156 if (maxPriority == -1)
157 return -1;
158
159 if (basePriority > ( (maxPriority * 2) / 3))
160 return OBJC_THREAD_INTERACTIVE_PRIORITY;
161
162 if (basePriority > ( maxPriority / 3))
163 return OBJC_THREAD_BACKGROUND_PRIORITY;
164
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 }
226 else
227 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));
246 return 0;
247 }
248
249 /* Try to grab a lock on a mutex. */
250 int
251 __objc_mutex_trylock (objc_mutex_t mutex)
252 {
253 if (mutex_try_lock ((mutex_t) (mutex->backend)) == 0)
254 return -1;
255 else
256 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
313 /* End of File */