source: vendor/gcc/3.3.4/libjava/win32-threads.cc

Last change on this file was 1391, checked in by bird, 21 years ago

GCC v3.3.3 sources.

  • Property cvs2svn:cvs-rev set to 1.1.1.2
  • Property svn:eol-style set to native
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File size: 7.4 KB
Line 
1// win32-threads.cc - interface between libjava and Win32 threads.
2
3/* Copyright (C) 1998, 1999, 2000, 2001, 2002, 2003 Free Software
4 Foundation, Inc.
5
6 This file is part of libgcj.
7
8This software is copyrighted work licensed under the terms of the
9Libgcj License. Please consult the file "LIBGCJ_LICENSE" for
10details. */
11
12#include <config.h>
13
14// If we're using the Boehm GC, then we need to override some of the
15// thread primitives. This is fairly gross.
16#ifdef HAVE_BOEHM_GC
17extern "C"
18{
19#include <gc.h>
20// <windows.h> #define's STRICT, which conflicts with Modifier.h
21#undef STRICT
22};
23#endif /* HAVE_BOEHM_GC */
24
25#include <gcj/cni.h>
26#include <jvm.h>
27#include <java/lang/Thread.h>
28#include <java/lang/System.h>
29
30#include <errno.h>
31
32#ifndef ETIMEDOUT
33#define ETIMEDOUT 116
34#endif
35
36// This is used to implement thread startup.
37struct starter
38{
39 _Jv_ThreadStartFunc *method;
40 _Jv_Thread_t *data;
41};
42
43// Controls access to the variable below
44static HANDLE daemon_mutex;
45static HANDLE daemon_cond;
46// Number of non-daemon threads - _Jv_ThreadWait returns when this is 0
47static int non_daemon_count;
48
49// TLS key get Java object representing the thread
50DWORD _Jv_ThreadKey;
51// TLS key to get _Jv_Thread_t* representing the thread
52DWORD _Jv_ThreadDataKey;
53
54//
55// These are the flags that can appear in _Jv_Thread_t.
56//
57
58// Thread started.
59#define FLAG_START 0x01
60// Thread is daemon.
61#define FLAG_DAEMON 0x02
62
63//
64// Condition variables.
65//
66
67// we do lazy creation of Events since CreateEvent() is insanely
68// expensive, and because the rest of libgcj will call _Jv_CondInit
69// when only a mutex is needed.
70
71inline void
72ensure_condvar_initialized(_Jv_ConditionVariable_t *cv)
73{
74 if (cv->ev[0] == 0)
75 {
76 cv->ev[0] = CreateEvent (NULL, 0, 0, NULL);
77 if (cv->ev[0] == 0) JvFail("CreateEvent() failed");
78
79 cv->ev[1] = CreateEvent (NULL, 1, 0, NULL);
80 if (cv->ev[1] == 0) JvFail("CreateEvent() failed");
81 }
82}
83
84// Reimplementation of the general algorithm described at
85// http://www.cs.wustl.edu/~schmidt/win32-cv-1.html (isomorphic to
86// 3.2, not a cut-and-paste).
87
88int
89_Jv_CondWait(_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu, jlong millis, jint nanos)
90{
91 if (mu->owner != GetCurrentThreadId ( ))
92 return _JV_NOT_OWNER;
93
94 EnterCriticalSection (&cv->count_mutex);
95 ensure_condvar_initialized (cv);
96 cv->blocked_count++;
97 LeaveCriticalSection (&cv->count_mutex);
98
99 DWORD time;
100 if ((millis == 0) && (nanos > 0)) time = 1;
101 else if (millis == 0) time = INFINITE;
102 else time = millis;
103
104 _Jv_MutexUnlock (mu);
105
106 DWORD rval = WaitForMultipleObjects (2, &(cv->ev[0]), 0, time);
107
108 EnterCriticalSection(&cv->count_mutex);
109 cv->blocked_count--;
110 // If we were unblocked by the second event (the broadcast one)
111 // and nobody is left, then reset the event.
112 int last_waiter = (rval == (WAIT_OBJECT_0 + 1)) && (cv->blocked_count == 0);
113 LeaveCriticalSection(&cv->count_mutex);
114
115 if (last_waiter)
116 ResetEvent (cv->ev[1]);
117
118 _Jv_MutexLock (mu);
119
120 return 0;
121}
122
123void
124_Jv_CondInit (_Jv_ConditionVariable_t *cv)
125{
126 // we do lazy creation of Events since CreateEvent() is insanely expensive
127 cv->ev[0] = 0;
128 InitializeCriticalSection (&cv->count_mutex);
129 cv->blocked_count = 0;
130}
131
132void
133_Jv_CondDestroy (_Jv_ConditionVariable_t *cv)
134{
135 if (cv->ev[0] != 0)
136 {
137 CloseHandle (cv->ev[0]);
138 CloseHandle (cv->ev[1]);
139
140 cv->ev[0] = 0;
141 }
142
143 DeleteCriticalSection (&cv->count_mutex);
144}
145
146int
147_Jv_CondNotify (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu)
148{
149 if (mu->owner != GetCurrentThreadId ( ))
150 return _JV_NOT_OWNER;
151
152 EnterCriticalSection (&cv->count_mutex);
153 ensure_condvar_initialized (cv);
154 int somebody_is_blocked = cv->blocked_count > 0;
155 LeaveCriticalSection (&cv->count_mutex);
156
157 if (somebody_is_blocked)
158 SetEvent (cv->ev[0]);
159
160 return 0;
161}
162
163int
164_Jv_CondNotifyAll (_Jv_ConditionVariable_t *cv, _Jv_Mutex_t *mu)
165{
166 if (mu->owner != GetCurrentThreadId ( ))
167 return _JV_NOT_OWNER;
168
169 EnterCriticalSection (&cv->count_mutex);
170 ensure_condvar_initialized (cv);
171 int somebody_is_blocked = cv->blocked_count > 0;
172 LeaveCriticalSection (&cv->count_mutex);
173
174 if (somebody_is_blocked)
175 SetEvent (cv->ev[1]);
176
177 return 0;
178}
179
180//
181// Threads.
182//
183
184void
185_Jv_InitThreads (void)
186{
187 _Jv_ThreadKey = TlsAlloc();
188 _Jv_ThreadDataKey = TlsAlloc();
189 daemon_mutex = CreateMutex (NULL, 0, NULL);
190 daemon_cond = CreateEvent (NULL, 1, 0, NULL);
191 non_daemon_count = 0;
192}
193
194_Jv_Thread_t *
195_Jv_ThreadInitData (java::lang::Thread* obj)
196{
197 _Jv_Thread_t *data = (_Jv_Thread_t*)_Jv_Malloc(sizeof(_Jv_Thread_t));
198 data->flags = 0;
199 data->thread_obj = obj;
200
201 return data;
202}
203
204void
205_Jv_ThreadDestroyData (_Jv_Thread_t *data)
206{
207 _Jv_Free(data);
208}
209
210void
211_Jv_ThreadSetPriority (_Jv_Thread_t *data, jint prio)
212{
213 int actual = THREAD_PRIORITY_NORMAL;
214
215 if (data->flags & FLAG_START)
216 {
217 switch (prio)
218 {
219 case 10:
220 actual = THREAD_PRIORITY_TIME_CRITICAL;
221 break;
222 case 9:
223 actual = THREAD_PRIORITY_HIGHEST;
224 break;
225 case 8:
226 case 7:
227 actual = THREAD_PRIORITY_ABOVE_NORMAL;
228 break;
229 case 6:
230 case 5:
231 actual = THREAD_PRIORITY_NORMAL;
232 break;
233 case 4:
234 case 3:
235 actual = THREAD_PRIORITY_BELOW_NORMAL;
236 break;
237 case 2:
238 actual = THREAD_PRIORITY_LOWEST;
239 break;
240 case 1:
241 actual = THREAD_PRIORITY_IDLE;
242 break;
243 }
244 SetThreadPriority(data->handle, actual);
245 }
246}
247
248void
249_Jv_ThreadRegister (_Jv_Thread_t *data)
250{
251 TlsSetValue (_Jv_ThreadKey, data->thread_obj);
252 TlsSetValue (_Jv_ThreadDataKey, data);
253}
254
255void
256_Jv_ThreadUnRegister ()
257{
258 TlsSetValue (_Jv_ThreadKey, NULL);
259 TlsSetValue (_Jv_ThreadDataKey, NULL);
260}
261
262// This function is called when a thread is started. We don't arrange
263// to call the `run' method directly, because this function must
264// return a value.
265static DWORD WINAPI
266really_start (void* x)
267{
268 struct starter *info = (struct starter *) x;
269
270 _Jv_ThreadRegister (info->data);
271
272 info->method (info->data->thread_obj);
273
274 if (! (info->data->flags & FLAG_DAEMON))
275 {
276 WaitForSingleObject (daemon_mutex, INFINITE);
277 non_daemon_count--;
278 if (! non_daemon_count)
279 SetEvent (daemon_cond);
280 ReleaseMutex (daemon_mutex);
281 }
282
283 return 0;
284}
285
286void
287_Jv_ThreadStart (java::lang::Thread *thread, _Jv_Thread_t *data, _Jv_ThreadStartFunc *meth)
288{
289 DWORD id;
290 struct starter *info;
291
292 // Do nothing if thread has already started
293 if (data->flags & FLAG_START)
294 return;
295 data->flags |= FLAG_START;
296
297 // FIXME: handle marking the info object for GC.
298 info = (struct starter *) _Jv_AllocBytes (sizeof (struct starter));
299 info->method = meth;
300 info->data = data;
301
302 if (! thread->isDaemon ())
303 {
304 WaitForSingleObject (daemon_mutex, INFINITE);
305 non_daemon_count++;
306 ReleaseMutex (daemon_mutex);
307 }
308 else
309 data->flags |= FLAG_DAEMON;
310
311 HANDLE h = GC_CreateThread(NULL, 0, really_start, info, 0, &id);
312 _Jv_ThreadSetPriority(data, thread->getPriority());
313
314 //if (!h)
315 //JvThrow ();
316}
317
318void
319_Jv_ThreadWait (void)
320{
321 WaitForSingleObject (daemon_mutex, INFINITE);
322 if (non_daemon_count)
323 {
324 ReleaseMutex (daemon_mutex);
325 WaitForSingleObject (daemon_cond, INFINITE);
326 }
327}
328
329void
330_Jv_ThreadInterrupt (_Jv_Thread_t *data)
331{
332 MessageBox(NULL, "Unimplemented", "win32-threads.cc:_Jv_ThreadInterrupt", MB_OK);
333 // FIXME:
334}
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