ntdll: Fixed a compiler warning for size_t/unsigned int mismatch.
[wine] / dlls / ntdll / sync.c
1 /*
2  *      Process synchronisation
3  *
4  * Copyright 1996, 1997, 1998 Marcus Meissner
5  * Copyright 1997, 1999 Alexandre Julliard
6  * Copyright 1999, 2000 Juergen Schmied
7  * Copyright 2003 Eric Pouech
8  *
9  * This library is free software; you can redistribute it and/or
10  * modify it under the terms of the GNU Lesser General Public
11  * License as published by the Free Software Foundation; either
12  * version 2.1 of the License, or (at your option) any later version.
13  *
14  * This library is distributed in the hope that it will be useful,
15  * but WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
17  * Lesser General Public License for more details.
18  *
19  * You should have received a copy of the GNU Lesser General Public
20  * License along with this library; if not, write to the Free Software
21  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
22  */
23
24 #include "config.h"
25
26 #include <assert.h>
27 #include <errno.h>
28 #include <signal.h>
29 #ifdef HAVE_SYS_TIME_H
30 # include <sys/time.h>
31 #endif
32 #ifdef HAVE_POLL_H
33 #include <poll.h>
34 #endif
35 #ifdef HAVE_SYS_POLL_H
36 # include <sys/poll.h>
37 #endif
38 #ifdef HAVE_UNISTD_H
39 # include <unistd.h>
40 #endif
41 #ifdef HAVE_SCHED_H
42 # include <sched.h>
43 #endif
44 #include <string.h>
45 #include <stdarg.h>
46 #include <stdio.h>
47 #include <stdlib.h>
48 #include <time.h>
49
50 #define NONAMELESSUNION
51 #define NONAMELESSSTRUCT
52
53 #include "ntstatus.h"
54 #define WIN32_NO_STATUS
55 #include "windef.h"
56 #include "thread.h"
57 #include "wine/server.h"
58 #include "wine/debug.h"
59 #include "ntdll_misc.h"
60
61 WINE_DEFAULT_DEBUG_CHANNEL(ntdll);
62
63
64 /*
65  *      Semaphores
66  */
67
68 /******************************************************************************
69  *  NtCreateSemaphore (NTDLL.@)
70  */
71 NTSTATUS WINAPI NtCreateSemaphore( OUT PHANDLE SemaphoreHandle,
72                                    IN ACCESS_MASK access,
73                                    IN const OBJECT_ATTRIBUTES *attr OPTIONAL,
74                                    IN LONG InitialCount,
75                                    IN LONG MaximumCount )
76 {
77     DWORD len = attr && attr->ObjectName ? attr->ObjectName->Length : 0;
78     NTSTATUS ret;
79
80     if (MaximumCount <= 0 || InitialCount < 0 || InitialCount > MaximumCount)
81         return STATUS_INVALID_PARAMETER;
82     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
83
84     SERVER_START_REQ( create_semaphore )
85     {
86         req->access  = access;
87         req->attributes = (attr) ? attr->Attributes : 0;
88         req->rootdir = attr ? attr->RootDirectory : 0;
89         req->initial = InitialCount;
90         req->max     = MaximumCount;
91         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
92         ret = wine_server_call( req );
93         *SemaphoreHandle = reply->handle;
94     }
95     SERVER_END_REQ;
96     return ret;
97 }
98
99 /******************************************************************************
100  *  NtOpenSemaphore (NTDLL.@)
101  */
102 NTSTATUS WINAPI NtOpenSemaphore( OUT PHANDLE SemaphoreHandle,
103                                  IN ACCESS_MASK access,
104                                  IN const OBJECT_ATTRIBUTES *attr )
105 {
106     DWORD len = attr && attr->ObjectName ? attr->ObjectName->Length : 0;
107     NTSTATUS ret;
108
109     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
110
111     SERVER_START_REQ( open_semaphore )
112     {
113         req->access  = access;
114         req->attributes = (attr) ? attr->Attributes : 0;
115         req->rootdir = attr ? attr->RootDirectory : 0;
116         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
117         ret = wine_server_call( req );
118         *SemaphoreHandle = reply->handle;
119     }
120     SERVER_END_REQ;
121     return ret;
122 }
123
124 /******************************************************************************
125  *  NtQuerySemaphore (NTDLL.@)
126  */
127 NTSTATUS WINAPI NtQuerySemaphore(
128         HANDLE SemaphoreHandle,
129         SEMAPHORE_INFORMATION_CLASS SemaphoreInformationClass,
130         PVOID SemaphoreInformation,
131         ULONG Length,
132         PULONG ReturnLength)
133 {
134         FIXME("(%p,%d,%p,0x%08x,%p) stub!\n",
135         SemaphoreHandle, SemaphoreInformationClass, SemaphoreInformation, Length, ReturnLength);
136         return STATUS_SUCCESS;
137 }
138
139 /******************************************************************************
140  *  NtReleaseSemaphore (NTDLL.@)
141  */
142 NTSTATUS WINAPI NtReleaseSemaphore( HANDLE handle, ULONG count, PULONG previous )
143 {
144     NTSTATUS ret;
145     SERVER_START_REQ( release_semaphore )
146     {
147         req->handle = handle;
148         req->count  = count;
149         if (!(ret = wine_server_call( req )))
150         {
151             if (previous) *previous = reply->prev_count;
152         }
153     }
154     SERVER_END_REQ;
155     return ret;
156 }
157
158 /*
159  *      Events
160  */
161
162 /**************************************************************************
163  * NtCreateEvent (NTDLL.@)
164  * ZwCreateEvent (NTDLL.@)
165  */
166 NTSTATUS WINAPI NtCreateEvent(
167         OUT PHANDLE EventHandle,
168         IN ACCESS_MASK DesiredAccess,
169         IN const OBJECT_ATTRIBUTES *attr,
170         IN BOOLEAN ManualReset,
171         IN BOOLEAN InitialState)
172 {
173     DWORD len = attr && attr->ObjectName ? attr->ObjectName->Length : 0;
174     NTSTATUS ret;
175
176     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
177
178     SERVER_START_REQ( create_event )
179     {
180         req->access = DesiredAccess;
181         req->attributes = (attr) ? attr->Attributes : 0;
182         req->rootdir = attr ? attr->RootDirectory : 0;
183         req->manual_reset = ManualReset;
184         req->initial_state = InitialState;
185         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
186         ret = wine_server_call( req );
187         *EventHandle = reply->handle;
188     }
189     SERVER_END_REQ;
190     return ret;
191 }
192
193 /******************************************************************************
194  *  NtOpenEvent (NTDLL.@)
195  *  ZwOpenEvent (NTDLL.@)
196  */
197 NTSTATUS WINAPI NtOpenEvent(
198         OUT PHANDLE EventHandle,
199         IN ACCESS_MASK DesiredAccess,
200         IN const OBJECT_ATTRIBUTES *attr )
201 {
202     DWORD len = attr && attr->ObjectName ? attr->ObjectName->Length : 0;
203     NTSTATUS ret;
204
205     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
206
207     SERVER_START_REQ( open_event )
208     {
209         req->access  = DesiredAccess;
210         req->attributes = (attr) ? attr->Attributes : 0;
211         req->rootdir = attr ? attr->RootDirectory : 0;
212         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
213         ret = wine_server_call( req );
214         *EventHandle = reply->handle;
215     }
216     SERVER_END_REQ;
217     return ret;
218 }
219
220
221 /******************************************************************************
222  *  NtSetEvent (NTDLL.@)
223  *  ZwSetEvent (NTDLL.@)
224  */
225 NTSTATUS WINAPI NtSetEvent( HANDLE handle, PULONG NumberOfThreadsReleased )
226 {
227     NTSTATUS ret;
228
229     /* FIXME: set NumberOfThreadsReleased */
230
231     SERVER_START_REQ( event_op )
232     {
233         req->handle = handle;
234         req->op     = SET_EVENT;
235         ret = wine_server_call( req );
236     }
237     SERVER_END_REQ;
238     return ret;
239 }
240
241 /******************************************************************************
242  *  NtResetEvent (NTDLL.@)
243  */
244 NTSTATUS WINAPI NtResetEvent( HANDLE handle, PULONG NumberOfThreadsReleased )
245 {
246     NTSTATUS ret;
247
248     /* resetting an event can't release any thread... */
249     if (NumberOfThreadsReleased) *NumberOfThreadsReleased = 0;
250
251     SERVER_START_REQ( event_op )
252     {
253         req->handle = handle;
254         req->op     = RESET_EVENT;
255         ret = wine_server_call( req );
256     }
257     SERVER_END_REQ;
258     return ret;
259 }
260
261 /******************************************************************************
262  *  NtClearEvent (NTDLL.@)
263  *
264  * FIXME
265  *   same as NtResetEvent ???
266  */
267 NTSTATUS WINAPI NtClearEvent ( HANDLE handle )
268 {
269     return NtResetEvent( handle, NULL );
270 }
271
272 /******************************************************************************
273  *  NtPulseEvent (NTDLL.@)
274  *
275  * FIXME
276  *   PulseCount
277  */
278 NTSTATUS WINAPI NtPulseEvent( HANDLE handle, PULONG PulseCount )
279 {
280     NTSTATUS ret;
281
282     if (PulseCount)
283       FIXME("(%p,%d)\n", handle, *PulseCount);
284
285     SERVER_START_REQ( event_op )
286     {
287         req->handle = handle;
288         req->op     = PULSE_EVENT;
289         ret = wine_server_call( req );
290     }
291     SERVER_END_REQ;
292     return ret;
293 }
294
295 /******************************************************************************
296  *  NtQueryEvent (NTDLL.@)
297  */
298 NTSTATUS WINAPI NtQueryEvent (
299         IN  HANDLE EventHandle,
300         IN  UINT EventInformationClass,
301         OUT PVOID EventInformation,
302         IN  ULONG EventInformationLength,
303         OUT PULONG  ReturnLength)
304 {
305         FIXME("(%p)\n", EventHandle);
306         return STATUS_SUCCESS;
307 }
308
309 /*
310  *      Mutants (known as Mutexes in Kernel32)
311  */
312
313 /******************************************************************************
314  *              NtCreateMutant                          [NTDLL.@]
315  *              ZwCreateMutant                          [NTDLL.@]
316  */
317 NTSTATUS WINAPI NtCreateMutant(OUT HANDLE* MutantHandle,
318                                IN ACCESS_MASK access,
319                                IN const OBJECT_ATTRIBUTES* attr OPTIONAL,
320                                IN BOOLEAN InitialOwner)
321 {
322     NTSTATUS    status;
323     DWORD       len = attr && attr->ObjectName ? attr->ObjectName->Length : 0;
324
325     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
326
327     SERVER_START_REQ( create_mutex )
328     {
329         req->access  = access;
330         req->attributes = (attr) ? attr->Attributes : 0;
331         req->rootdir = attr ? attr->RootDirectory : 0;
332         req->owned   = InitialOwner;
333         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
334         status = wine_server_call( req );
335         *MutantHandle = reply->handle;
336     }
337     SERVER_END_REQ;
338     return status;
339 }
340
341 /**************************************************************************
342  *              NtOpenMutant                            [NTDLL.@]
343  *              ZwOpenMutant                            [NTDLL.@]
344  */
345 NTSTATUS WINAPI NtOpenMutant(OUT HANDLE* MutantHandle, 
346                              IN ACCESS_MASK access, 
347                              IN const OBJECT_ATTRIBUTES* attr )
348 {
349     NTSTATUS    status;
350     DWORD       len = attr && attr->ObjectName ? attr->ObjectName->Length : 0;
351
352     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
353
354     SERVER_START_REQ( open_mutex )
355     {
356         req->access  = access;
357         req->attributes = (attr) ? attr->Attributes : 0;
358         req->rootdir = attr ? attr->RootDirectory : 0;
359         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
360         status = wine_server_call( req );
361         *MutantHandle = reply->handle;
362     }
363     SERVER_END_REQ;
364     return status;
365 }
366
367 /**************************************************************************
368  *              NtReleaseMutant                         [NTDLL.@]
369  *              ZwReleaseMutant                         [NTDLL.@]
370  */
371 NTSTATUS WINAPI NtReleaseMutant( IN HANDLE handle, OUT PLONG prev_count OPTIONAL)
372 {
373     NTSTATUS    status;
374
375     SERVER_START_REQ( release_mutex )
376     {
377         req->handle = handle;
378         status = wine_server_call( req );
379         if (prev_count) *prev_count = reply->prev_count;
380     }
381     SERVER_END_REQ;
382     return status;
383 }
384
385 /******************************************************************
386  *              NtQueryMutant                   [NTDLL.@]
387  *              ZwQueryMutant                   [NTDLL.@]
388  */
389 NTSTATUS WINAPI NtQueryMutant(IN HANDLE handle, 
390                               IN MUTANT_INFORMATION_CLASS MutantInformationClass, 
391                               OUT PVOID MutantInformation, 
392                               IN ULONG MutantInformationLength, 
393                               OUT PULONG ResultLength OPTIONAL )
394 {
395     FIXME("(%p %u %p %u %p): stub!\n", 
396           handle, MutantInformationClass, MutantInformation, MutantInformationLength, ResultLength);
397     return STATUS_NOT_IMPLEMENTED;
398 }
399
400 /*
401  *      Timers
402  */
403
404 /**************************************************************************
405  *              NtCreateTimer                           [NTDLL.@]
406  *              ZwCreateTimer                           [NTDLL.@]
407  */
408 NTSTATUS WINAPI NtCreateTimer(OUT HANDLE *handle,
409                               IN ACCESS_MASK access,
410                               IN const OBJECT_ATTRIBUTES *attr OPTIONAL,
411                               IN TIMER_TYPE timer_type)
412 {
413     DWORD       len = (attr && attr->ObjectName) ? attr->ObjectName->Length : 0;
414     NTSTATUS    status;
415
416     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
417
418     if (timer_type != NotificationTimer && timer_type != SynchronizationTimer)
419         return STATUS_INVALID_PARAMETER;
420
421     SERVER_START_REQ( create_timer )
422     {
423         req->access  = access;
424         req->attributes = (attr) ? attr->Attributes : 0;
425         req->rootdir = attr ? attr->RootDirectory : 0;
426         req->manual  = (timer_type == NotificationTimer) ? TRUE : FALSE;
427         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
428         status = wine_server_call( req );
429         *handle = reply->handle;
430     }
431     SERVER_END_REQ;
432     return status;
433
434 }
435
436 /**************************************************************************
437  *              NtOpenTimer                             [NTDLL.@]
438  *              ZwOpenTimer                             [NTDLL.@]
439  */
440 NTSTATUS WINAPI NtOpenTimer(OUT PHANDLE handle,
441                             IN ACCESS_MASK access,
442                             IN const OBJECT_ATTRIBUTES* attr )
443 {
444     DWORD       len = (attr && attr->ObjectName) ? attr->ObjectName->Length : 0;
445     NTSTATUS    status;
446
447     if (len >= MAX_PATH * sizeof(WCHAR)) return STATUS_NAME_TOO_LONG;
448
449     SERVER_START_REQ( open_timer )
450     {
451         req->access  = access;
452         req->attributes = (attr) ? attr->Attributes : 0;
453         req->rootdir = attr ? attr->RootDirectory : 0;
454         if (len) wine_server_add_data( req, attr->ObjectName->Buffer, len );
455         status = wine_server_call( req );
456         *handle = reply->handle;
457     }
458     SERVER_END_REQ;
459     return status;
460 }
461
462 /**************************************************************************
463  *              NtSetTimer                              [NTDLL.@]
464  *              ZwSetTimer                              [NTDLL.@]
465  */
466 NTSTATUS WINAPI NtSetTimer(IN HANDLE handle,
467                            IN const LARGE_INTEGER* when,
468                            IN PTIMER_APC_ROUTINE callback,
469                            IN PVOID callback_arg,
470                            IN BOOLEAN resume,
471                            IN ULONG period OPTIONAL,
472                            OUT PBOOLEAN state OPTIONAL)
473 {
474     NTSTATUS    status = STATUS_SUCCESS;
475
476     TRACE("(%p,%p,%p,%p,%08x,0x%08x,%p) stub\n",
477           handle, when, callback, callback_arg, resume, period, state);
478
479     SERVER_START_REQ( set_timer )
480     {
481         if (!when->u.LowPart && !when->u.HighPart)
482         {
483             /* special case to start timeout on now+period without too many calculations */
484             req->expire.sec  = 0;
485             req->expire.usec = 0;
486         }
487         else NTDLL_get_server_abstime( &req->expire, when );
488
489         req->handle   = handle;
490         req->period   = period;
491         req->callback = callback;
492         req->arg      = callback_arg;
493         status = wine_server_call( req );
494         if (state) *state = reply->signaled;
495     }
496     SERVER_END_REQ;
497
498     /* set error but can still succeed */
499     if (resume && status == STATUS_SUCCESS) return STATUS_TIMER_RESUME_IGNORED;
500     return status;
501 }
502
503 /**************************************************************************
504  *              NtCancelTimer                           [NTDLL.@]
505  *              ZwCancelTimer                           [NTDLL.@]
506  */
507 NTSTATUS WINAPI NtCancelTimer(IN HANDLE handle, OUT BOOLEAN* state)
508 {
509     NTSTATUS    status;
510
511     SERVER_START_REQ( cancel_timer )
512     {
513         req->handle = handle;
514         status = wine_server_call( req );
515         if (state) *state = reply->signaled;
516     }
517     SERVER_END_REQ;
518     return status;
519 }
520
521 /******************************************************************************
522  *  NtQueryTimer (NTDLL.@)
523  *
524  * Retrieves information about a timer.
525  *
526  * PARAMS
527  *  TimerHandle           [I] The timer to retrieve information about.
528  *  TimerInformationClass [I] The type of information to retrieve.
529  *  TimerInformation      [O] Pointer to buffer to store information in.
530  *  Length                [I] The length of the buffer pointed to by TimerInformation.
531  *  ReturnLength          [O] Optional. The size of buffer actually used.
532  *
533  * RETURNS
534  *  Success: STATUS_SUCCESS
535  *  Failure: STATUS_INFO_LENGTH_MISMATCH, if Length doesn't match the required data
536  *           size for the class specified.
537  *           STATUS_INVALID_INFO_CLASS, if an invalid TimerInformationClass was specified.
538  *           STATUS_ACCESS_DENIED, if TimerHandle does not have TIMER_QUERY_STATE access
539  *           to the timer.
540  */
541 NTSTATUS WINAPI NtQueryTimer(
542     HANDLE TimerHandle,
543     TIMER_INFORMATION_CLASS TimerInformationClass,
544     PVOID TimerInformation,
545     ULONG Length,
546     PULONG ReturnLength)
547 {
548     TIMER_BASIC_INFORMATION * basic_info = (TIMER_BASIC_INFORMATION *)TimerInformation;
549     NTSTATUS status;
550     LARGE_INTEGER now;
551
552     TRACE("(%p,%d,%p,0x%08x,%p)\n", TimerHandle, TimerInformationClass,
553        TimerInformation, Length, ReturnLength);
554
555     switch (TimerInformationClass)
556     {
557     case TimerBasicInformation:
558         if (Length < sizeof(TIMER_BASIC_INFORMATION))
559             return STATUS_INFO_LENGTH_MISMATCH;
560
561         SERVER_START_REQ(get_timer_info)
562         {
563             req->handle = TimerHandle;
564             status = wine_server_call(req);
565
566             /* convert server time to absolute NTDLL time */
567             NTDLL_from_server_abstime(&basic_info->RemainingTime, &reply->when);
568             basic_info->TimerState = reply->signaled;
569         }
570         SERVER_END_REQ;
571
572         /* convert from absolute into relative time */
573         NtQuerySystemTime(&now);
574         if (now.QuadPart > basic_info->RemainingTime.QuadPart)
575             basic_info->RemainingTime.QuadPart = 0;
576         else
577             basic_info->RemainingTime.QuadPart -= now.QuadPart;
578
579         if (ReturnLength) *ReturnLength = sizeof(TIMER_BASIC_INFORMATION);
580
581         return status;
582     }
583
584     FIXME("Unhandled class %d\n", TimerInformationClass);
585     return STATUS_INVALID_INFO_CLASS;
586 }
587
588
589 /******************************************************************************
590  * NtQueryTimerResolution [NTDLL.@]
591  */
592 NTSTATUS WINAPI NtQueryTimerResolution(OUT ULONG* min_resolution,
593                                        OUT ULONG* max_resolution,
594                                        OUT ULONG* current_resolution)
595 {
596     FIXME("(%p,%p,%p), stub!\n",
597           min_resolution, max_resolution, current_resolution);
598
599     return STATUS_NOT_IMPLEMENTED;
600 }
601
602 /******************************************************************************
603  * NtSetTimerResolution [NTDLL.@]
604  */
605 NTSTATUS WINAPI NtSetTimerResolution(IN ULONG resolution,
606                                      IN BOOLEAN set_resolution,
607                                      OUT ULONG* current_resolution )
608 {
609     FIXME("(%u,%u,%p), stub!\n",
610           resolution, set_resolution, current_resolution);
611
612     return STATUS_NOT_IMPLEMENTED;
613 }
614
615
616 /***********************************************************************
617  *              wait_reply
618  *
619  * Wait for a reply on the waiting pipe of the current thread.
620  */
621 static int wait_reply( void *cookie )
622 {
623     int signaled;
624     struct wake_up_reply reply;
625     for (;;)
626     {
627         int ret;
628         ret = read( ntdll_get_thread_data()->wait_fd[0], &reply, sizeof(reply) );
629         if (ret == sizeof(reply))
630         {
631             if (!reply.cookie) break;  /* thread got killed */
632             if (reply.cookie == cookie) return reply.signaled;
633             /* we stole another reply, wait for the real one */
634             signaled = wait_reply( cookie );
635             /* and now put the wrong one back in the pipe */
636             for (;;)
637             {
638                 ret = write( ntdll_get_thread_data()->wait_fd[1], &reply, sizeof(reply) );
639                 if (ret == sizeof(reply)) break;
640                 if (ret >= 0) server_protocol_error( "partial wakeup write %d\n", ret );
641                 if (errno == EINTR) continue;
642                 server_protocol_perror("wakeup write");
643             }
644             return signaled;
645         }
646         if (ret >= 0) server_protocol_error( "partial wakeup read %d\n", ret );
647         if (errno == EINTR) continue;
648         server_protocol_perror("wakeup read");
649     }
650     /* the server closed the connection; time to die... */
651     server_abort_thread(0);
652 }
653
654
655 /***********************************************************************
656  *              invoke_apc
657  *
658  * Invoke a single APC. Return TRUE if a user APC has been run.
659  */
660 static BOOL invoke_apc( const apc_call_t *call, apc_result_t *result )
661 {
662     BOOL user_apc = FALSE;
663
664     memset( result, 0, sizeof(*result) );
665
666     switch (call->type)
667     {
668     case APC_USER:
669         call->user.func( call->user.args[0], call->user.args[1], call->user.args[2] );
670         user_apc = TRUE;
671         break;
672     case APC_TIMER:
673     {
674         LARGE_INTEGER time;
675         /* convert sec/usec to NT time */
676         RtlSecondsSince1970ToTime( call->timer.time.sec, &time );
677         time.QuadPart += call->timer.time.usec * 10;
678         call->timer.func( call->timer.arg, time.u.LowPart, time.u.HighPart );
679         user_apc = TRUE;
680         break;
681     }
682     case APC_ASYNC_IO:
683         NtCurrentTeb()->num_async_io--;
684         call->async_io.func( call->async_io.user, call->async_io.sb, call->async_io.status );
685         break;
686     case APC_VIRTUAL_ALLOC:
687         result->type = call->type;
688         result->virtual_alloc.addr = call->virtual_alloc.addr;
689         result->virtual_alloc.size = call->virtual_alloc.size;
690         result->virtual_alloc.status = NtAllocateVirtualMemory( NtCurrentProcess(),
691                                                                 &result->virtual_alloc.addr,
692                                                                 call->virtual_alloc.zero_bits,
693                                                                 &result->virtual_alloc.size,
694                                                                 call->virtual_alloc.op_type,
695                                                                 call->virtual_alloc.prot );
696         break;
697     case APC_VIRTUAL_FREE:
698         result->type = call->type;
699         result->virtual_free.addr = call->virtual_free.addr;
700         result->virtual_free.size = call->virtual_free.size;
701         result->virtual_free.status = NtFreeVirtualMemory( NtCurrentProcess(),
702                                                            &result->virtual_free.addr,
703                                                            &result->virtual_free.size,
704                                                            call->virtual_free.op_type );
705         break;
706     case APC_VIRTUAL_QUERY:
707     {
708         MEMORY_BASIC_INFORMATION info;
709         result->type = call->type;
710         result->virtual_query.status = NtQueryVirtualMemory( NtCurrentProcess(),
711                                                              call->virtual_query.addr,
712                                                              MemoryBasicInformation, &info,
713                                                              sizeof(info), NULL );
714         if (result->virtual_query.status == STATUS_SUCCESS)
715         {
716             result->virtual_query.base       = info.BaseAddress;
717             result->virtual_query.alloc_base = info.AllocationBase;
718             result->virtual_query.size       = info.RegionSize;
719             result->virtual_query.state      = info.State;
720             result->virtual_query.prot       = info.Protect;
721             result->virtual_query.alloc_prot = info.AllocationProtect;
722             result->virtual_query.alloc_type = info.Type;
723         }
724         break;
725     }
726     case APC_VIRTUAL_PROTECT:
727         result->type = call->type;
728         result->virtual_protect.addr = call->virtual_protect.addr;
729         result->virtual_protect.size = call->virtual_protect.size;
730         result->virtual_protect.status = NtProtectVirtualMemory( NtCurrentProcess(),
731                                                                  &result->virtual_protect.addr,
732                                                                  &result->virtual_protect.size,
733                                                                  call->virtual_protect.prot,
734                                                                  &result->virtual_protect.prot );
735         break;
736     case APC_VIRTUAL_FLUSH:
737         result->type = call->type;
738         result->virtual_flush.addr = call->virtual_flush.addr;
739         result->virtual_flush.size = call->virtual_flush.size;
740         result->virtual_flush.status = NtFlushVirtualMemory( NtCurrentProcess(),
741                                                              &result->virtual_flush.addr,
742                                                              &result->virtual_flush.size, 0 );
743         break;
744     case APC_VIRTUAL_LOCK:
745         result->type = call->type;
746         result->virtual_lock.addr = call->virtual_lock.addr;
747         result->virtual_lock.size = call->virtual_lock.size;
748         result->virtual_lock.status = NtLockVirtualMemory( NtCurrentProcess(),
749                                                            &result->virtual_lock.addr,
750                                                            &result->virtual_lock.size, 0 );
751         break;
752     case APC_VIRTUAL_UNLOCK:
753         result->type = call->type;
754         result->virtual_unlock.addr = call->virtual_unlock.addr;
755         result->virtual_unlock.size = call->virtual_unlock.size;
756         result->virtual_unlock.status = NtUnlockVirtualMemory( NtCurrentProcess(),
757                                                                &result->virtual_unlock.addr,
758                                                                &result->virtual_unlock.size, 0 );
759         break;
760     case APC_MAP_VIEW:
761     {
762         LARGE_INTEGER offset;
763         result->type = call->type;
764         result->map_view.addr   = call->map_view.addr;
765         result->map_view.size   = call->map_view.size;
766         offset.u.LowPart        = call->map_view.offset_low;
767         offset.u.HighPart       = call->map_view.offset_high;
768         result->map_view.status = NtMapViewOfSection( call->map_view.handle, NtCurrentProcess(),
769                                                       &result->map_view.addr, call->map_view.zero_bits,
770                                                       0, &offset, &result->map_view.size, ViewShare,
771                                                       call->map_view.alloc_type, call->map_view.prot );
772         NtClose( call->map_view.handle );
773         break;
774     }
775     case APC_UNMAP_VIEW:
776         result->type = call->type;
777         result->unmap_view.status = NtUnmapViewOfSection( NtCurrentProcess(), call->unmap_view.addr );
778         break;
779     case APC_CREATE_THREAD:
780     {
781         CLIENT_ID id;
782         result->type = call->type;
783         result->create_thread.status = RtlCreateUserThread( NtCurrentProcess(), NULL,
784                                                             call->create_thread.suspend, NULL,
785                                                             call->create_thread.reserve,
786                                                             call->create_thread.commit,
787                                                             call->create_thread.func,
788                                                             call->create_thread.arg,
789                                                             &result->create_thread.handle, &id );
790         result->create_thread.tid = (thread_id_t)id.UniqueThread;
791         break;
792     }
793     default:
794         server_protocol_error( "get_apc_request: bad type %d\n", call->type );
795         break;
796     }
797     return user_apc;
798 }
799
800 /***********************************************************************
801  *              call_apcs
802  *
803  * Call outstanding APCs. Return TRUE if a user APC has been run.
804  */
805 static BOOL call_apcs( BOOL alertable )
806 {
807     BOOL user_apc = FALSE;
808     NTSTATUS ret;
809     apc_call_t call;
810     apc_result_t result;
811     HANDLE handle = 0;
812
813     memset( &result, 0, sizeof(result) );
814
815     for (;;)
816     {
817         SERVER_START_REQ( get_apc )
818         {
819             req->alertable = alertable;
820             req->prev      = handle;
821             req->result    = result;
822             if (!(ret = wine_server_call( req )))
823             {
824                 handle = reply->handle;
825                 call   = reply->call;
826             }
827         }
828         SERVER_END_REQ;
829
830         if (ret) return user_apc;  /* no more APCs */
831
832         user_apc = invoke_apc( &call, &result );
833     }
834 }
835
836
837 /***********************************************************************
838  *           NTDLL_queue_process_apc
839  */
840 NTSTATUS NTDLL_queue_process_apc( HANDLE process, const apc_call_t *call, apc_result_t *result )
841 {
842     for (;;)
843     {
844         NTSTATUS ret;
845         HANDLE handle = 0;
846         BOOL self = FALSE;
847
848         SERVER_START_REQ( queue_apc )
849         {
850             req->process = process;
851             req->call = *call;
852             if (!(ret = wine_server_call( req )))
853             {
854                 handle = reply->handle;
855                 self = reply->self;
856             }
857         }
858         SERVER_END_REQ;
859         if (ret != STATUS_SUCCESS) return ret;
860
861         if (self)
862         {
863             invoke_apc( call, result );
864         }
865         else
866         {
867             NtWaitForSingleObject( handle, FALSE, NULL );
868
869             SERVER_START_REQ( get_apc_result )
870             {
871                 req->handle = handle;
872                 if (!(ret = wine_server_call( req ))) *result = reply->result;
873             }
874             SERVER_END_REQ;
875
876             if (!ret && result->type == APC_NONE) continue;  /* APC didn't run, try again */
877             if (ret) NtClose( handle );
878         }
879         return ret;
880     }
881 }
882
883
884 /***********************************************************************
885  *              NTDLL_wait_for_multiple_objects
886  *
887  * Implementation of NtWaitForMultipleObjects
888  */
889 NTSTATUS NTDLL_wait_for_multiple_objects( UINT count, const HANDLE *handles, UINT flags,
890                                           const LARGE_INTEGER *timeout, HANDLE signal_object )
891 {
892     NTSTATUS ret;
893     int cookie;
894     abs_time_t abs_timeout;
895
896     NTDLL_get_server_abstime( &abs_timeout, timeout );
897     if (timeout) flags |= SELECT_TIMEOUT;
898     for (;;)
899     {
900         SERVER_START_REQ( select )
901         {
902             req->flags   = flags;
903             req->cookie  = &cookie;
904             req->signal  = signal_object;
905             req->timeout = abs_timeout;
906             wine_server_add_data( req, handles, count * sizeof(HANDLE) );
907             ret = wine_server_call( req );
908         }
909         SERVER_END_REQ;
910         if (ret == STATUS_PENDING) ret = wait_reply( &cookie );
911         if (ret != STATUS_USER_APC) break;
912         if (call_apcs( (flags & SELECT_ALERTABLE) != 0 )) break;
913         signal_object = 0;  /* don't signal it multiple times */
914     }
915
916     /* A test on Windows 2000 shows that Windows always yields during
917        a wait, but a wait that is hit by an event gets a priority
918        boost as well.  This seems to model that behavior the closest.  */
919     if (ret == WAIT_TIMEOUT) NtYieldExecution();
920
921     return ret;
922 }
923
924
925 /* wait operations */
926
927 /******************************************************************
928  *              NtWaitForMultipleObjects (NTDLL.@)
929  */
930 NTSTATUS WINAPI NtWaitForMultipleObjects( DWORD count, const HANDLE *handles,
931                                           BOOLEAN wait_all, BOOLEAN alertable,
932                                           const LARGE_INTEGER *timeout )
933 {
934     UINT flags = SELECT_INTERRUPTIBLE;
935
936     if (!count || count > MAXIMUM_WAIT_OBJECTS) return STATUS_INVALID_PARAMETER_1;
937
938     if (wait_all) flags |= SELECT_ALL;
939     if (alertable) flags |= SELECT_ALERTABLE;
940     return NTDLL_wait_for_multiple_objects( count, handles, flags, timeout, 0 );
941 }
942
943
944 /******************************************************************
945  *              NtWaitForSingleObject (NTDLL.@)
946  */
947 NTSTATUS WINAPI NtWaitForSingleObject(HANDLE handle, BOOLEAN alertable, const LARGE_INTEGER *timeout )
948 {
949     return NtWaitForMultipleObjects( 1, &handle, FALSE, alertable, timeout );
950 }
951
952
953 /******************************************************************
954  *              NtSignalAndWaitForSingleObject (NTDLL.@)
955  */
956 NTSTATUS WINAPI NtSignalAndWaitForSingleObject( HANDLE hSignalObject, HANDLE hWaitObject,
957                                                 BOOLEAN alertable, const LARGE_INTEGER *timeout )
958 {
959     UINT flags = SELECT_INTERRUPTIBLE;
960
961     if (!hSignalObject) return STATUS_INVALID_HANDLE;
962     if (alertable) flags |= SELECT_ALERTABLE;
963     return NTDLL_wait_for_multiple_objects( 1, &hWaitObject, flags, timeout, hSignalObject );
964 }
965
966
967 /******************************************************************
968  *              NtYieldExecution (NTDLL.@)
969  */
970 NTSTATUS WINAPI NtYieldExecution(void)
971 {
972 #ifdef HAVE_SCHED_YIELD
973     sched_yield();
974     return STATUS_SUCCESS;
975 #else
976     return STATUS_NO_YIELD_PERFORMED;
977 #endif
978 }
979
980
981 /******************************************************************
982  *              NtDelayExecution (NTDLL.@)
983  */
984 NTSTATUS WINAPI NtDelayExecution( BOOLEAN alertable, const LARGE_INTEGER *timeout )
985 {
986     /* if alertable or async I/O in progress, we need to query the server */
987     if (alertable || NtCurrentTeb()->num_async_io)
988     {
989         UINT flags = SELECT_INTERRUPTIBLE;
990         if (alertable) flags |= SELECT_ALERTABLE;
991         return NTDLL_wait_for_multiple_objects( 0, NULL, flags, timeout, 0 );
992     }
993
994     if (!timeout)  /* sleep forever */
995     {
996         for (;;) select( 0, NULL, NULL, NULL, NULL );
997     }
998     else
999     {
1000         abs_time_t when;
1001
1002         NTDLL_get_server_abstime( &when, timeout );
1003
1004         /* Note that we yield after establishing the desired timeout */
1005         NtYieldExecution();
1006
1007         for (;;)
1008         {
1009             struct timeval tv;
1010             gettimeofday( &tv, 0 );
1011             tv.tv_sec = when.sec - tv.tv_sec;
1012             if ((tv.tv_usec = when.usec - tv.tv_usec) < 0)
1013             {
1014                 tv.tv_usec += 1000000;
1015                 tv.tv_sec--;
1016             }
1017             /* if our yield already passed enough time, we're done */
1018             if (tv.tv_sec < 0) break;
1019
1020             if (select( 0, NULL, NULL, NULL, &tv ) != -1) break;
1021         }
1022     }
1023     return STATUS_SUCCESS;
1024 }
1025
1026 /******************************************************************
1027  *              NtCreateIoCompletion (NTDLL.@)
1028  */
1029 NTSTATUS WINAPI NtCreateIoCompletion( PHANDLE CompletionPort, ACCESS_MASK DesiredAccess,
1030                                       POBJECT_ATTRIBUTES ObjectAttributes, ULONG NumberOfConcurrentThreads )
1031 {
1032     FIXME("(%p, %x, %p, %d)\n", CompletionPort, DesiredAccess,
1033           ObjectAttributes, NumberOfConcurrentThreads);
1034     return STATUS_NOT_IMPLEMENTED;
1035 }
1036
1037 NTSTATUS WINAPI NtSetIoCompletion( HANDLE CompletionPort, ULONG_PTR CompletionKey,
1038                                    PIO_STATUS_BLOCK iosb, ULONG NumberOfBytesTransferred,
1039                                    ULONG NumberOfBytesToTransfer )
1040 {
1041     FIXME("(%p, %lx, %p, %d, %d)\n", CompletionPort, CompletionKey,
1042           iosb, NumberOfBytesTransferred, NumberOfBytesToTransfer);
1043     return STATUS_NOT_IMPLEMENTED;
1044 }
1045
1046 NTSTATUS WINAPI NtRemoveIoCompletion( HANDLE CompletionPort, PULONG_PTR CompletionKey,
1047                                       PIO_STATUS_BLOCK iosb, PULONG OperationStatus,
1048                                       PLARGE_INTEGER WaitTime )
1049 {
1050     FIXME("(%p, %p, %p, %p, %p)\n", CompletionPort, CompletionKey,
1051           iosb, OperationStatus, WaitTime);
1052     return STATUS_NOT_IMPLEMENTED;
1053 }