2 * Process synchronisation
4 * Copyright 1996, 1997, 1998 Marcus Meissner
5 * Copyright 1997, 1999 Alexandre Julliard
6 * Copyright 1999, 2000 Juergen Schmied
7 * Copyright 2003 Eric Pouech
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.
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.
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
29 #ifdef HAVE_SYS_TIME_H
30 # include <sys/time.h>
35 #ifdef HAVE_SYS_POLL_H
36 # include <sys/poll.h>
50 #define NONAMELESSUNION
51 #define NONAMELESSSTRUCT
54 #define WIN32_NO_STATUS
57 #include "wine/server.h"
58 #include "wine/debug.h"
59 #include "ntdll_misc.h"
61 WINE_DEFAULT_DEBUG_CHANNEL(ntdll
);
63 /* creates a struct security_descriptor and contained information in one contiguous piece of memory */
64 NTSTATUS
NTDLL_create_struct_sd(PSECURITY_DESCRIPTOR nt_sd
, struct security_descriptor
**server_sd
,
65 data_size_t
*server_sd_len
)
70 BOOLEAN owner_present
, group_present
, dacl_present
, sacl_present
;
79 return STATUS_SUCCESS
;
82 len
= sizeof(struct security_descriptor
);
84 status
= RtlGetOwnerSecurityDescriptor(nt_sd
, &owner
, &owner_present
);
85 if (status
!= STATUS_SUCCESS
) return status
;
86 status
= RtlGetGroupSecurityDescriptor(nt_sd
, &group
, &group_present
);
87 if (status
!= STATUS_SUCCESS
) return status
;
88 status
= RtlGetSaclSecurityDescriptor(nt_sd
, &sacl_present
, &sacl
, &defaulted
);
89 if (status
!= STATUS_SUCCESS
) return status
;
90 status
= RtlGetDaclSecurityDescriptor(nt_sd
, &dacl_present
, &dacl
, &defaulted
);
91 if (status
!= STATUS_SUCCESS
) return status
;
94 len
+= RtlLengthSid(owner
);
96 len
+= RtlLengthSid(group
);
97 if (sacl_present
&& sacl
)
99 if (dacl_present
&& dacl
)
100 len
+= dacl
->AclSize
;
102 /* fix alignment for the Unicode name that follows the structure */
103 len
= (len
+ sizeof(WCHAR
) - 1) & ~(sizeof(WCHAR
) - 1);
104 *server_sd
= RtlAllocateHeap(GetProcessHeap(), 0, len
);
105 if (!*server_sd
) return STATUS_NO_MEMORY
;
107 (*server_sd
)->control
= ((SECURITY_DESCRIPTOR
*)nt_sd
)->Control
& ~SE_SELF_RELATIVE
;
108 (*server_sd
)->owner_len
= owner_present
? RtlLengthSid(owner
) : 0;
109 (*server_sd
)->group_len
= group_present
? RtlLengthSid(group
) : 0;
110 (*server_sd
)->sacl_len
= (sacl_present
&& sacl
) ? sacl
->AclSize
: 0;
111 (*server_sd
)->dacl_len
= (dacl_present
&& dacl
) ? dacl
->AclSize
: 0;
113 ptr
= (unsigned char *)(*server_sd
+ 1);
114 memcpy(ptr
, owner
, (*server_sd
)->owner_len
);
115 ptr
+= (*server_sd
)->owner_len
;
116 memcpy(ptr
, group
, (*server_sd
)->group_len
);
117 ptr
+= (*server_sd
)->group_len
;
118 memcpy(ptr
, sacl
, (*server_sd
)->sacl_len
);
119 ptr
+= (*server_sd
)->sacl_len
;
120 memcpy(ptr
, dacl
, (*server_sd
)->dacl_len
);
122 *server_sd_len
= len
;
124 return STATUS_SUCCESS
;
127 /* frees a struct security_descriptor allocated by NTDLL_create_struct_sd */
128 void NTDLL_free_struct_sd(struct security_descriptor
*server_sd
)
130 RtlFreeHeap(GetProcessHeap(), 0, server_sd
);
137 /******************************************************************************
138 * NtCreateSemaphore (NTDLL.@)
140 NTSTATUS WINAPI
NtCreateSemaphore( OUT PHANDLE SemaphoreHandle
,
141 IN ACCESS_MASK access
,
142 IN
const OBJECT_ATTRIBUTES
*attr OPTIONAL
,
143 IN LONG InitialCount
,
144 IN LONG MaximumCount
)
146 DWORD len
= attr
&& attr
->ObjectName
? attr
->ObjectName
->Length
: 0;
148 struct object_attributes objattr
;
149 struct security_descriptor
*sd
= NULL
;
151 if (MaximumCount
<= 0 || InitialCount
< 0 || InitialCount
> MaximumCount
)
152 return STATUS_INVALID_PARAMETER
;
153 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
155 objattr
.rootdir
= attr
? attr
->RootDirectory
: 0;
157 objattr
.name_len
= len
;
160 ret
= NTDLL_create_struct_sd( attr
->SecurityDescriptor
, &sd
, &objattr
.sd_len
);
161 if (ret
!= STATUS_SUCCESS
) return ret
;
164 SERVER_START_REQ( create_semaphore
)
166 req
->access
= access
;
167 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
168 req
->initial
= InitialCount
;
169 req
->max
= MaximumCount
;
170 wine_server_add_data( req
, &objattr
, sizeof(objattr
) );
171 if (objattr
.sd_len
) wine_server_add_data( req
, sd
, objattr
.sd_len
);
172 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
173 ret
= wine_server_call( req
);
174 *SemaphoreHandle
= reply
->handle
;
178 NTDLL_free_struct_sd( sd
);
183 /******************************************************************************
184 * NtOpenSemaphore (NTDLL.@)
186 NTSTATUS WINAPI
NtOpenSemaphore( OUT PHANDLE SemaphoreHandle
,
187 IN ACCESS_MASK access
,
188 IN
const OBJECT_ATTRIBUTES
*attr
)
190 DWORD len
= attr
&& attr
->ObjectName
? attr
->ObjectName
->Length
: 0;
193 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
195 SERVER_START_REQ( open_semaphore
)
197 req
->access
= access
;
198 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
199 req
->rootdir
= attr
? attr
->RootDirectory
: 0;
200 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
201 ret
= wine_server_call( req
);
202 *SemaphoreHandle
= reply
->handle
;
208 /******************************************************************************
209 * NtQuerySemaphore (NTDLL.@)
211 NTSTATUS WINAPI
NtQuerySemaphore(
212 HANDLE SemaphoreHandle
,
213 SEMAPHORE_INFORMATION_CLASS SemaphoreInformationClass
,
214 PVOID SemaphoreInformation
,
218 FIXME("(%p,%d,%p,0x%08x,%p) stub!\n",
219 SemaphoreHandle
, SemaphoreInformationClass
, SemaphoreInformation
, Length
, ReturnLength
);
220 return STATUS_SUCCESS
;
223 /******************************************************************************
224 * NtReleaseSemaphore (NTDLL.@)
226 NTSTATUS WINAPI
NtReleaseSemaphore( HANDLE handle
, ULONG count
, PULONG previous
)
229 SERVER_START_REQ( release_semaphore
)
231 req
->handle
= handle
;
233 if (!(ret
= wine_server_call( req
)))
235 if (previous
) *previous
= reply
->prev_count
;
246 /**************************************************************************
247 * NtCreateEvent (NTDLL.@)
248 * ZwCreateEvent (NTDLL.@)
250 NTSTATUS WINAPI
NtCreateEvent(
251 OUT PHANDLE EventHandle
,
252 IN ACCESS_MASK DesiredAccess
,
253 IN
const OBJECT_ATTRIBUTES
*attr
,
254 IN BOOLEAN ManualReset
,
255 IN BOOLEAN InitialState
)
257 DWORD len
= attr
&& attr
->ObjectName
? attr
->ObjectName
->Length
: 0;
259 struct security_descriptor
*sd
= NULL
;
260 struct object_attributes objattr
;
262 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
264 objattr
.rootdir
= attr
? attr
->RootDirectory
: 0;
266 objattr
.name_len
= len
;
269 ret
= NTDLL_create_struct_sd( attr
->SecurityDescriptor
, &sd
, &objattr
.sd_len
);
270 if (ret
!= STATUS_SUCCESS
) return ret
;
273 SERVER_START_REQ( create_event
)
275 req
->access
= DesiredAccess
;
276 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
277 req
->manual_reset
= ManualReset
;
278 req
->initial_state
= InitialState
;
279 wine_server_add_data( req
, &objattr
, sizeof(objattr
) );
280 if (objattr
.sd_len
) wine_server_add_data( req
, sd
, objattr
.sd_len
);
281 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
282 ret
= wine_server_call( req
);
283 *EventHandle
= reply
->handle
;
287 NTDLL_free_struct_sd( sd
);
292 /******************************************************************************
293 * NtOpenEvent (NTDLL.@)
294 * ZwOpenEvent (NTDLL.@)
296 NTSTATUS WINAPI
NtOpenEvent(
297 OUT PHANDLE EventHandle
,
298 IN ACCESS_MASK DesiredAccess
,
299 IN
const OBJECT_ATTRIBUTES
*attr
)
301 DWORD len
= attr
&& attr
->ObjectName
? attr
->ObjectName
->Length
: 0;
304 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
306 SERVER_START_REQ( open_event
)
308 req
->access
= DesiredAccess
;
309 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
310 req
->rootdir
= attr
? attr
->RootDirectory
: 0;
311 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
312 ret
= wine_server_call( req
);
313 *EventHandle
= reply
->handle
;
320 /******************************************************************************
321 * NtSetEvent (NTDLL.@)
322 * ZwSetEvent (NTDLL.@)
324 NTSTATUS WINAPI
NtSetEvent( HANDLE handle
, PULONG NumberOfThreadsReleased
)
328 /* FIXME: set NumberOfThreadsReleased */
330 SERVER_START_REQ( event_op
)
332 req
->handle
= handle
;
334 ret
= wine_server_call( req
);
340 /******************************************************************************
341 * NtResetEvent (NTDLL.@)
343 NTSTATUS WINAPI
NtResetEvent( HANDLE handle
, PULONG NumberOfThreadsReleased
)
347 /* resetting an event can't release any thread... */
348 if (NumberOfThreadsReleased
) *NumberOfThreadsReleased
= 0;
350 SERVER_START_REQ( event_op
)
352 req
->handle
= handle
;
353 req
->op
= RESET_EVENT
;
354 ret
= wine_server_call( req
);
360 /******************************************************************************
361 * NtClearEvent (NTDLL.@)
364 * same as NtResetEvent ???
366 NTSTATUS WINAPI
NtClearEvent ( HANDLE handle
)
368 return NtResetEvent( handle
, NULL
);
371 /******************************************************************************
372 * NtPulseEvent (NTDLL.@)
377 NTSTATUS WINAPI
NtPulseEvent( HANDLE handle
, PULONG PulseCount
)
382 FIXME("(%p,%d)\n", handle
, *PulseCount
);
384 SERVER_START_REQ( event_op
)
386 req
->handle
= handle
;
387 req
->op
= PULSE_EVENT
;
388 ret
= wine_server_call( req
);
394 /******************************************************************************
395 * NtQueryEvent (NTDLL.@)
397 NTSTATUS WINAPI
NtQueryEvent (
398 IN HANDLE EventHandle
,
399 IN EVENT_INFORMATION_CLASS EventInformationClass
,
400 OUT PVOID EventInformation
,
401 IN ULONG EventInformationLength
,
402 OUT PULONG ReturnLength
)
404 FIXME("(%p)\n", EventHandle
);
405 return STATUS_SUCCESS
;
409 * Mutants (known as Mutexes in Kernel32)
412 /******************************************************************************
413 * NtCreateMutant [NTDLL.@]
414 * ZwCreateMutant [NTDLL.@]
416 NTSTATUS WINAPI
NtCreateMutant(OUT HANDLE
* MutantHandle
,
417 IN ACCESS_MASK access
,
418 IN
const OBJECT_ATTRIBUTES
* attr OPTIONAL
,
419 IN BOOLEAN InitialOwner
)
422 DWORD len
= attr
&& attr
->ObjectName
? attr
->ObjectName
->Length
: 0;
423 struct security_descriptor
*sd
= NULL
;
424 struct object_attributes objattr
;
426 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
428 objattr
.rootdir
= attr
? attr
->RootDirectory
: 0;
430 objattr
.name_len
= len
;
433 status
= NTDLL_create_struct_sd( attr
->SecurityDescriptor
, &sd
, &objattr
.sd_len
);
434 if (status
!= STATUS_SUCCESS
) return status
;
437 SERVER_START_REQ( create_mutex
)
439 req
->access
= access
;
440 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
441 req
->owned
= InitialOwner
;
442 wine_server_add_data( req
, &objattr
, sizeof(objattr
) );
443 if (objattr
.sd_len
) wine_server_add_data( req
, sd
, objattr
.sd_len
);
444 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
445 status
= wine_server_call( req
);
446 *MutantHandle
= reply
->handle
;
450 NTDLL_free_struct_sd( sd
);
455 /**************************************************************************
456 * NtOpenMutant [NTDLL.@]
457 * ZwOpenMutant [NTDLL.@]
459 NTSTATUS WINAPI
NtOpenMutant(OUT HANDLE
* MutantHandle
,
460 IN ACCESS_MASK access
,
461 IN
const OBJECT_ATTRIBUTES
* attr
)
464 DWORD len
= attr
&& attr
->ObjectName
? attr
->ObjectName
->Length
: 0;
466 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
468 SERVER_START_REQ( open_mutex
)
470 req
->access
= access
;
471 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
472 req
->rootdir
= attr
? attr
->RootDirectory
: 0;
473 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
474 status
= wine_server_call( req
);
475 *MutantHandle
= reply
->handle
;
481 /**************************************************************************
482 * NtReleaseMutant [NTDLL.@]
483 * ZwReleaseMutant [NTDLL.@]
485 NTSTATUS WINAPI
NtReleaseMutant( IN HANDLE handle
, OUT PLONG prev_count OPTIONAL
)
489 SERVER_START_REQ( release_mutex
)
491 req
->handle
= handle
;
492 status
= wine_server_call( req
);
493 if (prev_count
) *prev_count
= reply
->prev_count
;
499 /******************************************************************
500 * NtQueryMutant [NTDLL.@]
501 * ZwQueryMutant [NTDLL.@]
503 NTSTATUS WINAPI
NtQueryMutant(IN HANDLE handle
,
504 IN MUTANT_INFORMATION_CLASS MutantInformationClass
,
505 OUT PVOID MutantInformation
,
506 IN ULONG MutantInformationLength
,
507 OUT PULONG ResultLength OPTIONAL
)
509 FIXME("(%p %u %p %u %p): stub!\n",
510 handle
, MutantInformationClass
, MutantInformation
, MutantInformationLength
, ResultLength
);
511 return STATUS_NOT_IMPLEMENTED
;
518 /**************************************************************************
519 * NtCreateTimer [NTDLL.@]
520 * ZwCreateTimer [NTDLL.@]
522 NTSTATUS WINAPI
NtCreateTimer(OUT HANDLE
*handle
,
523 IN ACCESS_MASK access
,
524 IN
const OBJECT_ATTRIBUTES
*attr OPTIONAL
,
525 IN TIMER_TYPE timer_type
)
527 DWORD len
= (attr
&& attr
->ObjectName
) ? attr
->ObjectName
->Length
: 0;
530 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
532 if (timer_type
!= NotificationTimer
&& timer_type
!= SynchronizationTimer
)
533 return STATUS_INVALID_PARAMETER
;
535 SERVER_START_REQ( create_timer
)
537 req
->access
= access
;
538 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
539 req
->rootdir
= attr
? attr
->RootDirectory
: 0;
540 req
->manual
= (timer_type
== NotificationTimer
) ? TRUE
: FALSE
;
541 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
542 status
= wine_server_call( req
);
543 *handle
= reply
->handle
;
550 /**************************************************************************
551 * NtOpenTimer [NTDLL.@]
552 * ZwOpenTimer [NTDLL.@]
554 NTSTATUS WINAPI
NtOpenTimer(OUT PHANDLE handle
,
555 IN ACCESS_MASK access
,
556 IN
const OBJECT_ATTRIBUTES
* attr
)
558 DWORD len
= (attr
&& attr
->ObjectName
) ? attr
->ObjectName
->Length
: 0;
561 if (len
>= MAX_PATH
* sizeof(WCHAR
)) return STATUS_NAME_TOO_LONG
;
563 SERVER_START_REQ( open_timer
)
565 req
->access
= access
;
566 req
->attributes
= (attr
) ? attr
->Attributes
: 0;
567 req
->rootdir
= attr
? attr
->RootDirectory
: 0;
568 if (len
) wine_server_add_data( req
, attr
->ObjectName
->Buffer
, len
);
569 status
= wine_server_call( req
);
570 *handle
= reply
->handle
;
576 /**************************************************************************
577 * NtSetTimer [NTDLL.@]
578 * ZwSetTimer [NTDLL.@]
580 NTSTATUS WINAPI
NtSetTimer(IN HANDLE handle
,
581 IN
const LARGE_INTEGER
* when
,
582 IN PTIMER_APC_ROUTINE callback
,
583 IN PVOID callback_arg
,
585 IN ULONG period OPTIONAL
,
586 OUT PBOOLEAN state OPTIONAL
)
588 NTSTATUS status
= STATUS_SUCCESS
;
590 TRACE("(%p,%p,%p,%p,%08x,0x%08x,%p) stub\n",
591 handle
, when
, callback
, callback_arg
, resume
, period
, state
);
593 SERVER_START_REQ( set_timer
)
595 req
->handle
= handle
;
596 req
->period
= period
;
597 req
->expire
= when
->QuadPart
;
598 req
->callback
= callback
;
599 req
->arg
= callback_arg
;
600 status
= wine_server_call( req
);
601 if (state
) *state
= reply
->signaled
;
605 /* set error but can still succeed */
606 if (resume
&& status
== STATUS_SUCCESS
) return STATUS_TIMER_RESUME_IGNORED
;
610 /**************************************************************************
611 * NtCancelTimer [NTDLL.@]
612 * ZwCancelTimer [NTDLL.@]
614 NTSTATUS WINAPI
NtCancelTimer(IN HANDLE handle
, OUT BOOLEAN
* state
)
618 SERVER_START_REQ( cancel_timer
)
620 req
->handle
= handle
;
621 status
= wine_server_call( req
);
622 if (state
) *state
= reply
->signaled
;
628 /******************************************************************************
629 * NtQueryTimer (NTDLL.@)
631 * Retrieves information about a timer.
634 * TimerHandle [I] The timer to retrieve information about.
635 * TimerInformationClass [I] The type of information to retrieve.
636 * TimerInformation [O] Pointer to buffer to store information in.
637 * Length [I] The length of the buffer pointed to by TimerInformation.
638 * ReturnLength [O] Optional. The size of buffer actually used.
641 * Success: STATUS_SUCCESS
642 * Failure: STATUS_INFO_LENGTH_MISMATCH, if Length doesn't match the required data
643 * size for the class specified.
644 * STATUS_INVALID_INFO_CLASS, if an invalid TimerInformationClass was specified.
645 * STATUS_ACCESS_DENIED, if TimerHandle does not have TIMER_QUERY_STATE access
648 NTSTATUS WINAPI
NtQueryTimer(
650 TIMER_INFORMATION_CLASS TimerInformationClass
,
651 PVOID TimerInformation
,
655 TIMER_BASIC_INFORMATION
* basic_info
= (TIMER_BASIC_INFORMATION
*)TimerInformation
;
659 TRACE("(%p,%d,%p,0x%08x,%p)\n", TimerHandle
, TimerInformationClass
,
660 TimerInformation
, Length
, ReturnLength
);
662 switch (TimerInformationClass
)
664 case TimerBasicInformation
:
665 if (Length
< sizeof(TIMER_BASIC_INFORMATION
))
666 return STATUS_INFO_LENGTH_MISMATCH
;
668 SERVER_START_REQ(get_timer_info
)
670 req
->handle
= TimerHandle
;
671 status
= wine_server_call(req
);
673 /* convert server time to absolute NTDLL time */
674 basic_info
->RemainingTime
.QuadPart
= reply
->when
;
675 basic_info
->TimerState
= reply
->signaled
;
679 /* convert from absolute into relative time */
680 NtQuerySystemTime(&now
);
681 if (now
.QuadPart
> basic_info
->RemainingTime
.QuadPart
)
682 basic_info
->RemainingTime
.QuadPart
= 0;
684 basic_info
->RemainingTime
.QuadPart
-= now
.QuadPart
;
686 if (ReturnLength
) *ReturnLength
= sizeof(TIMER_BASIC_INFORMATION
);
691 FIXME("Unhandled class %d\n", TimerInformationClass
);
692 return STATUS_INVALID_INFO_CLASS
;
696 /******************************************************************************
697 * NtQueryTimerResolution [NTDLL.@]
699 NTSTATUS WINAPI
NtQueryTimerResolution(OUT ULONG
* min_resolution
,
700 OUT ULONG
* max_resolution
,
701 OUT ULONG
* current_resolution
)
703 FIXME("(%p,%p,%p), stub!\n",
704 min_resolution
, max_resolution
, current_resolution
);
706 return STATUS_NOT_IMPLEMENTED
;
709 /******************************************************************************
710 * NtSetTimerResolution [NTDLL.@]
712 NTSTATUS WINAPI
NtSetTimerResolution(IN ULONG resolution
,
713 IN BOOLEAN set_resolution
,
714 OUT ULONG
* current_resolution
)
716 FIXME("(%u,%u,%p), stub!\n",
717 resolution
, set_resolution
, current_resolution
);
719 return STATUS_NOT_IMPLEMENTED
;
723 /***********************************************************************
726 * Wait for a reply on the waiting pipe of the current thread.
728 static int wait_reply( void *cookie
)
731 struct wake_up_reply reply
;
735 ret
= read( ntdll_get_thread_data()->wait_fd
[0], &reply
, sizeof(reply
) );
736 if (ret
== sizeof(reply
))
738 if (!reply
.cookie
) break; /* thread got killed */
739 if (reply
.cookie
== cookie
) return reply
.signaled
;
740 /* we stole another reply, wait for the real one */
741 signaled
= wait_reply( cookie
);
742 /* and now put the wrong one back in the pipe */
745 ret
= write( ntdll_get_thread_data()->wait_fd
[1], &reply
, sizeof(reply
) );
746 if (ret
== sizeof(reply
)) break;
747 if (ret
>= 0) server_protocol_error( "partial wakeup write %d\n", ret
);
748 if (errno
== EINTR
) continue;
749 server_protocol_perror("wakeup write");
753 if (ret
>= 0) server_protocol_error( "partial wakeup read %d\n", ret
);
754 if (errno
== EINTR
) continue;
755 server_protocol_perror("wakeup read");
757 /* the server closed the connection; time to die... */
758 server_abort_thread(0);
762 /***********************************************************************
765 * Invoke a single APC. Return TRUE if a user APC has been run.
767 static BOOL
invoke_apc( const apc_call_t
*call
, apc_result_t
*result
)
769 BOOL user_apc
= FALSE
;
771 memset( result
, 0, sizeof(*result
) );
778 call
->user
.func( call
->user
.args
[0], call
->user
.args
[1], call
->user
.args
[2] );
782 call
->timer
.func( call
->timer
.arg
, (DWORD
)call
->timer
.time
, (DWORD
)(call
->timer
.time
>> 32) );
786 result
->type
= call
->type
;
787 result
->async_io
.status
= call
->async_io
.func( call
->async_io
.user
,
789 call
->async_io
.status
,
790 &result
->async_io
.total
);
792 case APC_VIRTUAL_ALLOC
:
793 result
->type
= call
->type
;
794 result
->virtual_alloc
.addr
= call
->virtual_alloc
.addr
;
795 result
->virtual_alloc
.size
= call
->virtual_alloc
.size
;
796 result
->virtual_alloc
.status
= NtAllocateVirtualMemory( NtCurrentProcess(),
797 &result
->virtual_alloc
.addr
,
798 call
->virtual_alloc
.zero_bits
,
799 &result
->virtual_alloc
.size
,
800 call
->virtual_alloc
.op_type
,
801 call
->virtual_alloc
.prot
);
803 case APC_VIRTUAL_FREE
:
804 result
->type
= call
->type
;
805 result
->virtual_free
.addr
= call
->virtual_free
.addr
;
806 result
->virtual_free
.size
= call
->virtual_free
.size
;
807 result
->virtual_free
.status
= NtFreeVirtualMemory( NtCurrentProcess(),
808 &result
->virtual_free
.addr
,
809 &result
->virtual_free
.size
,
810 call
->virtual_free
.op_type
);
812 case APC_VIRTUAL_QUERY
:
814 MEMORY_BASIC_INFORMATION info
;
815 result
->type
= call
->type
;
816 result
->virtual_query
.status
= NtQueryVirtualMemory( NtCurrentProcess(),
817 call
->virtual_query
.addr
,
818 MemoryBasicInformation
, &info
,
819 sizeof(info
), NULL
);
820 if (result
->virtual_query
.status
== STATUS_SUCCESS
)
822 result
->virtual_query
.base
= info
.BaseAddress
;
823 result
->virtual_query
.alloc_base
= info
.AllocationBase
;
824 result
->virtual_query
.size
= info
.RegionSize
;
825 result
->virtual_query
.state
= info
.State
;
826 result
->virtual_query
.prot
= info
.Protect
;
827 result
->virtual_query
.alloc_prot
= info
.AllocationProtect
;
828 result
->virtual_query
.alloc_type
= info
.Type
;
832 case APC_VIRTUAL_PROTECT
:
833 result
->type
= call
->type
;
834 result
->virtual_protect
.addr
= call
->virtual_protect
.addr
;
835 result
->virtual_protect
.size
= call
->virtual_protect
.size
;
836 result
->virtual_protect
.status
= NtProtectVirtualMemory( NtCurrentProcess(),
837 &result
->virtual_protect
.addr
,
838 &result
->virtual_protect
.size
,
839 call
->virtual_protect
.prot
,
840 &result
->virtual_protect
.prot
);
842 case APC_VIRTUAL_FLUSH
:
843 result
->type
= call
->type
;
844 result
->virtual_flush
.addr
= call
->virtual_flush
.addr
;
845 result
->virtual_flush
.size
= call
->virtual_flush
.size
;
846 result
->virtual_flush
.status
= NtFlushVirtualMemory( NtCurrentProcess(),
847 &result
->virtual_flush
.addr
,
848 &result
->virtual_flush
.size
, 0 );
850 case APC_VIRTUAL_LOCK
:
851 result
->type
= call
->type
;
852 result
->virtual_lock
.addr
= call
->virtual_lock
.addr
;
853 result
->virtual_lock
.size
= call
->virtual_lock
.size
;
854 result
->virtual_lock
.status
= NtLockVirtualMemory( NtCurrentProcess(),
855 &result
->virtual_lock
.addr
,
856 &result
->virtual_lock
.size
, 0 );
858 case APC_VIRTUAL_UNLOCK
:
859 result
->type
= call
->type
;
860 result
->virtual_unlock
.addr
= call
->virtual_unlock
.addr
;
861 result
->virtual_unlock
.size
= call
->virtual_unlock
.size
;
862 result
->virtual_unlock
.status
= NtUnlockVirtualMemory( NtCurrentProcess(),
863 &result
->virtual_unlock
.addr
,
864 &result
->virtual_unlock
.size
, 0 );
868 LARGE_INTEGER offset
;
869 result
->type
= call
->type
;
870 result
->map_view
.addr
= call
->map_view
.addr
;
871 result
->map_view
.size
= call
->map_view
.size
;
872 offset
.QuadPart
= call
->map_view
.offset
;
873 result
->map_view
.status
= NtMapViewOfSection( call
->map_view
.handle
, NtCurrentProcess(),
874 &result
->map_view
.addr
, call
->map_view
.zero_bits
,
875 0, &offset
, &result
->map_view
.size
, ViewShare
,
876 call
->map_view
.alloc_type
, call
->map_view
.prot
);
877 NtClose( call
->map_view
.handle
);
881 result
->type
= call
->type
;
882 result
->unmap_view
.status
= NtUnmapViewOfSection( NtCurrentProcess(), call
->unmap_view
.addr
);
884 case APC_CREATE_THREAD
:
887 result
->type
= call
->type
;
888 result
->create_thread
.status
= RtlCreateUserThread( NtCurrentProcess(), NULL
,
889 call
->create_thread
.suspend
, NULL
,
890 call
->create_thread
.reserve
,
891 call
->create_thread
.commit
,
892 call
->create_thread
.func
,
893 call
->create_thread
.arg
,
894 &result
->create_thread
.handle
, &id
);
895 result
->create_thread
.tid
= HandleToULong(id
.UniqueThread
);
899 server_protocol_error( "get_apc_request: bad type %d\n", call
->type
);
905 /***********************************************************************
906 * NTDLL_queue_process_apc
908 NTSTATUS
NTDLL_queue_process_apc( HANDLE process
, const apc_call_t
*call
, apc_result_t
*result
)
916 SERVER_START_REQ( queue_apc
)
918 req
->process
= process
;
920 if (!(ret
= wine_server_call( req
)))
922 handle
= reply
->handle
;
927 if (ret
!= STATUS_SUCCESS
) return ret
;
931 invoke_apc( call
, result
);
935 NtWaitForSingleObject( handle
, FALSE
, NULL
);
937 SERVER_START_REQ( get_apc_result
)
939 req
->handle
= handle
;
940 if (!(ret
= wine_server_call( req
))) *result
= reply
->result
;
944 if (!ret
&& result
->type
== APC_NONE
) continue; /* APC didn't run, try again */
945 if (ret
) NtClose( handle
);
952 /***********************************************************************
953 * NTDLL_wait_for_multiple_objects
955 * Implementation of NtWaitForMultipleObjects
957 NTSTATUS
NTDLL_wait_for_multiple_objects( UINT count
, const HANDLE
*handles
, UINT flags
,
958 const LARGE_INTEGER
*timeout
, HANDLE signal_object
)
962 BOOL user_apc
= FALSE
;
963 obj_handle_t apc_handle
= 0;
966 timeout_t abs_timeout
= timeout
? timeout
->QuadPart
: TIMEOUT_INFINITE
;
968 memset( &result
, 0, sizeof(result
) );
972 SERVER_START_REQ( select
)
975 req
->cookie
= &cookie
;
976 req
->signal
= signal_object
;
977 req
->prev_apc
= apc_handle
;
978 req
->timeout
= abs_timeout
;
979 wine_server_add_data( req
, &result
, sizeof(result
) );
980 wine_server_add_data( req
, handles
, count
* sizeof(HANDLE
) );
981 ret
= wine_server_call( req
);
982 abs_timeout
= reply
->timeout
;
983 apc_handle
= reply
->apc_handle
;
987 if (ret
== STATUS_PENDING
) ret
= wait_reply( &cookie
);
988 if (ret
!= STATUS_USER_APC
) break;
989 if (invoke_apc( &call
, &result
))
991 /* if we ran a user apc we have to check once more if an object got signaled,
992 * but we don't want to wait */
996 signal_object
= 0; /* don't signal it multiple times */
999 if (ret
== STATUS_TIMEOUT
&& user_apc
) ret
= STATUS_USER_APC
;
1001 /* A test on Windows 2000 shows that Windows always yields during
1002 a wait, but a wait that is hit by an event gets a priority
1003 boost as well. This seems to model that behavior the closest. */
1004 if (ret
== STATUS_TIMEOUT
) NtYieldExecution();
1010 /* wait operations */
1012 /******************************************************************
1013 * NtWaitForMultipleObjects (NTDLL.@)
1015 NTSTATUS WINAPI
NtWaitForMultipleObjects( DWORD count
, const HANDLE
*handles
,
1016 BOOLEAN wait_all
, BOOLEAN alertable
,
1017 const LARGE_INTEGER
*timeout
)
1019 UINT flags
= SELECT_INTERRUPTIBLE
;
1021 if (!count
|| count
> MAXIMUM_WAIT_OBJECTS
) return STATUS_INVALID_PARAMETER_1
;
1023 if (wait_all
) flags
|= SELECT_ALL
;
1024 if (alertable
) flags
|= SELECT_ALERTABLE
;
1025 return NTDLL_wait_for_multiple_objects( count
, handles
, flags
, timeout
, 0 );
1029 /******************************************************************
1030 * NtWaitForSingleObject (NTDLL.@)
1032 NTSTATUS WINAPI
NtWaitForSingleObject(HANDLE handle
, BOOLEAN alertable
, const LARGE_INTEGER
*timeout
)
1034 return NtWaitForMultipleObjects( 1, &handle
, FALSE
, alertable
, timeout
);
1038 /******************************************************************
1039 * NtSignalAndWaitForSingleObject (NTDLL.@)
1041 NTSTATUS WINAPI
NtSignalAndWaitForSingleObject( HANDLE hSignalObject
, HANDLE hWaitObject
,
1042 BOOLEAN alertable
, const LARGE_INTEGER
*timeout
)
1044 UINT flags
= SELECT_INTERRUPTIBLE
;
1046 if (!hSignalObject
) return STATUS_INVALID_HANDLE
;
1047 if (alertable
) flags
|= SELECT_ALERTABLE
;
1048 return NTDLL_wait_for_multiple_objects( 1, &hWaitObject
, flags
, timeout
, hSignalObject
);
1052 /******************************************************************
1053 * NtYieldExecution (NTDLL.@)
1055 NTSTATUS WINAPI
NtYieldExecution(void)
1057 #ifdef HAVE_SCHED_YIELD
1059 return STATUS_SUCCESS
;
1061 return STATUS_NO_YIELD_PERFORMED
;
1066 /******************************************************************
1067 * NtDelayExecution (NTDLL.@)
1069 NTSTATUS WINAPI
NtDelayExecution( BOOLEAN alertable
, const LARGE_INTEGER
*timeout
)
1071 /* if alertable, we need to query the server */
1073 return NTDLL_wait_for_multiple_objects( 0, NULL
, SELECT_INTERRUPTIBLE
| SELECT_ALERTABLE
,
1076 if (!timeout
|| timeout
->QuadPart
== TIMEOUT_INFINITE
) /* sleep forever */
1078 for (;;) select( 0, NULL
, NULL
, NULL
, NULL
);
1083 timeout_t when
, diff
;
1085 if ((when
= timeout
->QuadPart
) < 0)
1087 NtQuerySystemTime( &now
);
1088 when
= now
.QuadPart
- when
;
1091 /* Note that we yield after establishing the desired timeout */
1093 if (!when
) return STATUS_SUCCESS
;
1098 NtQuerySystemTime( &now
);
1099 diff
= (when
- now
.QuadPart
+ 9) / 10;
1100 if (diff
<= 0) break;
1101 tv
.tv_sec
= diff
/ 1000000;
1102 tv
.tv_usec
= diff
% 1000000;
1103 if (select( 0, NULL
, NULL
, NULL
, &tv
) != -1) break;
1106 return STATUS_SUCCESS
;
1109 /******************************************************************
1110 * NtCreateIoCompletion (NTDLL.@)
1111 * ZwCreateIoCompletion (NTDLL.@)
1113 * Creates I/O completion object.
1116 * CompletionPort [O] created completion object handle will be placed there
1117 * DesiredAccess [I] desired access to a handle (combination of IO_COMPLETION_*)
1118 * ObjectAttributes [I] completion object attributes
1119 * NumberOfConcurrentThreads [I] desired number of concurrent active worker threads
1122 NTSTATUS WINAPI
NtCreateIoCompletion( PHANDLE CompletionPort
, ACCESS_MASK DesiredAccess
,
1123 POBJECT_ATTRIBUTES ObjectAttributes
, ULONG NumberOfConcurrentThreads
)
1127 TRACE("(%p, %x, %p, %d)\n", CompletionPort
, DesiredAccess
,
1128 ObjectAttributes
, NumberOfConcurrentThreads
);
1130 if (!CompletionPort
)
1131 return STATUS_INVALID_PARAMETER
;
1133 SERVER_START_REQ( create_completion
)
1135 req
->access
= DesiredAccess
;
1136 req
->attributes
= ObjectAttributes
? ObjectAttributes
->Attributes
: 0;
1137 req
->rootdir
= ObjectAttributes
? ObjectAttributes
->RootDirectory
: NULL
;
1138 req
->concurrent
= NumberOfConcurrentThreads
;
1139 if (ObjectAttributes
&& ObjectAttributes
->ObjectName
)
1140 wine_server_add_data( req
, ObjectAttributes
->ObjectName
->Buffer
,
1141 ObjectAttributes
->ObjectName
->Length
);
1142 if (!(status
= wine_server_call( req
)))
1143 *CompletionPort
= reply
->handle
;
1149 /******************************************************************
1150 * NtSetIoCompletion (NTDLL.@)
1151 * ZwSetIoCompletion (NTDLL.@)
1153 * Inserts completion message into queue
1156 * CompletionPort [I] HANDLE to completion object
1157 * CompletionKey [I] completion key
1158 * CompletionValue [I] completion value (usually pointer to OVERLAPPED)
1159 * Status [I] operation status
1160 * NumberOfBytesTransferred [I] number of bytes transferred
1162 NTSTATUS WINAPI
NtSetIoCompletion( HANDLE CompletionPort
, ULONG_PTR CompletionKey
,
1163 ULONG_PTR CompletionValue
, NTSTATUS Status
,
1164 ULONG NumberOfBytesTransferred
)
1168 TRACE("(%p, %lx, %lx, %x, %d)\n", CompletionPort
, CompletionKey
,
1169 CompletionValue
, Status
, NumberOfBytesTransferred
);
1171 SERVER_START_REQ( add_completion
)
1173 req
->handle
= CompletionPort
;
1174 req
->ckey
= CompletionKey
;
1175 req
->cvalue
= CompletionValue
;
1176 req
->status
= Status
;
1177 req
->information
= NumberOfBytesTransferred
;
1178 status
= wine_server_call( req
);
1184 /******************************************************************
1185 * NtRemoveIoCompletion (NTDLL.@)
1186 * ZwRemoveIoCompletion (NTDLL.@)
1188 * (Wait for and) retrieve first completion message from completion object's queue
1191 * CompletionPort [I] HANDLE to I/O completion object
1192 * CompletionKey [O] completion key
1193 * CompletionValue [O] Completion value given in NtSetIoCompletion or in async operation
1194 * iosb [O] IO_STATUS_BLOCK of completed asynchronous operation
1195 * WaitTime [I] optional wait time in NTDLL format
1198 NTSTATUS WINAPI
NtRemoveIoCompletion( HANDLE CompletionPort
, PULONG_PTR CompletionKey
,
1199 PULONG_PTR CompletionValue
, PIO_STATUS_BLOCK iosb
,
1200 PLARGE_INTEGER WaitTime
)
1204 TRACE("(%p, %p, %p, %p, %p)\n", CompletionPort
, CompletionKey
,
1205 CompletionValue
, iosb
, WaitTime
);
1209 SERVER_START_REQ( remove_completion
)
1211 req
->handle
= CompletionPort
;
1212 if (!(status
= wine_server_call( req
)))
1214 *CompletionKey
= reply
->ckey
;
1215 *CompletionValue
= reply
->cvalue
;
1216 iosb
->Information
= reply
->information
;
1217 iosb
->u
.Status
= reply
->status
;
1221 if (status
!= STATUS_PENDING
) break;
1223 status
= NtWaitForSingleObject( CompletionPort
, FALSE
, WaitTime
);
1224 if (status
!= WAIT_OBJECT_0
) break;
1229 /******************************************************************
1230 * NtOpenIoCompletion (NTDLL.@)
1231 * ZwOpenIoCompletion (NTDLL.@)
1233 * Opens I/O completion object
1236 * CompletionPort [O] completion object handle will be placed there
1237 * DesiredAccess [I] desired access to a handle (combination of IO_COMPLETION_*)
1238 * ObjectAttributes [I] completion object name
1241 NTSTATUS WINAPI
NtOpenIoCompletion( PHANDLE CompletionPort
, ACCESS_MASK DesiredAccess
,
1242 POBJECT_ATTRIBUTES ObjectAttributes
)
1246 TRACE("(%p, 0x%x, %p)\n", CompletionPort
, DesiredAccess
, ObjectAttributes
);
1248 if (!CompletionPort
|| !ObjectAttributes
|| !ObjectAttributes
->ObjectName
)
1249 return STATUS_INVALID_PARAMETER
;
1251 SERVER_START_REQ( open_completion
)
1253 req
->access
= DesiredAccess
;
1254 req
->rootdir
= ObjectAttributes
->RootDirectory
;
1255 wine_server_add_data( req
, ObjectAttributes
->ObjectName
->Buffer
,
1256 ObjectAttributes
->ObjectName
->Length
);
1257 if (!(status
= wine_server_call( req
)))
1258 *CompletionPort
= reply
->handle
;
1264 /******************************************************************
1265 * NtQueryIoCompletion (NTDLL.@)
1266 * ZwQueryIoCompletion (NTDLL.@)
1268 * Requests information about given I/O completion object
1271 * CompletionPort [I] HANDLE to completion port to request
1272 * InformationClass [I] information class
1273 * CompletionInformation [O] user-provided buffer for data
1274 * BufferLength [I] buffer length
1275 * RequiredLength [O] required buffer length
1278 NTSTATUS WINAPI
NtQueryIoCompletion( HANDLE CompletionPort
, IO_COMPLETION_INFORMATION_CLASS InformationClass
,
1279 PVOID CompletionInformation
, ULONG BufferLength
, PULONG RequiredLength
)
1283 TRACE("(%p, %d, %p, 0x%x, %p)\n", CompletionPort
, InformationClass
, CompletionInformation
,
1284 BufferLength
, RequiredLength
);
1286 if (!CompletionInformation
) return STATUS_INVALID_PARAMETER
;
1287 switch( InformationClass
)
1289 case IoCompletionBasicInformation
:
1291 ULONG
*info
= (ULONG
*)CompletionInformation
;
1293 if (RequiredLength
) *RequiredLength
= sizeof(*info
);
1294 if (BufferLength
!= sizeof(*info
))
1295 status
= STATUS_INFO_LENGTH_MISMATCH
;
1298 SERVER_START_REQ( query_completion
)
1300 req
->handle
= CompletionPort
;
1301 if (!(status
= wine_server_call( req
)))
1302 *info
= reply
->depth
;
1309 status
= STATUS_INVALID_PARAMETER
;
1315 NTSTATUS
NTDLL_AddCompletion( HANDLE hFile
, ULONG_PTR CompletionValue
, NTSTATUS CompletionStatus
, ULONG_PTR Information
)
1319 SERVER_START_REQ( add_fd_completion
)
1321 req
->handle
= hFile
;
1322 req
->cvalue
= CompletionValue
;
1323 req
->status
= CompletionStatus
;
1324 req
->information
= Information
;
1325 status
= wine_server_call( req
);