server: Add infrastructure for ioctl server request.
[wine.git] / server / thread.c
blob8e63e8b2388d0cda049894520c1d3e7b66c8a5ed
1 /*
2 * Server-side thread management
4 * Copyright (C) 1998 Alexandre Julliard
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
11 * This library is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14 * Lesser General Public License for more details.
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
21 #include "config.h"
22 #include "wine/port.h"
24 #include <assert.h>
25 #include <errno.h>
26 #include <fcntl.h>
27 #include <signal.h>
28 #include <stdarg.h>
29 #include <stdio.h>
30 #include <stdlib.h>
31 #include <string.h>
32 #include <sys/types.h>
33 #include <unistd.h>
34 #include <time.h>
35 #ifdef HAVE_POLL_H
36 #include <poll.h>
37 #endif
39 #include "ntstatus.h"
40 #define WIN32_NO_STATUS
41 #include "windef.h"
42 #include "winternl.h"
44 #include "file.h"
45 #include "handle.h"
46 #include "process.h"
47 #include "thread.h"
48 #include "request.h"
49 #include "user.h"
50 #include "security.h"
53 /* thread queues */
55 struct thread_wait
57 struct thread_wait *next; /* next wait structure for this thread */
58 struct thread *thread; /* owner thread */
59 int count; /* count of objects */
60 int flags;
61 void *cookie; /* magic cookie to return to client */
62 struct timeval timeout;
63 struct timeout_user *user;
64 struct wait_queue_entry queues[1];
67 /* asynchronous procedure calls */
69 struct thread_apc
71 struct object obj; /* object header */
72 struct list entry; /* queue linked list */
73 struct thread *caller; /* thread that queued this apc */
74 struct object *owner; /* object that queued this apc */
75 int executed; /* has it been executed by the client? */
76 apc_call_t call; /* call arguments */
77 apc_result_t result; /* call results once executed */
80 static void dump_thread_apc( struct object *obj, int verbose );
81 static int thread_apc_signaled( struct object *obj, struct thread *thread );
82 static void thread_apc_destroy( struct object *obj );
83 static void clear_apc_queue( struct list *queue );
85 static const struct object_ops thread_apc_ops =
87 sizeof(struct thread_apc), /* size */
88 dump_thread_apc, /* dump */
89 add_queue, /* add_queue */
90 remove_queue, /* remove_queue */
91 thread_apc_signaled, /* signaled */
92 no_satisfied, /* satisfied */
93 no_signal, /* signal */
94 no_get_fd, /* get_fd */
95 no_map_access, /* map_access */
96 no_lookup_name, /* lookup_name */
97 no_open_file, /* open_file */
98 no_close_handle, /* close_handle */
99 thread_apc_destroy /* destroy */
103 /* thread operations */
105 static void dump_thread( struct object *obj, int verbose );
106 static int thread_signaled( struct object *obj, struct thread *thread );
107 static unsigned int thread_map_access( struct object *obj, unsigned int access );
108 static void thread_poll_event( struct fd *fd, int event );
109 static void destroy_thread( struct object *obj );
111 static const struct object_ops thread_ops =
113 sizeof(struct thread), /* size */
114 dump_thread, /* dump */
115 add_queue, /* add_queue */
116 remove_queue, /* remove_queue */
117 thread_signaled, /* signaled */
118 no_satisfied, /* satisfied */
119 no_signal, /* signal */
120 no_get_fd, /* get_fd */
121 thread_map_access, /* map_access */
122 no_lookup_name, /* lookup_name */
123 no_open_file, /* open_file */
124 no_close_handle, /* close_handle */
125 destroy_thread /* destroy */
128 static const struct fd_ops thread_fd_ops =
130 NULL, /* get_poll_events */
131 thread_poll_event, /* poll_event */
132 NULL, /* flush */
133 NULL, /* get_fd_type */
134 NULL, /* ioctl */
135 NULL, /* queue_async */
136 NULL, /* reselect_async */
137 NULL /* cancel_async */
140 static struct list thread_list = LIST_INIT(thread_list);
142 /* initialize the structure for a newly allocated thread */
143 static inline void init_thread_structure( struct thread *thread )
145 int i;
147 thread->unix_pid = -1; /* not known yet */
148 thread->unix_tid = -1; /* not known yet */
149 thread->context = NULL;
150 thread->suspend_context = NULL;
151 thread->teb = NULL;
152 thread->debug_ctx = NULL;
153 thread->debug_event = NULL;
154 thread->debug_break = 0;
155 thread->queue = NULL;
156 thread->wait = NULL;
157 thread->error = 0;
158 thread->req_data = NULL;
159 thread->req_toread = 0;
160 thread->reply_data = NULL;
161 thread->reply_towrite = 0;
162 thread->request_fd = NULL;
163 thread->reply_fd = NULL;
164 thread->wait_fd = NULL;
165 thread->state = RUNNING;
166 thread->exit_code = 0;
167 thread->priority = 0;
168 thread->affinity = 1;
169 thread->suspend = 0;
170 thread->desktop_users = 0;
171 thread->token = NULL;
173 thread->creation_time = current_time;
174 thread->exit_time.tv_sec = thread->exit_time.tv_usec = 0;
176 list_init( &thread->mutex_list );
177 list_init( &thread->system_apc );
178 list_init( &thread->user_apc );
180 for (i = 0; i < MAX_INFLIGHT_FDS; i++)
181 thread->inflight[i].server = thread->inflight[i].client = -1;
184 /* check if address looks valid for a client-side data structure (TEB etc.) */
185 static inline int is_valid_address( void *addr )
187 return addr && !((unsigned long)addr % sizeof(int));
190 /* create a new thread */
191 struct thread *create_thread( int fd, struct process *process )
193 struct thread *thread;
195 if (!(thread = alloc_object( &thread_ops ))) return NULL;
197 init_thread_structure( thread );
199 thread->process = (struct process *)grab_object( process );
200 thread->desktop = process->desktop;
201 if (!current) current = thread;
203 list_add_head( &thread_list, &thread->entry );
205 if (!(thread->id = alloc_ptid( thread )))
207 release_object( thread );
208 return NULL;
210 if (!(thread->request_fd = create_anonymous_fd( &thread_fd_ops, fd, &thread->obj, 0 )))
212 release_object( thread );
213 return NULL;
216 set_fd_events( thread->request_fd, POLLIN ); /* start listening to events */
217 add_process_thread( thread->process, thread );
218 return thread;
221 /* handle a client event */
222 static void thread_poll_event( struct fd *fd, int event )
224 struct thread *thread = get_fd_user( fd );
225 assert( thread->obj.ops == &thread_ops );
227 if (event & (POLLERR | POLLHUP)) kill_thread( thread, 0 );
228 else if (event & POLLIN) read_request( thread );
229 else if (event & POLLOUT) write_reply( thread );
232 /* cleanup everything that is no longer needed by a dead thread */
233 /* used by destroy_thread and kill_thread */
234 static void cleanup_thread( struct thread *thread )
236 int i;
238 clear_apc_queue( &thread->system_apc );
239 clear_apc_queue( &thread->user_apc );
240 free( thread->req_data );
241 free( thread->reply_data );
242 if (thread->request_fd) release_object( thread->request_fd );
243 if (thread->reply_fd) release_object( thread->reply_fd );
244 if (thread->wait_fd) release_object( thread->wait_fd );
245 free( thread->suspend_context );
246 free_msg_queue( thread );
247 cleanup_clipboard_thread(thread);
248 destroy_thread_windows( thread );
249 close_thread_desktop( thread );
250 for (i = 0; i < MAX_INFLIGHT_FDS; i++)
252 if (thread->inflight[i].client != -1)
254 close( thread->inflight[i].server );
255 thread->inflight[i].client = thread->inflight[i].server = -1;
258 thread->req_data = NULL;
259 thread->reply_data = NULL;
260 thread->request_fd = NULL;
261 thread->reply_fd = NULL;
262 thread->wait_fd = NULL;
263 thread->context = NULL;
264 thread->suspend_context = NULL;
265 thread->desktop = 0;
268 /* destroy a thread when its refcount is 0 */
269 static void destroy_thread( struct object *obj )
271 struct thread *thread = (struct thread *)obj;
272 assert( obj->ops == &thread_ops );
274 assert( !thread->debug_ctx ); /* cannot still be debugging something */
275 list_remove( &thread->entry );
276 cleanup_thread( thread );
277 release_object( thread->process );
278 if (thread->id) free_ptid( thread->id );
279 if (thread->token) release_object( thread->token );
282 /* dump a thread on stdout for debugging purposes */
283 static void dump_thread( struct object *obj, int verbose )
285 struct thread *thread = (struct thread *)obj;
286 assert( obj->ops == &thread_ops );
288 fprintf( stderr, "Thread id=%04x unix pid=%d unix tid=%d teb=%p state=%d\n",
289 thread->id, thread->unix_pid, thread->unix_tid, thread->teb, thread->state );
292 static int thread_signaled( struct object *obj, struct thread *thread )
294 struct thread *mythread = (struct thread *)obj;
295 return (mythread->state == TERMINATED);
298 static unsigned int thread_map_access( struct object *obj, unsigned int access )
300 if (access & GENERIC_READ) access |= STANDARD_RIGHTS_READ | SYNCHRONIZE;
301 if (access & GENERIC_WRITE) access |= STANDARD_RIGHTS_WRITE | SYNCHRONIZE;
302 if (access & GENERIC_EXECUTE) access |= STANDARD_RIGHTS_EXECUTE;
303 if (access & GENERIC_ALL) access |= THREAD_ALL_ACCESS;
304 return access & ~(GENERIC_READ | GENERIC_WRITE | GENERIC_EXECUTE | GENERIC_ALL);
307 static void dump_thread_apc( struct object *obj, int verbose )
309 struct thread_apc *apc = (struct thread_apc *)obj;
310 assert( obj->ops == &thread_apc_ops );
312 fprintf( stderr, "APC owner=%p type=%u\n", apc->owner, apc->call.type );
315 static int thread_apc_signaled( struct object *obj, struct thread *thread )
317 struct thread_apc *apc = (struct thread_apc *)obj;
318 return apc->executed;
321 static void thread_apc_destroy( struct object *obj )
323 struct thread_apc *apc = (struct thread_apc *)obj;
324 if (apc->caller) release_object( apc->caller );
325 if (apc->owner) release_object( apc->owner );
328 /* queue an async procedure call */
329 static struct thread_apc *create_apc( struct object *owner, const apc_call_t *call_data )
331 struct thread_apc *apc;
333 if ((apc = alloc_object( &thread_apc_ops )))
335 apc->call = *call_data;
336 apc->caller = NULL;
337 apc->owner = owner;
338 apc->executed = 0;
339 apc->result.type = APC_NONE;
340 if (owner) grab_object( owner );
342 return apc;
345 /* get a thread pointer from a thread id (and increment the refcount) */
346 struct thread *get_thread_from_id( thread_id_t id )
348 struct object *obj = get_ptid_entry( id );
350 if (obj && obj->ops == &thread_ops) return (struct thread *)grab_object( obj );
351 set_error( STATUS_INVALID_CID );
352 return NULL;
355 /* get a thread from a handle (and increment the refcount) */
356 struct thread *get_thread_from_handle( obj_handle_t handle, unsigned int access )
358 return (struct thread *)get_handle_obj( current->process, handle,
359 access, &thread_ops );
362 /* find a thread from a Unix tid */
363 struct thread *get_thread_from_tid( int tid )
365 struct thread *thread;
367 LIST_FOR_EACH_ENTRY( thread, &thread_list, struct thread, entry )
369 if (thread->unix_tid == tid) return thread;
371 return NULL;
374 /* find a thread from a Unix pid */
375 struct thread *get_thread_from_pid( int pid )
377 struct thread *thread;
379 LIST_FOR_EACH_ENTRY( thread, &thread_list, struct thread, entry )
381 if (thread->unix_pid == pid) return thread;
383 return NULL;
386 /* set all information about a thread */
387 static void set_thread_info( struct thread *thread,
388 const struct set_thread_info_request *req )
390 if (req->mask & SET_THREAD_INFO_PRIORITY)
391 thread->priority = req->priority;
392 if (req->mask & SET_THREAD_INFO_AFFINITY)
394 if (req->affinity != 1) set_error( STATUS_INVALID_PARAMETER );
395 else thread->affinity = req->affinity;
397 if (req->mask & SET_THREAD_INFO_TOKEN)
398 security_set_thread_token( thread, req->token );
401 /* stop a thread (at the Unix level) */
402 void stop_thread( struct thread *thread )
404 if (thread->context) return; /* already inside a debug event, no need for a signal */
405 /* can't stop a thread while initialisation is in progress */
406 if (is_process_init_done(thread->process)) send_thread_signal( thread, SIGUSR1 );
409 /* suspend a thread */
410 static int suspend_thread( struct thread *thread )
412 int old_count = thread->suspend;
413 if (thread->suspend < MAXIMUM_SUSPEND_COUNT)
415 if (!(thread->process->suspend + thread->suspend++)) stop_thread( thread );
417 else set_error( STATUS_SUSPEND_COUNT_EXCEEDED );
418 return old_count;
421 /* resume a thread */
422 static int resume_thread( struct thread *thread )
424 int old_count = thread->suspend;
425 if (thread->suspend > 0)
427 if (!(--thread->suspend + thread->process->suspend)) wake_thread( thread );
429 return old_count;
432 /* add a thread to an object wait queue; return 1 if OK, 0 on error */
433 int add_queue( struct object *obj, struct wait_queue_entry *entry )
435 grab_object( obj );
436 entry->obj = obj;
437 list_add_tail( &obj->wait_queue, &entry->entry );
438 return 1;
441 /* remove a thread from an object wait queue */
442 void remove_queue( struct object *obj, struct wait_queue_entry *entry )
444 list_remove( &entry->entry );
445 release_object( obj );
448 /* finish waiting */
449 static void end_wait( struct thread *thread )
451 struct thread_wait *wait = thread->wait;
452 struct wait_queue_entry *entry;
453 int i;
455 assert( wait );
456 thread->wait = wait->next;
457 for (i = 0, entry = wait->queues; i < wait->count; i++, entry++)
458 entry->obj->ops->remove_queue( entry->obj, entry );
459 if (wait->user) remove_timeout_user( wait->user );
460 free( wait );
463 /* build the thread wait structure */
464 static int wait_on( int count, struct object *objects[], int flags, const abs_time_t *timeout )
466 struct thread_wait *wait;
467 struct wait_queue_entry *entry;
468 int i;
470 if (!(wait = mem_alloc( sizeof(*wait) + (count-1) * sizeof(*entry) ))) return 0;
471 wait->next = current->wait;
472 wait->thread = current;
473 wait->count = count;
474 wait->flags = flags;
475 wait->user = NULL;
476 current->wait = wait;
477 if (flags & SELECT_TIMEOUT)
479 wait->timeout.tv_sec = timeout->sec;
480 wait->timeout.tv_usec = timeout->usec;
483 for (i = 0, entry = wait->queues; i < count; i++, entry++)
485 struct object *obj = objects[i];
486 entry->thread = current;
487 if (!obj->ops->add_queue( obj, entry ))
489 wait->count = i;
490 end_wait( current );
491 return 0;
494 return 1;
497 /* check if the thread waiting condition is satisfied */
498 static int check_wait( struct thread *thread )
500 int i, signaled;
501 struct thread_wait *wait = thread->wait;
502 struct wait_queue_entry *entry = wait->queues;
504 /* Suspended threads may not acquire locks, but they can run system APCs */
505 if (thread->process->suspend + thread->suspend > 0)
507 if ((wait->flags & SELECT_INTERRUPTIBLE) && !list_empty( &thread->system_apc ))
508 return STATUS_USER_APC;
509 return -1;
512 assert( wait );
513 if (wait->flags & SELECT_ALL)
515 int not_ok = 0;
516 /* Note: we must check them all anyway, as some objects may
517 * want to do something when signaled, even if others are not */
518 for (i = 0, entry = wait->queues; i < wait->count; i++, entry++)
519 not_ok |= !entry->obj->ops->signaled( entry->obj, thread );
520 if (not_ok) goto other_checks;
521 /* Wait satisfied: tell it to all objects */
522 signaled = 0;
523 for (i = 0, entry = wait->queues; i < wait->count; i++, entry++)
524 if (entry->obj->ops->satisfied( entry->obj, thread ))
525 signaled = STATUS_ABANDONED_WAIT_0;
526 return signaled;
528 else
530 for (i = 0, entry = wait->queues; i < wait->count; i++, entry++)
532 if (!entry->obj->ops->signaled( entry->obj, thread )) continue;
533 /* Wait satisfied: tell it to the object */
534 signaled = i;
535 if (entry->obj->ops->satisfied( entry->obj, thread ))
536 signaled = i + STATUS_ABANDONED_WAIT_0;
537 return signaled;
541 other_checks:
542 if ((wait->flags & SELECT_INTERRUPTIBLE) && !list_empty(&thread->system_apc)) return STATUS_USER_APC;
543 if ((wait->flags & SELECT_ALERTABLE) && !list_empty(&thread->user_apc)) return STATUS_USER_APC;
544 if (wait->flags & SELECT_TIMEOUT)
546 if (!time_before( &current_time, &wait->timeout )) return STATUS_TIMEOUT;
548 return -1;
551 /* send the wakeup signal to a thread */
552 static int send_thread_wakeup( struct thread *thread, void *cookie, int signaled )
554 struct wake_up_reply reply;
555 int ret;
557 reply.cookie = cookie;
558 reply.signaled = signaled;
559 if ((ret = write( get_unix_fd( thread->wait_fd ), &reply, sizeof(reply) )) == sizeof(reply))
560 return 0;
561 if (ret >= 0)
562 fatal_protocol_error( thread, "partial wakeup write %d\n", ret );
563 else if (errno == EPIPE)
564 kill_thread( thread, 0 ); /* normal death */
565 else
566 fatal_protocol_perror( thread, "write" );
567 return -1;
570 /* attempt to wake up a thread */
571 /* return >0 if OK, 0 if the wait condition is still not satisfied */
572 int wake_thread( struct thread *thread )
574 int signaled, count;
575 void *cookie;
577 for (count = 0; thread->wait; count++)
579 if ((signaled = check_wait( thread )) == -1) break;
581 cookie = thread->wait->cookie;
582 if (debug_level) fprintf( stderr, "%04x: *wakeup* signaled=%d cookie=%p\n",
583 thread->id, signaled, cookie );
584 end_wait( thread );
585 if (send_thread_wakeup( thread, cookie, signaled ) == -1) /* error */
586 break;
588 return count;
591 /* thread wait timeout */
592 static void thread_timeout( void *ptr )
594 struct thread_wait *wait = ptr;
595 struct thread *thread = wait->thread;
596 void *cookie = wait->cookie;
598 wait->user = NULL;
599 if (thread->wait != wait) return; /* not the top-level wait, ignore it */
600 if (thread->suspend + thread->process->suspend > 0) return; /* suspended, ignore it */
602 if (debug_level) fprintf( stderr, "%04x: *wakeup* signaled=%d cookie=%p\n",
603 thread->id, (int)STATUS_TIMEOUT, cookie );
604 end_wait( thread );
605 if (send_thread_wakeup( thread, cookie, STATUS_TIMEOUT ) == -1) return;
606 /* check if other objects have become signaled in the meantime */
607 wake_thread( thread );
610 /* try signaling an event flag, a semaphore or a mutex */
611 static int signal_object( obj_handle_t handle )
613 struct object *obj;
614 int ret = 0;
616 obj = get_handle_obj( current->process, handle, 0, NULL );
617 if (obj)
619 ret = obj->ops->signal( obj, get_handle_access( current->process, handle ));
620 release_object( obj );
622 return ret;
625 /* select on a list of handles */
626 static void select_on( int count, void *cookie, const obj_handle_t *handles,
627 int flags, const abs_time_t *timeout, obj_handle_t signal_obj )
629 int ret, i;
630 struct object *objects[MAXIMUM_WAIT_OBJECTS];
632 if ((count < 0) || (count > MAXIMUM_WAIT_OBJECTS))
634 set_error( STATUS_INVALID_PARAMETER );
635 return;
637 for (i = 0; i < count; i++)
639 if (!(objects[i] = get_handle_obj( current->process, handles[i], SYNCHRONIZE, NULL )))
640 break;
643 if (i < count) goto done;
644 if (!wait_on( count, objects, flags, timeout )) goto done;
646 /* signal the object */
647 if (signal_obj)
649 if (!signal_object( signal_obj ))
651 end_wait( current );
652 goto done;
654 /* check if we woke ourselves up */
655 if (!current->wait) goto done;
658 if ((ret = check_wait( current )) != -1)
660 /* condition is already satisfied */
661 end_wait( current );
662 set_error( ret );
663 goto done;
666 /* now we need to wait */
667 if (flags & SELECT_TIMEOUT)
669 if (!(current->wait->user = add_timeout_user( &current->wait->timeout,
670 thread_timeout, current->wait )))
672 end_wait( current );
673 goto done;
676 current->wait->cookie = cookie;
677 set_error( STATUS_PENDING );
679 done:
680 while (--i >= 0) release_object( objects[i] );
683 /* attempt to wake threads sleeping on the object wait queue */
684 void wake_up( struct object *obj, int max )
686 struct list *ptr, *next;
688 LIST_FOR_EACH_SAFE( ptr, next, &obj->wait_queue )
690 struct wait_queue_entry *entry = LIST_ENTRY( ptr, struct wait_queue_entry, entry );
691 if (wake_thread( entry->thread ))
693 if (max && !--max) break;
698 /* return the apc queue to use for a given apc type */
699 static inline struct list *get_apc_queue( struct thread *thread, enum apc_type type )
701 switch(type)
703 case APC_NONE:
704 case APC_USER:
705 case APC_TIMER:
706 return &thread->user_apc;
707 default:
708 return &thread->system_apc;
712 /* queue an existing APC to a given thread */
713 static int queue_apc( struct process *process, struct thread *thread, struct thread_apc *apc )
715 struct list *queue;
717 if (!thread) /* find a suitable thread inside the process */
719 struct thread *candidate;
721 /* first try to find a waiting thread */
722 LIST_FOR_EACH_ENTRY( candidate, &process->thread_list, struct thread, proc_entry )
724 if (candidate->state == TERMINATED) continue;
725 if (process->suspend || candidate->suspend ||
726 (candidate->wait && (candidate->wait->flags & SELECT_INTERRUPTIBLE)))
728 thread = candidate;
729 break;
732 if (!thread)
734 /* then use the first one that accepts a signal */
735 LIST_FOR_EACH_ENTRY( candidate, &process->thread_list, struct thread, proc_entry )
737 if (send_thread_signal( candidate, SIGUSR1 ))
739 thread = candidate;
740 break;
744 if (!thread) return 0; /* nothing found */
746 else
748 if (thread->state == TERMINATED) return 0;
749 /* cancel a possible previous APC with the same owner */
750 if (apc->owner) thread_cancel_apc( thread, apc->owner, apc->call.type );
753 queue = get_apc_queue( thread, apc->call.type );
754 grab_object( apc );
755 list_add_tail( queue, &apc->entry );
756 if (!list_prev( queue, &apc->entry )) /* first one */
757 wake_thread( thread );
759 return 1;
762 /* queue an async procedure call */
763 int thread_queue_apc( struct thread *thread, struct object *owner, const apc_call_t *call_data )
765 struct thread_apc *apc;
766 int ret = 0;
768 if ((apc = create_apc( owner, call_data )))
770 ret = queue_apc( NULL, thread, apc );
771 release_object( apc );
773 return ret;
776 /* cancel the async procedure call owned by a specific object */
777 void thread_cancel_apc( struct thread *thread, struct object *owner, enum apc_type type )
779 struct thread_apc *apc;
780 struct list *queue = get_apc_queue( thread, type );
782 LIST_FOR_EACH_ENTRY( apc, queue, struct thread_apc, entry )
784 if (apc->owner != owner) continue;
785 list_remove( &apc->entry );
786 apc->executed = 1;
787 wake_up( &apc->obj, 0 );
788 release_object( apc );
789 return;
793 /* remove the head apc from the queue; the returned object must be released by the caller */
794 static struct thread_apc *thread_dequeue_apc( struct thread *thread, int system_only )
796 struct thread_apc *apc = NULL;
797 struct list *ptr = list_head( &thread->system_apc );
799 if (!ptr && !system_only) ptr = list_head( &thread->user_apc );
800 if (ptr)
802 apc = LIST_ENTRY( ptr, struct thread_apc, entry );
803 list_remove( ptr );
805 return apc;
808 /* clear an APC queue, cancelling all the APCs on it */
809 static void clear_apc_queue( struct list *queue )
811 struct list *ptr;
813 while ((ptr = list_head( queue )))
815 struct thread_apc *apc = LIST_ENTRY( ptr, struct thread_apc, entry );
816 list_remove( &apc->entry );
817 apc->executed = 1;
818 wake_up( &apc->obj, 0 );
819 release_object( apc );
823 /* add an fd to the inflight list */
824 /* return list index, or -1 on error */
825 int thread_add_inflight_fd( struct thread *thread, int client, int server )
827 int i;
829 if (server == -1) return -1;
830 if (client == -1)
832 close( server );
833 return -1;
836 /* first check if we already have an entry for this fd */
837 for (i = 0; i < MAX_INFLIGHT_FDS; i++)
838 if (thread->inflight[i].client == client)
840 close( thread->inflight[i].server );
841 thread->inflight[i].server = server;
842 return i;
845 /* now find a free spot to store it */
846 for (i = 0; i < MAX_INFLIGHT_FDS; i++)
847 if (thread->inflight[i].client == -1)
849 thread->inflight[i].client = client;
850 thread->inflight[i].server = server;
851 return i;
853 return -1;
856 /* get an inflight fd and purge it from the list */
857 /* the fd must be closed when no longer used */
858 int thread_get_inflight_fd( struct thread *thread, int client )
860 int i, ret;
862 if (client == -1) return -1;
866 for (i = 0; i < MAX_INFLIGHT_FDS; i++)
868 if (thread->inflight[i].client == client)
870 ret = thread->inflight[i].server;
871 thread->inflight[i].server = thread->inflight[i].client = -1;
872 return ret;
875 } while (!receive_fd( thread->process )); /* in case it is still in the socket buffer */
876 return -1;
879 /* kill a thread on the spot */
880 void kill_thread( struct thread *thread, int violent_death )
882 if (thread->state == TERMINATED) return; /* already killed */
883 thread->state = TERMINATED;
884 thread->exit_time = current_time;
885 if (current == thread) current = NULL;
886 if (debug_level)
887 fprintf( stderr,"%04x: *killed* exit_code=%d\n",
888 thread->id, thread->exit_code );
889 if (thread->wait)
891 while (thread->wait) end_wait( thread );
892 send_thread_wakeup( thread, NULL, STATUS_PENDING );
893 /* if it is waiting on the socket, we don't need to send a SIGTERM */
894 violent_death = 0;
896 kill_console_processes( thread, 0 );
897 debug_exit_thread( thread );
898 abandon_mutexes( thread );
899 wake_up( &thread->obj, 0 );
900 if (violent_death) send_thread_signal( thread, SIGTERM );
901 cleanup_thread( thread );
902 remove_process_thread( thread->process, thread );
903 release_object( thread );
906 /* trigger a breakpoint event in a given thread */
907 void break_thread( struct thread *thread )
909 struct debug_event_exception data;
911 assert( thread->context );
913 data.record.ExceptionCode = STATUS_BREAKPOINT;
914 data.record.ExceptionFlags = EXCEPTION_CONTINUABLE;
915 data.record.ExceptionRecord = NULL;
916 data.record.ExceptionAddress = get_context_ip( thread->context );
917 data.record.NumberParameters = 0;
918 data.first = 1;
919 generate_debug_event( thread, EXCEPTION_DEBUG_EVENT, &data );
920 thread->debug_break = 0;
923 /* take a snapshot of currently running threads */
924 struct thread_snapshot *thread_snap( int *count )
926 struct thread_snapshot *snapshot, *ptr;
927 struct thread *thread;
928 int total = 0;
930 LIST_FOR_EACH_ENTRY( thread, &thread_list, struct thread, entry )
931 if (thread->state != TERMINATED) total++;
932 if (!total || !(snapshot = mem_alloc( sizeof(*snapshot) * total ))) return NULL;
933 ptr = snapshot;
934 LIST_FOR_EACH_ENTRY( thread, &thread_list, struct thread, entry )
936 if (thread->state == TERMINATED) continue;
937 ptr->thread = thread;
938 ptr->count = thread->obj.refcount;
939 ptr->priority = thread->priority;
940 grab_object( thread );
941 ptr++;
943 *count = total;
944 return snapshot;
947 /* gets the current impersonation token */
948 struct token *thread_get_impersonation_token( struct thread *thread )
950 if (thread->token)
951 return thread->token;
952 else
953 return thread->process->token;
956 /* create a new thread */
957 DECL_HANDLER(new_thread)
959 struct thread *thread;
960 int request_fd = thread_get_inflight_fd( current, req->request_fd );
962 if (request_fd == -1 || fcntl( request_fd, F_SETFL, O_NONBLOCK ) == -1)
964 if (request_fd != -1) close( request_fd );
965 set_error( STATUS_INVALID_HANDLE );
966 return;
969 if ((thread = create_thread( request_fd, current->process )))
971 if (req->suspend) thread->suspend++;
972 reply->tid = get_thread_id( thread );
973 if ((reply->handle = alloc_handle( current->process, thread, req->access, req->attributes )))
975 /* thread object will be released when the thread gets killed */
976 return;
978 kill_thread( thread, 1 );
982 /* initialize a new thread */
983 DECL_HANDLER(init_thread)
985 struct process *process = current->process;
986 int reply_fd = thread_get_inflight_fd( current, req->reply_fd );
987 int wait_fd = thread_get_inflight_fd( current, req->wait_fd );
989 if (current->reply_fd) /* already initialised */
991 set_error( STATUS_INVALID_PARAMETER );
992 goto error;
995 if (reply_fd == -1 || fcntl( reply_fd, F_SETFL, O_NONBLOCK ) == -1) goto error;
997 current->reply_fd = create_anonymous_fd( &thread_fd_ops, reply_fd, &current->obj, 0 );
998 reply_fd = -1;
999 if (!current->reply_fd) goto error;
1001 if (wait_fd == -1)
1003 set_error( STATUS_TOO_MANY_OPENED_FILES ); /* most likely reason */
1004 return;
1006 if (!(current->wait_fd = create_anonymous_fd( &thread_fd_ops, wait_fd, &current->obj, 0 )))
1007 return;
1009 if (!is_valid_address(req->teb) || !is_valid_address(req->peb) || !is_valid_address(req->ldt_copy))
1011 set_error( STATUS_INVALID_PARAMETER );
1012 return;
1015 current->unix_pid = req->unix_pid;
1016 current->unix_tid = req->unix_tid;
1017 current->teb = req->teb;
1019 if (!process->peb) /* first thread, initialize the process too */
1021 process->unix_pid = current->unix_pid;
1022 process->peb = req->peb;
1023 process->ldt_copy = req->ldt_copy;
1024 reply->info_size = init_process( current );
1026 else
1028 if (process->unix_pid != current->unix_pid)
1029 process->unix_pid = -1; /* can happen with linuxthreads */
1030 if (current->suspend + process->suspend > 0) stop_thread( current );
1031 generate_debug_event( current, CREATE_THREAD_DEBUG_EVENT, req->entry );
1033 debug_level = max( debug_level, req->debug_level );
1035 reply->pid = get_process_id( process );
1036 reply->tid = get_thread_id( current );
1037 reply->version = SERVER_PROTOCOL_VERSION;
1038 reply->server_start.sec = server_start_time.tv_sec;
1039 reply->server_start.usec = server_start_time.tv_usec;
1040 return;
1042 error:
1043 if (reply_fd != -1) close( reply_fd );
1044 if (wait_fd != -1) close( wait_fd );
1047 /* terminate a thread */
1048 DECL_HANDLER(terminate_thread)
1050 struct thread *thread;
1052 reply->self = 0;
1053 reply->last = 0;
1054 if ((thread = get_thread_from_handle( req->handle, THREAD_TERMINATE )))
1056 thread->exit_code = req->exit_code;
1057 if (thread != current) kill_thread( thread, 1 );
1058 else
1060 reply->self = 1;
1061 reply->last = (thread->process->running_threads == 1);
1063 release_object( thread );
1067 /* open a handle to a thread */
1068 DECL_HANDLER(open_thread)
1070 struct thread *thread = get_thread_from_id( req->tid );
1072 reply->handle = 0;
1073 if (thread)
1075 reply->handle = alloc_handle( current->process, thread, req->access, req->attributes );
1076 release_object( thread );
1080 /* fetch information about a thread */
1081 DECL_HANDLER(get_thread_info)
1083 struct thread *thread;
1084 obj_handle_t handle = req->handle;
1086 if (!handle) thread = get_thread_from_id( req->tid_in );
1087 else thread = get_thread_from_handle( req->handle, THREAD_QUERY_INFORMATION );
1089 if (thread)
1091 reply->pid = get_process_id( thread->process );
1092 reply->tid = get_thread_id( thread );
1093 reply->teb = thread->teb;
1094 reply->exit_code = (thread->state == TERMINATED) ? thread->exit_code : STATUS_PENDING;
1095 reply->priority = thread->priority;
1096 reply->affinity = thread->affinity;
1097 reply->creation_time.sec = thread->creation_time.tv_sec;
1098 reply->creation_time.usec = thread->creation_time.tv_usec;
1099 reply->exit_time.sec = thread->exit_time.tv_sec;
1100 reply->exit_time.usec = thread->exit_time.tv_usec;
1101 reply->last = thread->process->running_threads == 1;
1103 release_object( thread );
1107 /* set information about a thread */
1108 DECL_HANDLER(set_thread_info)
1110 struct thread *thread;
1112 if ((thread = get_thread_from_handle( req->handle, THREAD_SET_INFORMATION )))
1114 set_thread_info( thread, req );
1115 release_object( thread );
1119 /* suspend a thread */
1120 DECL_HANDLER(suspend_thread)
1122 struct thread *thread;
1124 if ((thread = get_thread_from_handle( req->handle, THREAD_SUSPEND_RESUME )))
1126 if (thread->state == TERMINATED) set_error( STATUS_ACCESS_DENIED );
1127 else reply->count = suspend_thread( thread );
1128 release_object( thread );
1132 /* resume a thread */
1133 DECL_HANDLER(resume_thread)
1135 struct thread *thread;
1137 if ((thread = get_thread_from_handle( req->handle, THREAD_SUSPEND_RESUME )))
1139 if (thread->state == TERMINATED) set_error( STATUS_ACCESS_DENIED );
1140 else reply->count = resume_thread( thread );
1141 release_object( thread );
1145 /* select on a handle list */
1146 DECL_HANDLER(select)
1148 int count = get_req_data_size() / sizeof(obj_handle_t);
1149 select_on( count, req->cookie, get_req_data(), req->flags, &req->timeout, req->signal );
1152 /* queue an APC for a thread or process */
1153 DECL_HANDLER(queue_apc)
1155 struct thread *thread = NULL;
1156 struct process *process = NULL;
1157 struct thread_apc *apc;
1159 if (!(apc = create_apc( NULL, &req->call ))) return;
1161 switch (apc->call.type)
1163 case APC_NONE:
1164 case APC_USER:
1165 thread = get_thread_from_handle( req->thread, THREAD_SET_CONTEXT );
1166 break;
1167 case APC_VIRTUAL_ALLOC:
1168 case APC_VIRTUAL_FREE:
1169 case APC_VIRTUAL_PROTECT:
1170 case APC_VIRTUAL_FLUSH:
1171 case APC_VIRTUAL_LOCK:
1172 case APC_VIRTUAL_UNLOCK:
1173 case APC_UNMAP_VIEW:
1174 process = get_process_from_handle( req->process, PROCESS_VM_OPERATION );
1175 break;
1176 case APC_VIRTUAL_QUERY:
1177 process = get_process_from_handle( req->process, PROCESS_QUERY_INFORMATION );
1178 break;
1179 case APC_MAP_VIEW:
1180 process = get_process_from_handle( req->process, PROCESS_VM_OPERATION );
1181 if (process && process != current->process)
1183 /* duplicate the handle into the target process */
1184 obj_handle_t handle = duplicate_handle( current->process, apc->call.map_view.handle,
1185 process, 0, 0, DUP_HANDLE_SAME_ACCESS );
1186 if (handle) apc->call.map_view.handle = handle;
1187 else
1189 release_object( process );
1190 process = NULL;
1193 break;
1194 case APC_CREATE_THREAD:
1195 process = get_process_from_handle( req->process, PROCESS_CREATE_THREAD );
1196 break;
1197 default:
1198 set_error( STATUS_INVALID_PARAMETER );
1199 break;
1202 if (thread)
1204 if (!queue_apc( NULL, thread, apc )) set_error( STATUS_THREAD_IS_TERMINATING );
1205 release_object( thread );
1207 else if (process)
1209 reply->self = (process == current->process);
1210 if (!reply->self)
1212 obj_handle_t handle = alloc_handle( current->process, apc, SYNCHRONIZE, 0 );
1213 if (handle)
1215 if (queue_apc( process, NULL, apc ))
1217 apc->caller = (struct thread *)grab_object( current );
1218 reply->handle = handle;
1220 else
1222 close_handle( current->process, handle );
1223 set_error( STATUS_PROCESS_IS_TERMINATING );
1227 release_object( process );
1230 release_object( apc );
1233 /* get next APC to call */
1234 DECL_HANDLER(get_apc)
1236 struct thread_apc *apc;
1237 int system_only = !req->alertable;
1239 if (req->prev)
1241 if (!(apc = (struct thread_apc *)get_handle_obj( current->process, req->prev,
1242 0, &thread_apc_ops ))) return;
1243 apc->result = req->result;
1244 apc->executed = 1;
1245 if (apc->result.type == APC_CREATE_THREAD) /* transfer the handle to the caller process */
1247 obj_handle_t handle = duplicate_handle( current->process, apc->result.create_thread.handle,
1248 apc->caller->process, 0, 0, DUP_HANDLE_SAME_ACCESS );
1249 close_handle( current->process, apc->result.create_thread.handle );
1250 apc->result.create_thread.handle = handle;
1251 clear_error(); /* ignore errors from the above calls */
1253 else if (apc->result.type == APC_ASYNC_IO)
1255 if (apc->owner) async_set_result( apc->owner, apc->result.async_io.status );
1257 wake_up( &apc->obj, 0 );
1258 close_handle( current->process, req->prev );
1259 release_object( apc );
1262 if (current->suspend + current->process->suspend > 0) system_only = 1;
1264 for (;;)
1266 if (!(apc = thread_dequeue_apc( current, system_only )))
1268 /* no more APCs */
1269 set_error( STATUS_PENDING );
1270 return;
1272 /* Optimization: ignore APC_NONE calls, they are only used to
1273 * wake up a thread, but since we got here the thread woke up already.
1275 if (apc->call.type != APC_NONE) break;
1276 apc->executed = 1;
1277 wake_up( &apc->obj, 0 );
1278 release_object( apc );
1281 if ((reply->handle = alloc_handle( current->process, apc, SYNCHRONIZE, 0 )))
1282 reply->call = apc->call;
1283 release_object( apc );
1286 /* Get the result of an APC call */
1287 DECL_HANDLER(get_apc_result)
1289 struct thread_apc *apc;
1291 if (!(apc = (struct thread_apc *)get_handle_obj( current->process, req->handle,
1292 0, &thread_apc_ops ))) return;
1293 if (!apc->executed) set_error( STATUS_PENDING );
1294 else
1296 reply->result = apc->result;
1297 /* close the handle directly to avoid an extra round-trip */
1298 close_handle( current->process, req->handle );
1300 release_object( apc );
1303 /* retrieve the current context of a thread */
1304 DECL_HANDLER(get_thread_context)
1306 struct thread *thread;
1307 CONTEXT *context;
1309 if (get_reply_max_size() < sizeof(CONTEXT))
1311 set_error( STATUS_INVALID_PARAMETER );
1312 return;
1314 if (!(thread = get_thread_from_handle( req->handle, THREAD_GET_CONTEXT ))) return;
1316 if (req->suspend)
1318 if (thread != current || !thread->suspend_context)
1320 /* not suspended, shouldn't happen */
1321 set_error( STATUS_INVALID_PARAMETER );
1323 else
1325 if (thread->context == thread->suspend_context) thread->context = NULL;
1326 set_reply_data_ptr( thread->suspend_context, sizeof(CONTEXT) );
1327 thread->suspend_context = NULL;
1330 else if (thread != current && !thread->context)
1332 /* thread is not suspended, retry (if it's still running) */
1333 if (thread->state != RUNNING) set_error( STATUS_ACCESS_DENIED );
1334 else set_error( STATUS_PENDING );
1336 else if ((context = set_reply_data_size( sizeof(CONTEXT) )))
1338 unsigned int flags = get_context_system_regs( req->flags );
1340 memset( context, 0, sizeof(CONTEXT) );
1341 context->ContextFlags = get_context_cpu_flag();
1342 if (thread->context) copy_context( context, thread->context, req->flags & ~flags );
1343 if (flags) get_thread_context( thread, context, flags );
1345 reply->self = (thread == current);
1346 release_object( thread );
1349 /* set the current context of a thread */
1350 DECL_HANDLER(set_thread_context)
1352 struct thread *thread;
1354 if (get_req_data_size() < sizeof(CONTEXT))
1356 set_error( STATUS_INVALID_PARAMETER );
1357 return;
1359 if (!(thread = get_thread_from_handle( req->handle, THREAD_SET_CONTEXT ))) return;
1361 if (req->suspend)
1363 if (thread != current || thread->context)
1365 /* nested suspend or exception, shouldn't happen */
1366 set_error( STATUS_INVALID_PARAMETER );
1368 else if ((thread->suspend_context = mem_alloc( sizeof(CONTEXT) )))
1370 memcpy( thread->suspend_context, get_req_data(), sizeof(CONTEXT) );
1371 thread->context = thread->suspend_context;
1372 if (thread->debug_break) break_thread( thread );
1375 else if (thread != current && !thread->context)
1377 /* thread is not suspended, retry (if it's still running) */
1378 if (thread->state != RUNNING) set_error( STATUS_ACCESS_DENIED );
1379 else set_error( STATUS_PENDING );
1381 else
1383 const CONTEXT *context = get_req_data();
1384 unsigned int flags = get_context_system_regs( req->flags );
1386 if (flags) set_thread_context( thread, context, flags );
1387 if (thread->context && !get_error())
1388 copy_context( thread->context, context, req->flags & ~flags );
1390 reply->self = (thread == current);
1391 release_object( thread );
1394 /* fetch a selector entry for a thread */
1395 DECL_HANDLER(get_selector_entry)
1397 struct thread *thread;
1398 if ((thread = get_thread_from_handle( req->handle, THREAD_QUERY_INFORMATION )))
1400 get_selector_entry( thread, req->entry, &reply->base, &reply->limit, &reply->flags );
1401 release_object( thread );