server: Prevent unloading a registry hive while the key is in use.
[wine.git] / server / process.c
blobe5fe7cc6b6e89ed305276bd0809f7e32f694feb5
1 /*
2 * Server-side process 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 <limits.h>
27 #include <signal.h>
28 #include <string.h>
29 #include <stdarg.h>
30 #include <stdio.h>
31 #include <stdlib.h>
32 #include <sys/time.h>
33 #ifdef HAVE_SYS_SOCKET_H
34 # include <sys/socket.h>
35 #endif
36 #include <unistd.h>
37 #ifdef HAVE_POLL_H
38 #include <poll.h>
39 #endif
41 #include "ntstatus.h"
42 #define WIN32_NO_STATUS
43 #include "winternl.h"
45 #include "file.h"
46 #include "handle.h"
47 #include "process.h"
48 #include "thread.h"
49 #include "request.h"
50 #include "user.h"
51 #include "security.h"
53 /* process object */
55 static struct list process_list = LIST_INIT(process_list);
56 static int running_processes, user_processes;
57 static struct event *shutdown_event; /* signaled when shutdown starts */
58 static struct timeout_user *shutdown_timeout; /* timeout for server shutdown */
59 static int shutdown_stage; /* current stage in the shutdown process */
61 static const WCHAR process_name[] = {'P','r','o','c','e','s','s'};
63 struct type_descr process_type =
65 { process_name, sizeof(process_name) }, /* name */
66 PROCESS_ALL_ACCESS, /* valid_access */
67 { /* mapping */
68 STANDARD_RIGHTS_READ | PROCESS_VM_READ | PROCESS_QUERY_INFORMATION,
69 STANDARD_RIGHTS_WRITE | PROCESS_SUSPEND_RESUME | PROCESS_SET_INFORMATION | PROCESS_SET_QUOTA
70 | PROCESS_CREATE_PROCESS | PROCESS_DUP_HANDLE | PROCESS_VM_WRITE | PROCESS_VM_OPERATION
71 | PROCESS_CREATE_THREAD,
72 STANDARD_RIGHTS_EXECUTE | SYNCHRONIZE | PROCESS_QUERY_LIMITED_INFORMATION | PROCESS_TERMINATE,
73 PROCESS_ALL_ACCESS
77 static void process_dump( struct object *obj, int verbose );
78 static int process_signaled( struct object *obj, struct wait_queue_entry *entry );
79 static unsigned int process_map_access( struct object *obj, unsigned int access );
80 static struct security_descriptor *process_get_sd( struct object *obj );
81 static void process_poll_event( struct fd *fd, int event );
82 static struct list *process_get_kernel_obj_list( struct object *obj );
83 static void process_destroy( struct object *obj );
84 static void terminate_process( struct process *process, struct thread *skip, int exit_code );
86 static const struct object_ops process_ops =
88 sizeof(struct process), /* size */
89 &process_type, /* type */
90 process_dump, /* dump */
91 add_queue, /* add_queue */
92 remove_queue, /* remove_queue */
93 process_signaled, /* signaled */
94 no_satisfied, /* satisfied */
95 no_signal, /* signal */
96 no_get_fd, /* get_fd */
97 process_map_access, /* map_access */
98 process_get_sd, /* get_sd */
99 default_set_sd, /* set_sd */
100 no_get_full_name, /* get_full_name */
101 no_lookup_name, /* lookup_name */
102 no_link_name, /* link_name */
103 NULL, /* unlink_name */
104 no_open_file, /* open_file */
105 process_get_kernel_obj_list, /* get_kernel_obj_list */
106 no_close_handle, /* close_handle */
107 process_destroy /* destroy */
110 static const struct fd_ops process_fd_ops =
112 NULL, /* get_poll_events */
113 process_poll_event, /* poll_event */
114 NULL, /* flush */
115 NULL, /* get_fd_type */
116 NULL, /* ioctl */
117 NULL, /* queue_async */
118 NULL, /* reselect_async */
119 NULL /* cancel async */
122 /* process startup info */
124 struct startup_info
126 struct object obj; /* object header */
127 struct process *process; /* created process */
128 data_size_t info_size; /* size of startup info */
129 data_size_t data_size; /* size of whole startup data */
130 startup_info_t *data; /* data for startup info */
133 static void startup_info_dump( struct object *obj, int verbose );
134 static int startup_info_signaled( struct object *obj, struct wait_queue_entry *entry );
135 static void startup_info_destroy( struct object *obj );
137 static const struct object_ops startup_info_ops =
139 sizeof(struct startup_info), /* size */
140 &no_type, /* type */
141 startup_info_dump, /* dump */
142 add_queue, /* add_queue */
143 remove_queue, /* remove_queue */
144 startup_info_signaled, /* signaled */
145 no_satisfied, /* satisfied */
146 no_signal, /* signal */
147 no_get_fd, /* get_fd */
148 default_map_access, /* map_access */
149 default_get_sd, /* get_sd */
150 default_set_sd, /* set_sd */
151 no_get_full_name, /* get_full_name */
152 no_lookup_name, /* lookup_name */
153 no_link_name, /* link_name */
154 NULL, /* unlink_name */
155 no_open_file, /* open_file */
156 no_kernel_obj_list, /* get_kernel_obj_list */
157 no_close_handle, /* close_handle */
158 startup_info_destroy /* destroy */
161 /* job object */
163 static const WCHAR job_name[] = {'J','o','b'};
165 struct type_descr job_type =
167 { job_name, sizeof(job_name) }, /* name */
168 JOB_OBJECT_ALL_ACCESS, /* valid_access */
169 { /* mapping */
170 STANDARD_RIGHTS_READ | JOB_OBJECT_QUERY,
171 STANDARD_RIGHTS_WRITE | JOB_OBJECT_TERMINATE | JOB_OBJECT_SET_ATTRIBUTES | JOB_OBJECT_ASSIGN_PROCESS,
172 STANDARD_RIGHTS_EXECUTE | SYNCHRONIZE,
173 JOB_OBJECT_ALL_ACCESS
177 static void job_dump( struct object *obj, int verbose );
178 static int job_signaled( struct object *obj, struct wait_queue_entry *entry );
179 static int job_close_handle( struct object *obj, struct process *process, obj_handle_t handle );
180 static void job_destroy( struct object *obj );
182 struct job
184 struct object obj; /* object header */
185 struct list process_list; /* list of all processes */
186 int num_processes; /* count of running processes */
187 int total_processes; /* count of processes which have been assigned */
188 unsigned int limit_flags; /* limit flags */
189 int terminating; /* job is terminating */
190 int signaled; /* job is signaled */
191 struct completion *completion_port; /* associated completion port */
192 apc_param_t completion_key; /* key to send with completion messages */
195 static const struct object_ops job_ops =
197 sizeof(struct job), /* size */
198 &job_type, /* type */
199 job_dump, /* dump */
200 add_queue, /* add_queue */
201 remove_queue, /* remove_queue */
202 job_signaled, /* signaled */
203 no_satisfied, /* satisfied */
204 no_signal, /* signal */
205 no_get_fd, /* get_fd */
206 default_map_access, /* map_access */
207 default_get_sd, /* get_sd */
208 default_set_sd, /* set_sd */
209 default_get_full_name, /* get_full_name */
210 no_lookup_name, /* lookup_name */
211 directory_link_name, /* link_name */
212 default_unlink_name, /* unlink_name */
213 no_open_file, /* open_file */
214 no_kernel_obj_list, /* get_kernel_obj_list */
215 job_close_handle, /* close_handle */
216 job_destroy /* destroy */
219 static struct job *create_job_object( struct object *root, const struct unicode_str *name,
220 unsigned int attr, const struct security_descriptor *sd )
222 struct job *job;
224 if ((job = create_named_object( root, &job_ops, name, attr, sd )))
226 if (get_error() != STATUS_OBJECT_NAME_EXISTS)
228 /* initialize it if it didn't already exist */
229 list_init( &job->process_list );
230 job->num_processes = 0;
231 job->total_processes = 0;
232 job->limit_flags = 0;
233 job->terminating = 0;
234 job->signaled = 0;
235 job->completion_port = NULL;
236 job->completion_key = 0;
239 return job;
242 static struct job *get_job_obj( struct process *process, obj_handle_t handle, unsigned int access )
244 return (struct job *)get_handle_obj( process, handle, access, &job_ops );
247 static void add_job_completion( struct job *job, apc_param_t msg, apc_param_t pid )
249 if (job->completion_port)
250 add_completion( job->completion_port, job->completion_key, pid, STATUS_SUCCESS, msg );
253 static void add_job_process( struct job *job, struct process *process )
255 process->job = (struct job *)grab_object( job );
256 list_add_tail( &job->process_list, &process->job_entry );
257 job->num_processes++;
258 job->total_processes++;
260 add_job_completion( job, JOB_OBJECT_MSG_NEW_PROCESS, get_process_id(process) );
263 /* called when a process has terminated, allow one additional process */
264 static void release_job_process( struct process *process )
266 struct job *job = process->job;
268 if (!job) return;
270 assert( job->num_processes );
271 job->num_processes--;
273 if (!job->terminating)
274 add_job_completion( job, JOB_OBJECT_MSG_EXIT_PROCESS, get_process_id(process) );
276 if (!job->num_processes)
277 add_job_completion( job, JOB_OBJECT_MSG_ACTIVE_PROCESS_ZERO, 0 );
280 static void terminate_job( struct job *job, int exit_code )
282 /* don't report completion events for terminated processes */
283 job->terminating = 1;
285 for (;;) /* restart from the beginning of the list every time */
287 struct process *process;
289 /* find the first process associated with this job and still running */
290 LIST_FOR_EACH_ENTRY( process, &job->process_list, struct process, job_entry )
292 if (process->running_threads) break;
294 if (&process->job_entry == &job->process_list) break; /* no process found */
295 assert( process->job == job );
296 terminate_process( process, NULL, exit_code );
299 job->terminating = 0;
300 job->signaled = 1;
301 wake_up( &job->obj, 0 );
304 static int job_close_handle( struct object *obj, struct process *process, obj_handle_t handle )
306 struct job *job = (struct job *)obj;
307 assert( obj->ops == &job_ops );
309 if (obj->handle_count == 1) /* last handle */
311 if (job->limit_flags & JOB_OBJECT_LIMIT_KILL_ON_JOB_CLOSE)
312 terminate_job( job, 0 );
314 return 1;
317 static void job_destroy( struct object *obj )
319 struct job *job = (struct job *)obj;
320 assert( obj->ops == &job_ops );
322 assert( !job->num_processes );
323 assert( list_empty(&job->process_list) );
325 if (job->completion_port) release_object( job->completion_port );
328 static void job_dump( struct object *obj, int verbose )
330 struct job *job = (struct job *)obj;
331 assert( obj->ops == &job_ops );
332 fprintf( stderr, "Job processes=%d\n", list_count(&job->process_list) );
335 static int job_signaled( struct object *obj, struct wait_queue_entry *entry )
337 struct job *job = (struct job *)obj;
338 return job->signaled;
341 struct ptid_entry
343 void *ptr; /* entry ptr */
344 unsigned int next; /* next free entry */
347 static struct ptid_entry *ptid_entries; /* array of ptid entries */
348 static unsigned int used_ptid_entries; /* number of entries in use */
349 static unsigned int alloc_ptid_entries; /* number of allocated entries */
350 static unsigned int next_free_ptid; /* next free entry */
351 static unsigned int last_free_ptid; /* last free entry */
352 static unsigned int num_free_ptids; /* number of free ptids */
354 static void kill_all_processes(void);
356 #define PTID_OFFSET 8 /* offset for first ptid value */
358 static unsigned int index_from_ptid(unsigned int id) { return id / 4; }
359 static unsigned int ptid_from_index(unsigned int index) { return index * 4; }
361 /* allocate a new process or thread id */
362 unsigned int alloc_ptid( void *ptr )
364 struct ptid_entry *entry;
365 unsigned int index;
367 if (used_ptid_entries < alloc_ptid_entries)
369 index = used_ptid_entries + PTID_OFFSET;
370 entry = &ptid_entries[used_ptid_entries++];
372 else if (next_free_ptid && num_free_ptids >= 256)
374 index = next_free_ptid;
375 entry = &ptid_entries[index - PTID_OFFSET];
376 if (!(next_free_ptid = entry->next)) last_free_ptid = 0;
377 num_free_ptids--;
379 else /* need to grow the array */
381 unsigned int count = alloc_ptid_entries + (alloc_ptid_entries / 2);
382 if (!count) count = 512;
383 if (!(entry = realloc( ptid_entries, count * sizeof(*entry) )))
385 set_error( STATUS_NO_MEMORY );
386 return 0;
388 ptid_entries = entry;
389 alloc_ptid_entries = count;
390 index = used_ptid_entries + PTID_OFFSET;
391 entry = &ptid_entries[used_ptid_entries++];
394 entry->ptr = ptr;
395 return ptid_from_index( index );
398 /* free a process or thread id */
399 void free_ptid( unsigned int id )
401 unsigned int index = index_from_ptid( id );
402 struct ptid_entry *entry = &ptid_entries[index - PTID_OFFSET];
404 entry->ptr = NULL;
405 entry->next = 0;
407 /* append to end of free list so that we don't reuse it too early */
408 if (last_free_ptid) ptid_entries[last_free_ptid - PTID_OFFSET].next = index;
409 else next_free_ptid = index;
410 last_free_ptid = index;
411 num_free_ptids++;
414 /* retrieve the pointer corresponding to a process or thread id */
415 void *get_ptid_entry( unsigned int id )
417 unsigned int index = index_from_ptid( id );
418 if (index < PTID_OFFSET) return NULL;
419 if (index - PTID_OFFSET >= used_ptid_entries) return NULL;
420 return ptid_entries[index - PTID_OFFSET].ptr;
423 /* return the main thread of the process */
424 struct thread *get_process_first_thread( struct process *process )
426 struct list *ptr = list_head( &process->thread_list );
427 if (!ptr) return NULL;
428 return LIST_ENTRY( ptr, struct thread, proc_entry );
431 /* set the state of the process startup info */
432 static void set_process_startup_state( struct process *process, enum startup_state state )
434 if (process->startup_state == STARTUP_IN_PROGRESS) process->startup_state = state;
435 if (process->startup_info)
437 wake_up( &process->startup_info->obj, 0 );
438 release_object( process->startup_info );
439 process->startup_info = NULL;
443 /* callback for server shutdown */
444 static void server_shutdown_timeout( void *arg )
446 shutdown_timeout = NULL;
447 if (!running_processes)
449 close_master_socket( 0 );
450 return;
452 switch(++shutdown_stage)
454 case 1: /* signal system processes to exit */
455 if (debug_level) fprintf( stderr, "wineserver: shutting down\n" );
456 if (shutdown_event) set_event( shutdown_event );
457 shutdown_timeout = add_timeout_user( 2 * -TICKS_PER_SEC, server_shutdown_timeout, NULL );
458 close_master_socket( 4 * -TICKS_PER_SEC );
459 break;
460 case 2: /* now forcibly kill all processes (but still wait for SIGKILL timeouts) */
461 kill_all_processes();
462 break;
466 /* forced shutdown, used for wineserver -k */
467 void shutdown_master_socket(void)
469 kill_all_processes();
470 shutdown_stage = 2;
471 if (shutdown_timeout)
473 remove_timeout_user( shutdown_timeout );
474 shutdown_timeout = NULL;
476 close_master_socket( 2 * -TICKS_PER_SEC ); /* for SIGKILL timeouts */
479 /* final cleanup once we are sure a process is really dead */
480 static void process_died( struct process *process )
482 if (debug_level) fprintf( stderr, "%04x: *process killed*\n", process->id );
483 if (!process->is_system)
485 if (!--user_processes && !shutdown_stage && master_socket_timeout != TIMEOUT_INFINITE)
486 shutdown_timeout = add_timeout_user( master_socket_timeout, server_shutdown_timeout, NULL );
488 release_object( process );
489 if (!--running_processes && shutdown_stage) close_master_socket( 0 );
492 /* callback for process sigkill timeout */
493 static void process_sigkill( void *private )
495 struct process *process = private;
497 process->sigkill_timeout = NULL;
498 kill( process->unix_pid, SIGKILL );
499 process_died( process );
502 /* start the sigkill timer for a process upon exit */
503 static void start_sigkill_timer( struct process *process )
505 grab_object( process );
506 if (process->unix_pid != -1 && process->msg_fd)
507 process->sigkill_timeout = add_timeout_user( -TICKS_PER_SEC, process_sigkill, process );
508 else
509 process_died( process );
512 /* create a new process */
513 /* if the function fails the fd is closed */
514 struct process *create_process( int fd, struct process *parent, int inherit_all, const startup_info_t *info,
515 const struct security_descriptor *sd, const obj_handle_t *handles,
516 unsigned int handle_count, struct token *token )
518 struct process *process;
520 if (!(process = alloc_object( &process_ops )))
522 close( fd );
523 goto error;
525 process->parent_id = 0;
526 process->debug_obj = NULL;
527 process->debug_event = NULL;
528 process->handles = NULL;
529 process->msg_fd = NULL;
530 process->sigkill_timeout = NULL;
531 process->unix_pid = -1;
532 process->exit_code = STILL_ACTIVE;
533 process->running_threads = 0;
534 process->priority = PROCESS_PRIOCLASS_NORMAL;
535 process->suspend = 0;
536 process->is_system = 0;
537 process->debug_children = 1;
538 process->is_terminating = 0;
539 process->job = NULL;
540 process->console = NULL;
541 process->startup_state = STARTUP_IN_PROGRESS;
542 process->startup_info = NULL;
543 process->idle_event = NULL;
544 process->peb = 0;
545 process->ldt_copy = 0;
546 process->dir_cache = NULL;
547 process->winstation = 0;
548 process->desktop = 0;
549 process->token = NULL;
550 process->trace_data = 0;
551 process->rawinput_mouse = NULL;
552 process->rawinput_kbd = NULL;
553 list_init( &process->kernel_object );
554 list_init( &process->thread_list );
555 list_init( &process->locks );
556 list_init( &process->asyncs );
557 list_init( &process->classes );
558 list_init( &process->views );
559 list_init( &process->rawinput_devices );
561 process->end_time = 0;
562 list_add_tail( &process_list, &process->entry );
564 if (sd && !default_set_sd( &process->obj, sd, OWNER_SECURITY_INFORMATION | GROUP_SECURITY_INFORMATION |
565 DACL_SECURITY_INFORMATION | SACL_SECURITY_INFORMATION ))
567 close( fd );
568 goto error;
570 if (!(process->id = process->group_id = alloc_ptid( process )))
572 close( fd );
573 goto error;
575 if (!(process->msg_fd = create_anonymous_fd( &process_fd_ops, fd, &process->obj, 0 ))) goto error;
577 /* create the handle table */
578 if (!parent)
580 process->handles = alloc_handle_table( process, 0 );
581 process->token = token_create_admin( TokenElevationTypeFull );
582 process->affinity = ~0;
584 else
586 obj_handle_t std_handles[3];
588 std_handles[0] = info->hstdin;
589 std_handles[1] = info->hstdout;
590 std_handles[2] = info->hstderr;
592 process->parent_id = parent->id;
593 process->handles = inherit_all ? copy_handle_table( process, parent, handles, handle_count, std_handles )
594 : alloc_handle_table( process, 0 );
595 /* Note: for security reasons, starting a new process does not attempt
596 * to use the current impersonation token for the new process */
597 process->token = token_duplicate( token ? token : parent->token, TRUE, 0, NULL, NULL, 0, NULL, 0 );
598 process->affinity = parent->affinity;
600 if (!process->handles || !process->token) goto error;
602 /* Assign a high security label to the token. The default would be medium
603 * but Wine provides admin access to all applications right now so high
604 * makes more sense for the time being. */
605 if (!token_assign_label( process->token, security_high_label_sid ))
606 goto error;
608 set_fd_events( process->msg_fd, POLLIN ); /* start listening to events */
609 return process;
611 error:
612 if (process) release_object( process );
613 /* if we failed to start our first process, close everything down */
614 if (!running_processes && master_socket_timeout != TIMEOUT_INFINITE) close_master_socket( 0 );
615 return NULL;
618 /* get the process data size */
619 data_size_t get_process_startup_info_size( struct process *process )
621 struct startup_info *info = process->startup_info;
623 if (!info) return 0;
624 return info->data_size;
627 /* destroy a process when its refcount is 0 */
628 static void process_destroy( struct object *obj )
630 struct process *process = (struct process *)obj;
631 assert( obj->ops == &process_ops );
633 /* we can't have a thread remaining */
634 assert( list_empty( &process->thread_list ));
635 assert( list_empty( &process->asyncs ));
637 assert( !process->sigkill_timeout ); /* timeout should hold a reference to the process */
639 close_process_handles( process );
640 set_process_startup_state( process, STARTUP_ABORTED );
642 if (process->job)
644 list_remove( &process->job_entry );
645 release_object( process->job );
647 if (process->console) release_object( process->console );
648 if (process->msg_fd) release_object( process->msg_fd );
649 list_remove( &process->entry );
650 if (process->idle_event) release_object( process->idle_event );
651 if (process->id) free_ptid( process->id );
652 if (process->token) release_object( process->token );
653 free( process->dir_cache );
656 /* dump a process on stdout for debugging purposes */
657 static void process_dump( struct object *obj, int verbose )
659 struct process *process = (struct process *)obj;
660 assert( obj->ops == &process_ops );
662 fprintf( stderr, "Process id=%04x handles=%p\n", process->id, process->handles );
665 static int process_signaled( struct object *obj, struct wait_queue_entry *entry )
667 struct process *process = (struct process *)obj;
668 return !process->running_threads;
671 static unsigned int process_map_access( struct object *obj, unsigned int access )
673 access = default_map_access( obj, access );
674 if (access & PROCESS_QUERY_INFORMATION) access |= PROCESS_QUERY_LIMITED_INFORMATION;
675 if (access & PROCESS_SET_INFORMATION) access |= PROCESS_SET_LIMITED_INFORMATION;
676 return access;
679 static struct list *process_get_kernel_obj_list( struct object *obj )
681 struct process *process = (struct process *)obj;
682 return &process->kernel_object;
685 static struct security_descriptor *process_get_sd( struct object *obj )
687 static struct security_descriptor *process_default_sd;
689 if (obj->sd) return obj->sd;
691 if (!process_default_sd)
693 size_t users_sid_len = security_sid_len( security_domain_users_sid );
694 size_t admins_sid_len = security_sid_len( security_builtin_admins_sid );
695 size_t dacl_len = sizeof(ACL) + 2 * offsetof( ACCESS_ALLOWED_ACE, SidStart )
696 + users_sid_len + admins_sid_len;
697 ACCESS_ALLOWED_ACE *aaa;
698 ACL *dacl;
700 process_default_sd = mem_alloc( sizeof(*process_default_sd) + admins_sid_len + users_sid_len
701 + dacl_len );
702 process_default_sd->control = SE_DACL_PRESENT;
703 process_default_sd->owner_len = admins_sid_len;
704 process_default_sd->group_len = users_sid_len;
705 process_default_sd->sacl_len = 0;
706 process_default_sd->dacl_len = dacl_len;
707 memcpy( process_default_sd + 1, security_builtin_admins_sid, admins_sid_len );
708 memcpy( (char *)(process_default_sd + 1) + admins_sid_len, security_domain_users_sid, users_sid_len );
710 dacl = (ACL *)((char *)(process_default_sd + 1) + admins_sid_len + users_sid_len);
711 dacl->AclRevision = ACL_REVISION;
712 dacl->Sbz1 = 0;
713 dacl->AclSize = dacl_len;
714 dacl->AceCount = 2;
715 dacl->Sbz2 = 0;
716 aaa = (ACCESS_ALLOWED_ACE *)(dacl + 1);
717 aaa->Header.AceType = ACCESS_ALLOWED_ACE_TYPE;
718 aaa->Header.AceFlags = INHERIT_ONLY_ACE | CONTAINER_INHERIT_ACE;
719 aaa->Header.AceSize = offsetof( ACCESS_ALLOWED_ACE, SidStart ) + users_sid_len;
720 aaa->Mask = GENERIC_READ;
721 memcpy( &aaa->SidStart, security_domain_users_sid, users_sid_len );
722 aaa = (ACCESS_ALLOWED_ACE *)((char *)aaa + aaa->Header.AceSize);
723 aaa->Header.AceType = ACCESS_ALLOWED_ACE_TYPE;
724 aaa->Header.AceFlags = 0;
725 aaa->Header.AceSize = offsetof( ACCESS_ALLOWED_ACE, SidStart ) + admins_sid_len;
726 aaa->Mask = PROCESS_ALL_ACCESS;
727 memcpy( &aaa->SidStart, security_builtin_admins_sid, admins_sid_len );
729 return process_default_sd;
732 static void process_poll_event( struct fd *fd, int event )
734 struct process *process = get_fd_user( fd );
735 assert( process->obj.ops == &process_ops );
737 if (event & (POLLERR | POLLHUP)) kill_process( process, 0 );
738 else if (event & POLLIN) receive_fd( process );
741 static void startup_info_destroy( struct object *obj )
743 struct startup_info *info = (struct startup_info *)obj;
744 assert( obj->ops == &startup_info_ops );
745 free( info->data );
746 if (info->process) release_object( info->process );
749 static void startup_info_dump( struct object *obj, int verbose )
751 struct startup_info *info = (struct startup_info *)obj;
752 assert( obj->ops == &startup_info_ops );
754 fputs( "Startup info", stderr );
755 if (info->data)
756 fprintf( stderr, " in=%04x out=%04x err=%04x",
757 info->data->hstdin, info->data->hstdout, info->data->hstderr );
758 fputc( '\n', stderr );
761 static int startup_info_signaled( struct object *obj, struct wait_queue_entry *entry )
763 struct startup_info *info = (struct startup_info *)obj;
764 return info->process && info->process->startup_state != STARTUP_IN_PROGRESS;
767 /* get a process from an id (and increment the refcount) */
768 struct process *get_process_from_id( process_id_t id )
770 struct object *obj = get_ptid_entry( id );
772 if (obj && obj->ops == &process_ops) return (struct process *)grab_object( obj );
773 set_error( STATUS_INVALID_CID );
774 return NULL;
777 /* get a process from a handle (and increment the refcount) */
778 struct process *get_process_from_handle( obj_handle_t handle, unsigned int access )
780 return (struct process *)get_handle_obj( current->process, handle,
781 access, &process_ops );
784 /* terminate a process with the given exit code */
785 static void terminate_process( struct process *process, struct thread *skip, int exit_code )
787 struct thread *thread;
789 grab_object( process ); /* make sure it doesn't get freed when threads die */
790 process->is_terminating = 1;
792 restart:
793 LIST_FOR_EACH_ENTRY( thread, &process->thread_list, struct thread, proc_entry )
795 if (exit_code) thread->exit_code = exit_code;
796 if (thread == skip) continue;
797 if (thread->state == TERMINATED) continue;
798 kill_thread( thread, 1 );
799 goto restart;
801 release_object( process );
804 /* kill all processes */
805 static void kill_all_processes(void)
807 for (;;)
809 struct process *process;
811 LIST_FOR_EACH_ENTRY( process, &process_list, struct process, entry )
813 if (process->running_threads) break;
815 if (&process->entry == &process_list) break; /* no process found */
816 terminate_process( process, NULL, 1 );
820 /* kill all processes being attached to a console renderer */
821 void kill_console_processes( struct thread *renderer, int exit_code )
823 for (;;) /* restart from the beginning of the list every time */
825 struct process *process;
827 /* find the first process being attached to 'renderer' and still running */
828 LIST_FOR_EACH_ENTRY( process, &process_list, struct process, entry )
830 if (process == renderer->process) continue;
831 if (!process->running_threads) continue;
832 if (process->console && console_get_renderer( process->console ) == renderer) break;
834 if (&process->entry == &process_list) break; /* no process found */
835 terminate_process( process, NULL, exit_code );
839 /* a process has been killed (i.e. its last thread died) */
840 static void process_killed( struct process *process )
842 struct list *ptr;
844 assert( list_empty( &process->thread_list ));
845 process->end_time = current_time;
846 if (!process->is_system) close_process_desktop( process );
847 process->winstation = 0;
848 process->desktop = 0;
849 close_process_handles( process );
850 cancel_process_asyncs( process );
851 if (process->idle_event) release_object( process->idle_event );
852 process->idle_event = NULL;
853 assert( !process->console );
855 while ((ptr = list_head( &process->rawinput_devices )))
857 struct rawinput_device_entry *entry = LIST_ENTRY( ptr, struct rawinput_device_entry, entry );
858 list_remove( &entry->entry );
859 free( entry );
861 destroy_process_classes( process );
862 free_mapped_views( process );
863 free_process_user_handles( process );
864 remove_process_locks( process );
865 set_process_startup_state( process, STARTUP_ABORTED );
866 finish_process_tracing( process );
867 release_job_process( process );
868 start_sigkill_timer( process );
869 wake_up( &process->obj, 0 );
872 /* add a thread to a process running threads list */
873 void add_process_thread( struct process *process, struct thread *thread )
875 list_add_tail( &process->thread_list, &thread->proc_entry );
876 if (!process->running_threads++)
878 running_processes++;
879 if (!process->is_system)
881 if (!user_processes++ && shutdown_timeout)
883 remove_timeout_user( shutdown_timeout );
884 shutdown_timeout = NULL;
888 grab_object( thread );
891 /* remove a thread from a process running threads list */
892 void remove_process_thread( struct process *process, struct thread *thread )
894 assert( process->running_threads > 0 );
895 assert( !list_empty( &process->thread_list ));
897 list_remove( &thread->proc_entry );
899 if (!--process->running_threads)
901 /* we have removed the last running thread, exit the process */
902 process->exit_code = thread->exit_code;
903 generate_debug_event( thread, DbgExitProcessStateChange, process );
904 process_killed( process );
906 else generate_debug_event( thread, DbgExitThreadStateChange, thread );
907 release_object( thread );
910 /* suspend all the threads of a process */
911 void suspend_process( struct process *process )
913 if (!process->suspend++)
915 struct list *ptr, *next;
917 LIST_FOR_EACH_SAFE( ptr, next, &process->thread_list )
919 struct thread *thread = LIST_ENTRY( ptr, struct thread, proc_entry );
920 if (!thread->suspend) stop_thread( thread );
925 /* resume all the threads of a process */
926 void resume_process( struct process *process )
928 assert (process->suspend > 0);
929 if (!--process->suspend)
931 struct list *ptr, *next;
933 LIST_FOR_EACH_SAFE( ptr, next, &process->thread_list )
935 struct thread *thread = LIST_ENTRY( ptr, struct thread, proc_entry );
936 if (!thread->suspend) wake_thread( thread );
941 /* kill a process on the spot */
942 void kill_process( struct process *process, int violent_death )
944 if (!violent_death && process->msg_fd) /* normal termination on pipe close */
946 release_object( process->msg_fd );
947 process->msg_fd = NULL;
950 if (process->sigkill_timeout) /* already waiting for it to die */
952 remove_timeout_user( process->sigkill_timeout );
953 process->sigkill_timeout = NULL;
954 process_died( process );
955 return;
958 if (violent_death) terminate_process( process, NULL, 1 );
959 else
961 struct list *ptr;
963 grab_object( process ); /* make sure it doesn't get freed when threads die */
964 while ((ptr = list_head( &process->thread_list )))
966 struct thread *thread = LIST_ENTRY( ptr, struct thread, proc_entry );
967 kill_thread( thread, 0 );
969 release_object( process );
973 /* detach all processes being debugged by a given thread */
974 void detach_debugged_processes( struct debug_obj *debug_obj, int exit_code )
976 for (;;) /* restart from the beginning of the list every time */
978 struct process *process;
980 /* find the first process being debugged by 'debugger' and still running */
981 LIST_FOR_EACH_ENTRY( process, &process_list, struct process, entry )
983 if (!process->running_threads) continue;
984 if (process->debug_obj == debug_obj) break;
986 if (&process->entry == &process_list) break; /* no process found */
987 if (exit_code)
989 process->debug_obj = NULL;
990 terminate_process( process, NULL, exit_code );
992 else debugger_detach( process, debug_obj );
997 void enum_processes( int (*cb)(struct process*, void*), void *user )
999 struct list *ptr, *next;
1001 LIST_FOR_EACH_SAFE( ptr, next, &process_list )
1003 struct process *process = LIST_ENTRY( ptr, struct process, entry );
1004 if ((cb)(process, user)) break;
1008 /* set the debugged flag in the process PEB */
1009 int set_process_debug_flag( struct process *process, int flag )
1011 char data = (flag != 0);
1013 /* BeingDebugged flag is the byte at offset 2 in the PEB */
1014 return write_process_memory( process, process->peb + 2, 1, &data );
1017 /* create a new process */
1018 DECL_HANDLER(new_process)
1020 struct startup_info *info;
1021 const void *info_ptr;
1022 struct unicode_str name;
1023 const struct security_descriptor *sd;
1024 const struct object_attributes *objattr = get_req_object_attributes( &sd, &name, NULL );
1025 struct process *process = NULL;
1026 struct token *token = NULL;
1027 struct debug_obj *debug_obj = NULL;
1028 struct process *parent;
1029 struct thread *parent_thread = current;
1030 int socket_fd = thread_get_inflight_fd( current, req->socket_fd );
1031 const obj_handle_t *handles = NULL;
1033 if (socket_fd == -1)
1035 set_error( STATUS_INVALID_PARAMETER );
1036 return;
1038 if (!objattr)
1040 set_error( STATUS_INVALID_PARAMETER );
1041 close( socket_fd );
1042 return;
1044 if (fcntl( socket_fd, F_SETFL, O_NONBLOCK ) == -1)
1046 set_error( STATUS_INVALID_HANDLE );
1047 close( socket_fd );
1048 return;
1050 if (shutdown_stage)
1052 set_error( STATUS_SHUTDOWN_IN_PROGRESS );
1053 close( socket_fd );
1054 return;
1056 if (!is_cpu_supported( req->cpu ))
1058 close( socket_fd );
1059 return;
1062 if (req->parent_process)
1064 if (!(parent = get_process_from_handle( req->parent_process, PROCESS_CREATE_PROCESS)))
1066 close( socket_fd );
1067 return;
1069 parent_thread = NULL;
1071 else parent = (struct process *)grab_object( current->process );
1073 if (parent->job && (req->create_flags & CREATE_BREAKAWAY_FROM_JOB) &&
1074 !(parent->job->limit_flags & (JOB_OBJECT_LIMIT_BREAKAWAY_OK | JOB_OBJECT_LIMIT_SILENT_BREAKAWAY_OK)))
1076 set_error( STATUS_ACCESS_DENIED );
1077 close( socket_fd );
1078 release_object( parent );
1079 return;
1082 /* build the startup info for a new process */
1083 if (!(info = alloc_object( &startup_info_ops )))
1085 close( socket_fd );
1086 release_object( parent );
1087 return;
1089 info->process = NULL;
1090 info->data = NULL;
1092 info_ptr = get_req_data_after_objattr( objattr, &info->data_size );
1094 if ((req->handles_size & 3) || req->handles_size > info->data_size)
1096 set_error( STATUS_INVALID_PARAMETER );
1097 close( socket_fd );
1098 goto done;
1100 if (req->handles_size)
1102 handles = info_ptr;
1103 info_ptr = (const char *)info_ptr + req->handles_size;
1104 info->data_size -= req->handles_size;
1106 info->info_size = min( req->info_size, info->data_size );
1108 if (req->info_size < sizeof(*info->data))
1110 /* make sure we have a full startup_info_t structure */
1111 data_size_t env_size = info->data_size - info->info_size;
1112 data_size_t info_size = min( req->info_size, FIELD_OFFSET( startup_info_t, curdir_len ));
1114 if (!(info->data = mem_alloc( sizeof(*info->data) + env_size )))
1116 close( socket_fd );
1117 goto done;
1119 memcpy( info->data, info_ptr, info_size );
1120 memset( (char *)info->data + info_size, 0, sizeof(*info->data) - info_size );
1121 memcpy( info->data + 1, (const char *)info_ptr + req->info_size, env_size );
1122 info->info_size = sizeof(startup_info_t);
1123 info->data_size = info->info_size + env_size;
1125 else
1127 data_size_t pos = sizeof(*info->data);
1129 if (!(info->data = memdup( info_ptr, info->data_size )))
1131 close( socket_fd );
1132 goto done;
1134 #define FIXUP_LEN(len) do { (len) = min( (len), info->info_size - pos ); pos += (len); } while(0)
1135 FIXUP_LEN( info->data->curdir_len );
1136 FIXUP_LEN( info->data->dllpath_len );
1137 FIXUP_LEN( info->data->imagepath_len );
1138 FIXUP_LEN( info->data->cmdline_len );
1139 FIXUP_LEN( info->data->title_len );
1140 FIXUP_LEN( info->data->desktop_len );
1141 FIXUP_LEN( info->data->shellinfo_len );
1142 FIXUP_LEN( info->data->runtime_len );
1143 #undef FIXUP_LEN
1146 if (req->token && !(token = get_token_obj( current->process, req->token, TOKEN_QUERY | TOKEN_ASSIGN_PRIMARY )))
1148 close( socket_fd );
1149 goto done;
1151 if (req->debug && !(debug_obj = get_debug_obj( current->process, req->debug, DEBUG_PROCESS_ASSIGN )))
1153 close( socket_fd );
1154 goto done;
1157 if (!(process = create_process( socket_fd, parent, req->inherit_all, info->data, sd,
1158 handles, req->handles_size / sizeof(*handles), token )))
1159 goto done;
1161 process->startup_info = (struct startup_info *)grab_object( info );
1163 if (parent->job
1164 && !(req->create_flags & CREATE_BREAKAWAY_FROM_JOB)
1165 && !(parent->job->limit_flags & JOB_OBJECT_LIMIT_SILENT_BREAKAWAY_OK))
1167 add_job_process( parent->job, process );
1170 /* connect to the window station */
1171 connect_process_winstation( process, parent_thread, parent );
1173 /* set the process console */
1174 if (info->data->console > 3)
1175 info->data->console = duplicate_handle( parent, info->data->console, process,
1176 0, 0, DUPLICATE_SAME_ACCESS );
1178 if (!req->inherit_all && !(req->create_flags & CREATE_NEW_CONSOLE))
1180 info->data->hstdin = duplicate_handle( parent, info->data->hstdin, process,
1181 0, OBJ_INHERIT, DUPLICATE_SAME_ACCESS );
1182 info->data->hstdout = duplicate_handle( parent, info->data->hstdout, process,
1183 0, OBJ_INHERIT, DUPLICATE_SAME_ACCESS );
1184 info->data->hstderr = duplicate_handle( parent, info->data->hstderr, process,
1185 0, OBJ_INHERIT, DUPLICATE_SAME_ACCESS );
1186 /* some handles above may have been invalid; this is not an error */
1187 if (get_error() == STATUS_INVALID_HANDLE ||
1188 get_error() == STATUS_OBJECT_TYPE_MISMATCH) clear_error();
1191 /* attach to the debugger */
1192 if (debug_obj)
1194 process->debug_obj = debug_obj;
1195 process->debug_children = !(req->create_flags & DEBUG_ONLY_THIS_PROCESS);
1197 else if (parent->debug_children)
1199 process->debug_obj = parent->debug_obj;
1200 /* debug_children is set to 1 by default */
1203 if (!(req->create_flags & CREATE_NEW_PROCESS_GROUP))
1204 process->group_id = parent->group_id;
1206 info->process = (struct process *)grab_object( process );
1207 reply->info = alloc_handle( current->process, info, SYNCHRONIZE, 0 );
1208 reply->pid = get_process_id( process );
1209 reply->handle = alloc_handle_no_access_check( current->process, process, req->access, objattr->attributes );
1211 done:
1212 if (process) release_object( process );
1213 if (debug_obj) release_object( debug_obj );
1214 if (token) release_object( token );
1215 release_object( parent );
1216 release_object( info );
1219 /* execute a new process, replacing the existing one */
1220 DECL_HANDLER(exec_process)
1222 struct process *process;
1223 int socket_fd = thread_get_inflight_fd( current, req->socket_fd );
1225 if (socket_fd == -1)
1227 set_error( STATUS_INVALID_PARAMETER );
1228 return;
1230 if (fcntl( socket_fd, F_SETFL, O_NONBLOCK ) == -1)
1232 set_error( STATUS_INVALID_HANDLE );
1233 close( socket_fd );
1234 return;
1236 if (shutdown_stage)
1238 set_error( STATUS_SHUTDOWN_IN_PROGRESS );
1239 close( socket_fd );
1240 return;
1242 if (!is_cpu_supported( req->cpu ))
1244 close( socket_fd );
1245 return;
1247 if (!(process = create_process( socket_fd, NULL, 0, NULL, NULL, NULL, 0, NULL ))) return;
1248 create_thread( -1, process, NULL );
1249 release_object( process );
1252 /* Retrieve information about a newly started process */
1253 DECL_HANDLER(get_new_process_info)
1255 struct startup_info *info;
1257 if ((info = (struct startup_info *)get_handle_obj( current->process, req->info,
1258 0, &startup_info_ops )))
1260 reply->success = is_process_init_done( info->process );
1261 reply->exit_code = info->process->exit_code;
1262 release_object( info );
1266 /* Retrieve the new process startup info */
1267 DECL_HANDLER(get_startup_info)
1269 struct process *process = current->process;
1270 struct startup_info *info = process->startup_info;
1271 data_size_t size;
1273 if (!info) return;
1275 /* we return the data directly without making a copy so this can only be called once */
1276 reply->info_size = info->info_size;
1277 size = info->data_size;
1278 if (size > get_reply_max_size()) size = get_reply_max_size();
1279 set_reply_data_ptr( info->data, size );
1280 info->data = NULL;
1281 info->data_size = 0;
1284 /* signal the end of the process initialization */
1285 DECL_HANDLER(init_process_done)
1287 struct process *process = current->process;
1288 struct memory_view *view;
1289 client_ptr_t base;
1290 const pe_image_info_t *image_info;
1292 if (is_process_init_done(process))
1294 set_error( STATUS_INVALID_PARAMETER );
1295 return;
1297 if (!(view = get_exe_view( process )))
1299 set_error( STATUS_DLL_NOT_FOUND );
1300 return;
1302 if (!(image_info = get_view_image_info( view, &base ))) return;
1304 process->start_time = current_time;
1305 current->entry_point = image_info->entry_point;
1307 init_process_tracing( process );
1308 generate_startup_debug_events( process );
1309 set_process_startup_state( process, STARTUP_DONE );
1311 if (image_info->subsystem != IMAGE_SUBSYSTEM_WINDOWS_CUI)
1312 process->idle_event = create_event( NULL, NULL, 0, 1, 0, NULL );
1313 if (process->debug_obj) set_process_debug_flag( process, 1 );
1314 reply->entry = image_info->entry_point;
1315 reply->suspend = (current->suspend || process->suspend);
1318 /* open a handle to a process */
1319 DECL_HANDLER(open_process)
1321 struct process *process = get_process_from_id( req->pid );
1322 reply->handle = 0;
1323 if (process)
1325 reply->handle = alloc_handle( current->process, process, req->access, req->attributes );
1326 release_object( process );
1330 /* terminate a process */
1331 DECL_HANDLER(terminate_process)
1333 struct process *process;
1335 if (req->handle)
1337 process = get_process_from_handle( req->handle, PROCESS_TERMINATE );
1338 if (!process) return;
1340 else process = (struct process *)grab_object( current->process );
1342 reply->self = (current->process == process);
1343 terminate_process( process, current, req->exit_code );
1344 release_object( process );
1347 /* fetch information about a process */
1348 DECL_HANDLER(get_process_info)
1350 struct process *process;
1352 if ((process = get_process_from_handle( req->handle, PROCESS_QUERY_LIMITED_INFORMATION )))
1354 reply->pid = get_process_id( process );
1355 reply->ppid = process->parent_id;
1356 reply->exit_code = process->exit_code;
1357 reply->priority = process->priority;
1358 reply->affinity = process->affinity;
1359 reply->peb = process->peb;
1360 reply->start_time = process->start_time;
1361 reply->end_time = process->end_time;
1362 reply->cpu = process->cpu;
1363 if (get_reply_max_size())
1365 client_ptr_t base;
1366 const pe_image_info_t *info;
1367 struct memory_view *view = get_exe_view( process );
1368 if (view && (info = get_view_image_info( view, &base )))
1369 set_reply_data( info, min( sizeof(*info), get_reply_max_size() ));
1371 release_object( process );
1375 /* retrieve debug information about a process */
1376 DECL_HANDLER(get_process_debug_info)
1378 struct process *process;
1380 if (!(process = get_process_from_handle( req->handle, PROCESS_QUERY_LIMITED_INFORMATION ))) return;
1382 reply->debug_children = process->debug_children;
1383 if (!process->debug_obj) set_error( STATUS_PORT_NOT_SET );
1384 else reply->debug = alloc_handle( current->process, process->debug_obj, DEBUG_ALL_ACCESS, 0 );
1385 release_object( process );
1388 /* fetch the name of the process image */
1389 DECL_HANDLER(get_process_image_name)
1391 struct unicode_str name;
1392 struct memory_view *view;
1393 struct process *process = get_process_from_handle( req->handle, PROCESS_QUERY_LIMITED_INFORMATION );
1395 if (!process) return;
1396 if ((view = get_exe_view( process )) && get_view_nt_name( view, &name ))
1398 /* skip the \??\ prefix */
1399 if (req->win32 && name.len > 6 * sizeof(WCHAR) && name.str[5] == ':')
1401 name.str += 4;
1402 name.len -= 4 * sizeof(WCHAR);
1404 /* FIXME: else resolve symlinks in NT path */
1406 reply->len = name.len;
1407 if (name.len <= get_reply_max_size())
1409 WCHAR *ptr = set_reply_data( name.str, name.len );
1410 /* change \??\ to \\?\ */
1411 if (req->win32 && name.len > sizeof(WCHAR) && ptr[1] == '?') ptr[1] = '\\';
1413 else set_error( STATUS_BUFFER_TOO_SMALL );
1415 release_object( process );
1418 /* retrieve information about a process memory usage */
1419 DECL_HANDLER(get_process_vm_counters)
1421 struct process *process = get_process_from_handle( req->handle, PROCESS_QUERY_LIMITED_INFORMATION );
1423 if (!process) return;
1424 #ifdef linux
1425 if (process->unix_pid != -1)
1427 FILE *f;
1428 char proc_path[32], line[256];
1429 unsigned long value;
1431 sprintf( proc_path, "/proc/%u/status", process->unix_pid );
1432 if ((f = fopen( proc_path, "r" )))
1434 while (fgets( line, sizeof(line), f ))
1436 if (sscanf( line, "VmPeak: %lu", &value ))
1437 reply->peak_virtual_size = (mem_size_t)value * 1024;
1438 else if (sscanf( line, "VmSize: %lu", &value ))
1439 reply->virtual_size = (mem_size_t)value * 1024;
1440 else if (sscanf( line, "VmHWM: %lu", &value ))
1441 reply->peak_working_set_size = (mem_size_t)value * 1024;
1442 else if (sscanf( line, "VmRSS: %lu", &value ))
1443 reply->working_set_size = (mem_size_t)value * 1024;
1444 else if (sscanf( line, "RssAnon: %lu", &value ))
1445 reply->pagefile_usage += (mem_size_t)value * 1024;
1446 else if (sscanf( line, "VmSwap: %lu", &value ))
1447 reply->pagefile_usage += (mem_size_t)value * 1024;
1449 reply->peak_pagefile_usage = reply->pagefile_usage;
1450 fclose( f );
1452 else set_error( STATUS_ACCESS_DENIED );
1454 else set_error( STATUS_ACCESS_DENIED );
1455 #endif
1456 release_object( process );
1459 static void set_process_affinity( struct process *process, affinity_t affinity )
1461 struct thread *thread;
1463 if (!process->running_threads)
1465 set_error( STATUS_PROCESS_IS_TERMINATING );
1466 return;
1469 process->affinity = affinity;
1471 LIST_FOR_EACH_ENTRY( thread, &process->thread_list, struct thread, proc_entry )
1473 set_thread_affinity( thread, affinity );
1477 /* set information about a process */
1478 DECL_HANDLER(set_process_info)
1480 struct process *process;
1482 if ((process = get_process_from_handle( req->handle, PROCESS_SET_INFORMATION )))
1484 if (req->mask & SET_PROCESS_INFO_PRIORITY) process->priority = req->priority;
1485 if (req->mask & SET_PROCESS_INFO_AFFINITY) set_process_affinity( process, req->affinity );
1486 release_object( process );
1490 /* read data from a process address space */
1491 DECL_HANDLER(read_process_memory)
1493 struct process *process;
1494 data_size_t len = get_reply_max_size();
1496 if (!(process = get_process_from_handle( req->handle, PROCESS_VM_READ ))) return;
1498 if (len)
1500 char *buffer = mem_alloc( len );
1501 if (buffer)
1503 if (read_process_memory( process, req->addr, len, buffer ))
1504 set_reply_data_ptr( buffer, len );
1505 else
1506 free( buffer );
1509 release_object( process );
1512 /* write data to a process address space */
1513 DECL_HANDLER(write_process_memory)
1515 struct process *process;
1517 if ((process = get_process_from_handle( req->handle, PROCESS_VM_WRITE )))
1519 data_size_t len = get_req_data_size();
1520 if (len) write_process_memory( process, req->addr, len, get_req_data() );
1521 else set_error( STATUS_INVALID_PARAMETER );
1522 release_object( process );
1526 /* retrieve the process idle event */
1527 DECL_HANDLER(get_process_idle_event)
1529 struct process *process;
1531 reply->event = 0;
1532 if ((process = get_process_from_handle( req->handle, PROCESS_QUERY_INFORMATION )))
1534 if (process->idle_event && process != current->process)
1535 reply->event = alloc_handle( current->process, process->idle_event,
1536 EVENT_ALL_ACCESS, 0 );
1537 release_object( process );
1541 /* make the current process a system process */
1542 DECL_HANDLER(make_process_system)
1544 struct process *process = current->process;
1546 if (!shutdown_event)
1548 if (!(shutdown_event = create_event( NULL, NULL, OBJ_PERMANENT, 1, 0, NULL ))) return;
1549 release_object( shutdown_event );
1552 if (!(reply->event = alloc_handle( current->process, shutdown_event, SYNCHRONIZE, 0 )))
1553 return;
1555 if (!process->is_system)
1557 process->is_system = 1;
1558 close_process_desktop( process );
1559 if (!--user_processes && !shutdown_stage && master_socket_timeout != TIMEOUT_INFINITE)
1560 shutdown_timeout = add_timeout_user( master_socket_timeout, server_shutdown_timeout, NULL );
1564 /* create a new job object */
1565 DECL_HANDLER(create_job)
1567 struct job *job;
1568 struct unicode_str name;
1569 struct object *root;
1570 const struct security_descriptor *sd;
1571 const struct object_attributes *objattr = get_req_object_attributes( &sd, &name, &root );
1573 if (!objattr) return;
1575 if ((job = create_job_object( root, &name, objattr->attributes, sd )))
1577 if (get_error() == STATUS_OBJECT_NAME_EXISTS)
1578 reply->handle = alloc_handle( current->process, job, req->access, objattr->attributes );
1579 else
1580 reply->handle = alloc_handle_no_access_check( current->process, job,
1581 req->access, objattr->attributes );
1582 release_object( job );
1584 if (root) release_object( root );
1587 /* open a job object */
1588 DECL_HANDLER(open_job)
1590 struct unicode_str name = get_req_unicode_str();
1592 reply->handle = open_object( current->process, req->rootdir, req->access,
1593 &job_ops, &name, req->attributes );
1596 /* assign a job object to a process */
1597 DECL_HANDLER(assign_job)
1599 struct process *process;
1600 struct job *job = get_job_obj( current->process, req->job, JOB_OBJECT_ASSIGN_PROCESS );
1602 if (!job) return;
1604 if ((process = get_process_from_handle( req->process, PROCESS_SET_QUOTA | PROCESS_TERMINATE )))
1606 if (!process->running_threads)
1607 set_error( STATUS_PROCESS_IS_TERMINATING );
1608 else if (process->job)
1609 set_error( STATUS_ACCESS_DENIED );
1610 else
1611 add_job_process( job, process );
1612 release_object( process );
1614 release_object( job );
1618 /* check if a process is associated with a job */
1619 DECL_HANDLER(process_in_job)
1621 struct process *process;
1622 struct job *job;
1624 if (!(process = get_process_from_handle( req->process, PROCESS_QUERY_INFORMATION )))
1625 return;
1627 if (!req->job)
1629 set_error( process->job ? STATUS_PROCESS_IN_JOB : STATUS_PROCESS_NOT_IN_JOB );
1631 else if ((job = get_job_obj( current->process, req->job, JOB_OBJECT_QUERY )))
1633 set_error( process->job == job ? STATUS_PROCESS_IN_JOB : STATUS_PROCESS_NOT_IN_JOB );
1634 release_object( job );
1636 release_object( process );
1639 /* retrieve information about a job */
1640 DECL_HANDLER(get_job_info)
1642 struct job *job = get_job_obj( current->process, req->handle, JOB_OBJECT_QUERY );
1644 if (!job) return;
1646 reply->total_processes = job->total_processes;
1647 reply->active_processes = job->num_processes;
1648 release_object( job );
1651 /* terminate all processes associated with the job */
1652 DECL_HANDLER(terminate_job)
1654 struct job *job = get_job_obj( current->process, req->handle, JOB_OBJECT_TERMINATE );
1656 if (!job) return;
1658 terminate_job( job, req->status );
1659 release_object( job );
1662 /* update limits of the job object */
1663 DECL_HANDLER(set_job_limits)
1665 struct job *job = get_job_obj( current->process, req->handle, JOB_OBJECT_SET_ATTRIBUTES );
1667 if (!job) return;
1669 job->limit_flags = req->limit_flags;
1670 release_object( job );
1673 /* set the jobs completion port */
1674 DECL_HANDLER(set_job_completion_port)
1676 struct job *job = get_job_obj( current->process, req->job, JOB_OBJECT_SET_ATTRIBUTES );
1678 if (!job) return;
1680 if (!job->completion_port)
1682 job->completion_port = get_completion_obj( current->process, req->port, IO_COMPLETION_MODIFY_STATE );
1683 job->completion_key = req->key;
1685 else
1686 set_error( STATUS_INVALID_PARAMETER );
1688 release_object( job );
1691 /* Suspend a process */
1692 DECL_HANDLER(suspend_process)
1694 struct process *process;
1696 if ((process = get_process_from_handle( req->handle, PROCESS_SUSPEND_RESUME )))
1698 struct list *ptr, *next;
1700 LIST_FOR_EACH_SAFE( ptr, next, &process->thread_list )
1702 struct thread *thread = LIST_ENTRY( ptr, struct thread, proc_entry );
1703 suspend_thread( thread );
1706 release_object( process );
1710 /* Resume a process */
1711 DECL_HANDLER(resume_process)
1713 struct process *process;
1715 if ((process = get_process_from_handle( req->handle, PROCESS_SUSPEND_RESUME )))
1717 struct list *ptr, *next;
1719 LIST_FOR_EACH_SAFE( ptr, next, &process->thread_list )
1721 struct thread *thread = LIST_ENTRY( ptr, struct thread, proc_entry );
1722 resume_thread( thread );
1725 release_object( process );
1729 /* Get a list of processes and threads currently running */
1730 DECL_HANDLER(list_processes)
1732 struct process *process;
1733 struct thread *thread;
1734 struct unicode_str nt_name;
1735 unsigned int pos = 0;
1736 char *buffer;
1738 reply->process_count = 0;
1739 reply->info_size = 0;
1741 LIST_FOR_EACH_ENTRY( process, &process_list, struct process, entry )
1743 struct memory_view *view = get_exe_view( process );
1744 if (!view || !get_view_nt_name( view, &nt_name )) nt_name.len = 0;
1745 reply->info_size = (reply->info_size + 7) & ~7;
1746 reply->info_size += sizeof(struct process_info) + nt_name.len;
1747 reply->info_size = (reply->info_size + 7) & ~7;
1748 reply->info_size += process->running_threads * sizeof(struct thread_info);
1749 reply->process_count++;
1752 if (reply->info_size > get_reply_max_size())
1754 set_error( STATUS_INFO_LENGTH_MISMATCH );
1755 return;
1758 if (!(buffer = set_reply_data_size( reply->info_size ))) return;
1760 memset( buffer, 0, reply->info_size );
1761 LIST_FOR_EACH_ENTRY( process, &process_list, struct process, entry )
1763 struct process_info *process_info;
1764 struct memory_view *view = get_exe_view( process );
1766 pos = (pos + 7) & ~7;
1767 if (!view || !get_view_nt_name( view, &nt_name )) nt_name.len = 0;
1768 process_info = (struct process_info *)(buffer + pos);
1769 process_info->start_time = process->start_time;
1770 process_info->name_len = nt_name.len;
1771 process_info->thread_count = process->running_threads;
1772 process_info->priority = process->priority;
1773 process_info->pid = process->id;
1774 process_info->parent_pid = process->parent_id;
1775 process_info->handle_count = get_handle_table_count(process);
1776 process_info->unix_pid = process->unix_pid;
1777 pos += sizeof(*process_info);
1778 memcpy( buffer + pos, nt_name.str, nt_name.len );
1779 pos += nt_name.len;
1780 pos = (pos + 7) & ~7;
1781 LIST_FOR_EACH_ENTRY( thread, &process->thread_list, struct thread, proc_entry )
1783 struct thread_info *thread_info = (struct thread_info *)(buffer + pos);
1785 thread_info->start_time = thread->creation_time;
1786 thread_info->tid = thread->id;
1787 thread_info->base_priority = thread->priority;
1788 thread_info->current_priority = thread->priority; /* FIXME */
1789 thread_info->unix_tid = thread->unix_tid;
1790 pos += sizeof(*thread_info);