DIB Engine: implement AlphaBlend
[wine/hacks.git] / server / named_pipe.c
blobd1283448f83c96e402f0fd6f800d1ab9a2538ec3
1 /*
2 * Server-side pipe management
4 * Copyright (C) 1998 Alexandre Julliard
5 * Copyright (C) 2001 Mike McCormack
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; either
10 * version 2.1 of the License, or (at your option) any later version.
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
21 * TODO:
22 * message mode
25 #include "config.h"
26 #include "wine/port.h"
28 #include <assert.h>
29 #include <fcntl.h>
30 #include <string.h>
31 #include <stdarg.h>
32 #include <stdio.h>
33 #include <stdlib.h>
34 #include <sys/time.h>
35 #include <sys/types.h>
36 #ifdef HAVE_SYS_SOCKET_H
37 #include <sys/socket.h>
38 #endif
39 #include <time.h>
40 #include <unistd.h>
41 #ifdef HAVE_POLL_H
42 #include <poll.h>
43 #endif
45 #include "ntstatus.h"
46 #define WIN32_NO_STATUS
47 #include "windef.h"
48 #include "winternl.h"
49 #include "winioctl.h"
51 #include "file.h"
52 #include "handle.h"
53 #include "thread.h"
54 #include "request.h"
56 enum pipe_state
58 ps_idle_server,
59 ps_wait_open,
60 ps_connected_server,
61 ps_wait_disconnect,
62 ps_disconnected_server,
63 ps_wait_connect
66 struct named_pipe;
68 struct pipe_server
70 struct object obj; /* object header */
71 struct fd *fd; /* pipe file descriptor */
72 struct fd *ioctl_fd; /* file descriptor for ioctls when not connected */
73 struct list entry; /* entry in named pipe servers list */
74 enum pipe_state state; /* server state */
75 struct pipe_client *client; /* client that this server is connected to */
76 struct named_pipe *pipe;
77 struct timeout_user *flush_poll;
78 struct event *event;
79 unsigned int options; /* pipe options */
82 struct pipe_client
84 struct object obj; /* object header */
85 struct fd *fd; /* pipe file descriptor */
86 struct pipe_server *server; /* server that this client is connected to */
87 unsigned int flags; /* file flags */
90 struct named_pipe
92 struct object obj; /* object header */
93 unsigned int flags;
94 unsigned int maxinstances;
95 unsigned int outsize;
96 unsigned int insize;
97 unsigned int instances;
98 timeout_t timeout;
99 struct list servers; /* list of servers using this pipe */
100 struct async_queue *waiters; /* list of clients waiting to connect */
103 struct named_pipe_device
105 struct object obj; /* object header */
106 struct fd *fd; /* pseudo-fd for ioctls */
107 struct namespace *pipes; /* named pipe namespace */
110 static void named_pipe_dump( struct object *obj, int verbose );
111 static unsigned int named_pipe_map_access( struct object *obj, unsigned int access );
112 static struct object *named_pipe_open_file( struct object *obj, unsigned int access,
113 unsigned int sharing, unsigned int options );
114 static void named_pipe_destroy( struct object *obj );
116 static const struct object_ops named_pipe_ops =
118 sizeof(struct named_pipe), /* size */
119 named_pipe_dump, /* dump */
120 no_get_type, /* get_type */
121 no_add_queue, /* add_queue */
122 NULL, /* remove_queue */
123 NULL, /* signaled */
124 NULL, /* satisfied */
125 no_signal, /* signal */
126 no_get_fd, /* get_fd */
127 named_pipe_map_access, /* map_access */
128 default_get_sd, /* get_sd */
129 default_set_sd, /* set_sd */
130 no_lookup_name, /* lookup_name */
131 named_pipe_open_file, /* open_file */
132 no_close_handle, /* close_handle */
133 named_pipe_destroy /* destroy */
136 /* server end functions */
137 static void pipe_server_dump( struct object *obj, int verbose );
138 static struct fd *pipe_server_get_fd( struct object *obj );
139 static void pipe_server_destroy( struct object *obj);
140 static void pipe_server_flush( struct fd *fd, struct event **event );
141 static enum server_fd_type pipe_server_get_fd_type( struct fd *fd );
142 static obj_handle_t pipe_server_ioctl( struct fd *fd, ioctl_code_t code, const async_data_t *async,
143 int blocking, const void *data, data_size_t size );
145 static const struct object_ops pipe_server_ops =
147 sizeof(struct pipe_server), /* size */
148 pipe_server_dump, /* dump */
149 no_get_type, /* get_type */
150 add_queue, /* add_queue */
151 remove_queue, /* remove_queue */
152 default_fd_signaled, /* signaled */
153 no_satisfied, /* satisfied */
154 no_signal, /* signal */
155 pipe_server_get_fd, /* get_fd */
156 default_fd_map_access, /* map_access */
157 default_get_sd, /* get_sd */
158 default_set_sd, /* set_sd */
159 no_lookup_name, /* lookup_name */
160 no_open_file, /* open_file */
161 fd_close_handle, /* close_handle */
162 pipe_server_destroy /* destroy */
165 static const struct fd_ops pipe_server_fd_ops =
167 default_fd_get_poll_events, /* get_poll_events */
168 default_poll_event, /* poll_event */
169 pipe_server_flush, /* flush */
170 pipe_server_get_fd_type, /* get_fd_type */
171 default_fd_removable, /* removable */
172 pipe_server_ioctl, /* ioctl */
173 default_fd_queue_async, /* queue_async */
174 default_fd_async_event, /* async_event */
175 default_fd_async_terminated, /* async_terminated */
176 default_fd_cancel_async /* cancel_async */
179 /* client end functions */
180 static void pipe_client_dump( struct object *obj, int verbose );
181 static int pipe_client_signaled( struct object *obj, struct thread *thread );
182 static struct fd *pipe_client_get_fd( struct object *obj );
183 static void pipe_client_destroy( struct object *obj );
184 static void pipe_client_flush( struct fd *fd, struct event **event );
185 static enum server_fd_type pipe_client_get_fd_type( struct fd *fd );
187 static const struct object_ops pipe_client_ops =
189 sizeof(struct pipe_client), /* size */
190 pipe_client_dump, /* dump */
191 no_get_type, /* get_type */
192 add_queue, /* add_queue */
193 remove_queue, /* remove_queue */
194 pipe_client_signaled, /* signaled */
195 no_satisfied, /* satisfied */
196 no_signal, /* signal */
197 pipe_client_get_fd, /* get_fd */
198 default_fd_map_access, /* map_access */
199 default_get_sd, /* get_sd */
200 default_set_sd, /* set_sd */
201 no_lookup_name, /* lookup_name */
202 no_open_file, /* open_file */
203 fd_close_handle, /* close_handle */
204 pipe_client_destroy /* destroy */
207 static const struct fd_ops pipe_client_fd_ops =
209 default_fd_get_poll_events, /* get_poll_events */
210 default_poll_event, /* poll_event */
211 pipe_client_flush, /* flush */
212 pipe_client_get_fd_type, /* get_fd_type */
213 default_fd_removable, /* removable */
214 default_fd_ioctl, /* ioctl */
215 default_fd_queue_async, /* queue_async */
216 default_fd_async_event, /* async_event */
217 default_fd_async_terminated, /* async_terminated */
218 default_fd_cancel_async /* cancel_async */
221 static void named_pipe_device_dump( struct object *obj, int verbose );
222 static struct object_type *named_pipe_device_get_type( struct object *obj );
223 static struct fd *named_pipe_device_get_fd( struct object *obj );
224 static struct object *named_pipe_device_lookup_name( struct object *obj,
225 struct unicode_str *name, unsigned int attr );
226 static struct object *named_pipe_device_open_file( struct object *obj, unsigned int access,
227 unsigned int sharing, unsigned int options );
228 static void named_pipe_device_destroy( struct object *obj );
229 static enum server_fd_type named_pipe_device_get_fd_type( struct fd *fd );
230 static obj_handle_t named_pipe_device_ioctl( struct fd *fd, ioctl_code_t code, const async_data_t *async_data,
231 int blocking, const void *data, data_size_t size );
233 static const struct object_ops named_pipe_device_ops =
235 sizeof(struct named_pipe_device), /* size */
236 named_pipe_device_dump, /* dump */
237 named_pipe_device_get_type, /* get_type */
238 no_add_queue, /* add_queue */
239 NULL, /* remove_queue */
240 NULL, /* signaled */
241 no_satisfied, /* satisfied */
242 no_signal, /* signal */
243 named_pipe_device_get_fd, /* get_fd */
244 no_map_access, /* map_access */
245 default_get_sd, /* get_sd */
246 default_set_sd, /* set_sd */
247 named_pipe_device_lookup_name, /* lookup_name */
248 named_pipe_device_open_file, /* open_file */
249 fd_close_handle, /* close_handle */
250 named_pipe_device_destroy /* destroy */
253 static const struct fd_ops named_pipe_device_fd_ops =
255 default_fd_get_poll_events, /* get_poll_events */
256 default_poll_event, /* poll_event */
257 no_flush, /* flush */
258 named_pipe_device_get_fd_type, /* get_fd_type */
259 default_fd_removable, /* removable */
260 named_pipe_device_ioctl, /* ioctl */
261 default_fd_queue_async, /* queue_async */
262 default_fd_async_event, /* async_event */
263 default_fd_async_terminated, /* async_terminated */
264 default_fd_cancel_async /* cancel_async */
267 static void named_pipe_dump( struct object *obj, int verbose )
269 struct named_pipe *pipe = (struct named_pipe *) obj;
270 assert( obj->ops == &named_pipe_ops );
271 fprintf( stderr, "Named pipe " );
272 dump_object_name( &pipe->obj );
273 fprintf( stderr, "\n" );
276 static unsigned int named_pipe_map_access( struct object *obj, unsigned int access )
278 if (access & GENERIC_READ) access |= STANDARD_RIGHTS_READ;
279 if (access & GENERIC_WRITE) access |= STANDARD_RIGHTS_WRITE | FILE_CREATE_PIPE_INSTANCE;
280 if (access & GENERIC_EXECUTE) access |= STANDARD_RIGHTS_EXECUTE;
281 if (access & GENERIC_ALL) access |= STANDARD_RIGHTS_ALL;
282 return access & ~(GENERIC_READ | GENERIC_WRITE | GENERIC_EXECUTE | GENERIC_ALL);
285 static void pipe_server_dump( struct object *obj, int verbose )
287 struct pipe_server *server = (struct pipe_server *) obj;
288 assert( obj->ops == &pipe_server_ops );
289 fprintf( stderr, "Named pipe server pipe=%p state=%d\n", server->pipe, server->state );
292 static void pipe_client_dump( struct object *obj, int verbose )
294 struct pipe_client *client = (struct pipe_client *) obj;
295 assert( obj->ops == &pipe_client_ops );
296 fprintf( stderr, "Named pipe client server=%p\n", client->server );
299 static int pipe_client_signaled( struct object *obj, struct thread *thread )
301 struct pipe_client *client = (struct pipe_client *) obj;
303 return client->fd && is_fd_signaled(client->fd);
306 static void named_pipe_destroy( struct object *obj)
308 struct named_pipe *pipe = (struct named_pipe *) obj;
310 assert( list_empty( &pipe->servers ) );
311 assert( !pipe->instances );
312 free_async_queue( pipe->waiters );
315 static struct fd *pipe_client_get_fd( struct object *obj )
317 struct pipe_client *client = (struct pipe_client *) obj;
318 if (client->fd)
319 return (struct fd *) grab_object( client->fd );
320 set_error( STATUS_PIPE_DISCONNECTED );
321 return NULL;
324 static void set_server_state( struct pipe_server *server, enum pipe_state state )
326 server->state = state;
328 switch(state)
330 case ps_connected_server:
331 case ps_wait_disconnect:
332 assert( server->fd );
333 break;
334 case ps_wait_open:
335 case ps_idle_server:
336 assert( !server->fd );
337 set_no_fd_status( server->ioctl_fd, STATUS_PIPE_LISTENING );
338 break;
339 case ps_disconnected_server:
340 case ps_wait_connect:
341 assert( !server->fd );
342 set_no_fd_status( server->ioctl_fd, STATUS_PIPE_DISCONNECTED );
343 break;
347 static struct fd *pipe_server_get_fd( struct object *obj )
349 struct pipe_server *server = (struct pipe_server *) obj;
351 return (struct fd *)grab_object( server->fd ? server->fd : server->ioctl_fd );
355 static void notify_empty( struct pipe_server *server )
357 if (!server->flush_poll)
358 return;
359 assert( server->state == ps_connected_server );
360 assert( server->event );
361 remove_timeout_user( server->flush_poll );
362 server->flush_poll = NULL;
363 set_event( server->event );
364 release_object( server->event );
365 server->event = NULL;
368 static void do_disconnect( struct pipe_server *server )
370 /* we may only have a server fd, if the client disconnected */
371 if (server->client)
373 assert( server->client->server == server );
374 assert( server->client->fd );
375 release_object( server->client->fd );
376 server->client->fd = NULL;
378 assert( server->fd );
379 shutdown( get_unix_fd( server->fd ), SHUT_RDWR );
380 release_object( server->fd );
381 server->fd = NULL;
384 static void pipe_server_destroy( struct object *obj)
386 struct pipe_server *server = (struct pipe_server *)obj;
388 assert( obj->ops == &pipe_server_ops );
390 if (server->fd)
392 notify_empty( server );
393 do_disconnect( server );
396 if (server->client)
398 server->client->server = NULL;
399 server->client = NULL;
402 assert( server->pipe->instances );
403 server->pipe->instances--;
405 if (server->ioctl_fd) release_object( server->ioctl_fd );
406 list_remove( &server->entry );
407 release_object( server->pipe );
410 static void pipe_client_destroy( struct object *obj)
412 struct pipe_client *client = (struct pipe_client *)obj;
413 struct pipe_server *server = client->server;
415 assert( obj->ops == &pipe_client_ops );
417 if (server)
419 notify_empty( server );
421 switch(server->state)
423 case ps_connected_server:
424 /* Don't destroy the server's fd here as we can't
425 do a successful flush without it. */
426 set_server_state( server, ps_wait_disconnect );
427 break;
428 case ps_disconnected_server:
429 set_server_state( server, ps_wait_connect );
430 break;
431 case ps_idle_server:
432 case ps_wait_open:
433 case ps_wait_disconnect:
434 case ps_wait_connect:
435 assert( 0 );
437 assert( server->client );
438 server->client = NULL;
439 client->server = NULL;
441 if (client->fd) release_object( client->fd );
444 static void named_pipe_device_dump( struct object *obj, int verbose )
446 assert( obj->ops == &named_pipe_device_ops );
447 fprintf( stderr, "Named pipe device\n" );
450 static struct object_type *named_pipe_device_get_type( struct object *obj )
452 static const WCHAR name[] = {'D','e','v','i','c','e'};
453 static const struct unicode_str str = { name, sizeof(name) };
454 return get_object_type( &str );
457 static struct fd *named_pipe_device_get_fd( struct object *obj )
459 struct named_pipe_device *device = (struct named_pipe_device *)obj;
460 return (struct fd *)grab_object( device->fd );
463 static struct object *named_pipe_device_lookup_name( struct object *obj, struct unicode_str *name,
464 unsigned int attr )
466 struct named_pipe_device *device = (struct named_pipe_device*)obj;
467 struct object *found;
469 assert( obj->ops == &named_pipe_device_ops );
470 assert( device->pipes );
472 if ((found = find_object( device->pipes, name, attr | OBJ_CASE_INSENSITIVE )))
473 name->len = 0;
475 return found;
478 static struct object *named_pipe_device_open_file( struct object *obj, unsigned int access,
479 unsigned int sharing, unsigned int options )
481 return grab_object( obj );
484 static void named_pipe_device_destroy( struct object *obj )
486 struct named_pipe_device *device = (struct named_pipe_device*)obj;
487 assert( obj->ops == &named_pipe_device_ops );
488 if (device->fd) release_object( device->fd );
489 free( device->pipes );
492 static enum server_fd_type named_pipe_device_get_fd_type( struct fd *fd )
494 return FD_TYPE_DEVICE;
497 void create_named_pipe_device( struct directory *root, const struct unicode_str *name )
499 struct named_pipe_device *dev;
501 if ((dev = create_named_object_dir( root, name, 0, &named_pipe_device_ops )) &&
502 get_error() != STATUS_OBJECT_NAME_EXISTS)
504 dev->pipes = NULL;
505 if (!(dev->fd = alloc_pseudo_fd( &named_pipe_device_fd_ops, &dev->obj, 0 )) ||
506 !(dev->pipes = create_namespace( 7 )))
508 release_object( dev );
509 dev = NULL;
512 if (dev) make_object_static( &dev->obj );
515 static int pipe_data_remaining( struct pipe_server *server )
517 struct pollfd pfd;
518 int fd;
520 assert( server->client );
522 fd = get_unix_fd( server->client->fd );
523 if (fd < 0)
524 return 0;
525 pfd.fd = fd;
526 pfd.events = POLLIN;
527 pfd.revents = 0;
529 if (0 > poll( &pfd, 1, 0 ))
530 return 0;
532 return pfd.revents&POLLIN;
535 static void check_flushed( void *arg )
537 struct pipe_server *server = (struct pipe_server*) arg;
539 assert( server->event );
540 if (pipe_data_remaining( server ))
542 server->flush_poll = add_timeout_user( -TICKS_PER_SEC / 10, check_flushed, server );
544 else
546 /* notify_empty( server ); */
547 server->flush_poll = NULL;
548 set_event( server->event );
549 release_object( server->event );
550 server->event = NULL;
554 static void pipe_server_flush( struct fd *fd, struct event **event )
556 struct pipe_server *server = get_fd_user( fd );
558 if (!server || server->state != ps_connected_server) return;
560 /* FIXME: if multiple threads flush the same pipe,
561 maybe should create a list of processes to notify */
562 if (server->flush_poll) return;
564 if (pipe_data_remaining( server ))
566 /* this kind of sux -
567 there's no unix way to be alerted when a pipe becomes empty */
568 server->event = create_event( NULL, NULL, 0, 0, 0, NULL );
569 if (!server->event) return;
570 server->flush_poll = add_timeout_user( -TICKS_PER_SEC / 10, check_flushed, server );
571 *event = server->event;
575 static void pipe_client_flush( struct fd *fd, struct event **event )
577 /* FIXME: what do we have to do for this? */
580 static inline int is_overlapped( unsigned int options )
582 return !(options & (FILE_SYNCHRONOUS_IO_ALERT | FILE_SYNCHRONOUS_IO_NONALERT));
585 static enum server_fd_type pipe_server_get_fd_type( struct fd *fd )
587 return FD_TYPE_PIPE;
590 static enum server_fd_type pipe_client_get_fd_type( struct fd *fd )
592 return FD_TYPE_PIPE;
595 static obj_handle_t alloc_wait_event( struct process *process )
597 obj_handle_t handle = 0;
598 struct event *event = create_event( NULL, NULL, 0, 1, 0, NULL );
600 if (event)
602 handle = alloc_handle( process, event, EVENT_ALL_ACCESS, 0 );
603 release_object( event );
605 return handle;
608 static obj_handle_t pipe_server_ioctl( struct fd *fd, ioctl_code_t code, const async_data_t *async_data,
609 int blocking, const void *data, data_size_t size )
611 struct pipe_server *server = get_fd_user( fd );
612 struct async *async;
613 obj_handle_t wait_handle = 0;
615 switch(code)
617 case FSCTL_PIPE_LISTEN:
618 switch(server->state)
620 case ps_idle_server:
621 case ps_wait_connect:
622 if (blocking)
624 async_data_t new_data = *async_data;
625 if (!(wait_handle = alloc_wait_event( current->process ))) break;
626 new_data.event = wait_handle;
627 if (!(async = fd_queue_async( server->ioctl_fd, &new_data, ASYNC_TYPE_WAIT )))
629 close_handle( current->process, wait_handle );
630 break;
633 else async = fd_queue_async( server->ioctl_fd, async_data, ASYNC_TYPE_WAIT );
635 if (async)
637 set_server_state( server, ps_wait_open );
638 if (server->pipe->waiters) async_wake_up( server->pipe->waiters, STATUS_SUCCESS );
639 release_object( async );
640 set_error( STATUS_PENDING );
641 return wait_handle;
643 break;
644 case ps_connected_server:
645 set_error( STATUS_PIPE_CONNECTED );
646 break;
647 case ps_disconnected_server:
648 set_error( STATUS_PIPE_BUSY );
649 break;
650 case ps_wait_disconnect:
651 set_error( STATUS_NO_DATA_DETECTED );
652 break;
653 case ps_wait_open:
654 set_error( STATUS_INVALID_HANDLE );
655 break;
657 return 0;
659 case FSCTL_PIPE_DISCONNECT:
660 switch(server->state)
662 case ps_connected_server:
663 assert( server->client );
664 assert( server->client->fd );
666 notify_empty( server );
668 /* dump the client and server fds, but keep the pointers
669 around - client loses all waiting data */
670 do_disconnect( server );
671 set_server_state( server, ps_disconnected_server );
672 break;
673 case ps_wait_disconnect:
674 assert( !server->client );
675 do_disconnect( server );
676 set_server_state( server, ps_wait_connect );
677 break;
678 case ps_idle_server:
679 case ps_wait_open:
680 set_error( STATUS_PIPE_LISTENING );
681 break;
682 case ps_disconnected_server:
683 case ps_wait_connect:
684 set_error( STATUS_PIPE_DISCONNECTED );
685 break;
687 return 0;
689 default:
690 return default_fd_ioctl( fd, code, async_data, blocking, data, size );
694 static struct named_pipe *create_named_pipe( struct directory *root, const struct unicode_str *name,
695 unsigned int attr )
697 struct object *obj;
698 struct named_pipe *pipe = NULL;
699 struct unicode_str new_name;
701 if (!name || !name->len) return alloc_object( &named_pipe_ops );
703 if (!(obj = find_object_dir( root, name, attr, &new_name )))
705 set_error( STATUS_OBJECT_NAME_INVALID );
706 return NULL;
708 if (!new_name.len)
710 if (attr & OBJ_OPENIF && obj->ops == &named_pipe_ops)
711 set_error( STATUS_OBJECT_NAME_EXISTS );
712 else
714 release_object( obj );
715 obj = NULL;
716 if (attr & OBJ_OPENIF)
717 set_error( STATUS_OBJECT_TYPE_MISMATCH );
718 else
719 set_error( STATUS_OBJECT_NAME_COLLISION );
721 return (struct named_pipe *)obj;
724 if (obj->ops != &named_pipe_device_ops)
725 set_error( STATUS_OBJECT_NAME_INVALID );
726 else
728 struct named_pipe_device *dev = (struct named_pipe_device *)obj;
729 if ((pipe = create_object( dev->pipes, &named_pipe_ops, &new_name, NULL )))
730 clear_error();
733 release_object( obj );
734 return pipe;
737 static struct pipe_server *get_pipe_server_obj( struct process *process,
738 obj_handle_t handle, unsigned int access )
740 struct object *obj;
741 obj = get_handle_obj( process, handle, access, &pipe_server_ops );
742 return (struct pipe_server *) obj;
745 static struct pipe_server *create_pipe_server( struct named_pipe *pipe, unsigned int options )
747 struct pipe_server *server;
749 server = alloc_object( &pipe_server_ops );
750 if (!server)
751 return NULL;
753 server->fd = NULL;
754 server->pipe = pipe;
755 server->client = NULL;
756 server->flush_poll = NULL;
757 server->options = options;
759 list_add_head( &pipe->servers, &server->entry );
760 grab_object( pipe );
761 if (!(server->ioctl_fd = alloc_pseudo_fd( &pipe_server_fd_ops, &server->obj, options )))
763 release_object( server );
764 return NULL;
766 set_server_state( server, ps_idle_server );
767 return server;
770 static struct pipe_client *create_pipe_client( unsigned int flags )
772 struct pipe_client *client;
774 client = alloc_object( &pipe_client_ops );
775 if (!client)
776 return NULL;
778 client->fd = NULL;
779 client->server = NULL;
780 client->flags = flags;
782 return client;
785 static struct pipe_server *find_available_server( struct named_pipe *pipe )
787 struct pipe_server *server;
789 /* look for pipe servers that are listening */
790 LIST_FOR_EACH_ENTRY( server, &pipe->servers, struct pipe_server, entry )
792 if (server->state == ps_wait_open)
793 return (struct pipe_server *)grab_object( server );
796 /* fall back to pipe servers that are idle */
797 LIST_FOR_EACH_ENTRY( server, &pipe->servers, struct pipe_server, entry )
799 if (server->state == ps_idle_server)
800 return (struct pipe_server *)grab_object( server );
803 return NULL;
806 static struct object *named_pipe_open_file( struct object *obj, unsigned int access,
807 unsigned int sharing, unsigned int options )
809 struct named_pipe *pipe = (struct named_pipe *)obj;
810 struct pipe_server *server;
811 struct pipe_client *client;
812 int fds[2];
814 if (!(server = find_available_server( pipe )))
816 set_error( STATUS_PIPE_NOT_AVAILABLE );
817 return NULL;
820 if ((client = create_pipe_client( options )))
822 if (!socketpair( PF_UNIX, SOCK_STREAM, 0, fds ))
824 assert( !server->fd );
826 /* for performance reasons, only set nonblocking mode when using
827 * overlapped I/O. Otherwise, we will be doing too much busy
828 * looping */
829 if (is_overlapped( options )) fcntl( fds[1], F_SETFL, O_NONBLOCK );
830 if (is_overlapped( server->options )) fcntl( fds[0], F_SETFL, O_NONBLOCK );
832 if (pipe->insize)
834 setsockopt( fds[0], SOL_SOCKET, SO_RCVBUF, &pipe->insize, sizeof(pipe->insize) );
835 setsockopt( fds[1], SOL_SOCKET, SO_RCVBUF, &pipe->insize, sizeof(pipe->insize) );
837 if (pipe->outsize)
839 setsockopt( fds[0], SOL_SOCKET, SO_SNDBUF, &pipe->outsize, sizeof(pipe->outsize) );
840 setsockopt( fds[1], SOL_SOCKET, SO_SNDBUF, &pipe->outsize, sizeof(pipe->outsize) );
843 client->fd = create_anonymous_fd( &pipe_client_fd_ops, fds[1], &client->obj, options );
844 server->fd = create_anonymous_fd( &pipe_server_fd_ops, fds[0], &server->obj, server->options );
845 if (client->fd && server->fd)
847 fd_copy_completion( server->ioctl_fd, server->fd );
848 if (server->state == ps_wait_open)
849 fd_async_wake_up( server->ioctl_fd, ASYNC_TYPE_WAIT, STATUS_SUCCESS );
850 set_server_state( server, ps_connected_server );
851 server->client = client;
852 client->server = server;
854 else
856 release_object( client );
857 client = NULL;
860 else
862 file_set_error();
863 release_object( client );
864 client = NULL;
867 release_object( server );
868 return &client->obj;
871 static obj_handle_t named_pipe_device_ioctl( struct fd *fd, ioctl_code_t code, const async_data_t *async_data,
872 int blocking, const void *data, data_size_t size )
874 struct named_pipe_device *device = get_fd_user( fd );
876 switch(code)
878 case FSCTL_PIPE_WAIT:
880 const FILE_PIPE_WAIT_FOR_BUFFER *buffer = data;
881 obj_handle_t wait_handle = 0;
882 struct named_pipe *pipe;
883 struct pipe_server *server;
884 struct unicode_str name;
886 if (size < sizeof(*buffer) ||
887 size < FIELD_OFFSET(FILE_PIPE_WAIT_FOR_BUFFER, Name[buffer->NameLength/sizeof(WCHAR)]))
889 set_error( STATUS_INVALID_PARAMETER );
890 return 0;
892 name.str = buffer->Name;
893 name.len = (buffer->NameLength / sizeof(WCHAR)) * sizeof(WCHAR);
894 if (!(pipe = (struct named_pipe *)find_object( device->pipes, &name, OBJ_CASE_INSENSITIVE )))
896 set_error( STATUS_PIPE_NOT_AVAILABLE );
897 return 0;
899 if (!(server = find_available_server( pipe )))
901 struct async *async;
903 if (!pipe->waiters && !(pipe->waiters = create_async_queue( NULL ))) goto done;
905 if (blocking)
907 async_data_t new_data = *async_data;
908 if (!(wait_handle = alloc_wait_event( current->process ))) goto done;
909 new_data.event = wait_handle;
910 if (!(async = create_async( current, pipe->waiters, &new_data )))
912 close_handle( current->process, wait_handle );
913 wait_handle = 0;
916 else async = create_async( current, pipe->waiters, async_data );
918 if (async)
920 timeout_t when = buffer->TimeoutSpecified ? buffer->Timeout.QuadPart : pipe->timeout;
921 async_set_timeout( async, when, STATUS_IO_TIMEOUT );
922 release_object( async );
923 set_error( STATUS_PENDING );
926 else release_object( server );
928 done:
929 release_object( pipe );
930 return wait_handle;
933 default:
934 return default_fd_ioctl( fd, code, async_data, blocking, data, size );
939 DECL_HANDLER(create_named_pipe)
941 struct named_pipe *pipe;
942 struct pipe_server *server;
943 struct unicode_str name;
944 struct directory *root = NULL;
946 reply->handle = 0;
947 get_req_unicode_str( &name );
948 if (req->rootdir && !(root = get_directory_obj( current->process, req->rootdir, 0 )))
949 return;
951 pipe = create_named_pipe( root, &name, req->attributes | OBJ_OPENIF );
953 if (root) release_object( root );
954 if (!pipe) return;
956 if (get_error() != STATUS_OBJECT_NAME_EXISTS)
958 /* initialize it if it didn't already exist */
959 pipe->instances = 0;
960 pipe->waiters = NULL;
961 list_init( &pipe->servers );
962 pipe->insize = req->insize;
963 pipe->outsize = req->outsize;
964 pipe->maxinstances = req->maxinstances;
965 pipe->timeout = req->timeout;
966 pipe->flags = req->flags;
968 else
970 if (pipe->maxinstances <= pipe->instances)
972 set_error( STATUS_INSTANCE_NOT_AVAILABLE );
973 release_object( pipe );
974 return;
976 if ((pipe->maxinstances != req->maxinstances) ||
977 (pipe->timeout != req->timeout) ||
978 (pipe->flags != req->flags))
980 set_error( STATUS_ACCESS_DENIED );
981 release_object( pipe );
982 return;
984 clear_error(); /* clear the name collision */
987 server = create_pipe_server( pipe, req->options );
988 if (server)
990 reply->handle = alloc_handle( current->process, server, req->access, req->attributes );
991 server->pipe->instances++;
992 release_object( server );
995 release_object( pipe );
998 DECL_HANDLER(get_named_pipe_info)
1000 struct pipe_server *server;
1001 struct pipe_client *client = NULL;
1003 server = get_pipe_server_obj( current->process, req->handle, FILE_READ_ATTRIBUTES );
1004 if (!server)
1006 clear_error();
1007 client = (struct pipe_client *)get_handle_obj( current->process, req->handle,
1008 FILE_READ_ATTRIBUTES, &pipe_client_ops );
1009 if (!client) return;
1010 server = client->server;
1013 reply->flags = server->pipe->flags;
1014 reply->maxinstances = server->pipe->maxinstances;
1015 reply->instances = server->pipe->instances;
1016 reply->insize = server->pipe->insize;
1017 reply->outsize = server->pipe->outsize;
1019 if (client)
1020 release_object(client);
1021 else
1023 reply->flags |= NAMED_PIPE_SERVER_END;
1024 release_object(server);