244 lines
6.3 KiB
C
244 lines
6.3 KiB
C
/*
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* Server-side pipe management
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*
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* Copyright (C) 1998 Alexandre Julliard
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*/
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#include <assert.h>
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#include <fcntl.h>
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#include <string.h>
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#include <stdio.h>
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#include <stdlib.h>
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#ifdef HAVE_SYS_ERRNO_H
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#include <sys/errno.h>
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#endif
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#include <sys/stat.h>
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#include <sys/time.h>
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#include <sys/types.h>
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#include <time.h>
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#include <unistd.h>
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#include "winerror.h"
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#include "winbase.h"
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#include "handle.h"
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#include "thread.h"
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#include "request.h"
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enum side { READ_SIDE, WRITE_SIDE };
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struct pipe
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{
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struct object obj; /* object header */
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struct pipe *other; /* the pipe other end */
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struct select_user select; /* select user */
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enum side side; /* which side of the pipe is this */
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};
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static void pipe_dump( struct object *obj, int verbose );
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static int pipe_add_queue( struct object *obj, struct wait_queue_entry *entry );
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static void pipe_remove_queue( struct object *obj, struct wait_queue_entry *entry );
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static int pipe_signaled( struct object *obj, struct thread *thread );
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static int pipe_get_read_fd( struct object *obj );
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static int pipe_get_write_fd( struct object *obj );
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static int pipe_get_info( struct object *obj, struct get_file_info_request *req );
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static void pipe_destroy( struct object *obj );
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static const struct object_ops pipe_ops =
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{
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sizeof(struct pipe),
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pipe_dump,
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pipe_add_queue,
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pipe_remove_queue,
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pipe_signaled,
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no_satisfied,
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pipe_get_read_fd,
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pipe_get_write_fd,
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no_flush,
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pipe_get_info,
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pipe_destroy
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};
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static struct pipe *create_pipe_side( int fd, int side )
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{
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struct pipe *pipe;
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if ((pipe = alloc_object( &pipe_ops )))
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{
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pipe->select.fd = fd;
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pipe->select.func = default_select_event;
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pipe->select.private = pipe;
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pipe->other = NULL;
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pipe->side = side;
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register_select_user( &pipe->select );
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}
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return pipe;
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}
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static int create_pipe( struct object *obj[2] )
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{
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struct pipe *read_pipe;
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struct pipe *write_pipe;
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int fd[2];
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if (pipe( fd ) == -1)
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{
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file_set_error();
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return 0;
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}
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if ((read_pipe = create_pipe_side( fd[0], READ_SIDE )))
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{
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if ((write_pipe = create_pipe_side( fd[1], WRITE_SIDE )))
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{
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write_pipe->other = read_pipe;
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read_pipe->other = write_pipe;
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obj[0] = &read_pipe->obj;
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obj[1] = &write_pipe->obj;
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return 1;
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}
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release_object( read_pipe );
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}
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close( fd[0] );
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close( fd[1] );
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return 0;
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}
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static void pipe_dump( struct object *obj, int verbose )
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{
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struct pipe *pipe = (struct pipe *)obj;
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assert( obj->ops == &pipe_ops );
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fprintf( stderr, "Pipe %s-side fd=%d\n",
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(pipe->side == READ_SIDE) ? "read" : "write", pipe->select.fd );
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}
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static int pipe_add_queue( struct object *obj, struct wait_queue_entry *entry )
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{
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struct pipe *pipe = (struct pipe *)obj;
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assert( obj->ops == &pipe_ops );
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if (!obj->head) /* first on the queue */
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set_select_events( &pipe->select,
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(pipe->side == READ_SIDE) ? READ_EVENT : WRITE_EVENT );
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add_queue( obj, entry );
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return 1;
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}
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static void pipe_remove_queue( struct object *obj, struct wait_queue_entry *entry )
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{
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struct pipe *pipe = (struct pipe *)grab_object(obj);
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assert( obj->ops == &pipe_ops );
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remove_queue( obj, entry );
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if (!obj->head) /* last on the queue is gone */
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set_select_events( &pipe->select, 0 );
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release_object( obj );
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}
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static int pipe_signaled( struct object *obj, struct thread *thread )
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{
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int event;
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struct pipe *pipe = (struct pipe *)obj;
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assert( obj->ops == &pipe_ops );
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event = (pipe->side == READ_SIDE) ? READ_EVENT : WRITE_EVENT;
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if (check_select_events( &pipe->select, event ))
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{
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/* stop waiting on select() if we are signaled */
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set_select_events( &pipe->select, 0 );
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return 1;
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}
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else
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{
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/* restart waiting on select() if we are no longer signaled */
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if (obj->head) set_select_events( &pipe->select, event );
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return 0;
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}
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}
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static int pipe_get_read_fd( struct object *obj )
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{
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struct pipe *pipe = (struct pipe *)obj;
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assert( obj->ops == &pipe_ops );
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if (!pipe->other)
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{
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set_error( ERROR_BROKEN_PIPE );
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return -1;
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}
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if (pipe->side != READ_SIDE) /* FIXME: should not be necessary */
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{
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set_error( ERROR_ACCESS_DENIED );
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return -1;
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}
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return dup( pipe->select.fd );
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}
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static int pipe_get_write_fd( struct object *obj )
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{
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struct pipe *pipe = (struct pipe *)obj;
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assert( obj->ops == &pipe_ops );
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if (!pipe->other)
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{
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set_error( ERROR_BROKEN_PIPE );
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return -1;
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}
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if (pipe->side != WRITE_SIDE) /* FIXME: should not be necessary */
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{
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set_error( ERROR_ACCESS_DENIED );
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return -1;
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}
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return dup( pipe->select.fd );
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}
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static int pipe_get_info( struct object *obj, struct get_file_info_request *req )
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{
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req->type = FILE_TYPE_PIPE;
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req->attr = 0;
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req->access_time = 0;
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req->write_time = 0;
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req->size_high = 0;
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req->size_low = 0;
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req->links = 0;
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req->index_high = 0;
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req->index_low = 0;
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req->serial = 0;
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return 1;
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}
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static void pipe_destroy( struct object *obj )
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{
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struct pipe *pipe = (struct pipe *)obj;
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assert( obj->ops == &pipe_ops );
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if (pipe->other) pipe->other->other = NULL;
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unregister_select_user( &pipe->select );
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close( pipe->select.fd );
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}
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/* create an anonymous pipe */
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DECL_HANDLER(create_pipe)
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{
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struct object *obj[2];
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int hread = -1, hwrite = -1;
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if (create_pipe( obj ))
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{
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hread = alloc_handle( current->process, obj[0],
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STANDARD_RIGHTS_REQUIRED|SYNCHRONIZE|GENERIC_READ,
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req->inherit );
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if (hread != -1)
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{
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hwrite = alloc_handle( current->process, obj[1],
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STANDARD_RIGHTS_REQUIRED|SYNCHRONIZE|GENERIC_WRITE,
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req->inherit );
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if (hwrite == -1)
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close_handle( current->process, hread );
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}
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release_object( obj[0] );
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release_object( obj[1] );
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}
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req->handle_read = hread;
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req->handle_write = hwrite;
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}
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