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https://github.com/reactos/wine.git
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659 lines
22 KiB
C
659 lines
22 KiB
C
/*
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* Server-side device support
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*
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* Copyright (C) 2007 Alexandre Julliard
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#include <assert.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdarg.h>
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#include "ntstatus.h"
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#define WIN32_NO_STATUS
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#include "windef.h"
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#include "winternl.h"
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#include "ddk/wdm.h"
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#include "object.h"
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#include "file.h"
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#include "handle.h"
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#include "request.h"
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#include "process.h"
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struct irp_call
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{
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struct object obj; /* object header */
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struct list dev_entry; /* entry in device queue */
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struct list mgr_entry; /* entry in manager queue */
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struct device *device; /* device containing this irp */
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struct thread *thread; /* thread that queued the irp */
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client_ptr_t user_arg; /* user arg used to identify the request */
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struct async *async; /* pending async op */
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unsigned int status; /* resulting status (or STATUS_PENDING) */
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irp_params_t params; /* irp parameters */
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data_size_t result; /* size of result (input or output depending on the type) */
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data_size_t in_size; /* size of input data */
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void *in_data; /* input data */
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data_size_t out_size; /* size of output data */
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void *out_data; /* output data */
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};
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static void irp_call_dump( struct object *obj, int verbose );
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static int irp_call_signaled( struct object *obj, struct wait_queue_entry *entry );
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static void irp_call_destroy( struct object *obj );
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static const struct object_ops irp_call_ops =
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{
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sizeof(struct irp_call), /* size */
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irp_call_dump, /* dump */
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no_get_type, /* get_type */
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add_queue, /* add_queue */
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remove_queue, /* remove_queue */
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irp_call_signaled, /* signaled */
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no_satisfied, /* satisfied */
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no_signal, /* signal */
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no_get_fd, /* get_fd */
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no_map_access, /* map_access */
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default_get_sd, /* get_sd */
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default_set_sd, /* set_sd */
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no_lookup_name, /* lookup_name */
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no_open_file, /* open_file */
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no_close_handle, /* close_handle */
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irp_call_destroy /* destroy */
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};
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struct device_manager
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{
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struct object obj; /* object header */
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struct list devices; /* list of devices */
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struct list requests; /* list of pending irps across all devices */
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};
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static void device_manager_dump( struct object *obj, int verbose );
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static int device_manager_signaled( struct object *obj, struct wait_queue_entry *entry );
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static void device_manager_destroy( struct object *obj );
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static const struct object_ops device_manager_ops =
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{
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sizeof(struct device_manager), /* size */
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device_manager_dump, /* dump */
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no_get_type, /* get_type */
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add_queue, /* add_queue */
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remove_queue, /* remove_queue */
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device_manager_signaled, /* signaled */
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no_satisfied, /* satisfied */
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no_signal, /* signal */
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no_get_fd, /* get_fd */
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no_map_access, /* map_access */
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default_get_sd, /* get_sd */
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default_set_sd, /* set_sd */
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no_lookup_name, /* lookup_name */
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no_open_file, /* open_file */
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no_close_handle, /* close_handle */
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device_manager_destroy /* destroy */
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};
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struct device
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{
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struct object obj; /* object header */
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struct device_manager *manager; /* manager for this device (or NULL if deleted) */
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struct fd *fd; /* file descriptor for irp */
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client_ptr_t user_ptr; /* opaque ptr for client side */
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struct list entry; /* entry in device manager list */
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struct list requests; /* list of pending irp requests */
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};
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static void device_dump( struct object *obj, int verbose );
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static struct object_type *device_get_type( struct object *obj );
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static struct fd *device_get_fd( struct object *obj );
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static void device_destroy( struct object *obj );
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static struct object *device_open_file( struct object *obj, unsigned int access,
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unsigned int sharing, unsigned int options );
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static enum server_fd_type device_get_fd_type( struct fd *fd );
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static obj_handle_t device_read( struct fd *fd, const async_data_t *async_data, int blocking,
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file_pos_t pos );
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static obj_handle_t device_write( struct fd *fd, const async_data_t *async_data, int blocking,
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file_pos_t pos, data_size_t *written );
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static obj_handle_t device_flush( struct fd *fd, const async_data_t *async_data, int blocking );
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static obj_handle_t device_ioctl( struct fd *fd, ioctl_code_t code, const async_data_t *async_data,
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int blocking );
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static const struct object_ops device_ops =
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{
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sizeof(struct device), /* size */
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device_dump, /* dump */
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device_get_type, /* get_type */
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no_add_queue, /* add_queue */
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NULL, /* remove_queue */
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NULL, /* signaled */
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no_satisfied, /* satisfied */
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no_signal, /* signal */
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device_get_fd, /* get_fd */
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default_fd_map_access, /* map_access */
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default_get_sd, /* get_sd */
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default_set_sd, /* set_sd */
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no_lookup_name, /* lookup_name */
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device_open_file, /* open_file */
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no_close_handle, /* close_handle */
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device_destroy /* destroy */
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};
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static const struct fd_ops device_fd_ops =
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{
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default_fd_get_poll_events, /* get_poll_events */
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default_poll_event, /* poll_event */
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device_get_fd_type, /* get_fd_type */
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device_read, /* read */
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device_write, /* write */
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device_flush, /* flush */
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device_ioctl, /* ioctl */
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default_fd_queue_async, /* queue_async */
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default_fd_reselect_async, /* reselect_async */
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default_fd_cancel_async /* cancel_async */
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};
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static void irp_call_dump( struct object *obj, int verbose )
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{
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struct irp_call *irp = (struct irp_call *)obj;
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fprintf( stderr, "IRP call device=%p\n", irp->device );
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}
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static int irp_call_signaled( struct object *obj, struct wait_queue_entry *entry )
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{
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struct irp_call *irp = (struct irp_call *)obj;
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return !irp->device; /* device is cleared once the irp has completed */
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}
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static void irp_call_destroy( struct object *obj )
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{
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struct irp_call *irp = (struct irp_call *)obj;
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free( irp->in_data );
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free( irp->out_data );
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if (irp->async)
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{
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async_terminate( irp->async, STATUS_CANCELLED );
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release_object( irp->async );
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}
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if (irp->device) release_object( irp->device );
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release_object( irp->thread );
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}
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static struct irp_call *create_irp( struct device *device, const irp_params_t *params,
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const void *in_data, data_size_t in_size, data_size_t out_size )
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{
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struct irp_call *irp;
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if (!device->manager) /* it has been deleted */
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{
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set_error( STATUS_FILE_DELETED );
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return NULL;
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}
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if ((irp = alloc_object( &irp_call_ops )))
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{
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irp->device = (struct device *)grab_object( device );
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irp->async = NULL;
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irp->params = *params;
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irp->status = STATUS_PENDING;
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irp->result = 0;
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irp->in_size = in_size;
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irp->in_data = NULL;
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irp->out_size = out_size;
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irp->out_data = NULL;
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if (irp->in_size && !(irp->in_data = memdup( in_data, in_size )))
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{
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release_object( irp );
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irp = NULL;
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}
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}
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return irp;
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}
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static void set_irp_result( struct irp_call *irp, unsigned int status,
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const void *out_data, data_size_t out_size, data_size_t result )
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{
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struct device *device = irp->device;
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if (!device) return; /* already finished */
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/* FIXME: handle the STATUS_PENDING case */
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irp->status = status;
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irp->result = result;
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irp->out_size = min( irp->out_size, out_size );
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if (irp->out_size && !(irp->out_data = memdup( out_data, irp->out_size )))
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irp->out_size = 0;
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release_object( device );
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irp->device = NULL;
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if (irp->async)
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{
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if (result) status = STATUS_ALERTED;
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async_terminate( irp->async, status );
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release_object( irp->async );
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irp->async = NULL;
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}
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wake_up( &irp->obj, 0 );
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if (status != STATUS_ALERTED)
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{
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/* remove it from the device queue */
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/* (for STATUS_ALERTED this will be done in get_irp_result) */
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list_remove( &irp->dev_entry );
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release_object( irp ); /* no longer on the device queue */
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}
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}
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static void device_dump( struct object *obj, int verbose )
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{
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struct device *device = (struct device *)obj;
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fprintf( stderr, "Device " );
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dump_object_name( &device->obj );
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fputc( '\n', stderr );
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}
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static struct object_type *device_get_type( struct object *obj )
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{
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static const WCHAR name[] = {'D','e','v','i','c','e'};
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static const struct unicode_str str = { name, sizeof(name) };
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return get_object_type( &str );
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}
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static struct fd *device_get_fd( struct object *obj )
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{
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struct device *device = (struct device *)obj;
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return (struct fd *)grab_object( device->fd );
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}
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static void device_destroy( struct object *obj )
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{
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struct device *device = (struct device *)obj;
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struct irp_call *irp, *next;
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LIST_FOR_EACH_ENTRY_SAFE( irp, next, &device->requests, struct irp_call, dev_entry )
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{
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list_remove( &irp->dev_entry );
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release_object( irp ); /* no longer on the device queue */
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}
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if (device->fd) release_object( device->fd );
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if (device->manager) list_remove( &device->entry );
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}
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static struct object *device_open_file( struct object *obj, unsigned int access,
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unsigned int sharing, unsigned int options )
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{
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return grab_object( obj );
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}
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static enum server_fd_type device_get_fd_type( struct fd *fd )
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{
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return FD_TYPE_DEVICE;
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}
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static struct irp_call *find_irp_call( struct device *device, struct thread *thread,
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client_ptr_t user_arg )
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{
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struct irp_call *irp;
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LIST_FOR_EACH_ENTRY( irp, &device->requests, struct irp_call, dev_entry )
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if (irp->thread == thread && irp->user_arg == user_arg) return irp;
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set_error( STATUS_INVALID_PARAMETER );
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return NULL;
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}
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/* queue an irp to the device */
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static obj_handle_t queue_irp( struct device *device, struct irp_call *irp,
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const async_data_t *async_data, int blocking )
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{
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obj_handle_t handle = 0;
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if (blocking && !(handle = alloc_handle( current->process, irp, SYNCHRONIZE, 0 ))) return 0;
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if (!(irp->async = fd_queue_async( device->fd, async_data, ASYNC_TYPE_WAIT )))
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{
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if (handle) close_handle( current->process, handle );
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return 0;
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}
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irp->thread = (struct thread *)grab_object( current );
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irp->user_arg = async_data->arg;
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grab_object( irp ); /* grab reference for queued irp */
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list_add_tail( &device->requests, &irp->dev_entry );
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list_add_tail( &device->manager->requests, &irp->mgr_entry );
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if (list_head( &device->manager->requests ) == &irp->mgr_entry) /* first one */
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wake_up( &device->manager->obj, 0 );
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set_error( STATUS_PENDING );
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return handle;
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}
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static obj_handle_t device_read( struct fd *fd, const async_data_t *async_data, int blocking,
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file_pos_t pos )
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{
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struct device *device = get_fd_user( fd );
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struct irp_call *irp;
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obj_handle_t handle;
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irp_params_t params;
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params.major = IRP_MJ_READ;
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params.read.key = 0;
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params.read.pos = pos;
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irp = create_irp( device, ¶ms, NULL, 0, get_reply_max_size() );
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if (!irp) return 0;
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handle = queue_irp( device, irp, async_data, blocking );
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release_object( irp );
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return handle;
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}
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static obj_handle_t device_write( struct fd *fd, const async_data_t *async_data, int blocking,
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file_pos_t pos, data_size_t *written )
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{
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struct device *device = get_fd_user( fd );
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struct irp_call *irp;
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obj_handle_t handle;
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irp_params_t params;
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params.major = IRP_MJ_WRITE;
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params.write.key = 0;
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params.write.pos = pos;
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irp = create_irp( device, ¶ms, get_req_data(), get_req_data_size(), 0 );
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if (!irp) return 0;
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handle = queue_irp( device, irp, async_data, blocking );
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release_object( irp );
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return handle;
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}
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static obj_handle_t device_flush( struct fd *fd, const async_data_t *async_data, int blocking )
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{
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struct device *device = get_fd_user( fd );
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struct irp_call *irp;
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obj_handle_t handle;
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irp_params_t params;
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params.major = IRP_MJ_FLUSH_BUFFERS;
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irp = create_irp( device, ¶ms, NULL, 0, 0 );
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if (!irp) return 0;
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handle = queue_irp( device, irp, async_data, blocking );
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release_object( irp );
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return handle;
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}
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static obj_handle_t device_ioctl( struct fd *fd, ioctl_code_t code, const async_data_t *async_data,
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int blocking )
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{
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struct device *device = get_fd_user( fd );
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struct irp_call *irp;
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obj_handle_t handle;
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irp_params_t params;
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params.major = IRP_MJ_DEVICE_CONTROL;
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params.ioctl.code = code;
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irp = create_irp( device, ¶ms, get_req_data(), get_req_data_size(),
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get_reply_max_size() );
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if (!irp) return 0;
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handle = queue_irp( device, irp, async_data, blocking );
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release_object( irp );
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return handle;
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}
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static struct device *create_device( struct directory *root, const struct unicode_str *name,
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struct device_manager *manager, unsigned int attr )
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{
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struct device *device;
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if ((device = create_named_object_dir( root, name, attr, &device_ops )))
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{
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if (get_error() != STATUS_OBJECT_NAME_EXISTS)
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{
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/* initialize it if it didn't already exist */
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device->manager = manager;
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list_add_tail( &manager->devices, &device->entry );
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list_init( &device->requests );
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if (!(device->fd = alloc_pseudo_fd( &device_fd_ops, &device->obj, 0 )))
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{
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release_object( device );
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device = NULL;
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}
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}
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}
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return device;
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}
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static void delete_device( struct device *device )
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{
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struct irp_call *irp, *next;
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if (!device->manager) return; /* already deleted */
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/* terminate all pending requests */
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LIST_FOR_EACH_ENTRY_SAFE( irp, next, &device->requests, struct irp_call, dev_entry )
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{
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list_remove( &irp->mgr_entry );
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set_irp_result( irp, STATUS_FILE_DELETED, NULL, 0, 0 );
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}
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unlink_named_object( &device->obj );
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list_remove( &device->entry );
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device->manager = NULL;
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}
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static void device_manager_dump( struct object *obj, int verbose )
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{
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fprintf( stderr, "Device manager\n" );
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}
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static int device_manager_signaled( struct object *obj, struct wait_queue_entry *entry )
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{
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struct device_manager *manager = (struct device_manager *)obj;
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return !list_empty( &manager->requests );
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}
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static void device_manager_destroy( struct object *obj )
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{
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struct device_manager *manager = (struct device_manager *)obj;
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struct list *ptr;
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while ((ptr = list_head( &manager->devices )))
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{
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struct device *device = LIST_ENTRY( ptr, struct device, entry );
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delete_device( device );
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}
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}
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static struct device_manager *create_device_manager(void)
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{
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struct device_manager *manager;
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if ((manager = alloc_object( &device_manager_ops )))
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{
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|
list_init( &manager->devices );
|
|
list_init( &manager->requests );
|
|
}
|
|
return manager;
|
|
}
|
|
|
|
|
|
/* create a device manager */
|
|
DECL_HANDLER(create_device_manager)
|
|
{
|
|
struct device_manager *manager = create_device_manager();
|
|
|
|
if (manager)
|
|
{
|
|
reply->handle = alloc_handle( current->process, manager, req->access, req->attributes );
|
|
release_object( manager );
|
|
}
|
|
}
|
|
|
|
|
|
/* create a device */
|
|
DECL_HANDLER(create_device)
|
|
{
|
|
struct device *device;
|
|
struct unicode_str name;
|
|
struct device_manager *manager;
|
|
struct directory *root = NULL;
|
|
|
|
if (!(manager = (struct device_manager *)get_handle_obj( current->process, req->manager,
|
|
0, &device_manager_ops )))
|
|
return;
|
|
|
|
get_req_unicode_str( &name );
|
|
if (req->rootdir && !(root = get_directory_obj( current->process, req->rootdir, 0 )))
|
|
{
|
|
release_object( manager );
|
|
return;
|
|
}
|
|
|
|
if ((device = create_device( root, &name, manager, req->attributes )))
|
|
{
|
|
device->user_ptr = req->user_ptr;
|
|
reply->handle = alloc_handle( current->process, device, req->access, req->attributes );
|
|
release_object( device );
|
|
}
|
|
|
|
if (root) release_object( root );
|
|
release_object( manager );
|
|
}
|
|
|
|
|
|
/* delete a device */
|
|
DECL_HANDLER(delete_device)
|
|
{
|
|
struct device *device;
|
|
|
|
if ((device = (struct device *)get_handle_obj( current->process, req->handle, 0, &device_ops )))
|
|
{
|
|
delete_device( device );
|
|
release_object( device );
|
|
}
|
|
}
|
|
|
|
|
|
/* retrieve the next pending device irp request */
|
|
DECL_HANDLER(get_next_device_request)
|
|
{
|
|
struct irp_call *irp;
|
|
struct device_manager *manager;
|
|
struct list *ptr;
|
|
|
|
if (!(manager = (struct device_manager *)get_handle_obj( current->process, req->manager,
|
|
0, &device_manager_ops )))
|
|
return;
|
|
|
|
if (req->prev)
|
|
{
|
|
if ((irp = (struct irp_call *)get_handle_obj( current->process, req->prev,
|
|
0, &irp_call_ops )))
|
|
{
|
|
set_irp_result( irp, req->status, NULL, 0, 0 );
|
|
close_handle( current->process, req->prev ); /* avoid an extra round-trip for close */
|
|
release_object( irp );
|
|
}
|
|
clear_error();
|
|
}
|
|
|
|
if ((ptr = list_head( &manager->requests )))
|
|
{
|
|
irp = LIST_ENTRY( ptr, struct irp_call, mgr_entry );
|
|
reply->params = irp->params;
|
|
reply->user_ptr = irp->device->user_ptr;
|
|
reply->client_pid = get_process_id( irp->thread->process );
|
|
reply->client_tid = get_thread_id( irp->thread );
|
|
reply->in_size = irp->in_size;
|
|
reply->out_size = irp->out_size;
|
|
if (irp->in_size > get_reply_max_size()) set_error( STATUS_BUFFER_OVERFLOW );
|
|
else if ((reply->next = alloc_handle( current->process, irp, 0, 0 )))
|
|
{
|
|
set_reply_data_ptr( irp->in_data, irp->in_size );
|
|
irp->in_data = NULL;
|
|
irp->in_size = 0;
|
|
list_remove( &irp->mgr_entry );
|
|
list_init( &irp->mgr_entry );
|
|
}
|
|
}
|
|
else set_error( STATUS_PENDING );
|
|
|
|
release_object( manager );
|
|
}
|
|
|
|
|
|
/* store results of an async irp */
|
|
DECL_HANDLER(set_irp_result)
|
|
{
|
|
struct irp_call *irp;
|
|
struct device_manager *manager;
|
|
|
|
if (!(manager = (struct device_manager *)get_handle_obj( current->process, req->manager,
|
|
0, &device_manager_ops )))
|
|
return;
|
|
|
|
if ((irp = (struct irp_call *)get_handle_obj( current->process, req->handle, 0, &irp_call_ops )))
|
|
{
|
|
set_irp_result( irp, req->status, get_req_data(), get_req_data_size(), req->size );
|
|
close_handle( current->process, req->handle ); /* avoid an extra round-trip for close */
|
|
release_object( irp );
|
|
}
|
|
release_object( manager );
|
|
}
|
|
|
|
|
|
/* retrieve results of an async irp */
|
|
DECL_HANDLER(get_irp_result)
|
|
{
|
|
struct device *device;
|
|
struct irp_call *irp;
|
|
|
|
if (!(device = (struct device *)get_handle_obj( current->process, req->handle, 0, &device_ops )))
|
|
return;
|
|
|
|
if ((irp = find_irp_call( device, current, req->user_arg )))
|
|
{
|
|
if (irp->out_data)
|
|
{
|
|
data_size_t size = min( irp->out_size, get_reply_max_size() );
|
|
if (size)
|
|
{
|
|
set_reply_data_ptr( irp->out_data, size );
|
|
irp->out_data = NULL;
|
|
}
|
|
}
|
|
reply->size = irp->result;
|
|
set_error( irp->status );
|
|
list_remove( &irp->dev_entry );
|
|
release_object( irp ); /* no longer on the device queue */
|
|
}
|
|
release_object( device );
|
|
}
|