source: rtems/cpukit/libcsupport/src/mount.c @ 937ab62c

4.104.114.84.95
Last change on this file since 937ab62c was 937ab62c, checked in by Joel Sherrill <joel.sherrill@…>, on 06/15/99 at 22:16:30

After comments D. V. Henkel-Wallace <gumby@…>, the interface to
mount() was changed to avoid the use of a string as the options.

  • Property mode set to 100644
File size: 6.8 KB
Line 
1/*
2 *  mount()
3 *
4 *  XXX
5 *
6 *  XXX make sure no required ops are NULL
7 *  XXX make sure no optional ops you are using are NULL
8 *  XXX unmount should be required.
9 *
10 *  COPYRIGHT (c) 1989-1998.
11 *  On-Line Applications Research Corporation (OAR).
12 *  Copyright assigned to U.S. Government, 1994.
13 *
14 *  The license and distribution terms for this file may be
15 *  found in the file LICENSE in this distribution or at
16 *  http://www.OARcorp.com/rtems/license.html.
17 *
18 *  $Id$
19 */
20
21#include <sys/types.h>
22#include <sys/stat.h>
23#include <chain.h>
24#include <fcntl.h>
25#include <unistd.h>
26#include <errno.h>
27#include <stdlib.h>
28#include <string.h>
29#include <assert.h>
30
31#include "libio_.h"
32
33Chain_Control rtems_filesystem_mount_table_control;
34
35#include "imfs.h"
36
37/* XXX this structure should be in an IMFS specific file */
38/* XXX this structure should use real constants */
39
40rtems_filesystem_limits_and_options_t IMFS_LIMITS_AND_OPTIONS = {
41   5,   /* link_max */
42   6,   /* max_canon */
43   7,   /* max_input */
44   IMFS_NAME_MAX,       /* name_max */
45   255, /* path_max */
46   2,   /* pipe_buf */
47   1,   /* posix_async_io */
48   2,   /* posix_chown_restrictions */
49   3,   /* posix_no_trunc */
50   4,   /* posix_prio_io */
51   5,   /* posix_sync_io */
52   6    /* posix_vdisable */
53};
54
55/*
56 *  XXX
57 */
58
59int search_mt_for_mount_point(
60  rtems_filesystem_location_info_t *location_of_mount_point
61);
62
63int init_fs_mount_table( void );
64
65
66/*
67 *  XXX
68 */
69
70#define FOUND      0
71#define NOT_FOUND -1
72
73/*
74 *  mount
75 *
76 *  This routine will attempt to mount a new file system at the specified
77 *  mount point. A series of tests will be run to determine if any of the
78 *  following reasons exist to prevent the mount operation:
79 *
80 *      1) The file system type or options are not valid
81 *      2) No new file system root node is specified
82 *      3) The selected file system has already been mounted
83 *      4) The mount point exists with the proper permissions to allow mounting
84 *      5) The selected mount point already has a file system mounted to it
85 *
86 */
87
88int mount(
89  rtems_filesystem_mount_table_entry_t **mt_entry,
90  rtems_filesystem_operations_table    *fs_ops,
91  rtems_filesystem_options_t            fsoptions,
92  char                                 *device,
93  char                                 *mount_point
94)
95{
96  rtems_filesystem_location_info_t      temp_loc;
97  rtems_filesystem_options_t            options;
98  rtems_filesystem_mount_table_entry_t *temp_mt_entry;
99
100/* XXX add code to check for required operations */
101
102  /*
103   *  Is there a file system operations table?
104   */
105
106  if ( fs_ops == NULL ) {
107    errno = EINVAL;
108    return -1;
109  }
110
111  /*
112   *  Are the file system options valid?
113   */
114
115  if ( fsoptions != RTEMS_FILESYSTEM_READ_ONLY &&
116       fsoptions != RTEMS_FILESYSTEM_READ_WRITE ) {
117    errno = EINVAL;
118    return -1;
119  }
120
121  /*
122   * Allocate a mount table entry
123   */
124
125   temp_mt_entry = malloc( sizeof(rtems_filesystem_mount_table_entry_t) );
126
127   if ( !temp_mt_entry ) {
128     errno = ENOMEM;
129     return -1;
130   }
131
132   temp_mt_entry->mt_fs_root.mt_entry = temp_mt_entry;
133   temp_mt_entry->options = options;
134   if ( device )
135     strcpy( temp_mt_entry->dev, device );
136   else
137     temp_mt_entry->dev = 0;
138
139  /*
140   *  The mount_point should be a directory with read/write/execute
141   *  permissions in the existing tree.
142   */
143
144  if ( mount_point ) {
145     if ( rtems_filesystem_evaluate_path(
146       mount_point,
147       RTEMS_LIBIO_PERMS_RWX,
148       &temp_loc ,
149       TRUE ) == -1 )
150       goto cleanup_and_bail;
151
152     /*
153      * Test to see if it is a directory
154      */
155
156     if ( temp_loc.ops->node_type( &temp_loc ) != RTEMS_FILESYSTEM_DIRECTORY ) {
157       errno = ENOTDIR;
158       goto cleanup_and_bail;
159     }
160
161     /*
162      *  You can only mount one file system onto a single mount point.
163      */
164
165     if ( search_mt_for_mount_point( &temp_loc ) == FOUND ) {
166       errno = EBUSY;
167       goto cleanup_and_bail;
168     }
169 
170     /*
171      * This must be a good mount point, so move the location information
172      * into the allocated mount entry
173      */
174
175     temp_mt_entry->mt_point_node.node_access = temp_loc.node_access;
176     temp_mt_entry->mt_point_node.handlers = temp_loc.handlers;
177     temp_mt_entry->mt_point_node.ops = temp_loc.ops;
178     temp_mt_entry->mt_point_node.mt_entry = temp_loc.mt_entry;
179
180     /*
181      * This link to the parent is only done when we are dealing with system
182      * below the base file system
183      */
184
185     if ( !temp_loc.ops->mount ){
186       errno = ENOTSUP;
187       goto cleanup_and_bail;
188     }
189
190     if ( temp_loc.ops->mount( temp_mt_entry ) ) {
191        goto cleanup_and_bail;
192     }
193  }
194  else {
195
196     /*
197      * This is a mount of the base file system --> The
198      * mt_point_node.node_access will be set to null to indicate that this
199      * is the root of the entire file system.
200      */
201
202      temp_mt_entry->mt_fs_root.node_access = NULL;
203      temp_mt_entry->mt_fs_root.handlers = NULL;
204      temp_mt_entry->mt_fs_root.ops = NULL;
205
206      temp_mt_entry->mt_point_node.node_access = NULL;
207      temp_mt_entry->mt_point_node.handlers = NULL;
208      temp_mt_entry->mt_point_node.ops = NULL;
209      temp_mt_entry->mt_point_node.mt_entry = NULL;
210  }
211
212  if ( !fs_ops->fsmount_me ){
213      errno = ENOTSUP;
214      goto cleanup_and_bail;
215  }
216
217  if ( fs_ops->fsmount_me( temp_mt_entry ) )
218      goto cleanup_and_bail;
219
220  /*
221   * Add the mount table entry to the mount table chain
222   */
223
224  Chain_Append( &rtems_filesystem_mount_table_control, &temp_mt_entry->Node );
225
226  *mt_entry = temp_mt_entry;
227  return 0;
228
229cleanup_and_bail:
230
231  free( temp_mt_entry );
232  return -1;
233}
234
235
236
237/*
238 *  init_fs_mount_table
239 *
240 *  This routine will initialize the chain control element that manages the
241 *  mount table chain.
242 */
243
244int init_fs_mount_table()
245{
246  Chain_Initialize_empty ( &rtems_filesystem_mount_table_control );
247  return 0;
248}
249
250
251/*
252 *  search_mt_for_mount_point
253 *
254 *  This routine will run through the entries that currently exist in the
255 *  mount table chain. For each entry in the mount table chain it will
256 *  compare the mount tables mt_point_node to the node describing the selected
257 *  mount point.. If any of the mount table file system mount point nodes
258 *  match the new file system selected mount point node, we are attempting
259 *  to mount the new file system onto a node that already has a file system
260 *  mounted to it. This is not a permitted operation.
261 */
262
263int search_mt_for_mount_point(
264  rtems_filesystem_location_info_t *location_of_mount_point
265)
266{
267  Chain_Node                           *the_node;
268  rtems_filesystem_mount_table_entry_t *the_mount_entry;
269
270  for ( the_node = rtems_filesystem_mount_table_control.first;
271        !Chain_Is_tail( &rtems_filesystem_mount_table_control, the_node );
272        the_node = the_node->next ) {
273
274     the_mount_entry = (rtems_filesystem_mount_table_entry_t *) the_node;
275     if ( the_mount_entry->mt_point_node.node_access  ==
276             location_of_mount_point->node_access )
277        return FOUND;
278  }
279  return NOT_FOUND;
280}
281
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