udf_vfsops.c revision 1.35.6.5 1 1.35.6.1 mjf /* $NetBSD: udf_vfsops.c,v 1.35.6.5 2009/01/17 13:29:17 mjf Exp $ */
2 1.1 reinoud
3 1.1 reinoud /*
4 1.35.6.1 mjf * Copyright (c) 2006, 2008 Reinoud Zandijk
5 1.1 reinoud * All rights reserved.
6 1.1 reinoud *
7 1.1 reinoud * Redistribution and use in source and binary forms, with or without
8 1.1 reinoud * modification, are permitted provided that the following conditions
9 1.1 reinoud * are met:
10 1.1 reinoud * 1. Redistributions of source code must retain the above copyright
11 1.1 reinoud * notice, this list of conditions and the following disclaimer.
12 1.1 reinoud * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 reinoud * notice, this list of conditions and the following disclaimer in the
14 1.1 reinoud * documentation and/or other materials provided with the distribution.
15 1.1 reinoud *
16 1.1 reinoud * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 1.1 reinoud * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 1.1 reinoud * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 1.1 reinoud * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 1.1 reinoud * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 1.1 reinoud * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 1.1 reinoud * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 1.1 reinoud * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 1.1 reinoud * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 1.1 reinoud * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 1.1 reinoud *
27 1.1 reinoud */
28 1.1 reinoud
29 1.1 reinoud #include <sys/cdefs.h>
30 1.1 reinoud #ifndef lint
31 1.35.6.1 mjf __KERNEL_RCSID(0, "$NetBSD: udf_vfsops.c,v 1.35.6.5 2009/01/17 13:29:17 mjf Exp $");
32 1.1 reinoud #endif /* not lint */
33 1.1 reinoud
34 1.1 reinoud
35 1.1 reinoud #if defined(_KERNEL_OPT)
36 1.1 reinoud #include "opt_compat_netbsd.h"
37 1.1 reinoud #endif
38 1.1 reinoud
39 1.1 reinoud #include <sys/param.h>
40 1.1 reinoud #include <sys/systm.h>
41 1.1 reinoud #include <sys/sysctl.h>
42 1.1 reinoud #include <sys/namei.h>
43 1.1 reinoud #include <sys/proc.h>
44 1.1 reinoud #include <sys/kernel.h>
45 1.1 reinoud #include <sys/vnode.h>
46 1.35 dholland #include <miscfs/genfs/genfs.h>
47 1.1 reinoud #include <miscfs/specfs/specdev.h>
48 1.1 reinoud #include <sys/mount.h>
49 1.1 reinoud #include <sys/buf.h>
50 1.1 reinoud #include <sys/file.h>
51 1.1 reinoud #include <sys/device.h>
52 1.1 reinoud #include <sys/disklabel.h>
53 1.1 reinoud #include <sys/ioctl.h>
54 1.1 reinoud #include <sys/malloc.h>
55 1.1 reinoud #include <sys/dirent.h>
56 1.1 reinoud #include <sys/stat.h>
57 1.1 reinoud #include <sys/conf.h>
58 1.5 christos #include <sys/kauth.h>
59 1.35.6.1 mjf #include <sys/module.h>
60 1.1 reinoud
61 1.1 reinoud #include <fs/udf/ecma167-udf.h>
62 1.1 reinoud #include <fs/udf/udf_mount.h>
63 1.35.6.4 mjf #include <sys/dirhash.h>
64 1.1 reinoud
65 1.1 reinoud #include "udf.h"
66 1.1 reinoud #include "udf_subr.h"
67 1.1 reinoud #include "udf_bswap.h"
68 1.1 reinoud
69 1.35.6.1 mjf MODULE(MODULE_CLASS_VFS, udf, NULL);
70 1.35.6.1 mjf
71 1.35.6.1 mjf #define VTOI(vnode) ((struct udf_node *) vnode->v_data)
72 1.1 reinoud
73 1.1 reinoud /* verbose levels of the udf filingsystem */
74 1.1 reinoud int udf_verbose = UDF_DEBUGGING;
75 1.1 reinoud
76 1.1 reinoud /* malloc regions */
77 1.25 pooka MALLOC_JUSTDEFINE(M_UDFMNT, "UDF mount", "UDF mount structures");
78 1.25 pooka MALLOC_JUSTDEFINE(M_UDFVOLD, "UDF volspace", "UDF volume space descriptors");
79 1.25 pooka MALLOC_JUSTDEFINE(M_UDFTEMP, "UDF temp", "UDF scrap space");
80 1.1 reinoud struct pool udf_node_pool;
81 1.1 reinoud
82 1.1 reinoud /* supported functions predefined */
83 1.29 pooka VFS_PROTOS(udf);
84 1.1 reinoud
85 1.35.6.2 mjf static struct sysctllog *udf_sysctl_log;
86 1.1 reinoud
87 1.1 reinoud /* internal functions */
88 1.1 reinoud static int udf_mountfs(struct vnode *, struct mount *, struct lwp *, struct udf_args *);
89 1.1 reinoud
90 1.1 reinoud
91 1.1 reinoud /* --------------------------------------------------------------------- */
92 1.1 reinoud
93 1.1 reinoud /* predefine vnode-op list descriptor */
94 1.1 reinoud extern const struct vnodeopv_desc udf_vnodeop_opv_desc;
95 1.1 reinoud
96 1.1 reinoud const struct vnodeopv_desc * const udf_vnodeopv_descs[] = {
97 1.1 reinoud &udf_vnodeop_opv_desc,
98 1.1 reinoud NULL,
99 1.1 reinoud };
100 1.1 reinoud
101 1.1 reinoud
102 1.1 reinoud /* vfsops descriptor linked in as anchor point for the filingsystem */
103 1.1 reinoud struct vfsops udf_vfsops = {
104 1.1 reinoud MOUNT_UDF, /* vfs_name */
105 1.26 dsl sizeof (struct udf_args),
106 1.1 reinoud udf_mount,
107 1.1 reinoud udf_start,
108 1.1 reinoud udf_unmount,
109 1.1 reinoud udf_root,
110 1.31 pooka (void *)eopnotsupp, /* vfs_quotactl */
111 1.1 reinoud udf_statvfs,
112 1.1 reinoud udf_sync,
113 1.1 reinoud udf_vget,
114 1.1 reinoud udf_fhtovp,
115 1.1 reinoud udf_vptofh,
116 1.1 reinoud udf_init,
117 1.1 reinoud udf_reinit,
118 1.1 reinoud udf_done,
119 1.1 reinoud udf_mountroot,
120 1.1 reinoud udf_snapshot,
121 1.1 reinoud vfs_stdextattrctl,
122 1.28 pooka (void *)eopnotsupp, /* vfs_suspendctl */
123 1.35 dholland genfs_renamelock_enter,
124 1.35 dholland genfs_renamelock_exit,
125 1.35.6.1 mjf (void *)eopnotsupp,
126 1.1 reinoud udf_vnodeopv_descs,
127 1.12 christos 0, /* int vfs_refcount */
128 1.12 christos { NULL, NULL, }, /* LIST_ENTRY(vfsops) */
129 1.1 reinoud };
130 1.1 reinoud
131 1.1 reinoud /* --------------------------------------------------------------------- */
132 1.1 reinoud
133 1.1 reinoud /* file system starts here */
134 1.1 reinoud void
135 1.1 reinoud udf_init(void)
136 1.1 reinoud {
137 1.1 reinoud size_t size;
138 1.1 reinoud
139 1.35.6.3 mjf /* setup memory types */
140 1.1 reinoud malloc_type_attach(M_UDFMNT);
141 1.1 reinoud malloc_type_attach(M_UDFVOLD);
142 1.1 reinoud malloc_type_attach(M_UDFTEMP);
143 1.1 reinoud
144 1.35.6.3 mjf /* init node pools */
145 1.1 reinoud size = sizeof(struct udf_node);
146 1.35.6.3 mjf pool_init(&udf_node_pool, size, 0, 0, 0,
147 1.35.6.3 mjf "udf_node_pool", NULL, IPL_NONE);
148 1.1 reinoud }
149 1.1 reinoud
150 1.1 reinoud
151 1.1 reinoud void
152 1.1 reinoud udf_reinit(void)
153 1.1 reinoud {
154 1.35.6.3 mjf /* nothing to do */
155 1.1 reinoud }
156 1.1 reinoud
157 1.1 reinoud
158 1.1 reinoud void
159 1.1 reinoud udf_done(void)
160 1.1 reinoud {
161 1.35.6.3 mjf /* remove pools */
162 1.1 reinoud pool_destroy(&udf_node_pool);
163 1.1 reinoud
164 1.1 reinoud malloc_type_detach(M_UDFMNT);
165 1.1 reinoud malloc_type_detach(M_UDFVOLD);
166 1.1 reinoud malloc_type_detach(M_UDFTEMP);
167 1.1 reinoud }
168 1.1 reinoud
169 1.35.6.2 mjf /*
170 1.35.6.2 mjf * If running a DEBUG kernel, provide an easy way to set the debug flags when
171 1.35.6.2 mjf * running into a problem.
172 1.35.6.2 mjf */
173 1.35.6.3 mjf #define UDF_VERBOSE_SYSCTLOPT 1
174 1.35.6.1 mjf
175 1.35.6.1 mjf static int
176 1.35.6.1 mjf udf_modcmd(modcmd_t cmd, void *arg)
177 1.35.6.1 mjf {
178 1.35.6.3 mjf const struct sysctlnode *node;
179 1.35.6.2 mjf int error;
180 1.35.6.1 mjf
181 1.35.6.1 mjf switch (cmd) {
182 1.35.6.1 mjf case MODULE_CMD_INIT:
183 1.35.6.2 mjf error = vfs_attach(&udf_vfsops);
184 1.35.6.2 mjf if (error != 0)
185 1.35.6.2 mjf break;
186 1.35.6.2 mjf /*
187 1.35.6.2 mjf * XXX the "24" below could be dynamic, thereby eliminating one
188 1.35.6.2 mjf * more instance of the "number to vfs" mapping problem, but
189 1.35.6.2 mjf * "24" is the order as taken from sys/mount.h
190 1.35.6.2 mjf */
191 1.35.6.2 mjf sysctl_createv(&udf_sysctl_log, 0, NULL, NULL,
192 1.35.6.2 mjf CTLFLAG_PERMANENT,
193 1.35.6.2 mjf CTLTYPE_NODE, "vfs", NULL,
194 1.35.6.2 mjf NULL, 0, NULL, 0,
195 1.35.6.2 mjf CTL_VFS, CTL_EOL);
196 1.35.6.3 mjf sysctl_createv(&udf_sysctl_log, 0, NULL, &node,
197 1.35.6.2 mjf CTLFLAG_PERMANENT,
198 1.35.6.2 mjf CTLTYPE_NODE, "udf",
199 1.35.6.2 mjf SYSCTL_DESCR("OSTA Universal File System"),
200 1.35.6.2 mjf NULL, 0, NULL, 0,
201 1.35.6.2 mjf CTL_VFS, 24, CTL_EOL);
202 1.35.6.2 mjf #ifdef DEBUG
203 1.35.6.3 mjf sysctl_createv(&udf_sysctl_log, 0, NULL, &node,
204 1.35.6.2 mjf CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
205 1.35.6.2 mjf CTLTYPE_INT, "verbose",
206 1.35.6.2 mjf SYSCTL_DESCR("Bitmask for filesystem debugging"),
207 1.35.6.2 mjf NULL, 0, &udf_verbose, 0,
208 1.35.6.2 mjf CTL_VFS, 24, UDF_VERBOSE_SYSCTLOPT, CTL_EOL);
209 1.35.6.2 mjf #endif
210 1.35.6.2 mjf break;
211 1.35.6.1 mjf case MODULE_CMD_FINI:
212 1.35.6.2 mjf error = vfs_detach(&udf_vfsops);
213 1.35.6.2 mjf if (error != 0)
214 1.35.6.2 mjf break;
215 1.35.6.2 mjf sysctl_teardown(&udf_sysctl_log);
216 1.35.6.2 mjf break;
217 1.35.6.1 mjf default:
218 1.35.6.2 mjf error = ENOTTY;
219 1.35.6.2 mjf break;
220 1.35.6.1 mjf }
221 1.35.6.2 mjf
222 1.35.6.2 mjf return (error);
223 1.35.6.1 mjf }
224 1.35.6.1 mjf
225 1.1 reinoud /* --------------------------------------------------------------------- */
226 1.1 reinoud
227 1.1 reinoud int
228 1.1 reinoud udf_mountroot(void)
229 1.1 reinoud {
230 1.1 reinoud return EOPNOTSUPP;
231 1.1 reinoud }
232 1.1 reinoud
233 1.1 reinoud /* --------------------------------------------------------------------- */
234 1.1 reinoud
235 1.1 reinoud #define MPFREE(a, lst) \
236 1.1 reinoud if ((a)) free((a), lst);
237 1.1 reinoud static void
238 1.1 reinoud free_udf_mountinfo(struct mount *mp)
239 1.1 reinoud {
240 1.1 reinoud struct udf_mount *ump;
241 1.1 reinoud int i;
242 1.1 reinoud
243 1.15 reinoud if (!mp)
244 1.15 reinoud return;
245 1.15 reinoud
246 1.1 reinoud ump = VFSTOUDF(mp);
247 1.1 reinoud if (ump) {
248 1.10 reinoud /* clear our data */
249 1.1 reinoud for (i = 0; i < UDF_ANCHORS; i++)
250 1.1 reinoud MPFREE(ump->anchors[i], M_UDFVOLD);
251 1.1 reinoud MPFREE(ump->primary_vol, M_UDFVOLD);
252 1.1 reinoud MPFREE(ump->logical_vol, M_UDFVOLD);
253 1.1 reinoud MPFREE(ump->unallocated, M_UDFVOLD);
254 1.1 reinoud MPFREE(ump->implementation, M_UDFVOLD);
255 1.1 reinoud MPFREE(ump->logvol_integrity, M_UDFVOLD);
256 1.35.6.1 mjf for (i = 0; i < UDF_PARTITIONS; i++) {
257 1.35.6.3 mjf MPFREE(ump->partitions[i], M_UDFVOLD);
258 1.35.6.1 mjf MPFREE(ump->part_unalloc_dscr[i], M_UDFVOLD);
259 1.35.6.3 mjf MPFREE(ump->part_freed_dscr[i], M_UDFVOLD);
260 1.35.6.1 mjf }
261 1.35.6.3 mjf MPFREE(ump->metadata_unalloc_dscr, M_UDFVOLD);
262 1.35.6.3 mjf
263 1.35.6.3 mjf MPFREE(ump->fileset_desc, M_UDFVOLD);
264 1.35.6.3 mjf MPFREE(ump->sparing_table, M_UDFVOLD);
265 1.35.6.1 mjf
266 1.35.6.1 mjf MPFREE(ump->la_node_ad_cpy, M_UDFMNT);
267 1.35.6.3 mjf MPFREE(ump->la_pmapping, M_TEMP);
268 1.35.6.3 mjf MPFREE(ump->la_lmapping, M_TEMP);
269 1.1 reinoud
270 1.30 ad mutex_destroy(&ump->ihash_lock);
271 1.30 ad mutex_destroy(&ump->get_node_lock);
272 1.35.6.3 mjf mutex_destroy(&ump->logvol_mutex);
273 1.35.6.1 mjf mutex_destroy(&ump->allocate_mutex);
274 1.35.6.3 mjf cv_destroy(&ump->dirtynodes_cv);
275 1.35.6.3 mjf
276 1.35.6.1 mjf MPFREE(ump->vat_table, M_UDFVOLD);
277 1.35.6.1 mjf
278 1.1 reinoud free(ump, M_UDFMNT);
279 1.6 christos }
280 1.1 reinoud }
281 1.1 reinoud #undef MPFREE
282 1.1 reinoud
283 1.1 reinoud /* --------------------------------------------------------------------- */
284 1.1 reinoud
285 1.35.6.1 mjf /* if the system nodes exist, release them */
286 1.35.6.1 mjf static void
287 1.35.6.1 mjf udf_release_system_nodes(struct mount *mp)
288 1.35.6.1 mjf {
289 1.35.6.1 mjf struct udf_mount *ump = VFSTOUDF(mp);
290 1.35.6.1 mjf int error;
291 1.35.6.1 mjf
292 1.35.6.1 mjf /* if we haven't even got an ump, dont bother */
293 1.35.6.1 mjf if (!ump)
294 1.35.6.1 mjf return;
295 1.35.6.1 mjf
296 1.35.6.1 mjf /* VAT partition support */
297 1.35.6.1 mjf if (ump->vat_node)
298 1.35.6.1 mjf vrele(ump->vat_node->vnode);
299 1.35.6.1 mjf
300 1.35.6.1 mjf /* Metadata partition support */
301 1.35.6.1 mjf if (ump->metadata_node)
302 1.35.6.1 mjf vrele(ump->metadata_node->vnode);
303 1.35.6.1 mjf if (ump->metadatamirror_node)
304 1.35.6.1 mjf vrele(ump->metadatamirror_node->vnode);
305 1.35.6.1 mjf if (ump->metadatabitmap_node)
306 1.35.6.1 mjf vrele(ump->metadatabitmap_node->vnode);
307 1.35.6.1 mjf
308 1.35.6.1 mjf /* This flush should NOT write anything nor allow any node to remain */
309 1.35.6.1 mjf if ((error = vflush(ump->vfs_mountp, NULLVP, 0)) != 0)
310 1.35.6.1 mjf panic("Failure to flush UDF system vnodes\n");
311 1.35.6.1 mjf }
312 1.35.6.1 mjf
313 1.35.6.1 mjf
314 1.1 reinoud int
315 1.1 reinoud udf_mount(struct mount *mp, const char *path,
316 1.31 pooka void *data, size_t *data_len)
317 1.1 reinoud {
318 1.31 pooka struct lwp *l = curlwp;
319 1.29 pooka struct nameidata nd;
320 1.26 dsl struct udf_args *args = data;
321 1.1 reinoud struct udf_mount *ump;
322 1.1 reinoud struct vnode *devvp;
323 1.1 reinoud int openflags, accessmode, error;
324 1.1 reinoud
325 1.1 reinoud DPRINTF(CALL, ("udf_mount called\n"));
326 1.1 reinoud
327 1.26 dsl if (*data_len < sizeof *args)
328 1.26 dsl return EINVAL;
329 1.26 dsl
330 1.1 reinoud if (mp->mnt_flag & MNT_GETARGS) {
331 1.1 reinoud /* request for the mount arguments */
332 1.1 reinoud ump = VFSTOUDF(mp);
333 1.1 reinoud if (ump == NULL)
334 1.1 reinoud return EINVAL;
335 1.26 dsl *args = ump->mount_args;
336 1.26 dsl *data_len = sizeof *args;
337 1.26 dsl return 0;
338 1.6 christos }
339 1.1 reinoud
340 1.1 reinoud /* handle request for updating mount parameters */
341 1.1 reinoud /* TODO can't update my mountpoint yet */
342 1.1 reinoud if (mp->mnt_flag & MNT_UPDATE) {
343 1.1 reinoud return EOPNOTSUPP;
344 1.6 christos }
345 1.1 reinoud
346 1.15 reinoud /* OK, so we are asked to mount the device */
347 1.1 reinoud
348 1.1 reinoud /* check/translate struct version */
349 1.1 reinoud /* TODO sanity checking other mount arguments */
350 1.26 dsl if (args->version != 1) {
351 1.1 reinoud printf("mount_udf: unrecognized argument structure version\n");
352 1.1 reinoud return EINVAL;
353 1.6 christos }
354 1.1 reinoud
355 1.1 reinoud /* lookup name to get its vnode */
356 1.32 pooka NDINIT(&nd, LOOKUP, FOLLOW, UIO_USERSPACE, args->fspec);
357 1.29 pooka error = namei(&nd);
358 1.1 reinoud if (error)
359 1.1 reinoud return error;
360 1.29 pooka devvp = nd.ni_vp;
361 1.1 reinoud
362 1.1 reinoud #ifdef DEBUG
363 1.1 reinoud if (udf_verbose & UDF_DEBUG_VOLUMES)
364 1.1 reinoud vprint("UDF mount, trying to mount \n", devvp);
365 1.1 reinoud #endif
366 1.1 reinoud
367 1.1 reinoud /* check if its a block device specified */
368 1.1 reinoud if (devvp->v_type != VBLK) {
369 1.1 reinoud vrele(devvp);
370 1.1 reinoud return ENOTBLK;
371 1.1 reinoud }
372 1.1 reinoud if (bdevsw_lookup(devvp->v_rdev) == NULL) {
373 1.1 reinoud vrele(devvp);
374 1.1 reinoud return ENXIO;
375 1.1 reinoud }
376 1.1 reinoud
377 1.1 reinoud /*
378 1.1 reinoud * If mount by non-root, then verify that user has necessary
379 1.1 reinoud * permissions on the device.
380 1.1 reinoud */
381 1.20 elad if (kauth_authorize_generic(l->l_cred, KAUTH_GENERIC_ISSUSER, NULL)) {
382 1.1 reinoud accessmode = VREAD;
383 1.1 reinoud if ((mp->mnt_flag & MNT_RDONLY) == 0)
384 1.1 reinoud accessmode |= VWRITE;
385 1.13 reinoud vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
386 1.31 pooka error = VOP_ACCESS(devvp, accessmode, l->l_cred);
387 1.13 reinoud VOP_UNLOCK(devvp, 0);
388 1.1 reinoud if (error) {
389 1.13 reinoud vrele(devvp);
390 1.13 reinoud return error;
391 1.1 reinoud }
392 1.1 reinoud }
393 1.1 reinoud
394 1.1 reinoud /*
395 1.1 reinoud * Open device and try to mount it!
396 1.1 reinoud */
397 1.1 reinoud if (mp->mnt_flag & MNT_RDONLY) {
398 1.1 reinoud openflags = FREAD;
399 1.1 reinoud } else {
400 1.1 reinoud openflags = FREAD | FWRITE;
401 1.6 christos }
402 1.31 pooka error = VOP_OPEN(devvp, openflags, FSCRED);
403 1.1 reinoud if (error == 0) {
404 1.1 reinoud /* opened ok, try mounting */
405 1.26 dsl error = udf_mountfs(devvp, mp, l, args);
406 1.1 reinoud if (error) {
407 1.35.6.1 mjf udf_release_system_nodes(mp);
408 1.35.6.1 mjf /* cleanup */
409 1.35.6.1 mjf udf_discstrat_finish(VFSTOUDF(mp));
410 1.1 reinoud free_udf_mountinfo(mp);
411 1.13 reinoud vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
412 1.31 pooka (void) VOP_CLOSE(devvp, openflags, NOCRED);
413 1.13 reinoud VOP_UNLOCK(devvp, 0);
414 1.6 christos }
415 1.6 christos }
416 1.1 reinoud if (error) {
417 1.1 reinoud /* devvp is still locked */
418 1.13 reinoud vrele(devvp);
419 1.1 reinoud return error;
420 1.6 christos }
421 1.1 reinoud
422 1.1 reinoud /* register our mountpoint being on this device */
423 1.1 reinoud devvp->v_specmountpoint = mp;
424 1.1 reinoud
425 1.1 reinoud /* successfully mounted */
426 1.1 reinoud DPRINTF(VOLUMES, ("udf_mount() successfull\n"));
427 1.1 reinoud
428 1.35.6.1 mjf error = set_statvfs_info(path, UIO_USERSPACE, args->fspec, UIO_USERSPACE,
429 1.27 pooka mp->mnt_op->vfs_name, mp, l);
430 1.35.6.1 mjf if (error)
431 1.35.6.1 mjf return error;
432 1.35.6.1 mjf
433 1.35.6.1 mjf /* If we're not opened read-only, open its logical volume */
434 1.35.6.1 mjf if ((mp->mnt_flag & MNT_RDONLY) == 0) {
435 1.35.6.1 mjf if ((error = udf_open_logvol(VFSTOUDF(mp))) != 0) {
436 1.35.6.1 mjf printf( "mount_udf: can't open logical volume for "
437 1.35.6.3 mjf "writing, downgrading access to read-only\n");
438 1.35.6.1 mjf mp->mnt_flag |= MNT_RDONLY;
439 1.35.6.1 mjf /* FIXME we can't return error now on open failure */
440 1.35.6.1 mjf return 0;
441 1.35.6.1 mjf }
442 1.35.6.1 mjf }
443 1.35.6.1 mjf
444 1.35.6.1 mjf return 0;
445 1.1 reinoud }
446 1.1 reinoud
447 1.1 reinoud /* --------------------------------------------------------------------- */
448 1.1 reinoud
449 1.1 reinoud #ifdef DEBUG
450 1.1 reinoud static void
451 1.1 reinoud udf_unmount_sanity_check(struct mount *mp)
452 1.1 reinoud {
453 1.1 reinoud struct vnode *vp;
454 1.1 reinoud
455 1.1 reinoud printf("On unmount, i found the following nodes:\n");
456 1.17 reinoud TAILQ_FOREACH(vp, &mp->mnt_vnodelist, v_mntvnodes) {
457 1.1 reinoud vprint("", vp);
458 1.1 reinoud if (VOP_ISLOCKED(vp) == LK_EXCLUSIVE) {
459 1.1 reinoud printf(" is locked\n");
460 1.6 christos }
461 1.1 reinoud if (vp->v_usecount > 1)
462 1.1 reinoud printf(" more than one usecount %d\n", vp->v_usecount);
463 1.6 christos }
464 1.1 reinoud }
465 1.1 reinoud #endif
466 1.1 reinoud
467 1.1 reinoud
468 1.1 reinoud int
469 1.31 pooka udf_unmount(struct mount *mp, int mntflags)
470 1.1 reinoud {
471 1.1 reinoud struct udf_mount *ump;
472 1.1 reinoud int error, flags, closeflags;
473 1.1 reinoud
474 1.1 reinoud DPRINTF(CALL, ("udf_umount called\n"));
475 1.1 reinoud
476 1.1 reinoud ump = VFSTOUDF(mp);
477 1.1 reinoud if (!ump)
478 1.1 reinoud panic("UDF unmount: empty ump\n");
479 1.1 reinoud
480 1.19 reinoud flags = (mntflags & MNT_FORCE) ? FORCECLOSE : 0;
481 1.1 reinoud /* TODO remove these paranoid functions */
482 1.1 reinoud #ifdef DEBUG
483 1.1 reinoud if (udf_verbose & UDF_DEBUG_LOCKING)
484 1.1 reinoud udf_unmount_sanity_check(mp);
485 1.1 reinoud #endif
486 1.1 reinoud
487 1.19 reinoud /*
488 1.30 ad * By specifying SKIPSYSTEM we can skip vnodes marked with VV_SYSTEM.
489 1.19 reinoud * This hardly documented feature allows us to exempt certain files
490 1.19 reinoud * from being flushed.
491 1.19 reinoud */
492 1.30 ad if ((error = vflush(mp, NULLVP, flags | SKIPSYSTEM)) != 0)
493 1.1 reinoud return error;
494 1.1 reinoud
495 1.35.6.1 mjf /* update nodes and wait for completion of writeout of system nodes */
496 1.35.6.1 mjf udf_sync(mp, FSYNC_WAIT, NOCRED);
497 1.35.6.1 mjf
498 1.1 reinoud #ifdef DEBUG
499 1.1 reinoud if (udf_verbose & UDF_DEBUG_LOCKING)
500 1.1 reinoud udf_unmount_sanity_check(mp);
501 1.1 reinoud #endif
502 1.1 reinoud
503 1.35.6.1 mjf /* flush again, to check if we are still busy for something else */
504 1.35.6.1 mjf if ((error = vflush(ump->vfs_mountp, NULLVP, flags | SKIPSYSTEM)) != 0)
505 1.35.6.1 mjf return error;
506 1.1 reinoud
507 1.35.6.1 mjf DPRINTF(VOLUMES, ("flush OK on unmount\n"));
508 1.35.6.1 mjf
509 1.35.6.1 mjf /* close logical volume and close session if requested */
510 1.35.6.1 mjf if ((error = udf_close_logvol(ump, mntflags)) != 0)
511 1.35.6.1 mjf return error;
512 1.35.6.1 mjf
513 1.35.6.1 mjf #ifdef DEBUG
514 1.35.6.1 mjf DPRINTF(VOLUMES, ("FINAL sanity check\n"));
515 1.35.6.1 mjf if (udf_verbose & UDF_DEBUG_LOCKING)
516 1.35.6.1 mjf udf_unmount_sanity_check(mp);
517 1.35.6.1 mjf #endif
518 1.35.6.1 mjf
519 1.35.6.1 mjf /* NOTE release system nodes should NOT write anything */
520 1.35.6.1 mjf udf_release_system_nodes(mp);
521 1.35.6.1 mjf
522 1.35.6.1 mjf /* finalise disc strategy */
523 1.35.6.1 mjf udf_discstrat_finish(ump);
524 1.35.6.1 mjf
525 1.35.6.1 mjf /* synchronise device caches */
526 1.35.6.1 mjf (void) udf_synchronise_caches(ump);
527 1.1 reinoud
528 1.1 reinoud /* close device */
529 1.1 reinoud DPRINTF(VOLUMES, ("closing device\n"));
530 1.1 reinoud if (mp->mnt_flag & MNT_RDONLY) {
531 1.1 reinoud closeflags = FREAD;
532 1.1 reinoud } else {
533 1.1 reinoud closeflags = FREAD | FWRITE;
534 1.6 christos }
535 1.1 reinoud
536 1.1 reinoud /* devvp is still locked by us */
537 1.1 reinoud vn_lock(ump->devvp, LK_EXCLUSIVE | LK_RETRY);
538 1.31 pooka error = VOP_CLOSE(ump->devvp, closeflags, NOCRED);
539 1.1 reinoud if (error)
540 1.1 reinoud printf("Error during closure of device! error %d, "
541 1.1 reinoud "device might stay locked\n", error);
542 1.1 reinoud DPRINTF(VOLUMES, ("device close ok\n"));
543 1.1 reinoud
544 1.1 reinoud /* clear our mount reference and release device node */
545 1.1 reinoud ump->devvp->v_specmountpoint = NULL;
546 1.1 reinoud vput(ump->devvp);
547 1.1 reinoud
548 1.35.6.1 mjf /* free our ump */
549 1.15 reinoud free_udf_mountinfo(mp);
550 1.15 reinoud
551 1.35.6.1 mjf /* free ump struct references */
552 1.1 reinoud mp->mnt_data = NULL;
553 1.1 reinoud mp->mnt_flag &= ~MNT_LOCAL;
554 1.1 reinoud
555 1.1 reinoud DPRINTF(VOLUMES, ("Fin unmount\n"));
556 1.1 reinoud return error;
557 1.1 reinoud }
558 1.1 reinoud
559 1.1 reinoud /* --------------------------------------------------------------------- */
560 1.1 reinoud
561 1.1 reinoud /*
562 1.1 reinoud * Helper function of udf_mount() that actually mounts the disc.
563 1.1 reinoud */
564 1.1 reinoud
565 1.1 reinoud static int
566 1.1 reinoud udf_mountfs(struct vnode *devvp, struct mount *mp,
567 1.1 reinoud struct lwp *l, struct udf_args *args)
568 1.1 reinoud {
569 1.1 reinoud struct udf_mount *ump;
570 1.1 reinoud uint32_t sector_size, lb_size, bshift;
571 1.35.6.1 mjf uint32_t logvol_integrity;
572 1.1 reinoud int num_anchors, error, lst;
573 1.1 reinoud
574 1.1 reinoud /* flush out any old buffers remaining from a previous use. */
575 1.9 reinoud if ((error = vinvalbuf(devvp, V_SAVE, l->l_cred, l, 0, 0)))
576 1.1 reinoud return error;
577 1.1 reinoud
578 1.35.6.1 mjf /* setup basic mount information */
579 1.35.6.1 mjf mp->mnt_data = NULL;
580 1.35.6.1 mjf mp->mnt_stat.f_fsidx.__fsid_val[0] = (uint32_t) devvp->v_rdev;
581 1.35.6.1 mjf mp->mnt_stat.f_fsidx.__fsid_val[1] = makefstype(MOUNT_UDF);
582 1.35.6.1 mjf mp->mnt_stat.f_fsid = mp->mnt_stat.f_fsidx.__fsid_val[0];
583 1.35.6.1 mjf mp->mnt_stat.f_namemax = UDF_MAX_NAMELEN;
584 1.35.6.1 mjf mp->mnt_flag |= MNT_LOCAL;
585 1.35.6.1 mjf
586 1.24 msaitoh /* allocate udf part of mount structure; malloc always succeeds */
587 1.30 ad ump = malloc(sizeof(struct udf_mount), M_UDFMNT, M_WAITOK | M_ZERO);
588 1.1 reinoud
589 1.1 reinoud /* init locks */
590 1.35.6.1 mjf mutex_init(&ump->logvol_mutex, MUTEX_DEFAULT, IPL_NONE);
591 1.30 ad mutex_init(&ump->ihash_lock, MUTEX_DEFAULT, IPL_NONE);
592 1.30 ad mutex_init(&ump->get_node_lock, MUTEX_DEFAULT, IPL_NONE);
593 1.35.6.1 mjf mutex_init(&ump->allocate_mutex, MUTEX_DEFAULT, IPL_NONE);
594 1.35.6.1 mjf cv_init(&ump->dirtynodes_cv, "udfsync2");
595 1.1 reinoud
596 1.35.6.1 mjf /* init `ino_t' to udf_node hash table and other lists */
597 1.1 reinoud for (lst = 0; lst < UDF_INODE_HASHSIZE; lst++) {
598 1.1 reinoud LIST_INIT(&ump->udf_nodes[lst]);
599 1.6 christos }
600 1.1 reinoud
601 1.1 reinoud /* set up linkage */
602 1.1 reinoud mp->mnt_data = ump;
603 1.1 reinoud ump->vfs_mountp = mp;
604 1.1 reinoud
605 1.1 reinoud /* set up arguments and device */
606 1.1 reinoud ump->mount_args = *args;
607 1.1 reinoud ump->devvp = devvp;
608 1.9 reinoud if ((error = udf_update_discinfo(ump))) {
609 1.1 reinoud printf("UDF mount: error inspecting fs node\n");
610 1.1 reinoud return error;
611 1.6 christos }
612 1.1 reinoud
613 1.1 reinoud /* inspect sector size */
614 1.1 reinoud sector_size = ump->discinfo.sector_size;
615 1.1 reinoud bshift = 1;
616 1.1 reinoud while ((1 << bshift) < sector_size)
617 1.1 reinoud bshift++;
618 1.1 reinoud if ((1 << bshift) != sector_size) {
619 1.1 reinoud printf("UDF mount: "
620 1.1 reinoud "hit NetBSD implementation fence on sector size\n");
621 1.1 reinoud return EIO;
622 1.6 christos }
623 1.1 reinoud
624 1.35.6.3 mjf /* temporary check to overcome sectorsize >= 8192 bytes panic */
625 1.35.6.3 mjf if (sector_size >= 8192) {
626 1.35.6.3 mjf printf("UDF mount: "
627 1.35.6.3 mjf "hit implementation limit, sectorsize to big\n");
628 1.35.6.3 mjf return EIO;
629 1.35.6.3 mjf }
630 1.35.6.3 mjf
631 1.35.6.1 mjf /*
632 1.35.6.1 mjf * Inspect if we're asked to mount read-write on a non recordable or
633 1.35.6.1 mjf * closed sequential disc.
634 1.35.6.1 mjf */
635 1.35.6.1 mjf if ((mp->mnt_flag & MNT_RDONLY) == 0) {
636 1.35.6.1 mjf if ((ump->discinfo.mmc_cur & MMC_CAP_RECORDABLE) == 0) {
637 1.35.6.1 mjf printf("UDF mount: disc is not recordable\n");
638 1.35.6.1 mjf return EROFS;
639 1.35.6.1 mjf }
640 1.35.6.5 mjf if (ump->discinfo.mmc_cur & MMC_CAP_SEQUENTIAL) {
641 1.35.6.5 mjf if (ump->discinfo.disc_state == MMC_STATE_FULL) {
642 1.35.6.5 mjf printf("UDF mount: disc is not appendable\n");
643 1.35.6.5 mjf return EROFS;
644 1.35.6.5 mjf }
645 1.35.6.5 mjf
646 1.35.6.5 mjf /*
647 1.35.6.5 mjf * TODO if the last session is closed check if there
648 1.35.6.5 mjf * is enough space to open/close new session
649 1.35.6.5 mjf */
650 1.35.6.5 mjf }
651 1.35.6.1 mjf }
652 1.35.6.1 mjf
653 1.35.6.1 mjf /* initialise bootstrap disc strategy */
654 1.35.6.1 mjf ump->strategy = &udf_strat_bootstrap;
655 1.35.6.1 mjf udf_discstrat_init(ump);
656 1.35.6.1 mjf
657 1.1 reinoud /* read all anchors to get volume descriptor sequence */
658 1.35.6.1 mjf num_anchors = udf_read_anchors(ump);
659 1.1 reinoud if (num_anchors == 0)
660 1.35.6.1 mjf return EINVAL;
661 1.1 reinoud
662 1.1 reinoud DPRINTF(VOLUMES, ("Read %d anchors on this disc, session %d\n",
663 1.1 reinoud num_anchors, args->sessionnr));
664 1.1 reinoud
665 1.1 reinoud /* read in volume descriptor sequence */
666 1.9 reinoud if ((error = udf_read_vds_space(ump))) {
667 1.1 reinoud printf("UDF mount: error reading volume space\n");
668 1.9 reinoud return error;
669 1.9 reinoud }
670 1.1 reinoud
671 1.35.6.1 mjf /* close down (direct) disc strategy */
672 1.35.6.1 mjf udf_discstrat_finish(ump);
673 1.35.6.1 mjf
674 1.1 reinoud /* check consistency and completeness */
675 1.35.6.1 mjf if ((error = udf_process_vds(ump))) {
676 1.19 reinoud printf( "UDF mount: disc not properly formatted"
677 1.19 reinoud "(bad VDS)\n");
678 1.9 reinoud return error;
679 1.6 christos }
680 1.1 reinoud
681 1.35.6.1 mjf /* switch to new disc strategy */
682 1.35.6.1 mjf KASSERT(ump->strategy != &udf_strat_bootstrap);
683 1.35.6.1 mjf udf_discstrat_init(ump);
684 1.35.6.1 mjf
685 1.35.6.1 mjf /* initialise late allocation administration space */
686 1.35.6.1 mjf ump->la_lmapping = malloc(sizeof(uint64_t) * UDF_MAX_MAPPINGS,
687 1.35.6.1 mjf M_TEMP, M_WAITOK);
688 1.35.6.1 mjf ump->la_pmapping = malloc(sizeof(uint64_t) * UDF_MAX_MAPPINGS,
689 1.35.6.1 mjf M_TEMP, M_WAITOK);
690 1.35.6.1 mjf
691 1.35.6.1 mjf /* setup node cleanup extents copy space */
692 1.1 reinoud lb_size = udf_rw32(ump->logical_vol->lb_size);
693 1.35.6.1 mjf ump->la_node_ad_cpy = malloc(lb_size * UDF_MAX_ALLOC_EXTENTS,
694 1.35.6.1 mjf M_UDFMNT, M_WAITOK);
695 1.35.6.1 mjf memset(ump->la_node_ad_cpy, 0, lb_size * UDF_MAX_ALLOC_EXTENTS);
696 1.35.6.1 mjf
697 1.35.6.1 mjf /* setup rest of mount information */
698 1.35.6.1 mjf mp->mnt_data = ump;
699 1.1 reinoud
700 1.35.6.1 mjf /* bshift is allways equal to disc sector size */
701 1.35.6.1 mjf mp->mnt_dev_bshift = bshift;
702 1.35.6.1 mjf mp->mnt_fs_bshift = bshift;
703 1.35.6.1 mjf
704 1.35.6.1 mjf /* note that the mp info needs to be initialised for reading! */
705 1.1 reinoud /* read vds support tables like VAT, sparable etc. */
706 1.35.6.1 mjf if ((error = udf_read_vds_tables(ump))) {
707 1.19 reinoud printf( "UDF mount: error in format or damaged disc "
708 1.19 reinoud "(VDS tables failing)\n");
709 1.9 reinoud return error;
710 1.6 christos }
711 1.9 reinoud
712 1.35.6.1 mjf /* check if volume integrity is closed otherwise its dirty */
713 1.35.6.1 mjf logvol_integrity = udf_rw32(ump->logvol_integrity->integrity_type);
714 1.35.6.1 mjf if (logvol_integrity != UDF_INTEGRITY_CLOSED) {
715 1.35.6.1 mjf printf("UDF mount: file system is not clean; ");
716 1.35.6.1 mjf printf("please fsck(8)\n");
717 1.35.6.1 mjf return EPERM;
718 1.35.6.1 mjf }
719 1.35.6.1 mjf
720 1.35.6.1 mjf /* read root directory */
721 1.35.6.1 mjf if ((error = udf_read_rootdirs(ump))) {
722 1.19 reinoud printf( "UDF mount: "
723 1.19 reinoud "disc not properly formatted or damaged disc "
724 1.19 reinoud "(rootdirs failing)\n");
725 1.1 reinoud return error;
726 1.9 reinoud }
727 1.1 reinoud
728 1.1 reinoud /* do we have to set this? */
729 1.1 reinoud devvp->v_specmountpoint = mp;
730 1.1 reinoud
731 1.1 reinoud /* success! */
732 1.1 reinoud return 0;
733 1.1 reinoud }
734 1.1 reinoud
735 1.1 reinoud /* --------------------------------------------------------------------- */
736 1.1 reinoud
737 1.1 reinoud int
738 1.31 pooka udf_start(struct mount *mp, int flags)
739 1.1 reinoud {
740 1.1 reinoud /* do we have to do something here? */
741 1.1 reinoud return 0;
742 1.1 reinoud }
743 1.1 reinoud
744 1.1 reinoud /* --------------------------------------------------------------------- */
745 1.1 reinoud
746 1.1 reinoud int
747 1.1 reinoud udf_root(struct mount *mp, struct vnode **vpp)
748 1.1 reinoud {
749 1.1 reinoud struct vnode *vp;
750 1.1 reinoud struct long_ad *dir_loc;
751 1.1 reinoud struct udf_mount *ump = VFSTOUDF(mp);
752 1.1 reinoud struct udf_node *root_dir;
753 1.1 reinoud int error;
754 1.1 reinoud
755 1.1 reinoud DPRINTF(CALL, ("udf_root called\n"));
756 1.1 reinoud
757 1.1 reinoud dir_loc = &ump->fileset_desc->rootdir_icb;
758 1.1 reinoud error = udf_get_node(ump, dir_loc, &root_dir);
759 1.1 reinoud
760 1.1 reinoud if (!root_dir)
761 1.1 reinoud error = ENOENT;
762 1.1 reinoud if (error)
763 1.1 reinoud return error;
764 1.1 reinoud
765 1.1 reinoud vp = root_dir->vnode;
766 1.35.6.5 mjf KASSERT(vp->v_vflag & VV_ROOT);
767 1.1 reinoud
768 1.1 reinoud *vpp = vp;
769 1.1 reinoud return 0;
770 1.1 reinoud }
771 1.1 reinoud
772 1.1 reinoud /* --------------------------------------------------------------------- */
773 1.1 reinoud
774 1.1 reinoud int
775 1.31 pooka udf_statvfs(struct mount *mp, struct statvfs *sbp)
776 1.1 reinoud {
777 1.1 reinoud struct udf_mount *ump = VFSTOUDF(mp);
778 1.1 reinoud struct logvol_int_desc *lvid;
779 1.1 reinoud struct udf_logvol_info *impl;
780 1.1 reinoud uint64_t freeblks, sizeblks;
781 1.1 reinoud uint32_t *pos1, *pos2;
782 1.1 reinoud int part, num_part;
783 1.1 reinoud
784 1.1 reinoud DPRINTF(CALL, ("udf_statvfs called\n"));
785 1.1 reinoud sbp->f_flag = mp->mnt_flag;
786 1.1 reinoud sbp->f_bsize = ump->discinfo.sector_size;
787 1.1 reinoud sbp->f_frsize = ump->discinfo.sector_size;
788 1.1 reinoud sbp->f_iosize = ump->discinfo.sector_size;
789 1.1 reinoud
790 1.35.6.1 mjf mutex_enter(&ump->allocate_mutex);
791 1.1 reinoud lvid = ump->logvol_integrity;
792 1.35.6.1 mjf freeblks = sizeblks = 0;
793 1.1 reinoud
794 1.35.6.1 mjf /* Sequentials report free space directly (CD/DVD/BD-R) */
795 1.35.6.1 mjf KASSERT(lvid);
796 1.35.6.1 mjf num_part = udf_rw32(lvid->num_part);
797 1.35.6.1 mjf impl = (struct udf_logvol_info *) (lvid->tables + 2*num_part);
798 1.35.6.1 mjf
799 1.35.6.1 mjf if (ump->discinfo.mmc_cur & MMC_CAP_SEQUENTIAL) {
800 1.35.6.1 mjf /* XXX assumption at most two tracks open */
801 1.35.6.1 mjf freeblks = ump->data_track.free_blocks;
802 1.35.6.1 mjf if (ump->data_track.tracknr != ump->metadata_track.tracknr)
803 1.35.6.1 mjf freeblks += ump->metadata_track.free_blocks;
804 1.35.6.1 mjf sizeblks = ump->discinfo.last_possible_lba;
805 1.35.6.1 mjf } else {
806 1.35.6.1 mjf /* free and used space for mountpoint based on logvol integrity */
807 1.1 reinoud for (part=0; part < num_part; part++) {
808 1.1 reinoud pos1 = &lvid->tables[0] + part;
809 1.1 reinoud pos2 = &lvid->tables[0] + num_part + part;
810 1.1 reinoud if (udf_rw32(*pos1) != (uint32_t) -1) {
811 1.1 reinoud freeblks += udf_rw32(*pos1);
812 1.1 reinoud sizeblks += udf_rw32(*pos2);
813 1.6 christos }
814 1.6 christos }
815 1.35.6.1 mjf }
816 1.35.6.1 mjf freeblks -= ump->uncomitted_lb;
817 1.35.6.1 mjf
818 1.35.6.1 mjf sbp->f_blocks = sizeblks;
819 1.35.6.1 mjf sbp->f_bfree = freeblks;
820 1.35.6.1 mjf sbp->f_files = 0;
821 1.35.6.1 mjf if (impl) {
822 1.1 reinoud sbp->f_files = udf_rw32(impl->num_files);
823 1.1 reinoud sbp->f_files += udf_rw32(impl->num_directories);
824 1.6 christos }
825 1.1 reinoud
826 1.35.6.1 mjf /* XXX read only for now XXX */
827 1.35.6.1 mjf sbp->f_bavail = 0;
828 1.35.6.1 mjf sbp->f_bresvd = 0;
829 1.35.6.1 mjf
830 1.35.6.1 mjf /* tricky, next only aplies to ffs i think, so set to zero */
831 1.35.6.1 mjf sbp->f_ffree = 0;
832 1.35.6.1 mjf sbp->f_favail = 0;
833 1.35.6.1 mjf sbp->f_fresvd = 0;
834 1.35.6.1 mjf
835 1.35.6.1 mjf mutex_exit(&ump->allocate_mutex);
836 1.35.6.1 mjf
837 1.1 reinoud copy_statvfs_info(sbp, mp);
838 1.1 reinoud return 0;
839 1.1 reinoud }
840 1.1 reinoud
841 1.1 reinoud /* --------------------------------------------------------------------- */
842 1.1 reinoud
843 1.35.6.1 mjf /*
844 1.35.6.1 mjf * TODO what about writing out free space maps, lvid etc? only on `waitfor'
845 1.35.6.1 mjf * i.e. explicit syncing by the user?
846 1.35.6.1 mjf */
847 1.35.6.1 mjf
848 1.35.6.3 mjf static int
849 1.35.6.3 mjf udf_sync_writeout_system_files(struct udf_mount *ump, int clearflags)
850 1.35.6.3 mjf {
851 1.35.6.3 mjf int error;
852 1.35.6.3 mjf
853 1.35.6.3 mjf /* XXX lock for VAT en bitmaps? */
854 1.35.6.3 mjf /* metadata nodes are written synchronous */
855 1.35.6.3 mjf DPRINTF(CALL, ("udf_sync: syncing metadata\n"));
856 1.35.6.3 mjf if (ump->lvclose & UDF_WRITE_VAT)
857 1.35.6.3 mjf udf_writeout_vat(ump);
858 1.35.6.3 mjf
859 1.35.6.3 mjf error = 0;
860 1.35.6.3 mjf if (ump->lvclose & UDF_WRITE_PART_BITMAPS) {
861 1.35.6.3 mjf /* writeout metadata spacetable if existing */
862 1.35.6.3 mjf error = udf_write_metadata_partition_spacetable(ump, MNT_WAIT);
863 1.35.6.3 mjf if (error)
864 1.35.6.3 mjf printf( "udf_writeout_system_files : "
865 1.35.6.3 mjf " writeout of metadata space bitmap failed\n");
866 1.35.6.3 mjf
867 1.35.6.3 mjf /* writeout partition spacetables */
868 1.35.6.3 mjf error = udf_write_physical_partition_spacetables(ump, MNT_WAIT);
869 1.35.6.3 mjf if (error)
870 1.35.6.3 mjf printf( "udf_writeout_system_files : "
871 1.35.6.3 mjf "writeout of space tables failed\n");
872 1.35.6.3 mjf if (!error && clearflags)
873 1.35.6.3 mjf ump->lvclose &= ~UDF_WRITE_PART_BITMAPS;
874 1.35.6.3 mjf }
875 1.35.6.3 mjf
876 1.35.6.3 mjf return error;
877 1.35.6.3 mjf }
878 1.35.6.3 mjf
879 1.35.6.3 mjf
880 1.1 reinoud int
881 1.35.6.1 mjf udf_sync(struct mount *mp, int waitfor, kauth_cred_t cred)
882 1.1 reinoud {
883 1.35.6.1 mjf struct udf_mount *ump = VFSTOUDF(mp);
884 1.35.6.1 mjf
885 1.1 reinoud DPRINTF(CALL, ("udf_sync called\n"));
886 1.35.6.1 mjf /* if called when mounted readonly, just ignore */
887 1.35.6.1 mjf if (mp->mnt_flag & MNT_RDONLY)
888 1.35.6.1 mjf return 0;
889 1.35.6.1 mjf
890 1.35.6.1 mjf if (ump->syncing && !waitfor) {
891 1.35.6.1 mjf printf("UDF: skipping autosync\n");
892 1.35.6.1 mjf return 0;
893 1.35.6.1 mjf }
894 1.35.6.1 mjf
895 1.35.6.1 mjf /* get sync lock */
896 1.35.6.1 mjf ump->syncing = 1;
897 1.35.6.1 mjf
898 1.35.6.3 mjf /* pre-sync */
899 1.35.6.1 mjf udf_do_sync(ump, cred, waitfor);
900 1.35.6.1 mjf
901 1.35.6.3 mjf if (waitfor == MNT_WAIT)
902 1.35.6.3 mjf udf_sync_writeout_system_files(ump, true);
903 1.35.6.1 mjf
904 1.35.6.1 mjf DPRINTF(CALL, ("end of udf_sync()\n"));
905 1.35.6.1 mjf ump->syncing = 0;
906 1.35.6.1 mjf
907 1.1 reinoud return 0;
908 1.1 reinoud }
909 1.1 reinoud
910 1.1 reinoud /* --------------------------------------------------------------------- */
911 1.1 reinoud
912 1.1 reinoud /*
913 1.1 reinoud * Get vnode for the file system type specific file id ino for the fs. Its
914 1.1 reinoud * used for reference to files by unique ID and for NFSv3.
915 1.1 reinoud * (optional) TODO lookup why some sources state NFSv3
916 1.1 reinoud */
917 1.1 reinoud int
918 1.18 christos udf_vget(struct mount *mp, ino_t ino,
919 1.18 christos struct vnode **vpp)
920 1.1 reinoud {
921 1.1 reinoud DPRINTF(NOTIMPL, ("udf_vget called\n"));
922 1.1 reinoud return EOPNOTSUPP;
923 1.1 reinoud }
924 1.1 reinoud
925 1.1 reinoud /* --------------------------------------------------------------------- */
926 1.1 reinoud
927 1.1 reinoud /*
928 1.1 reinoud * Lookup vnode for file handle specified
929 1.1 reinoud */
930 1.1 reinoud int
931 1.18 christos udf_fhtovp(struct mount *mp, struct fid *fhp,
932 1.18 christos struct vnode **vpp)
933 1.1 reinoud {
934 1.1 reinoud DPRINTF(NOTIMPL, ("udf_fhtovp called\n"));
935 1.1 reinoud return EOPNOTSUPP;
936 1.1 reinoud }
937 1.1 reinoud
938 1.1 reinoud /* --------------------------------------------------------------------- */
939 1.1 reinoud
940 1.1 reinoud /*
941 1.1 reinoud * Create an unique file handle. Its structure is opaque and won't be used by
942 1.1 reinoud * other subsystems. It should uniquely identify the file in the filingsystem
943 1.1 reinoud * and enough information to know if a file has been removed and/or resources
944 1.1 reinoud * have been recycled.
945 1.1 reinoud */
946 1.1 reinoud int
947 1.18 christos udf_vptofh(struct vnode *vp, struct fid *fid,
948 1.18 christos size_t *fh_size)
949 1.1 reinoud {
950 1.1 reinoud DPRINTF(NOTIMPL, ("udf_vptofh called\n"));
951 1.1 reinoud return EOPNOTSUPP;
952 1.1 reinoud }
953 1.1 reinoud
954 1.1 reinoud /* --------------------------------------------------------------------- */
955 1.1 reinoud
956 1.1 reinoud /*
957 1.1 reinoud * Create a filingsystem snapshot at the specified timestamp. Could be
958 1.1 reinoud * implemented by explicitly creating a new session or with spare room in the
959 1.1 reinoud * integrity descriptor space
960 1.1 reinoud */
961 1.1 reinoud int
962 1.18 christos udf_snapshot(struct mount *mp, struct vnode *vp,
963 1.18 christos struct timespec *tm)
964 1.1 reinoud {
965 1.1 reinoud DPRINTF(NOTIMPL, ("udf_snapshot called\n"));
966 1.1 reinoud return EOPNOTSUPP;
967 1.1 reinoud }
968 1.14 reinoud
969 1.14 reinoud /* --------------------------------------------------------------------- */
970