tmpfs_subr.c revision 1.43 1 1.43 ad /* $NetBSD: tmpfs_subr.c,v 1.43 2008/01/02 11:48:46 ad Exp $ */
2 1.1 jmmv
3 1.1 jmmv /*
4 1.43 ad * Copyright (c) 2005, 2006, 2007 The NetBSD Foundation, Inc.
5 1.1 jmmv * All rights reserved.
6 1.1 jmmv *
7 1.1 jmmv * This code is derived from software contributed to The NetBSD Foundation
8 1.8 jmmv * by Julio M. Merino Vidal, developed as part of Google's Summer of Code
9 1.8 jmmv * 2005 program.
10 1.1 jmmv *
11 1.1 jmmv * Redistribution and use in source and binary forms, with or without
12 1.1 jmmv * modification, are permitted provided that the following conditions
13 1.1 jmmv * are met:
14 1.1 jmmv * 1. Redistributions of source code must retain the above copyright
15 1.1 jmmv * notice, this list of conditions and the following disclaimer.
16 1.1 jmmv * 2. Redistributions in binary form must reproduce the above copyright
17 1.1 jmmv * notice, this list of conditions and the following disclaimer in the
18 1.1 jmmv * documentation and/or other materials provided with the distribution.
19 1.1 jmmv * 3. All advertising materials mentioning features or use of this software
20 1.1 jmmv * must display the following acknowledgement:
21 1.1 jmmv * This product includes software developed by the NetBSD
22 1.1 jmmv * Foundation, Inc. and its contributors.
23 1.1 jmmv * 4. Neither the name of The NetBSD Foundation nor the names of its
24 1.1 jmmv * contributors may be used to endorse or promote products derived
25 1.1 jmmv * from this software without specific prior written permission.
26 1.1 jmmv *
27 1.1 jmmv * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
28 1.1 jmmv * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
29 1.1 jmmv * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
30 1.1 jmmv * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
31 1.1 jmmv * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
32 1.1 jmmv * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
33 1.1 jmmv * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
34 1.1 jmmv * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
35 1.1 jmmv * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
36 1.1 jmmv * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
37 1.1 jmmv * POSSIBILITY OF SUCH DAMAGE.
38 1.1 jmmv */
39 1.1 jmmv
40 1.1 jmmv /*
41 1.2 jmmv * Efficient memory file system supporting functions.
42 1.1 jmmv */
43 1.1 jmmv
44 1.1 jmmv #include <sys/cdefs.h>
45 1.43 ad __KERNEL_RCSID(0, "$NetBSD: tmpfs_subr.c,v 1.43 2008/01/02 11:48:46 ad Exp $");
46 1.1 jmmv
47 1.1 jmmv #include <sys/param.h>
48 1.1 jmmv #include <sys/dirent.h>
49 1.1 jmmv #include <sys/event.h>
50 1.43 ad #include <sys/kmem.h>
51 1.1 jmmv #include <sys/mount.h>
52 1.1 jmmv #include <sys/namei.h>
53 1.1 jmmv #include <sys/time.h>
54 1.1 jmmv #include <sys/stat.h>
55 1.1 jmmv #include <sys/systm.h>
56 1.1 jmmv #include <sys/swap.h>
57 1.1 jmmv #include <sys/vnode.h>
58 1.20 christos #include <sys/kauth.h>
59 1.35 ad #include <sys/proc.h>
60 1.43 ad #include <sys/atomic.h>
61 1.1 jmmv
62 1.1 jmmv #include <uvm/uvm.h>
63 1.1 jmmv
64 1.1 jmmv #include <miscfs/specfs/specdev.h>
65 1.1 jmmv #include <fs/tmpfs/tmpfs.h>
66 1.1 jmmv #include <fs/tmpfs/tmpfs_fifoops.h>
67 1.1 jmmv #include <fs/tmpfs/tmpfs_specops.h>
68 1.1 jmmv #include <fs/tmpfs/tmpfs_vnops.h>
69 1.1 jmmv
70 1.1 jmmv /* --------------------------------------------------------------------- */
71 1.1 jmmv
72 1.8 jmmv /*
73 1.8 jmmv * Allocates a new node of type 'type' inside the 'tmp' mount point, with
74 1.8 jmmv * its owner set to 'uid', its group to 'gid' and its mode set to 'mode',
75 1.8 jmmv * using the credentials of the process 'p'.
76 1.8 jmmv *
77 1.8 jmmv * If the node type is set to 'VDIR', then the parent parameter must point
78 1.8 jmmv * to the parent directory of the node being created. It may only be NULL
79 1.8 jmmv * while allocating the root node.
80 1.8 jmmv *
81 1.8 jmmv * If the node type is set to 'VBLK' or 'VCHR', then the rdev parameter
82 1.8 jmmv * specifies the device the node represents.
83 1.8 jmmv *
84 1.8 jmmv * If the node type is set to 'VLNK', then the parameter target specifies
85 1.8 jmmv * the file name of the target file for the symbolic link that is being
86 1.8 jmmv * created.
87 1.8 jmmv *
88 1.8 jmmv * Note that new nodes are retrieved from the available list if it has
89 1.8 jmmv * items or, if it is empty, from the node pool as long as there is enough
90 1.8 jmmv * space to create them.
91 1.8 jmmv *
92 1.8 jmmv * Returns zero on success or an appropriate error code on failure.
93 1.8 jmmv */
94 1.1 jmmv int
95 1.1 jmmv tmpfs_alloc_node(struct tmpfs_mount *tmp, enum vtype type,
96 1.1 jmmv uid_t uid, gid_t gid, mode_t mode, struct tmpfs_node *parent,
97 1.42 pooka char *target, dev_t rdev, struct tmpfs_node **node)
98 1.1 jmmv {
99 1.1 jmmv struct tmpfs_node *nnode;
100 1.1 jmmv
101 1.2 jmmv /* If the root directory of the 'tmp' file system is not yet
102 1.1 jmmv * allocated, this must be the request to do it. */
103 1.1 jmmv KASSERT(IMPLIES(tmp->tm_root == NULL, parent == NULL && type == VDIR));
104 1.1 jmmv
105 1.1 jmmv KASSERT(IFF(type == VLNK, target != NULL));
106 1.1 jmmv KASSERT(IFF(type == VBLK || type == VCHR, rdev != VNOVAL));
107 1.1 jmmv
108 1.1 jmmv KASSERT(uid != VNOVAL && gid != VNOVAL && mode != VNOVAL);
109 1.1 jmmv
110 1.1 jmmv nnode = NULL;
111 1.43 ad if (atomic_inc_uint_nv(&tmp->tm_nodes_cnt) >= tmp->tm_nodes_max) {
112 1.43 ad atomic_dec_uint(&tmp->tm_nodes_cnt);
113 1.43 ad return ENOSPC;
114 1.43 ad }
115 1.1 jmmv
116 1.43 ad nnode = (struct tmpfs_node *)TMPFS_POOL_GET(&tmp->tm_node_pool, 0);
117 1.43 ad if (nnode == NULL) {
118 1.43 ad atomic_dec_uint(&tmp->tm_nodes_cnt);
119 1.43 ad return ENOSPC;
120 1.1 jmmv }
121 1.43 ad
122 1.43 ad /*
123 1.43 ad * XXX Where the pool is backed by a map larger than (4GB *
124 1.43 ad * sizeof(*nnode)), this may produce duplicate inode numbers
125 1.43 ad * for applications that do not understand 64-bit ino_t.
126 1.43 ad */
127 1.43 ad nnode->tn_id = (ino_t)((uintptr_t)nnode / sizeof(*nnode));
128 1.43 ad nnode->tn_gen = arc4random();
129 1.1 jmmv
130 1.1 jmmv /* Generic initialization. */
131 1.1 jmmv nnode->tn_type = type;
132 1.1 jmmv nnode->tn_size = 0;
133 1.1 jmmv nnode->tn_status = 0;
134 1.1 jmmv nnode->tn_flags = 0;
135 1.1 jmmv nnode->tn_links = 0;
136 1.21 kardel getnanotime(&nnode->tn_atime);
137 1.1 jmmv nnode->tn_birthtime = nnode->tn_ctime = nnode->tn_mtime =
138 1.1 jmmv nnode->tn_atime;
139 1.1 jmmv nnode->tn_uid = uid;
140 1.1 jmmv nnode->tn_gid = gid;
141 1.1 jmmv nnode->tn_mode = mode;
142 1.11 jmmv nnode->tn_lockf = NULL;
143 1.1 jmmv nnode->tn_vnode = NULL;
144 1.1 jmmv
145 1.1 jmmv /* Type-specific initialization. */
146 1.1 jmmv switch (nnode->tn_type) {
147 1.1 jmmv case VBLK:
148 1.1 jmmv case VCHR:
149 1.18 jmmv nnode->tn_spec.tn_dev.tn_rdev = rdev;
150 1.1 jmmv break;
151 1.1 jmmv
152 1.1 jmmv case VDIR:
153 1.18 jmmv TAILQ_INIT(&nnode->tn_spec.tn_dir.tn_dir);
154 1.18 jmmv nnode->tn_spec.tn_dir.tn_parent =
155 1.18 jmmv (parent == NULL) ? nnode : parent;
156 1.18 jmmv nnode->tn_spec.tn_dir.tn_readdir_lastn = 0;
157 1.18 jmmv nnode->tn_spec.tn_dir.tn_readdir_lastp = NULL;
158 1.1 jmmv nnode->tn_links++;
159 1.1 jmmv break;
160 1.1 jmmv
161 1.1 jmmv case VFIFO:
162 1.1 jmmv /* FALLTHROUGH */
163 1.1 jmmv case VSOCK:
164 1.1 jmmv break;
165 1.1 jmmv
166 1.1 jmmv case VLNK:
167 1.1 jmmv KASSERT(strlen(target) < MAXPATHLEN);
168 1.7 yamt nnode->tn_size = strlen(target);
169 1.18 jmmv nnode->tn_spec.tn_lnk.tn_link =
170 1.18 jmmv tmpfs_str_pool_get(&tmp->tm_str_pool, nnode->tn_size, 0);
171 1.18 jmmv if (nnode->tn_spec.tn_lnk.tn_link == NULL) {
172 1.43 ad atomic_dec_uint(&tmp->tm_nodes_cnt);
173 1.43 ad TMPFS_POOL_PUT(&tmp->tm_node_pool, nnode);
174 1.1 jmmv return ENOSPC;
175 1.1 jmmv }
176 1.18 jmmv memcpy(nnode->tn_spec.tn_lnk.tn_link, target, nnode->tn_size);
177 1.1 jmmv break;
178 1.1 jmmv
179 1.1 jmmv case VREG:
180 1.18 jmmv nnode->tn_spec.tn_reg.tn_aobj =
181 1.18 jmmv uao_create(INT32_MAX - PAGE_SIZE, 0);
182 1.18 jmmv nnode->tn_spec.tn_reg.tn_aobj_pages = 0;
183 1.1 jmmv break;
184 1.1 jmmv
185 1.1 jmmv default:
186 1.1 jmmv KASSERT(0);
187 1.1 jmmv }
188 1.1 jmmv
189 1.43 ad mutex_init(&nnode->tn_vlock, MUTEX_DEFAULT, IPL_NONE);
190 1.43 ad
191 1.43 ad mutex_enter(&tmp->tm_lock);
192 1.43 ad LIST_INSERT_HEAD(&tmp->tm_nodes, nnode, tn_entries);
193 1.43 ad mutex_exit(&tmp->tm_lock);
194 1.43 ad
195 1.1 jmmv *node = nnode;
196 1.1 jmmv return 0;
197 1.1 jmmv }
198 1.1 jmmv
199 1.1 jmmv /* --------------------------------------------------------------------- */
200 1.1 jmmv
201 1.8 jmmv /*
202 1.8 jmmv * Destroys the node pointed to by node from the file system 'tmp'.
203 1.8 jmmv * If the node does not belong to the given mount point, the results are
204 1.8 jmmv * unpredicted.
205 1.8 jmmv *
206 1.8 jmmv * If the node references a directory; no entries are allowed because
207 1.8 jmmv * their removal could need a recursive algorithm, something forbidden in
208 1.8 jmmv * kernel space. Furthermore, there is not need to provide such
209 1.8 jmmv * functionality (recursive removal) because the only primitives offered
210 1.8 jmmv * to the user are the removal of empty directories and the deletion of
211 1.8 jmmv * individual files.
212 1.8 jmmv *
213 1.8 jmmv * Note that nodes are not really deleted; in fact, when a node has been
214 1.8 jmmv * allocated, it cannot be deleted during the whole life of the file
215 1.8 jmmv * system. Instead, they are moved to the available list and remain there
216 1.8 jmmv * until reused.
217 1.8 jmmv */
218 1.1 jmmv void
219 1.1 jmmv tmpfs_free_node(struct tmpfs_mount *tmp, struct tmpfs_node *node)
220 1.1 jmmv {
221 1.43 ad
222 1.43 ad if (node->tn_type == VREG) {
223 1.43 ad atomic_add_int(&tmp->tm_pages_used,
224 1.43 ad -node->tn_spec.tn_reg.tn_aobj_pages);
225 1.43 ad }
226 1.43 ad atomic_dec_uint(&tmp->tm_nodes_cnt);
227 1.43 ad mutex_enter(&tmp->tm_lock);
228 1.43 ad LIST_REMOVE(node, tn_entries);
229 1.43 ad mutex_exit(&tmp->tm_lock);
230 1.1 jmmv
231 1.40 ad switch (node->tn_type) {
232 1.1 jmmv case VLNK:
233 1.18 jmmv tmpfs_str_pool_put(&tmp->tm_str_pool,
234 1.18 jmmv node->tn_spec.tn_lnk.tn_link, node->tn_size);
235 1.1 jmmv break;
236 1.1 jmmv
237 1.1 jmmv case VREG:
238 1.18 jmmv if (node->tn_spec.tn_reg.tn_aobj != NULL)
239 1.18 jmmv uao_detach(node->tn_spec.tn_reg.tn_aobj);
240 1.1 jmmv break;
241 1.1 jmmv
242 1.1 jmmv default:
243 1.1 jmmv break;
244 1.1 jmmv }
245 1.1 jmmv
246 1.43 ad mutex_destroy(&node->tn_vlock);
247 1.43 ad TMPFS_POOL_PUT(&tmp->tm_node_pool, node);
248 1.1 jmmv }
249 1.1 jmmv
250 1.1 jmmv /* --------------------------------------------------------------------- */
251 1.1 jmmv
252 1.8 jmmv /*
253 1.8 jmmv * Allocates a new directory entry for the node node with a name of name.
254 1.8 jmmv * The new directory entry is returned in *de.
255 1.8 jmmv *
256 1.8 jmmv * The link count of node is increased by one to reflect the new object
257 1.29 jmmv * referencing it. This takes care of notifying kqueue listeners about
258 1.29 jmmv * this change.
259 1.8 jmmv *
260 1.8 jmmv * Returns zero on success or an appropriate error code on failure.
261 1.8 jmmv */
262 1.1 jmmv int
263 1.1 jmmv tmpfs_alloc_dirent(struct tmpfs_mount *tmp, struct tmpfs_node *node,
264 1.1 jmmv const char *name, uint16_t len, struct tmpfs_dirent **de)
265 1.1 jmmv {
266 1.1 jmmv struct tmpfs_dirent *nde;
267 1.1 jmmv
268 1.1 jmmv nde = (struct tmpfs_dirent *)TMPFS_POOL_GET(&tmp->tm_dirent_pool, 0);
269 1.1 jmmv if (nde == NULL)
270 1.1 jmmv return ENOSPC;
271 1.1 jmmv
272 1.1 jmmv nde->td_name = tmpfs_str_pool_get(&tmp->tm_str_pool, len, 0);
273 1.1 jmmv if (nde->td_name == NULL) {
274 1.1 jmmv TMPFS_POOL_PUT(&tmp->tm_dirent_pool, nde);
275 1.1 jmmv return ENOSPC;
276 1.1 jmmv }
277 1.1 jmmv nde->td_namelen = len;
278 1.1 jmmv memcpy(nde->td_name, name, len);
279 1.1 jmmv nde->td_node = node;
280 1.1 jmmv
281 1.1 jmmv node->tn_links++;
282 1.29 jmmv if (node->tn_links > 1 && node->tn_vnode != NULL)
283 1.29 jmmv VN_KNOTE(node->tn_vnode, NOTE_LINK);
284 1.1 jmmv *de = nde;
285 1.1 jmmv
286 1.1 jmmv return 0;
287 1.1 jmmv }
288 1.1 jmmv
289 1.1 jmmv /* --------------------------------------------------------------------- */
290 1.1 jmmv
291 1.8 jmmv /*
292 1.8 jmmv * Frees a directory entry. It is the caller's responsibility to destroy
293 1.8 jmmv * the node referenced by it if needed.
294 1.8 jmmv *
295 1.8 jmmv * The link count of node is decreased by one to reflect the removal of an
296 1.8 jmmv * object that referenced it. This only happens if 'node_exists' is true;
297 1.8 jmmv * otherwise the function will not access the node referred to by the
298 1.8 jmmv * directory entry, as it may already have been released from the outside.
299 1.29 jmmv *
300 1.29 jmmv * Interested parties (kqueue) are notified of the link count change; note
301 1.29 jmmv * that this can include both the node pointed to by the directory entry
302 1.29 jmmv * as well as its parent.
303 1.8 jmmv */
304 1.1 jmmv void
305 1.1 jmmv tmpfs_free_dirent(struct tmpfs_mount *tmp, struct tmpfs_dirent *de,
306 1.33 thorpej bool node_exists)
307 1.1 jmmv {
308 1.1 jmmv if (node_exists) {
309 1.1 jmmv struct tmpfs_node *node;
310 1.1 jmmv
311 1.1 jmmv node = de->td_node;
312 1.1 jmmv
313 1.1 jmmv KASSERT(node->tn_links > 0);
314 1.1 jmmv node->tn_links--;
315 1.29 jmmv if (node->tn_vnode != NULL)
316 1.29 jmmv VN_KNOTE(node->tn_vnode, node->tn_links == 0 ?
317 1.29 jmmv NOTE_DELETE : NOTE_LINK);
318 1.29 jmmv if (node->tn_type == VDIR)
319 1.29 jmmv VN_KNOTE(node->tn_spec.tn_dir.tn_parent->tn_vnode,
320 1.29 jmmv NOTE_LINK);
321 1.1 jmmv }
322 1.1 jmmv
323 1.1 jmmv tmpfs_str_pool_put(&tmp->tm_str_pool, de->td_name, de->td_namelen);
324 1.1 jmmv TMPFS_POOL_PUT(&tmp->tm_dirent_pool, de);
325 1.1 jmmv }
326 1.1 jmmv
327 1.1 jmmv /* --------------------------------------------------------------------- */
328 1.1 jmmv
329 1.8 jmmv /*
330 1.8 jmmv * Allocates a new vnode for the node node or returns a new reference to
331 1.8 jmmv * an existing one if the node had already a vnode referencing it. The
332 1.8 jmmv * resulting locked vnode is returned in *vpp.
333 1.8 jmmv *
334 1.8 jmmv * Returns zero on success or an appropriate error code on failure.
335 1.8 jmmv */
336 1.1 jmmv int
337 1.1 jmmv tmpfs_alloc_vp(struct mount *mp, struct tmpfs_node *node, struct vnode **vpp)
338 1.1 jmmv {
339 1.1 jmmv int error;
340 1.1 jmmv struct vnode *nvp;
341 1.1 jmmv struct vnode *vp;
342 1.1 jmmv
343 1.43 ad /* If there is already a vnode, then lock it. */
344 1.43 ad for (;;) {
345 1.43 ad mutex_enter(&node->tn_vlock);
346 1.43 ad if ((vp = node->tn_vnode) != NULL) {
347 1.43 ad mutex_enter(&vp->v_interlock);
348 1.43 ad mutex_exit(&node->tn_vlock);
349 1.43 ad error = vget(vp, LK_EXCLUSIVE | LK_INTERLOCK);
350 1.43 ad if (error == ENOENT) {
351 1.43 ad /* vnode was reclaimed. */
352 1.43 ad continue;
353 1.43 ad }
354 1.43 ad *vpp = vp;
355 1.43 ad return error;
356 1.43 ad }
357 1.43 ad break;
358 1.1 jmmv }
359 1.1 jmmv
360 1.1 jmmv /* Get a new vnode and associate it with our node. */
361 1.1 jmmv error = getnewvnode(VT_TMPFS, mp, tmpfs_vnodeop_p, &vp);
362 1.43 ad if (error != 0) {
363 1.43 ad mutex_exit(&node->tn_vlock);
364 1.43 ad return error;
365 1.43 ad }
366 1.1 jmmv
367 1.1 jmmv error = vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
368 1.1 jmmv if (error != 0) {
369 1.43 ad mutex_exit(&node->tn_vlock);
370 1.1 jmmv ungetnewvnode(vp);
371 1.43 ad return error;
372 1.1 jmmv }
373 1.1 jmmv
374 1.1 jmmv vp->v_type = node->tn_type;
375 1.1 jmmv
376 1.1 jmmv /* Type-specific initialization. */
377 1.1 jmmv switch (node->tn_type) {
378 1.1 jmmv case VBLK:
379 1.1 jmmv /* FALLTHROUGH */
380 1.1 jmmv case VCHR:
381 1.1 jmmv vp->v_op = tmpfs_specop_p;
382 1.18 jmmv nvp = checkalias(vp, node->tn_spec.tn_dev.tn_rdev, mp);
383 1.1 jmmv if (nvp != NULL) {
384 1.1 jmmv /* Discard unneeded vnode, but save its inode. */
385 1.43 ad nvp->v_data = node;
386 1.1 jmmv
387 1.1 jmmv /* XXX spec_vnodeops has no locking, so we have to
388 1.1 jmmv * do it explicitly. */
389 1.38 ad vp->v_vflag &= ~VV_LOCKSWORK;
390 1.1 jmmv VOP_UNLOCK(vp, 0);
391 1.1 jmmv vp->v_op = spec_vnodeop_p;
392 1.1 jmmv vgone(vp);
393 1.1 jmmv
394 1.1 jmmv /* Reinitialize aliased node. */
395 1.1 jmmv vp = nvp;
396 1.1 jmmv error = vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
397 1.1 jmmv if (error != 0) {
398 1.43 ad mutex_exit(&node->tn_vlock);
399 1.43 ad return error;
400 1.1 jmmv }
401 1.1 jmmv }
402 1.1 jmmv break;
403 1.1 jmmv
404 1.1 jmmv case VDIR:
405 1.40 ad vp->v_vflag |= node->tn_spec.tn_dir.tn_parent == node ?
406 1.40 ad VV_ROOT : 0;
407 1.1 jmmv break;
408 1.1 jmmv
409 1.1 jmmv case VFIFO:
410 1.1 jmmv vp->v_op = tmpfs_fifoop_p;
411 1.1 jmmv break;
412 1.1 jmmv
413 1.1 jmmv case VLNK:
414 1.1 jmmv /* FALLTHROUGH */
415 1.1 jmmv case VREG:
416 1.1 jmmv /* FALLTHROUGH */
417 1.1 jmmv case VSOCK:
418 1.1 jmmv break;
419 1.1 jmmv
420 1.1 jmmv default:
421 1.1 jmmv KASSERT(0);
422 1.1 jmmv }
423 1.1 jmmv
424 1.1 jmmv uvm_vnp_setsize(vp, node->tn_size);
425 1.43 ad vp->v_data = node;
426 1.43 ad node->tn_vnode = vp;
427 1.43 ad mutex_exit(&node->tn_vlock);
428 1.43 ad *vpp = vp;
429 1.1 jmmv
430 1.1 jmmv KASSERT(IFF(error == 0, *vpp != NULL && VOP_ISLOCKED(*vpp)));
431 1.40 ad KASSERT(*vpp == node->tn_vnode);
432 1.1 jmmv
433 1.1 jmmv return error;
434 1.1 jmmv }
435 1.1 jmmv
436 1.1 jmmv /* --------------------------------------------------------------------- */
437 1.1 jmmv
438 1.8 jmmv /*
439 1.8 jmmv * Destroys the association between the vnode vp and the node it
440 1.8 jmmv * references.
441 1.8 jmmv */
442 1.1 jmmv void
443 1.1 jmmv tmpfs_free_vp(struct vnode *vp)
444 1.1 jmmv {
445 1.1 jmmv struct tmpfs_node *node;
446 1.1 jmmv
447 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
448 1.1 jmmv
449 1.43 ad mutex_enter(&node->tn_vlock);
450 1.1 jmmv node->tn_vnode = NULL;
451 1.43 ad mutex_exit(&node->tn_vlock);
452 1.1 jmmv vp->v_data = NULL;
453 1.1 jmmv }
454 1.1 jmmv
455 1.1 jmmv /* --------------------------------------------------------------------- */
456 1.1 jmmv
457 1.9 jmmv /*
458 1.9 jmmv * Allocates a new file of type 'type' and adds it to the parent directory
459 1.1 jmmv * 'dvp'; this addition is done using the component name given in 'cnp'.
460 1.1 jmmv * The ownership of the new file is automatically assigned based on the
461 1.1 jmmv * credentials of the caller (through 'cnp'), the group is set based on
462 1.1 jmmv * the parent directory and the mode is determined from the 'vap' argument.
463 1.1 jmmv * If successful, *vpp holds a vnode to the newly created file and zero
464 1.1 jmmv * is returned. Otherwise *vpp is NULL and the function returns an
465 1.9 jmmv * appropriate error code.
466 1.9 jmmv */
467 1.1 jmmv int
468 1.1 jmmv tmpfs_alloc_file(struct vnode *dvp, struct vnode **vpp, struct vattr *vap,
469 1.1 jmmv struct componentname *cnp, char *target)
470 1.1 jmmv {
471 1.1 jmmv int error;
472 1.1 jmmv struct tmpfs_dirent *de;
473 1.1 jmmv struct tmpfs_mount *tmp;
474 1.1 jmmv struct tmpfs_node *dnode;
475 1.1 jmmv struct tmpfs_node *node;
476 1.1 jmmv struct tmpfs_node *parent;
477 1.1 jmmv
478 1.1 jmmv KASSERT(VOP_ISLOCKED(dvp));
479 1.1 jmmv KASSERT(cnp->cn_flags & HASBUF);
480 1.1 jmmv
481 1.1 jmmv tmp = VFS_TO_TMPFS(dvp->v_mount);
482 1.1 jmmv dnode = VP_TO_TMPFS_DIR(dvp);
483 1.1 jmmv *vpp = NULL;
484 1.1 jmmv
485 1.1 jmmv /* If the entry we are creating is a directory, we cannot overflow
486 1.1 jmmv * the number of links of its parent, because it will get a new
487 1.1 jmmv * link. */
488 1.1 jmmv if (vap->va_type == VDIR) {
489 1.1 jmmv /* Ensure that we do not overflow the maximum number of links
490 1.1 jmmv * imposed by the system. */
491 1.1 jmmv KASSERT(dnode->tn_links <= LINK_MAX);
492 1.1 jmmv if (dnode->tn_links == LINK_MAX) {
493 1.1 jmmv error = EMLINK;
494 1.1 jmmv goto out;
495 1.1 jmmv }
496 1.1 jmmv
497 1.1 jmmv parent = dnode;
498 1.1 jmmv } else
499 1.1 jmmv parent = NULL;
500 1.1 jmmv
501 1.1 jmmv /* Allocate a node that represents the new file. */
502 1.19 elad error = tmpfs_alloc_node(tmp, vap->va_type, kauth_cred_geteuid(cnp->cn_cred),
503 1.42 pooka dnode->tn_gid, vap->va_mode, parent, target, vap->va_rdev, &node);
504 1.1 jmmv if (error != 0)
505 1.1 jmmv goto out;
506 1.1 jmmv
507 1.1 jmmv /* Allocate a directory entry that points to the new file. */
508 1.1 jmmv error = tmpfs_alloc_dirent(tmp, node, cnp->cn_nameptr, cnp->cn_namelen,
509 1.1 jmmv &de);
510 1.1 jmmv if (error != 0) {
511 1.1 jmmv tmpfs_free_node(tmp, node);
512 1.1 jmmv goto out;
513 1.1 jmmv }
514 1.1 jmmv
515 1.1 jmmv /* Allocate a vnode for the new file. */
516 1.1 jmmv error = tmpfs_alloc_vp(dvp->v_mount, node, vpp);
517 1.1 jmmv if (error != 0) {
518 1.34 thorpej tmpfs_free_dirent(tmp, de, true);
519 1.1 jmmv tmpfs_free_node(tmp, node);
520 1.1 jmmv goto out;
521 1.1 jmmv }
522 1.1 jmmv
523 1.1 jmmv /* Now that all required items are allocated, we can proceed to
524 1.1 jmmv * insert the new node into the directory, an operation that
525 1.1 jmmv * cannot fail. */
526 1.1 jmmv tmpfs_dir_attach(dvp, de);
527 1.43 ad if (vap->va_type == VDIR) {
528 1.43 ad VN_KNOTE(dvp, NOTE_LINK);
529 1.43 ad dnode->tn_links++;
530 1.43 ad KASSERT(dnode->tn_links <= LINK_MAX);
531 1.43 ad }
532 1.1 jmmv
533 1.1 jmmv out:
534 1.1 jmmv if (error != 0 || !(cnp->cn_flags & SAVESTART))
535 1.1 jmmv PNBUF_PUT(cnp->cn_pnbuf);
536 1.1 jmmv vput(dvp);
537 1.1 jmmv
538 1.1 jmmv KASSERT(IFF(error == 0, *vpp != NULL));
539 1.1 jmmv
540 1.1 jmmv return error;
541 1.1 jmmv }
542 1.1 jmmv
543 1.1 jmmv /* --------------------------------------------------------------------- */
544 1.1 jmmv
545 1.8 jmmv /*
546 1.8 jmmv * Attaches the directory entry de to the directory represented by vp.
547 1.8 jmmv * Note that this does not change the link count of the node pointed by
548 1.8 jmmv * the directory entry, as this is done by tmpfs_alloc_dirent.
549 1.29 jmmv *
550 1.29 jmmv * As the "parent" directory changes, interested parties are notified of
551 1.29 jmmv * a write to it.
552 1.8 jmmv */
553 1.1 jmmv void
554 1.1 jmmv tmpfs_dir_attach(struct vnode *vp, struct tmpfs_dirent *de)
555 1.1 jmmv {
556 1.1 jmmv struct tmpfs_node *dnode;
557 1.1 jmmv
558 1.1 jmmv dnode = VP_TO_TMPFS_DIR(vp);
559 1.1 jmmv
560 1.18 jmmv TAILQ_INSERT_TAIL(&dnode->tn_spec.tn_dir.tn_dir, de, td_entries);
561 1.1 jmmv dnode->tn_size += sizeof(struct tmpfs_dirent);
562 1.1 jmmv dnode->tn_status |= TMPFS_NODE_ACCESSED | TMPFS_NODE_CHANGED | \
563 1.1 jmmv TMPFS_NODE_MODIFIED;
564 1.1 jmmv uvm_vnp_setsize(vp, dnode->tn_size);
565 1.29 jmmv
566 1.29 jmmv VN_KNOTE(vp, NOTE_WRITE);
567 1.1 jmmv }
568 1.1 jmmv
569 1.1 jmmv /* --------------------------------------------------------------------- */
570 1.1 jmmv
571 1.8 jmmv /*
572 1.8 jmmv * Detaches the directory entry de from the directory represented by vp.
573 1.8 jmmv * Note that this does not change the link count of the node pointed by
574 1.8 jmmv * the directory entry, as this is done by tmpfs_free_dirent.
575 1.29 jmmv *
576 1.29 jmmv * As the "parent" directory changes, interested parties are notified of
577 1.29 jmmv * a write to it.
578 1.8 jmmv */
579 1.1 jmmv void
580 1.1 jmmv tmpfs_dir_detach(struct vnode *vp, struct tmpfs_dirent *de)
581 1.1 jmmv {
582 1.1 jmmv struct tmpfs_node *dnode;
583 1.1 jmmv
584 1.5 yamt KASSERT(VOP_ISLOCKED(vp));
585 1.5 yamt
586 1.1 jmmv dnode = VP_TO_TMPFS_DIR(vp);
587 1.1 jmmv
588 1.18 jmmv if (dnode->tn_spec.tn_dir.tn_readdir_lastp == de) {
589 1.18 jmmv dnode->tn_spec.tn_dir.tn_readdir_lastn = 0;
590 1.18 jmmv dnode->tn_spec.tn_dir.tn_readdir_lastp = NULL;
591 1.5 yamt }
592 1.5 yamt
593 1.18 jmmv TAILQ_REMOVE(&dnode->tn_spec.tn_dir.tn_dir, de, td_entries);
594 1.1 jmmv dnode->tn_size -= sizeof(struct tmpfs_dirent);
595 1.1 jmmv dnode->tn_status |= TMPFS_NODE_ACCESSED | TMPFS_NODE_CHANGED | \
596 1.1 jmmv TMPFS_NODE_MODIFIED;
597 1.1 jmmv uvm_vnp_setsize(vp, dnode->tn_size);
598 1.29 jmmv
599 1.29 jmmv VN_KNOTE(vp, NOTE_WRITE);
600 1.1 jmmv }
601 1.1 jmmv
602 1.1 jmmv /* --------------------------------------------------------------------- */
603 1.1 jmmv
604 1.8 jmmv /*
605 1.8 jmmv * Looks for a directory entry in the directory represented by node.
606 1.8 jmmv * 'cnp' describes the name of the entry to look for. Note that the .
607 1.8 jmmv * and .. components are not allowed as they do not physically exist
608 1.8 jmmv * within directories.
609 1.8 jmmv *
610 1.8 jmmv * Returns a pointer to the entry when found, otherwise NULL.
611 1.8 jmmv */
612 1.1 jmmv struct tmpfs_dirent *
613 1.1 jmmv tmpfs_dir_lookup(struct tmpfs_node *node, struct componentname *cnp)
614 1.1 jmmv {
615 1.40 ad bool found;
616 1.1 jmmv struct tmpfs_dirent *de;
617 1.1 jmmv
618 1.1 jmmv KASSERT(IMPLIES(cnp->cn_namelen == 1, cnp->cn_nameptr[0] != '.'));
619 1.1 jmmv KASSERT(IMPLIES(cnp->cn_namelen == 2, !(cnp->cn_nameptr[0] == '.' &&
620 1.1 jmmv cnp->cn_nameptr[1] == '.')));
621 1.1 jmmv TMPFS_VALIDATE_DIR(node);
622 1.1 jmmv
623 1.1 jmmv node->tn_status |= TMPFS_NODE_ACCESSED;
624 1.1 jmmv
625 1.40 ad found = 0;
626 1.18 jmmv TAILQ_FOREACH(de, &node->tn_spec.tn_dir.tn_dir, td_entries) {
627 1.1 jmmv KASSERT(cnp->cn_namelen < 0xffff);
628 1.1 jmmv if (de->td_namelen == (uint16_t)cnp->cn_namelen &&
629 1.40 ad memcmp(de->td_name, cnp->cn_nameptr, de->td_namelen) == 0) {
630 1.40 ad found = 1;
631 1.1 jmmv break;
632 1.40 ad }
633 1.1 jmmv }
634 1.1 jmmv
635 1.40 ad return found ? de : NULL;
636 1.1 jmmv }
637 1.1 jmmv
638 1.1 jmmv /* --------------------------------------------------------------------- */
639 1.1 jmmv
640 1.9 jmmv /*
641 1.9 jmmv * Helper function for tmpfs_readdir. Creates a '.' entry for the given
642 1.1 jmmv * directory and returns it in the uio space. The function returns 0
643 1.1 jmmv * on success, -1 if there was not enough space in the uio structure to
644 1.1 jmmv * hold the directory entry or an appropriate error code if another
645 1.9 jmmv * error happens.
646 1.9 jmmv */
647 1.1 jmmv int
648 1.1 jmmv tmpfs_dir_getdotdent(struct tmpfs_node *node, struct uio *uio)
649 1.1 jmmv {
650 1.1 jmmv int error;
651 1.37 rumble struct dirent *dentp;
652 1.1 jmmv
653 1.1 jmmv TMPFS_VALIDATE_DIR(node);
654 1.5 yamt KASSERT(uio->uio_offset == TMPFS_DIRCOOKIE_DOT);
655 1.1 jmmv
656 1.43 ad dentp = kmem_zalloc(sizeof(struct dirent), KM_SLEEP);
657 1.37 rumble
658 1.37 rumble dentp->d_fileno = node->tn_id;
659 1.37 rumble dentp->d_type = DT_DIR;
660 1.37 rumble dentp->d_namlen = 1;
661 1.37 rumble dentp->d_name[0] = '.';
662 1.37 rumble dentp->d_name[1] = '\0';
663 1.37 rumble dentp->d_reclen = _DIRENT_SIZE(dentp);
664 1.1 jmmv
665 1.37 rumble if (dentp->d_reclen > uio->uio_resid)
666 1.1 jmmv error = -1;
667 1.1 jmmv else {
668 1.37 rumble error = uiomove(dentp, dentp->d_reclen, uio);
669 1.1 jmmv if (error == 0)
670 1.5 yamt uio->uio_offset = TMPFS_DIRCOOKIE_DOTDOT;
671 1.1 jmmv }
672 1.1 jmmv
673 1.1 jmmv node->tn_status |= TMPFS_NODE_ACCESSED;
674 1.1 jmmv
675 1.43 ad kmem_free(dentp, sizeof(struct dirent));
676 1.1 jmmv return error;
677 1.1 jmmv }
678 1.1 jmmv
679 1.1 jmmv /* --------------------------------------------------------------------- */
680 1.1 jmmv
681 1.9 jmmv /*
682 1.9 jmmv * Helper function for tmpfs_readdir. Creates a '..' entry for the given
683 1.1 jmmv * directory and returns it in the uio space. The function returns 0
684 1.1 jmmv * on success, -1 if there was not enough space in the uio structure to
685 1.1 jmmv * hold the directory entry or an appropriate error code if another
686 1.9 jmmv * error happens.
687 1.9 jmmv */
688 1.1 jmmv int
689 1.1 jmmv tmpfs_dir_getdotdotdent(struct tmpfs_node *node, struct uio *uio)
690 1.1 jmmv {
691 1.1 jmmv int error;
692 1.37 rumble struct dirent *dentp;
693 1.1 jmmv
694 1.1 jmmv TMPFS_VALIDATE_DIR(node);
695 1.5 yamt KASSERT(uio->uio_offset == TMPFS_DIRCOOKIE_DOTDOT);
696 1.1 jmmv
697 1.43 ad dentp = kmem_zalloc(sizeof(struct dirent), KM_SLEEP);
698 1.37 rumble
699 1.37 rumble dentp->d_fileno = node->tn_spec.tn_dir.tn_parent->tn_id;
700 1.37 rumble dentp->d_type = DT_DIR;
701 1.37 rumble dentp->d_namlen = 2;
702 1.37 rumble dentp->d_name[0] = '.';
703 1.37 rumble dentp->d_name[1] = '.';
704 1.37 rumble dentp->d_name[2] = '\0';
705 1.37 rumble dentp->d_reclen = _DIRENT_SIZE(dentp);
706 1.1 jmmv
707 1.37 rumble if (dentp->d_reclen > uio->uio_resid)
708 1.1 jmmv error = -1;
709 1.1 jmmv else {
710 1.37 rumble error = uiomove(dentp, dentp->d_reclen, uio);
711 1.5 yamt if (error == 0) {
712 1.5 yamt struct tmpfs_dirent *de;
713 1.5 yamt
714 1.18 jmmv de = TAILQ_FIRST(&node->tn_spec.tn_dir.tn_dir);
715 1.5 yamt if (de == NULL)
716 1.5 yamt uio->uio_offset = TMPFS_DIRCOOKIE_EOF;
717 1.5 yamt else
718 1.27 jmmv uio->uio_offset = tmpfs_dircookie(de);
719 1.5 yamt }
720 1.1 jmmv }
721 1.1 jmmv
722 1.1 jmmv node->tn_status |= TMPFS_NODE_ACCESSED;
723 1.1 jmmv
724 1.43 ad kmem_free(dentp, sizeof(struct dirent));
725 1.1 jmmv return error;
726 1.1 jmmv }
727 1.1 jmmv
728 1.1 jmmv /* --------------------------------------------------------------------- */
729 1.1 jmmv
730 1.9 jmmv /*
731 1.9 jmmv * Lookup a directory entry by its associated cookie.
732 1.9 jmmv */
733 1.5 yamt struct tmpfs_dirent *
734 1.5 yamt tmpfs_dir_lookupbycookie(struct tmpfs_node *node, off_t cookie)
735 1.5 yamt {
736 1.5 yamt struct tmpfs_dirent *de;
737 1.5 yamt
738 1.18 jmmv if (cookie == node->tn_spec.tn_dir.tn_readdir_lastn &&
739 1.18 jmmv node->tn_spec.tn_dir.tn_readdir_lastp != NULL) {
740 1.18 jmmv return node->tn_spec.tn_dir.tn_readdir_lastp;
741 1.5 yamt }
742 1.5 yamt
743 1.18 jmmv TAILQ_FOREACH(de, &node->tn_spec.tn_dir.tn_dir, td_entries) {
744 1.27 jmmv if (tmpfs_dircookie(de) == cookie) {
745 1.5 yamt break;
746 1.5 yamt }
747 1.5 yamt }
748 1.5 yamt
749 1.5 yamt return de;
750 1.5 yamt }
751 1.5 yamt
752 1.5 yamt /* --------------------------------------------------------------------- */
753 1.5 yamt
754 1.9 jmmv /*
755 1.9 jmmv * Helper function for tmpfs_readdir. Returns as much directory entries
756 1.1 jmmv * as can fit in the uio space. The read starts at uio->uio_offset.
757 1.1 jmmv * The function returns 0 on success, -1 if there was not enough space
758 1.1 jmmv * in the uio structure to hold the directory entry or an appropriate
759 1.9 jmmv * error code if another error happens.
760 1.9 jmmv */
761 1.1 jmmv int
762 1.5 yamt tmpfs_dir_getdents(struct tmpfs_node *node, struct uio *uio, off_t *cntp)
763 1.1 jmmv {
764 1.1 jmmv int error;
765 1.5 yamt off_t startcookie;
766 1.37 rumble struct dirent *dentp;
767 1.1 jmmv struct tmpfs_dirent *de;
768 1.1 jmmv
769 1.1 jmmv TMPFS_VALIDATE_DIR(node);
770 1.1 jmmv
771 1.1 jmmv /* Locate the first directory entry we have to return. We have cached
772 1.1 jmmv * the last readdir in the node, so use those values if appropriate.
773 1.1 jmmv * Otherwise do a linear scan to find the requested entry. */
774 1.5 yamt startcookie = uio->uio_offset;
775 1.5 yamt KASSERT(startcookie != TMPFS_DIRCOOKIE_DOT);
776 1.5 yamt KASSERT(startcookie != TMPFS_DIRCOOKIE_DOTDOT);
777 1.5 yamt if (startcookie == TMPFS_DIRCOOKIE_EOF) {
778 1.5 yamt return 0;
779 1.1 jmmv } else {
780 1.5 yamt de = tmpfs_dir_lookupbycookie(node, startcookie);
781 1.5 yamt }
782 1.5 yamt if (de == NULL) {
783 1.5 yamt return EINVAL;
784 1.1 jmmv }
785 1.1 jmmv
786 1.43 ad dentp = kmem_zalloc(sizeof(struct dirent), KM_SLEEP);
787 1.37 rumble
788 1.1 jmmv /* Read as much entries as possible; i.e., until we reach the end of
789 1.1 jmmv * the directory or we exhaust uio space. */
790 1.1 jmmv do {
791 1.1 jmmv /* Create a dirent structure representing the current
792 1.1 jmmv * tmpfs_node and fill it. */
793 1.37 rumble dentp->d_fileno = de->td_node->tn_id;
794 1.1 jmmv switch (de->td_node->tn_type) {
795 1.1 jmmv case VBLK:
796 1.37 rumble dentp->d_type = DT_BLK;
797 1.1 jmmv break;
798 1.1 jmmv
799 1.1 jmmv case VCHR:
800 1.37 rumble dentp->d_type = DT_CHR;
801 1.1 jmmv break;
802 1.1 jmmv
803 1.1 jmmv case VDIR:
804 1.37 rumble dentp->d_type = DT_DIR;
805 1.1 jmmv break;
806 1.1 jmmv
807 1.1 jmmv case VFIFO:
808 1.37 rumble dentp->d_type = DT_FIFO;
809 1.1 jmmv break;
810 1.1 jmmv
811 1.1 jmmv case VLNK:
812 1.37 rumble dentp->d_type = DT_LNK;
813 1.1 jmmv break;
814 1.1 jmmv
815 1.1 jmmv case VREG:
816 1.37 rumble dentp->d_type = DT_REG;
817 1.1 jmmv break;
818 1.1 jmmv
819 1.1 jmmv case VSOCK:
820 1.37 rumble dentp->d_type = DT_SOCK;
821 1.1 jmmv break;
822 1.1 jmmv
823 1.1 jmmv default:
824 1.1 jmmv KASSERT(0);
825 1.1 jmmv }
826 1.37 rumble dentp->d_namlen = de->td_namelen;
827 1.37 rumble KASSERT(de->td_namelen < sizeof(dentp->d_name));
828 1.37 rumble (void)memcpy(dentp->d_name, de->td_name, de->td_namelen);
829 1.37 rumble dentp->d_name[de->td_namelen] = '\0';
830 1.37 rumble dentp->d_reclen = _DIRENT_SIZE(dentp);
831 1.1 jmmv
832 1.1 jmmv /* Stop reading if the directory entry we are treating is
833 1.1 jmmv * bigger than the amount of data that can be returned. */
834 1.37 rumble if (dentp->d_reclen > uio->uio_resid) {
835 1.1 jmmv error = -1;
836 1.1 jmmv break;
837 1.1 jmmv }
838 1.1 jmmv
839 1.1 jmmv /* Copy the new dirent structure into the output buffer and
840 1.1 jmmv * advance pointers. */
841 1.37 rumble error = uiomove(dentp, dentp->d_reclen, uio);
842 1.1 jmmv
843 1.5 yamt (*cntp)++;
844 1.1 jmmv de = TAILQ_NEXT(de, td_entries);
845 1.1 jmmv } while (error == 0 && uio->uio_resid > 0 && de != NULL);
846 1.1 jmmv
847 1.5 yamt /* Update the offset and cache. */
848 1.1 jmmv if (de == NULL) {
849 1.5 yamt uio->uio_offset = TMPFS_DIRCOOKIE_EOF;
850 1.18 jmmv node->tn_spec.tn_dir.tn_readdir_lastn = 0;
851 1.18 jmmv node->tn_spec.tn_dir.tn_readdir_lastp = NULL;
852 1.1 jmmv } else {
853 1.18 jmmv node->tn_spec.tn_dir.tn_readdir_lastn = uio->uio_offset =
854 1.27 jmmv tmpfs_dircookie(de);
855 1.18 jmmv node->tn_spec.tn_dir.tn_readdir_lastp = de;
856 1.1 jmmv }
857 1.1 jmmv
858 1.1 jmmv node->tn_status |= TMPFS_NODE_ACCESSED;
859 1.1 jmmv
860 1.43 ad kmem_free(dentp, sizeof(struct dirent));
861 1.1 jmmv return error;
862 1.1 jmmv }
863 1.1 jmmv
864 1.1 jmmv /* --------------------------------------------------------------------- */
865 1.1 jmmv
866 1.8 jmmv /*
867 1.8 jmmv * Resizes the aobj associated to the regular file pointed to by vp to
868 1.8 jmmv * the size newsize. 'vp' must point to a vnode that represents a regular
869 1.8 jmmv * file. 'newsize' must be positive.
870 1.8 jmmv *
871 1.29 jmmv * If the file is extended, the appropriate kevent is raised. This does
872 1.29 jmmv * not rise a write event though because resizing is not the same as
873 1.29 jmmv * writing.
874 1.29 jmmv *
875 1.8 jmmv * Returns zero on success or an appropriate error code on failure.
876 1.8 jmmv */
877 1.1 jmmv int
878 1.1 jmmv tmpfs_reg_resize(struct vnode *vp, off_t newsize)
879 1.1 jmmv {
880 1.1 jmmv int error;
881 1.43 ad u_int newpages, oldpages;
882 1.1 jmmv struct tmpfs_mount *tmp;
883 1.1 jmmv struct tmpfs_node *node;
884 1.13 yamt off_t oldsize;
885 1.1 jmmv
886 1.1 jmmv KASSERT(vp->v_type == VREG);
887 1.1 jmmv KASSERT(newsize >= 0);
888 1.1 jmmv
889 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
890 1.1 jmmv tmp = VFS_TO_TMPFS(vp->v_mount);
891 1.1 jmmv
892 1.1 jmmv /* Convert the old and new sizes to the number of pages needed to
893 1.1 jmmv * store them. It may happen that we do not need to do anything
894 1.1 jmmv * because the last allocated page can accommodate the change on
895 1.1 jmmv * its own. */
896 1.13 yamt oldsize = node->tn_size;
897 1.13 yamt oldpages = round_page(oldsize) / PAGE_SIZE;
898 1.18 jmmv KASSERT(oldpages == node->tn_spec.tn_reg.tn_aobj_pages);
899 1.1 jmmv newpages = round_page(newsize) / PAGE_SIZE;
900 1.1 jmmv
901 1.1 jmmv if (newpages > oldpages &&
902 1.43 ad (ssize_t)(newpages - oldpages) > TMPFS_PAGES_AVAIL(tmp)) {
903 1.1 jmmv error = ENOSPC;
904 1.1 jmmv goto out;
905 1.1 jmmv }
906 1.43 ad atomic_add_int(&tmp->tm_pages_used, newpages - oldpages);
907 1.1 jmmv
908 1.13 yamt if (newsize < oldsize) {
909 1.13 yamt int zerolen = MIN(round_page(newsize), node->tn_size) - newsize;
910 1.13 yamt
911 1.13 yamt /*
912 1.13 yamt * zero out the truncated part of the last page.
913 1.13 yamt */
914 1.13 yamt
915 1.13 yamt uvm_vnp_zerorange(vp, newsize, zerolen);
916 1.13 yamt }
917 1.1 jmmv
918 1.36 pooka node->tn_spec.tn_reg.tn_aobj_pages = newpages;
919 1.36 pooka node->tn_size = newsize;
920 1.36 pooka uvm_vnp_setsize(vp, newsize);
921 1.36 pooka
922 1.43 ad /*
923 1.43 ad * free "backing store"
924 1.43 ad */
925 1.43 ad
926 1.43 ad if (newpages < oldpages) {
927 1.43 ad struct uvm_object *uobj;
928 1.43 ad
929 1.43 ad uobj = node->tn_spec.tn_reg.tn_aobj;
930 1.43 ad
931 1.43 ad mutex_enter(&uobj->vmobjlock);
932 1.43 ad uao_dropswap_range(uobj, newpages, oldpages);
933 1.43 ad mutex_exit(&uobj->vmobjlock);
934 1.43 ad }
935 1.40 ad
936 1.1 jmmv error = 0;
937 1.1 jmmv
938 1.29 jmmv if (newsize > oldsize)
939 1.29 jmmv VN_KNOTE(vp, NOTE_EXTEND);
940 1.29 jmmv
941 1.1 jmmv out:
942 1.1 jmmv return error;
943 1.1 jmmv }
944 1.1 jmmv
945 1.1 jmmv /* --------------------------------------------------------------------- */
946 1.1 jmmv
947 1.9 jmmv /*
948 1.9 jmmv * Returns information about the number of available memory pages,
949 1.1 jmmv * including physical and virtual ones.
950 1.1 jmmv *
951 1.34 thorpej * If 'total' is true, the value returned is the total amount of memory
952 1.1 jmmv * pages configured for the system (either in use or free).
953 1.1 jmmv * If it is FALSE, the value returned is the amount of free memory pages.
954 1.1 jmmv *
955 1.1 jmmv * Remember to remove TMPFS_PAGES_RESERVED from the returned value to avoid
956 1.1 jmmv * excessive memory usage.
957 1.1 jmmv *
958 1.9 jmmv */
959 1.1 jmmv size_t
960 1.33 thorpej tmpfs_mem_info(bool total)
961 1.1 jmmv {
962 1.1 jmmv size_t size;
963 1.1 jmmv
964 1.1 jmmv size = 0;
965 1.15 dan size += uvmexp.swpgavail;
966 1.15 dan if (!total) {
967 1.15 dan size -= uvmexp.swpgonly;
968 1.1 jmmv }
969 1.1 jmmv size += uvmexp.free;
970 1.16 dan size += uvmexp.filepages;
971 1.16 dan if (size > uvmexp.wired) {
972 1.16 dan size -= uvmexp.wired;
973 1.16 dan } else {
974 1.16 dan size = 0;
975 1.16 dan }
976 1.1 jmmv
977 1.1 jmmv return size;
978 1.1 jmmv }
979 1.1 jmmv
980 1.1 jmmv /* --------------------------------------------------------------------- */
981 1.1 jmmv
982 1.9 jmmv /*
983 1.9 jmmv * Change flags of the given vnode.
984 1.12 yamt * Caller should execute tmpfs_update on vp after a successful execution.
985 1.9 jmmv * The vnode must be locked on entry and remain locked on exit.
986 1.9 jmmv */
987 1.1 jmmv int
988 1.22 ad tmpfs_chflags(struct vnode *vp, int flags, kauth_cred_t cred, struct lwp *l)
989 1.1 jmmv {
990 1.1 jmmv int error;
991 1.1 jmmv struct tmpfs_node *node;
992 1.1 jmmv
993 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
994 1.1 jmmv
995 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
996 1.1 jmmv
997 1.1 jmmv /* Disallow this operation if the file system is mounted read-only. */
998 1.1 jmmv if (vp->v_mount->mnt_flag & MNT_RDONLY)
999 1.1 jmmv return EROFS;
1000 1.1 jmmv
1001 1.1 jmmv /* XXX: The following comes from UFS code, and can be found in
1002 1.1 jmmv * several other file systems. Shouldn't this be centralized
1003 1.1 jmmv * somewhere? */
1004 1.19 elad if (kauth_cred_geteuid(cred) != node->tn_uid &&
1005 1.19 elad (error = kauth_authorize_generic(cred, KAUTH_GENERIC_ISSUSER,
1006 1.32 elad NULL)))
1007 1.1 jmmv return error;
1008 1.32 elad if (kauth_authorize_generic(cred, KAUTH_GENERIC_ISSUSER, NULL) == 0) {
1009 1.1 jmmv /* The super-user is only allowed to change flags if the file
1010 1.1 jmmv * wasn't protected before and the securelevel is zero. */
1011 1.1 jmmv if ((node->tn_flags & (SF_IMMUTABLE | SF_APPEND)) &&
1012 1.31 elad kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_CHSYSFLAGS,
1013 1.31 elad 0, NULL, NULL, NULL))
1014 1.1 jmmv return EPERM;
1015 1.1 jmmv node->tn_flags = flags;
1016 1.1 jmmv } else {
1017 1.1 jmmv /* Regular users can change flags provided they only want to
1018 1.1 jmmv * change user-specific ones, not those reserved for the
1019 1.1 jmmv * super-user. */
1020 1.1 jmmv if ((node->tn_flags & (SF_IMMUTABLE | SF_APPEND)) ||
1021 1.1 jmmv (flags & UF_SETTABLE) != flags)
1022 1.1 jmmv return EPERM;
1023 1.1 jmmv if ((node->tn_flags & SF_SETTABLE) != (flags & SF_SETTABLE))
1024 1.1 jmmv return EPERM;
1025 1.1 jmmv node->tn_flags &= SF_SETTABLE;
1026 1.1 jmmv node->tn_flags |= (flags & UF_SETTABLE);
1027 1.1 jmmv }
1028 1.1 jmmv
1029 1.1 jmmv node->tn_status |= TMPFS_NODE_CHANGED;
1030 1.1 jmmv VN_KNOTE(vp, NOTE_ATTRIB);
1031 1.1 jmmv
1032 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1033 1.1 jmmv
1034 1.1 jmmv return 0;
1035 1.1 jmmv }
1036 1.1 jmmv
1037 1.1 jmmv /* --------------------------------------------------------------------- */
1038 1.1 jmmv
1039 1.9 jmmv /*
1040 1.9 jmmv * Change access mode on the given vnode.
1041 1.12 yamt * Caller should execute tmpfs_update on vp after a successful execution.
1042 1.9 jmmv * The vnode must be locked on entry and remain locked on exit.
1043 1.9 jmmv */
1044 1.1 jmmv int
1045 1.22 ad tmpfs_chmod(struct vnode *vp, mode_t mode, kauth_cred_t cred, struct lwp *l)
1046 1.1 jmmv {
1047 1.19 elad int error, ismember = 0;
1048 1.1 jmmv struct tmpfs_node *node;
1049 1.1 jmmv
1050 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1051 1.1 jmmv
1052 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
1053 1.1 jmmv
1054 1.1 jmmv /* Disallow this operation if the file system is mounted read-only. */
1055 1.1 jmmv if (vp->v_mount->mnt_flag & MNT_RDONLY)
1056 1.1 jmmv return EROFS;
1057 1.1 jmmv
1058 1.1 jmmv /* Immutable or append-only files cannot be modified, either. */
1059 1.1 jmmv if (node->tn_flags & (IMMUTABLE | APPEND))
1060 1.1 jmmv return EPERM;
1061 1.1 jmmv
1062 1.1 jmmv /* XXX: The following comes from UFS code, and can be found in
1063 1.1 jmmv * several other file systems. Shouldn't this be centralized
1064 1.1 jmmv * somewhere? */
1065 1.19 elad if (kauth_cred_geteuid(cred) != node->tn_uid &&
1066 1.19 elad (error = kauth_authorize_generic(cred, KAUTH_GENERIC_ISSUSER,
1067 1.32 elad NULL)))
1068 1.1 jmmv return error;
1069 1.32 elad if (kauth_authorize_generic(cred, KAUTH_GENERIC_ISSUSER, NULL) != 0) {
1070 1.1 jmmv if (vp->v_type != VDIR && (mode & S_ISTXT))
1071 1.1 jmmv return EFTYPE;
1072 1.1 jmmv
1073 1.19 elad if ((kauth_cred_ismember_gid(cred, node->tn_gid,
1074 1.19 elad &ismember) != 0 || !ismember) && (mode & S_ISGID))
1075 1.1 jmmv return EPERM;
1076 1.1 jmmv }
1077 1.1 jmmv
1078 1.1 jmmv node->tn_mode = (mode & ALLPERMS);
1079 1.1 jmmv
1080 1.1 jmmv node->tn_status |= TMPFS_NODE_CHANGED;
1081 1.1 jmmv VN_KNOTE(vp, NOTE_ATTRIB);
1082 1.1 jmmv
1083 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1084 1.1 jmmv
1085 1.1 jmmv return 0;
1086 1.1 jmmv }
1087 1.1 jmmv
1088 1.1 jmmv /* --------------------------------------------------------------------- */
1089 1.1 jmmv
1090 1.9 jmmv /*
1091 1.9 jmmv * Change ownership of the given vnode. At least one of uid or gid must
1092 1.1 jmmv * be different than VNOVAL. If one is set to that value, the attribute
1093 1.1 jmmv * is unchanged.
1094 1.12 yamt * Caller should execute tmpfs_update on vp after a successful execution.
1095 1.9 jmmv * The vnode must be locked on entry and remain locked on exit.
1096 1.9 jmmv */
1097 1.1 jmmv int
1098 1.19 elad tmpfs_chown(struct vnode *vp, uid_t uid, gid_t gid, kauth_cred_t cred,
1099 1.22 ad struct lwp *l)
1100 1.1 jmmv {
1101 1.19 elad int error, ismember = 0;
1102 1.1 jmmv struct tmpfs_node *node;
1103 1.1 jmmv
1104 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1105 1.1 jmmv
1106 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
1107 1.1 jmmv
1108 1.1 jmmv /* Assign default values if they are unknown. */
1109 1.1 jmmv KASSERT(uid != VNOVAL || gid != VNOVAL);
1110 1.1 jmmv if (uid == VNOVAL)
1111 1.1 jmmv uid = node->tn_uid;
1112 1.1 jmmv if (gid == VNOVAL)
1113 1.1 jmmv gid = node->tn_gid;
1114 1.1 jmmv KASSERT(uid != VNOVAL && gid != VNOVAL);
1115 1.1 jmmv
1116 1.1 jmmv /* Disallow this operation if the file system is mounted read-only. */
1117 1.1 jmmv if (vp->v_mount->mnt_flag & MNT_RDONLY)
1118 1.1 jmmv return EROFS;
1119 1.1 jmmv
1120 1.1 jmmv /* Immutable or append-only files cannot be modified, either. */
1121 1.1 jmmv if (node->tn_flags & (IMMUTABLE | APPEND))
1122 1.1 jmmv return EPERM;
1123 1.1 jmmv
1124 1.1 jmmv /* XXX: The following comes from UFS code, and can be found in
1125 1.1 jmmv * several other file systems. Shouldn't this be centralized
1126 1.1 jmmv * somewhere? */
1127 1.19 elad if ((kauth_cred_geteuid(cred) != node->tn_uid || uid != node->tn_uid ||
1128 1.19 elad (gid != node->tn_gid && !(kauth_cred_getegid(cred) == node->tn_gid ||
1129 1.22 ad (kauth_cred_ismember_gid(cred, gid, &ismember) == 0 && ismember)))) &&
1130 1.19 elad ((error = kauth_authorize_generic(cred, KAUTH_GENERIC_ISSUSER,
1131 1.32 elad NULL)) != 0))
1132 1.1 jmmv return error;
1133 1.1 jmmv
1134 1.1 jmmv node->tn_uid = uid;
1135 1.1 jmmv node->tn_gid = gid;
1136 1.1 jmmv
1137 1.1 jmmv node->tn_status |= TMPFS_NODE_CHANGED;
1138 1.1 jmmv VN_KNOTE(vp, NOTE_ATTRIB);
1139 1.1 jmmv
1140 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1141 1.1 jmmv
1142 1.1 jmmv return 0;
1143 1.1 jmmv }
1144 1.1 jmmv
1145 1.1 jmmv /* --------------------------------------------------------------------- */
1146 1.1 jmmv
1147 1.9 jmmv /*
1148 1.9 jmmv * Change size of the given vnode.
1149 1.12 yamt * Caller should execute tmpfs_update on vp after a successful execution.
1150 1.9 jmmv * The vnode must be locked on entry and remain locked on exit.
1151 1.9 jmmv */
1152 1.1 jmmv int
1153 1.30 christos tmpfs_chsize(struct vnode *vp, u_quad_t size, kauth_cred_t cred,
1154 1.30 christos struct lwp *l)
1155 1.1 jmmv {
1156 1.1 jmmv int error;
1157 1.1 jmmv struct tmpfs_node *node;
1158 1.1 jmmv
1159 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1160 1.1 jmmv
1161 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
1162 1.1 jmmv
1163 1.1 jmmv /* Decide whether this is a valid operation based on the file type. */
1164 1.1 jmmv error = 0;
1165 1.1 jmmv switch (vp->v_type) {
1166 1.1 jmmv case VDIR:
1167 1.1 jmmv return EISDIR;
1168 1.1 jmmv
1169 1.1 jmmv case VREG:
1170 1.1 jmmv if (vp->v_mount->mnt_flag & MNT_RDONLY)
1171 1.1 jmmv return EROFS;
1172 1.1 jmmv break;
1173 1.1 jmmv
1174 1.1 jmmv case VBLK:
1175 1.1 jmmv /* FALLTHROUGH */
1176 1.1 jmmv case VCHR:
1177 1.1 jmmv /* FALLTHROUGH */
1178 1.1 jmmv case VFIFO:
1179 1.1 jmmv /* Allow modifications of special files even if in the file
1180 1.1 jmmv * system is mounted read-only (we are not modifying the
1181 1.1 jmmv * files themselves, but the objects they represent). */
1182 1.14 yamt return 0;
1183 1.1 jmmv
1184 1.1 jmmv default:
1185 1.1 jmmv /* Anything else is unsupported. */
1186 1.14 yamt return EOPNOTSUPP;
1187 1.1 jmmv }
1188 1.1 jmmv
1189 1.1 jmmv /* Immutable or append-only files cannot be modified, either. */
1190 1.1 jmmv if (node->tn_flags & (IMMUTABLE | APPEND))
1191 1.1 jmmv return EPERM;
1192 1.1 jmmv
1193 1.12 yamt error = tmpfs_truncate(vp, size);
1194 1.1 jmmv /* tmpfs_truncate will raise the NOTE_EXTEND and NOTE_ATTRIB kevents
1195 1.1 jmmv * for us, as will update tn_status; no need to do that here. */
1196 1.1 jmmv
1197 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1198 1.1 jmmv
1199 1.1 jmmv return error;
1200 1.1 jmmv }
1201 1.1 jmmv
1202 1.1 jmmv /* --------------------------------------------------------------------- */
1203 1.1 jmmv
1204 1.9 jmmv /*
1205 1.9 jmmv * Change access and modification times of the given vnode.
1206 1.12 yamt * Caller should execute tmpfs_update on vp after a successful execution.
1207 1.9 jmmv * The vnode must be locked on entry and remain locked on exit.
1208 1.9 jmmv */
1209 1.1 jmmv int
1210 1.1 jmmv tmpfs_chtimes(struct vnode *vp, struct timespec *atime, struct timespec *mtime,
1211 1.19 elad int vaflags, kauth_cred_t cred, struct lwp *l)
1212 1.1 jmmv {
1213 1.1 jmmv int error;
1214 1.1 jmmv struct tmpfs_node *node;
1215 1.1 jmmv
1216 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1217 1.1 jmmv
1218 1.1 jmmv node = VP_TO_TMPFS_NODE(vp);
1219 1.1 jmmv
1220 1.1 jmmv /* Disallow this operation if the file system is mounted read-only. */
1221 1.1 jmmv if (vp->v_mount->mnt_flag & MNT_RDONLY)
1222 1.1 jmmv return EROFS;
1223 1.1 jmmv
1224 1.1 jmmv /* Immutable or append-only files cannot be modified, either. */
1225 1.1 jmmv if (node->tn_flags & (IMMUTABLE | APPEND))
1226 1.1 jmmv return EPERM;
1227 1.1 jmmv
1228 1.1 jmmv /* XXX: The following comes from UFS code, and can be found in
1229 1.1 jmmv * several other file systems. Shouldn't this be centralized
1230 1.1 jmmv * somewhere? */
1231 1.19 elad if (kauth_cred_geteuid(cred) != node->tn_uid &&
1232 1.19 elad (error = kauth_authorize_generic(cred, KAUTH_GENERIC_ISSUSER,
1233 1.32 elad NULL)) && ((vaflags & VA_UTIMES_NULL) == 0 ||
1234 1.41 pooka (error = VOP_ACCESS(vp, VWRITE, cred))))
1235 1.1 jmmv return error;
1236 1.1 jmmv
1237 1.1 jmmv if (atime->tv_sec != VNOVAL && atime->tv_nsec != VNOVAL)
1238 1.1 jmmv node->tn_status |= TMPFS_NODE_ACCESSED;
1239 1.1 jmmv
1240 1.1 jmmv if (mtime->tv_sec != VNOVAL && mtime->tv_nsec != VNOVAL)
1241 1.1 jmmv node->tn_status |= TMPFS_NODE_MODIFIED;
1242 1.1 jmmv
1243 1.12 yamt tmpfs_update(vp, atime, mtime, 0);
1244 1.29 jmmv VN_KNOTE(vp, NOTE_ATTRIB);
1245 1.1 jmmv
1246 1.1 jmmv KASSERT(VOP_ISLOCKED(vp));
1247 1.1 jmmv
1248 1.12 yamt return 0;
1249 1.1 jmmv }
1250 1.10 yamt
1251 1.10 yamt /* --------------------------------------------------------------------- */
1252 1.10 yamt
1253 1.10 yamt /* Sync timestamps */
1254 1.10 yamt void
1255 1.10 yamt tmpfs_itimes(struct vnode *vp, const struct timespec *acc,
1256 1.10 yamt const struct timespec *mod)
1257 1.10 yamt {
1258 1.21 kardel struct timespec now;
1259 1.10 yamt struct tmpfs_node *node;
1260 1.10 yamt
1261 1.10 yamt node = VP_TO_TMPFS_NODE(vp);
1262 1.10 yamt
1263 1.10 yamt if ((node->tn_status & (TMPFS_NODE_ACCESSED | TMPFS_NODE_MODIFIED |
1264 1.10 yamt TMPFS_NODE_CHANGED)) == 0)
1265 1.10 yamt return;
1266 1.26 jmmv
1267 1.21 kardel getnanotime(&now);
1268 1.10 yamt if (node->tn_status & TMPFS_NODE_ACCESSED) {
1269 1.10 yamt if (acc == NULL)
1270 1.21 kardel acc = &now;
1271 1.10 yamt node->tn_atime = *acc;
1272 1.10 yamt }
1273 1.10 yamt if (node->tn_status & TMPFS_NODE_MODIFIED) {
1274 1.10 yamt if (mod == NULL)
1275 1.21 kardel mod = &now;
1276 1.10 yamt node->tn_mtime = *mod;
1277 1.10 yamt }
1278 1.21 kardel if (node->tn_status & TMPFS_NODE_CHANGED)
1279 1.21 kardel node->tn_ctime = now;
1280 1.21 kardel
1281 1.10 yamt node->tn_status &=
1282 1.10 yamt ~(TMPFS_NODE_ACCESSED | TMPFS_NODE_MODIFIED | TMPFS_NODE_CHANGED);
1283 1.10 yamt }
1284 1.12 yamt
1285 1.12 yamt /* --------------------------------------------------------------------- */
1286 1.12 yamt
1287 1.12 yamt void
1288 1.12 yamt tmpfs_update(struct vnode *vp, const struct timespec *acc,
1289 1.30 christos const struct timespec *mod, int flags)
1290 1.12 yamt {
1291 1.12 yamt
1292 1.12 yamt struct tmpfs_node *node;
1293 1.12 yamt
1294 1.12 yamt KASSERT(VOP_ISLOCKED(vp));
1295 1.12 yamt
1296 1.12 yamt node = VP_TO_TMPFS_NODE(vp);
1297 1.12 yamt
1298 1.23 christos #if 0
1299 1.12 yamt if (flags & UPDATE_CLOSE)
1300 1.12 yamt ; /* XXX Need to do anything special? */
1301 1.23 christos #endif
1302 1.12 yamt
1303 1.12 yamt tmpfs_itimes(vp, acc, mod);
1304 1.12 yamt
1305 1.12 yamt KASSERT(VOP_ISLOCKED(vp));
1306 1.12 yamt }
1307 1.12 yamt
1308 1.12 yamt /* --------------------------------------------------------------------- */
1309 1.12 yamt
1310 1.12 yamt int
1311 1.12 yamt tmpfs_truncate(struct vnode *vp, off_t length)
1312 1.12 yamt {
1313 1.33 thorpej bool extended;
1314 1.12 yamt int error;
1315 1.12 yamt struct tmpfs_node *node;
1316 1.12 yamt
1317 1.12 yamt node = VP_TO_TMPFS_NODE(vp);
1318 1.12 yamt extended = length > node->tn_size;
1319 1.12 yamt
1320 1.12 yamt if (length < 0) {
1321 1.12 yamt error = EINVAL;
1322 1.12 yamt goto out;
1323 1.12 yamt }
1324 1.12 yamt
1325 1.12 yamt if (node->tn_size == length) {
1326 1.12 yamt error = 0;
1327 1.12 yamt goto out;
1328 1.12 yamt }
1329 1.12 yamt
1330 1.12 yamt error = tmpfs_reg_resize(vp, length);
1331 1.29 jmmv if (error == 0)
1332 1.12 yamt node->tn_status |= TMPFS_NODE_CHANGED | TMPFS_NODE_MODIFIED;
1333 1.12 yamt
1334 1.12 yamt out:
1335 1.12 yamt tmpfs_update(vp, NULL, NULL, 0);
1336 1.12 yamt
1337 1.12 yamt return error;
1338 1.12 yamt }
1339