ext2fs_lookup.c revision 1.81 1 1.81 jdolecek /* $NetBSD: ext2fs_lookup.c,v 1.81 2016/08/06 21:39:48 jdolecek Exp $ */
2 1.1 bouyer
3 1.32 perry /*
4 1.1 bouyer * Modified for NetBSD 1.2E
5 1.1 bouyer * May 1997, Manuel Bouyer
6 1.1 bouyer * Laboratoire d'informatique de Paris VI
7 1.1 bouyer */
8 1.1 bouyer /*
9 1.1 bouyer * modified for Lites 1.1
10 1.1 bouyer *
11 1.1 bouyer * Aug 1995, Godmar Back (gback (at) cs.utah.edu)
12 1.1 bouyer * University of Utah, Department of Computer Science
13 1.1 bouyer */
14 1.1 bouyer /*
15 1.1 bouyer * Copyright (c) 1989, 1993
16 1.1 bouyer * The Regents of the University of California. All rights reserved.
17 1.1 bouyer * (c) UNIX System Laboratories, Inc.
18 1.1 bouyer * All or some portions of this file are derived from material licensed
19 1.1 bouyer * to the University of California by American Telephone and Telegraph
20 1.1 bouyer * Co. or Unix System Laboratories, Inc. and are reproduced herein with
21 1.1 bouyer * the permission of UNIX System Laboratories, Inc.
22 1.1 bouyer *
23 1.1 bouyer * Redistribution and use in source and binary forms, with or without
24 1.1 bouyer * modification, are permitted provided that the following conditions
25 1.1 bouyer * are met:
26 1.1 bouyer * 1. Redistributions of source code must retain the above copyright
27 1.8 christos * notice, this list of conditions and the following disclaimer.
28 1.1 bouyer * 2. Redistributions in binary form must reproduce the above copyright
29 1.8 christos * notice, this list of conditions and the following disclaimer in the
30 1.8 christos * documentation and/or other materials provided with the distribution.
31 1.28 agc * 3. Neither the name of the University nor the names of its contributors
32 1.8 christos * may be used to endorse or promote products derived from this software
33 1.8 christos * without specific prior written permission.
34 1.1 bouyer *
35 1.1 bouyer * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
36 1.1 bouyer * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
37 1.1 bouyer * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
38 1.1 bouyer * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
39 1.1 bouyer * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
40 1.1 bouyer * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
41 1.1 bouyer * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
42 1.1 bouyer * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
43 1.1 bouyer * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
44 1.1 bouyer * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
45 1.1 bouyer * SUCH DAMAGE.
46 1.1 bouyer *
47 1.1 bouyer * @(#)ufs_lookup.c 8.6 (Berkeley) 4/1/94
48 1.1 bouyer */
49 1.18 lukem
50 1.18 lukem #include <sys/cdefs.h>
51 1.81 jdolecek __KERNEL_RCSID(0, "$NetBSD: ext2fs_lookup.c,v 1.81 2016/08/06 21:39:48 jdolecek Exp $");
52 1.1 bouyer
53 1.1 bouyer #include <sys/param.h>
54 1.1 bouyer #include <sys/systm.h>
55 1.1 bouyer #include <sys/namei.h>
56 1.1 bouyer #include <sys/buf.h>
57 1.1 bouyer #include <sys/file.h>
58 1.1 bouyer #include <sys/mount.h>
59 1.1 bouyer #include <sys/vnode.h>
60 1.67 para #include <sys/kmem.h>
61 1.1 bouyer #include <sys/malloc.h>
62 1.1 bouyer #include <sys/dirent.h>
63 1.44 elad #include <sys/kauth.h>
64 1.53 ad #include <sys/proc.h>
65 1.1 bouyer
66 1.1 bouyer #include <ufs/ufs/inode.h>
67 1.1 bouyer #include <ufs/ufs/ufsmount.h>
68 1.1 bouyer #include <ufs/ufs/ufs_extern.h>
69 1.1 bouyer
70 1.1 bouyer #include <ufs/ext2fs/ext2fs_extern.h>
71 1.1 bouyer #include <ufs/ext2fs/ext2fs_dir.h>
72 1.1 bouyer #include <ufs/ext2fs/ext2fs.h>
73 1.80 christos #include <ufs/ext2fs/ext2fs_htree.h>
74 1.1 bouyer
75 1.68 elad #include <miscfs/genfs/genfs.h>
76 1.68 elad
77 1.1 bouyer extern int dirchk;
78 1.1 bouyer
79 1.37 xtraeme static void ext2fs_dirconv2ffs(struct ext2fs_direct *e2dir,
80 1.37 xtraeme struct dirent *ffsdir);
81 1.37 xtraeme static int ext2fs_dirbadentry(struct vnode *dp,
82 1.1 bouyer struct ext2fs_direct *de,
83 1.37 xtraeme int entryoffsetinblock);
84 1.1 bouyer
85 1.1 bouyer /*
86 1.1 bouyer * the problem that is tackled below is the fact that FFS
87 1.1 bouyer * includes the terminating zero on disk while EXT2FS doesn't
88 1.1 bouyer * this implies that we need to introduce some padding.
89 1.32 perry * For instance, a filename "sbin" has normally a reclen 12
90 1.32 perry * in EXT2, but 16 in FFS.
91 1.1 bouyer * This reminds me of that Pepsi commercial: 'Kid saved a lousy nine cents...'
92 1.1 bouyer * If it wasn't for that, the complete ufs code for directories would
93 1.1 bouyer * have worked w/o changes (except for the difference in DIRBLKSIZ)
94 1.1 bouyer */
95 1.1 bouyer static void
96 1.37 xtraeme ext2fs_dirconv2ffs(struct ext2fs_direct *e2dir, struct dirent *ffsdir)
97 1.1 bouyer {
98 1.7 perry memset(ffsdir, 0, sizeof(struct dirent));
99 1.3 bouyer ffsdir->d_fileno = fs2h32(e2dir->e2d_ino);
100 1.13 bouyer ffsdir->d_namlen = e2dir->e2d_namlen;
101 1.1 bouyer
102 1.81 jdolecek ffsdir->d_type = ext2dt2dt(e2dir->e2d_type);
103 1.81 jdolecek
104 1.1 bouyer #ifdef DIAGNOSTIC
105 1.36 christos #if MAXNAMLEN < E2FS_MAXNAMLEN
106 1.1 bouyer /*
107 1.36 christos * we should handle this more gracefully !
108 1.1 bouyer */
109 1.13 bouyer if (e2dir->e2d_namlen > MAXNAMLEN)
110 1.21 provos panic("ext2fs: e2dir->e2d_namlen");
111 1.19 thorpej #endif
112 1.1 bouyer #endif
113 1.1 bouyer strncpy(ffsdir->d_name, e2dir->e2d_name, ffsdir->d_namlen);
114 1.1 bouyer
115 1.32 perry /* Godmar thinks: since e2dir->e2d_reclen can be big and means
116 1.1 bouyer nothing anyway, we compute our own reclen according to what
117 1.1 bouyer we think is right
118 1.1 bouyer */
119 1.35 christos ffsdir->d_reclen = _DIRENT_SIZE(ffsdir);
120 1.1 bouyer }
121 1.1 bouyer
122 1.80 christos static int
123 1.80 christos ext2fs_is_dot_entry(struct componentname *cnp)
124 1.80 christos {
125 1.80 christos return cnp->cn_namelen <= 2 && cnp->cn_nameptr[0] == '.' &&
126 1.80 christos (cnp->cn_nameptr[1] == '.' || cnp->cn_nameptr[1] == '\0');
127 1.80 christos }
128 1.80 christos
129 1.1 bouyer /*
130 1.1 bouyer * Vnode op for reading directories.
131 1.1 bouyer *
132 1.1 bouyer * Convert the on-disk entries to <sys/dirent.h> entries.
133 1.1 bouyer * the problem is that the conversion will blow up some entries by four bytes,
134 1.1 bouyer * so it can't be done in place. This is too bad. Right now the conversion is
135 1.32 perry * done entry by entry, the converted entry is sent via uiomove.
136 1.1 bouyer *
137 1.1 bouyer * XXX allocate a buffer, convert as many entries as possible, then send
138 1.1 bouyer * the whole buffer to uiomove
139 1.1 bouyer */
140 1.1 bouyer int
141 1.37 xtraeme ext2fs_readdir(void *v)
142 1.1 bouyer {
143 1.1 bouyer struct vop_readdir_args /* {
144 1.1 bouyer struct vnode *a_vp;
145 1.1 bouyer struct uio *a_uio;
146 1.44 elad kauth_cred_t a_cred;
147 1.5 fvdl int **a_eofflag;
148 1.5 fvdl off_t **a_cookies;
149 1.1 bouyer int ncookies;
150 1.1 bouyer } */ *ap = v;
151 1.5 fvdl struct uio *uio = ap->a_uio;
152 1.1 bouyer int error;
153 1.2 bouyer size_t e2fs_count, readcnt;
154 1.5 fvdl struct vnode *vp = ap->a_vp;
155 1.5 fvdl struct m_ext2fs *fs = VTOI(vp)->i_e2fs;
156 1.1 bouyer
157 1.1 bouyer struct ext2fs_direct *dp;
158 1.52 rumble struct dirent *dstd;
159 1.1 bouyer struct uio auio;
160 1.1 bouyer struct iovec aiov;
161 1.50 christos void *dirbuf;
162 1.1 bouyer off_t off = uio->uio_offset;
163 1.5 fvdl off_t *cookies = NULL;
164 1.5 fvdl int nc = 0, ncookies = 0;
165 1.3 bouyer int e2d_reclen;
166 1.1 bouyer
167 1.5 fvdl if (vp->v_type != VDIR)
168 1.5 fvdl return (ENOTDIR);
169 1.5 fvdl
170 1.2 bouyer e2fs_count = uio->uio_resid;
171 1.1 bouyer /* Make sure we don't return partial entries. */
172 1.2 bouyer e2fs_count -= (uio->uio_offset + e2fs_count) & (fs->e2fs_bsize -1);
173 1.2 bouyer if (e2fs_count <= 0)
174 1.1 bouyer return (EINVAL);
175 1.1 bouyer
176 1.1 bouyer auio = *uio;
177 1.1 bouyer auio.uio_iov = &aiov;
178 1.1 bouyer auio.uio_iovcnt = 1;
179 1.2 bouyer aiov.iov_len = e2fs_count;
180 1.2 bouyer auio.uio_resid = e2fs_count;
181 1.40 yamt UIO_SETUP_SYSSPACE(&auio);
182 1.67 para dirbuf = kmem_alloc(e2fs_count, KM_SLEEP);
183 1.67 para dstd = kmem_zalloc(sizeof(struct dirent), KM_SLEEP);
184 1.5 fvdl if (ap->a_ncookies) {
185 1.52 rumble nc = e2fs_count / _DIRENT_MINSIZE((struct dirent *)0);
186 1.52 rumble ncookies = nc;
187 1.16 thorpej cookies = malloc(sizeof (off_t) * ncookies, M_TEMP, M_WAITOK);
188 1.5 fvdl *ap->a_cookies = cookies;
189 1.5 fvdl }
190 1.1 bouyer aiov.iov_base = dirbuf;
191 1.1 bouyer
192 1.78 riastrad error = UFS_BUFRD(ap->a_vp, &auio, 0, ap->a_cred);
193 1.1 bouyer if (error == 0) {
194 1.2 bouyer readcnt = e2fs_count - auio.uio_resid;
195 1.32 perry for (dp = (struct ext2fs_direct *)dirbuf;
196 1.1 bouyer (char *)dp < (char *)dirbuf + readcnt; ) {
197 1.3 bouyer e2d_reclen = fs2h16(dp->e2d_reclen);
198 1.3 bouyer if (e2d_reclen == 0) {
199 1.1 bouyer error = EIO;
200 1.1 bouyer break;
201 1.1 bouyer }
202 1.52 rumble ext2fs_dirconv2ffs(dp, dstd);
203 1.52 rumble if(dstd->d_reclen > uio->uio_resid) {
204 1.1 bouyer break;
205 1.1 bouyer }
206 1.52 rumble error = uiomove(dstd, dstd->d_reclen, uio);
207 1.52 rumble if (error != 0) {
208 1.1 bouyer break;
209 1.1 bouyer }
210 1.3 bouyer off = off + e2d_reclen;
211 1.1 bouyer if (cookies != NULL) {
212 1.1 bouyer *cookies++ = off;
213 1.1 bouyer if (--ncookies <= 0){
214 1.1 bouyer break; /* out of cookies */
215 1.1 bouyer }
216 1.1 bouyer }
217 1.1 bouyer /* advance dp */
218 1.3 bouyer dp = (struct ext2fs_direct *) ((char *)dp + e2d_reclen);
219 1.1 bouyer }
220 1.1 bouyer /* we need to correct uio_offset */
221 1.1 bouyer uio->uio_offset = off;
222 1.1 bouyer }
223 1.67 para kmem_free(dirbuf, e2fs_count);
224 1.67 para kmem_free(dstd, sizeof(*dstd));
225 1.31 ws *ap->a_eofflag = ext2fs_size(VTOI(ap->a_vp)) <= uio->uio_offset;
226 1.5 fvdl if (ap->a_ncookies) {
227 1.5 fvdl if (error) {
228 1.16 thorpej free(*ap->a_cookies, M_TEMP);
229 1.5 fvdl *ap->a_ncookies = 0;
230 1.5 fvdl *ap->a_cookies = NULL;
231 1.5 fvdl } else
232 1.5 fvdl *ap->a_ncookies = nc - ncookies;
233 1.5 fvdl }
234 1.1 bouyer return (error);
235 1.1 bouyer }
236 1.1 bouyer
237 1.1 bouyer /*
238 1.1 bouyer * Convert a component of a pathname into a pointer to a locked inode.
239 1.1 bouyer * This is a very central and rather complicated routine.
240 1.1 bouyer * If the file system is not maintained in a strict tree hierarchy,
241 1.1 bouyer * this can result in a deadlock situation (see comments in code below).
242 1.1 bouyer *
243 1.1 bouyer * The cnp->cn_nameiop argument is LOOKUP, CREATE, RENAME, or DELETE depending
244 1.1 bouyer * on whether the name is to be looked up, created, renamed, or deleted.
245 1.1 bouyer * When CREATE, RENAME, or DELETE is specified, information usable in
246 1.1 bouyer * creating, renaming, or deleting a directory entry may be calculated.
247 1.1 bouyer * If flag has LOCKPARENT or'ed into it and the target of the pathname
248 1.1 bouyer * exists, lookup returns both the target and its parent directory locked.
249 1.1 bouyer * When creating or renaming and LOCKPARENT is specified, the target may
250 1.1 bouyer * not be ".". When deleting and LOCKPARENT is specified, the target may
251 1.1 bouyer * be "."., but the caller must check to ensure it does an vrele and vput
252 1.1 bouyer * instead of two vputs.
253 1.1 bouyer *
254 1.1 bouyer * Overall outline of ext2fs_lookup:
255 1.1 bouyer *
256 1.1 bouyer * check accessibility of directory
257 1.1 bouyer * look for name in cache, if found, then if at end of path
258 1.1 bouyer * and deleting or creating, drop it, else return name
259 1.1 bouyer * search for name in directory, to found or notfound
260 1.1 bouyer * notfound:
261 1.1 bouyer * if creating, return locked directory, leaving info on available slots
262 1.1 bouyer * else return error
263 1.1 bouyer * found:
264 1.1 bouyer * if at end of path and deleting, return information to allow delete
265 1.1 bouyer * if at end of path and rewriting (RENAME and LOCKPARENT), lock target
266 1.1 bouyer * inode and return info to allow rewrite
267 1.1 bouyer * if not at end, add name to cache; if at end and neither creating
268 1.1 bouyer * nor deleting, add name to cache
269 1.1 bouyer */
270 1.1 bouyer int
271 1.37 xtraeme ext2fs_lookup(void *v)
272 1.1 bouyer {
273 1.74 hannken struct vop_lookup_v2_args /* {
274 1.1 bouyer struct vnode *a_dvp;
275 1.1 bouyer struct vnode **a_vpp;
276 1.1 bouyer struct componentname *a_cnp;
277 1.1 bouyer } */ *ap = v;
278 1.29 mycroft struct vnode *vdp = ap->a_dvp; /* vnode for directory being searched */
279 1.29 mycroft struct inode *dp = VTOI(vdp); /* inode for directory being searched */
280 1.1 bouyer struct buf *bp; /* a buffer of directory entries */
281 1.60 tsutsui struct ext2fs_direct *ep; /* the current directory entry */
282 1.1 bouyer int entryoffsetinblock; /* offset of ep in bp's buffer */
283 1.80 christos enum ext2fs_slotstatus slotstatus;
284 1.1 bouyer doff_t slotoffset; /* offset of area with free space */
285 1.1 bouyer int slotsize; /* size of area at slotoffset */
286 1.1 bouyer int slotfreespace; /* amount of space free in slot */
287 1.1 bouyer int slotneeded; /* size of the entry we're seeking */
288 1.1 bouyer int numdirpasses; /* strategy for directory search */
289 1.1 bouyer doff_t endsearch; /* offset to end directory search */
290 1.1 bouyer doff_t prevoff; /* prev entry dp->i_offset */
291 1.75 hannken struct vnode *tdp; /* returned by vcache_get */
292 1.1 bouyer doff_t enduseful; /* pointer past last used dir slot */
293 1.1 bouyer u_long bmask; /* block offset mask */
294 1.1 bouyer int namlen, error;
295 1.1 bouyer struct vnode **vpp = ap->a_vpp;
296 1.1 bouyer struct componentname *cnp = ap->a_cnp;
297 1.44 elad kauth_cred_t cred = cnp->cn_cred;
298 1.29 mycroft int flags;
299 1.1 bouyer int nameiop = cnp->cn_nameiop;
300 1.29 mycroft struct ufsmount *ump = dp->i_ump;
301 1.29 mycroft int dirblksiz = ump->um_dirblksiz;
302 1.23 yamt ino_t foundino;
303 1.65 dholland struct ufs_lookup_results *results;
304 1.80 christos doff_t i_offset; /* cached i_offset value */
305 1.80 christos struct ext2fs_searchslot ss;
306 1.1 bouyer
307 1.29 mycroft flags = cnp->cn_flags;
308 1.1 bouyer
309 1.1 bouyer bp = NULL;
310 1.1 bouyer slotoffset = -1;
311 1.1 bouyer *vpp = NULL;
312 1.47 chs
313 1.1 bouyer /*
314 1.65 dholland * Produce the auxiliary lookup results into i_crap. Increment
315 1.65 dholland * its serial number so elsewhere we can tell if we're using
316 1.65 dholland * stale results. This should not be done this way. XXX.
317 1.65 dholland */
318 1.65 dholland results = &dp->i_crap;
319 1.65 dholland dp->i_crapcounter++;
320 1.65 dholland
321 1.65 dholland /*
322 1.1 bouyer * Check accessiblity of directory.
323 1.1 bouyer */
324 1.54 pooka if ((error = VOP_ACCESS(vdp, VEXEC, cred)) != 0)
325 1.9 bouyer return (error);
326 1.9 bouyer
327 1.5 fvdl if ((flags & ISLASTCN) && (vdp->v_mount->mnt_flag & MNT_RDONLY) &&
328 1.5 fvdl (cnp->cn_nameiop == DELETE || cnp->cn_nameiop == RENAME))
329 1.5 fvdl return (EROFS);
330 1.1 bouyer
331 1.1 bouyer /*
332 1.1 bouyer * We now have a segment name to search for, and a directory to search.
333 1.1 bouyer *
334 1.1 bouyer * Before tediously performing a linear scan of the directory,
335 1.1 bouyer * check the name cache to see if the directory/name pair
336 1.1 bouyer * we are looking for is known already.
337 1.1 bouyer */
338 1.72 dholland if (cache_lookup(vdp, cnp->cn_nameptr, cnp->cn_namelen,
339 1.72 dholland cnp->cn_nameiop, cnp->cn_flags, NULL, vpp)) {
340 1.71 dholland return *vpp == NULLVP ? ENOENT : 0;
341 1.71 dholland }
342 1.1 bouyer
343 1.1 bouyer /*
344 1.1 bouyer * Suppress search for slots unless creating
345 1.1 bouyer * file and at end of pathname, in which case
346 1.1 bouyer * we watch for a place to put the new file in
347 1.1 bouyer * case it doesn't already exist.
348 1.1 bouyer */
349 1.1 bouyer slotstatus = FOUND;
350 1.1 bouyer slotfreespace = slotsize = slotneeded = 0;
351 1.1 bouyer if ((nameiop == CREATE || nameiop == RENAME) &&
352 1.29 mycroft (flags & ISLASTCN)) {
353 1.1 bouyer slotstatus = NONE;
354 1.1 bouyer slotneeded = EXT2FS_DIRSIZ(cnp->cn_namelen);
355 1.1 bouyer }
356 1.1 bouyer
357 1.1 bouyer /*
358 1.1 bouyer * If there is cached information on a previous search of
359 1.1 bouyer * this directory, pick up where we last left off.
360 1.1 bouyer * We cache only lookups as these are the most common
361 1.1 bouyer * and have the greatest payoff. Caching CREATE has little
362 1.1 bouyer * benefit as it usually must search the entire directory
363 1.1 bouyer * to determine that the entry does not exist. Caching the
364 1.1 bouyer * location of the last DELETE or RENAME has not reduced
365 1.1 bouyer * profiling time and hence has been removed in the interest
366 1.1 bouyer * of simplicity.
367 1.1 bouyer */
368 1.29 mycroft bmask = vdp->v_mount->mnt_stat.f_iosize - 1;
369 1.65 dholland if (nameiop != LOOKUP || results->ulr_diroff == 0 ||
370 1.65 dholland results->ulr_diroff >= ext2fs_size(dp)) {
371 1.1 bouyer entryoffsetinblock = 0;
372 1.65 dholland results->ulr_offset = 0;
373 1.1 bouyer numdirpasses = 1;
374 1.1 bouyer } else {
375 1.65 dholland results->ulr_offset = results->ulr_diroff;
376 1.65 dholland if ((entryoffsetinblock = results->ulr_offset & bmask) &&
377 1.65 dholland (error = ext2fs_blkatoff(vdp, (off_t)results->ulr_offset, NULL, &bp)))
378 1.1 bouyer return (error);
379 1.1 bouyer numdirpasses = 2;
380 1.77 joerg namecache_count_2passes();
381 1.1 bouyer }
382 1.65 dholland prevoff = results->ulr_offset;
383 1.31 ws endsearch = roundup(ext2fs_size(dp), dirblksiz);
384 1.1 bouyer enduseful = 0;
385 1.1 bouyer
386 1.80 christos /*
387 1.80 christos * Try to lookup dir entry using htree directory index.
388 1.80 christos *
389 1.80 christos * If we got an error or we want to find '.' or '..' entry,
390 1.80 christos * we will fall back to linear search.
391 1.80 christos */
392 1.80 christos if (ext2fs_htree_has_idx(dp) && ext2fs_is_dot_entry(cnp)) {
393 1.80 christos numdirpasses = 1;
394 1.80 christos entryoffsetinblock = 0;
395 1.80 christos
396 1.80 christos int htree_lookup_ret = ext2fs_htree_lookup(dp, cnp->cn_nameptr,
397 1.80 christos cnp->cn_namelen, &bp, &entryoffsetinblock, &i_offset,
398 1.80 christos &prevoff, &enduseful, &ss);
399 1.80 christos switch (htree_lookup_ret) {
400 1.80 christos case 0:
401 1.80 christos ep = (struct ext2fs_direct*)((char *)bp->b_data +
402 1.80 christos (i_offset & bmask));
403 1.80 christos foundino = ep->e2d_ino;
404 1.80 christos goto found;
405 1.80 christos case ENOENT:
406 1.80 christos i_offset = roundup2(dp->i_size, dp->i_e2fs->e2fs_bsize);
407 1.80 christos goto notfound;
408 1.80 christos default:
409 1.80 christos /*
410 1.80 christos * Something failed; just fallback to do a linear
411 1.80 christos * search.
412 1.80 christos */
413 1.80 christos break;
414 1.80 christos }
415 1.80 christos }
416 1.80 christos
417 1.1 bouyer searchloop:
418 1.65 dholland while (results->ulr_offset < endsearch) {
419 1.29 mycroft if (curcpu()->ci_schedstate.spc_flags & SPCF_SHOULDYIELD)
420 1.49 ad preempt();
421 1.1 bouyer /*
422 1.1 bouyer * If necessary, get the next directory block.
423 1.1 bouyer */
424 1.65 dholland if ((results->ulr_offset & bmask) == 0) {
425 1.1 bouyer if (bp != NULL)
426 1.53 ad brelse(bp, 0);
427 1.65 dholland error = ext2fs_blkatoff(vdp, (off_t)results->ulr_offset, NULL,
428 1.29 mycroft &bp);
429 1.1 bouyer if (error != 0)
430 1.1 bouyer return (error);
431 1.1 bouyer entryoffsetinblock = 0;
432 1.1 bouyer }
433 1.1 bouyer /*
434 1.1 bouyer * If still looking for a slot, and at a dirblksize
435 1.1 bouyer * boundary, have to start looking for free space again.
436 1.1 bouyer */
437 1.1 bouyer if (slotstatus == NONE &&
438 1.29 mycroft (entryoffsetinblock & (dirblksiz - 1)) == 0) {
439 1.1 bouyer slotoffset = -1;
440 1.1 bouyer slotfreespace = 0;
441 1.1 bouyer }
442 1.1 bouyer /*
443 1.1 bouyer * Get pointer to next entry.
444 1.1 bouyer * Full validation checks are slow, so we only check
445 1.1 bouyer * enough to insure forward progress through the
446 1.1 bouyer * directory. Complete checks can be run by patching
447 1.1 bouyer * "dirchk" to be true.
448 1.1 bouyer */
449 1.43 christos KASSERT(bp != NULL);
450 1.1 bouyer ep = (struct ext2fs_direct *)
451 1.1 bouyer ((char *)bp->b_data + entryoffsetinblock);
452 1.1 bouyer if (ep->e2d_reclen == 0 ||
453 1.9 bouyer (dirchk &&
454 1.29 mycroft ext2fs_dirbadentry(vdp, ep, entryoffsetinblock))) {
455 1.1 bouyer int i;
456 1.29 mycroft
457 1.65 dholland ufs_dirbad(dp, results->ulr_offset, "mangled entry");
458 1.29 mycroft i = dirblksiz - (entryoffsetinblock & (dirblksiz - 1));
459 1.65 dholland results->ulr_offset += i;
460 1.1 bouyer entryoffsetinblock += i;
461 1.1 bouyer continue;
462 1.1 bouyer }
463 1.1 bouyer
464 1.1 bouyer /*
465 1.1 bouyer * If an appropriate sized slot has not yet been found,
466 1.1 bouyer * check to see if one is available. Also accumulate space
467 1.1 bouyer * in the current block so that we can determine if
468 1.1 bouyer * compaction is viable.
469 1.1 bouyer */
470 1.1 bouyer if (slotstatus != FOUND) {
471 1.3 bouyer int size = fs2h16(ep->e2d_reclen);
472 1.1 bouyer
473 1.1 bouyer if (ep->e2d_ino != 0)
474 1.13 bouyer size -= EXT2FS_DIRSIZ(ep->e2d_namlen);
475 1.1 bouyer if (size > 0) {
476 1.1 bouyer if (size >= slotneeded) {
477 1.1 bouyer slotstatus = FOUND;
478 1.65 dholland slotoffset = results->ulr_offset;
479 1.3 bouyer slotsize = fs2h16(ep->e2d_reclen);
480 1.1 bouyer } else if (slotstatus == NONE) {
481 1.1 bouyer slotfreespace += size;
482 1.1 bouyer if (slotoffset == -1)
483 1.65 dholland slotoffset = results->ulr_offset;
484 1.1 bouyer if (slotfreespace >= slotneeded) {
485 1.1 bouyer slotstatus = COMPACT;
486 1.65 dholland slotsize = results->ulr_offset +
487 1.29 mycroft fs2h16(ep->e2d_reclen) -
488 1.29 mycroft slotoffset;
489 1.1 bouyer }
490 1.1 bouyer }
491 1.1 bouyer }
492 1.1 bouyer }
493 1.1 bouyer
494 1.1 bouyer /*
495 1.1 bouyer * Check for a name match.
496 1.1 bouyer */
497 1.1 bouyer if (ep->e2d_ino) {
498 1.13 bouyer namlen = ep->e2d_namlen;
499 1.1 bouyer if (namlen == cnp->cn_namelen &&
500 1.29 mycroft !memcmp(cnp->cn_nameptr, ep->e2d_name,
501 1.29 mycroft (unsigned)namlen)) {
502 1.1 bouyer /*
503 1.1 bouyer * Save directory entry's inode number and
504 1.1 bouyer * reclen in ndp->ni_ufs area, and release
505 1.1 bouyer * directory buffer.
506 1.1 bouyer */
507 1.23 yamt foundino = fs2h32(ep->e2d_ino);
508 1.65 dholland results->ulr_reclen = fs2h16(ep->e2d_reclen);
509 1.1 bouyer goto found;
510 1.1 bouyer }
511 1.1 bouyer }
512 1.65 dholland prevoff = results->ulr_offset;
513 1.65 dholland results->ulr_offset += fs2h16(ep->e2d_reclen);
514 1.3 bouyer entryoffsetinblock += fs2h16(ep->e2d_reclen);
515 1.1 bouyer if (ep->e2d_ino)
516 1.65 dholland enduseful = results->ulr_offset;
517 1.1 bouyer }
518 1.80 christos notfound:
519 1.1 bouyer /*
520 1.1 bouyer * If we started in the middle of the directory and failed
521 1.1 bouyer * to find our target, we must check the beginning as well.
522 1.1 bouyer */
523 1.1 bouyer if (numdirpasses == 2) {
524 1.1 bouyer numdirpasses--;
525 1.65 dholland results->ulr_offset = 0;
526 1.65 dholland endsearch = results->ulr_diroff;
527 1.1 bouyer goto searchloop;
528 1.1 bouyer }
529 1.1 bouyer if (bp != NULL)
530 1.53 ad brelse(bp, 0);
531 1.1 bouyer /*
532 1.1 bouyer * If creating, and at end of pathname and current
533 1.1 bouyer * directory has not been removed, then can consider
534 1.1 bouyer * allowing file to be created.
535 1.1 bouyer */
536 1.1 bouyer if ((nameiop == CREATE || nameiop == RENAME) &&
537 1.29 mycroft (flags & ISLASTCN) && dp->i_e2fs_nlink != 0) {
538 1.1 bouyer /*
539 1.1 bouyer * Access for write is interpreted as allowing
540 1.1 bouyer * creation of files in the directory.
541 1.1 bouyer */
542 1.54 pooka error = VOP_ACCESS(vdp, VWRITE, cred);
543 1.29 mycroft if (error)
544 1.1 bouyer return (error);
545 1.1 bouyer /*
546 1.1 bouyer * Return an indication of where the new directory
547 1.1 bouyer * entry should be put. If we didn't find a slot,
548 1.65 dholland * then set results->ulr_count to 0 indicating
549 1.1 bouyer * that the new slot belongs at the end of the
550 1.1 bouyer * directory. If we found a slot, then the new entry
551 1.65 dholland * can be put in the range from results->ulr_offset to
552 1.65 dholland * results->ulr_offset + results->ulr_count.
553 1.1 bouyer */
554 1.1 bouyer if (slotstatus == NONE) {
555 1.65 dholland results->ulr_offset = roundup(ext2fs_size(dp), dirblksiz);
556 1.65 dholland results->ulr_count = 0;
557 1.65 dholland enduseful = results->ulr_offset;
558 1.1 bouyer } else {
559 1.65 dholland results->ulr_offset = slotoffset;
560 1.65 dholland results->ulr_count = slotsize;
561 1.1 bouyer if (enduseful < slotoffset + slotsize)
562 1.1 bouyer enduseful = slotoffset + slotsize;
563 1.1 bouyer }
564 1.65 dholland results->ulr_endoff = roundup(enduseful, dirblksiz);
565 1.29 mycroft #if 0
566 1.1 bouyer dp->i_flag |= IN_CHANGE | IN_UPDATE;
567 1.29 mycroft #endif
568 1.1 bouyer /*
569 1.1 bouyer * We return with the directory locked, so that
570 1.1 bouyer * the parameters we set up above will still be
571 1.1 bouyer * valid if we actually decide to do a direnter().
572 1.1 bouyer * We return ni_vp == NULL to indicate that the entry
573 1.1 bouyer * does not currently exist; we leave a pointer to
574 1.1 bouyer * the (locked) directory inode in ndp->ni_dvp.
575 1.1 bouyer *
576 1.1 bouyer * NB - if the directory is unlocked, then this
577 1.1 bouyer * information cannot be used.
578 1.1 bouyer */
579 1.1 bouyer return (EJUSTRETURN);
580 1.1 bouyer }
581 1.1 bouyer /*
582 1.1 bouyer * Insert name into cache (as non-existent) if appropriate.
583 1.1 bouyer */
584 1.70 rmind if (nameiop != CREATE) {
585 1.72 dholland cache_enter(vdp, *vpp, cnp->cn_nameptr, cnp->cn_namelen,
586 1.72 dholland cnp->cn_flags);
587 1.70 rmind }
588 1.70 rmind return ENOENT;
589 1.1 bouyer
590 1.1 bouyer found:
591 1.29 mycroft if (numdirpasses == 2)
592 1.77 joerg namecache_count_pass2();
593 1.1 bouyer /*
594 1.1 bouyer * Check that directory length properly reflects presence
595 1.1 bouyer * of this entry.
596 1.1 bouyer */
597 1.65 dholland if (results->ulr_offset + EXT2FS_DIRSIZ(ep->e2d_namlen) > ext2fs_size(dp)) {
598 1.65 dholland ufs_dirbad(dp, results->ulr_offset, "i_size too small");
599 1.31 ws error = ext2fs_setsize(dp,
600 1.65 dholland results->ulr_offset + EXT2FS_DIRSIZ(ep->e2d_namlen));
601 1.31 ws if (error) {
602 1.53 ad brelse(bp, 0);
603 1.31 ws return (error);
604 1.31 ws }
605 1.1 bouyer dp->i_flag |= IN_CHANGE | IN_UPDATE;
606 1.34 kml uvm_vnp_setsize(vdp, ext2fs_size(dp));
607 1.1 bouyer }
608 1.53 ad brelse(bp, 0);
609 1.1 bouyer
610 1.1 bouyer /*
611 1.1 bouyer * Found component in pathname.
612 1.1 bouyer * If the final component of path name, save information
613 1.1 bouyer * in the cache as to where the entry was found.
614 1.1 bouyer */
615 1.1 bouyer if ((flags & ISLASTCN) && nameiop == LOOKUP)
616 1.65 dholland results->ulr_diroff = results->ulr_offset &~ (dirblksiz - 1);
617 1.1 bouyer
618 1.1 bouyer /*
619 1.1 bouyer * If deleting, and at end of pathname, return
620 1.1 bouyer * parameters which can be used to remove file.
621 1.47 chs * Lock the inode, being careful with ".".
622 1.1 bouyer */
623 1.1 bouyer if (nameiop == DELETE && (flags & ISLASTCN)) {
624 1.1 bouyer /*
625 1.65 dholland * Return pointer to current entry in results->ulr_offset,
626 1.1 bouyer * and distance past previous entry (if there
627 1.65 dholland * is a previous entry in this block) in results->ulr_count.
628 1.1 bouyer * Save directory inode pointer in ndp->ni_dvp for dirremove().
629 1.1 bouyer */
630 1.65 dholland if ((results->ulr_offset & (dirblksiz - 1)) == 0)
631 1.65 dholland results->ulr_count = 0;
632 1.1 bouyer else
633 1.65 dholland results->ulr_count = results->ulr_offset - prevoff;
634 1.69 hannken if (dp->i_number == foundino) {
635 1.69 hannken vref(vdp);
636 1.69 hannken tdp = vdp;
637 1.69 hannken } else {
638 1.75 hannken error = vcache_get(vdp->v_mount,
639 1.75 hannken &foundino, sizeof(foundino), &tdp);
640 1.69 hannken if (error)
641 1.69 hannken return (error);
642 1.69 hannken }
643 1.1 bouyer /*
644 1.68 elad * Write access to directory required to delete files.
645 1.68 elad */
646 1.68 elad if ((error = VOP_ACCESS(vdp, VWRITE, cred)) != 0) {
647 1.75 hannken vrele(tdp);
648 1.68 elad return (error);
649 1.68 elad }
650 1.68 elad /*
651 1.1 bouyer * If directory is "sticky", then user must own
652 1.1 bouyer * the directory, or the file in it, else she
653 1.1 bouyer * may not delete it (unless she's root). This
654 1.1 bouyer * implements append-only directories.
655 1.1 bouyer */
656 1.68 elad if (dp->i_e2fs_mode & ISVTX) {
657 1.68 elad error = kauth_authorize_vnode(cred, KAUTH_VNODE_DELETE,
658 1.68 elad tdp, vdp, genfs_can_sticky(cred, dp->i_uid,
659 1.68 elad VTOI(tdp)->i_uid));
660 1.68 elad if (error) {
661 1.75 hannken vrele(tdp);
662 1.68 elad return (EPERM);
663 1.68 elad }
664 1.68 elad }
665 1.1 bouyer *vpp = tdp;
666 1.1 bouyer return (0);
667 1.1 bouyer }
668 1.1 bouyer
669 1.1 bouyer /*
670 1.1 bouyer * If rewriting (RENAME), return the inode and the
671 1.1 bouyer * information required to rewrite the present directory
672 1.1 bouyer * Must get inode of directory entry to verify it's a
673 1.1 bouyer * regular file, or empty directory.
674 1.1 bouyer */
675 1.47 chs if (nameiop == RENAME && (flags & ISLASTCN)) {
676 1.54 pooka error = VOP_ACCESS(vdp, VWRITE, cred);
677 1.9 bouyer if (error)
678 1.1 bouyer return (error);
679 1.1 bouyer /*
680 1.1 bouyer * Careful about locking second inode.
681 1.1 bouyer * This can only occur if the target is ".".
682 1.1 bouyer */
683 1.23 yamt if (dp->i_number == foundino)
684 1.1 bouyer return (EISDIR);
685 1.75 hannken error = vcache_get(vdp->v_mount,
686 1.75 hannken &foundino, sizeof(foundino), &tdp);
687 1.9 bouyer if (error)
688 1.1 bouyer return (error);
689 1.1 bouyer *vpp = tdp;
690 1.1 bouyer return (0);
691 1.1 bouyer }
692 1.1 bouyer
693 1.75 hannken if (dp->i_number == foundino) {
694 1.61 pooka vref(vdp); /* we want ourself, ie "." */
695 1.1 bouyer *vpp = vdp;
696 1.1 bouyer } else {
697 1.75 hannken error = vcache_get(vdp->v_mount,
698 1.75 hannken &foundino, sizeof(foundino), &tdp);
699 1.29 mycroft if (error)
700 1.1 bouyer return (error);
701 1.1 bouyer *vpp = tdp;
702 1.1 bouyer }
703 1.1 bouyer
704 1.1 bouyer /*
705 1.1 bouyer * Insert name into cache if appropriate.
706 1.1 bouyer */
707 1.72 dholland cache_enter(vdp, *vpp, cnp->cn_nameptr, cnp->cn_namelen, cnp->cn_flags);
708 1.70 rmind return 0;
709 1.1 bouyer }
710 1.1 bouyer
711 1.80 christos int
712 1.80 christos ext2fs_search_dirblock(struct inode *ip, void *data, int *foundp,
713 1.80 christos const char *name, int namelen, int *entryoffsetinblockp,
714 1.80 christos doff_t *offp, doff_t *prevoffp, doff_t *endusefulp,
715 1.80 christos struct ext2fs_searchslot *ssp)
716 1.80 christos {
717 1.80 christos struct vnode *vdp = ITOV(ip);
718 1.80 christos struct ext2fs_direct *ep, *top;
719 1.80 christos uint32_t bsize = ip->i_e2fs->e2fs_bsize;
720 1.80 christos int offset = *entryoffsetinblockp;
721 1.80 christos int namlen;
722 1.80 christos
723 1.80 christos ep = (void *)((char *)data + offset);
724 1.80 christos top = (void *)((char *)data + bsize - EXT2_DIR_REC_LEN(0));
725 1.80 christos
726 1.80 christos while (ep < top) {
727 1.80 christos /*
728 1.80 christos * Full validation checks are slow, so we only check
729 1.80 christos * enough to insure forward progress through the
730 1.80 christos * directory. Complete checks can be run by setting
731 1.80 christos * "vfs.e2fs.dirchk" to be true.
732 1.80 christos */
733 1.80 christos if (ep->e2d_reclen == 0 ||
734 1.80 christos (dirchk && ext2fs_dirbadentry(vdp, ep, offset))) {
735 1.80 christos int i;
736 1.80 christos ufs_dirbad(ip, *offp, "mangled entry");
737 1.80 christos i = bsize - (offset & (bsize - 1));
738 1.80 christos *offp += i;
739 1.80 christos offset += i;
740 1.80 christos continue;
741 1.80 christos }
742 1.80 christos
743 1.80 christos /*
744 1.80 christos * If an appropriate sized slot has not yet been found,
745 1.80 christos * check to see if one is available. Also accumulate space
746 1.80 christos * in the current block so that we can determine if
747 1.80 christos * compaction is viable.
748 1.80 christos */
749 1.80 christos if (ssp->slotstatus != FOUND) {
750 1.80 christos int size = ep->e2d_reclen;
751 1.80 christos
752 1.80 christos if (ep->e2d_ino != 0)
753 1.80 christos size -= EXT2_DIR_REC_LEN(ep->e2d_namlen);
754 1.80 christos if (size >= ssp->slotneeded) {
755 1.80 christos ssp->slotstatus = FOUND;
756 1.80 christos ssp->slotoffset = *offp;
757 1.80 christos ssp->slotsize = ep->e2d_reclen;
758 1.80 christos } else if (size > 0 && ssp->slotstatus == NONE) {
759 1.80 christos ssp->slotfreespace += size;
760 1.80 christos if (ssp->slotoffset == -1)
761 1.80 christos ssp->slotoffset = *offp;
762 1.80 christos if (ssp->slotfreespace >= ssp->slotneeded) {
763 1.80 christos ssp->slotstatus = COMPACT;
764 1.80 christos ssp->slotsize = *offp + ep->e2d_reclen -
765 1.80 christos ssp->slotoffset;
766 1.80 christos }
767 1.80 christos }
768 1.80 christos }
769 1.80 christos
770 1.80 christos /*
771 1.80 christos * Check for a name match.
772 1.80 christos */
773 1.80 christos if (ep->e2d_ino) {
774 1.80 christos namlen = ep->e2d_namlen;
775 1.80 christos if (namlen == namelen &&
776 1.80 christos !memcmp(name, ep->e2d_name, (unsigned)namlen)) {
777 1.80 christos /*
778 1.80 christos * Save directory entry's inode number and
779 1.80 christos * reclen in ndp->ni_ufs area, and release
780 1.80 christos * directory buffer.
781 1.80 christos */
782 1.80 christos *foundp = 1;
783 1.80 christos return 0;
784 1.80 christos }
785 1.80 christos }
786 1.80 christos *prevoffp = *offp;
787 1.80 christos *offp += ep->e2d_reclen;
788 1.80 christos offset += ep->e2d_reclen;
789 1.80 christos *entryoffsetinblockp = offset;
790 1.80 christos if (ep->e2d_ino)
791 1.80 christos *endusefulp = *offp;
792 1.80 christos /*
793 1.80 christos * Get pointer to the next entry.
794 1.80 christos */
795 1.80 christos ep = (void *)((char *)data + offset);
796 1.80 christos }
797 1.80 christos
798 1.80 christos return 0;
799 1.80 christos }
800 1.80 christos
801 1.1 bouyer /*
802 1.1 bouyer * Do consistency checking on a directory entry:
803 1.1 bouyer * record length must be multiple of 4
804 1.1 bouyer * entry must fit in rest of its dirblksize block
805 1.1 bouyer * record must be large enough to contain entry
806 1.36 christos * name is not longer than EXT2FS_MAXNAMLEN
807 1.1 bouyer * name must be as long as advertised, and null terminated
808 1.1 bouyer */
809 1.1 bouyer /*
810 1.1 bouyer * changed so that it confirms to ext2fs_check_dir_entry
811 1.1 bouyer */
812 1.1 bouyer static int
813 1.37 xtraeme ext2fs_dirbadentry(struct vnode *dp, struct ext2fs_direct *de,
814 1.37 xtraeme int entryoffsetinblock)
815 1.1 bouyer {
816 1.29 mycroft struct ufsmount *ump = VFSTOUFS(dp->v_mount);
817 1.29 mycroft int dirblksiz = ump->um_dirblksiz;
818 1.1 bouyer
819 1.33 christos const char *error_msg = NULL;
820 1.3 bouyer int reclen = fs2h16(de->e2d_reclen);
821 1.13 bouyer int namlen = de->e2d_namlen;
822 1.1 bouyer
823 1.3 bouyer if (reclen < EXT2FS_DIRSIZ(1)) /* e2d_namlen = 1 */
824 1.36 christos error_msg = "rec_len is smaller than minimal";
825 1.3 bouyer else if (reclen % 4 != 0)
826 1.36 christos error_msg = "rec_len % 4 != 0";
827 1.36 christos else if (namlen > EXT2FS_MAXNAMLEN)
828 1.36 christos error_msg = "namlen > EXT2FS_MAXNAMLEN";
829 1.3 bouyer else if (reclen < EXT2FS_DIRSIZ(namlen))
830 1.36 christos error_msg = "reclen is too small for name_len";
831 1.29 mycroft else if (entryoffsetinblock + reclen > dirblksiz)
832 1.36 christos error_msg = "directory entry across blocks";
833 1.9 bouyer else if (fs2h32(de->e2d_ino) >
834 1.9 bouyer VTOI(dp)->i_e2fs->e2fs.e2fs_icount)
835 1.36 christos error_msg = "inode out of bounds";
836 1.1 bouyer
837 1.1 bouyer if (error_msg != NULL) {
838 1.1 bouyer printf( "bad directory entry: %s\n"
839 1.9 bouyer "offset=%d, inode=%lu, rec_len=%d, name_len=%d \n",
840 1.9 bouyer error_msg, entryoffsetinblock,
841 1.9 bouyer (unsigned long) fs2h32(de->e2d_ino),
842 1.9 bouyer reclen, namlen);
843 1.1 bouyer panic("ext2fs_dirbadentry");
844 1.1 bouyer }
845 1.1 bouyer return error_msg == NULL ? 0 : 1;
846 1.1 bouyer }
847 1.1 bouyer
848 1.1 bouyer /*
849 1.1 bouyer * Write a directory entry after a call to namei, using the parameters
850 1.1 bouyer * that it left in nameidata. The argument ip is the inode which the new
851 1.1 bouyer * directory entry will refer to. Dvp is a pointer to the directory to
852 1.1 bouyer * be written, which was left locked by namei. Remaining parameters
853 1.65 dholland * (ulr_offset, ulr_count) indicate how the space for the new
854 1.1 bouyer * entry is to be obtained.
855 1.1 bouyer */
856 1.1 bouyer int
857 1.66 dholland ext2fs_direnter(struct inode *ip, struct vnode *dvp,
858 1.66 dholland const struct ufs_lookup_results *ulr,
859 1.66 dholland struct componentname *cnp)
860 1.1 bouyer {
861 1.15 augustss struct ext2fs_direct *ep, *nep;
862 1.15 augustss struct inode *dp;
863 1.1 bouyer struct buf *bp;
864 1.1 bouyer struct ext2fs_direct newdir;
865 1.1 bouyer struct iovec aiov;
866 1.1 bouyer struct uio auio;
867 1.1 bouyer u_int dsize;
868 1.1 bouyer int error, loc, newentrysize, spacefree;
869 1.1 bouyer char *dirbuf;
870 1.29 mycroft struct ufsmount *ump = VFSTOUFS(dvp->v_mount);
871 1.29 mycroft int dirblksiz = ump->um_dirblksiz;
872 1.1 bouyer
873 1.1 bouyer dp = VTOI(dvp);
874 1.65 dholland
875 1.3 bouyer newdir.e2d_ino = h2fs32(ip->i_number);
876 1.13 bouyer newdir.e2d_namlen = cnp->cn_namelen;
877 1.13 bouyer if (ip->i_e2fs->e2fs.e2fs_rev > E2FS_REV0 &&
878 1.13 bouyer (ip->i_e2fs->e2fs.e2fs_features_incompat & EXT2F_INCOMPAT_FTYPE)) {
879 1.24 fvdl newdir.e2d_type = inot2ext2dt(IFTODT(ip->i_e2fs_mode));
880 1.13 bouyer } else {
881 1.13 bouyer newdir.e2d_type = 0;
882 1.57 tsutsui }
883 1.7 perry memcpy(newdir.e2d_name, cnp->cn_nameptr, (unsigned)cnp->cn_namelen + 1);
884 1.3 bouyer newentrysize = EXT2FS_DIRSIZ(cnp->cn_namelen);
885 1.65 dholland if (ulr->ulr_count == 0) {
886 1.1 bouyer /*
887 1.65 dholland * If ulr_count is 0, then namei could find no
888 1.65 dholland * space in the directory. Here, ulr_offset will
889 1.1 bouyer * be on a directory block boundary and we will write the
890 1.1 bouyer * new entry into a fresh block.
891 1.1 bouyer */
892 1.65 dholland if (ulr->ulr_offset & (dirblksiz - 1))
893 1.1 bouyer panic("ext2fs_direnter: newblk");
894 1.65 dholland auio.uio_offset = ulr->ulr_offset;
895 1.29 mycroft newdir.e2d_reclen = h2fs16(dirblksiz);
896 1.1 bouyer auio.uio_resid = newentrysize;
897 1.1 bouyer aiov.iov_len = newentrysize;
898 1.50 christos aiov.iov_base = (void *)&newdir;
899 1.1 bouyer auio.uio_iov = &aiov;
900 1.1 bouyer auio.uio_iovcnt = 1;
901 1.1 bouyer auio.uio_rw = UIO_WRITE;
902 1.40 yamt UIO_SETUP_SYSSPACE(&auio);
903 1.79 riastrad error = ext2fs_bufwr(dvp, &auio, IO_SYNC, cnp->cn_cred);
904 1.29 mycroft if (dirblksiz > dvp->v_mount->mnt_stat.f_bsize)
905 1.1 bouyer /* XXX should grow with balloc() */
906 1.1 bouyer panic("ext2fs_direnter: frag size");
907 1.1 bouyer else if (!error) {
908 1.31 ws error = ext2fs_setsize(dp,
909 1.31 ws roundup(ext2fs_size(dp), dirblksiz));
910 1.31 ws if (error)
911 1.31 ws return (error);
912 1.1 bouyer dp->i_flag |= IN_CHANGE;
913 1.34 kml uvm_vnp_setsize(dvp, ext2fs_size(dp));
914 1.1 bouyer }
915 1.1 bouyer return (error);
916 1.1 bouyer }
917 1.1 bouyer
918 1.1 bouyer /*
919 1.65 dholland * If ulr_count is non-zero, then namei found space
920 1.65 dholland * for the new entry in the range ulr_offset to
921 1.65 dholland * ulr_offset + ulr_count in the directory.
922 1.1 bouyer * To use this space, we may have to compact the entries located
923 1.1 bouyer * there, by copying them together towards the beginning of the
924 1.1 bouyer * block, leaving the free space in one usable chunk at the end.
925 1.1 bouyer */
926 1.1 bouyer
927 1.1 bouyer /*
928 1.1 bouyer * Get the block containing the space for the new directory entry.
929 1.1 bouyer */
930 1.65 dholland if ((error = ext2fs_blkatoff(dvp, (off_t)ulr->ulr_offset, &dirbuf, &bp)) != 0)
931 1.1 bouyer return (error);
932 1.1 bouyer /*
933 1.1 bouyer * Find space for the new entry. In the simple case, the entry at
934 1.1 bouyer * offset base will have the space. If it does not, then namei
935 1.65 dholland * arranged that compacting the region ulr_offset to
936 1.65 dholland * ulr_offset + ulr_count would yield the
937 1.1 bouyer * space.
938 1.1 bouyer */
939 1.1 bouyer ep = (struct ext2fs_direct *)dirbuf;
940 1.13 bouyer dsize = EXT2FS_DIRSIZ(ep->e2d_namlen);
941 1.3 bouyer spacefree = fs2h16(ep->e2d_reclen) - dsize;
942 1.65 dholland for (loc = fs2h16(ep->e2d_reclen); loc < ulr->ulr_count; ) {
943 1.1 bouyer nep = (struct ext2fs_direct *)(dirbuf + loc);
944 1.1 bouyer if (ep->e2d_ino) {
945 1.1 bouyer /* trim the existing slot */
946 1.3 bouyer ep->e2d_reclen = h2fs16(dsize);
947 1.1 bouyer ep = (struct ext2fs_direct *)((char *)ep + dsize);
948 1.1 bouyer } else {
949 1.1 bouyer /* overwrite; nothing there; header is ours */
950 1.1 bouyer spacefree += dsize;
951 1.1 bouyer }
952 1.13 bouyer dsize = EXT2FS_DIRSIZ(nep->e2d_namlen);
953 1.3 bouyer spacefree += fs2h16(nep->e2d_reclen) - dsize;
954 1.3 bouyer loc += fs2h16(nep->e2d_reclen);
955 1.50 christos memcpy((void *)ep, (void *)nep, dsize);
956 1.1 bouyer }
957 1.1 bouyer /*
958 1.1 bouyer * Update the pointer fields in the previous entry (if any),
959 1.1 bouyer * copy in the new entry, and write out the block.
960 1.1 bouyer */
961 1.1 bouyer if (ep->e2d_ino == 0) {
962 1.1 bouyer #ifdef DIAGNOSTIC
963 1.1 bouyer if (spacefree + dsize < newentrysize)
964 1.1 bouyer panic("ext2fs_direnter: compact1");
965 1.1 bouyer #endif
966 1.3 bouyer newdir.e2d_reclen = h2fs16(spacefree + dsize);
967 1.1 bouyer } else {
968 1.1 bouyer #ifdef DIAGNOSTIC
969 1.1 bouyer if (spacefree < newentrysize) {
970 1.1 bouyer printf("ext2fs_direnter: compact2 %u %u",
971 1.9 bouyer (u_int)spacefree, (u_int)newentrysize);
972 1.1 bouyer panic("ext2fs_direnter: compact2");
973 1.1 bouyer }
974 1.1 bouyer #endif
975 1.3 bouyer newdir.e2d_reclen = h2fs16(spacefree);
976 1.3 bouyer ep->e2d_reclen = h2fs16(dsize);
977 1.1 bouyer ep = (struct ext2fs_direct *)((char *)ep + dsize);
978 1.1 bouyer }
979 1.50 christos memcpy((void *)ep, (void *)&newdir, (u_int)newentrysize);
980 1.64 hannken error = VOP_BWRITE(bp->b_vp, bp);
981 1.1 bouyer dp->i_flag |= IN_CHANGE | IN_UPDATE;
982 1.65 dholland if (!error && ulr->ulr_endoff && ulr->ulr_endoff < ext2fs_size(dp))
983 1.65 dholland error = ext2fs_truncate(dvp, (off_t)ulr->ulr_endoff, IO_SYNC,
984 1.55 pooka cnp->cn_cred);
985 1.1 bouyer return (error);
986 1.1 bouyer }
987 1.1 bouyer
988 1.1 bouyer /*
989 1.1 bouyer * Remove a directory entry after a call to namei, using
990 1.65 dholland * the auxiliary results it provided. The entry
991 1.65 dholland * ulr_offset contains the offset into the directory of the
992 1.65 dholland * entry to be eliminated. The ulr_count field contains the
993 1.1 bouyer * size of the previous record in the directory. If this
994 1.1 bouyer * is 0, the first entry is being deleted, so we need only
995 1.1 bouyer * zero the inode number to mark the entry as free. If the
996 1.1 bouyer * entry is not the first in the directory, we must reclaim
997 1.1 bouyer * the space of the now empty record by adding the record size
998 1.1 bouyer * to the size of the previous entry.
999 1.1 bouyer */
1000 1.1 bouyer int
1001 1.66 dholland ext2fs_dirremove(struct vnode *dvp, const struct ufs_lookup_results *ulr,
1002 1.66 dholland struct componentname *cnp)
1003 1.1 bouyer {
1004 1.15 augustss struct inode *dp;
1005 1.1 bouyer struct ext2fs_direct *ep;
1006 1.1 bouyer struct buf *bp;
1007 1.1 bouyer int error;
1008 1.32 perry
1009 1.1 bouyer dp = VTOI(dvp);
1010 1.65 dholland
1011 1.65 dholland if (ulr->ulr_count == 0) {
1012 1.1 bouyer /*
1013 1.1 bouyer * First entry in block: set d_ino to zero.
1014 1.1 bouyer */
1015 1.65 dholland error = ext2fs_blkatoff(dvp, (off_t)ulr->ulr_offset,
1016 1.22 thorpej (void *)&ep, &bp);
1017 1.1 bouyer if (error != 0)
1018 1.1 bouyer return (error);
1019 1.1 bouyer ep->e2d_ino = 0;
1020 1.64 hannken error = VOP_BWRITE(bp->b_vp, bp);
1021 1.1 bouyer dp->i_flag |= IN_CHANGE | IN_UPDATE;
1022 1.1 bouyer return (error);
1023 1.1 bouyer }
1024 1.1 bouyer /*
1025 1.1 bouyer * Collapse new free space into previous entry.
1026 1.1 bouyer */
1027 1.65 dholland error = ext2fs_blkatoff(dvp, (off_t)(ulr->ulr_offset - ulr->ulr_count),
1028 1.22 thorpej (void *)&ep, &bp);
1029 1.1 bouyer if (error != 0)
1030 1.1 bouyer return (error);
1031 1.65 dholland ep->e2d_reclen = h2fs16(fs2h16(ep->e2d_reclen) + ulr->ulr_reclen);
1032 1.64 hannken error = VOP_BWRITE(bp->b_vp, bp);
1033 1.1 bouyer dp->i_flag |= IN_CHANGE | IN_UPDATE;
1034 1.1 bouyer return (error);
1035 1.1 bouyer }
1036 1.1 bouyer
1037 1.1 bouyer /*
1038 1.1 bouyer * Rewrite an existing directory entry to point at the inode
1039 1.1 bouyer * supplied. The parameters describing the directory entry are
1040 1.1 bouyer * set up by a call to namei.
1041 1.1 bouyer */
1042 1.1 bouyer int
1043 1.66 dholland ext2fs_dirrewrite(struct inode *dp, const struct ufs_lookup_results *ulr,
1044 1.66 dholland struct inode *ip, struct componentname *cnp)
1045 1.1 bouyer {
1046 1.1 bouyer struct buf *bp;
1047 1.1 bouyer struct ext2fs_direct *ep;
1048 1.1 bouyer struct vnode *vdp = ITOV(dp);
1049 1.1 bouyer int error;
1050 1.1 bouyer
1051 1.65 dholland error = ext2fs_blkatoff(vdp, (off_t)ulr->ulr_offset, (void *)&ep, &bp);
1052 1.1 bouyer if (error != 0)
1053 1.1 bouyer return (error);
1054 1.3 bouyer ep->e2d_ino = h2fs32(ip->i_number);
1055 1.13 bouyer if (ip->i_e2fs->e2fs.e2fs_rev > E2FS_REV0 &&
1056 1.13 bouyer (ip->i_e2fs->e2fs.e2fs_features_incompat & EXT2F_INCOMPAT_FTYPE)) {
1057 1.24 fvdl ep->e2d_type = inot2ext2dt(IFTODT(ip->i_e2fs_mode));
1058 1.13 bouyer } else {
1059 1.13 bouyer ep->e2d_type = 0;
1060 1.13 bouyer }
1061 1.64 hannken error = VOP_BWRITE(bp->b_vp, bp);
1062 1.1 bouyer dp->i_flag |= IN_CHANGE | IN_UPDATE;
1063 1.1 bouyer return (error);
1064 1.1 bouyer }
1065 1.1 bouyer
1066 1.1 bouyer /*
1067 1.1 bouyer * Check if a directory is empty or not.
1068 1.1 bouyer * Inode supplied must be locked.
1069 1.1 bouyer *
1070 1.1 bouyer * Using a struct dirtemplate here is not precisely
1071 1.1 bouyer * what we want, but better than using a struct ext2fs_direct.
1072 1.1 bouyer *
1073 1.1 bouyer * NB: does not handle corrupted directories.
1074 1.1 bouyer */
1075 1.1 bouyer int
1076 1.44 elad ext2fs_dirempty(struct inode *ip, ino_t parentino, kauth_cred_t cred)
1077 1.1 bouyer {
1078 1.15 augustss off_t off;
1079 1.1 bouyer struct ext2fs_dirtemplate dbuf;
1080 1.15 augustss struct ext2fs_direct *dp = (struct ext2fs_direct *)&dbuf;
1081 1.6 mjacob int error, namlen;
1082 1.6 mjacob size_t count;
1083 1.32 perry
1084 1.1 bouyer #define MINDIRSIZ (sizeof (struct ext2fs_dirtemplate) / 2)
1085 1.1 bouyer
1086 1.31 ws for (off = 0; off < ext2fs_size(ip); off += fs2h16(dp->e2d_reclen)) {
1087 1.78 riastrad error = ufs_bufio(UIO_READ, ITOV(ip), (void *)dp, MINDIRSIZ,
1088 1.78 riastrad off, IO_NODELOCKED, cred, &count, NULL);
1089 1.1 bouyer /*
1090 1.1 bouyer * Since we read MINDIRSIZ, residual must
1091 1.1 bouyer * be 0 unless we're at end of file.
1092 1.1 bouyer */
1093 1.1 bouyer if (error || count != 0)
1094 1.1 bouyer return (0);
1095 1.1 bouyer /* avoid infinite loops */
1096 1.1 bouyer if (dp->e2d_reclen == 0)
1097 1.1 bouyer return (0);
1098 1.1 bouyer /* skip empty entries */
1099 1.1 bouyer if (dp->e2d_ino == 0)
1100 1.1 bouyer continue;
1101 1.1 bouyer /* accept only "." and ".." */
1102 1.13 bouyer namlen = dp->e2d_namlen;
1103 1.1 bouyer if (namlen > 2)
1104 1.1 bouyer return (0);
1105 1.1 bouyer if (dp->e2d_name[0] != '.')
1106 1.1 bouyer return (0);
1107 1.1 bouyer /*
1108 1.1 bouyer * At this point namlen must be 1 or 2.
1109 1.1 bouyer * 1 implies ".", 2 implies ".." if second
1110 1.1 bouyer * char is also "."
1111 1.1 bouyer */
1112 1.1 bouyer if (namlen == 1)
1113 1.1 bouyer continue;
1114 1.3 bouyer if (dp->e2d_name[1] == '.' && fs2h32(dp->e2d_ino) == parentino)
1115 1.1 bouyer continue;
1116 1.1 bouyer return (0);
1117 1.1 bouyer }
1118 1.1 bouyer return (1);
1119 1.1 bouyer }
1120