lfs_inode.c revision 1.132 1 1.132 christos /* $NetBSD: lfs_inode.c,v 1.132 2013/06/18 18:18:58 christos Exp $ */
2 1.2 cgd
3 1.18 perseant /*-
4 1.64 perseant * Copyright (c) 1999, 2000, 2001, 2002, 2003 The NetBSD Foundation, Inc.
5 1.18 perseant * All rights reserved.
6 1.18 perseant *
7 1.18 perseant * This code is derived from software contributed to The NetBSD Foundation
8 1.18 perseant * by Konrad E. Schroder <perseant (at) hhhh.org>.
9 1.18 perseant *
10 1.18 perseant * Redistribution and use in source and binary forms, with or without
11 1.18 perseant * modification, are permitted provided that the following conditions
12 1.18 perseant * are met:
13 1.18 perseant * 1. Redistributions of source code must retain the above copyright
14 1.18 perseant * notice, this list of conditions and the following disclaimer.
15 1.18 perseant * 2. Redistributions in binary form must reproduce the above copyright
16 1.18 perseant * notice, this list of conditions and the following disclaimer in the
17 1.18 perseant * documentation and/or other materials provided with the distribution.
18 1.18 perseant *
19 1.18 perseant * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.18 perseant * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.18 perseant * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.18 perseant * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.18 perseant * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.18 perseant * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.18 perseant * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.18 perseant * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.18 perseant * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.18 perseant * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.18 perseant * POSSIBILITY OF SUCH DAMAGE.
30 1.18 perseant */
31 1.1 mycroft /*
32 1.1 mycroft * Copyright (c) 1986, 1989, 1991, 1993
33 1.1 mycroft * The Regents of the University of California. All rights reserved.
34 1.1 mycroft *
35 1.1 mycroft * Redistribution and use in source and binary forms, with or without
36 1.1 mycroft * modification, are permitted provided that the following conditions
37 1.1 mycroft * are met:
38 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
39 1.1 mycroft * notice, this list of conditions and the following disclaimer.
40 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
41 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
42 1.1 mycroft * documentation and/or other materials provided with the distribution.
43 1.79 agc * 3. Neither the name of the University nor the names of its contributors
44 1.1 mycroft * may be used to endorse or promote products derived from this software
45 1.1 mycroft * without specific prior written permission.
46 1.1 mycroft *
47 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
48 1.1 mycroft * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
49 1.1 mycroft * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
50 1.1 mycroft * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
51 1.1 mycroft * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
52 1.1 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
53 1.1 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
54 1.1 mycroft * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
55 1.1 mycroft * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
56 1.1 mycroft * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
57 1.1 mycroft * SUCH DAMAGE.
58 1.1 mycroft *
59 1.12 fvdl * @(#)lfs_inode.c 8.9 (Berkeley) 5/8/95
60 1.1 mycroft */
61 1.55 lukem
62 1.55 lukem #include <sys/cdefs.h>
63 1.132 christos __KERNEL_RCSID(0, "$NetBSD: lfs_inode.c,v 1.132 2013/06/18 18:18:58 christos Exp $");
64 1.13 scottr
65 1.51 mrg #if defined(_KERNEL_OPT)
66 1.13 scottr #include "opt_quota.h"
67 1.14 scottr #endif
68 1.1 mycroft
69 1.1 mycroft #include <sys/param.h>
70 1.1 mycroft #include <sys/systm.h>
71 1.1 mycroft #include <sys/mount.h>
72 1.103 perseant #include <sys/malloc.h>
73 1.1 mycroft #include <sys/proc.h>
74 1.1 mycroft #include <sys/file.h>
75 1.1 mycroft #include <sys/buf.h>
76 1.1 mycroft #include <sys/vnode.h>
77 1.1 mycroft #include <sys/kernel.h>
78 1.38 perseant #include <sys/trace.h>
79 1.38 perseant #include <sys/resourcevar.h>
80 1.105 elad #include <sys/kauth.h>
81 1.1 mycroft
82 1.128 dholland #include <ufs/lfs/ulfs_quotacommon.h>
83 1.128 dholland #include <ufs/lfs/ulfs_inode.h>
84 1.128 dholland #include <ufs/lfs/ulfsmount.h>
85 1.128 dholland #include <ufs/lfs/ulfs_extern.h>
86 1.1 mycroft
87 1.1 mycroft #include <ufs/lfs/lfs.h>
88 1.1 mycroft #include <ufs/lfs/lfs_extern.h>
89 1.21 perseant
90 1.103 perseant static int lfs_update_seguse(struct lfs *, struct inode *ip, long, size_t);
91 1.62 fvdl static int lfs_indirtrunc (struct inode *, daddr_t, daddr_t,
92 1.115 pooka daddr_t, int, long *, long *, long *, size_t *);
93 1.103 perseant static int lfs_blkfree (struct lfs *, struct inode *, daddr_t, size_t, long *, size_t *);
94 1.116 ad static int lfs_vtruncbuf(struct vnode *, daddr_t, bool, int);
95 1.38 perseant
96 1.1 mycroft /* Search a block for a specific dinode. */
97 1.130 dholland struct ulfs1_dinode *
98 1.52 perseant lfs_ifind(struct lfs *fs, ino_t ino, struct buf *bp)
99 1.1 mycroft {
100 1.130 dholland struct ulfs1_dinode *dip = (struct ulfs1_dinode *)bp->b_data;
101 1.130 dholland struct ulfs1_dinode *ldip, *fin;
102 1.89 perry
103 1.91 perseant ASSERT_NO_SEGLOCK(fs);
104 1.52 perseant /*
105 1.59 perseant * Read the inode block backwards, since later versions of the
106 1.59 perseant * inode will supercede earlier ones. Though it is unlikely, it is
107 1.59 perseant * possible that the same inode will appear in the same inode block.
108 1.52 perseant */
109 1.132 christos fin = dip + LFS_INOPB(fs);
110 1.59 perseant for (ldip = fin - 1; ldip >= dip; --ldip)
111 1.1 mycroft if (ldip->di_inumber == ino)
112 1.1 mycroft return (ldip);
113 1.52 perseant
114 1.52 perseant printf("searched %d entries\n", (int)(fin - dip));
115 1.40 perseant printf("offset is 0x%x (seg %d)\n", fs->lfs_offset,
116 1.132 christos lfs_dtosn(fs, fs->lfs_offset));
117 1.62 fvdl printf("block is 0x%llx (seg %lld)\n",
118 1.132 christos (unsigned long long)LFS_DBTOFSB(fs, bp->b_blkno),
119 1.132 christos (long long)lfs_dtosn(fs, LFS_DBTOFSB(fs, bp->b_blkno)));
120 1.57 perseant
121 1.57 perseant return NULL;
122 1.1 mycroft }
123 1.1 mycroft
124 1.1 mycroft int
125 1.98 yamt lfs_update(struct vnode *vp, const struct timespec *acc,
126 1.98 yamt const struct timespec *mod, int updflags)
127 1.4 christos {
128 1.1 mycroft struct inode *ip;
129 1.130 dholland struct lfs *fs = VFSTOULFS(vp->v_mount)->um_lfs;
130 1.84 mycroft int flags;
131 1.89 perry
132 1.91 perseant ASSERT_NO_SEGLOCK(fs);
133 1.12 fvdl if (vp->v_mount->mnt_flag & MNT_RDONLY)
134 1.1 mycroft return (0);
135 1.12 fvdl ip = VTOI(vp);
136 1.18 perseant
137 1.18 perseant /*
138 1.18 perseant * If we are called from vinvalbuf, and the file's blocks have
139 1.18 perseant * already been scheduled for writing, but the writes have not
140 1.18 perseant * yet completed, lfs_vflush will not be called, and vinvalbuf
141 1.65 perseant * will cause a panic. So, we must wait until any pending write
142 1.36 perseant * for our inode completes, if we are called with UPDATE_WAIT set.
143 1.18 perseant */
144 1.123 rmind mutex_enter(vp->v_interlock);
145 1.98 yamt while ((updflags & (UPDATE_WAIT|UPDATE_DIROP)) == UPDATE_WAIT &&
146 1.36 perseant WRITEINPROG(vp)) {
147 1.90 perseant DLOG((DLOG_SEG, "lfs_update: sleeping on ino %d"
148 1.90 perseant " (in progress)\n", ip->i_number));
149 1.123 rmind cv_wait(&vp->v_cv, vp->v_interlock);
150 1.18 perseant }
151 1.123 rmind mutex_exit(vp->v_interlock);
152 1.98 yamt LFS_ITIMES(ip, acc, mod, NULL);
153 1.98 yamt if (updflags & UPDATE_CLOSE)
154 1.84 mycroft flags = ip->i_flag & (IN_MODIFIED | IN_ACCESSED | IN_CLEANING);
155 1.84 mycroft else
156 1.84 mycroft flags = ip->i_flag & (IN_MODIFIED | IN_CLEANING);
157 1.84 mycroft if (flags == 0)
158 1.1 mycroft return (0);
159 1.89 perry
160 1.1 mycroft /* If sync, push back the vnode and any dirty blocks it may have. */
161 1.98 yamt if ((updflags & (UPDATE_WAIT|UPDATE_DIROP)) == UPDATE_WAIT) {
162 1.113 ad /* Avoid flushing VU_DIROP. */
163 1.116 ad mutex_enter(&lfs_lock);
164 1.25 perseant ++fs->lfs_diropwait;
165 1.113 ad while (vp->v_uflag & VU_DIROP) {
166 1.90 perseant DLOG((DLOG_DIROP, "lfs_update: sleeping on inode %d"
167 1.90 perseant " (dirops)\n", ip->i_number));
168 1.90 perseant DLOG((DLOG_DIROP, "lfs_update: vflags 0x%x, iflags"
169 1.116 ad " 0x%x\n",
170 1.116 ad vp->v_iflag | vp->v_vflag | vp->v_uflag,
171 1.113 ad ip->i_flag));
172 1.56 chs if (fs->lfs_dirops == 0)
173 1.109 perseant lfs_flush_fs(fs, SEGM_SYNC);
174 1.25 perseant else
175 1.116 ad mtsleep(&fs->lfs_writer, PRIBIO+1, "lfs_fsync",
176 1.116 ad 0, &lfs_lock);
177 1.25 perseant /* XXX KS - by falling out here, are we writing the vn
178 1.25 perseant twice? */
179 1.25 perseant }
180 1.25 perseant --fs->lfs_diropwait;
181 1.116 ad mutex_exit(&lfs_lock);
182 1.25 perseant return lfs_vflush(vp);
183 1.65 perseant }
184 1.25 perseant return 0;
185 1.1 mycroft }
186 1.1 mycroft
187 1.38 perseant #define SINGLE 0 /* index of single indirect block */
188 1.38 perseant #define DOUBLE 1 /* index of double indirect block */
189 1.38 perseant #define TRIPLE 2 /* index of triple indirect block */
190 1.1 mycroft /*
191 1.38 perseant * Truncate the inode oip to at most length size, freeing the
192 1.38 perseant * disk blocks.
193 1.1 mycroft */
194 1.130 dholland /* VOP_BWRITE 1 + ULFS_NIADDR + lfs_balloc == 2 + 2*ULFS_NIADDR times */
195 1.59 perseant
196 1.1 mycroft int
197 1.115 pooka lfs_truncate(struct vnode *ovp, off_t length, int ioflag, kauth_cred_t cred)
198 1.4 christos {
199 1.62 fvdl daddr_t lastblock;
200 1.85 mycroft struct inode *oip = VTOI(ovp);
201 1.130 dholland daddr_t bn, lbn, lastiblock[ULFS_NIADDR], indir_lbn[ULFS_NIADDR];
202 1.63 fvdl /* XXX ondisk32 */
203 1.130 dholland int32_t newblks[ULFS_NDADDR + ULFS_NIADDR];
204 1.1 mycroft struct lfs *fs;
205 1.38 perseant struct buf *bp;
206 1.38 perseant int offset, size, level;
207 1.88 mycroft long count, rcount, blocksreleased = 0, real_released = 0;
208 1.98 yamt int i, nblocks;
209 1.38 perseant int aflags, error, allerror = 0;
210 1.38 perseant off_t osize;
211 1.38 perseant long lastseg;
212 1.38 perseant size_t bc;
213 1.47 perseant int obufsize, odb;
214 1.71 perseant int usepc;
215 1.130 dholland struct ulfsmount *ump = oip->i_ump;
216 1.38 perseant
217 1.99 yamt if (ovp->v_type == VCHR || ovp->v_type == VBLK ||
218 1.99 yamt ovp->v_type == VFIFO || ovp->v_type == VSOCK) {
219 1.99 yamt KASSERT(oip->i_size == 0);
220 1.99 yamt return 0;
221 1.99 yamt }
222 1.99 yamt
223 1.33 perseant if (length < 0)
224 1.33 perseant return (EINVAL);
225 1.33 perseant
226 1.38 perseant /*
227 1.38 perseant * Just return and not update modification times.
228 1.38 perseant */
229 1.121 bouyer if (oip->i_size == length) {
230 1.121 bouyer /* still do a uvm_vnp_setsize() as writesize may be larger */
231 1.121 bouyer uvm_vnp_setsize(ovp, length);
232 1.38 perseant return (0);
233 1.121 bouyer }
234 1.1 mycroft
235 1.38 perseant if (ovp->v_type == VLNK &&
236 1.85 mycroft (oip->i_size < ump->um_maxsymlinklen ||
237 1.85 mycroft (ump->um_maxsymlinklen == 0 &&
238 1.72 fvdl oip->i_ffs1_blocks == 0))) {
239 1.1 mycroft #ifdef DIAGNOSTIC
240 1.1 mycroft if (length != 0)
241 1.1 mycroft panic("lfs_truncate: partial truncate of symlink");
242 1.1 mycroft #endif
243 1.72 fvdl memset((char *)SHORTLINK(oip), 0, (u_int)oip->i_size);
244 1.72 fvdl oip->i_size = oip->i_ffs1_size = 0;
245 1.38 perseant oip->i_flag |= IN_CHANGE | IN_UPDATE;
246 1.98 yamt return (lfs_update(ovp, NULL, NULL, 0));
247 1.38 perseant }
248 1.72 fvdl if (oip->i_size == length) {
249 1.38 perseant oip->i_flag |= IN_CHANGE | IN_UPDATE;
250 1.98 yamt return (lfs_update(ovp, NULL, NULL, 0));
251 1.1 mycroft }
252 1.38 perseant fs = oip->i_lfs;
253 1.18 perseant lfs_imtime(fs);
254 1.72 fvdl osize = oip->i_size;
255 1.67 perseant usepc = (ovp->v_type == VREG && ovp != fs->lfs_ivnode);
256 1.38 perseant
257 1.91 perseant ASSERT_NO_SEGLOCK(fs);
258 1.38 perseant /*
259 1.38 perseant * Lengthen the size of the file. We must ensure that the
260 1.38 perseant * last byte of the file is allocated. Since the smallest
261 1.38 perseant * value of osize is 0, length will be at least 1.
262 1.38 perseant */
263 1.38 perseant if (osize < length) {
264 1.85 mycroft if (length > ump->um_maxfilesize)
265 1.33 perseant return (EFBIG);
266 1.38 perseant aflags = B_CLRBUF;
267 1.88 mycroft if (ioflag & IO_SYNC)
268 1.38 perseant aflags |= B_SYNC;
269 1.67 perseant if (usepc) {
270 1.132 christos if (lfs_lblkno(fs, osize) < ULFS_NDADDR &&
271 1.132 christos lfs_lblkno(fs, osize) != lfs_lblkno(fs, length) &&
272 1.132 christos lfs_blkroundup(fs, osize) != osize) {
273 1.86 mycroft off_t eob;
274 1.86 mycroft
275 1.132 christos eob = lfs_blkroundup(fs, osize);
276 1.110 yamt uvm_vnp_setwritesize(ovp, eob);
277 1.130 dholland error = ulfs_balloc_range(ovp, osize,
278 1.98 yamt eob - osize, cred, aflags);
279 1.126 bouyer if (error) {
280 1.126 bouyer (void) lfs_truncate(ovp, osize,
281 1.126 bouyer ioflag & IO_SYNC, cred);
282 1.67 perseant return error;
283 1.126 bouyer }
284 1.88 mycroft if (ioflag & IO_SYNC) {
285 1.123 rmind mutex_enter(ovp->v_interlock);
286 1.67 perseant VOP_PUTPAGES(ovp,
287 1.67 perseant trunc_page(osize & fs->lfs_bmask),
288 1.86 mycroft round_page(eob),
289 1.67 perseant PGO_CLEANIT | PGO_SYNCIO);
290 1.67 perseant }
291 1.67 perseant }
292 1.110 yamt uvm_vnp_setwritesize(ovp, length);
293 1.130 dholland error = ulfs_balloc_range(ovp, length - 1, 1, cred,
294 1.67 perseant aflags);
295 1.67 perseant if (error) {
296 1.98 yamt (void) lfs_truncate(ovp, osize,
297 1.115 pooka ioflag & IO_SYNC, cred);
298 1.67 perseant return error;
299 1.67 perseant }
300 1.67 perseant uvm_vnp_setsize(ovp, length);
301 1.67 perseant oip->i_flag |= IN_CHANGE | IN_UPDATE;
302 1.72 fvdl KASSERT(ovp->v_size == oip->i_size);
303 1.132 christos oip->i_lfs_hiblk = lfs_lblkno(fs, oip->i_size + fs->lfs_bsize - 1) - 1;
304 1.98 yamt return (lfs_update(ovp, NULL, NULL, 0));
305 1.67 perseant } else {
306 1.67 perseant error = lfs_reserve(fs, ovp, NULL,
307 1.132 christos lfs_btofsb(fs, (ULFS_NIADDR + 2) << fs->lfs_bshift));
308 1.67 perseant if (error)
309 1.67 perseant return (error);
310 1.98 yamt error = lfs_balloc(ovp, length - 1, 1, cred,
311 1.67 perseant aflags, &bp);
312 1.67 perseant lfs_reserve(fs, ovp, NULL,
313 1.132 christos -lfs_btofsb(fs, (ULFS_NIADDR + 2) << fs->lfs_bshift));
314 1.67 perseant if (error)
315 1.67 perseant return (error);
316 1.72 fvdl oip->i_ffs1_size = oip->i_size = length;
317 1.67 perseant uvm_vnp_setsize(ovp, length);
318 1.125 hannken (void) VOP_BWRITE(bp->b_vp, bp);
319 1.67 perseant oip->i_flag |= IN_CHANGE | IN_UPDATE;
320 1.132 christos oip->i_lfs_hiblk = lfs_lblkno(fs, oip->i_size + fs->lfs_bsize - 1) - 1;
321 1.98 yamt return (lfs_update(ovp, NULL, NULL, 0));
322 1.67 perseant }
323 1.1 mycroft }
324 1.1 mycroft
325 1.61 yamt if ((error = lfs_reserve(fs, ovp, NULL,
326 1.132 christos lfs_btofsb(fs, (2 * ULFS_NIADDR + 3) << fs->lfs_bshift))) != 0)
327 1.44 perseant return (error);
328 1.64 perseant
329 1.1 mycroft /*
330 1.38 perseant * Shorten the size of the file. If the file is not being
331 1.38 perseant * truncated to a block boundary, the contents of the
332 1.38 perseant * partial block following the end of the file must be
333 1.38 perseant * zero'ed in case it ever becomes accessible again because
334 1.38 perseant * of subsequent file growth. Directories however are not
335 1.38 perseant * zero'ed as they should grow back initialized to empty.
336 1.38 perseant */
337 1.132 christos offset = lfs_blkoff(fs, length);
338 1.38 perseant lastseg = -1;
339 1.38 perseant bc = 0;
340 1.71 perseant
341 1.95 perseant if (ovp != fs->lfs_ivnode)
342 1.95 perseant lfs_seglock(fs, SEGM_PROT);
343 1.38 perseant if (offset == 0) {
344 1.72 fvdl oip->i_size = oip->i_ffs1_size = length;
345 1.70 perseant } else if (!usepc) {
346 1.132 christos lbn = lfs_lblkno(fs, length);
347 1.38 perseant aflags = B_CLRBUF;
348 1.88 mycroft if (ioflag & IO_SYNC)
349 1.38 perseant aflags |= B_SYNC;
350 1.98 yamt error = lfs_balloc(ovp, length - 1, 1, cred, aflags, &bp);
351 1.44 perseant if (error) {
352 1.61 yamt lfs_reserve(fs, ovp, NULL,
353 1.132 christos -lfs_btofsb(fs, (2 * ULFS_NIADDR + 3) << fs->lfs_bshift));
354 1.71 perseant goto errout;
355 1.44 perseant }
356 1.47 perseant obufsize = bp->b_bufsize;
357 1.132 christos odb = lfs_btofsb(fs, bp->b_bcount);
358 1.72 fvdl oip->i_size = oip->i_ffs1_size = length;
359 1.132 christos size = lfs_blksize(fs, oip, lbn);
360 1.38 perseant if (ovp->v_type != VDIR)
361 1.38 perseant memset((char *)bp->b_data + offset, 0,
362 1.38 perseant (u_int)(size - offset));
363 1.81 pk allocbuf(bp, size, 1);
364 1.117 ad if ((bp->b_flags & B_LOCKED) != 0 && bp->b_iodone == NULL) {
365 1.116 ad mutex_enter(&lfs_lock);
366 1.57 perseant locked_queue_bytes -= obufsize - bp->b_bufsize;
367 1.116 ad mutex_exit(&lfs_lock);
368 1.91 perseant }
369 1.116 ad if (bp->b_oflags & BO_DELWRI)
370 1.132 christos fs->lfs_avail += odb - lfs_btofsb(fs, size);
371 1.125 hannken (void) VOP_BWRITE(bp->b_vp, bp);
372 1.70 perseant } else { /* vp->v_type == VREG && length < osize && offset != 0 */
373 1.70 perseant /*
374 1.70 perseant * When truncating a regular file down to a non-block-aligned
375 1.70 perseant * size, we must zero the part of last block which is past
376 1.70 perseant * the new EOF. We must synchronously flush the zeroed pages
377 1.70 perseant * to disk since the new pages will be invalidated as soon
378 1.70 perseant * as we inform the VM system of the new, smaller size.
379 1.70 perseant * We must do this before acquiring the GLOCK, since fetching
380 1.70 perseant * the pages will acquire the GLOCK internally.
381 1.70 perseant * So there is a window where another thread could see a whole
382 1.70 perseant * zeroed page past EOF, but that's life.
383 1.70 perseant */
384 1.96 christos daddr_t xlbn;
385 1.87 mycroft voff_t eoz;
386 1.87 mycroft
387 1.88 mycroft aflags = ioflag & IO_SYNC ? B_SYNC : 0;
388 1.130 dholland error = ulfs_balloc_range(ovp, length - 1, 1, cred, aflags);
389 1.65 perseant if (error) {
390 1.83 oster lfs_reserve(fs, ovp, NULL,
391 1.132 christos -lfs_btofsb(fs, (2 * ULFS_NIADDR + 3) << fs->lfs_bshift));
392 1.71 perseant goto errout;
393 1.65 perseant }
394 1.132 christos xlbn = lfs_lblkno(fs, length);
395 1.132 christos size = lfs_blksize(fs, oip, xlbn);
396 1.132 christos eoz = MIN(lfs_lblktosize(fs, xlbn) + size, osize);
397 1.124 hannken ubc_zerorange(&ovp->v_uobj, length, eoz - length,
398 1.124 hannken UBC_UNMAP_FLAG(ovp));
399 1.87 mycroft if (round_page(eoz) > round_page(length)) {
400 1.123 rmind mutex_enter(ovp->v_interlock);
401 1.87 mycroft error = VOP_PUTPAGES(ovp, round_page(length),
402 1.87 mycroft round_page(eoz),
403 1.88 mycroft PGO_CLEANIT | PGO_DEACTIVATE |
404 1.88 mycroft ((ioflag & IO_SYNC) ? PGO_SYNCIO : 0));
405 1.87 mycroft if (error) {
406 1.87 mycroft lfs_reserve(fs, ovp, NULL,
407 1.132 christos -lfs_btofsb(fs, (2 * ULFS_NIADDR + 3) << fs->lfs_bshift));
408 1.87 mycroft goto errout;
409 1.87 mycroft }
410 1.65 perseant }
411 1.65 perseant }
412 1.64 perseant
413 1.106 yamt genfs_node_wrlock(ovp);
414 1.64 perseant
415 1.72 fvdl oip->i_size = oip->i_ffs1_size = length;
416 1.38 perseant uvm_vnp_setsize(ovp, length);
417 1.122 mlelstv
418 1.38 perseant /*
419 1.38 perseant * Calculate index into inode's block list of
420 1.38 perseant * last direct and indirect blocks (if any)
421 1.38 perseant * which we want to keep. Lastblock is -1 when
422 1.38 perseant * the file is truncated to 0.
423 1.38 perseant */
424 1.102 perseant /* Avoid sign overflow - XXX assumes that off_t is a quad_t. */
425 1.102 perseant if (length > QUAD_MAX - fs->lfs_bsize)
426 1.132 christos lastblock = lfs_lblkno(fs, QUAD_MAX - fs->lfs_bsize);
427 1.102 perseant else
428 1.132 christos lastblock = lfs_lblkno(fs, length + fs->lfs_bsize - 1) - 1;
429 1.130 dholland lastiblock[SINGLE] = lastblock - ULFS_NDADDR;
430 1.132 christos lastiblock[DOUBLE] = lastiblock[SINGLE] - LFS_NINDIR(fs);
431 1.132 christos lastiblock[TRIPLE] = lastiblock[DOUBLE] - LFS_NINDIR(fs) * LFS_NINDIR(fs);
432 1.132 christos nblocks = lfs_btofsb(fs, fs->lfs_bsize);
433 1.38 perseant /*
434 1.38 perseant * Record changed file and block pointers before we start
435 1.38 perseant * freeing blocks. lastiblock values are also normalized to -1
436 1.38 perseant * for calls to lfs_indirtrunc below.
437 1.38 perseant */
438 1.107 christos memcpy((void *)newblks, (void *)&oip->i_ffs1_db[0], sizeof newblks);
439 1.38 perseant for (level = TRIPLE; level >= SINGLE; level--)
440 1.38 perseant if (lastiblock[level] < 0) {
441 1.130 dholland newblks[ULFS_NDADDR+level] = 0;
442 1.38 perseant lastiblock[level] = -1;
443 1.38 perseant }
444 1.130 dholland for (i = ULFS_NDADDR - 1; i > lastblock; i--)
445 1.38 perseant newblks[i] = 0;
446 1.38 perseant
447 1.72 fvdl oip->i_size = oip->i_ffs1_size = osize;
448 1.116 ad error = lfs_vtruncbuf(ovp, lastblock + 1, false, 0);
449 1.38 perseant if (error && !allerror)
450 1.38 perseant allerror = error;
451 1.1 mycroft
452 1.1 mycroft /*
453 1.38 perseant * Indirect blocks first.
454 1.1 mycroft */
455 1.130 dholland indir_lbn[SINGLE] = -ULFS_NDADDR;
456 1.132 christos indir_lbn[DOUBLE] = indir_lbn[SINGLE] - LFS_NINDIR(fs) - 1;
457 1.132 christos indir_lbn[TRIPLE] = indir_lbn[DOUBLE] - LFS_NINDIR(fs) * LFS_NINDIR(fs) - 1;
458 1.38 perseant for (level = TRIPLE; level >= SINGLE; level--) {
459 1.72 fvdl bn = oip->i_ffs1_ib[level];
460 1.38 perseant if (bn != 0) {
461 1.38 perseant error = lfs_indirtrunc(oip, indir_lbn[level],
462 1.40 perseant bn, lastiblock[level],
463 1.40 perseant level, &count, &rcount,
464 1.115 pooka &lastseg, &bc);
465 1.38 perseant if (error)
466 1.38 perseant allerror = error;
467 1.40 perseant real_released += rcount;
468 1.38 perseant blocksreleased += count;
469 1.38 perseant if (lastiblock[level] < 0) {
470 1.72 fvdl if (oip->i_ffs1_ib[level] > 0)
471 1.40 perseant real_released += nblocks;
472 1.40 perseant blocksreleased += nblocks;
473 1.72 fvdl oip->i_ffs1_ib[level] = 0;
474 1.103 perseant lfs_blkfree(fs, oip, bn, fs->lfs_bsize,
475 1.103 perseant &lastseg, &bc);
476 1.94 perseant lfs_deregister_block(ovp, bn);
477 1.38 perseant }
478 1.38 perseant }
479 1.38 perseant if (lastiblock[level] >= 0)
480 1.38 perseant goto done;
481 1.38 perseant }
482 1.38 perseant
483 1.38 perseant /*
484 1.38 perseant * All whole direct blocks or frags.
485 1.38 perseant */
486 1.130 dholland for (i = ULFS_NDADDR - 1; i > lastblock; i--) {
487 1.59 perseant long bsize, obsize;
488 1.12 fvdl
489 1.72 fvdl bn = oip->i_ffs1_db[i];
490 1.38 perseant if (bn == 0)
491 1.38 perseant continue;
492 1.132 christos bsize = lfs_blksize(fs, oip, i);
493 1.72 fvdl if (oip->i_ffs1_db[i] > 0) {
494 1.59 perseant /* Check for fragment size changes */
495 1.59 perseant obsize = oip->i_lfs_fragsize[i];
496 1.132 christos real_released += lfs_btofsb(fs, obsize);
497 1.59 perseant oip->i_lfs_fragsize[i] = 0;
498 1.59 perseant } else
499 1.59 perseant obsize = 0;
500 1.132 christos blocksreleased += lfs_btofsb(fs, bsize);
501 1.72 fvdl oip->i_ffs1_db[i] = 0;
502 1.103 perseant lfs_blkfree(fs, oip, bn, obsize, &lastseg, &bc);
503 1.94 perseant lfs_deregister_block(ovp, bn);
504 1.1 mycroft }
505 1.38 perseant if (lastblock < 0)
506 1.38 perseant goto done;
507 1.38 perseant
508 1.1 mycroft /*
509 1.38 perseant * Finally, look for a change in size of the
510 1.38 perseant * last direct block; release any frags.
511 1.1 mycroft */
512 1.72 fvdl bn = oip->i_ffs1_db[lastblock];
513 1.38 perseant if (bn != 0) {
514 1.73 simonb long oldspace, newspace;
515 1.73 simonb #if 0
516 1.73 simonb long olddspace;
517 1.73 simonb #endif
518 1.1 mycroft
519 1.38 perseant /*
520 1.38 perseant * Calculate amount of space we're giving
521 1.38 perseant * back as old block size minus new block size.
522 1.38 perseant */
523 1.132 christos oldspace = lfs_blksize(fs, oip, lastblock);
524 1.73 simonb #if 0
525 1.59 perseant olddspace = oip->i_lfs_fragsize[lastblock];
526 1.73 simonb #endif
527 1.59 perseant
528 1.72 fvdl oip->i_size = oip->i_ffs1_size = length;
529 1.132 christos newspace = lfs_blksize(fs, oip, lastblock);
530 1.38 perseant if (newspace == 0)
531 1.38 perseant panic("itrunc: newspace");
532 1.38 perseant if (oldspace - newspace > 0) {
533 1.132 christos blocksreleased += lfs_btofsb(fs, oldspace - newspace);
534 1.1 mycroft }
535 1.59 perseant #if 0
536 1.59 perseant if (bn > 0 && olddspace - newspace > 0) {
537 1.59 perseant /* No segment accounting here, just vnode */
538 1.132 christos real_released += lfs_btofsb(fs, olddspace - newspace);
539 1.59 perseant }
540 1.59 perseant #endif
541 1.1 mycroft }
542 1.38 perseant
543 1.38 perseant done:
544 1.38 perseant /* Finish segment accounting corrections */
545 1.103 perseant lfs_update_seguse(fs, oip, lastseg, bc);
546 1.38 perseant #ifdef DIAGNOSTIC
547 1.38 perseant for (level = SINGLE; level <= TRIPLE; level++)
548 1.130 dholland if ((newblks[ULFS_NDADDR + level] == 0) !=
549 1.104 christos ((oip->i_ffs1_ib[level]) == 0)) {
550 1.38 perseant panic("lfs itrunc1");
551 1.66 perseant }
552 1.130 dholland for (i = 0; i < ULFS_NDADDR; i++)
553 1.72 fvdl if ((newblks[i] == 0) != (oip->i_ffs1_db[i] == 0)) {
554 1.38 perseant panic("lfs itrunc2");
555 1.66 perseant }
556 1.38 perseant if (length == 0 &&
557 1.38 perseant (!LIST_EMPTY(&ovp->v_cleanblkhd) || !LIST_EMPTY(&ovp->v_dirtyblkhd)))
558 1.38 perseant panic("lfs itrunc3");
559 1.38 perseant #endif /* DIAGNOSTIC */
560 1.38 perseant /*
561 1.38 perseant * Put back the real size.
562 1.38 perseant */
563 1.72 fvdl oip->i_size = oip->i_ffs1_size = length;
564 1.40 perseant oip->i_lfs_effnblks -= blocksreleased;
565 1.72 fvdl oip->i_ffs1_blocks -= real_released;
566 1.116 ad mutex_enter(&lfs_lock);
567 1.38 perseant fs->lfs_bfree += blocksreleased;
568 1.116 ad mutex_exit(&lfs_lock);
569 1.38 perseant #ifdef DIAGNOSTIC
570 1.80 yamt if (oip->i_size == 0 &&
571 1.80 yamt (oip->i_ffs1_blocks != 0 || oip->i_lfs_effnblks != 0)) {
572 1.80 yamt printf("lfs_truncate: truncate to 0 but %d blks/%d effblks\n",
573 1.80 yamt oip->i_ffs1_blocks, oip->i_lfs_effnblks);
574 1.60 provos panic("lfs_truncate: persistent blocks");
575 1.1 mycroft }
576 1.38 perseant #endif
577 1.101 perseant
578 1.101 perseant /*
579 1.101 perseant * If we truncated to zero, take us off the paging queue.
580 1.101 perseant */
581 1.116 ad mutex_enter(&lfs_lock);
582 1.101 perseant if (oip->i_size == 0 && oip->i_flags & IN_PAGING) {
583 1.101 perseant oip->i_flags &= ~IN_PAGING;
584 1.101 perseant TAILQ_REMOVE(&fs->lfs_pchainhd, oip, i_lfs_pchain);
585 1.101 perseant }
586 1.116 ad mutex_exit(&lfs_lock);
587 1.101 perseant
588 1.38 perseant oip->i_flag |= IN_CHANGE;
589 1.129 dholland #ifdef LFS_QUOTA
590 1.131 dholland (void) lfs_chkdq(oip, -blocksreleased, NOCRED, 0);
591 1.1 mycroft #endif
592 1.61 yamt lfs_reserve(fs, ovp, NULL,
593 1.132 christos -lfs_btofsb(fs, (2 * ULFS_NIADDR + 3) << fs->lfs_bshift));
594 1.106 yamt genfs_node_unlock(ovp);
595 1.71 perseant errout:
596 1.132 christos oip->i_lfs_hiblk = lfs_lblkno(fs, oip->i_size + fs->lfs_bsize - 1) - 1;
597 1.95 perseant if (ovp != fs->lfs_ivnode)
598 1.95 perseant lfs_segunlock(fs);
599 1.71 perseant return (allerror ? allerror : error);
600 1.38 perseant }
601 1.28 fvdl
602 1.94 perseant /* Update segment and avail usage information when removing a block. */
603 1.38 perseant static int
604 1.103 perseant lfs_blkfree(struct lfs *fs, struct inode *ip, daddr_t daddr,
605 1.103 perseant size_t bsize, long *lastseg, size_t *num)
606 1.38 perseant {
607 1.38 perseant long seg;
608 1.38 perseant int error = 0;
609 1.24 perseant
610 1.91 perseant ASSERT_SEGLOCK(fs);
611 1.132 christos bsize = lfs_fragroundup(fs, bsize);
612 1.38 perseant if (daddr > 0) {
613 1.132 christos if (*lastseg != (seg = lfs_dtosn(fs, daddr))) {
614 1.103 perseant error = lfs_update_seguse(fs, ip, *lastseg, *num);
615 1.38 perseant *num = bsize;
616 1.38 perseant *lastseg = seg;
617 1.38 perseant } else
618 1.38 perseant *num += bsize;
619 1.18 perseant }
620 1.94 perseant
621 1.38 perseant return error;
622 1.38 perseant }
623 1.38 perseant
624 1.38 perseant /* Finish the accounting updates for a segment. */
625 1.38 perseant static int
626 1.103 perseant lfs_update_seguse(struct lfs *fs, struct inode *ip, long lastseg, size_t num)
627 1.38 perseant {
628 1.103 perseant struct segdelta *sd;
629 1.103 perseant struct vnode *vp;
630 1.38 perseant
631 1.91 perseant ASSERT_SEGLOCK(fs);
632 1.38 perseant if (lastseg < 0 || num == 0)
633 1.38 perseant return 0;
634 1.89 perry
635 1.103 perseant vp = ITOV(ip);
636 1.103 perseant LIST_FOREACH(sd, &ip->i_lfs_segdhd, list)
637 1.103 perseant if (sd->segnum == lastseg)
638 1.103 perseant break;
639 1.103 perseant if (sd == NULL) {
640 1.103 perseant sd = malloc(sizeof(*sd), M_SEGMENT, M_WAITOK);
641 1.103 perseant sd->segnum = lastseg;
642 1.103 perseant sd->num = 0;
643 1.103 perseant LIST_INSERT_HEAD(&ip->i_lfs_segdhd, sd, list);
644 1.12 fvdl }
645 1.103 perseant sd->num += num;
646 1.64 perseant
647 1.64 perseant return 0;
648 1.38 perseant }
649 1.38 perseant
650 1.103 perseant static void
651 1.103 perseant lfs_finalize_seguse(struct lfs *fs, void *v)
652 1.103 perseant {
653 1.103 perseant SEGUSE *sup;
654 1.103 perseant struct buf *bp;
655 1.103 perseant struct segdelta *sd;
656 1.103 perseant LIST_HEAD(, segdelta) *hd = v;
657 1.103 perseant
658 1.103 perseant ASSERT_SEGLOCK(fs);
659 1.103 perseant while((sd = LIST_FIRST(hd)) != NULL) {
660 1.103 perseant LIST_REMOVE(sd, list);
661 1.103 perseant LFS_SEGENTRY(sup, fs, sd->segnum, bp);
662 1.103 perseant if (sd->num > sup->su_nbytes) {
663 1.103 perseant printf("lfs_finalize_seguse: segment %ld short by %ld\n",
664 1.103 perseant sd->segnum, (long)(sd->num - sup->su_nbytes));
665 1.103 perseant panic("lfs_finalize_seguse: negative bytes");
666 1.103 perseant sup->su_nbytes = sd->num;
667 1.103 perseant }
668 1.103 perseant sup->su_nbytes -= sd->num;
669 1.103 perseant LFS_WRITESEGENTRY(sup, fs, sd->segnum, bp);
670 1.103 perseant free(sd, M_SEGMENT);
671 1.103 perseant }
672 1.103 perseant }
673 1.103 perseant
674 1.103 perseant /* Finish the accounting updates for a segment. */
675 1.103 perseant void
676 1.103 perseant lfs_finalize_ino_seguse(struct lfs *fs, struct inode *ip)
677 1.103 perseant {
678 1.103 perseant ASSERT_SEGLOCK(fs);
679 1.103 perseant lfs_finalize_seguse(fs, &ip->i_lfs_segdhd);
680 1.103 perseant }
681 1.103 perseant
682 1.103 perseant /* Finish the accounting updates for a segment. */
683 1.103 perseant void
684 1.103 perseant lfs_finalize_fs_seguse(struct lfs *fs)
685 1.103 perseant {
686 1.103 perseant ASSERT_SEGLOCK(fs);
687 1.103 perseant lfs_finalize_seguse(fs, &fs->lfs_segdhd);
688 1.103 perseant }
689 1.103 perseant
690 1.38 perseant /*
691 1.38 perseant * Release blocks associated with the inode ip and stored in the indirect
692 1.38 perseant * block bn. Blocks are free'd in LIFO order up to (but not including)
693 1.38 perseant * lastbn. If level is greater than SINGLE, the block is an indirect block
694 1.38 perseant * and recursive calls to indirtrunc must be used to cleanse other indirect
695 1.38 perseant * blocks.
696 1.38 perseant *
697 1.38 perseant * NB: triple indirect blocks are untested.
698 1.38 perseant */
699 1.38 perseant static int
700 1.62 fvdl lfs_indirtrunc(struct inode *ip, daddr_t lbn, daddr_t dbn,
701 1.62 fvdl daddr_t lastbn, int level, long *countp,
702 1.115 pooka long *rcountp, long *lastsegp, size_t *bcp)
703 1.38 perseant {
704 1.38 perseant int i;
705 1.38 perseant struct buf *bp;
706 1.38 perseant struct lfs *fs = ip->i_lfs;
707 1.62 fvdl int32_t *bap; /* XXX ondisk32 */
708 1.38 perseant struct vnode *vp;
709 1.62 fvdl daddr_t nb, nlbn, last;
710 1.62 fvdl int32_t *copy = NULL; /* XXX ondisk32 */
711 1.40 perseant long blkcount, rblkcount, factor;
712 1.40 perseant int nblocks, blocksreleased = 0, real_released = 0;
713 1.38 perseant int error = 0, allerror = 0;
714 1.38 perseant
715 1.91 perseant ASSERT_SEGLOCK(fs);
716 1.38 perseant /*
717 1.38 perseant * Calculate index in current block of last
718 1.38 perseant * block to be kept. -1 indicates the entire
719 1.38 perseant * block so we need not calculate the index.
720 1.38 perseant */
721 1.38 perseant factor = 1;
722 1.38 perseant for (i = SINGLE; i < level; i++)
723 1.132 christos factor *= LFS_NINDIR(fs);
724 1.38 perseant last = lastbn;
725 1.38 perseant if (lastbn > 0)
726 1.38 perseant last /= factor;
727 1.132 christos nblocks = lfs_btofsb(fs, fs->lfs_bsize);
728 1.38 perseant /*
729 1.38 perseant * Get buffer of block pointers, zero those entries corresponding
730 1.38 perseant * to blocks to be free'd, and update on disk copy first. Since
731 1.38 perseant * double(triple) indirect before single(double) indirect, calls
732 1.38 perseant * to bmap on these blocks will fail. However, we already have
733 1.38 perseant * the on disk address, so we have to set the b_blkno field
734 1.38 perseant * explicitly instead of letting bread do everything for us.
735 1.38 perseant */
736 1.38 perseant vp = ITOV(ip);
737 1.38 perseant bp = getblk(vp, lbn, (int)fs->lfs_bsize, 0, 0);
738 1.116 ad if (bp->b_oflags & (BO_DONE | BO_DELWRI)) {
739 1.38 perseant /* Braces must be here in case trace evaluates to nothing. */
740 1.38 perseant trace(TR_BREADHIT, pack(vp, fs->lfs_bsize), lbn);
741 1.38 perseant } else {
742 1.38 perseant trace(TR_BREADMISS, pack(vp, fs->lfs_bsize), lbn);
743 1.119 ad curlwp->l_ru.ru_inblock++; /* pay for read */
744 1.38 perseant bp->b_flags |= B_READ;
745 1.38 perseant if (bp->b_bcount > bp->b_bufsize)
746 1.38 perseant panic("lfs_indirtrunc: bad buffer size");
747 1.132 christos bp->b_blkno = LFS_FSBTODB(fs, dbn);
748 1.82 hannken VOP_STRATEGY(vp, bp);
749 1.38 perseant error = biowait(bp);
750 1.38 perseant }
751 1.38 perseant if (error) {
752 1.112 ad brelse(bp, 0);
753 1.40 perseant *countp = *rcountp = 0;
754 1.38 perseant return (error);
755 1.38 perseant }
756 1.38 perseant
757 1.62 fvdl bap = (int32_t *)bp->b_data; /* XXX ondisk32 */
758 1.38 perseant if (lastbn >= 0) {
759 1.93 perseant copy = (int32_t *)lfs_malloc(fs, fs->lfs_bsize, LFS_NB_IBLOCK);
760 1.107 christos memcpy((void *)copy, (void *)bap, (u_int)fs->lfs_bsize);
761 1.107 christos memset((void *)&bap[last + 1], 0,
762 1.62 fvdl /* XXX ondisk32 */
763 1.132 christos (u_int)(LFS_NINDIR(fs) - (last + 1)) * sizeof (int32_t));
764 1.125 hannken error = VOP_BWRITE(bp->b_vp, bp);
765 1.38 perseant if (error)
766 1.38 perseant allerror = error;
767 1.38 perseant bap = copy;
768 1.35 perseant }
769 1.35 perseant
770 1.38 perseant /*
771 1.38 perseant * Recursively free totally unused blocks.
772 1.38 perseant */
773 1.132 christos for (i = LFS_NINDIR(fs) - 1, nlbn = lbn + 1 - i * factor; i > last;
774 1.38 perseant i--, nlbn += factor) {
775 1.38 perseant nb = bap[i];
776 1.38 perseant if (nb == 0)
777 1.38 perseant continue;
778 1.38 perseant if (level > SINGLE) {
779 1.38 perseant error = lfs_indirtrunc(ip, nlbn, nb,
780 1.62 fvdl (daddr_t)-1, level - 1,
781 1.40 perseant &blkcount, &rblkcount,
782 1.115 pooka lastsegp, bcp);
783 1.38 perseant if (error)
784 1.38 perseant allerror = error;
785 1.38 perseant blocksreleased += blkcount;
786 1.40 perseant real_released += rblkcount;
787 1.38 perseant }
788 1.103 perseant lfs_blkfree(fs, ip, nb, fs->lfs_bsize, lastsegp, bcp);
789 1.40 perseant if (bap[i] > 0)
790 1.40 perseant real_released += nblocks;
791 1.38 perseant blocksreleased += nblocks;
792 1.35 perseant }
793 1.35 perseant
794 1.38 perseant /*
795 1.38 perseant * Recursively free last partial block.
796 1.38 perseant */
797 1.38 perseant if (level > SINGLE && lastbn >= 0) {
798 1.38 perseant last = lastbn % factor;
799 1.38 perseant nb = bap[i];
800 1.38 perseant if (nb != 0) {
801 1.38 perseant error = lfs_indirtrunc(ip, nlbn, nb,
802 1.38 perseant last, level - 1, &blkcount,
803 1.115 pooka &rblkcount, lastsegp, bcp);
804 1.38 perseant if (error)
805 1.38 perseant allerror = error;
806 1.40 perseant real_released += rblkcount;
807 1.38 perseant blocksreleased += blkcount;
808 1.38 perseant }
809 1.38 perseant }
810 1.35 perseant
811 1.38 perseant if (copy != NULL) {
812 1.93 perseant lfs_free(fs, copy, LFS_NB_IBLOCK);
813 1.38 perseant } else {
814 1.116 ad mutex_enter(&bufcache_lock);
815 1.116 ad if (bp->b_oflags & BO_DELWRI) {
816 1.47 perseant LFS_UNLOCK_BUF(bp);
817 1.132 christos fs->lfs_avail += lfs_btofsb(fs, bp->b_bcount);
818 1.47 perseant wakeup(&fs->lfs_avail);
819 1.47 perseant }
820 1.116 ad brelsel(bp, BC_INVAL);
821 1.116 ad mutex_exit(&bufcache_lock);
822 1.38 perseant }
823 1.18 perseant
824 1.38 perseant *countp = blocksreleased;
825 1.40 perseant *rcountp = real_released;
826 1.38 perseant return (allerror);
827 1.21 perseant }
828 1.21 perseant
829 1.21 perseant /*
830 1.38 perseant * Destroy any in core blocks past the truncation length.
831 1.38 perseant * Inlined from vtruncbuf, so that lfs_avail could be updated.
832 1.71 perseant * We take the seglock to prevent cleaning from occurring while we are
833 1.64 perseant * invalidating blocks.
834 1.21 perseant */
835 1.38 perseant static int
836 1.116 ad lfs_vtruncbuf(struct vnode *vp, daddr_t lbn, bool catch, int slptimeo)
837 1.21 perseant {
838 1.38 perseant struct buf *bp, *nbp;
839 1.116 ad int error;
840 1.38 perseant struct lfs *fs;
841 1.64 perseant voff_t off;
842 1.64 perseant
843 1.64 perseant off = round_page((voff_t)lbn << vp->v_mount->mnt_fs_bshift);
844 1.123 rmind mutex_enter(vp->v_interlock);
845 1.64 perseant error = VOP_PUTPAGES(vp, off, 0, PGO_FREE | PGO_SYNCIO);
846 1.86 mycroft if (error)
847 1.64 perseant return error;
848 1.38 perseant
849 1.38 perseant fs = VTOI(vp)->i_lfs;
850 1.21 perseant
851 1.91 perseant ASSERT_SEGLOCK(fs);
852 1.116 ad
853 1.116 ad mutex_enter(&bufcache_lock);
854 1.116 ad restart:
855 1.38 perseant for (bp = LIST_FIRST(&vp->v_cleanblkhd); bp; bp = nbp) {
856 1.38 perseant nbp = LIST_NEXT(bp, b_vnbufs);
857 1.38 perseant if (bp->b_lblkno < lbn)
858 1.38 perseant continue;
859 1.118 ad error = bbusy(bp, catch, slptimeo, NULL);
860 1.116 ad if (error == EPASSTHROUGH)
861 1.38 perseant goto restart;
862 1.116 ad if (error != 0) {
863 1.116 ad mutex_exit(&bufcache_lock);
864 1.116 ad return (error);
865 1.116 ad }
866 1.116 ad mutex_enter(bp->b_objlock);
867 1.116 ad if (bp->b_oflags & BO_DELWRI) {
868 1.116 ad bp->b_oflags &= ~BO_DELWRI;
869 1.132 christos fs->lfs_avail += lfs_btofsb(fs, bp->b_bcount);
870 1.47 perseant wakeup(&fs->lfs_avail);
871 1.43 perseant }
872 1.116 ad mutex_exit(bp->b_objlock);
873 1.46 perseant LFS_UNLOCK_BUF(bp);
874 1.116 ad brelsel(bp, BC_INVAL | BC_VFLUSH);
875 1.38 perseant }
876 1.38 perseant
877 1.38 perseant for (bp = LIST_FIRST(&vp->v_dirtyblkhd); bp; bp = nbp) {
878 1.38 perseant nbp = LIST_NEXT(bp, b_vnbufs);
879 1.38 perseant if (bp->b_lblkno < lbn)
880 1.38 perseant continue;
881 1.118 ad error = bbusy(bp, catch, slptimeo, NULL);
882 1.116 ad if (error == EPASSTHROUGH)
883 1.38 perseant goto restart;
884 1.116 ad if (error != 0) {
885 1.116 ad mutex_exit(&bufcache_lock);
886 1.116 ad return (error);
887 1.116 ad }
888 1.116 ad mutex_enter(bp->b_objlock);
889 1.116 ad if (bp->b_oflags & BO_DELWRI) {
890 1.116 ad bp->b_oflags &= ~BO_DELWRI;
891 1.132 christos fs->lfs_avail += lfs_btofsb(fs, bp->b_bcount);
892 1.47 perseant wakeup(&fs->lfs_avail);
893 1.43 perseant }
894 1.116 ad mutex_exit(bp->b_objlock);
895 1.46 perseant LFS_UNLOCK_BUF(bp);
896 1.116 ad brelsel(bp, BC_INVAL | BC_VFLUSH);
897 1.21 perseant }
898 1.116 ad mutex_exit(&bufcache_lock);
899 1.38 perseant
900 1.21 perseant return (0);
901 1.1 mycroft }
902 1.38 perseant
903