lfs_syscalls.c revision 1.92 1 1.92 thorpej /* $NetBSD: lfs_syscalls.c,v 1.92 2003/06/29 18:43:45 thorpej Exp $ */
2 1.3 cgd
3 1.1 mycroft /*-
4 1.80 perseant * Copyright (c) 1999, 2000, 2001, 2002, 2003 The NetBSD Foundation, Inc.
5 1.22 perseant * All rights reserved.
6 1.22 perseant *
7 1.22 perseant * This code is derived from software contributed to The NetBSD Foundation
8 1.22 perseant * by Konrad E. Schroder <perseant (at) hhhh.org>.
9 1.22 perseant *
10 1.22 perseant * Redistribution and use in source and binary forms, with or without
11 1.22 perseant * modification, are permitted provided that the following conditions
12 1.22 perseant * are met:
13 1.22 perseant * 1. Redistributions of source code must retain the above copyright
14 1.22 perseant * notice, this list of conditions and the following disclaimer.
15 1.22 perseant * 2. Redistributions in binary form must reproduce the above copyright
16 1.22 perseant * notice, this list of conditions and the following disclaimer in the
17 1.22 perseant * documentation and/or other materials provided with the distribution.
18 1.22 perseant * 3. All advertising materials mentioning features or use of this software
19 1.22 perseant * must display the following acknowledgement:
20 1.82 perseant * This product includes software developed by the NetBSD
21 1.82 perseant * Foundation, Inc. and its contributors.
22 1.22 perseant * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.22 perseant * contributors may be used to endorse or promote products derived
24 1.22 perseant * from this software without specific prior written permission.
25 1.22 perseant *
26 1.22 perseant * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.22 perseant * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.22 perseant * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.22 perseant * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.22 perseant * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.22 perseant * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.22 perseant * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.22 perseant * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.22 perseant * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.22 perseant * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.22 perseant * POSSIBILITY OF SUCH DAMAGE.
37 1.22 perseant */
38 1.22 perseant /*-
39 1.1 mycroft * Copyright (c) 1991, 1993, 1994
40 1.1 mycroft * The Regents of the University of California. All rights reserved.
41 1.1 mycroft *
42 1.1 mycroft * Redistribution and use in source and binary forms, with or without
43 1.1 mycroft * modification, are permitted provided that the following conditions
44 1.1 mycroft * are met:
45 1.1 mycroft * 1. Redistributions of source code must retain the above copyright
46 1.1 mycroft * notice, this list of conditions and the following disclaimer.
47 1.1 mycroft * 2. Redistributions in binary form must reproduce the above copyright
48 1.1 mycroft * notice, this list of conditions and the following disclaimer in the
49 1.1 mycroft * documentation and/or other materials provided with the distribution.
50 1.1 mycroft * 3. All advertising materials mentioning features or use of this software
51 1.1 mycroft * must display the following acknowledgement:
52 1.1 mycroft * This product includes software developed by the University of
53 1.1 mycroft * California, Berkeley and its contributors.
54 1.1 mycroft * 4. Neither the name of the University nor the names of its contributors
55 1.1 mycroft * may be used to endorse or promote products derived from this software
56 1.1 mycroft * without specific prior written permission.
57 1.1 mycroft *
58 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
59 1.1 mycroft * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
60 1.1 mycroft * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
61 1.1 mycroft * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
62 1.1 mycroft * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
63 1.1 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
64 1.1 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
65 1.1 mycroft * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
66 1.1 mycroft * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
67 1.1 mycroft * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
68 1.1 mycroft * SUCH DAMAGE.
69 1.1 mycroft *
70 1.16 fvdl * @(#)lfs_syscalls.c 8.10 (Berkeley) 5/14/95
71 1.1 mycroft */
72 1.61 lukem
73 1.61 lukem #include <sys/cdefs.h>
74 1.92 thorpej __KERNEL_RCSID(0, "$NetBSD: lfs_syscalls.c,v 1.92 2003/06/29 18:43:45 thorpej Exp $");
75 1.15 thorpej
76 1.86 perseant #ifndef LFS
77 1.86 perseant # define LFS /* for prototypes in syscallargs.h */
78 1.86 perseant #endif
79 1.1 mycroft
80 1.1 mycroft #include <sys/param.h>
81 1.5 cgd #include <sys/systm.h>
82 1.1 mycroft #include <sys/proc.h>
83 1.1 mycroft #include <sys/buf.h>
84 1.1 mycroft #include <sys/mount.h>
85 1.1 mycroft #include <sys/vnode.h>
86 1.1 mycroft #include <sys/malloc.h>
87 1.1 mycroft #include <sys/kernel.h>
88 1.1 mycroft
89 1.78 thorpej #include <sys/sa.h>
90 1.5 cgd #include <sys/syscallargs.h>
91 1.5 cgd
92 1.1 mycroft #include <ufs/ufs/inode.h>
93 1.1 mycroft #include <ufs/ufs/ufsmount.h>
94 1.1 mycroft #include <ufs/ufs/ufs_extern.h>
95 1.1 mycroft
96 1.1 mycroft #include <ufs/lfs/lfs.h>
97 1.1 mycroft #include <ufs/lfs/lfs_extern.h>
98 1.10 christos
99 1.65 perseant struct buf *lfs_fakebuf(struct lfs *, struct vnode *, int, size_t, caddr_t);
100 1.74 yamt int lfs_fasthashget(dev_t, ino_t, struct vnode **);
101 1.1 mycroft
102 1.16 fvdl int debug_cleaner = 0;
103 1.16 fvdl int clean_vnlocked = 0;
104 1.16 fvdl int clean_inlocked = 0;
105 1.22 perseant int verbose_debug = 0;
106 1.22 perseant
107 1.22 perseant pid_t lfs_cleaner_pid = 0;
108 1.80 perseant
109 1.22 perseant /*
110 1.22 perseant * Definitions for the buffer free lists.
111 1.22 perseant */
112 1.22 perseant #define BQUEUES 4 /* number of free buffer queues */
113 1.22 perseant
114 1.22 perseant #define BQ_LOCKED 0 /* super-blocks &c */
115 1.22 perseant #define BQ_LRU 1 /* lru, useful buffers */
116 1.22 perseant #define BQ_AGE 2 /* rubbish */
117 1.22 perseant #define BQ_EMPTY 3 /* buffer headers with no memory */
118 1.22 perseant
119 1.22 perseant extern TAILQ_HEAD(bqueues, buf) bufqueues[BQUEUES];
120 1.22 perseant
121 1.22 perseant #define LFS_FORCE_WRITE UNASSIGNED
122 1.22 perseant
123 1.22 perseant #define LFS_VREF_THRESHOLD 128
124 1.16 fvdl
125 1.1 mycroft /*
126 1.31 christos * sys_lfs_markv:
127 1.1 mycroft *
128 1.1 mycroft * This will mark inodes and blocks dirty, so they are written into the log.
129 1.1 mycroft * It will block until all the blocks have been written. The segment create
130 1.1 mycroft * time passed in the block_info and inode_info structures is used to decide
131 1.1 mycroft * if the data is valid for each block (in case some process dirtied a block
132 1.1 mycroft * or inode that is being cleaned between the determination that a block is
133 1.1 mycroft * live and the lfs_markv call).
134 1.1 mycroft *
135 1.1 mycroft * 0 on success
136 1.1 mycroft * -1/errno is return on error.
137 1.1 mycroft */
138 1.57 perseant #ifdef USE_64BIT_SYSCALLS
139 1.1 mycroft int
140 1.91 darrenr sys_lfs_markv(struct lwp *l, void *v, register_t *retval)
141 1.9 thorpej {
142 1.32 drochner struct sys_lfs_markv_args /* {
143 1.5 cgd syscallarg(fsid_t *) fsidp;
144 1.5 cgd syscallarg(struct block_info *) blkiov;
145 1.5 cgd syscallarg(int) blkcnt;
146 1.32 drochner } */ *uap = v;
147 1.57 perseant BLOCK_INFO *blkiov;
148 1.91 darrenr struct proc *p = l->l_proc;
149 1.57 perseant int blkcnt, error;
150 1.57 perseant fsid_t fsid;
151 1.57 perseant
152 1.57 perseant if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
153 1.57 perseant return (error);
154 1.57 perseant
155 1.57 perseant if ((error = copyin(SCARG(uap, fsidp), &fsid, sizeof(fsid_t))) != 0)
156 1.57 perseant return (error);
157 1.57 perseant
158 1.57 perseant blkcnt = SCARG(uap, blkcnt);
159 1.84 perseant if ((u_int) blkcnt > LFS_MARKV_MAXBLKCNT)
160 1.58 jdolecek return (EINVAL);
161 1.58 jdolecek
162 1.57 perseant blkiov = malloc(blkcnt * sizeof(BLOCK_INFO), M_SEGMENT, M_WAITOK);
163 1.57 perseant if ((error = copyin(SCARG(uap, blkiov), blkiov,
164 1.57 perseant blkcnt * sizeof(BLOCK_INFO))) != 0)
165 1.57 perseant goto out;
166 1.57 perseant
167 1.57 perseant if ((error = lfs_markv(p, &fsid, blkiov, blkcnt)) == 0)
168 1.57 perseant copyout(blkiov, SCARG(uap, blkiov),
169 1.57 perseant blkcnt * sizeof(BLOCK_INFO));
170 1.57 perseant out:
171 1.57 perseant free(blkiov, M_SEGMENT);
172 1.57 perseant return error;
173 1.57 perseant }
174 1.57 perseant #else
175 1.57 perseant int
176 1.78 thorpej sys_lfs_markv(struct lwp *l, void *v, register_t *retval)
177 1.57 perseant {
178 1.57 perseant struct sys_lfs_markv_args /* {
179 1.57 perseant syscallarg(fsid_t *) fsidp;
180 1.57 perseant syscallarg(struct block_info *) blkiov;
181 1.57 perseant syscallarg(int) blkcnt;
182 1.57 perseant } */ *uap = v;
183 1.57 perseant BLOCK_INFO *blkiov;
184 1.57 perseant BLOCK_INFO_15 *blkiov15;
185 1.91 darrenr struct proc *p = l->l_proc;
186 1.57 perseant int i, blkcnt, error;
187 1.57 perseant fsid_t fsid;
188 1.57 perseant
189 1.91 darrenr if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
190 1.57 perseant return (error);
191 1.57 perseant
192 1.57 perseant if ((error = copyin(SCARG(uap, fsidp), &fsid, sizeof(fsid_t))) != 0)
193 1.57 perseant return (error);
194 1.57 perseant
195 1.57 perseant blkcnt = SCARG(uap, blkcnt);
196 1.84 perseant if ((u_int) blkcnt > LFS_MARKV_MAXBLKCNT)
197 1.58 jdolecek return (EINVAL);
198 1.58 jdolecek
199 1.57 perseant blkiov = malloc(blkcnt * sizeof(BLOCK_INFO), M_SEGMENT, M_WAITOK);
200 1.57 perseant blkiov15 = malloc(blkcnt * sizeof(BLOCK_INFO_15), M_SEGMENT, M_WAITOK);
201 1.57 perseant if ((error = copyin(SCARG(uap, blkiov), blkiov15,
202 1.57 perseant blkcnt * sizeof(BLOCK_INFO_15))) != 0)
203 1.57 perseant goto out;
204 1.57 perseant
205 1.57 perseant for (i = 0; i < blkcnt; i++) {
206 1.57 perseant blkiov[i].bi_inode = blkiov15[i].bi_inode;
207 1.57 perseant blkiov[i].bi_lbn = blkiov15[i].bi_lbn;
208 1.57 perseant blkiov[i].bi_daddr = blkiov15[i].bi_daddr;
209 1.57 perseant blkiov[i].bi_segcreate = blkiov15[i].bi_segcreate;
210 1.57 perseant blkiov[i].bi_version = blkiov15[i].bi_version;
211 1.82 perseant blkiov[i].bi_bp = blkiov15[i].bi_bp;
212 1.57 perseant blkiov[i].bi_size = blkiov15[i].bi_size;
213 1.57 perseant }
214 1.57 perseant
215 1.91 darrenr if ((error = lfs_markv(p, &fsid, blkiov, blkcnt)) == 0) {
216 1.57 perseant for (i = 0; i < blkcnt; i++) {
217 1.82 perseant blkiov15[i].bi_inode = blkiov[i].bi_inode;
218 1.82 perseant blkiov15[i].bi_lbn = blkiov[i].bi_lbn;
219 1.82 perseant blkiov15[i].bi_daddr = blkiov[i].bi_daddr;
220 1.57 perseant blkiov15[i].bi_segcreate = blkiov[i].bi_segcreate;
221 1.82 perseant blkiov15[i].bi_version = blkiov[i].bi_version;
222 1.82 perseant blkiov15[i].bi_bp = blkiov[i].bi_bp;
223 1.82 perseant blkiov15[i].bi_size = blkiov[i].bi_size;
224 1.57 perseant }
225 1.57 perseant copyout(blkiov15, SCARG(uap, blkiov),
226 1.57 perseant blkcnt * sizeof(BLOCK_INFO_15));
227 1.57 perseant }
228 1.57 perseant out:
229 1.57 perseant free(blkiov, M_SEGMENT);
230 1.57 perseant free(blkiov15, M_SEGMENT);
231 1.57 perseant return error;
232 1.57 perseant }
233 1.57 perseant #endif
234 1.57 perseant
235 1.77 yamt #define LFS_MARKV_MAX_BLOCKS (LFS_MAX_BUFS)
236 1.77 yamt
237 1.84 perseant int
238 1.57 perseant lfs_markv(struct proc *p, fsid_t *fsidp, BLOCK_INFO *blkiov, int blkcnt)
239 1.57 perseant {
240 1.1 mycroft BLOCK_INFO *blkp;
241 1.1 mycroft IFILE *ifp;
242 1.22 perseant struct buf *bp, *nbp;
243 1.10 christos struct inode *ip = NULL;
244 1.1 mycroft struct lfs *fs;
245 1.1 mycroft struct mount *mntp;
246 1.1 mycroft struct vnode *vp;
247 1.22 perseant #ifdef DEBUG_LFS
248 1.62 chs int vputc = 0, iwritten = 0;
249 1.22 perseant #endif
250 1.1 mycroft ino_t lastino;
251 1.79 fvdl daddr_t b_daddr, v_daddr;
252 1.74 yamt int cnt, error;
253 1.62 chs int do_again = 0;
254 1.22 perseant int s;
255 1.22 perseant #ifdef CHECK_COPYIN
256 1.22 perseant int i;
257 1.22 perseant #endif /* CHECK_COPYIN */
258 1.74 yamt int numrefed = 0;
259 1.49 perseant ino_t maxino;
260 1.69 perseant size_t obsize;
261 1.1 mycroft
262 1.77 yamt /* number of blocks/inodes that we have already bwrite'ed */
263 1.77 yamt int nblkwritten, ninowritten;
264 1.77 yamt
265 1.57 perseant if ((mntp = vfs_getvfs(fsidp)) == NULL)
266 1.53 perseant return (ENOENT);
267 1.1 mycroft
268 1.22 perseant fs = VFSTOUFS(mntp)->um_lfs;
269 1.89 fvdl maxino = (fragstoblks(fs, fsbtofrags(fs, VTOI(fs->lfs_ivnode)->i_ffs1_blocks)) -
270 1.49 perseant fs->lfs_cleansz - fs->lfs_segtabsz) * fs->lfs_ifpb;
271 1.49 perseant
272 1.57 perseant cnt = blkcnt;
273 1.22 perseant
274 1.53 perseant if ((error = vfs_busy(mntp, LK_NOWAIT, NULL)) != 0)
275 1.53 perseant return (error);
276 1.53 perseant
277 1.22 perseant /*
278 1.22 perseant * This seglock is just to prevent the fact that we might have to sleep
279 1.22 perseant * from allowing the possibility that our blocks might become
280 1.22 perseant * invalid.
281 1.22 perseant *
282 1.22 perseant * It is also important to note here that unless we specify SEGM_CKP,
283 1.22 perseant * any Ifile blocks that we might be asked to clean will never get
284 1.22 perseant * to the disk.
285 1.22 perseant */
286 1.67 perseant lfs_seglock(fs, SEGM_CLEAN | SEGM_CKP | SEGM_SYNC);
287 1.22 perseant
288 1.1 mycroft /* Mark blocks/inodes dirty. */
289 1.1 mycroft error = 0;
290 1.1 mycroft
291 1.22 perseant #ifdef DEBUG_LFS
292 1.22 perseant /* Run through and count the inodes */
293 1.22 perseant lastino = LFS_UNUSED_INUM;
294 1.62 chs for (blkp = blkiov; cnt--; ++blkp) {
295 1.62 chs if (lastino != blkp->bi_inode) {
296 1.22 perseant lastino = blkp->bi_inode;
297 1.22 perseant vputc++;
298 1.22 perseant }
299 1.22 perseant }
300 1.57 perseant cnt = blkcnt;
301 1.22 perseant printf("[%d/",vputc);
302 1.62 chs iwritten = 0;
303 1.22 perseant #endif /* DEBUG_LFS */
304 1.22 perseant /* these were inside the initialization for the for loop */
305 1.22 perseant v_daddr = LFS_UNUSED_DADDR;
306 1.22 perseant lastino = LFS_UNUSED_INUM;
307 1.77 yamt nblkwritten = ninowritten = 0;
308 1.57 perseant for (blkp = blkiov; cnt--; ++blkp)
309 1.22 perseant {
310 1.62 chs if (blkp->bi_daddr == LFS_FORCE_WRITE)
311 1.79 fvdl printf("lfs_markv: warning: force-writing ino %d "
312 1.79 fvdl "lbn %lld\n",
313 1.79 fvdl blkp->bi_inode, (long long)blkp->bi_lbn);
314 1.49 perseant /* Bounds-check incoming data, avoid panic for failed VGET */
315 1.49 perseant if (blkp->bi_inode <= 0 || blkp->bi_inode >= maxino) {
316 1.49 perseant error = EINVAL;
317 1.49 perseant goto again;
318 1.49 perseant }
319 1.1 mycroft /*
320 1.1 mycroft * Get the IFILE entry (only once) and see if the file still
321 1.1 mycroft * exists.
322 1.1 mycroft */
323 1.1 mycroft if (lastino != blkp->bi_inode) {
324 1.22 perseant /*
325 1.22 perseant * Finish the old file, if there was one. The presence
326 1.22 perseant * of a usable vnode in vp is signaled by a valid v_daddr.
327 1.22 perseant */
328 1.62 chs if (v_daddr != LFS_UNUSED_DADDR) {
329 1.30 perseant #ifdef DEBUG_LFS
330 1.62 chs if (ip->i_flag & (IN_MODIFIED|IN_CLEANING))
331 1.22 perseant iwritten++;
332 1.22 perseant #endif
333 1.1 mycroft lfs_vunref(vp);
334 1.22 perseant numrefed--;
335 1.1 mycroft }
336 1.1 mycroft
337 1.22 perseant /*
338 1.22 perseant * Start a new file
339 1.22 perseant */
340 1.1 mycroft lastino = blkp->bi_inode;
341 1.1 mycroft if (blkp->bi_inode == LFS_IFILE_INUM)
342 1.1 mycroft v_daddr = fs->lfs_idaddr;
343 1.1 mycroft else {
344 1.1 mycroft LFS_IENTRY(ifp, fs, blkp->bi_inode, bp);
345 1.22 perseant /* XXX fix for force write */
346 1.1 mycroft v_daddr = ifp->if_daddr;
347 1.1 mycroft brelse(bp);
348 1.1 mycroft }
349 1.22 perseant /* Don't force-write the ifile */
350 1.22 perseant if (blkp->bi_inode == LFS_IFILE_INUM
351 1.22 perseant && blkp->bi_daddr == LFS_FORCE_WRITE)
352 1.22 perseant {
353 1.22 perseant continue;
354 1.22 perseant }
355 1.35 perseant if (v_daddr == LFS_UNUSED_DADDR
356 1.35 perseant && blkp->bi_daddr != LFS_FORCE_WRITE)
357 1.22 perseant {
358 1.1 mycroft continue;
359 1.22 perseant }
360 1.1 mycroft
361 1.1 mycroft /* Get the vnode/inode. */
362 1.62 chs error = lfs_fastvget(mntp, blkp->bi_inode, v_daddr,
363 1.22 perseant &vp,
364 1.62 chs (blkp->bi_lbn == LFS_UNUSED_LBN
365 1.22 perseant ? blkp->bi_bp
366 1.74 yamt : NULL));
367 1.22 perseant
368 1.62 chs if (!error) {
369 1.22 perseant numrefed++;
370 1.22 perseant }
371 1.62 chs if (error) {
372 1.43 perseant #ifdef DEBUG_LFS
373 1.29 perseant printf("lfs_markv: lfs_fastvget failed with %d (ino %d, segment %d)\n",
374 1.22 perseant error, blkp->bi_inode,
375 1.57 perseant dtosn(fs, blkp->bi_daddr));
376 1.43 perseant #endif /* DEBUG_LFS */
377 1.22 perseant /*
378 1.22 perseant * If we got EAGAIN, that means that the
379 1.22 perseant * Inode was locked. This is
380 1.22 perseant * recoverable: just clean the rest of
381 1.22 perseant * this segment, and let the cleaner try
382 1.82 perseant * again with another. (When the
383 1.22 perseant * cleaner runs again, this segment will
384 1.22 perseant * sort high on the list, since it is
385 1.22 perseant * now almost entirely empty.) But, we
386 1.22 perseant * still set v_daddr = LFS_UNUSED_ADDR
387 1.22 perseant * so as not to test this over and over
388 1.22 perseant * again.
389 1.22 perseant */
390 1.62 chs if (error == EAGAIN) {
391 1.22 perseant error = 0;
392 1.22 perseant do_again++;
393 1.22 perseant }
394 1.22 perseant #ifdef DIAGNOSTIC
395 1.62 chs else if (error != ENOENT)
396 1.22 perseant panic("lfs_markv VFS_VGET FAILED");
397 1.1 mycroft #endif
398 1.22 perseant /* lastino = LFS_UNUSED_INUM; */
399 1.1 mycroft v_daddr = LFS_UNUSED_DADDR;
400 1.22 perseant vp = NULL;
401 1.22 perseant ip = NULL;
402 1.1 mycroft continue;
403 1.19 pk }
404 1.1 mycroft ip = VTOI(vp);
405 1.77 yamt ninowritten++;
406 1.22 perseant } else if (v_daddr == LFS_UNUSED_DADDR) {
407 1.22 perseant /*
408 1.22 perseant * This can only happen if the vnode is dead (or
409 1.22 perseant * in any case we can't get it...e.g., it is
410 1.22 perseant * inlocked). Keep going.
411 1.22 perseant */
412 1.1 mycroft continue;
413 1.22 perseant }
414 1.22 perseant
415 1.22 perseant /* Past this point we are guaranteed that vp, ip are valid. */
416 1.1 mycroft
417 1.1 mycroft /* If this BLOCK_INFO didn't contain a block, keep going. */
418 1.22 perseant if (blkp->bi_lbn == LFS_UNUSED_LBN) {
419 1.22 perseant /* XXX need to make sure that the inode gets written in this case */
420 1.22 perseant /* XXX but only write the inode if it's the right one */
421 1.53 perseant if (blkp->bi_inode != LFS_IFILE_INUM) {
422 1.53 perseant LFS_IENTRY(ifp, fs, blkp->bi_inode, bp);
423 1.62 chs if (ifp->if_daddr == blkp->bi_daddr
424 1.22 perseant || blkp->bi_daddr == LFS_FORCE_WRITE)
425 1.22 perseant {
426 1.47 perseant LFS_SET_UINO(ip, IN_CLEANING);
427 1.22 perseant }
428 1.53 perseant brelse(bp);
429 1.53 perseant }
430 1.1 mycroft continue;
431 1.22 perseant }
432 1.22 perseant
433 1.22 perseant b_daddr = 0;
434 1.62 chs if (blkp->bi_daddr != LFS_FORCE_WRITE) {
435 1.22 perseant if (VOP_BMAP(vp, blkp->bi_lbn, NULL, &b_daddr, NULL) ||
436 1.57 perseant dbtofsb(fs, b_daddr) != blkp->bi_daddr)
437 1.22 perseant {
438 1.62 chs if (dtosn(fs,dbtofsb(fs, b_daddr))
439 1.57 perseant == dtosn(fs,blkp->bi_daddr))
440 1.22 perseant {
441 1.79 fvdl printf("lfs_markv: wrong da same seg: %llx vs %llx\n",
442 1.79 fvdl (long long)blkp->bi_daddr, (long long)dbtofsb(fs, b_daddr));
443 1.22 perseant }
444 1.67 perseant do_again++;
445 1.22 perseant continue;
446 1.22 perseant }
447 1.22 perseant }
448 1.69 perseant
449 1.69 perseant /*
450 1.69 perseant * Check block sizes. The blocks being cleaned come from
451 1.69 perseant * disk, so they should have the same size as their on-disk
452 1.69 perseant * counterparts.
453 1.69 perseant */
454 1.72 yamt if (blkp->bi_lbn >= 0)
455 1.72 yamt obsize = blksize(fs, ip, blkp->bi_lbn);
456 1.72 yamt else
457 1.72 yamt obsize = fs->lfs_bsize;
458 1.69 perseant /* Check for fragment size change */
459 1.69 perseant if (blkp->bi_lbn >= 0 && blkp->bi_lbn < NDADDR) {
460 1.69 perseant obsize = ip->i_lfs_fragsize[blkp->bi_lbn];
461 1.69 perseant }
462 1.69 perseant if (obsize != blkp->bi_size) {
463 1.79 fvdl printf("lfs_markv: ino %d lbn %lld wrong size (%ld != %d), try again\n",
464 1.79 fvdl blkp->bi_inode, (long long)blkp->bi_lbn,
465 1.70 briggs (long) obsize, blkp->bi_size);
466 1.69 perseant do_again++;
467 1.69 perseant continue;
468 1.69 perseant }
469 1.69 perseant
470 1.22 perseant /*
471 1.69 perseant * If we get to here, then we are keeping the block. If
472 1.22 perseant * it is an indirect block, we want to actually put it
473 1.22 perseant * in the buffer cache so that it can be updated in the
474 1.82 perseant * finish_meta section. If it's not, we need to
475 1.22 perseant * allocate a fake buffer so that writeseg can perform
476 1.22 perseant * the copyin and write the buffer.
477 1.22 perseant */
478 1.38 perseant if (ip->i_number != LFS_IFILE_INUM && blkp->bi_lbn >= 0) {
479 1.38 perseant /* Data Block */
480 1.65 perseant bp = lfs_fakebuf(fs, vp, blkp->bi_lbn,
481 1.23 perseant blkp->bi_size, blkp->bi_bp);
482 1.23 perseant /* Pretend we used bread() to get it */
483 1.57 perseant bp->b_blkno = fsbtodb(fs, blkp->bi_daddr);
484 1.38 perseant } else {
485 1.75 yamt /* Indirect block or ifile */
486 1.75 yamt if (blkp->bi_size != fs->lfs_bsize &&
487 1.75 yamt ip->i_number != LFS_IFILE_INUM)
488 1.72 yamt panic("lfs_markv: partial indirect block?"
489 1.72 yamt " size=%d\n", blkp->bi_size);
490 1.22 perseant bp = getblk(vp, blkp->bi_lbn, blkp->bi_size, 0, 0);
491 1.22 perseant if (!(bp->b_flags & (B_DONE|B_DELWRI))) { /* B_CACHE */
492 1.22 perseant /*
493 1.22 perseant * The block in question was not found
494 1.22 perseant * in the cache; i.e., the block that
495 1.82 perseant * getblk() returned is empty. So, we
496 1.22 perseant * can (and should) copy in the
497 1.22 perseant * contents, because we've already
498 1.22 perseant * determined that this was the right
499 1.22 perseant * version of this block on disk.
500 1.22 perseant *
501 1.22 perseant * And, it can't have changed underneath
502 1.22 perseant * us, because we have the segment lock.
503 1.22 perseant */
504 1.22 perseant error = copyin(blkp->bi_bp, bp->b_data, blkp->bi_size);
505 1.62 chs if (error)
506 1.22 perseant goto err2;
507 1.22 perseant }
508 1.22 perseant }
509 1.22 perseant if ((error = lfs_bwrite_ext(bp,BW_CLEAN)) != 0)
510 1.22 perseant goto err2;
511 1.77 yamt
512 1.77 yamt nblkwritten++;
513 1.77 yamt /*
514 1.77 yamt * XXX should account indirect blocks and ifile pages as well
515 1.77 yamt */
516 1.89 fvdl if (nblkwritten + lblkno(fs, ninowritten * sizeof (struct ufs1_dinode))
517 1.77 yamt > LFS_MARKV_MAX_BLOCKS) {
518 1.77 yamt #ifdef DEBUG_LFS
519 1.77 yamt printf("lfs_markv: writing %d blks %d inos\n",
520 1.77 yamt nblkwritten, ninowritten);
521 1.77 yamt #endif
522 1.77 yamt lfs_segwrite(mntp, SEGM_CLEAN);
523 1.77 yamt nblkwritten = ninowritten = 0;
524 1.77 yamt }
525 1.22 perseant }
526 1.22 perseant
527 1.22 perseant /*
528 1.22 perseant * Finish the old file, if there was one
529 1.22 perseant */
530 1.62 chs if (v_daddr != LFS_UNUSED_DADDR) {
531 1.22 perseant #ifdef DEBUG_LFS
532 1.62 chs if (ip->i_flag & (IN_MODIFIED|IN_CLEANING))
533 1.22 perseant iwritten++;
534 1.22 perseant #endif
535 1.22 perseant lfs_vunref(vp);
536 1.22 perseant numrefed--;
537 1.22 perseant }
538 1.22 perseant
539 1.74 yamt #ifdef DEBUG_LFS
540 1.74 yamt printf("%d]",iwritten);
541 1.74 yamt if (numrefed != 0) {
542 1.74 yamt panic("lfs_markv: numrefed=%d", numrefed);
543 1.74 yamt }
544 1.74 yamt #endif
545 1.74 yamt
546 1.77 yamt #ifdef DEBUG_LFS
547 1.77 yamt printf("lfs_markv: writing %d blks %d inos (check point)\n",
548 1.77 yamt nblkwritten, ninowritten);
549 1.77 yamt #endif
550 1.22 perseant /*
551 1.22 perseant * The last write has to be SEGM_SYNC, because of calling semantics.
552 1.22 perseant * It also has to be SEGM_CKP, because otherwise we could write
553 1.22 perseant * over the newly cleaned data contained in a checkpoint, and then
554 1.22 perseant * we'd be unhappy at recovery time.
555 1.22 perseant */
556 1.67 perseant lfs_segwrite(mntp, SEGM_CLEAN | SEGM_CKP | SEGM_SYNC);
557 1.22 perseant
558 1.1 mycroft lfs_segunlock(fs);
559 1.1 mycroft
560 1.53 perseant vfs_unbusy(mntp);
561 1.62 chs if (error)
562 1.22 perseant return (error);
563 1.62 chs else if (do_again)
564 1.22 perseant return EAGAIN;
565 1.1 mycroft
566 1.22 perseant return 0;
567 1.22 perseant
568 1.22 perseant err2:
569 1.29 perseant printf("lfs_markv err2\n");
570 1.22 perseant lfs_vunref(vp);
571 1.53 perseant --numrefed;
572 1.53 perseant
573 1.22 perseant /* Free up fakebuffers -- have to take these from the LOCKED list */
574 1.22 perseant again:
575 1.37 fvdl s = splbio();
576 1.62 chs for (bp = bufqueues[BQ_LOCKED].tqh_first; bp; bp = nbp) {
577 1.22 perseant nbp = bp->b_freelist.tqe_next;
578 1.80 perseant if (LFS_IS_MALLOC_BUF(bp)) {
579 1.62 chs if (bp->b_flags & B_BUSY) { /* not bloody likely */
580 1.22 perseant bp->b_flags |= B_WANTED;
581 1.22 perseant tsleep(bp, PRIBIO+1, "markv", 0);
582 1.22 perseant splx(s);
583 1.22 perseant goto again;
584 1.22 perseant }
585 1.62 chs if (bp->b_flags & B_DELWRI)
586 1.57 perseant fs->lfs_avail += btofsb(fs, bp->b_bcount);
587 1.22 perseant bremfree(bp);
588 1.22 perseant splx(s);
589 1.22 perseant brelse(bp);
590 1.37 fvdl s = splbio();
591 1.22 perseant }
592 1.22 perseant }
593 1.37 fvdl splx(s);
594 1.1 mycroft lfs_segunlock(fs);
595 1.53 perseant vfs_unbusy(mntp);
596 1.53 perseant #ifdef DEBUG_LFS
597 1.74 yamt if (numrefed != 0) {
598 1.74 yamt panic("lfs_markv: numrefed=%d", numrefed);
599 1.53 perseant }
600 1.53 perseant #endif
601 1.53 perseant
602 1.22 perseant return (error);
603 1.1 mycroft }
604 1.1 mycroft
605 1.1 mycroft /*
606 1.31 christos * sys_lfs_bmapv:
607 1.1 mycroft *
608 1.1 mycroft * This will fill in the current disk address for arrays of blocks.
609 1.1 mycroft *
610 1.1 mycroft * 0 on success
611 1.1 mycroft * -1/errno is return on error.
612 1.1 mycroft */
613 1.57 perseant #ifdef USE_64BIT_SYSCALLS
614 1.57 perseant int
615 1.91 darrenr sys_lfs_bmapv(struct lwp *l, void *v, register_t *retval)
616 1.57 perseant {
617 1.57 perseant struct sys_lfs_bmapv_args /* {
618 1.57 perseant syscallarg(fsid_t *) fsidp;
619 1.57 perseant syscallarg(struct block_info *) blkiov;
620 1.57 perseant syscallarg(int) blkcnt;
621 1.57 perseant } */ *uap = v;
622 1.91 darrenr struct proc *p = l->l_proc;
623 1.57 perseant BLOCK_INFO *blkiov;
624 1.57 perseant int blkcnt, error;
625 1.57 perseant fsid_t fsid;
626 1.22 perseant
627 1.57 perseant if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
628 1.57 perseant return (error);
629 1.57 perseant
630 1.57 perseant if ((error = copyin(SCARG(uap, fsidp), &fsid, sizeof(fsid_t))) != 0)
631 1.57 perseant return (error);
632 1.57 perseant
633 1.57 perseant blkcnt = SCARG(uap, blkcnt);
634 1.71 itojun if ((u_int) blkcnt > SIZE_T_MAX / sizeof(BLOCK_INFO))
635 1.71 itojun return (EINVAL);
636 1.57 perseant blkiov = malloc(blkcnt * sizeof(BLOCK_INFO), M_SEGMENT, M_WAITOK);
637 1.57 perseant if ((error = copyin(SCARG(uap, blkiov), blkiov,
638 1.57 perseant blkcnt * sizeof(BLOCK_INFO))) != 0)
639 1.57 perseant goto out;
640 1.57 perseant
641 1.57 perseant if ((error = lfs_bmapv(p, &fsid, blkiov, blkcnt)) == 0)
642 1.57 perseant copyout(blkiov, SCARG(uap, blkiov),
643 1.57 perseant blkcnt * sizeof(BLOCK_INFO));
644 1.57 perseant out:
645 1.57 perseant free(blkiov, M_SEGMENT);
646 1.57 perseant return error;
647 1.57 perseant }
648 1.57 perseant #else
649 1.1 mycroft int
650 1.78 thorpej sys_lfs_bmapv(struct lwp *l, void *v, register_t *retval)
651 1.9 thorpej {
652 1.32 drochner struct sys_lfs_bmapv_args /* {
653 1.32 drochner syscallarg(fsid_t *) fsidp;
654 1.32 drochner syscallarg(struct block_info *) blkiov;
655 1.32 drochner syscallarg(int) blkcnt;
656 1.32 drochner } */ *uap = v;
657 1.78 thorpej struct proc *p = l->l_proc;
658 1.57 perseant BLOCK_INFO *blkiov;
659 1.57 perseant BLOCK_INFO_15 *blkiov15;
660 1.57 perseant int i, blkcnt, error;
661 1.57 perseant fsid_t fsid;
662 1.57 perseant
663 1.57 perseant if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
664 1.57 perseant return (error);
665 1.57 perseant
666 1.57 perseant if ((error = copyin(SCARG(uap, fsidp), &fsid, sizeof(fsid_t))) != 0)
667 1.57 perseant return (error);
668 1.57 perseant
669 1.57 perseant blkcnt = SCARG(uap, blkcnt);
670 1.90 nakayama if ((size_t) blkcnt > SIZE_T_MAX / sizeof(BLOCK_INFO))
671 1.71 itojun return (EINVAL);
672 1.57 perseant blkiov = malloc(blkcnt * sizeof(BLOCK_INFO), M_SEGMENT, M_WAITOK);
673 1.57 perseant blkiov15 = malloc(blkcnt * sizeof(BLOCK_INFO_15), M_SEGMENT, M_WAITOK);
674 1.57 perseant if ((error = copyin(SCARG(uap, blkiov), blkiov15,
675 1.57 perseant blkcnt * sizeof(BLOCK_INFO_15))) != 0)
676 1.57 perseant goto out;
677 1.57 perseant
678 1.57 perseant for (i = 0; i < blkcnt; i++) {
679 1.57 perseant blkiov[i].bi_inode = blkiov15[i].bi_inode;
680 1.57 perseant blkiov[i].bi_lbn = blkiov15[i].bi_lbn;
681 1.57 perseant blkiov[i].bi_daddr = blkiov15[i].bi_daddr;
682 1.57 perseant blkiov[i].bi_segcreate = blkiov15[i].bi_segcreate;
683 1.57 perseant blkiov[i].bi_version = blkiov15[i].bi_version;
684 1.82 perseant blkiov[i].bi_bp = blkiov15[i].bi_bp;
685 1.57 perseant blkiov[i].bi_size = blkiov15[i].bi_size;
686 1.57 perseant }
687 1.57 perseant
688 1.91 darrenr if ((error = lfs_bmapv(l, &fsid, blkiov, blkcnt)) == 0) {
689 1.57 perseant for (i = 0; i < blkcnt; i++) {
690 1.82 perseant blkiov15[i].bi_inode = blkiov[i].bi_inode;
691 1.82 perseant blkiov15[i].bi_lbn = blkiov[i].bi_lbn;
692 1.82 perseant blkiov15[i].bi_daddr = blkiov[i].bi_daddr;
693 1.57 perseant blkiov15[i].bi_segcreate = blkiov[i].bi_segcreate;
694 1.82 perseant blkiov15[i].bi_version = blkiov[i].bi_version;
695 1.82 perseant blkiov15[i].bi_bp = blkiov[i].bi_bp;
696 1.82 perseant blkiov15[i].bi_size = blkiov[i].bi_size;
697 1.57 perseant }
698 1.57 perseant copyout(blkiov15, SCARG(uap, blkiov),
699 1.57 perseant blkcnt * sizeof(BLOCK_INFO_15));
700 1.57 perseant }
701 1.57 perseant out:
702 1.57 perseant free(blkiov, M_SEGMENT);
703 1.57 perseant free(blkiov15, M_SEGMENT);
704 1.57 perseant return error;
705 1.57 perseant }
706 1.57 perseant #endif
707 1.57 perseant
708 1.84 perseant int
709 1.91 darrenr lfs_bmapv(struct lwp *l, fsid_t *fsidp, BLOCK_INFO *blkiov, int blkcnt)
710 1.57 perseant {
711 1.1 mycroft BLOCK_INFO *blkp;
712 1.22 perseant IFILE *ifp;
713 1.22 perseant struct buf *bp;
714 1.22 perseant struct inode *ip = NULL;
715 1.22 perseant struct lfs *fs;
716 1.1 mycroft struct mount *mntp;
717 1.16 fvdl struct ufsmount *ump;
718 1.1 mycroft struct vnode *vp;
719 1.22 perseant ino_t lastino;
720 1.79 fvdl daddr_t v_daddr;
721 1.74 yamt int cnt, error;
722 1.74 yamt int numrefed = 0;
723 1.1 mycroft
724 1.91 darrenr lfs_cleaner_pid = l->l_proc->p_pid;
725 1.22 perseant
726 1.57 perseant if ((mntp = vfs_getvfs(fsidp)) == NULL)
727 1.53 perseant return (ENOENT);
728 1.22 perseant
729 1.22 perseant ump = VFSTOUFS(mntp);
730 1.53 perseant if ((error = vfs_busy(mntp, LK_NOWAIT, NULL)) != 0)
731 1.53 perseant return (error);
732 1.22 perseant
733 1.57 perseant cnt = blkcnt;
734 1.22 perseant
735 1.22 perseant fs = VFSTOUFS(mntp)->um_lfs;
736 1.22 perseant
737 1.22 perseant error = 0;
738 1.22 perseant
739 1.22 perseant /* these were inside the initialization for the for loop */
740 1.22 perseant v_daddr = LFS_UNUSED_DADDR;
741 1.22 perseant lastino = LFS_UNUSED_INUM;
742 1.57 perseant for (blkp = blkiov; cnt--; ++blkp)
743 1.22 perseant {
744 1.16 fvdl /*
745 1.22 perseant * Get the IFILE entry (only once) and see if the file still
746 1.22 perseant * exists.
747 1.16 fvdl */
748 1.22 perseant if (lastino != blkp->bi_inode) {
749 1.22 perseant /*
750 1.22 perseant * Finish the old file, if there was one. The presence
751 1.22 perseant * of a usable vnode in vp is signaled by a valid
752 1.22 perseant * v_daddr.
753 1.22 perseant */
754 1.62 chs if (v_daddr != LFS_UNUSED_DADDR) {
755 1.22 perseant lfs_vunref(vp);
756 1.22 perseant numrefed--;
757 1.22 perseant }
758 1.22 perseant
759 1.22 perseant /*
760 1.22 perseant * Start a new file
761 1.22 perseant */
762 1.22 perseant lastino = blkp->bi_inode;
763 1.22 perseant if (blkp->bi_inode == LFS_IFILE_INUM)
764 1.22 perseant v_daddr = fs->lfs_idaddr;
765 1.22 perseant else {
766 1.22 perseant LFS_IENTRY(ifp, fs, blkp->bi_inode, bp);
767 1.22 perseant v_daddr = ifp->if_daddr;
768 1.22 perseant brelse(bp);
769 1.22 perseant }
770 1.22 perseant if (v_daddr == LFS_UNUSED_DADDR) {
771 1.22 perseant blkp->bi_daddr = LFS_UNUSED_DADDR;
772 1.22 perseant continue;
773 1.22 perseant }
774 1.22 perseant /*
775 1.22 perseant * A regular call to VFS_VGET could deadlock
776 1.22 perseant * here. Instead, we try an unlocked access.
777 1.22 perseant */
778 1.22 perseant vp = ufs_ihashlookup(ump->um_dev, blkp->bi_inode);
779 1.24 perseant if (vp != NULL && !(vp->v_flag & VXLOCK)) {
780 1.22 perseant ip = VTOI(vp);
781 1.42 perseant if (lfs_vref(vp)) {
782 1.42 perseant v_daddr = LFS_UNUSED_DADDR;
783 1.42 perseant continue;
784 1.42 perseant }
785 1.43 perseant numrefed++;
786 1.22 perseant } else {
787 1.92 thorpej error = VFS_VGET(mntp, blkp->bi_inode, &vp);
788 1.62 chs if (error) {
789 1.24 perseant #ifdef DEBUG_LFS
790 1.25 perseant printf("lfs_bmapv: vget of ino %d failed with %d",blkp->bi_inode,error);
791 1.24 perseant #endif
792 1.43 perseant v_daddr = LFS_UNUSED_DADDR;
793 1.22 perseant continue;
794 1.22 perseant } else {
795 1.74 yamt KASSERT(VOP_ISLOCKED(vp));
796 1.74 yamt VOP_UNLOCK(vp, 0);
797 1.22 perseant numrefed++;
798 1.22 perseant }
799 1.22 perseant }
800 1.22 perseant ip = VTOI(vp);
801 1.22 perseant } else if (v_daddr == LFS_UNUSED_DADDR) {
802 1.22 perseant /*
803 1.22 perseant * This can only happen if the vnode is dead.
804 1.82 perseant * Keep going. Note that we DO NOT set the
805 1.22 perseant * bi_addr to anything -- if we failed to get
806 1.22 perseant * the vnode, for example, we want to assume
807 1.22 perseant * conservatively that all of its blocks *are*
808 1.22 perseant * located in the segment in question.
809 1.22 perseant * lfs_markv will throw them out if we are
810 1.22 perseant * wrong.
811 1.22 perseant */
812 1.22 perseant /* blkp->bi_daddr = LFS_UNUSED_DADDR; */
813 1.22 perseant continue;
814 1.22 perseant }
815 1.22 perseant
816 1.22 perseant /* Past this point we are guaranteed that vp, ip are valid. */
817 1.22 perseant
818 1.62 chs if (blkp->bi_lbn == LFS_UNUSED_LBN) {
819 1.22 perseant /*
820 1.22 perseant * We just want the inode address, which is
821 1.22 perseant * conveniently in v_daddr.
822 1.22 perseant */
823 1.22 perseant blkp->bi_daddr = v_daddr;
824 1.22 perseant } else {
825 1.79 fvdl daddr_t bi_daddr;
826 1.79 fvdl
827 1.79 fvdl /* XXX ondisk32 */
828 1.22 perseant error = VOP_BMAP(vp, blkp->bi_lbn, NULL,
829 1.79 fvdl &bi_daddr, NULL);
830 1.62 chs if (error)
831 1.22 perseant {
832 1.22 perseant blkp->bi_daddr = LFS_UNUSED_DADDR;
833 1.22 perseant continue;
834 1.22 perseant }
835 1.79 fvdl blkp->bi_daddr = dbtofsb(fs, bi_daddr);
836 1.66 perseant /* Fill in the block size, too */
837 1.72 yamt if (blkp->bi_lbn >= 0)
838 1.72 yamt blkp->bi_size = blksize(fs, ip, blkp->bi_lbn);
839 1.72 yamt else
840 1.72 yamt blkp->bi_size = fs->lfs_bsize;
841 1.22 perseant }
842 1.22 perseant }
843 1.22 perseant
844 1.22 perseant /*
845 1.22 perseant * Finish the old file, if there was one. The presence
846 1.22 perseant * of a usable vnode in vp is signaled by a valid v_daddr.
847 1.22 perseant */
848 1.62 chs if (v_daddr != LFS_UNUSED_DADDR) {
849 1.22 perseant lfs_vunref(vp);
850 1.22 perseant numrefed--;
851 1.22 perseant }
852 1.22 perseant
853 1.74 yamt #ifdef DEBUG_LFS
854 1.74 yamt if (numrefed != 0) {
855 1.74 yamt panic("lfs_bmapv: numrefed=%d", numrefed);
856 1.22 perseant }
857 1.74 yamt #endif
858 1.22 perseant
859 1.53 perseant vfs_unbusy(mntp);
860 1.22 perseant
861 1.22 perseant return 0;
862 1.1 mycroft }
863 1.1 mycroft
864 1.1 mycroft /*
865 1.31 christos * sys_lfs_segclean:
866 1.1 mycroft *
867 1.1 mycroft * Mark the segment clean.
868 1.1 mycroft *
869 1.1 mycroft * 0 on success
870 1.1 mycroft * -1/errno is return on error.
871 1.1 mycroft */
872 1.1 mycroft int
873 1.78 thorpej sys_lfs_segclean(struct lwp *l, void *v, register_t *retval)
874 1.9 thorpej {
875 1.32 drochner struct sys_lfs_segclean_args /* {
876 1.32 drochner syscallarg(fsid_t *) fsidp;
877 1.32 drochner syscallarg(u_long) segment;
878 1.32 drochner } */ *uap = v;
879 1.80 perseant struct lfs *fs;
880 1.1 mycroft struct mount *mntp;
881 1.1 mycroft fsid_t fsid;
882 1.1 mycroft int error;
883 1.67 perseant unsigned long segnum;
884 1.80 perseant struct proc *p = l->l_proc;
885 1.22 perseant
886 1.10 christos if ((error = suser(p->p_ucred, &p->p_acflag)) != 0)
887 1.1 mycroft return (error);
888 1.22 perseant
889 1.10 christos if ((error = copyin(SCARG(uap, fsidp), &fsid, sizeof(fsid_t))) != 0)
890 1.1 mycroft return (error);
891 1.16 fvdl if ((mntp = vfs_getvfs(&fsid)) == NULL)
892 1.53 perseant return (ENOENT);
893 1.22 perseant
894 1.1 mycroft fs = VFSTOUFS(mntp)->um_lfs;
895 1.67 perseant segnum = SCARG(uap, segment);
896 1.22 perseant
897 1.53 perseant if ((error = vfs_busy(mntp, LK_NOWAIT, NULL)) != 0)
898 1.53 perseant return (error);
899 1.80 perseant
900 1.65 perseant lfs_seglock(fs, SEGM_PROT);
901 1.80 perseant error = lfs_do_segclean(fs, segnum);
902 1.80 perseant lfs_segunlock(fs);
903 1.80 perseant vfs_unbusy(mntp);
904 1.80 perseant return error;
905 1.80 perseant }
906 1.80 perseant
907 1.80 perseant /*
908 1.80 perseant * Actually mark the segment clean.
909 1.80 perseant * Must be called with the segment lock held.
910 1.80 perseant */
911 1.80 perseant int
912 1.80 perseant lfs_do_segclean(struct lfs *fs, unsigned long segnum)
913 1.80 perseant {
914 1.80 perseant struct buf *bp;
915 1.80 perseant CLEANERINFO *cip;
916 1.80 perseant SEGUSE *sup;
917 1.80 perseant
918 1.80 perseant if (dtosn(fs, fs->lfs_curseg) == segnum) {
919 1.80 perseant return (EBUSY);
920 1.80 perseant }
921 1.80 perseant
922 1.67 perseant LFS_SEGENTRY(sup, fs, segnum, bp);
923 1.67 perseant if (sup->su_nbytes) {
924 1.67 perseant printf("lfs_segclean: not cleaning segment %lu: %d live bytes\n",
925 1.67 perseant segnum, sup->su_nbytes);
926 1.67 perseant brelse(bp);
927 1.67 perseant return (EBUSY);
928 1.67 perseant }
929 1.1 mycroft if (sup->su_flags & SEGUSE_ACTIVE) {
930 1.1 mycroft brelse(bp);
931 1.1 mycroft return (EBUSY);
932 1.50 perseant }
933 1.50 perseant if (!(sup->su_flags & SEGUSE_DIRTY)) {
934 1.50 perseant brelse(bp);
935 1.50 perseant return (EALREADY);
936 1.1 mycroft }
937 1.22 perseant
938 1.57 perseant fs->lfs_avail += segtod(fs, 1);
939 1.46 perseant if (sup->su_flags & SEGUSE_SUPERBLOCK)
940 1.57 perseant fs->lfs_avail -= btofsb(fs, LFS_SBPAD);
941 1.67 perseant if (fs->lfs_version > 1 && segnum == 0 &&
942 1.57 perseant fs->lfs_start < btofsb(fs, LFS_LABELPAD))
943 1.57 perseant fs->lfs_avail -= btofsb(fs, LFS_LABELPAD) - fs->lfs_start;
944 1.57 perseant fs->lfs_bfree += sup->su_nsums * btofsb(fs, fs->lfs_sumsize) +
945 1.57 perseant btofsb(fs, sup->su_ninos * fs->lfs_ibsize);
946 1.57 perseant fs->lfs_dmeta -= sup->su_nsums * btofsb(fs, fs->lfs_sumsize) +
947 1.57 perseant btofsb(fs, sup->su_ninos * fs->lfs_ibsize);
948 1.43 perseant if (fs->lfs_dmeta < 0)
949 1.43 perseant fs->lfs_dmeta = 0;
950 1.1 mycroft sup->su_flags &= ~SEGUSE_DIRTY;
951 1.80 perseant LFS_WRITESEGENTRY(sup, fs, segnum, bp);
952 1.22 perseant
953 1.1 mycroft LFS_CLEANERINFO(cip, fs, bp);
954 1.1 mycroft ++cip->clean;
955 1.1 mycroft --cip->dirty;
956 1.22 perseant fs->lfs_nclean = cip->clean;
957 1.49 perseant cip->bfree = fs->lfs_bfree;
958 1.49 perseant cip->avail = fs->lfs_avail - fs->lfs_ravail;
959 1.65 perseant (void) LFS_BWRITE_LOG(bp);
960 1.1 mycroft wakeup(&fs->lfs_avail);
961 1.22 perseant
962 1.1 mycroft return (0);
963 1.1 mycroft }
964 1.1 mycroft
965 1.1 mycroft /*
966 1.1 mycroft * This will block until a segment in file system fsid is written. A timeout
967 1.1 mycroft * in milliseconds may be specified which will awake the cleaner automatically.
968 1.1 mycroft * An fsid of -1 means any file system, and a timeout of 0 means forever.
969 1.84 perseant */
970 1.84 perseant int
971 1.84 perseant lfs_segwait(fsid_t *fsidp, struct timeval *tv)
972 1.84 perseant {
973 1.84 perseant struct mount *mntp;
974 1.84 perseant void *addr;
975 1.84 perseant u_long timeout;
976 1.84 perseant int error, s;
977 1.84 perseant
978 1.84 perseant if ((mntp = vfs_getvfs(fsidp)) == NULL)
979 1.84 perseant addr = &lfs_allclean_wakeup;
980 1.84 perseant else
981 1.84 perseant addr = &VFSTOUFS(mntp)->um_lfs->lfs_nextseg;
982 1.84 perseant /*
983 1.84 perseant * XXX THIS COULD SLEEP FOREVER IF TIMEOUT IS {0,0}!
984 1.84 perseant * XXX IS THAT WHAT IS INTENDED?
985 1.84 perseant */
986 1.84 perseant s = splclock();
987 1.84 perseant timeradd(tv, &time, tv);
988 1.84 perseant timeout = hzto(tv);
989 1.84 perseant splx(s);
990 1.84 perseant error = tsleep(addr, PCATCH | PUSER, "segment", timeout);
991 1.84 perseant return (error == ERESTART ? EINTR : 0);
992 1.84 perseant }
993 1.84 perseant
994 1.84 perseant /*
995 1.84 perseant * sys_lfs_segwait:
996 1.84 perseant *
997 1.84 perseant * System call wrapper around lfs_segwait().
998 1.1 mycroft *
999 1.1 mycroft * 0 on success
1000 1.1 mycroft * 1 on timeout
1001 1.1 mycroft * -1/errno is return on error.
1002 1.1 mycroft */
1003 1.1 mycroft int
1004 1.78 thorpej sys_lfs_segwait(struct lwp *l, void *v, register_t *retval)
1005 1.9 thorpej {
1006 1.32 drochner struct sys_lfs_segwait_args /* {
1007 1.32 drochner syscallarg(fsid_t *) fsidp;
1008 1.32 drochner syscallarg(struct timeval *) tv;
1009 1.32 drochner } */ *uap = v;
1010 1.78 thorpej struct proc *p = l->l_proc;
1011 1.1 mycroft struct timeval atv;
1012 1.1 mycroft fsid_t fsid;
1013 1.84 perseant int error;
1014 1.22 perseant
1015 1.84 perseant /* XXX need we be su to segwait? */
1016 1.10 christos if ((error = suser(p->p_ucred, &p->p_acflag)) != 0) {
1017 1.1 mycroft return (error);
1018 1.1 mycroft }
1019 1.10 christos if ((error = copyin(SCARG(uap, fsidp), &fsid, sizeof(fsid_t))) != 0)
1020 1.1 mycroft return (error);
1021 1.22 perseant
1022 1.5 cgd if (SCARG(uap, tv)) {
1023 1.10 christos error = copyin(SCARG(uap, tv), &atv, sizeof(struct timeval));
1024 1.10 christos if (error)
1025 1.1 mycroft return (error);
1026 1.1 mycroft if (itimerfix(&atv))
1027 1.1 mycroft return (EINVAL);
1028 1.84 perseant } else /* NULL or invalid */
1029 1.84 perseant atv.tv_sec = atv.tv_usec = 0;
1030 1.84 perseant return lfs_segwait(&fsid, &atv);
1031 1.1 mycroft }
1032 1.1 mycroft
1033 1.1 mycroft /*
1034 1.1 mycroft * VFS_VGET call specialized for the cleaner. The cleaner already knows the
1035 1.1 mycroft * daddr from the ifile, so don't look it up again. If the cleaner is
1036 1.1 mycroft * processing IINFO structures, it may have the ondisk inode already, so
1037 1.1 mycroft * don't go retrieving it again.
1038 1.22 perseant *
1039 1.74 yamt * we lfs_vref, and it is the caller's responsibility to lfs_vunref
1040 1.74 yamt * when finished.
1041 1.1 mycroft */
1042 1.22 perseant extern struct lock ufs_hashlock;
1043 1.22 perseant
1044 1.1 mycroft int
1045 1.74 yamt lfs_fasthashget(dev_t dev, ino_t ino, struct vnode **vpp)
1046 1.44 fvdl {
1047 1.44 fvdl
1048 1.44 fvdl /*
1049 1.44 fvdl * This is playing fast and loose. Someone may have the inode
1050 1.44 fvdl * locked, in which case they are going to be distinctly unhappy
1051 1.44 fvdl * if we trash something.
1052 1.44 fvdl */
1053 1.44 fvdl if ((*vpp = ufs_ihashlookup(dev, ino)) != NULL) {
1054 1.44 fvdl if ((*vpp)->v_flag & VXLOCK) {
1055 1.46 perseant printf("lfs_fastvget: vnode VXLOCKed for ino %d\n",
1056 1.46 perseant ino);
1057 1.44 fvdl clean_vnlocked++;
1058 1.44 fvdl #ifdef LFS_EAGAIN_FAIL
1059 1.44 fvdl return EAGAIN;
1060 1.44 fvdl #endif
1061 1.44 fvdl }
1062 1.44 fvdl if (lfs_vref(*vpp)) {
1063 1.44 fvdl clean_inlocked++;
1064 1.44 fvdl return EAGAIN;
1065 1.44 fvdl }
1066 1.44 fvdl } else
1067 1.44 fvdl *vpp = NULL;
1068 1.44 fvdl
1069 1.44 fvdl return (0);
1070 1.44 fvdl }
1071 1.44 fvdl
1072 1.44 fvdl int
1073 1.89 fvdl lfs_fastvget(struct mount *mp, ino_t ino, daddr_t daddr, struct vnode **vpp, struct ufs1_dinode *dinp)
1074 1.1 mycroft {
1075 1.41 augustss struct inode *ip;
1076 1.89 fvdl struct ufs1_dinode *dip;
1077 1.1 mycroft struct vnode *vp;
1078 1.1 mycroft struct ufsmount *ump;
1079 1.1 mycroft dev_t dev;
1080 1.88 yamt int error, retries;
1081 1.22 perseant struct buf *bp;
1082 1.57 perseant struct lfs *fs;
1083 1.22 perseant
1084 1.1 mycroft ump = VFSTOUFS(mp);
1085 1.1 mycroft dev = ump->um_dev;
1086 1.57 perseant fs = ump->um_lfs;
1087 1.54 perseant
1088 1.54 perseant /*
1089 1.54 perseant * Wait until the filesystem is fully mounted before allowing vget
1090 1.82 perseant * to complete. This prevents possible problems with roll-forward.
1091 1.54 perseant */
1092 1.62 chs while (fs->lfs_flags & LFS_NOTYET) {
1093 1.57 perseant tsleep(&fs->lfs_flags, PRIBIO+1, "lfs_fnotyet", 0);
1094 1.54 perseant }
1095 1.54 perseant /*
1096 1.54 perseant * This is playing fast and loose. Someone may have the inode
1097 1.54 perseant * locked, in which case they are going to be distinctly unhappy
1098 1.54 perseant * if we trash something.
1099 1.54 perseant */
1100 1.44 fvdl
1101 1.74 yamt error = lfs_fasthashget(dev, ino, vpp);
1102 1.44 fvdl if (error != 0 || *vpp != NULL)
1103 1.44 fvdl return (error);
1104 1.44 fvdl
1105 1.45 fvdl if ((error = getnewvnode(VT_LFS, mp, lfs_vnodeop_p, &vp)) != 0) {
1106 1.44 fvdl *vpp = NULL;
1107 1.44 fvdl return (error);
1108 1.44 fvdl }
1109 1.44 fvdl
1110 1.22 perseant do {
1111 1.74 yamt error = lfs_fasthashget(dev, ino, vpp);
1112 1.44 fvdl if (error != 0 || *vpp != NULL) {
1113 1.44 fvdl ungetnewvnode(vp);
1114 1.44 fvdl return (error);
1115 1.22 perseant }
1116 1.22 perseant } while (lockmgr(&ufs_hashlock, LK_EXCLUSIVE|LK_SLEEPFAIL, 0));
1117 1.1 mycroft
1118 1.1 mycroft /* Allocate new vnode/inode. */
1119 1.44 fvdl lfs_vcreate(mp, ino, vp);
1120 1.44 fvdl
1121 1.1 mycroft /*
1122 1.1 mycroft * Put it onto its hash chain and lock it so that other requests for
1123 1.1 mycroft * this inode will block if they arrive while we are sleeping waiting
1124 1.1 mycroft * for old data structures to be purged or for the contents of the
1125 1.1 mycroft * disk portion of this inode to be read.
1126 1.1 mycroft */
1127 1.1 mycroft ip = VTOI(vp);
1128 1.1 mycroft ufs_ihashins(ip);
1129 1.22 perseant lockmgr(&ufs_hashlock, LK_RELEASE, 0);
1130 1.22 perseant
1131 1.1 mycroft /*
1132 1.1 mycroft * XXX
1133 1.1 mycroft * This may not need to be here, logically it should go down with
1134 1.1 mycroft * the i_devvp initialization.
1135 1.1 mycroft * Ask Kirk.
1136 1.1 mycroft */
1137 1.57 perseant ip->i_lfs = fs;
1138 1.1 mycroft
1139 1.1 mycroft /* Read in the disk contents for the inode, copy into the inode. */
1140 1.10 christos if (dinp) {
1141 1.89 fvdl error = copyin(dinp, ip->i_din.ffs1_din, sizeof (struct ufs1_dinode));
1142 1.22 perseant if (error) {
1143 1.24 perseant printf("lfs_fastvget: dinode copyin failed for ino %d\n", ino);
1144 1.22 perseant ufs_ihashrem(ip);
1145 1.22 perseant
1146 1.22 perseant /* Unlock and discard unneeded inode. */
1147 1.33 wrstuden lockmgr(&vp->v_lock, LK_RELEASE, &vp->v_interlock);
1148 1.22 perseant lfs_vunref(vp);
1149 1.22 perseant *vpp = NULL;
1150 1.1 mycroft return (error);
1151 1.22 perseant }
1152 1.62 chs if (ip->i_number != ino)
1153 1.22 perseant panic("lfs_fastvget: I was fed the wrong inode!");
1154 1.22 perseant } else {
1155 1.65 perseant retries = 0;
1156 1.65 perseant again:
1157 1.57 perseant error = bread(ump->um_devvp, fsbtodb(fs, daddr), fs->lfs_ibsize,
1158 1.57 perseant NOCRED, &bp);
1159 1.10 christos if (error) {
1160 1.29 perseant printf("lfs_fastvget: bread failed with %d\n",error);
1161 1.1 mycroft /*
1162 1.1 mycroft * The inode does not contain anything useful, so it
1163 1.1 mycroft * would be misleading to leave it on its hash chain.
1164 1.1 mycroft * Iput() will return it to the free list.
1165 1.1 mycroft */
1166 1.1 mycroft ufs_ihashrem(ip);
1167 1.22 perseant
1168 1.1 mycroft /* Unlock and discard unneeded inode. */
1169 1.33 wrstuden lockmgr(&vp->v_lock, LK_RELEASE, &vp->v_interlock);
1170 1.1 mycroft lfs_vunref(vp);
1171 1.1 mycroft brelse(bp);
1172 1.1 mycroft *vpp = NULL;
1173 1.1 mycroft return (error);
1174 1.1 mycroft }
1175 1.65 perseant dip = lfs_ifind(ump->um_lfs, ino, bp);
1176 1.65 perseant if (dip == NULL) {
1177 1.65 perseant /* Assume write has not completed yet; try again */
1178 1.65 perseant bp->b_flags |= B_INVAL;
1179 1.65 perseant brelse(bp);
1180 1.65 perseant ++retries;
1181 1.65 perseant if (retries > LFS_IFIND_RETRIES)
1182 1.65 perseant panic("lfs_fastvget: dinode not found");
1183 1.65 perseant printf("lfs_fastvget: dinode not found, retrying...\n");
1184 1.65 perseant goto again;
1185 1.65 perseant }
1186 1.89 fvdl *ip->i_din.ffs1_din = *dip;
1187 1.1 mycroft brelse(bp);
1188 1.1 mycroft }
1189 1.88 yamt lfs_vinit(mp, vp);
1190 1.63 chs
1191 1.1 mycroft *vpp = vp;
1192 1.88 yamt
1193 1.74 yamt KASSERT(VOP_ISLOCKED(vp));
1194 1.74 yamt VOP_UNLOCK(vp, 0);
1195 1.22 perseant
1196 1.1 mycroft return (0);
1197 1.1 mycroft }
1198 1.22 perseant
1199 1.85 perseant /*
1200 1.85 perseant * Make up a "fake" cleaner buffer, copy the data from userland into it.
1201 1.85 perseant */
1202 1.1 mycroft struct buf *
1203 1.65 perseant lfs_fakebuf(struct lfs *fs, struct vnode *vp, int lbn, size_t size, caddr_t uaddr)
1204 1.1 mycroft {
1205 1.1 mycroft struct buf *bp;
1206 1.25 perseant int error;
1207 1.75 yamt
1208 1.75 yamt KASSERT(VTOI(vp)->i_number != LFS_IFILE_INUM);
1209 1.73 yamt
1210 1.80 perseant bp = lfs_newbuf(VTOI(vp)->i_lfs, vp, lbn, size, LFS_NB_CLEAN);
1211 1.25 perseant error = copyin(uaddr, bp->b_data, size);
1212 1.62 chs if (error) {
1213 1.80 perseant lfs_freebuf(fs, bp);
1214 1.25 perseant return NULL;
1215 1.22 perseant }
1216 1.73 yamt KDASSERT(bp->b_iodone == lfs_callback);
1217 1.73 yamt
1218 1.65 perseant #if 0
1219 1.65 perseant bp->b_saveaddr = (caddr_t)fs;
1220 1.65 perseant ++fs->lfs_iocount;
1221 1.65 perseant #endif
1222 1.1 mycroft bp->b_bufsize = size;
1223 1.1 mycroft bp->b_bcount = size;
1224 1.1 mycroft return (bp);
1225 1.1 mycroft }
1226