lfs.h revision 1.78 1 1.78 perseant /* $NetBSD: lfs.h,v 1.78 2005/04/01 21:59:46 perseant Exp $ */
2 1.6 mycroft
3 1.1 mycroft /*-
4 1.46 perseant * Copyright (c) 1999, 2000, 2001, 2002, 2003 The NetBSD Foundation, Inc.
5 1.11 perseant * All rights reserved.
6 1.11 perseant *
7 1.11 perseant * This code is derived from software contributed to The NetBSD Foundation
8 1.11 perseant * by Konrad E. Schroder <perseant (at) hhhh.org>.
9 1.11 perseant *
10 1.11 perseant * Redistribution and use in source and binary forms, with or without
11 1.11 perseant * modification, are permitted provided that the following conditions
12 1.11 perseant * are met:
13 1.11 perseant * 1. Redistributions of source code must retain the above copyright
14 1.11 perseant * notice, this list of conditions and the following disclaimer.
15 1.11 perseant * 2. Redistributions in binary form must reproduce the above copyright
16 1.11 perseant * notice, this list of conditions and the following disclaimer in the
17 1.11 perseant * documentation and/or other materials provided with the distribution.
18 1.11 perseant * 3. All advertising materials mentioning features or use of this software
19 1.11 perseant * must display the following acknowledgement:
20 1.49 perseant * This product includes software developed by the NetBSD
21 1.49 perseant * Foundation, Inc. and its contributors.
22 1.11 perseant * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.11 perseant * contributors may be used to endorse or promote products derived
24 1.11 perseant * from this software without specific prior written permission.
25 1.11 perseant *
26 1.11 perseant * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.11 perseant * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.11 perseant * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.11 perseant * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.11 perseant * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.11 perseant * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.11 perseant * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.11 perseant * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.11 perseant * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.11 perseant * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.11 perseant * POSSIBILITY OF SUCH DAMAGE.
37 1.11 perseant */
38 1.11 perseant /*-
39 1.1 mycroft * Copyright (c) 1991, 1993
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 1.69 agc * 3. Neither the name of the University nor the names of its contributors
51 1.1 mycroft * may be used to endorse or promote products derived from this software
52 1.1 mycroft * without specific prior written permission.
53 1.1 mycroft *
54 1.1 mycroft * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
55 1.1 mycroft * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
56 1.1 mycroft * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
57 1.1 mycroft * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
58 1.1 mycroft * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
59 1.1 mycroft * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
60 1.1 mycroft * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
61 1.1 mycroft * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
62 1.1 mycroft * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
63 1.1 mycroft * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
64 1.1 mycroft * SUCH DAMAGE.
65 1.1 mycroft *
66 1.9 fvdl * @(#)lfs.h 8.9 (Berkeley) 5/8/95
67 1.1 mycroft */
68 1.1 mycroft
69 1.42 matt #ifndef _UFS_LFS_LFS_H_
70 1.42 matt #define _UFS_LFS_LFS_H_
71 1.42 matt
72 1.11 perseant /*
73 1.11 perseant * Compile-time options for LFS.
74 1.11 perseant */
75 1.61 perseant #define LFS_IFIND_RETRIES 16
76 1.61 perseant #define LFS_LOGLENGTH 1024 /* size of debugging log */
77 1.61 perseant #define LFS_MAX_ACTIVE 10 /* Dirty segments before ckp forced */
78 1.39 perseant
79 1.11 perseant /*
80 1.61 perseant * Fixed filesystem layout parameters
81 1.11 perseant */
82 1.61 perseant #define LFS_LABELPAD 8192 /* LFS label size */
83 1.61 perseant #define LFS_SBPAD 8192 /* LFS superblock size */
84 1.61 perseant
85 1.61 perseant #define LFS_UNUSED_INUM 0 /* 0: out of band inode number */
86 1.61 perseant #define LFS_IFILE_INUM 1 /* 1: IFILE inode number */
87 1.61 perseant /* 2: Root inode number */
88 1.61 perseant #define LOSTFOUNDINO 3 /* 3: lost+found inode number */
89 1.61 perseant #define LFS_FIRST_INUM 4 /* 4: first free inode number */
90 1.61 perseant
91 1.61 perseant #define LFS_V1_SUMMARY_SIZE 512 /* V1 fixed summary size */
92 1.61 perseant #define LFS_DFL_SUMMARY_SIZE 512 /* Default summary size */
93 1.61 perseant
94 1.61 perseant #define LFS_MAX_DADDR 0x7fffffff /* Highest addressable fsb */
95 1.61 perseant
96 1.61 perseant /* Adjustable filesystem parameters */
97 1.27 perseant #define MIN_FREE_SEGS 2
98 1.37 perseant #ifndef LFS_ATIME_IFILE
99 1.61 perseant # define LFS_ATIME_IFILE 0 /* Store atime info in ifile (optional in LFSv1) */
100 1.37 perseant #endif
101 1.61 perseant #define LFS_MARKV_MAXBLKCNT 65536 /* Max block count for lfs_markv() */
102 1.61 perseant
103 1.61 perseant /* Misc. definitions */
104 1.61 perseant #define BW_CLEAN 1 /* Flag for lfs_bwrite_ext() */
105 1.61 perseant #define PG_DELWRI PG_PAGER1 /* Local def for delayed pageout */
106 1.61 perseant
107 1.61 perseant /* Resource limits */
108 1.61 perseant #define LFS_MAX_BUFS ((nbuf >> 2) - 10)
109 1.61 perseant #define LFS_WAIT_BUFS ((nbuf >> 1) - (nbuf >> 3) - 10)
110 1.75 perseant #define LFS_INVERSE_MAX_BUFS(n) (((n) + 10) << 2)
111 1.75 perseant extern u_long bufmem_lowater, bufmem_hiwater; /* XXX */
112 1.75 perseant #define LFS_MAX_BYTES ((bufmem_lowater >> 2) - 10 * PAGE_SIZE)
113 1.75 perseant #define LFS_INVERSE_MAX_BYTES(n) (((n) + 10 * PAGE_SIZE) << 2)
114 1.75 perseant #define LFS_WAIT_BYTES ((bufmem_lowater >> 1) - (bufmem_lowater >> 3) - 10 * PAGE_SIZE)
115 1.61 perseant #define LFS_MAX_DIROP ((desiredvnodes >> 2) + (desiredvnodes >> 3))
116 1.61 perseant #define LFS_MAX_PAGES \
117 1.61 perseant (((uvmexp.active + uvmexp.inactive + uvmexp.free) * uvmexp.filemin) >> 8)
118 1.61 perseant #define LFS_WAIT_PAGES \
119 1.61 perseant (((uvmexp.active + uvmexp.inactive + uvmexp.free) * uvmexp.filemax) >> 8)
120 1.61 perseant #define LFS_BUFWAIT 2 /* How long to wait if over *_WAIT_* */
121 1.61 perseant
122 1.61 perseant /*
123 1.61 perseant * Reserved blocks for lfs_malloc
124 1.61 perseant */
125 1.24 perseant
126 1.61 perseant /* Structure to keep reserved blocks */
127 1.61 perseant typedef struct lfs_res_blk {
128 1.61 perseant void *p;
129 1.61 perseant LIST_ENTRY(lfs_res_blk) res;
130 1.61 perseant int size;
131 1.61 perseant char inuse;
132 1.61 perseant } res_t;
133 1.46 perseant
134 1.46 perseant /* Types for lfs_newbuf and lfs_malloc */
135 1.46 perseant #define LFS_NB_UNKNOWN -1
136 1.46 perseant #define LFS_NB_SUMMARY 0
137 1.46 perseant #define LFS_NB_SBLOCK 1
138 1.46 perseant #define LFS_NB_IBLOCK 2
139 1.46 perseant #define LFS_NB_CLUSTER 3
140 1.46 perseant #define LFS_NB_CLEAN 4
141 1.46 perseant #define LFS_NB_COUNT 5 /* always last */
142 1.46 perseant
143 1.46 perseant /* Number of reserved memory blocks of each type */
144 1.46 perseant #define LFS_N_SUMMARIES 2
145 1.49 perseant #define LFS_N_SBLOCKS 1 /* Always 1, to throttle superblock writes */
146 1.49 perseant #define LFS_N_IBLOCKS 16 /* In theory ssize/bsize; in practice around 2 */
147 1.49 perseant #define LFS_N_CLUSTERS 16 /* In theory ssize/MAXPHYS */
148 1.49 perseant #define LFS_N_CLEAN 0
149 1.46 perseant
150 1.46 perseant /* Total count of "large" (non-pool) types */
151 1.61 perseant #define LFS_N_TOTAL (LFS_N_SUMMARIES + LFS_N_SBLOCKS + LFS_N_IBLOCKS + \
152 1.61 perseant LFS_N_CLUSTERS + LFS_N_CLEAN)
153 1.46 perseant
154 1.46 perseant /* Counts for pool types */
155 1.49 perseant #define LFS_N_CL LFS_N_CLUSTERS
156 1.49 perseant #define LFS_N_BPP 2
157 1.46 perseant #define LFS_N_SEG 2
158 1.46 perseant
159 1.35 perseant /*
160 1.61 perseant * "struct buf" associated definitions
161 1.35 perseant */
162 1.35 perseant
163 1.61 perseant /* Unassigned disk addresses. */
164 1.61 perseant #define UNASSIGNED -1
165 1.61 perseant #define UNWRITTEN -2
166 1.61 perseant
167 1.61 perseant /* Unused logical block number */
168 1.61 perseant #define LFS_UNUSED_LBN -1
169 1.46 perseant
170 1.61 perseant /* Determine if a buffer belongs to the ifile */
171 1.61 perseant #define IS_IFILE(bp) (VTOI(bp->b_vp)->i_number == LFS_IFILE_INUM)
172 1.46 perseant
173 1.61 perseant # define LFS_LOCK_BUF(bp) do { \
174 1.35 perseant if (((bp)->b_flags & (B_LOCKED | B_CALL)) == 0) { \
175 1.67 yamt simple_lock(&lfs_subsys_lock); \
176 1.49 perseant ++locked_queue_count; \
177 1.35 perseant locked_queue_bytes += bp->b_bufsize; \
178 1.67 yamt simple_unlock(&lfs_subsys_lock); \
179 1.35 perseant } \
180 1.35 perseant (bp)->b_flags |= B_LOCKED; \
181 1.38 chs } while (0)
182 1.35 perseant
183 1.61 perseant # define LFS_UNLOCK_BUF(bp) do { \
184 1.35 perseant if (((bp)->b_flags & (B_LOCKED | B_CALL)) == B_LOCKED) { \
185 1.67 yamt simple_lock(&lfs_subsys_lock); \
186 1.49 perseant --locked_queue_count; \
187 1.35 perseant locked_queue_bytes -= bp->b_bufsize; \
188 1.35 perseant if (locked_queue_count < LFS_WAIT_BUFS && \
189 1.35 perseant locked_queue_bytes < LFS_WAIT_BYTES) \
190 1.35 perseant wakeup(&locked_queue_count); \
191 1.67 yamt simple_unlock(&lfs_subsys_lock); \
192 1.35 perseant } \
193 1.35 perseant (bp)->b_flags &= ~B_LOCKED; \
194 1.38 chs } while (0)
195 1.35 perseant
196 1.61 perseant #ifdef _KERNEL
197 1.61 perseant # define LFS_IS_MALLOC_BUF(bp) (((bp)->b_flags & B_CALL) && \
198 1.61 perseant (bp)->b_iodone == lfs_callback)
199 1.61 perseant
200 1.77 perseant # ifdef DEBUG
201 1.61 perseant # define LFS_DEBUG_COUNTLOCKED(m) do { \
202 1.77 perseant if (lfs_debug_log_subsys[DLOG_LLIST]) { \
203 1.77 perseant lfs_countlocked(&locked_queue_count, &locked_queue_bytes, (m)); \
204 1.77 perseant wakeup(&locked_queue_count); \
205 1.77 perseant } \
206 1.39 perseant } while (0)
207 1.61 perseant # else
208 1.61 perseant # define LFS_DEBUG_COUNTLOCKED(m)
209 1.61 perseant # endif
210 1.61 perseant
211 1.61 perseant /* log for debugging writes to the Ifile */
212 1.61 perseant # ifdef DEBUG
213 1.61 perseant struct lfs_log_entry {
214 1.61 perseant char *op;
215 1.61 perseant char *file;
216 1.78 perseant int pid;
217 1.61 perseant int line;
218 1.61 perseant daddr_t block;
219 1.61 perseant unsigned long flags;
220 1.61 perseant };
221 1.61 perseant extern int lfs_lognum;
222 1.61 perseant extern struct lfs_log_entry lfs_log[LFS_LOGLENGTH];
223 1.61 perseant # define LFS_BWRITE_LOG(bp) lfs_bwrite_log((bp), __FILE__, __LINE__)
224 1.78 perseant # define LFS_ENTER_LOG(theop, thefile, theline, lbn, theflags, thepid) do {\
225 1.61 perseant int _s; \
226 1.61 perseant \
227 1.78 perseant simple_lock(&lfs_subsys_lock); \
228 1.61 perseant _s = splbio(); \
229 1.61 perseant lfs_log[lfs_lognum].op = theop; \
230 1.61 perseant lfs_log[lfs_lognum].file = thefile; \
231 1.61 perseant lfs_log[lfs_lognum].line = (theline); \
232 1.78 perseant lfs_log[lfs_lognum].pid = (thepid); \
233 1.61 perseant lfs_log[lfs_lognum].block = (lbn); \
234 1.61 perseant lfs_log[lfs_lognum].flags = (theflags); \
235 1.61 perseant lfs_lognum = (lfs_lognum + 1) % LFS_LOGLENGTH; \
236 1.61 perseant splx(_s); \
237 1.78 perseant simple_unlock(&lfs_subsys_lock); \
238 1.61 perseant } while (0)
239 1.61 perseant
240 1.61 perseant # define LFS_BCLEAN_LOG(fs, bp) do { \
241 1.61 perseant if ((bp)->b_vp == (fs)->lfs_ivnode) \
242 1.61 perseant LFS_ENTER_LOG("clear", __FILE__, __LINE__, \
243 1.78 perseant bp->b_lblkno, bp->b_flags, curproc->p_pid);\
244 1.61 perseant } while (0)
245 1.77 perseant
246 1.77 perseant /* Must match list in lfs_vfsops.c ! */
247 1.77 perseant # define DLOG_RF 0 /* roll forward */
248 1.77 perseant # define DLOG_ALLOC 1 /* inode alloc */
249 1.77 perseant # define DLOG_AVAIL 2 /* lfs_{,r,f}avail */
250 1.77 perseant # define DLOG_FLUSH 3 /* flush */
251 1.77 perseant # define DLOG_LLIST 4 /* locked list accounting */
252 1.77 perseant # define DLOG_WVNODE 5 /* vflush/writevnodes verbose */
253 1.77 perseant # define DLOG_VNODE 6 /* vflush/writevnodes */
254 1.77 perseant # define DLOG_SEG 7 /* segwrite */
255 1.77 perseant # define DLOG_SU 8 /* seguse accounting */
256 1.77 perseant # define DLOG_CLEAN 9 /* cleaner routines */
257 1.77 perseant # define DLOG_MOUNT 10 /* mount/unmount */
258 1.77 perseant # define DLOG_PAGE 11 /* putpages/gop_write */
259 1.77 perseant # define DLOG_DIROP 12 /* dirop accounting */
260 1.77 perseant # define DLOG_MALLOC 13 /* lfs_malloc accounting */
261 1.77 perseant # define DLOG_MAX 14 /* The terminator */
262 1.77 perseant # define DLOG(a) lfs_debug_log a
263 1.61 perseant # else /* ! DEBUG */
264 1.61 perseant # define LFS_BCLEAN_LOG(fs, bp)
265 1.61 perseant # define LFS_BWRITE_LOG(bp) VOP_BWRITE((bp))
266 1.77 perseant # define DLOG(a)
267 1.61 perseant # endif /* ! DEBUG */
268 1.61 perseant #else /* ! _KERNEL */
269 1.61 perseant # define LFS_BWRITE_LOG(bp) VOP_BWRITE((bp))
270 1.61 perseant #endif /* _KERNEL */
271 1.76 perry
272 1.64 perseant #ifdef _KERNEL
273 1.64 perseant /* Filehandle structure for exported LFSes */
274 1.64 perseant struct lfid {
275 1.64 perseant struct ufid lfid_ufid;
276 1.64 perseant #define lfid_len lfid_ufid.ufid_len
277 1.64 perseant #define lfid_ino lfid_ufid.ufid_ino
278 1.64 perseant #define lfid_gen lfid_ufid.ufid_gen
279 1.64 perseant uint32_t lfid_ident;
280 1.64 perseant };
281 1.64 perseant #endif /* _KERNEL */
282 1.64 perseant
283 1.61 perseant /*
284 1.61 perseant * "struct inode" associated definitions
285 1.61 perseant */
286 1.61 perseant
287 1.61 perseant /* Address calculations for metadata located in the inode */
288 1.61 perseant #define S_INDIR(fs) -NDADDR
289 1.61 perseant #define D_INDIR(fs) (S_INDIR(fs) - NINDIR(fs) - 1)
290 1.61 perseant #define T_INDIR(fs) (D_INDIR(fs) - NINDIR(fs) * NINDIR(fs) - 1)
291 1.39 perseant
292 1.24 perseant /* For convenience */
293 1.73 mycroft #define IN_ALLMOD (IN_MODIFIED|IN_ACCESS|IN_CHANGE|IN_UPDATE|IN_MODIFY|IN_ACCESSED|IN_CLEANING)
294 1.37 perseant
295 1.49 perseant #define LFS_SET_UINO(ip, flags) do { \
296 1.58 perseant simple_lock(&(ip)->i_lfs->lfs_interlock); \
297 1.49 perseant if (((flags) & IN_ACCESSED) && !((ip)->i_flag & IN_ACCESSED)) \
298 1.49 perseant ++(ip)->i_lfs->lfs_uinodes; \
299 1.49 perseant if (((flags) & IN_CLEANING) && !((ip)->i_flag & IN_CLEANING)) \
300 1.49 perseant ++(ip)->i_lfs->lfs_uinodes; \
301 1.49 perseant if (((flags) & IN_MODIFIED) && !((ip)->i_flag & IN_MODIFIED)) \
302 1.49 perseant ++(ip)->i_lfs->lfs_uinodes; \
303 1.49 perseant (ip)->i_flag |= (flags); \
304 1.58 perseant simple_unlock(&(ip)->i_lfs->lfs_interlock); \
305 1.49 perseant } while (0)
306 1.49 perseant
307 1.49 perseant #define LFS_CLR_UINO(ip, flags) do { \
308 1.58 perseant simple_lock(&(ip)->i_lfs->lfs_interlock); \
309 1.49 perseant if (((flags) & IN_ACCESSED) && ((ip)->i_flag & IN_ACCESSED)) \
310 1.49 perseant --(ip)->i_lfs->lfs_uinodes; \
311 1.49 perseant if (((flags) & IN_CLEANING) && ((ip)->i_flag & IN_CLEANING)) \
312 1.49 perseant --(ip)->i_lfs->lfs_uinodes; \
313 1.49 perseant if (((flags) & IN_MODIFIED) && ((ip)->i_flag & IN_MODIFIED)) \
314 1.49 perseant --(ip)->i_lfs->lfs_uinodes; \
315 1.49 perseant (ip)->i_flag &= ~(flags); \
316 1.49 perseant if ((ip)->i_lfs->lfs_uinodes < 0) { \
317 1.49 perseant panic("lfs_uinodes < 0"); \
318 1.49 perseant } \
319 1.58 perseant simple_unlock(&(ip)->i_lfs->lfs_interlock); \
320 1.38 chs } while (0)
321 1.29 perseant
322 1.37 perseant #define LFS_ITIMES(ip, acc, mod, cre) do { \
323 1.39 perseant struct lfs *_fs = (ip)->i_lfs; \
324 1.39 perseant \
325 1.49 perseant if ((ip)->i_flag & IN_ACCESS) { \
326 1.62 fvdl (ip)->i_ffs1_atime = (acc)->tv_sec; \
327 1.62 fvdl (ip)->i_ffs1_atimensec = (acc)->tv_nsec; \
328 1.37 perseant if ((ip)->i_lfs->lfs_version > 1) { \
329 1.61 perseant struct buf *_ibp; \
330 1.61 perseant IFILE *_ifp; \
331 1.37 perseant \
332 1.61 perseant LFS_IENTRY(_ifp, ip->i_lfs, ip->i_number, _ibp); \
333 1.61 perseant _ifp->if_atime_sec = (acc)->tv_sec; \
334 1.61 perseant _ifp->if_atime_nsec = (acc)->tv_nsec; \
335 1.61 perseant LFS_BWRITE_LOG(_ibp); \
336 1.78 perseant simple_lock(&_fs->lfs_interlock); \
337 1.39 perseant _fs->lfs_flags |= LFS_IFDIRTY; \
338 1.78 perseant simple_unlock(&_fs->lfs_interlock); \
339 1.37 perseant } else { \
340 1.37 perseant LFS_SET_UINO(ip, IN_ACCESSED); \
341 1.49 perseant } \
342 1.29 perseant } \
343 1.73 mycroft if ((ip)->i_flag & (IN_CHANGE | IN_UPDATE | IN_MODIFY)) { \
344 1.73 mycroft if ((ip)->i_flag & (IN_UPDATE | IN_MODIFY)) { \
345 1.62 fvdl (ip)->i_ffs1_mtime = (mod)->tv_sec; \
346 1.62 fvdl (ip)->i_ffs1_mtimensec = (mod)->tv_nsec; \
347 1.29 perseant (ip)->i_modrev++; \
348 1.29 perseant } \
349 1.73 mycroft if ((ip)->i_flag & (IN_CHANGE | IN_MODIFY)) { \
350 1.62 fvdl (ip)->i_ffs1_ctime = (cre)->tv_sec; \
351 1.62 fvdl (ip)->i_ffs1_ctimensec = (cre)->tv_nsec; \
352 1.29 perseant } \
353 1.74 mycroft if ((ip)->i_flag & (IN_CHANGE | IN_UPDATE)) \
354 1.74 mycroft LFS_SET_UINO(ip, IN_MODIFIED); \
355 1.74 mycroft if ((ip)->i_flag & IN_MODIFY) \
356 1.74 mycroft LFS_SET_UINO(ip, IN_ACCESSED); \
357 1.29 perseant } \
358 1.73 mycroft (ip)->i_flag &= ~(IN_ACCESS | IN_CHANGE | IN_UPDATE | IN_MODIFY);\
359 1.38 chs } while (0)
360 1.11 perseant
361 1.46 perseant /*
362 1.61 perseant * "struct vnode" associated definitions
363 1.46 perseant */
364 1.61 perseant
365 1.61 perseant /* Heuristic emptiness measure */
366 1.59 perseant #define VPISEMPTY(vp) (LIST_EMPTY(&(vp)->v_dirtyblkhd) && \
367 1.59 perseant !((vp)->v_flag & VONWORKLST))
368 1.59 perseant
369 1.61 perseant /* XXX Shouldn't we use v_numoutput instead? */
370 1.66 yamt #define WRITEINPROG(vp) (!LIST_EMPTY(&(vp)->v_dirtyblkhd) && \
371 1.66 yamt !(VTOI(vp)->i_flag & (IN_MODIFIED | IN_ACCESSED | IN_CLEANING)))
372 1.11 perseant
373 1.11 perseant
374 1.61 perseant /*
375 1.61 perseant * On-disk and in-memory checkpoint segment usage structure.
376 1.61 perseant */
377 1.1 mycroft typedef struct segusage SEGUSE;
378 1.1 mycroft struct segusage {
379 1.37 perseant u_int32_t su_nbytes; /* 0: number of live bytes */
380 1.37 perseant u_int32_t su_olastmod; /* 4: SEGUSE last modified timestamp */
381 1.37 perseant u_int16_t su_nsums; /* 8: number of summaries in segment */
382 1.37 perseant u_int16_t su_ninos; /* 10: number of inode blocks in seg */
383 1.37 perseant
384 1.37 perseant #define SEGUSE_ACTIVE 0x01 /* segment currently being written */
385 1.37 perseant #define SEGUSE_DIRTY 0x02 /* segment has data in it */
386 1.37 perseant #define SEGUSE_SUPERBLOCK 0x04 /* segment contains a superblock */
387 1.49 perseant #define SEGUSE_ERROR 0x08 /* cleaner: do not clean segment */
388 1.49 perseant #define SEGUSE_EMPTY 0x10 /* segment is empty */
389 1.37 perseant u_int32_t su_flags; /* 12: segment flags */
390 1.37 perseant u_int64_t su_lastmod; /* 16: last modified timestamp */
391 1.1 mycroft };
392 1.1 mycroft
393 1.37 perseant typedef struct segusage_v1 SEGUSE_V1;
394 1.37 perseant struct segusage_v1 {
395 1.37 perseant u_int32_t su_nbytes; /* 0: number of live bytes */
396 1.37 perseant u_int32_t su_lastmod; /* 4: SEGUSE last modified timestamp */
397 1.37 perseant u_int16_t su_nsums; /* 8: number of summaries in segment */
398 1.37 perseant u_int16_t su_ninos; /* 10: number of inode blocks in seg */
399 1.49 perseant u_int32_t su_flags; /* 12: segment flags */
400 1.37 perseant };
401 1.37 perseant
402 1.37 perseant #define SEGUPB(fs) (fs->lfs_sepb)
403 1.1 mycroft #define SEGTABSIZE_SU(fs) \
404 1.37 perseant (((fs)->lfs_nseg + SEGUPB(fs) - 1) / (fs)->lfs_sepb)
405 1.1 mycroft
406 1.61 perseant /* Read in the block with a specific segment usage entry from the ifile. */
407 1.61 perseant #define LFS_SEGENTRY(SP, F, IN, BP) do { \
408 1.61 perseant int _e; \
409 1.61 perseant VTOI((F)->lfs_ivnode)->i_flag |= IN_ACCESS; \
410 1.61 perseant if ((_e = bread((F)->lfs_ivnode, \
411 1.61 perseant ((IN) / (F)->lfs_sepb) + (F)->lfs_cleansz, \
412 1.61 perseant (F)->lfs_bsize, NOCRED, &(BP))) != 0) \
413 1.61 perseant panic("lfs: ifile read: %d", _e); \
414 1.61 perseant if ((F)->lfs_version == 1) \
415 1.61 perseant (SP) = (SEGUSE *)((SEGUSE_V1 *)(BP)->b_data + \
416 1.61 perseant ((IN) & ((F)->lfs_sepb - 1))); \
417 1.61 perseant else \
418 1.61 perseant (SP) = (SEGUSE *)(BP)->b_data + ((IN) % (F)->lfs_sepb); \
419 1.61 perseant } while (0)
420 1.61 perseant
421 1.61 perseant #define LFS_WRITESEGENTRY(SP, F, IN, BP) do { \
422 1.61 perseant if ((SP)->su_nbytes == 0) \
423 1.61 perseant (SP)->su_flags |= SEGUSE_EMPTY; \
424 1.61 perseant else \
425 1.61 perseant (SP)->su_flags &= ~SEGUSE_EMPTY; \
426 1.61 perseant (F)->lfs_suflags[(F)->lfs_activesb][(IN)] = (SP)->su_flags; \
427 1.61 perseant LFS_BWRITE_LOG(BP); \
428 1.61 perseant } while (0)
429 1.61 perseant
430 1.61 perseant /*
431 1.61 perseant * On-disk file information. One per file with data blocks in the segment.
432 1.61 perseant */
433 1.1 mycroft typedef struct finfo FINFO;
434 1.1 mycroft struct finfo {
435 1.3 cgd u_int32_t fi_nblocks; /* number of blocks */
436 1.3 cgd u_int32_t fi_version; /* version number */
437 1.3 cgd u_int32_t fi_ino; /* inode number */
438 1.9 fvdl u_int32_t fi_lastlength; /* length of last block in array */
439 1.49 perseant int32_t fi_blocks[1]; /* array of logical block numbers */
440 1.1 mycroft };
441 1.45 yamt /* sizeof FINFO except fi_blocks */
442 1.45 yamt #define FINFOSIZE (sizeof(FINFO) - sizeof(int32_t))
443 1.37 perseant
444 1.61 perseant /*
445 1.61 perseant * Index file inode entries.
446 1.61 perseant */
447 1.61 perseant typedef struct ifile IFILE;
448 1.61 perseant struct ifile {
449 1.61 perseant u_int32_t if_version; /* inode version number */
450 1.61 perseant #define LFS_UNUSED_DADDR 0 /* out-of-band daddr */
451 1.61 perseant int32_t if_daddr; /* inode disk address */
452 1.61 perseant ino_t if_nextfree; /* next-unallocated inode */
453 1.61 perseant u_int32_t if_atime_sec; /* Last access time, seconds */
454 1.61 perseant u_int32_t if_atime_nsec; /* and nanoseconds */
455 1.61 perseant };
456 1.61 perseant
457 1.61 perseant typedef struct ifile_v1 IFILE_V1;
458 1.61 perseant struct ifile_v1 {
459 1.61 perseant u_int32_t if_version; /* inode version number */
460 1.61 perseant int32_t if_daddr; /* inode disk address */
461 1.61 perseant ino_t if_nextfree; /* next-unallocated inode */
462 1.61 perseant #if LFS_ATIME_IFILE
463 1.61 perseant struct timespec if_atime; /* Last access time */
464 1.61 perseant #endif
465 1.61 perseant };
466 1.61 perseant
467 1.61 perseant /*
468 1.61 perseant * LFSv1 compatibility code is not allowed to touch if_atime, since it
469 1.61 perseant * may not be mapped!
470 1.61 perseant */
471 1.61 perseant /* Read in the block with a specific inode from the ifile. */
472 1.61 perseant #define LFS_IENTRY(IP, F, IN, BP) do { \
473 1.61 perseant int _e; \
474 1.61 perseant VTOI((F)->lfs_ivnode)->i_flag |= IN_ACCESS; \
475 1.61 perseant if ((_e = bread((F)->lfs_ivnode, \
476 1.61 perseant (IN) / (F)->lfs_ifpb + (F)->lfs_cleansz + (F)->lfs_segtabsz, \
477 1.61 perseant (F)->lfs_bsize, NOCRED, &(BP))) != 0) \
478 1.61 perseant panic("lfs: ifile read %d", _e); \
479 1.61 perseant if ((F)->lfs_version == 1) \
480 1.61 perseant (IP) = (IFILE *)((IFILE_V1 *)(BP)->b_data + \
481 1.61 perseant (IN) % (F)->lfs_ifpb); \
482 1.61 perseant else \
483 1.61 perseant (IP) = (IFILE *)(BP)->b_data + (IN) % (F)->lfs_ifpb; \
484 1.61 perseant } while (0)
485 1.61 perseant
486 1.61 perseant /*
487 1.61 perseant * Cleaner information structure. This resides in the ifile and is used
488 1.61 perseant * to pass information from the kernel to the cleaner.
489 1.61 perseant */
490 1.61 perseant typedef struct _cleanerinfo {
491 1.61 perseant u_int32_t clean; /* number of clean segments */
492 1.61 perseant u_int32_t dirty; /* number of dirty segments */
493 1.75 perseant int32_t bfree; /* disk blocks free */
494 1.61 perseant int32_t avail; /* disk blocks available */
495 1.61 perseant u_int32_t free_head; /* head of the inode free list */
496 1.61 perseant u_int32_t free_tail; /* tail of the inode free list */
497 1.61 perseant } CLEANERINFO;
498 1.61 perseant
499 1.61 perseant #define CLEANSIZE_SU(fs) \
500 1.61 perseant ((sizeof(CLEANERINFO) + (fs)->lfs_bsize - 1) >> (fs)->lfs_bshift)
501 1.61 perseant
502 1.61 perseant /* Read in the block with the cleaner info from the ifile. */
503 1.61 perseant #define LFS_CLEANERINFO(CP, F, BP) do { \
504 1.61 perseant VTOI((F)->lfs_ivnode)->i_flag |= IN_ACCESS; \
505 1.61 perseant if (bread((F)->lfs_ivnode, \
506 1.61 perseant (daddr_t)0, (F)->lfs_bsize, NOCRED, &(BP))) \
507 1.61 perseant panic("lfs: ifile read"); \
508 1.61 perseant (CP) = (CLEANERINFO *)(BP)->b_data; \
509 1.61 perseant } while (0)
510 1.61 perseant
511 1.78 perseant /*
512 1.78 perseant * Synchronize the Ifile cleaner info with current avail and bfree.
513 1.78 perseant */
514 1.61 perseant #define LFS_SYNC_CLEANERINFO(cip, fs, bp, w) do { \
515 1.78 perseant simple_lock(&(fs)->lfs_interlock); \
516 1.61 perseant if ((w) || (cip)->bfree != (fs)->lfs_bfree || \
517 1.75 perseant (cip)->avail != (fs)->lfs_avail - (fs)->lfs_ravail - \
518 1.75 perseant (fs)->lfs_favail) { \
519 1.61 perseant (cip)->bfree = (fs)->lfs_bfree; \
520 1.75 perseant (cip)->avail = (fs)->lfs_avail - (fs)->lfs_ravail - \
521 1.75 perseant (fs)->lfs_favail; \
522 1.78 perseant if (((bp)->b_flags & B_GATHERED) == 0) { \
523 1.61 perseant (fs)->lfs_flags |= LFS_IFDIRTY; \
524 1.78 perseant } \
525 1.78 perseant simple_unlock(&(fs)->lfs_interlock); \
526 1.61 perseant (void) LFS_BWRITE_LOG(bp); /* Ifile */ \
527 1.78 perseant } else { \
528 1.78 perseant simple_unlock(&(fs)->lfs_interlock); \
529 1.61 perseant brelse(bp); \
530 1.78 perseant } \
531 1.61 perseant } while (0)
532 1.61 perseant
533 1.78 perseant /*
534 1.78 perseant * Get the head of the inode free list.
535 1.78 perseant * Always caled with the segment lock held.
536 1.78 perseant */
537 1.61 perseant #define LFS_GET_HEADFREE(FS, CIP, BP, FREEP) do { \
538 1.61 perseant if ((FS)->lfs_version > 1) { \
539 1.61 perseant LFS_CLEANERINFO((CIP), (FS), (BP)); \
540 1.61 perseant (FS)->lfs_freehd = (CIP)->free_head; \
541 1.61 perseant brelse(BP); \
542 1.61 perseant } \
543 1.61 perseant *(FREEP) = (FS)->lfs_freehd; \
544 1.61 perseant } while (0)
545 1.61 perseant
546 1.61 perseant #define LFS_PUT_HEADFREE(FS, CIP, BP, VAL) do { \
547 1.61 perseant (FS)->lfs_freehd = (VAL); \
548 1.61 perseant if ((FS)->lfs_version > 1) { \
549 1.61 perseant LFS_CLEANERINFO((CIP), (FS), (BP)); \
550 1.61 perseant (CIP)->free_head = (VAL); \
551 1.61 perseant LFS_BWRITE_LOG(BP); \
552 1.78 perseant simple_lock(&fs->lfs_interlock); \
553 1.61 perseant (FS)->lfs_flags |= LFS_IFDIRTY; \
554 1.78 perseant simple_unlock(&fs->lfs_interlock); \
555 1.61 perseant } \
556 1.61 perseant } while (0)
557 1.61 perseant
558 1.61 perseant #define LFS_GET_TAILFREE(FS, CIP, BP, FREEP) do { \
559 1.61 perseant LFS_CLEANERINFO((CIP), (FS), (BP)); \
560 1.61 perseant *(FREEP) = (CIP)->free_tail; \
561 1.61 perseant brelse(BP); \
562 1.61 perseant } while (0)
563 1.61 perseant
564 1.61 perseant #define LFS_PUT_TAILFREE(FS, CIP, BP, VAL) do { \
565 1.61 perseant LFS_CLEANERINFO((CIP), (FS), (BP)); \
566 1.61 perseant (CIP)->free_tail = (VAL); \
567 1.61 perseant LFS_BWRITE_LOG(BP); \
568 1.78 perseant simple_lock(&fs->lfs_interlock); \
569 1.61 perseant (FS)->lfs_flags |= LFS_IFDIRTY; \
570 1.78 perseant simple_unlock(&fs->lfs_interlock); \
571 1.61 perseant } while (0)
572 1.61 perseant
573 1.61 perseant /*
574 1.61 perseant * On-disk segment summary information
575 1.61 perseant */
576 1.61 perseant typedef struct segsum_v1 SEGSUM_V1;
577 1.61 perseant struct segsum_v1 {
578 1.61 perseant u_int32_t ss_sumsum; /* 0: check sum of summary block */
579 1.61 perseant u_int32_t ss_datasum; /* 4: check sum of data */
580 1.61 perseant u_int32_t ss_magic; /* 8: segment summary magic number */
581 1.61 perseant #define SS_MAGIC 0x061561
582 1.61 perseant int32_t ss_next; /* 12: next segment */
583 1.61 perseant u_int32_t ss_create; /* 16: creation time stamp */
584 1.61 perseant u_int16_t ss_nfinfo; /* 20: number of file info structures */
585 1.61 perseant u_int16_t ss_ninos; /* 22: number of inodes in summary */
586 1.61 perseant
587 1.61 perseant #define SS_DIROP 0x01 /* segment begins a dirop */
588 1.61 perseant #define SS_CONT 0x02 /* more partials to finish this write*/
589 1.61 perseant u_int16_t ss_flags; /* 24: used for directory operations */
590 1.61 perseant u_int16_t ss_pad; /* 26: extra space */
591 1.61 perseant /* FINFO's and inode daddr's... */
592 1.61 perseant };
593 1.61 perseant
594 1.61 perseant typedef struct segsum SEGSUM;
595 1.61 perseant struct segsum {
596 1.61 perseant u_int32_t ss_sumsum; /* 0: check sum of summary block */
597 1.61 perseant u_int32_t ss_datasum; /* 4: check sum of data */
598 1.61 perseant u_int32_t ss_magic; /* 8: segment summary magic number */
599 1.61 perseant int32_t ss_next; /* 12: next segment */
600 1.61 perseant u_int32_t ss_ident; /* 16: roll-forward fsid */
601 1.61 perseant #define ss_ocreate ss_ident /* ident is where create was in v1 */
602 1.61 perseant u_int16_t ss_nfinfo; /* 20: number of file info structures */
603 1.61 perseant u_int16_t ss_ninos; /* 22: number of inodes in summary */
604 1.61 perseant u_int16_t ss_flags; /* 24: used for directory operations */
605 1.61 perseant u_int8_t ss_pad[6]; /* 26: extra space */
606 1.61 perseant u_int64_t ss_serial; /* 32: serial number */
607 1.61 perseant u_int64_t ss_create; /* 40: time stamp */
608 1.61 perseant /* FINFO's and inode daddr's... */
609 1.61 perseant };
610 1.61 perseant
611 1.61 perseant #define SEGSUM_SIZE(fs) ((fs)->lfs_version == 1 ? sizeof(SEGSUM_V1) : sizeof(SEGSUM))
612 1.61 perseant
613 1.61 perseant
614 1.61 perseant /*
615 1.61 perseant * On-disk super block.
616 1.61 perseant */
617 1.10 pk struct dlfs {
618 1.49 perseant #define LFS_MAGIC 0x070162
619 1.49 perseant u_int32_t dlfs_magic; /* 0: magic number */
620 1.49 perseant #define LFS_VERSION 2
621 1.49 perseant u_int32_t dlfs_version; /* 4: version number */
622 1.49 perseant
623 1.49 perseant u_int32_t dlfs_size; /* 8: number of blocks in fs (v1) */
624 1.49 perseant /* number of frags in fs (v2) */
625 1.49 perseant u_int32_t dlfs_ssize; /* 12: number of blocks per segment (v1) */
626 1.49 perseant /* number of bytes per segment (v2) */
627 1.49 perseant u_int32_t dlfs_dsize; /* 16: number of disk blocks in fs */
628 1.49 perseant u_int32_t dlfs_bsize; /* 20: file system block size */
629 1.49 perseant u_int32_t dlfs_fsize; /* 24: size of frag blocks in fs */
630 1.49 perseant u_int32_t dlfs_frag; /* 28: number of frags in a block in fs */
631 1.1 mycroft
632 1.1 mycroft /* Checkpoint region. */
633 1.49 perseant u_int32_t dlfs_freehd; /* 32: start of the free list */
634 1.75 perseant int32_t dlfs_bfree; /* 36: number of free disk blocks */
635 1.49 perseant u_int32_t dlfs_nfiles; /* 40: number of allocated inodes */
636 1.49 perseant int32_t dlfs_avail; /* 44: blocks available for writing */
637 1.49 perseant int32_t dlfs_uinodes; /* 48: inodes in cache not yet on disk */
638 1.49 perseant int32_t dlfs_idaddr; /* 52: inode file disk address */
639 1.49 perseant u_int32_t dlfs_ifile; /* 56: inode file inode number */
640 1.54 perseant int32_t dlfs_lastseg; /* 60: address of last segment written */
641 1.54 perseant int32_t dlfs_nextseg; /* 64: address of next segment to write */
642 1.54 perseant int32_t dlfs_curseg; /* 68: current segment being written */
643 1.54 perseant int32_t dlfs_offset; /* 72: offset in curseg for next partial */
644 1.49 perseant int32_t dlfs_lastpseg; /* 76: address of last partial written */
645 1.49 perseant u_int32_t dlfs_inopf; /* 80: v1: time stamp; v2: inodes per frag */
646 1.37 perseant #define dlfs_otstamp dlfs_inopf
647 1.1 mycroft
648 1.1 mycroft /* These are configuration parameters. */
649 1.49 perseant u_int32_t dlfs_minfree; /* 84: minimum percentage of free blocks */
650 1.1 mycroft
651 1.1 mycroft /* These fields can be computed from the others. */
652 1.49 perseant u_int64_t dlfs_maxfilesize; /* 88: maximum representable file size */
653 1.49 perseant u_int32_t dlfs_fsbpseg; /* 96: fsb per segment */
654 1.49 perseant u_int32_t dlfs_inopb; /* 100: inodes per block */
655 1.49 perseant u_int32_t dlfs_ifpb; /* 104: IFILE entries per block */
656 1.49 perseant u_int32_t dlfs_sepb; /* 108: SEGUSE entries per block */
657 1.49 perseant u_int32_t dlfs_nindir; /* 112: indirect pointers per block */
658 1.49 perseant u_int32_t dlfs_nseg; /* 116: number of segments */
659 1.49 perseant u_int32_t dlfs_nspf; /* 120: number of sectors per fragment */
660 1.49 perseant u_int32_t dlfs_cleansz; /* 124: cleaner info size in blocks */
661 1.49 perseant u_int32_t dlfs_segtabsz; /* 128: segment table size in blocks */
662 1.49 perseant u_int32_t dlfs_segmask; /* 132: calculate offset within a segment */
663 1.49 perseant u_int32_t dlfs_segshift; /* 136: fast mult/div for segments */
664 1.49 perseant u_int32_t dlfs_bshift; /* 140: calc block number from file offset */
665 1.49 perseant u_int32_t dlfs_ffshift; /* 144: fast mult/div for frag from file */
666 1.49 perseant u_int32_t dlfs_fbshift; /* 148: fast mult/div for frag from block */
667 1.49 perseant u_int64_t dlfs_bmask; /* 152: calc block offset from file offset */
668 1.49 perseant u_int64_t dlfs_ffmask; /* 160: calc frag offset from file offset */
669 1.49 perseant u_int64_t dlfs_fbmask; /* 168: calc frag offset from block offset */
670 1.49 perseant u_int32_t dlfs_blktodb; /* 176: blktodb and dbtoblk shift constant */
671 1.49 perseant u_int32_t dlfs_sushift; /* 180: fast mult/div for segusage table */
672 1.49 perseant
673 1.49 perseant int32_t dlfs_maxsymlinklen; /* 184: max length of an internal symlink */
674 1.49 perseant #define LFS_MIN_SBINTERVAL 5 /* minimum superblock segment spacing */
675 1.49 perseant #define LFS_MAXNUMSB 10 /* 188: superblock disk offsets */
676 1.49 perseant int32_t dlfs_sboffs[LFS_MAXNUMSB];
677 1.3 cgd
678 1.49 perseant u_int32_t dlfs_nclean; /* 228: Number of clean segments */
679 1.11 perseant u_char dlfs_fsmnt[MNAMELEN]; /* 232: name mounted on */
680 1.37 perseant #define LFS_PF_CLEAN 0x1
681 1.49 perseant u_int16_t dlfs_pflags; /* 322: file system persistent flags */
682 1.49 perseant int32_t dlfs_dmeta; /* 324: total number of dirty summaries */
683 1.27 perseant u_int32_t dlfs_minfreeseg; /* 328: segs reserved for cleaner */
684 1.49 perseant u_int32_t dlfs_sumsize; /* 332: size of summary blocks */
685 1.49 perseant u_int64_t dlfs_serial; /* 336: serial number */
686 1.49 perseant u_int32_t dlfs_ibsize; /* 344: size of inode blocks */
687 1.49 perseant int32_t dlfs_start; /* 348: start of segment 0 */
688 1.49 perseant u_int64_t dlfs_tstamp; /* 352: time stamp */
689 1.37 perseant #define LFS_44INODEFMT 0
690 1.37 perseant #define LFS_MAXINODEFMT 0
691 1.37 perseant u_int32_t dlfs_inodefmt; /* 360: inode format version */
692 1.37 perseant u_int32_t dlfs_interleave; /* 364: segment interleave */
693 1.49 perseant u_int32_t dlfs_ident; /* 368: per-fs identifier */
694 1.49 perseant u_int32_t dlfs_fsbtodb; /* 372: fsbtodb abd dbtodsb shift constant */
695 1.49 perseant int8_t dlfs_pad[132]; /* 376: round to 512 bytes */
696 1.5 mycroft /* Checksum -- last valid disk field. */
697 1.49 perseant u_int32_t dlfs_cksum; /* 508: checksum for superblock checking */
698 1.10 pk };
699 1.1 mycroft
700 1.61 perseant /*
701 1.61 perseant * In-memory super block.
702 1.61 perseant */
703 1.10 pk struct lfs {
704 1.49 perseant struct dlfs lfs_dlfs; /* on-disk parameters */
705 1.10 pk #define lfs_magic lfs_dlfs.dlfs_magic
706 1.10 pk #define lfs_version lfs_dlfs.dlfs_version
707 1.10 pk #define lfs_size lfs_dlfs.dlfs_size
708 1.10 pk #define lfs_ssize lfs_dlfs.dlfs_ssize
709 1.10 pk #define lfs_dsize lfs_dlfs.dlfs_dsize
710 1.10 pk #define lfs_bsize lfs_dlfs.dlfs_bsize
711 1.10 pk #define lfs_fsize lfs_dlfs.dlfs_fsize
712 1.10 pk #define lfs_frag lfs_dlfs.dlfs_frag
713 1.46 perseant #define lfs_freehd lfs_dlfs.dlfs_freehd
714 1.10 pk #define lfs_bfree lfs_dlfs.dlfs_bfree
715 1.10 pk #define lfs_nfiles lfs_dlfs.dlfs_nfiles
716 1.10 pk #define lfs_avail lfs_dlfs.dlfs_avail
717 1.10 pk #define lfs_uinodes lfs_dlfs.dlfs_uinodes
718 1.10 pk #define lfs_idaddr lfs_dlfs.dlfs_idaddr
719 1.10 pk #define lfs_ifile lfs_dlfs.dlfs_ifile
720 1.10 pk #define lfs_lastseg lfs_dlfs.dlfs_lastseg
721 1.10 pk #define lfs_nextseg lfs_dlfs.dlfs_nextseg
722 1.10 pk #define lfs_curseg lfs_dlfs.dlfs_curseg
723 1.10 pk #define lfs_offset lfs_dlfs.dlfs_offset
724 1.10 pk #define lfs_lastpseg lfs_dlfs.dlfs_lastpseg
725 1.37 perseant #define lfs_otstamp lfs_dlfs.dlfs_inopf
726 1.37 perseant #define lfs_inopf lfs_dlfs.dlfs_inopf
727 1.10 pk #define lfs_minfree lfs_dlfs.dlfs_minfree
728 1.10 pk #define lfs_maxfilesize lfs_dlfs.dlfs_maxfilesize
729 1.37 perseant #define lfs_fsbpseg lfs_dlfs.dlfs_fsbpseg
730 1.10 pk #define lfs_inopb lfs_dlfs.dlfs_inopb
731 1.10 pk #define lfs_ifpb lfs_dlfs.dlfs_ifpb
732 1.10 pk #define lfs_sepb lfs_dlfs.dlfs_sepb
733 1.10 pk #define lfs_nindir lfs_dlfs.dlfs_nindir
734 1.10 pk #define lfs_nseg lfs_dlfs.dlfs_nseg
735 1.10 pk #define lfs_nspf lfs_dlfs.dlfs_nspf
736 1.10 pk #define lfs_cleansz lfs_dlfs.dlfs_cleansz
737 1.10 pk #define lfs_segtabsz lfs_dlfs.dlfs_segtabsz
738 1.10 pk #define lfs_segmask lfs_dlfs.dlfs_segmask
739 1.10 pk #define lfs_segshift lfs_dlfs.dlfs_segshift
740 1.10 pk #define lfs_bmask lfs_dlfs.dlfs_bmask
741 1.10 pk #define lfs_bshift lfs_dlfs.dlfs_bshift
742 1.10 pk #define lfs_ffmask lfs_dlfs.dlfs_ffmask
743 1.10 pk #define lfs_ffshift lfs_dlfs.dlfs_ffshift
744 1.10 pk #define lfs_fbmask lfs_dlfs.dlfs_fbmask
745 1.10 pk #define lfs_fbshift lfs_dlfs.dlfs_fbshift
746 1.37 perseant #define lfs_blktodb lfs_dlfs.dlfs_blktodb
747 1.10 pk #define lfs_fsbtodb lfs_dlfs.dlfs_fsbtodb
748 1.10 pk #define lfs_sushift lfs_dlfs.dlfs_sushift
749 1.10 pk #define lfs_maxsymlinklen lfs_dlfs.dlfs_maxsymlinklen
750 1.10 pk #define lfs_sboffs lfs_dlfs.dlfs_sboffs
751 1.10 pk #define lfs_cksum lfs_dlfs.dlfs_cksum
752 1.37 perseant #define lfs_pflags lfs_dlfs.dlfs_pflags
753 1.11 perseant #define lfs_fsmnt lfs_dlfs.dlfs_fsmnt
754 1.11 perseant #define lfs_nclean lfs_dlfs.dlfs_nclean
755 1.26 perseant #define lfs_dmeta lfs_dlfs.dlfs_dmeta
756 1.27 perseant #define lfs_minfreeseg lfs_dlfs.dlfs_minfreeseg
757 1.37 perseant #define lfs_sumsize lfs_dlfs.dlfs_sumsize
758 1.37 perseant #define lfs_serial lfs_dlfs.dlfs_serial
759 1.37 perseant #define lfs_ibsize lfs_dlfs.dlfs_ibsize
760 1.37 perseant #define lfs_start lfs_dlfs.dlfs_start
761 1.37 perseant #define lfs_tstamp lfs_dlfs.dlfs_tstamp
762 1.37 perseant #define lfs_inodefmt lfs_dlfs.dlfs_inodefmt
763 1.37 perseant #define lfs_interleave lfs_dlfs.dlfs_interleave
764 1.37 perseant #define lfs_ident lfs_dlfs.dlfs_ident
765 1.26 perseant
766 1.1 mycroft /* These fields are set at mount time and are meaningless on disk. */
767 1.5 mycroft struct segment *lfs_sp; /* current segment being written */
768 1.5 mycroft struct vnode *lfs_ivnode; /* vnode for the ifile */
769 1.8 is u_int32_t lfs_seglock; /* single-thread the segment writer */
770 1.5 mycroft pid_t lfs_lockpid; /* pid of lock holder */
771 1.8 is u_int32_t lfs_iocount; /* number of ios pending */
772 1.8 is u_int32_t lfs_writer; /* don't allow any dirops to start */
773 1.8 is u_int32_t lfs_dirops; /* count of active directory ops */
774 1.8 is u_int32_t lfs_doifile; /* Write ifile blocks on next write */
775 1.8 is u_int32_t lfs_nactive; /* Number of segments since last ckp */
776 1.5 mycroft int8_t lfs_fmod; /* super block modified flag */
777 1.5 mycroft int8_t lfs_ronly; /* mounted read-only flag */
778 1.39 perseant #define LFS_NOTYET 0x01
779 1.39 perseant #define LFS_IFDIRTY 0x02
780 1.39 perseant #define LFS_WARNED 0x04
781 1.64 perseant #define LFS_UNDIROP 0x08
782 1.5 mycroft int8_t lfs_flags; /* currently unused flag */
783 1.49 perseant u_int16_t lfs_activesb; /* toggle between superblocks */
784 1.61 perseant daddr_t lfs_sbactive; /* disk address of current sb write */
785 1.49 perseant struct vnode *lfs_flushvp; /* vnode being flushed */
786 1.49 perseant struct vnode *lfs_unlockvp; /* being inactivated in lfs_segunlock */
787 1.15 perseant u_int32_t lfs_diropwait; /* # procs waiting on dirop flush */
788 1.37 perseant size_t lfs_devbsize; /* Device block size */
789 1.37 perseant size_t lfs_devbshift; /* Device block shift */
790 1.41 perseant struct lock lfs_fraglock;
791 1.25 perseant pid_t lfs_rfpid; /* Process ID of roll-forward agent */
792 1.49 perseant int lfs_nadirop; /* number of active dirop nodes */
793 1.49 perseant long lfs_ravail; /* blocks pre-reserved for writing */
794 1.75 perseant long lfs_favail; /* blocks pre-reserved for writing */
795 1.46 perseant res_t *lfs_resblk; /* Reserved memory for pageout */
796 1.46 perseant TAILQ_HEAD(, inode) lfs_dchainhd; /* dirop vnodes */
797 1.46 perseant TAILQ_HEAD(, inode) lfs_pchainhd; /* paging vnodes */
798 1.46 perseant #define LFS_RESHASH_WIDTH 17
799 1.76 perry LIST_HEAD(, lfs_res_blk) lfs_reshash[LFS_RESHASH_WIDTH];
800 1.49 perseant int lfs_pdflush; /* pagedaemon wants us to flush */
801 1.46 perseant u_int32_t **lfs_suflags; /* Segment use flags */
802 1.47 soren #ifdef _KERNEL
803 1.46 perseant struct pool lfs_clpool; /* Pool for struct lfs_cluster */
804 1.46 perseant struct pool lfs_bpppool; /* Pool for bpp */
805 1.46 perseant struct pool lfs_segpool; /* Pool for struct segment */
806 1.61 perseant #endif /* _KERNEL */
807 1.55 perseant #define LFS_MAX_CLEANIND 64
808 1.55 perseant int32_t lfs_cleanint[LFS_MAX_CLEANIND]; /* Active cleaning intervals */
809 1.55 perseant int lfs_cleanind; /* Index into intervals */
810 1.58 perseant struct simplelock lfs_interlock; /* lock for lfs_seglock */
811 1.61 perseant int lfs_sleepers; /* # procs sleeping this fs */
812 1.75 perseant int lfs_pages; /* dirty pages blaming this fs */
813 1.1 mycroft };
814 1.1 mycroft
815 1.1 mycroft /* NINDIR is the number of indirects in a file system block. */
816 1.1 mycroft #define NINDIR(fs) ((fs)->lfs_nindir)
817 1.1 mycroft
818 1.1 mycroft /* INOPB is the number of inodes in a secondary storage block. */
819 1.1 mycroft #define INOPB(fs) ((fs)->lfs_inopb)
820 1.37 perseant /* INOPF is the number of inodes in a fragment. */
821 1.49 perseant #define INOPF(fs) ((fs)->lfs_inopf)
822 1.1 mycroft
823 1.9 fvdl #define blksize(fs, ip, lbn) \
824 1.64 perseant (((lbn) >= NDADDR || (ip)->i_ffs1_size >= ((lbn) + 1) << (fs)->lfs_bshift) \
825 1.9 fvdl ? (fs)->lfs_bsize \
826 1.64 perseant : (fragroundup(fs, blkoff(fs, (ip)->i_ffs1_size))))
827 1.53 perseant #define blkoff(fs, loc) ((int)((loc) & (fs)->lfs_bmask))
828 1.9 fvdl #define fragoff(fs, loc) /* calculates (loc % fs->lfs_fsize) */ \
829 1.9 fvdl ((int)((loc) & (fs)->lfs_ffmask))
830 1.1 mycroft #define fsbtodb(fs, b) ((b) << (fs)->lfs_fsbtodb)
831 1.1 mycroft #define dbtofsb(fs, b) ((b) >> (fs)->lfs_fsbtodb)
832 1.37 perseant #define fragstodb(fs, b) ((b) << ((fs)->lfs_blktodb - (fs)->lfs_fbshift))
833 1.37 perseant #define dbtofrags(fs, b) ((b) >> ((fs)->lfs_blktodb - (fs)->lfs_fbshift))
834 1.1 mycroft #define lblkno(fs, loc) ((loc) >> (fs)->lfs_bshift)
835 1.1 mycroft #define lblktosize(fs, blk) ((blk) << (fs)->lfs_bshift)
836 1.37 perseant /* Same as above, but named like dbtob(), btodb() */
837 1.37 perseant #define fsbtob(fs, b) ((b) << ((fs)->lfs_bshift - \
838 1.37 perseant (fs)->lfs_blktodb + (fs)->lfs_fsbtodb))
839 1.37 perseant #define btofsb(fs, b) ((b) >> ((fs)->lfs_bshift - \
840 1.37 perseant (fs)->lfs_blktodb + (fs)->lfs_fsbtodb))
841 1.37 perseant #define fsbtofrags(fs, b) ((b) >> ((fs)->lfs_blktodb - (fs)->lfs_fbshift - \
842 1.37 perseant (fs)->lfs_fsbtodb))
843 1.37 perseant #define fragstofsb(fs, b) ((b) << ((fs)->lfs_blktodb - (fs)->lfs_fbshift - \
844 1.37 perseant (fs)->lfs_fsbtodb))
845 1.37 perseant #define btofrags(fs, b) ((b) >> (fs)->lfs_ffshift)
846 1.9 fvdl #define numfrags(fs, loc) /* calculates (loc / fs->lfs_fsize) */ \
847 1.9 fvdl ((loc) >> (fs)->lfs_ffshift)
848 1.9 fvdl #define blkroundup(fs, size) /* calculates roundup(size, fs->lfs_bsize) */ \
849 1.53 perseant ((off_t)(((size) + (fs)->lfs_bmask) & (~(fs)->lfs_bmask)))
850 1.9 fvdl #define fragroundup(fs, size) /* calculates roundup(size, fs->lfs_fsize) */ \
851 1.53 perseant ((off_t)(((size) + (fs)->lfs_ffmask) & (~(fs)->lfs_ffmask)))
852 1.61 perseant #define fragstoblks(fs, frags) /* calculates (frags / fs->lfs_frag) */ \
853 1.9 fvdl ((frags) >> (fs)->lfs_fbshift)
854 1.61 perseant #define blkstofrags(fs, blks) /* calculates (blks * fs->lfs_frag) */ \
855 1.9 fvdl ((blks) << (fs)->lfs_fbshift)
856 1.61 perseant #define fragnum(fs, fsb) /* calculates (fsb % fs->lfs_frag) */ \
857 1.9 fvdl ((fsb) & ((fs)->lfs_frag - 1))
858 1.9 fvdl #define blknum(fs, fsb) /* calculates rounddown(fsb, fs->lfs_frag) */ \
859 1.9 fvdl ((fsb) &~ ((fs)->lfs_frag - 1))
860 1.61 perseant #define dblksize(fs, dp, lbn) \
861 1.61 perseant (((lbn) >= NDADDR || (dp)->di_size >= ((lbn) + 1) << (fs)->lfs_bshift)\
862 1.9 fvdl ? (fs)->lfs_bsize \
863 1.61 perseant : (fragroundup(fs, blkoff(fs, (dp)->di_size))))
864 1.37 perseant
865 1.72 yamt #define segsize(fs) ((fs)->lfs_version == 1 ? \
866 1.72 yamt lblktosize((fs), (fs)->lfs_ssize) : \
867 1.72 yamt (fs)->lfs_ssize)
868 1.61 perseant #define segtod(fs, seg) (((fs)->lfs_version == 1 ? \
869 1.49 perseant (fs)->lfs_ssize << (fs)->lfs_blktodb : \
870 1.37 perseant btofsb((fs), (fs)->lfs_ssize)) * (seg))
871 1.37 perseant #define dtosn(fs, daddr) /* block address to segment number */ \
872 1.44 yamt ((uint32_t)(((daddr) - (fs)->lfs_start) / segtod((fs), 1)))
873 1.49 perseant #define sntod(fs, sn) /* segment number to disk address */ \
874 1.43 fvdl ((daddr_t)(segtod((fs), (sn)) + (fs)->lfs_start))
875 1.1 mycroft
876 1.1 mycroft /*
877 1.1 mycroft * Structures used by lfs_bmapv and lfs_markv to communicate information
878 1.1 mycroft * about inodes and data blocks.
879 1.1 mycroft */
880 1.1 mycroft typedef struct block_info {
881 1.1 mycroft ino_t bi_inode; /* inode # */
882 1.49 perseant int32_t bi_lbn; /* logical block w/in file */
883 1.43 fvdl int32_t bi_daddr; /* disk address of block */
884 1.37 perseant u_int64_t bi_segcreate; /* origin segment create time */
885 1.1 mycroft int bi_version; /* file version number */
886 1.1 mycroft void *bi_bp; /* data buffer */
887 1.49 perseant int bi_size; /* size of the block (if fragment) */
888 1.1 mycroft } BLOCK_INFO;
889 1.37 perseant
890 1.37 perseant /* Compatibility for 1.5 binaries */
891 1.37 perseant typedef struct block_info_15 {
892 1.37 perseant ino_t bi_inode; /* inode # */
893 1.49 perseant int32_t bi_lbn; /* logical block w/in file */
894 1.43 fvdl int32_t bi_daddr; /* disk address of block */
895 1.37 perseant u_int32_t bi_segcreate; /* origin segment create time */
896 1.37 perseant int bi_version; /* file version number */
897 1.37 perseant void *bi_bp; /* data buffer */
898 1.49 perseant int bi_size; /* size of the block (if fragment) */
899 1.37 perseant } BLOCK_INFO_15;
900 1.1 mycroft
901 1.1 mycroft /* In-memory description of a segment about to be written. */
902 1.1 mycroft struct segment {
903 1.5 mycroft struct lfs *fs; /* file system pointer */
904 1.1 mycroft struct buf **bpp; /* pointer to buffer array */
905 1.1 mycroft struct buf **cbpp; /* pointer to next available bp */
906 1.1 mycroft struct buf **start_bpp; /* pointer to first bp in this set */
907 1.5 mycroft struct buf *ibp; /* buffer pointer to inode page */
908 1.62 fvdl struct ufs1_dinode *idp; /* pointer to ifile dinode */
909 1.5 mycroft struct finfo *fip; /* current fileinfo pointer */
910 1.5 mycroft struct vnode *vp; /* vnode being gathered */
911 1.3 cgd void *segsum; /* segment summary info */
912 1.3 cgd u_int32_t ninodes; /* number of inodes in this segment */
913 1.50 perseant int32_t seg_bytes_left; /* bytes left in segment */
914 1.50 perseant int32_t sum_bytes_left; /* bytes left in summary block */
915 1.3 cgd u_int32_t seg_number; /* number of this segment */
916 1.43 fvdl int32_t *start_lbp; /* beginning lbn for this set */
917 1.5 mycroft
918 1.1 mycroft #define SEGM_CKP 0x01 /* doing a checkpoint */
919 1.1 mycroft #define SEGM_CLEAN 0x02 /* cleaner call; don't sort */
920 1.1 mycroft #define SEGM_SYNC 0x04 /* wait for segment */
921 1.25 perseant #define SEGM_PROT 0x08 /* don't inactivate at segunlock */
922 1.48 yamt #define SEGM_PAGEDAEMON 0x10 /* pagedaemon called us */
923 1.48 yamt #define SEGM_WRITERD 0x20 /* LFS writed called us */
924 1.54 perseant #define SEGM_FORCE_CKP 0x40 /* Force checkpoint right away */
925 1.5 mycroft u_int16_t seg_flags; /* run-time flags for this segment */
926 1.40 perseant u_int32_t seg_iocount; /* number of ios pending */
927 1.49 perseant int ndupino; /* number of duplicate inodes */
928 1.39 perseant };
929 1.39 perseant
930 1.61 perseant #ifdef _KERNEL
931 1.39 perseant struct lfs_cluster {
932 1.49 perseant size_t bufsize; /* Size of kept data */
933 1.39 perseant struct buf **bpp; /* Array of kept buffers */
934 1.49 perseant int bufcount; /* Number of kept buffers */
935 1.39 perseant #define LFS_CL_MALLOC 0x00000001
936 1.39 perseant #define LFS_CL_SHIFT 0x00000002
937 1.40 perseant #define LFS_CL_SYNC 0x00000004
938 1.39 perseant u_int32_t flags; /* Flags */
939 1.49 perseant struct lfs *fs; /* LFS that this belongs to */
940 1.40 perseant struct segment *seg; /* Segment structure, for LFS_CL_SYNC */
941 1.1 mycroft };
942 1.61 perseant #endif /* _KERNEL */
943 1.46 perseant
944 1.46 perseant /*
945 1.75 perseant * List containing block numbers allocated through lfs_balloc.
946 1.75 perseant */
947 1.75 perseant struct lbnentry {
948 1.75 perseant LIST_ENTRY(lbnentry) entry;
949 1.75 perseant daddr_t lbn;
950 1.75 perseant };
951 1.75 perseant
952 1.75 perseant /*
953 1.75 perseant * LFS inode extensions.
954 1.46 perseant */
955 1.46 perseant struct lfs_inode_ext {
956 1.46 perseant off_t lfs_osize; /* size of file on disk */
957 1.46 perseant u_int32_t lfs_effnblocks; /* number of blocks when i/o completes */
958 1.49 perseant size_t lfs_fragsize[NDADDR]; /* size of on-disk direct blocks */
959 1.75 perseant TAILQ_ENTRY(inode) lfs_dchain; /* Dirop chain. */
960 1.75 perseant TAILQ_ENTRY(inode) lfs_pchain; /* Paging chain. */
961 1.75 perseant /* Blocks allocated for write */
962 1.75 perseant #define LFS_BLIST_HASH_WIDTH 17
963 1.75 perseant LIST_HEAD(, lbnentry) lfs_blist[LFS_BLIST_HASH_WIDTH];
964 1.75 perseant #define LFSI_NO_GOP_WRITE 0x01
965 1.75 perseant u_int32_t lfs_iflags; /* Inode flags */
966 1.46 perseant };
967 1.46 perseant #define i_lfs_osize inode_ext.lfs->lfs_osize
968 1.46 perseant #define i_lfs_effnblks inode_ext.lfs->lfs_effnblocks
969 1.46 perseant #define i_lfs_fragsize inode_ext.lfs->lfs_fragsize
970 1.46 perseant #define i_lfs_dchain inode_ext.lfs->lfs_dchain
971 1.75 perseant #define i_lfs_blist inode_ext.lfs->lfs_blist
972 1.75 perseant #define i_lfs_iflags inode_ext.lfs->lfs_iflags
973 1.1 mycroft
974 1.26 perseant /*
975 1.27 perseant * Macros for determining free space on the disk, with the variable metadata
976 1.26 perseant * of segment summaries and inode blocks taken into account.
977 1.26 perseant */
978 1.26 perseant /* Estimate number of clean blocks not available for writing */
979 1.49 perseant #define LFS_EST_CMETA(F) (int32_t)((((F)->lfs_dmeta * \
980 1.49 perseant (int64_t)(F)->lfs_nclean) / \
981 1.26 perseant ((F)->lfs_nseg - (F)->lfs_nclean)))
982 1.26 perseant
983 1.26 perseant /* Estimate total size of the disk not including metadata */
984 1.28 perseant #define LFS_EST_NONMETA(F) ((F)->lfs_dsize - (F)->lfs_dmeta - LFS_EST_CMETA(F))
985 1.26 perseant
986 1.26 perseant /* Estimate number of blocks actually available for writing */
987 1.75 perseant #define LFS_EST_BFREE(F) ((F)->lfs_bfree > LFS_EST_CMETA(F) + (F)->lfs_dmeta ? (F)->lfs_bfree - LFS_EST_CMETA(F) - (F)->lfs_dmeta : 0)
988 1.26 perseant
989 1.26 perseant /* Amount of non-meta space not available to mortal man */
990 1.49 perseant #define LFS_EST_RSVD(F) (int32_t)((LFS_EST_NONMETA(F) * \
991 1.49 perseant (u_int64_t)(F)->lfs_minfree) / \
992 1.49 perseant 100)
993 1.26 perseant
994 1.26 perseant /* Can credential C write BB blocks */
995 1.1 mycroft #define ISSPACE(F, BB, C) \
996 1.26 perseant ((((C) == NOCRED || (C)->cr_uid == 0) && \
997 1.49 perseant LFS_EST_BFREE(F) >= (BB)) || \
998 1.26 perseant ((C)->cr_uid != 0 && IS_FREESPACE(F, BB)))
999 1.1 mycroft
1000 1.26 perseant /* Can an ordinary user write BB blocks */
1001 1.1 mycroft #define IS_FREESPACE(F, BB) \
1002 1.49 perseant (LFS_EST_BFREE(F) >= (BB) + LFS_EST_RSVD(F))
1003 1.1 mycroft
1004 1.75 perseant /*
1005 1.75 perseant * The minimum number of blocks to create a new inode. This is:
1006 1.75 perseant * directory direct block (1) + NIADDR indirect blocks + inode block (1) +
1007 1.75 perseant * ifile direct block (1) + NIADDR indirect blocks = 3 + 2 * NIADDR blocks.
1008 1.75 perseant */
1009 1.75 perseant #define LFS_NRESERVE(F) (btofsb((F), (2 * NIADDR + 3) << (F)->lfs_bshift))
1010 1.75 perseant
1011 1.1 mycroft /* Statistics Counters */
1012 1.77 perseant struct lfs_stats { /* Must match sysctl list in lfs_vfsops.h ! */
1013 1.5 mycroft u_int segsused;
1014 1.5 mycroft u_int psegwrites;
1015 1.5 mycroft u_int psyncwrites;
1016 1.5 mycroft u_int pcleanwrites;
1017 1.5 mycroft u_int blocktot;
1018 1.5 mycroft u_int cleanblocks;
1019 1.5 mycroft u_int ncheckpoints;
1020 1.5 mycroft u_int nwrites;
1021 1.5 mycroft u_int nsync_writes;
1022 1.5 mycroft u_int wait_exceeded;
1023 1.5 mycroft u_int write_exceeded;
1024 1.5 mycroft u_int flush_invoked;
1025 1.11 perseant u_int vflush_invoked;
1026 1.77 perseant u_int clean_inlocked;
1027 1.77 perseant u_int clean_vnlocked;
1028 1.1 mycroft };
1029 1.42 matt #ifdef _KERNEL
1030 1.1 mycroft extern struct lfs_stats lfs_stats;
1031 1.42 matt #endif
1032 1.51 perseant
1033 1.52 perseant /* Fcntls to take the place of the lfs syscalls */
1034 1.52 perseant struct lfs_fcntl_markv {
1035 1.51 perseant BLOCK_INFO *blkiov; /* blocks to relocate */
1036 1.51 perseant int blkcnt; /* number of blocks */
1037 1.51 perseant };
1038 1.51 perseant
1039 1.75 perseant #define LFCNSEGWAITALL _FCNR_FSPRIV('L', 0, struct timeval)
1040 1.75 perseant #define LFCNSEGWAIT _FCNR_FSPRIV('L', 1, struct timeval)
1041 1.52 perseant #define LFCNBMAPV _FCNRW_FSPRIV('L', 2, struct lfs_fcntl_markv)
1042 1.52 perseant #define LFCNMARKV _FCNRW_FSPRIV('L', 3, struct lfs_fcntl_markv)
1043 1.54 perseant #define LFCNRECLAIM _FCNO_FSPRIV('L', 4)
1044 1.75 perseant #define LFCNIFILEFH _FCNW_FSPRIV('L', 5, struct fhandle)
1045 1.75 perseant /* Compat for NetBSD 2.x error */
1046 1.75 perseant #define LFCNSEGWAITALL_COMPAT _FCNW_FSPRIV('L', 0, struct timeval)
1047 1.75 perseant #define LFCNSEGWAIT_COMPAT _FCNW_FSPRIV('L', 1, struct timeval)
1048 1.65 yamt
1049 1.65 yamt #ifdef _KERNEL
1050 1.65 yamt /* XXX MP */
1051 1.65 yamt #define LFS_SEGLOCK_HELD(fs) \
1052 1.65 yamt ((fs)->lfs_seglock != 0 && (fs)->lfs_lockpid == curproc->p_pid)
1053 1.65 yamt #endif /* _KERNEL */
1054 1.42 matt
1055 1.78 perseant /* Debug segment lock */
1056 1.78 perseant #ifdef notyet
1057 1.78 perseant # define ASSERT_SEGLOCK(fs) KASSERT(LFS_SEGLOCK_HELD(fs))
1058 1.78 perseant # define ASSERT_NO_SEGLOCK(fs) KASSERT(!LFS_SEGLOCK_HELD(fs))
1059 1.78 perseant # define ASSERT_DUNNO_SEGLOCK(fs)
1060 1.78 perseant # define ASSERT_MAYBE_SEGLOCK(fs)
1061 1.78 perseant #else /* !notyet */
1062 1.78 perseant # define ASSERT_DUNNO_SEGLOCK(fs) \
1063 1.78 perseant DLOG((DLOG_SEG, "lfs func %s seglock wrong (%d)\n", __func__, \
1064 1.78 perseant LFS_SEGLOCK_HELD(fs)))
1065 1.78 perseant # define ASSERT_SEGLOCK(fs) do { \
1066 1.78 perseant if (!LFS_SEGLOCK_HELD(fs)) { \
1067 1.78 perseant DLOG((DLOG_SEG, "lfs func %s seglock wrong (0)\n", __func__)); \
1068 1.78 perseant } \
1069 1.78 perseant } while(0)
1070 1.78 perseant # define ASSERT_NO_SEGLOCK(fs) do { \
1071 1.78 perseant if (LFS_SEGLOCK_HELD(fs)) { \
1072 1.78 perseant DLOG((DLOG_SEG, "lfs func %s seglock wrong (1)\n", __func__)); \
1073 1.78 perseant } \
1074 1.78 perseant } while(0)
1075 1.78 perseant # define ASSERT_MAYBE_SEGLOCK(x)
1076 1.78 perseant #endif /* !notyet */
1077 1.78 perseant
1078 1.42 matt #endif /* !_UFS_LFS_LFS_H_ */
1079