vfs_wapbl.c revision 1.107 1 1.107 jdolecek /* $NetBSD: vfs_wapbl.c,v 1.107 2020/04/12 08:51:41 jdolecek Exp $ */
2 1.2 simonb
3 1.2 simonb /*-
4 1.23 ad * Copyright (c) 2003, 2008, 2009 The NetBSD Foundation, Inc.
5 1.2 simonb * All rights reserved.
6 1.2 simonb *
7 1.2 simonb * This code is derived from software contributed to The NetBSD Foundation
8 1.2 simonb * by Wasabi Systems, Inc.
9 1.2 simonb *
10 1.2 simonb * Redistribution and use in source and binary forms, with or without
11 1.2 simonb * modification, are permitted provided that the following conditions
12 1.2 simonb * are met:
13 1.2 simonb * 1. Redistributions of source code must retain the above copyright
14 1.2 simonb * notice, this list of conditions and the following disclaimer.
15 1.2 simonb * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 simonb * notice, this list of conditions and the following disclaimer in the
17 1.2 simonb * documentation and/or other materials provided with the distribution.
18 1.2 simonb *
19 1.2 simonb * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 simonb * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 simonb * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 simonb * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 simonb * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 simonb * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 simonb * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 simonb * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 simonb * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 simonb * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 simonb * POSSIBILITY OF SUCH DAMAGE.
30 1.2 simonb */
31 1.2 simonb
32 1.2 simonb /*
33 1.2 simonb * This implements file system independent write ahead filesystem logging.
34 1.2 simonb */
35 1.4 joerg
36 1.4 joerg #define WAPBL_INTERNAL
37 1.4 joerg
38 1.2 simonb #include <sys/cdefs.h>
39 1.107 jdolecek __KERNEL_RCSID(0, "$NetBSD: vfs_wapbl.c,v 1.107 2020/04/12 08:51:41 jdolecek Exp $");
40 1.2 simonb
41 1.2 simonb #include <sys/param.h>
42 1.31 mlelstv #include <sys/bitops.h>
43 1.68 riastrad #include <sys/time.h>
44 1.68 riastrad #include <sys/wapbl.h>
45 1.68 riastrad #include <sys/wapbl_replay.h>
46 1.2 simonb
47 1.2 simonb #ifdef _KERNEL
48 1.68 riastrad
49 1.68 riastrad #include <sys/atomic.h>
50 1.68 riastrad #include <sys/conf.h>
51 1.90 riastrad #include <sys/evcnt.h>
52 1.68 riastrad #include <sys/file.h>
53 1.68 riastrad #include <sys/kauth.h>
54 1.68 riastrad #include <sys/kernel.h>
55 1.68 riastrad #include <sys/module.h>
56 1.68 riastrad #include <sys/mount.h>
57 1.68 riastrad #include <sys/mutex.h>
58 1.2 simonb #include <sys/namei.h>
59 1.2 simonb #include <sys/proc.h>
60 1.68 riastrad #include <sys/resourcevar.h>
61 1.39 christos #include <sys/sysctl.h>
62 1.2 simonb #include <sys/uio.h>
63 1.2 simonb #include <sys/vnode.h>
64 1.2 simonb
65 1.2 simonb #include <miscfs/specfs/specdev.h>
66 1.2 simonb
67 1.51 para #define wapbl_alloc(s) kmem_alloc((s), KM_SLEEP)
68 1.51 para #define wapbl_free(a, s) kmem_free((a), (s))
69 1.51 para #define wapbl_calloc(n, s) kmem_zalloc((n)*(s), KM_SLEEP)
70 1.2 simonb
71 1.39 christos static int wapbl_flush_disk_cache = 1;
72 1.39 christos static int wapbl_verbose_commit = 0;
73 1.96 jdolecek static int wapbl_allow_dpofua = 0; /* switched off by default for now */
74 1.95 jdolecek static int wapbl_journal_iobufs = 4;
75 1.39 christos
76 1.57 joerg static inline size_t wapbl_space_free(size_t, off_t, off_t);
77 1.57 joerg
78 1.2 simonb #else /* !_KERNEL */
79 1.68 riastrad
80 1.2 simonb #include <assert.h>
81 1.2 simonb #include <errno.h>
82 1.68 riastrad #include <stdbool.h>
83 1.2 simonb #include <stdio.h>
84 1.2 simonb #include <stdlib.h>
85 1.2 simonb #include <string.h>
86 1.2 simonb
87 1.2 simonb #define KDASSERT(x) assert(x)
88 1.2 simonb #define KASSERT(x) assert(x)
89 1.51 para #define wapbl_alloc(s) malloc(s)
90 1.18 yamt #define wapbl_free(a, s) free(a)
91 1.2 simonb #define wapbl_calloc(n, s) calloc((n), (s))
92 1.2 simonb
93 1.2 simonb #endif /* !_KERNEL */
94 1.2 simonb
95 1.2 simonb /*
96 1.2 simonb * INTERNAL DATA STRUCTURES
97 1.2 simonb */
98 1.2 simonb
99 1.91 riastrad /*
100 1.2 simonb * This structure holds per-mount log information.
101 1.2 simonb *
102 1.2 simonb * Legend: a = atomic access only
103 1.2 simonb * r = read-only after init
104 1.2 simonb * l = rwlock held
105 1.2 simonb * m = mutex held
106 1.38 hannken * lm = rwlock held writing or mutex held
107 1.2 simonb * u = unlocked access ok
108 1.2 simonb * b = bufcache_lock held
109 1.2 simonb */
110 1.60 matt LIST_HEAD(wapbl_ino_head, wapbl_ino);
111 1.2 simonb struct wapbl {
112 1.2 simonb struct vnode *wl_logvp; /* r: log here */
113 1.2 simonb struct vnode *wl_devvp; /* r: log on this device */
114 1.2 simonb struct mount *wl_mount; /* r: mountpoint wl is associated with */
115 1.2 simonb daddr_t wl_logpbn; /* r: Physical block number of start of log */
116 1.2 simonb int wl_log_dev_bshift; /* r: logarithm of device block size of log
117 1.2 simonb device */
118 1.2 simonb int wl_fs_dev_bshift; /* r: logarithm of device block size of
119 1.2 simonb filesystem device */
120 1.2 simonb
121 1.3 yamt unsigned wl_lock_count; /* m: Count of transactions in progress */
122 1.2 simonb
123 1.2 simonb size_t wl_circ_size; /* r: Number of bytes in buffer of log */
124 1.2 simonb size_t wl_circ_off; /* r: Number of bytes reserved at start */
125 1.2 simonb
126 1.2 simonb size_t wl_bufcount_max; /* r: Number of buffers reserved for log */
127 1.2 simonb size_t wl_bufbytes_max; /* r: Number of buf bytes reserved for log */
128 1.2 simonb
129 1.2 simonb off_t wl_head; /* l: Byte offset of log head */
130 1.2 simonb off_t wl_tail; /* l: Byte offset of log tail */
131 1.2 simonb /*
132 1.71 riastrad * WAPBL log layout, stored on wl_devvp at wl_logpbn:
133 1.71 riastrad *
134 1.71 riastrad * ___________________ wl_circ_size __________________
135 1.71 riastrad * / \
136 1.71 riastrad * +---------+---------+-------+--------------+--------+
137 1.71 riastrad * [ commit0 | commit1 | CCWCW | EEEEEEEEEEEE | CCCWCW ]
138 1.71 riastrad * +---------+---------+-------+--------------+--------+
139 1.71 riastrad * wl_circ_off --^ ^-- wl_head ^-- wl_tail
140 1.71 riastrad *
141 1.71 riastrad * commit0 and commit1 are commit headers. A commit header has
142 1.71 riastrad * a generation number, indicating which of the two headers is
143 1.71 riastrad * more recent, and an assignment of head and tail pointers.
144 1.71 riastrad * The rest is a circular queue of log records, starting at
145 1.71 riastrad * the byte offset wl_circ_off.
146 1.71 riastrad *
147 1.71 riastrad * E marks empty space for records.
148 1.71 riastrad * W marks records for block writes issued but waiting.
149 1.71 riastrad * C marks completed records.
150 1.71 riastrad *
151 1.71 riastrad * wapbl_flush writes new records to empty `E' spaces after
152 1.71 riastrad * wl_head from the current transaction in memory.
153 1.71 riastrad *
154 1.71 riastrad * wapbl_truncate advances wl_tail past any completed `C'
155 1.71 riastrad * records, freeing them up for use.
156 1.71 riastrad *
157 1.71 riastrad * head == tail == 0 means log is empty.
158 1.71 riastrad * head == tail != 0 means log is full.
159 1.71 riastrad *
160 1.71 riastrad * See assertions in wapbl_advance() for other boundary
161 1.71 riastrad * conditions.
162 1.71 riastrad *
163 1.71 riastrad * Only wapbl_flush moves the head, except when wapbl_truncate
164 1.71 riastrad * sets it to 0 to indicate that the log is empty.
165 1.71 riastrad *
166 1.71 riastrad * Only wapbl_truncate moves the tail, except when wapbl_flush
167 1.71 riastrad * sets it to wl_circ_off to indicate that the log is full.
168 1.2 simonb */
169 1.2 simonb
170 1.2 simonb struct wapbl_wc_header *wl_wc_header; /* l */
171 1.2 simonb void *wl_wc_scratch; /* l: scratch space (XXX: por que?!?) */
172 1.2 simonb
173 1.2 simonb kmutex_t wl_mtx; /* u: short-term lock */
174 1.2 simonb krwlock_t wl_rwlock; /* u: File system transaction lock */
175 1.2 simonb
176 1.2 simonb /*
177 1.2 simonb * Must be held while accessing
178 1.2 simonb * wl_count or wl_bufs or head or tail
179 1.2 simonb */
180 1.2 simonb
181 1.87 jdolecek #if _KERNEL
182 1.2 simonb /*
183 1.2 simonb * Callback called from within the flush routine to flush any extra
184 1.2 simonb * bits. Note that flush may be skipped without calling this if
185 1.2 simonb * there are no outstanding buffers in the transaction.
186 1.2 simonb */
187 1.2 simonb wapbl_flush_fn_t wl_flush; /* r */
188 1.2 simonb wapbl_flush_fn_t wl_flush_abort;/* r */
189 1.87 jdolecek
190 1.87 jdolecek /* Event counters */
191 1.87 jdolecek char wl_ev_group[EVCNT_STRING_MAX]; /* r */
192 1.87 jdolecek struct evcnt wl_ev_commit; /* l */
193 1.87 jdolecek struct evcnt wl_ev_journalwrite; /* l */
194 1.95 jdolecek struct evcnt wl_ev_jbufs_bio_nowait; /* l */
195 1.87 jdolecek struct evcnt wl_ev_metawrite; /* lm */
196 1.87 jdolecek struct evcnt wl_ev_cacheflush; /* l */
197 1.5 joerg #endif
198 1.2 simonb
199 1.2 simonb size_t wl_bufbytes; /* m: Byte count of pages in wl_bufs */
200 1.2 simonb size_t wl_bufcount; /* m: Count of buffers in wl_bufs */
201 1.2 simonb size_t wl_bcount; /* m: Total bcount of wl_bufs */
202 1.2 simonb
203 1.94 jdolecek TAILQ_HEAD(, buf) wl_bufs; /* m: Buffers in current transaction */
204 1.2 simonb
205 1.2 simonb kcondvar_t wl_reclaimable_cv; /* m (obviously) */
206 1.2 simonb size_t wl_reclaimable_bytes; /* m: Amount of space available for
207 1.2 simonb reclamation by truncate */
208 1.2 simonb int wl_error_count; /* m: # of wl_entries with errors */
209 1.2 simonb size_t wl_reserved_bytes; /* never truncate log smaller than this */
210 1.2 simonb
211 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
212 1.2 simonb size_t wl_unsynced_bufbytes; /* Byte count of unsynced buffers */
213 1.2 simonb #endif
214 1.2 simonb
215 1.79 jdolecek #if _KERNEL
216 1.79 jdolecek int wl_brperjblock; /* r Block records per journal block */
217 1.79 jdolecek #endif
218 1.79 jdolecek
219 1.86 jdolecek TAILQ_HEAD(, wapbl_dealloc) wl_dealloclist; /* lm: list head */
220 1.81 jdolecek int wl_dealloccnt; /* lm: total count */
221 1.81 jdolecek int wl_dealloclim; /* r: max count */
222 1.2 simonb
223 1.2 simonb /* hashtable of inode numbers for allocated but unlinked inodes */
224 1.2 simonb /* synch ??? */
225 1.60 matt struct wapbl_ino_head *wl_inohash;
226 1.2 simonb u_long wl_inohashmask;
227 1.2 simonb int wl_inohashcnt;
228 1.2 simonb
229 1.107 jdolecek SIMPLEQ_HEAD(, wapbl_entry) wl_entries; /* m: On disk transaction
230 1.2 simonb accounting */
231 1.54 hannken
232 1.95 jdolecek /* buffers for wapbl_buffered_write() */
233 1.95 jdolecek TAILQ_HEAD(, buf) wl_iobufs; /* l: Free or filling bufs */
234 1.95 jdolecek TAILQ_HEAD(, buf) wl_iobufs_busy; /* l: In-transit bufs */
235 1.93 jdolecek
236 1.93 jdolecek int wl_dkcache; /* r: disk cache flags */
237 1.93 jdolecek #define WAPBL_USE_FUA(wl) \
238 1.96 jdolecek (wapbl_allow_dpofua && ISSET((wl)->wl_dkcache, DKCACHE_FUA))
239 1.93 jdolecek #define WAPBL_JFLAGS(wl) \
240 1.93 jdolecek (WAPBL_USE_FUA(wl) ? (wl)->wl_jwrite_flags : 0)
241 1.101 jdolecek #define WAPBL_JDATA_FLAGS(wl) \
242 1.101 jdolecek (WAPBL_JFLAGS(wl) & B_MEDIA_DPO) /* only DPO */
243 1.93 jdolecek int wl_jwrite_flags; /* r: journal write flags */
244 1.2 simonb };
245 1.2 simonb
246 1.2 simonb #ifdef WAPBL_DEBUG_PRINT
247 1.2 simonb int wapbl_debug_print = WAPBL_DEBUG_PRINT;
248 1.2 simonb #endif
249 1.2 simonb
250 1.2 simonb /****************************************************************/
251 1.2 simonb #ifdef _KERNEL
252 1.2 simonb
253 1.2 simonb #ifdef WAPBL_DEBUG
254 1.2 simonb struct wapbl *wapbl_debug_wl;
255 1.2 simonb #endif
256 1.2 simonb
257 1.2 simonb static int wapbl_write_commit(struct wapbl *wl, off_t head, off_t tail);
258 1.2 simonb static int wapbl_write_blocks(struct wapbl *wl, off_t *offp);
259 1.2 simonb static int wapbl_write_revocations(struct wapbl *wl, off_t *offp);
260 1.2 simonb static int wapbl_write_inodes(struct wapbl *wl, off_t *offp);
261 1.2 simonb #endif /* _KERNEL */
262 1.2 simonb
263 1.14 joerg static int wapbl_replay_process(struct wapbl_replay *wr, off_t, off_t);
264 1.2 simonb
265 1.30 uebayasi static inline size_t wapbl_space_used(size_t avail, off_t head,
266 1.2 simonb off_t tail);
267 1.2 simonb
268 1.2 simonb #ifdef _KERNEL
269 1.2 simonb
270 1.51 para static struct pool wapbl_entry_pool;
271 1.81 jdolecek static struct pool wapbl_dealloc_pool;
272 1.51 para
273 1.2 simonb #define WAPBL_INODETRK_SIZE 83
274 1.2 simonb static int wapbl_ino_pool_refcount;
275 1.2 simonb static struct pool wapbl_ino_pool;
276 1.2 simonb struct wapbl_ino {
277 1.2 simonb LIST_ENTRY(wapbl_ino) wi_hash;
278 1.2 simonb ino_t wi_ino;
279 1.2 simonb mode_t wi_mode;
280 1.2 simonb };
281 1.2 simonb
282 1.2 simonb static void wapbl_inodetrk_init(struct wapbl *wl, u_int size);
283 1.2 simonb static void wapbl_inodetrk_free(struct wapbl *wl);
284 1.2 simonb static struct wapbl_ino *wapbl_inodetrk_get(struct wapbl *wl, ino_t ino);
285 1.2 simonb
286 1.2 simonb static size_t wapbl_transaction_len(struct wapbl *wl);
287 1.30 uebayasi static inline size_t wapbl_transaction_inodes_len(struct wapbl *wl);
288 1.2 simonb
289 1.86 jdolecek static void wapbl_deallocation_free(struct wapbl *, struct wapbl_dealloc *,
290 1.86 jdolecek bool);
291 1.86 jdolecek
292 1.87 jdolecek static void wapbl_evcnt_init(struct wapbl *);
293 1.87 jdolecek static void wapbl_evcnt_free(struct wapbl *);
294 1.87 jdolecek
295 1.93 jdolecek static void wapbl_dkcache_init(struct wapbl *);
296 1.93 jdolecek
297 1.13 joerg #if 0
298 1.4 joerg int wapbl_replay_verify(struct wapbl_replay *, struct vnode *);
299 1.4 joerg #endif
300 1.4 joerg
301 1.4 joerg static int wapbl_replay_isopen1(struct wapbl_replay *);
302 1.4 joerg
303 1.103 jdolecek const struct wapbl_ops wapbl_ops = {
304 1.2 simonb .wo_wapbl_discard = wapbl_discard,
305 1.2 simonb .wo_wapbl_replay_isopen = wapbl_replay_isopen1,
306 1.6 joerg .wo_wapbl_replay_can_read = wapbl_replay_can_read,
307 1.2 simonb .wo_wapbl_replay_read = wapbl_replay_read,
308 1.2 simonb .wo_wapbl_add_buf = wapbl_add_buf,
309 1.2 simonb .wo_wapbl_remove_buf = wapbl_remove_buf,
310 1.2 simonb .wo_wapbl_resize_buf = wapbl_resize_buf,
311 1.2 simonb .wo_wapbl_begin = wapbl_begin,
312 1.2 simonb .wo_wapbl_end = wapbl_end,
313 1.2 simonb .wo_wapbl_junlock_assert= wapbl_junlock_assert,
314 1.102 jdolecek .wo_wapbl_jlock_assert = wapbl_jlock_assert,
315 1.2 simonb
316 1.2 simonb /* XXX: the following is only used to say "this is a wapbl buf" */
317 1.2 simonb .wo_wapbl_biodone = wapbl_biodone,
318 1.2 simonb };
319 1.2 simonb
320 1.106 pgoyette SYSCTL_SETUP(wapbl_sysctl_init, "wapbl sysctl")
321 1.39 christos {
322 1.39 christos int rv;
323 1.39 christos const struct sysctlnode *rnode, *cnode;
324 1.39 christos
325 1.106 pgoyette rv = sysctl_createv(clog, 0, NULL, &rnode,
326 1.39 christos CTLFLAG_PERMANENT,
327 1.39 christos CTLTYPE_NODE, "wapbl",
328 1.39 christos SYSCTL_DESCR("WAPBL journaling options"),
329 1.39 christos NULL, 0, NULL, 0,
330 1.59 pooka CTL_VFS, CTL_CREATE, CTL_EOL);
331 1.39 christos if (rv)
332 1.106 pgoyette return;
333 1.39 christos
334 1.106 pgoyette rv = sysctl_createv(clog, 0, &rnode, &cnode,
335 1.39 christos CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
336 1.39 christos CTLTYPE_INT, "flush_disk_cache",
337 1.39 christos SYSCTL_DESCR("flush disk cache"),
338 1.39 christos NULL, 0, &wapbl_flush_disk_cache, 0,
339 1.39 christos CTL_CREATE, CTL_EOL);
340 1.39 christos if (rv)
341 1.106 pgoyette return;
342 1.39 christos
343 1.106 pgoyette rv = sysctl_createv(clog, 0, &rnode, &cnode,
344 1.39 christos CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
345 1.39 christos CTLTYPE_INT, "verbose_commit",
346 1.39 christos SYSCTL_DESCR("show time and size of wapbl log commits"),
347 1.39 christos NULL, 0, &wapbl_verbose_commit, 0,
348 1.39 christos CTL_CREATE, CTL_EOL);
349 1.93 jdolecek if (rv)
350 1.106 pgoyette return;
351 1.93 jdolecek
352 1.106 pgoyette rv = sysctl_createv(clog, 0, &rnode, &cnode,
353 1.93 jdolecek CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
354 1.96 jdolecek CTLTYPE_INT, "allow_dpofua",
355 1.104 ad SYSCTL_DESCR("allow use of FUA/DPO instead of cache flush if available"),
356 1.96 jdolecek NULL, 0, &wapbl_allow_dpofua, 0,
357 1.93 jdolecek CTL_CREATE, CTL_EOL);
358 1.93 jdolecek if (rv)
359 1.106 pgoyette return;
360 1.93 jdolecek
361 1.106 pgoyette rv = sysctl_createv(clog, 0, &rnode, &cnode,
362 1.95 jdolecek CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
363 1.95 jdolecek CTLTYPE_INT, "journal_iobufs",
364 1.95 jdolecek SYSCTL_DESCR("count of bufs used for journal I/O (max async count)"),
365 1.95 jdolecek NULL, 0, &wapbl_journal_iobufs, 0,
366 1.95 jdolecek CTL_CREATE, CTL_EOL);
367 1.95 jdolecek if (rv)
368 1.106 pgoyette return;
369 1.95 jdolecek
370 1.106 pgoyette return;
371 1.39 christos }
372 1.39 christos
373 1.39 christos static void
374 1.39 christos wapbl_init(void)
375 1.39 christos {
376 1.51 para
377 1.51 para pool_init(&wapbl_entry_pool, sizeof(struct wapbl_entry), 0, 0, 0,
378 1.51 para "wapblentrypl", &pool_allocator_kmem, IPL_VM);
379 1.81 jdolecek pool_init(&wapbl_dealloc_pool, sizeof(struct wapbl_dealloc), 0, 0, 0,
380 1.81 jdolecek "wapbldealloc", &pool_allocator_nointr, IPL_NONE);
381 1.39 christos }
382 1.39 christos
383 1.39 christos static int
384 1.74 riastrad wapbl_fini(void)
385 1.39 christos {
386 1.51 para
387 1.81 jdolecek pool_destroy(&wapbl_dealloc_pool);
388 1.51 para pool_destroy(&wapbl_entry_pool);
389 1.51 para
390 1.39 christos return 0;
391 1.39 christos }
392 1.39 christos
393 1.87 jdolecek static void
394 1.87 jdolecek wapbl_evcnt_init(struct wapbl *wl)
395 1.87 jdolecek {
396 1.87 jdolecek snprintf(wl->wl_ev_group, sizeof(wl->wl_ev_group),
397 1.87 jdolecek "wapbl fsid 0x%x/0x%x",
398 1.87 jdolecek wl->wl_mount->mnt_stat.f_fsidx.__fsid_val[0],
399 1.87 jdolecek wl->wl_mount->mnt_stat.f_fsidx.__fsid_val[1]
400 1.87 jdolecek );
401 1.87 jdolecek
402 1.87 jdolecek evcnt_attach_dynamic(&wl->wl_ev_commit, EVCNT_TYPE_MISC,
403 1.87 jdolecek NULL, wl->wl_ev_group, "commit");
404 1.87 jdolecek evcnt_attach_dynamic(&wl->wl_ev_journalwrite, EVCNT_TYPE_MISC,
405 1.98 jdolecek NULL, wl->wl_ev_group, "journal write total");
406 1.95 jdolecek evcnt_attach_dynamic(&wl->wl_ev_jbufs_bio_nowait, EVCNT_TYPE_MISC,
407 1.98 jdolecek NULL, wl->wl_ev_group, "journal write finished async");
408 1.87 jdolecek evcnt_attach_dynamic(&wl->wl_ev_metawrite, EVCNT_TYPE_MISC,
409 1.98 jdolecek NULL, wl->wl_ev_group, "metadata async write");
410 1.87 jdolecek evcnt_attach_dynamic(&wl->wl_ev_cacheflush, EVCNT_TYPE_MISC,
411 1.87 jdolecek NULL, wl->wl_ev_group, "cache flush");
412 1.87 jdolecek }
413 1.87 jdolecek
414 1.87 jdolecek static void
415 1.87 jdolecek wapbl_evcnt_free(struct wapbl *wl)
416 1.87 jdolecek {
417 1.87 jdolecek evcnt_detach(&wl->wl_ev_commit);
418 1.87 jdolecek evcnt_detach(&wl->wl_ev_journalwrite);
419 1.95 jdolecek evcnt_detach(&wl->wl_ev_jbufs_bio_nowait);
420 1.87 jdolecek evcnt_detach(&wl->wl_ev_metawrite);
421 1.87 jdolecek evcnt_detach(&wl->wl_ev_cacheflush);
422 1.87 jdolecek }
423 1.87 jdolecek
424 1.93 jdolecek static void
425 1.93 jdolecek wapbl_dkcache_init(struct wapbl *wl)
426 1.93 jdolecek {
427 1.93 jdolecek int error;
428 1.93 jdolecek
429 1.93 jdolecek /* Get disk cache flags */
430 1.93 jdolecek error = VOP_IOCTL(wl->wl_devvp, DIOCGCACHE, &wl->wl_dkcache,
431 1.93 jdolecek FWRITE, FSCRED);
432 1.93 jdolecek if (error) {
433 1.93 jdolecek /* behave as if there was a write cache */
434 1.93 jdolecek wl->wl_dkcache = DKCACHE_WRITE;
435 1.93 jdolecek }
436 1.93 jdolecek
437 1.93 jdolecek /* Use FUA instead of cache flush if available */
438 1.101 jdolecek if (ISSET(wl->wl_dkcache, DKCACHE_FUA))
439 1.93 jdolecek wl->wl_jwrite_flags |= B_MEDIA_FUA;
440 1.93 jdolecek
441 1.93 jdolecek /* Use DPO for journal writes if available */
442 1.93 jdolecek if (ISSET(wl->wl_dkcache, DKCACHE_DPO))
443 1.93 jdolecek wl->wl_jwrite_flags |= B_MEDIA_DPO;
444 1.93 jdolecek }
445 1.93 jdolecek
446 1.39 christos static int
447 1.15 joerg wapbl_start_flush_inodes(struct wapbl *wl, struct wapbl_replay *wr)
448 1.15 joerg {
449 1.15 joerg int error, i;
450 1.15 joerg
451 1.15 joerg WAPBL_PRINTF(WAPBL_PRINT_REPLAY,
452 1.15 joerg ("wapbl_start: reusing log with %d inodes\n", wr->wr_inodescnt));
453 1.15 joerg
454 1.15 joerg /*
455 1.15 joerg * Its only valid to reuse the replay log if its
456 1.15 joerg * the same as the new log we just opened.
457 1.15 joerg */
458 1.15 joerg KDASSERT(!wapbl_replay_isopen(wr));
459 1.47 christos KASSERT(wl->wl_devvp->v_type == VBLK);
460 1.47 christos KASSERT(wr->wr_devvp->v_type == VBLK);
461 1.15 joerg KASSERT(wl->wl_devvp->v_rdev == wr->wr_devvp->v_rdev);
462 1.15 joerg KASSERT(wl->wl_logpbn == wr->wr_logpbn);
463 1.15 joerg KASSERT(wl->wl_circ_size == wr->wr_circ_size);
464 1.15 joerg KASSERT(wl->wl_circ_off == wr->wr_circ_off);
465 1.15 joerg KASSERT(wl->wl_log_dev_bshift == wr->wr_log_dev_bshift);
466 1.15 joerg KASSERT(wl->wl_fs_dev_bshift == wr->wr_fs_dev_bshift);
467 1.15 joerg
468 1.15 joerg wl->wl_wc_header->wc_generation = wr->wr_generation + 1;
469 1.15 joerg
470 1.15 joerg for (i = 0; i < wr->wr_inodescnt; i++)
471 1.15 joerg wapbl_register_inode(wl, wr->wr_inodes[i].wr_inumber,
472 1.15 joerg wr->wr_inodes[i].wr_imode);
473 1.15 joerg
474 1.15 joerg /* Make sure new transaction won't overwrite old inodes list */
475 1.91 riastrad KDASSERT(wapbl_transaction_len(wl) <=
476 1.15 joerg wapbl_space_free(wl->wl_circ_size, wr->wr_inodeshead,
477 1.15 joerg wr->wr_inodestail));
478 1.15 joerg
479 1.15 joerg wl->wl_head = wl->wl_tail = wr->wr_inodeshead;
480 1.15 joerg wl->wl_reclaimable_bytes = wl->wl_reserved_bytes =
481 1.15 joerg wapbl_transaction_len(wl);
482 1.15 joerg
483 1.15 joerg error = wapbl_write_inodes(wl, &wl->wl_head);
484 1.15 joerg if (error)
485 1.15 joerg return error;
486 1.15 joerg
487 1.15 joerg KASSERT(wl->wl_head != wl->wl_tail);
488 1.15 joerg KASSERT(wl->wl_head != 0);
489 1.15 joerg
490 1.15 joerg return 0;
491 1.15 joerg }
492 1.15 joerg
493 1.2 simonb int
494 1.2 simonb wapbl_start(struct wapbl ** wlp, struct mount *mp, struct vnode *vp,
495 1.2 simonb daddr_t off, size_t count, size_t blksize, struct wapbl_replay *wr,
496 1.2 simonb wapbl_flush_fn_t flushfn, wapbl_flush_fn_t flushabortfn)
497 1.2 simonb {
498 1.2 simonb struct wapbl *wl;
499 1.2 simonb struct vnode *devvp;
500 1.2 simonb daddr_t logpbn;
501 1.2 simonb int error;
502 1.31 mlelstv int log_dev_bshift = ilog2(blksize);
503 1.32 mlelstv int fs_dev_bshift = log_dev_bshift;
504 1.2 simonb int run;
505 1.2 simonb
506 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_OPEN, ("wapbl_start: vp=%p off=%" PRId64
507 1.2 simonb " count=%zu blksize=%zu\n", vp, off, count, blksize));
508 1.2 simonb
509 1.2 simonb if (log_dev_bshift > fs_dev_bshift) {
510 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_OPEN,
511 1.2 simonb ("wapbl: log device's block size cannot be larger "
512 1.2 simonb "than filesystem's\n"));
513 1.2 simonb /*
514 1.2 simonb * Not currently implemented, although it could be if
515 1.2 simonb * needed someday.
516 1.2 simonb */
517 1.2 simonb return ENOSYS;
518 1.2 simonb }
519 1.2 simonb
520 1.2 simonb if (off < 0)
521 1.2 simonb return EINVAL;
522 1.2 simonb
523 1.2 simonb if (blksize < DEV_BSIZE)
524 1.2 simonb return EINVAL;
525 1.2 simonb if (blksize % DEV_BSIZE)
526 1.2 simonb return EINVAL;
527 1.2 simonb
528 1.2 simonb /* XXXTODO: verify that the full load is writable */
529 1.2 simonb
530 1.2 simonb /*
531 1.2 simonb * XXX check for minimum log size
532 1.2 simonb * minimum is governed by minimum amount of space
533 1.2 simonb * to complete a transaction. (probably truncate)
534 1.2 simonb */
535 1.2 simonb /* XXX for now pick something minimal */
536 1.2 simonb if ((count * blksize) < MAXPHYS) {
537 1.2 simonb return ENOSPC;
538 1.2 simonb }
539 1.2 simonb
540 1.2 simonb if ((error = VOP_BMAP(vp, off, &devvp, &logpbn, &run)) != 0) {
541 1.2 simonb return error;
542 1.2 simonb }
543 1.2 simonb
544 1.2 simonb wl = wapbl_calloc(1, sizeof(*wl));
545 1.2 simonb rw_init(&wl->wl_rwlock);
546 1.2 simonb mutex_init(&wl->wl_mtx, MUTEX_DEFAULT, IPL_NONE);
547 1.2 simonb cv_init(&wl->wl_reclaimable_cv, "wapblrec");
548 1.94 jdolecek TAILQ_INIT(&wl->wl_bufs);
549 1.2 simonb SIMPLEQ_INIT(&wl->wl_entries);
550 1.2 simonb
551 1.2 simonb wl->wl_logvp = vp;
552 1.2 simonb wl->wl_devvp = devvp;
553 1.2 simonb wl->wl_mount = mp;
554 1.2 simonb wl->wl_logpbn = logpbn;
555 1.2 simonb wl->wl_log_dev_bshift = log_dev_bshift;
556 1.2 simonb wl->wl_fs_dev_bshift = fs_dev_bshift;
557 1.2 simonb
558 1.2 simonb wl->wl_flush = flushfn;
559 1.2 simonb wl->wl_flush_abort = flushabortfn;
560 1.2 simonb
561 1.2 simonb /* Reserve two log device blocks for the commit headers */
562 1.2 simonb wl->wl_circ_off = 2<<wl->wl_log_dev_bshift;
563 1.34 mlelstv wl->wl_circ_size = ((count * blksize) - wl->wl_circ_off);
564 1.2 simonb /* truncate the log usage to a multiple of log_dev_bshift */
565 1.2 simonb wl->wl_circ_size >>= wl->wl_log_dev_bshift;
566 1.2 simonb wl->wl_circ_size <<= wl->wl_log_dev_bshift;
567 1.2 simonb
568 1.2 simonb /*
569 1.2 simonb * wl_bufbytes_max limits the size of the in memory transaction space.
570 1.2 simonb * - Since buffers are allocated and accounted for in units of
571 1.2 simonb * PAGE_SIZE it is required to be a multiple of PAGE_SIZE
572 1.2 simonb * (i.e. 1<<PAGE_SHIFT)
573 1.2 simonb * - Since the log device has to be written in units of
574 1.2 simonb * 1<<wl_log_dev_bshift it is required to be a mulitple of
575 1.2 simonb * 1<<wl_log_dev_bshift.
576 1.2 simonb * - Since filesystem will provide data in units of 1<<wl_fs_dev_bshift,
577 1.2 simonb * it is convenient to be a multiple of 1<<wl_fs_dev_bshift.
578 1.2 simonb * Therefore it must be multiple of the least common multiple of those
579 1.2 simonb * three quantities. Fortunately, all of those quantities are
580 1.2 simonb * guaranteed to be a power of two, and the least common multiple of
581 1.2 simonb * a set of numbers which are all powers of two is simply the maximum
582 1.2 simonb * of those numbers. Finally, the maximum logarithm of a power of two
583 1.2 simonb * is the same as the log of the maximum power of two. So we can do
584 1.2 simonb * the following operations to size wl_bufbytes_max:
585 1.2 simonb */
586 1.2 simonb
587 1.2 simonb /* XXX fix actual number of pages reserved per filesystem. */
588 1.2 simonb wl->wl_bufbytes_max = MIN(wl->wl_circ_size, buf_memcalc() / 2);
589 1.2 simonb
590 1.2 simonb /* Round wl_bufbytes_max to the largest power of two constraint */
591 1.2 simonb wl->wl_bufbytes_max >>= PAGE_SHIFT;
592 1.2 simonb wl->wl_bufbytes_max <<= PAGE_SHIFT;
593 1.2 simonb wl->wl_bufbytes_max >>= wl->wl_log_dev_bshift;
594 1.2 simonb wl->wl_bufbytes_max <<= wl->wl_log_dev_bshift;
595 1.2 simonb wl->wl_bufbytes_max >>= wl->wl_fs_dev_bshift;
596 1.2 simonb wl->wl_bufbytes_max <<= wl->wl_fs_dev_bshift;
597 1.2 simonb
598 1.2 simonb /* XXX maybe use filesystem fragment size instead of 1024 */
599 1.2 simonb /* XXX fix actual number of buffers reserved per filesystem. */
600 1.97 chs wl->wl_bufcount_max = (buf_nbuf() / 2) * 1024;
601 1.2 simonb
602 1.79 jdolecek wl->wl_brperjblock = ((1<<wl->wl_log_dev_bshift)
603 1.79 jdolecek - offsetof(struct wapbl_wc_blocklist, wc_blocks)) /
604 1.79 jdolecek sizeof(((struct wapbl_wc_blocklist *)0)->wc_blocks[0]);
605 1.79 jdolecek KASSERT(wl->wl_brperjblock > 0);
606 1.79 jdolecek
607 1.2 simonb /* XXX tie this into resource estimation */
608 1.41 hannken wl->wl_dealloclim = wl->wl_bufbytes_max / mp->mnt_stat.f_bsize / 2;
609 1.86 jdolecek TAILQ_INIT(&wl->wl_dealloclist);
610 1.91 riastrad
611 1.2 simonb wapbl_inodetrk_init(wl, WAPBL_INODETRK_SIZE);
612 1.2 simonb
613 1.87 jdolecek wapbl_evcnt_init(wl);
614 1.87 jdolecek
615 1.93 jdolecek wapbl_dkcache_init(wl);
616 1.93 jdolecek
617 1.2 simonb /* Initialize the commit header */
618 1.2 simonb {
619 1.2 simonb struct wapbl_wc_header *wc;
620 1.14 joerg size_t len = 1 << wl->wl_log_dev_bshift;
621 1.2 simonb wc = wapbl_calloc(1, len);
622 1.2 simonb wc->wc_type = WAPBL_WC_HEADER;
623 1.2 simonb wc->wc_len = len;
624 1.2 simonb wc->wc_circ_off = wl->wl_circ_off;
625 1.2 simonb wc->wc_circ_size = wl->wl_circ_size;
626 1.2 simonb /* XXX wc->wc_fsid */
627 1.2 simonb wc->wc_log_dev_bshift = wl->wl_log_dev_bshift;
628 1.2 simonb wc->wc_fs_dev_bshift = wl->wl_fs_dev_bshift;
629 1.2 simonb wl->wl_wc_header = wc;
630 1.51 para wl->wl_wc_scratch = wapbl_alloc(len);
631 1.2 simonb }
632 1.2 simonb
633 1.95 jdolecek TAILQ_INIT(&wl->wl_iobufs);
634 1.95 jdolecek TAILQ_INIT(&wl->wl_iobufs_busy);
635 1.95 jdolecek for (int i = 0; i < wapbl_journal_iobufs; i++) {
636 1.95 jdolecek struct buf *bp;
637 1.95 jdolecek
638 1.95 jdolecek if ((bp = geteblk(MAXPHYS)) == NULL)
639 1.95 jdolecek goto errout;
640 1.95 jdolecek
641 1.95 jdolecek mutex_enter(&bufcache_lock);
642 1.95 jdolecek mutex_enter(devvp->v_interlock);
643 1.95 jdolecek bgetvp(devvp, bp);
644 1.95 jdolecek mutex_exit(devvp->v_interlock);
645 1.95 jdolecek mutex_exit(&bufcache_lock);
646 1.95 jdolecek
647 1.95 jdolecek bp->b_dev = devvp->v_rdev;
648 1.95 jdolecek
649 1.95 jdolecek TAILQ_INSERT_TAIL(&wl->wl_iobufs, bp, b_wapbllist);
650 1.95 jdolecek }
651 1.95 jdolecek
652 1.2 simonb /*
653 1.2 simonb * if there was an existing set of unlinked but
654 1.2 simonb * allocated inodes, preserve it in the new
655 1.2 simonb * log.
656 1.2 simonb */
657 1.2 simonb if (wr && wr->wr_inodescnt) {
658 1.15 joerg error = wapbl_start_flush_inodes(wl, wr);
659 1.2 simonb if (error)
660 1.2 simonb goto errout;
661 1.2 simonb }
662 1.2 simonb
663 1.2 simonb error = wapbl_write_commit(wl, wl->wl_head, wl->wl_tail);
664 1.2 simonb if (error) {
665 1.2 simonb goto errout;
666 1.2 simonb }
667 1.2 simonb
668 1.2 simonb *wlp = wl;
669 1.2 simonb #if defined(WAPBL_DEBUG)
670 1.2 simonb wapbl_debug_wl = wl;
671 1.2 simonb #endif
672 1.2 simonb
673 1.2 simonb return 0;
674 1.2 simonb errout:
675 1.2 simonb wapbl_discard(wl);
676 1.18 yamt wapbl_free(wl->wl_wc_scratch, wl->wl_wc_header->wc_len);
677 1.18 yamt wapbl_free(wl->wl_wc_header, wl->wl_wc_header->wc_len);
678 1.95 jdolecek while (!TAILQ_EMPTY(&wl->wl_iobufs)) {
679 1.95 jdolecek struct buf *bp;
680 1.95 jdolecek
681 1.95 jdolecek bp = TAILQ_FIRST(&wl->wl_iobufs);
682 1.95 jdolecek TAILQ_REMOVE(&wl->wl_iobufs, bp, b_wapbllist);
683 1.95 jdolecek brelse(bp, BC_INVAL);
684 1.95 jdolecek }
685 1.2 simonb wapbl_inodetrk_free(wl);
686 1.18 yamt wapbl_free(wl, sizeof(*wl));
687 1.2 simonb
688 1.2 simonb return error;
689 1.2 simonb }
690 1.2 simonb
691 1.2 simonb /*
692 1.2 simonb * Like wapbl_flush, only discards the transaction
693 1.2 simonb * completely
694 1.2 simonb */
695 1.2 simonb
696 1.2 simonb void
697 1.2 simonb wapbl_discard(struct wapbl *wl)
698 1.2 simonb {
699 1.2 simonb struct wapbl_entry *we;
700 1.81 jdolecek struct wapbl_dealloc *wd;
701 1.2 simonb struct buf *bp;
702 1.2 simonb int i;
703 1.2 simonb
704 1.2 simonb /*
705 1.2 simonb * XXX we may consider using upgrade here
706 1.2 simonb * if we want to call flush from inside a transaction
707 1.2 simonb */
708 1.2 simonb rw_enter(&wl->wl_rwlock, RW_WRITER);
709 1.86 jdolecek wl->wl_flush(wl->wl_mount, TAILQ_FIRST(&wl->wl_dealloclist));
710 1.2 simonb
711 1.2 simonb #ifdef WAPBL_DEBUG_PRINT
712 1.2 simonb {
713 1.2 simonb pid_t pid = -1;
714 1.2 simonb lwpid_t lid = -1;
715 1.2 simonb if (curproc)
716 1.2 simonb pid = curproc->p_pid;
717 1.2 simonb if (curlwp)
718 1.2 simonb lid = curlwp->l_lid;
719 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
720 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
721 1.2 simonb ("wapbl_discard: thread %d.%d discarding "
722 1.2 simonb "transaction\n"
723 1.2 simonb "\tbufcount=%zu bufbytes=%zu bcount=%zu "
724 1.2 simonb "deallocs=%d inodes=%d\n"
725 1.2 simonb "\terrcnt = %u, reclaimable=%zu reserved=%zu "
726 1.2 simonb "unsynced=%zu\n",
727 1.2 simonb pid, lid, wl->wl_bufcount, wl->wl_bufbytes,
728 1.2 simonb wl->wl_bcount, wl->wl_dealloccnt,
729 1.2 simonb wl->wl_inohashcnt, wl->wl_error_count,
730 1.2 simonb wl->wl_reclaimable_bytes, wl->wl_reserved_bytes,
731 1.2 simonb wl->wl_unsynced_bufbytes));
732 1.2 simonb SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
733 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
734 1.2 simonb ("\tentry: bufcount = %zu, reclaimable = %zu, "
735 1.2 simonb "error = %d, unsynced = %zu\n",
736 1.2 simonb we->we_bufcount, we->we_reclaimable_bytes,
737 1.2 simonb we->we_error, we->we_unsynced_bufbytes));
738 1.2 simonb }
739 1.2 simonb #else /* !WAPBL_DEBUG_BUFBYTES */
740 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
741 1.2 simonb ("wapbl_discard: thread %d.%d discarding transaction\n"
742 1.2 simonb "\tbufcount=%zu bufbytes=%zu bcount=%zu "
743 1.2 simonb "deallocs=%d inodes=%d\n"
744 1.2 simonb "\terrcnt = %u, reclaimable=%zu reserved=%zu\n",
745 1.2 simonb pid, lid, wl->wl_bufcount, wl->wl_bufbytes,
746 1.2 simonb wl->wl_bcount, wl->wl_dealloccnt,
747 1.2 simonb wl->wl_inohashcnt, wl->wl_error_count,
748 1.2 simonb wl->wl_reclaimable_bytes, wl->wl_reserved_bytes));
749 1.2 simonb SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
750 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
751 1.2 simonb ("\tentry: bufcount = %zu, reclaimable = %zu, "
752 1.2 simonb "error = %d\n",
753 1.2 simonb we->we_bufcount, we->we_reclaimable_bytes,
754 1.2 simonb we->we_error));
755 1.2 simonb }
756 1.2 simonb #endif /* !WAPBL_DEBUG_BUFBYTES */
757 1.2 simonb }
758 1.2 simonb #endif /* WAPBL_DEBUG_PRINT */
759 1.2 simonb
760 1.2 simonb for (i = 0; i <= wl->wl_inohashmask; i++) {
761 1.2 simonb struct wapbl_ino_head *wih;
762 1.2 simonb struct wapbl_ino *wi;
763 1.2 simonb
764 1.2 simonb wih = &wl->wl_inohash[i];
765 1.2 simonb while ((wi = LIST_FIRST(wih)) != NULL) {
766 1.2 simonb LIST_REMOVE(wi, wi_hash);
767 1.2 simonb pool_put(&wapbl_ino_pool, wi);
768 1.2 simonb KASSERT(wl->wl_inohashcnt > 0);
769 1.2 simonb wl->wl_inohashcnt--;
770 1.2 simonb }
771 1.2 simonb }
772 1.2 simonb
773 1.2 simonb /*
774 1.2 simonb * clean buffer list
775 1.2 simonb */
776 1.2 simonb mutex_enter(&bufcache_lock);
777 1.2 simonb mutex_enter(&wl->wl_mtx);
778 1.94 jdolecek while ((bp = TAILQ_FIRST(&wl->wl_bufs)) != NULL) {
779 1.2 simonb if (bbusy(bp, 0, 0, &wl->wl_mtx) == 0) {
780 1.2 simonb /*
781 1.2 simonb * The buffer will be unlocked and
782 1.2 simonb * removed from the transaction in brelse
783 1.2 simonb */
784 1.2 simonb mutex_exit(&wl->wl_mtx);
785 1.2 simonb brelsel(bp, 0);
786 1.2 simonb mutex_enter(&wl->wl_mtx);
787 1.2 simonb }
788 1.2 simonb }
789 1.2 simonb
790 1.2 simonb /*
791 1.2 simonb * Remove references to this wl from wl_entries, free any which
792 1.107 jdolecek * no longer have buffers, others will be freed in wapbl_biodone()
793 1.2 simonb * when they no longer have any buffers.
794 1.2 simonb */
795 1.2 simonb while ((we = SIMPLEQ_FIRST(&wl->wl_entries)) != NULL) {
796 1.2 simonb SIMPLEQ_REMOVE_HEAD(&wl->wl_entries, we_entries);
797 1.2 simonb /* XXX should we be accumulating wl_error_count
798 1.2 simonb * and increasing reclaimable bytes ? */
799 1.2 simonb we->we_wapbl = NULL;
800 1.2 simonb if (we->we_bufcount == 0) {
801 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
802 1.2 simonb KASSERT(we->we_unsynced_bufbytes == 0);
803 1.2 simonb #endif
804 1.51 para pool_put(&wapbl_entry_pool, we);
805 1.2 simonb }
806 1.2 simonb }
807 1.2 simonb
808 1.107 jdolecek mutex_exit(&wl->wl_mtx);
809 1.107 jdolecek mutex_exit(&bufcache_lock);
810 1.107 jdolecek
811 1.2 simonb /* Discard list of deallocs */
812 1.86 jdolecek while ((wd = TAILQ_FIRST(&wl->wl_dealloclist)) != NULL)
813 1.86 jdolecek wapbl_deallocation_free(wl, wd, true);
814 1.81 jdolecek
815 1.2 simonb /* XXX should we clear wl_reserved_bytes? */
816 1.2 simonb
817 1.2 simonb KASSERT(wl->wl_bufbytes == 0);
818 1.2 simonb KASSERT(wl->wl_bcount == 0);
819 1.2 simonb KASSERT(wl->wl_bufcount == 0);
820 1.94 jdolecek KASSERT(TAILQ_EMPTY(&wl->wl_bufs));
821 1.2 simonb KASSERT(SIMPLEQ_EMPTY(&wl->wl_entries));
822 1.2 simonb KASSERT(wl->wl_inohashcnt == 0);
823 1.86 jdolecek KASSERT(TAILQ_EMPTY(&wl->wl_dealloclist));
824 1.81 jdolecek KASSERT(wl->wl_dealloccnt == 0);
825 1.2 simonb
826 1.2 simonb rw_exit(&wl->wl_rwlock);
827 1.2 simonb }
828 1.2 simonb
829 1.2 simonb int
830 1.2 simonb wapbl_stop(struct wapbl *wl, int force)
831 1.2 simonb {
832 1.2 simonb int error;
833 1.2 simonb
834 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_OPEN, ("wapbl_stop called\n"));
835 1.2 simonb error = wapbl_flush(wl, 1);
836 1.2 simonb if (error) {
837 1.2 simonb if (force)
838 1.2 simonb wapbl_discard(wl);
839 1.2 simonb else
840 1.2 simonb return error;
841 1.2 simonb }
842 1.2 simonb
843 1.2 simonb /* Unlinked inodes persist after a flush */
844 1.2 simonb if (wl->wl_inohashcnt) {
845 1.2 simonb if (force) {
846 1.2 simonb wapbl_discard(wl);
847 1.2 simonb } else {
848 1.2 simonb return EBUSY;
849 1.2 simonb }
850 1.2 simonb }
851 1.2 simonb
852 1.2 simonb KASSERT(wl->wl_bufbytes == 0);
853 1.2 simonb KASSERT(wl->wl_bcount == 0);
854 1.2 simonb KASSERT(wl->wl_bufcount == 0);
855 1.94 jdolecek KASSERT(TAILQ_EMPTY(&wl->wl_bufs));
856 1.2 simonb KASSERT(wl->wl_dealloccnt == 0);
857 1.2 simonb KASSERT(SIMPLEQ_EMPTY(&wl->wl_entries));
858 1.2 simonb KASSERT(wl->wl_inohashcnt == 0);
859 1.86 jdolecek KASSERT(TAILQ_EMPTY(&wl->wl_dealloclist));
860 1.81 jdolecek KASSERT(wl->wl_dealloccnt == 0);
861 1.95 jdolecek KASSERT(TAILQ_EMPTY(&wl->wl_iobufs_busy));
862 1.2 simonb
863 1.18 yamt wapbl_free(wl->wl_wc_scratch, wl->wl_wc_header->wc_len);
864 1.18 yamt wapbl_free(wl->wl_wc_header, wl->wl_wc_header->wc_len);
865 1.95 jdolecek while (!TAILQ_EMPTY(&wl->wl_iobufs)) {
866 1.95 jdolecek struct buf *bp;
867 1.95 jdolecek
868 1.95 jdolecek bp = TAILQ_FIRST(&wl->wl_iobufs);
869 1.95 jdolecek TAILQ_REMOVE(&wl->wl_iobufs, bp, b_wapbllist);
870 1.95 jdolecek brelse(bp, BC_INVAL);
871 1.95 jdolecek }
872 1.2 simonb wapbl_inodetrk_free(wl);
873 1.2 simonb
874 1.87 jdolecek wapbl_evcnt_free(wl);
875 1.87 jdolecek
876 1.2 simonb cv_destroy(&wl->wl_reclaimable_cv);
877 1.2 simonb mutex_destroy(&wl->wl_mtx);
878 1.2 simonb rw_destroy(&wl->wl_rwlock);
879 1.18 yamt wapbl_free(wl, sizeof(*wl));
880 1.2 simonb
881 1.2 simonb return 0;
882 1.2 simonb }
883 1.2 simonb
884 1.71 riastrad /****************************************************************/
885 1.71 riastrad /*
886 1.71 riastrad * Unbuffered disk I/O
887 1.71 riastrad */
888 1.71 riastrad
889 1.95 jdolecek static void
890 1.95 jdolecek wapbl_doio_accounting(struct vnode *devvp, int flags)
891 1.2 simonb {
892 1.2 simonb struct pstats *pstats = curlwp->l_proc->p_stats;
893 1.2 simonb
894 1.2 simonb if ((flags & (B_WRITE | B_READ)) == B_WRITE) {
895 1.45 rmind mutex_enter(devvp->v_interlock);
896 1.2 simonb devvp->v_numoutput++;
897 1.45 rmind mutex_exit(devvp->v_interlock);
898 1.2 simonb pstats->p_ru.ru_oublock++;
899 1.2 simonb } else {
900 1.2 simonb pstats->p_ru.ru_inblock++;
901 1.2 simonb }
902 1.2 simonb
903 1.95 jdolecek }
904 1.95 jdolecek
905 1.95 jdolecek static int
906 1.95 jdolecek wapbl_doio(void *data, size_t len, struct vnode *devvp, daddr_t pbn, int flags)
907 1.95 jdolecek {
908 1.95 jdolecek struct buf *bp;
909 1.95 jdolecek int error;
910 1.95 jdolecek
911 1.95 jdolecek KASSERT(devvp->v_type == VBLK);
912 1.95 jdolecek
913 1.95 jdolecek wapbl_doio_accounting(devvp, flags);
914 1.95 jdolecek
915 1.2 simonb bp = getiobuf(devvp, true);
916 1.2 simonb bp->b_flags = flags;
917 1.105 ad bp->b_cflags |= BC_BUSY; /* mandatory, asserted by biowait() */
918 1.2 simonb bp->b_dev = devvp->v_rdev;
919 1.2 simonb bp->b_data = data;
920 1.2 simonb bp->b_bufsize = bp->b_resid = bp->b_bcount = len;
921 1.2 simonb bp->b_blkno = pbn;
922 1.52 chs BIO_SETPRIO(bp, BPRIO_TIMECRITICAL);
923 1.2 simonb
924 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_IO,
925 1.29 pooka ("wapbl_doio: %s %d bytes at block %"PRId64" on dev 0x%"PRIx64"\n",
926 1.2 simonb BUF_ISWRITE(bp) ? "write" : "read", bp->b_bcount,
927 1.2 simonb bp->b_blkno, bp->b_dev));
928 1.2 simonb
929 1.2 simonb VOP_STRATEGY(devvp, bp);
930 1.2 simonb
931 1.2 simonb error = biowait(bp);
932 1.2 simonb putiobuf(bp);
933 1.2 simonb
934 1.2 simonb if (error) {
935 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_ERROR,
936 1.2 simonb ("wapbl_doio: %s %zu bytes at block %" PRId64
937 1.29 pooka " on dev 0x%"PRIx64" failed with error %d\n",
938 1.2 simonb (((flags & (B_WRITE | B_READ)) == B_WRITE) ?
939 1.2 simonb "write" : "read"),
940 1.2 simonb len, pbn, devvp->v_rdev, error));
941 1.2 simonb }
942 1.2 simonb
943 1.2 simonb return error;
944 1.2 simonb }
945 1.2 simonb
946 1.71 riastrad /*
947 1.71 riastrad * wapbl_write(data, len, devvp, pbn)
948 1.71 riastrad *
949 1.71 riastrad * Synchronously write len bytes from data to physical block pbn
950 1.71 riastrad * on devvp.
951 1.71 riastrad */
952 1.2 simonb int
953 1.2 simonb wapbl_write(void *data, size_t len, struct vnode *devvp, daddr_t pbn)
954 1.2 simonb {
955 1.2 simonb
956 1.2 simonb return wapbl_doio(data, len, devvp, pbn, B_WRITE);
957 1.2 simonb }
958 1.2 simonb
959 1.71 riastrad /*
960 1.71 riastrad * wapbl_read(data, len, devvp, pbn)
961 1.71 riastrad *
962 1.71 riastrad * Synchronously read len bytes into data from physical block pbn
963 1.71 riastrad * on devvp.
964 1.71 riastrad */
965 1.2 simonb int
966 1.2 simonb wapbl_read(void *data, size_t len, struct vnode *devvp, daddr_t pbn)
967 1.2 simonb {
968 1.2 simonb
969 1.2 simonb return wapbl_doio(data, len, devvp, pbn, B_READ);
970 1.2 simonb }
971 1.2 simonb
972 1.71 riastrad /****************************************************************/
973 1.71 riastrad /*
974 1.71 riastrad * Buffered disk writes -- try to coalesce writes and emit
975 1.71 riastrad * MAXPHYS-aligned blocks.
976 1.71 riastrad */
977 1.71 riastrad
978 1.2 simonb /*
979 1.95 jdolecek * wapbl_buffered_write_async(wl, bp)
980 1.95 jdolecek *
981 1.95 jdolecek * Send buffer for asynchronous write.
982 1.95 jdolecek */
983 1.95 jdolecek static void
984 1.95 jdolecek wapbl_buffered_write_async(struct wapbl *wl, struct buf *bp)
985 1.95 jdolecek {
986 1.95 jdolecek wapbl_doio_accounting(wl->wl_devvp, bp->b_flags);
987 1.95 jdolecek
988 1.95 jdolecek KASSERT(TAILQ_FIRST(&wl->wl_iobufs) == bp);
989 1.95 jdolecek TAILQ_REMOVE(&wl->wl_iobufs, bp, b_wapbllist);
990 1.95 jdolecek
991 1.101 jdolecek bp->b_flags |= B_WRITE;
992 1.105 ad bp->b_cflags |= BC_BUSY; /* mandatory, asserted by biowait() */
993 1.95 jdolecek bp->b_oflags = 0;
994 1.95 jdolecek bp->b_bcount = bp->b_resid;
995 1.95 jdolecek BIO_SETPRIO(bp, BPRIO_TIMECRITICAL);
996 1.95 jdolecek
997 1.95 jdolecek VOP_STRATEGY(wl->wl_devvp, bp);
998 1.95 jdolecek
999 1.95 jdolecek wl->wl_ev_journalwrite.ev_count++;
1000 1.95 jdolecek
1001 1.95 jdolecek TAILQ_INSERT_TAIL(&wl->wl_iobufs_busy, bp, b_wapbllist);
1002 1.95 jdolecek }
1003 1.95 jdolecek
1004 1.95 jdolecek /*
1005 1.71 riastrad * wapbl_buffered_flush(wl)
1006 1.71 riastrad *
1007 1.71 riastrad * Flush any buffered writes from wapbl_buffered_write.
1008 1.54 hannken */
1009 1.54 hannken static int
1010 1.95 jdolecek wapbl_buffered_flush(struct wapbl *wl, bool full)
1011 1.54 hannken {
1012 1.95 jdolecek int error = 0;
1013 1.95 jdolecek struct buf *bp, *bnext;
1014 1.95 jdolecek bool only_done = true, found = false;
1015 1.95 jdolecek
1016 1.95 jdolecek /* if there is outstanding buffered write, send it now */
1017 1.95 jdolecek if ((bp = TAILQ_FIRST(&wl->wl_iobufs)) && bp->b_resid > 0)
1018 1.95 jdolecek wapbl_buffered_write_async(wl, bp);
1019 1.95 jdolecek
1020 1.95 jdolecek /* wait for I/O to complete */
1021 1.95 jdolecek again:
1022 1.95 jdolecek TAILQ_FOREACH_SAFE(bp, &wl->wl_iobufs_busy, b_wapbllist, bnext) {
1023 1.95 jdolecek if (!full && only_done) {
1024 1.95 jdolecek /* skip unfinished */
1025 1.95 jdolecek if (!ISSET(bp->b_oflags, BO_DONE))
1026 1.95 jdolecek continue;
1027 1.95 jdolecek }
1028 1.95 jdolecek
1029 1.95 jdolecek if (ISSET(bp->b_oflags, BO_DONE))
1030 1.95 jdolecek wl->wl_ev_jbufs_bio_nowait.ev_count++;
1031 1.95 jdolecek
1032 1.95 jdolecek TAILQ_REMOVE(&wl->wl_iobufs_busy, bp, b_wapbllist);
1033 1.95 jdolecek error = biowait(bp);
1034 1.54 hannken
1035 1.95 jdolecek /* reset for reuse */
1036 1.101 jdolecek bp->b_blkno = bp->b_resid = bp->b_flags = 0;
1037 1.95 jdolecek TAILQ_INSERT_TAIL(&wl->wl_iobufs, bp, b_wapbllist);
1038 1.95 jdolecek found = true;
1039 1.54 hannken
1040 1.95 jdolecek if (!full)
1041 1.95 jdolecek break;
1042 1.95 jdolecek }
1043 1.54 hannken
1044 1.95 jdolecek if (!found && only_done && !TAILQ_EMPTY(&wl->wl_iobufs_busy)) {
1045 1.95 jdolecek only_done = false;
1046 1.95 jdolecek goto again;
1047 1.95 jdolecek }
1048 1.87 jdolecek
1049 1.54 hannken return error;
1050 1.54 hannken }
1051 1.54 hannken
1052 1.54 hannken /*
1053 1.71 riastrad * wapbl_buffered_write(data, len, wl, pbn)
1054 1.71 riastrad *
1055 1.71 riastrad * Write len bytes from data to physical block pbn on
1056 1.71 riastrad * wl->wl_devvp. The write may not complete until
1057 1.71 riastrad * wapbl_buffered_flush.
1058 1.54 hannken */
1059 1.54 hannken static int
1060 1.101 jdolecek wapbl_buffered_write(void *data, size_t len, struct wapbl *wl, daddr_t pbn,
1061 1.101 jdolecek int bflags)
1062 1.54 hannken {
1063 1.54 hannken size_t resid;
1064 1.95 jdolecek struct buf *bp;
1065 1.95 jdolecek
1066 1.95 jdolecek again:
1067 1.95 jdolecek bp = TAILQ_FIRST(&wl->wl_iobufs);
1068 1.95 jdolecek
1069 1.95 jdolecek if (bp == NULL) {
1070 1.95 jdolecek /* No more buffers, wait for any previous I/O to finish. */
1071 1.95 jdolecek wapbl_buffered_flush(wl, false);
1072 1.95 jdolecek
1073 1.95 jdolecek bp = TAILQ_FIRST(&wl->wl_iobufs);
1074 1.95 jdolecek KASSERT(bp != NULL);
1075 1.95 jdolecek }
1076 1.54 hannken
1077 1.54 hannken /*
1078 1.54 hannken * If not adjacent to buffered data flush first. Disk block
1079 1.54 hannken * address is always valid for non-empty buffer.
1080 1.54 hannken */
1081 1.95 jdolecek if ((bp->b_resid > 0 && pbn != bp->b_blkno + btodb(bp->b_resid))) {
1082 1.95 jdolecek wapbl_buffered_write_async(wl, bp);
1083 1.95 jdolecek goto again;
1084 1.54 hannken }
1085 1.95 jdolecek
1086 1.54 hannken /*
1087 1.54 hannken * If this write goes to an empty buffer we have to
1088 1.54 hannken * save the disk block address first.
1089 1.54 hannken */
1090 1.101 jdolecek if (bp->b_blkno == 0) {
1091 1.95 jdolecek bp->b_blkno = pbn;
1092 1.101 jdolecek bp->b_flags |= bflags;
1093 1.101 jdolecek }
1094 1.95 jdolecek
1095 1.54 hannken /*
1096 1.95 jdolecek * Remaining space so this buffer ends on a buffer size boundary.
1097 1.54 hannken *
1098 1.54 hannken * Cannot become less or equal zero as the buffer would have been
1099 1.54 hannken * flushed on the last call then.
1100 1.54 hannken */
1101 1.95 jdolecek resid = bp->b_bufsize - dbtob(bp->b_blkno % btodb(bp->b_bufsize)) -
1102 1.95 jdolecek bp->b_resid;
1103 1.54 hannken KASSERT(resid > 0);
1104 1.54 hannken KASSERT(dbtob(btodb(resid)) == resid);
1105 1.95 jdolecek
1106 1.95 jdolecek if (len < resid)
1107 1.95 jdolecek resid = len;
1108 1.95 jdolecek
1109 1.95 jdolecek memcpy((uint8_t *)bp->b_data + bp->b_resid, data, resid);
1110 1.95 jdolecek bp->b_resid += resid;
1111 1.95 jdolecek
1112 1.54 hannken if (len >= resid) {
1113 1.95 jdolecek /* Just filled the buf, or data did not fit */
1114 1.95 jdolecek wapbl_buffered_write_async(wl, bp);
1115 1.95 jdolecek
1116 1.54 hannken data = (uint8_t *)data + resid;
1117 1.54 hannken len -= resid;
1118 1.95 jdolecek pbn += btodb(resid);
1119 1.95 jdolecek
1120 1.95 jdolecek if (len > 0)
1121 1.95 jdolecek goto again;
1122 1.54 hannken }
1123 1.54 hannken
1124 1.54 hannken return 0;
1125 1.54 hannken }
1126 1.54 hannken
1127 1.54 hannken /*
1128 1.71 riastrad * wapbl_circ_write(wl, data, len, offp)
1129 1.71 riastrad *
1130 1.71 riastrad * Write len bytes from data to the circular queue of wl, starting
1131 1.71 riastrad * at linear byte offset *offp, and returning the new linear byte
1132 1.71 riastrad * offset in *offp.
1133 1.71 riastrad *
1134 1.71 riastrad * If the starting linear byte offset precedes wl->wl_circ_off,
1135 1.71 riastrad * the write instead begins at wl->wl_circ_off. XXX WTF? This
1136 1.71 riastrad * should be a KASSERT, not a conditional.
1137 1.71 riastrad *
1138 1.71 riastrad * The write is buffered in wl and must be flushed with
1139 1.71 riastrad * wapbl_buffered_flush before it will be submitted to the disk.
1140 1.2 simonb */
1141 1.2 simonb static int
1142 1.2 simonb wapbl_circ_write(struct wapbl *wl, void *data, size_t len, off_t *offp)
1143 1.2 simonb {
1144 1.2 simonb size_t slen;
1145 1.2 simonb off_t off = *offp;
1146 1.2 simonb int error;
1147 1.34 mlelstv daddr_t pbn;
1148 1.2 simonb
1149 1.2 simonb KDASSERT(((len >> wl->wl_log_dev_bshift) <<
1150 1.2 simonb wl->wl_log_dev_bshift) == len);
1151 1.2 simonb
1152 1.2 simonb if (off < wl->wl_circ_off)
1153 1.2 simonb off = wl->wl_circ_off;
1154 1.2 simonb slen = wl->wl_circ_off + wl->wl_circ_size - off;
1155 1.2 simonb if (slen < len) {
1156 1.34 mlelstv pbn = wl->wl_logpbn + (off >> wl->wl_log_dev_bshift);
1157 1.34 mlelstv #ifdef _KERNEL
1158 1.34 mlelstv pbn = btodb(pbn << wl->wl_log_dev_bshift);
1159 1.34 mlelstv #endif
1160 1.101 jdolecek error = wapbl_buffered_write(data, slen, wl, pbn,
1161 1.101 jdolecek WAPBL_JDATA_FLAGS(wl));
1162 1.2 simonb if (error)
1163 1.2 simonb return error;
1164 1.2 simonb data = (uint8_t *)data + slen;
1165 1.2 simonb len -= slen;
1166 1.2 simonb off = wl->wl_circ_off;
1167 1.2 simonb }
1168 1.34 mlelstv pbn = wl->wl_logpbn + (off >> wl->wl_log_dev_bshift);
1169 1.34 mlelstv #ifdef _KERNEL
1170 1.34 mlelstv pbn = btodb(pbn << wl->wl_log_dev_bshift);
1171 1.34 mlelstv #endif
1172 1.101 jdolecek error = wapbl_buffered_write(data, len, wl, pbn,
1173 1.101 jdolecek WAPBL_JDATA_FLAGS(wl));
1174 1.2 simonb if (error)
1175 1.2 simonb return error;
1176 1.2 simonb off += len;
1177 1.2 simonb if (off >= wl->wl_circ_off + wl->wl_circ_size)
1178 1.2 simonb off = wl->wl_circ_off;
1179 1.2 simonb *offp = off;
1180 1.2 simonb return 0;
1181 1.2 simonb }
1182 1.2 simonb
1183 1.2 simonb /****************************************************************/
1184 1.71 riastrad /*
1185 1.71 riastrad * WAPBL transactions: entering, adding/removing bufs, and exiting
1186 1.71 riastrad */
1187 1.2 simonb
1188 1.2 simonb int
1189 1.2 simonb wapbl_begin(struct wapbl *wl, const char *file, int line)
1190 1.2 simonb {
1191 1.2 simonb int doflush;
1192 1.2 simonb unsigned lockcount;
1193 1.2 simonb
1194 1.2 simonb KDASSERT(wl);
1195 1.2 simonb
1196 1.2 simonb /*
1197 1.2 simonb * XXX this needs to be made much more sophisticated.
1198 1.2 simonb * perhaps each wapbl_begin could reserve a specified
1199 1.2 simonb * number of buffers and bytes.
1200 1.2 simonb */
1201 1.2 simonb mutex_enter(&wl->wl_mtx);
1202 1.2 simonb lockcount = wl->wl_lock_count;
1203 1.2 simonb doflush = ((wl->wl_bufbytes + (lockcount * MAXPHYS)) >
1204 1.2 simonb wl->wl_bufbytes_max / 2) ||
1205 1.2 simonb ((wl->wl_bufcount + (lockcount * 10)) >
1206 1.2 simonb wl->wl_bufcount_max / 2) ||
1207 1.28 pooka (wapbl_transaction_len(wl) > wl->wl_circ_size / 2) ||
1208 1.42 hannken (wl->wl_dealloccnt >= (wl->wl_dealloclim / 2));
1209 1.2 simonb mutex_exit(&wl->wl_mtx);
1210 1.2 simonb
1211 1.2 simonb if (doflush) {
1212 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
1213 1.2 simonb ("force flush lockcnt=%d bufbytes=%zu "
1214 1.28 pooka "(max=%zu) bufcount=%zu (max=%zu) "
1215 1.28 pooka "dealloccnt %d (lim=%d)\n",
1216 1.2 simonb lockcount, wl->wl_bufbytes,
1217 1.2 simonb wl->wl_bufbytes_max, wl->wl_bufcount,
1218 1.28 pooka wl->wl_bufcount_max,
1219 1.28 pooka wl->wl_dealloccnt, wl->wl_dealloclim));
1220 1.2 simonb }
1221 1.2 simonb
1222 1.2 simonb if (doflush) {
1223 1.2 simonb int error = wapbl_flush(wl, 0);
1224 1.2 simonb if (error)
1225 1.2 simonb return error;
1226 1.2 simonb }
1227 1.2 simonb
1228 1.23 ad rw_enter(&wl->wl_rwlock, RW_READER);
1229 1.2 simonb mutex_enter(&wl->wl_mtx);
1230 1.2 simonb wl->wl_lock_count++;
1231 1.2 simonb mutex_exit(&wl->wl_mtx);
1232 1.2 simonb
1233 1.23 ad #if defined(WAPBL_DEBUG_PRINT)
1234 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_TRANSACTION,
1235 1.2 simonb ("wapbl_begin thread %d.%d with bufcount=%zu "
1236 1.2 simonb "bufbytes=%zu bcount=%zu at %s:%d\n",
1237 1.2 simonb curproc->p_pid, curlwp->l_lid, wl->wl_bufcount,
1238 1.2 simonb wl->wl_bufbytes, wl->wl_bcount, file, line));
1239 1.2 simonb #endif
1240 1.2 simonb
1241 1.2 simonb return 0;
1242 1.2 simonb }
1243 1.2 simonb
1244 1.2 simonb void
1245 1.2 simonb wapbl_end(struct wapbl *wl)
1246 1.2 simonb {
1247 1.2 simonb
1248 1.23 ad #if defined(WAPBL_DEBUG_PRINT)
1249 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_TRANSACTION,
1250 1.2 simonb ("wapbl_end thread %d.%d with bufcount=%zu "
1251 1.2 simonb "bufbytes=%zu bcount=%zu\n",
1252 1.2 simonb curproc->p_pid, curlwp->l_lid, wl->wl_bufcount,
1253 1.2 simonb wl->wl_bufbytes, wl->wl_bcount));
1254 1.2 simonb #endif
1255 1.2 simonb
1256 1.65 riastrad /*
1257 1.65 riastrad * XXX this could be handled more gracefully, perhaps place
1258 1.65 riastrad * only a partial transaction in the log and allow the
1259 1.65 riastrad * remaining to flush without the protection of the journal.
1260 1.65 riastrad */
1261 1.67 riastrad KASSERTMSG((wapbl_transaction_len(wl) <=
1262 1.67 riastrad (wl->wl_circ_size - wl->wl_reserved_bytes)),
1263 1.65 riastrad "wapbl_end: current transaction too big to flush");
1264 1.40 bouyer
1265 1.2 simonb mutex_enter(&wl->wl_mtx);
1266 1.2 simonb KASSERT(wl->wl_lock_count > 0);
1267 1.2 simonb wl->wl_lock_count--;
1268 1.2 simonb mutex_exit(&wl->wl_mtx);
1269 1.2 simonb
1270 1.2 simonb rw_exit(&wl->wl_rwlock);
1271 1.2 simonb }
1272 1.2 simonb
1273 1.2 simonb void
1274 1.2 simonb wapbl_add_buf(struct wapbl *wl, struct buf * bp)
1275 1.2 simonb {
1276 1.2 simonb
1277 1.2 simonb KASSERT(bp->b_cflags & BC_BUSY);
1278 1.2 simonb KASSERT(bp->b_vp);
1279 1.2 simonb
1280 1.2 simonb wapbl_jlock_assert(wl);
1281 1.2 simonb
1282 1.2 simonb #if 0
1283 1.2 simonb /*
1284 1.2 simonb * XXX this might be an issue for swapfiles.
1285 1.2 simonb * see uvm_swap.c:1702
1286 1.2 simonb *
1287 1.2 simonb * XXX2 why require it then? leap of semantics?
1288 1.2 simonb */
1289 1.2 simonb KASSERT((bp->b_cflags & BC_NOCACHE) == 0);
1290 1.2 simonb #endif
1291 1.2 simonb
1292 1.2 simonb mutex_enter(&wl->wl_mtx);
1293 1.2 simonb if (bp->b_flags & B_LOCKED) {
1294 1.94 jdolecek TAILQ_REMOVE(&wl->wl_bufs, bp, b_wapbllist);
1295 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_BUFFER2,
1296 1.2 simonb ("wapbl_add_buf thread %d.%d re-adding buf %p "
1297 1.2 simonb "with %d bytes %d bcount\n",
1298 1.2 simonb curproc->p_pid, curlwp->l_lid, bp, bp->b_bufsize,
1299 1.2 simonb bp->b_bcount));
1300 1.2 simonb } else {
1301 1.2 simonb /* unlocked by dirty buffers shouldn't exist */
1302 1.2 simonb KASSERT(!(bp->b_oflags & BO_DELWRI));
1303 1.2 simonb wl->wl_bufbytes += bp->b_bufsize;
1304 1.2 simonb wl->wl_bcount += bp->b_bcount;
1305 1.2 simonb wl->wl_bufcount++;
1306 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_BUFFER,
1307 1.2 simonb ("wapbl_add_buf thread %d.%d adding buf %p "
1308 1.2 simonb "with %d bytes %d bcount\n",
1309 1.2 simonb curproc->p_pid, curlwp->l_lid, bp, bp->b_bufsize,
1310 1.2 simonb bp->b_bcount));
1311 1.2 simonb }
1312 1.94 jdolecek TAILQ_INSERT_TAIL(&wl->wl_bufs, bp, b_wapbllist);
1313 1.2 simonb mutex_exit(&wl->wl_mtx);
1314 1.2 simonb
1315 1.2 simonb bp->b_flags |= B_LOCKED;
1316 1.2 simonb }
1317 1.2 simonb
1318 1.2 simonb static void
1319 1.2 simonb wapbl_remove_buf_locked(struct wapbl * wl, struct buf *bp)
1320 1.2 simonb {
1321 1.2 simonb
1322 1.2 simonb KASSERT(mutex_owned(&wl->wl_mtx));
1323 1.2 simonb KASSERT(bp->b_cflags & BC_BUSY);
1324 1.2 simonb wapbl_jlock_assert(wl);
1325 1.2 simonb
1326 1.2 simonb #if 0
1327 1.2 simonb /*
1328 1.2 simonb * XXX this might be an issue for swapfiles.
1329 1.2 simonb * see uvm_swap.c:1725
1330 1.2 simonb *
1331 1.2 simonb * XXXdeux: see above
1332 1.2 simonb */
1333 1.2 simonb KASSERT((bp->b_flags & BC_NOCACHE) == 0);
1334 1.2 simonb #endif
1335 1.2 simonb KASSERT(bp->b_flags & B_LOCKED);
1336 1.2 simonb
1337 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_BUFFER,
1338 1.2 simonb ("wapbl_remove_buf thread %d.%d removing buf %p with "
1339 1.2 simonb "%d bytes %d bcount\n",
1340 1.2 simonb curproc->p_pid, curlwp->l_lid, bp, bp->b_bufsize, bp->b_bcount));
1341 1.2 simonb
1342 1.2 simonb KASSERT(wl->wl_bufbytes >= bp->b_bufsize);
1343 1.2 simonb wl->wl_bufbytes -= bp->b_bufsize;
1344 1.2 simonb KASSERT(wl->wl_bcount >= bp->b_bcount);
1345 1.2 simonb wl->wl_bcount -= bp->b_bcount;
1346 1.2 simonb KASSERT(wl->wl_bufcount > 0);
1347 1.2 simonb wl->wl_bufcount--;
1348 1.2 simonb KASSERT((wl->wl_bufcount == 0) == (wl->wl_bufbytes == 0));
1349 1.2 simonb KASSERT((wl->wl_bufcount == 0) == (wl->wl_bcount == 0));
1350 1.94 jdolecek TAILQ_REMOVE(&wl->wl_bufs, bp, b_wapbllist);
1351 1.2 simonb
1352 1.2 simonb bp->b_flags &= ~B_LOCKED;
1353 1.2 simonb }
1354 1.2 simonb
1355 1.2 simonb /* called from brelsel() in vfs_bio among other places */
1356 1.2 simonb void
1357 1.2 simonb wapbl_remove_buf(struct wapbl * wl, struct buf *bp)
1358 1.2 simonb {
1359 1.2 simonb
1360 1.2 simonb mutex_enter(&wl->wl_mtx);
1361 1.2 simonb wapbl_remove_buf_locked(wl, bp);
1362 1.2 simonb mutex_exit(&wl->wl_mtx);
1363 1.2 simonb }
1364 1.2 simonb
1365 1.2 simonb void
1366 1.2 simonb wapbl_resize_buf(struct wapbl *wl, struct buf *bp, long oldsz, long oldcnt)
1367 1.2 simonb {
1368 1.2 simonb
1369 1.2 simonb KASSERT(bp->b_cflags & BC_BUSY);
1370 1.2 simonb
1371 1.2 simonb /*
1372 1.2 simonb * XXX: why does this depend on B_LOCKED? otherwise the buf
1373 1.2 simonb * is not for a transaction? if so, why is this called in the
1374 1.2 simonb * first place?
1375 1.2 simonb */
1376 1.2 simonb if (bp->b_flags & B_LOCKED) {
1377 1.2 simonb mutex_enter(&wl->wl_mtx);
1378 1.2 simonb wl->wl_bufbytes += bp->b_bufsize - oldsz;
1379 1.2 simonb wl->wl_bcount += bp->b_bcount - oldcnt;
1380 1.2 simonb mutex_exit(&wl->wl_mtx);
1381 1.2 simonb }
1382 1.2 simonb }
1383 1.2 simonb
1384 1.2 simonb #endif /* _KERNEL */
1385 1.2 simonb
1386 1.2 simonb /****************************************************************/
1387 1.2 simonb /* Some utility inlines */
1388 1.2 simonb
1389 1.71 riastrad /*
1390 1.71 riastrad * wapbl_space_used(avail, head, tail)
1391 1.71 riastrad *
1392 1.71 riastrad * Number of bytes used in a circular queue of avail total bytes,
1393 1.71 riastrad * from tail to head.
1394 1.71 riastrad */
1395 1.56 joerg static inline size_t
1396 1.56 joerg wapbl_space_used(size_t avail, off_t head, off_t tail)
1397 1.56 joerg {
1398 1.56 joerg
1399 1.56 joerg if (tail == 0) {
1400 1.56 joerg KASSERT(head == 0);
1401 1.56 joerg return 0;
1402 1.56 joerg }
1403 1.56 joerg return ((head + (avail - 1) - tail) % avail) + 1;
1404 1.56 joerg }
1405 1.56 joerg
1406 1.56 joerg #ifdef _KERNEL
1407 1.71 riastrad /*
1408 1.71 riastrad * wapbl_advance(size, off, oldoff, delta)
1409 1.71 riastrad *
1410 1.71 riastrad * Given a byte offset oldoff into a circular queue of size bytes
1411 1.71 riastrad * starting at off, return a new byte offset oldoff + delta into
1412 1.71 riastrad * the circular queue.
1413 1.71 riastrad */
1414 1.30 uebayasi static inline off_t
1415 1.60 matt wapbl_advance(size_t size, size_t off, off_t oldoff, size_t delta)
1416 1.2 simonb {
1417 1.60 matt off_t newoff;
1418 1.2 simonb
1419 1.2 simonb /* Define acceptable ranges for inputs. */
1420 1.46 christos KASSERT(delta <= (size_t)size);
1421 1.60 matt KASSERT((oldoff == 0) || ((size_t)oldoff >= off));
1422 1.60 matt KASSERT(oldoff < (off_t)(size + off));
1423 1.2 simonb
1424 1.60 matt if ((oldoff == 0) && (delta != 0))
1425 1.60 matt newoff = off + delta;
1426 1.60 matt else if ((oldoff + delta) < (size + off))
1427 1.60 matt newoff = oldoff + delta;
1428 1.2 simonb else
1429 1.60 matt newoff = (oldoff + delta) - size;
1430 1.2 simonb
1431 1.2 simonb /* Note some interesting axioms */
1432 1.60 matt KASSERT((delta != 0) || (newoff == oldoff));
1433 1.60 matt KASSERT((delta == 0) || (newoff != 0));
1434 1.60 matt KASSERT((delta != (size)) || (newoff == oldoff));
1435 1.2 simonb
1436 1.2 simonb /* Define acceptable ranges for output. */
1437 1.60 matt KASSERT((newoff == 0) || ((size_t)newoff >= off));
1438 1.60 matt KASSERT((size_t)newoff < (size + off));
1439 1.60 matt return newoff;
1440 1.2 simonb }
1441 1.2 simonb
1442 1.71 riastrad /*
1443 1.71 riastrad * wapbl_space_free(avail, head, tail)
1444 1.71 riastrad *
1445 1.71 riastrad * Number of bytes free in a circular queue of avail total bytes,
1446 1.71 riastrad * in which everything from tail to head is used.
1447 1.71 riastrad */
1448 1.30 uebayasi static inline size_t
1449 1.2 simonb wapbl_space_free(size_t avail, off_t head, off_t tail)
1450 1.2 simonb {
1451 1.2 simonb
1452 1.2 simonb return avail - wapbl_space_used(avail, head, tail);
1453 1.2 simonb }
1454 1.2 simonb
1455 1.71 riastrad /*
1456 1.71 riastrad * wapbl_advance_head(size, off, delta, headp, tailp)
1457 1.71 riastrad *
1458 1.71 riastrad * In a circular queue of size bytes starting at off, given the
1459 1.71 riastrad * old head and tail offsets *headp and *tailp, store the new head
1460 1.71 riastrad * and tail offsets in *headp and *tailp resulting from adding
1461 1.71 riastrad * delta bytes of data to the head.
1462 1.71 riastrad */
1463 1.30 uebayasi static inline void
1464 1.2 simonb wapbl_advance_head(size_t size, size_t off, size_t delta, off_t *headp,
1465 1.2 simonb off_t *tailp)
1466 1.2 simonb {
1467 1.2 simonb off_t head = *headp;
1468 1.2 simonb off_t tail = *tailp;
1469 1.2 simonb
1470 1.2 simonb KASSERT(delta <= wapbl_space_free(size, head, tail));
1471 1.2 simonb head = wapbl_advance(size, off, head, delta);
1472 1.2 simonb if ((tail == 0) && (head != 0))
1473 1.2 simonb tail = off;
1474 1.2 simonb *headp = head;
1475 1.2 simonb *tailp = tail;
1476 1.2 simonb }
1477 1.2 simonb
1478 1.71 riastrad /*
1479 1.71 riastrad * wapbl_advance_tail(size, off, delta, headp, tailp)
1480 1.71 riastrad *
1481 1.71 riastrad * In a circular queue of size bytes starting at off, given the
1482 1.71 riastrad * old head and tail offsets *headp and *tailp, store the new head
1483 1.71 riastrad * and tail offsets in *headp and *tailp resulting from removing
1484 1.71 riastrad * delta bytes of data from the tail.
1485 1.71 riastrad */
1486 1.30 uebayasi static inline void
1487 1.2 simonb wapbl_advance_tail(size_t size, size_t off, size_t delta, off_t *headp,
1488 1.2 simonb off_t *tailp)
1489 1.2 simonb {
1490 1.2 simonb off_t head = *headp;
1491 1.2 simonb off_t tail = *tailp;
1492 1.2 simonb
1493 1.2 simonb KASSERT(delta <= wapbl_space_used(size, head, tail));
1494 1.2 simonb tail = wapbl_advance(size, off, tail, delta);
1495 1.2 simonb if (head == tail) {
1496 1.2 simonb head = tail = 0;
1497 1.2 simonb }
1498 1.2 simonb *headp = head;
1499 1.2 simonb *tailp = tail;
1500 1.2 simonb }
1501 1.2 simonb
1502 1.2 simonb
1503 1.2 simonb /****************************************************************/
1504 1.2 simonb
1505 1.2 simonb /*
1506 1.73 riastrad * wapbl_truncate(wl, minfree)
1507 1.71 riastrad *
1508 1.71 riastrad * Wait until at least minfree bytes are available in the log.
1509 1.71 riastrad *
1510 1.73 riastrad * If it was necessary to wait for writes to complete,
1511 1.73 riastrad * advance the circular queue tail to reflect the new write
1512 1.73 riastrad * completions and issue a write commit to the log.
1513 1.71 riastrad *
1514 1.71 riastrad * => Caller must hold wl->wl_rwlock writer lock.
1515 1.2 simonb */
1516 1.2 simonb static int
1517 1.73 riastrad wapbl_truncate(struct wapbl *wl, size_t minfree)
1518 1.2 simonb {
1519 1.2 simonb size_t delta;
1520 1.2 simonb size_t avail;
1521 1.2 simonb off_t head;
1522 1.2 simonb off_t tail;
1523 1.2 simonb int error = 0;
1524 1.2 simonb
1525 1.2 simonb KASSERT(minfree <= (wl->wl_circ_size - wl->wl_reserved_bytes));
1526 1.2 simonb KASSERT(rw_write_held(&wl->wl_rwlock));
1527 1.2 simonb
1528 1.2 simonb mutex_enter(&wl->wl_mtx);
1529 1.2 simonb
1530 1.2 simonb /*
1531 1.2 simonb * First check to see if we have to do a commit
1532 1.2 simonb * at all.
1533 1.2 simonb */
1534 1.2 simonb avail = wapbl_space_free(wl->wl_circ_size, wl->wl_head, wl->wl_tail);
1535 1.2 simonb if (minfree < avail) {
1536 1.2 simonb mutex_exit(&wl->wl_mtx);
1537 1.2 simonb return 0;
1538 1.2 simonb }
1539 1.2 simonb minfree -= avail;
1540 1.2 simonb while ((wl->wl_error_count == 0) &&
1541 1.2 simonb (wl->wl_reclaimable_bytes < minfree)) {
1542 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_TRUNCATE,
1543 1.2 simonb ("wapbl_truncate: sleeping on %p wl=%p bytes=%zd "
1544 1.2 simonb "minfree=%zd\n",
1545 1.2 simonb &wl->wl_reclaimable_bytes, wl, wl->wl_reclaimable_bytes,
1546 1.2 simonb minfree));
1547 1.2 simonb
1548 1.2 simonb cv_wait(&wl->wl_reclaimable_cv, &wl->wl_mtx);
1549 1.2 simonb }
1550 1.2 simonb if (wl->wl_reclaimable_bytes < minfree) {
1551 1.2 simonb KASSERT(wl->wl_error_count);
1552 1.2 simonb /* XXX maybe get actual error from buffer instead someday? */
1553 1.2 simonb error = EIO;
1554 1.2 simonb }
1555 1.2 simonb head = wl->wl_head;
1556 1.2 simonb tail = wl->wl_tail;
1557 1.2 simonb delta = wl->wl_reclaimable_bytes;
1558 1.2 simonb
1559 1.2 simonb /* If all of of the entries are flushed, then be sure to keep
1560 1.2 simonb * the reserved bytes reserved. Watch out for discarded transactions,
1561 1.2 simonb * which could leave more bytes reserved than are reclaimable.
1562 1.2 simonb */
1563 1.91 riastrad if (SIMPLEQ_EMPTY(&wl->wl_entries) &&
1564 1.2 simonb (delta >= wl->wl_reserved_bytes)) {
1565 1.2 simonb delta -= wl->wl_reserved_bytes;
1566 1.2 simonb }
1567 1.2 simonb wapbl_advance_tail(wl->wl_circ_size, wl->wl_circ_off, delta, &head,
1568 1.2 simonb &tail);
1569 1.2 simonb KDASSERT(wl->wl_reserved_bytes <=
1570 1.2 simonb wapbl_space_used(wl->wl_circ_size, head, tail));
1571 1.2 simonb mutex_exit(&wl->wl_mtx);
1572 1.2 simonb
1573 1.2 simonb if (error)
1574 1.2 simonb return error;
1575 1.2 simonb
1576 1.2 simonb /*
1577 1.2 simonb * This is where head, tail and delta are unprotected
1578 1.2 simonb * from races against itself or flush. This is ok since
1579 1.2 simonb * we only call this routine from inside flush itself.
1580 1.2 simonb *
1581 1.2 simonb * XXX: how can it race against itself when accessed only
1582 1.2 simonb * from behind the write-locked rwlock?
1583 1.2 simonb */
1584 1.2 simonb error = wapbl_write_commit(wl, head, tail);
1585 1.2 simonb if (error)
1586 1.2 simonb return error;
1587 1.2 simonb
1588 1.2 simonb wl->wl_head = head;
1589 1.2 simonb wl->wl_tail = tail;
1590 1.2 simonb
1591 1.2 simonb mutex_enter(&wl->wl_mtx);
1592 1.2 simonb KASSERT(wl->wl_reclaimable_bytes >= delta);
1593 1.2 simonb wl->wl_reclaimable_bytes -= delta;
1594 1.2 simonb mutex_exit(&wl->wl_mtx);
1595 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_TRUNCATE,
1596 1.2 simonb ("wapbl_truncate thread %d.%d truncating %zu bytes\n",
1597 1.2 simonb curproc->p_pid, curlwp->l_lid, delta));
1598 1.2 simonb
1599 1.2 simonb return 0;
1600 1.2 simonb }
1601 1.2 simonb
1602 1.2 simonb /****************************************************************/
1603 1.2 simonb
1604 1.2 simonb void
1605 1.2 simonb wapbl_biodone(struct buf *bp)
1606 1.2 simonb {
1607 1.2 simonb struct wapbl_entry *we = bp->b_private;
1608 1.107 jdolecek struct wapbl *wl;
1609 1.53 hannken #ifdef WAPBL_DEBUG_BUFBYTES
1610 1.53 hannken const int bufsize = bp->b_bufsize;
1611 1.53 hannken #endif
1612 1.2 simonb
1613 1.107 jdolecek mutex_enter(&bufcache_lock);
1614 1.107 jdolecek wl = we->we_wapbl;
1615 1.107 jdolecek mutex_exit(&bufcache_lock);
1616 1.107 jdolecek
1617 1.2 simonb /*
1618 1.2 simonb * Handle possible flushing of buffers after log has been
1619 1.2 simonb * decomissioned.
1620 1.2 simonb */
1621 1.2 simonb if (!wl) {
1622 1.2 simonb KASSERT(we->we_bufcount > 0);
1623 1.2 simonb we->we_bufcount--;
1624 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1625 1.53 hannken KASSERT(we->we_unsynced_bufbytes >= bufsize);
1626 1.53 hannken we->we_unsynced_bufbytes -= bufsize;
1627 1.2 simonb #endif
1628 1.2 simonb
1629 1.2 simonb if (we->we_bufcount == 0) {
1630 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1631 1.2 simonb KASSERT(we->we_unsynced_bufbytes == 0);
1632 1.2 simonb #endif
1633 1.51 para pool_put(&wapbl_entry_pool, we);
1634 1.2 simonb }
1635 1.2 simonb
1636 1.2 simonb brelse(bp, 0);
1637 1.2 simonb return;
1638 1.2 simonb }
1639 1.2 simonb
1640 1.2 simonb #ifdef ohbother
1641 1.44 uebayasi KDASSERT(bp->b_oflags & BO_DONE);
1642 1.44 uebayasi KDASSERT(!(bp->b_oflags & BO_DELWRI));
1643 1.2 simonb KDASSERT(bp->b_flags & B_ASYNC);
1644 1.44 uebayasi KDASSERT(bp->b_cflags & BC_BUSY);
1645 1.2 simonb KDASSERT(!(bp->b_flags & B_LOCKED));
1646 1.2 simonb KDASSERT(!(bp->b_flags & B_READ));
1647 1.44 uebayasi KDASSERT(!(bp->b_cflags & BC_INVAL));
1648 1.44 uebayasi KDASSERT(!(bp->b_cflags & BC_NOCACHE));
1649 1.2 simonb #endif
1650 1.2 simonb
1651 1.2 simonb if (bp->b_error) {
1652 1.26 apb /*
1653 1.78 riastrad * If an error occurs, it would be nice to leave the buffer
1654 1.78 riastrad * as a delayed write on the LRU queue so that we can retry
1655 1.78 riastrad * it later. But buffercache(9) can't handle dirty buffer
1656 1.78 riastrad * reuse, so just mark the log permanently errored out.
1657 1.26 apb */
1658 1.2 simonb mutex_enter(&wl->wl_mtx);
1659 1.2 simonb if (wl->wl_error_count == 0) {
1660 1.2 simonb wl->wl_error_count++;
1661 1.2 simonb cv_broadcast(&wl->wl_reclaimable_cv);
1662 1.2 simonb }
1663 1.2 simonb mutex_exit(&wl->wl_mtx);
1664 1.2 simonb }
1665 1.2 simonb
1666 1.53 hannken /*
1667 1.93 jdolecek * Make sure that the buf doesn't retain the media flags, so that
1668 1.93 jdolecek * e.g. wapbl_allow_fuadpo has immediate effect on any following I/O.
1669 1.93 jdolecek * The flags will be set again if needed by another I/O.
1670 1.93 jdolecek */
1671 1.93 jdolecek bp->b_flags &= ~B_MEDIA_FLAGS;
1672 1.93 jdolecek
1673 1.93 jdolecek /*
1674 1.53 hannken * Release the buffer here. wapbl_flush() may wait for the
1675 1.53 hannken * log to become empty and we better unbusy the buffer before
1676 1.53 hannken * wapbl_flush() returns.
1677 1.53 hannken */
1678 1.53 hannken brelse(bp, 0);
1679 1.53 hannken
1680 1.2 simonb mutex_enter(&wl->wl_mtx);
1681 1.2 simonb
1682 1.2 simonb KASSERT(we->we_bufcount > 0);
1683 1.2 simonb we->we_bufcount--;
1684 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1685 1.53 hannken KASSERT(we->we_unsynced_bufbytes >= bufsize);
1686 1.53 hannken we->we_unsynced_bufbytes -= bufsize;
1687 1.53 hannken KASSERT(wl->wl_unsynced_bufbytes >= bufsize);
1688 1.53 hannken wl->wl_unsynced_bufbytes -= bufsize;
1689 1.2 simonb #endif
1690 1.87 jdolecek wl->wl_ev_metawrite.ev_count++;
1691 1.2 simonb
1692 1.2 simonb /*
1693 1.2 simonb * If the current transaction can be reclaimed, start
1694 1.2 simonb * at the beginning and reclaim any consecutive reclaimable
1695 1.2 simonb * transactions. If we successfully reclaim anything,
1696 1.2 simonb * then wakeup anyone waiting for the reclaim.
1697 1.2 simonb */
1698 1.2 simonb if (we->we_bufcount == 0) {
1699 1.2 simonb size_t delta = 0;
1700 1.2 simonb int errcnt = 0;
1701 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1702 1.2 simonb KDASSERT(we->we_unsynced_bufbytes == 0);
1703 1.2 simonb #endif
1704 1.2 simonb /*
1705 1.2 simonb * clear any posted error, since the buffer it came from
1706 1.2 simonb * has successfully flushed by now
1707 1.2 simonb */
1708 1.2 simonb while ((we = SIMPLEQ_FIRST(&wl->wl_entries)) &&
1709 1.2 simonb (we->we_bufcount == 0)) {
1710 1.2 simonb delta += we->we_reclaimable_bytes;
1711 1.2 simonb if (we->we_error)
1712 1.2 simonb errcnt++;
1713 1.2 simonb SIMPLEQ_REMOVE_HEAD(&wl->wl_entries, we_entries);
1714 1.51 para pool_put(&wapbl_entry_pool, we);
1715 1.2 simonb }
1716 1.2 simonb
1717 1.2 simonb if (delta) {
1718 1.2 simonb wl->wl_reclaimable_bytes += delta;
1719 1.2 simonb KASSERT(wl->wl_error_count >= errcnt);
1720 1.2 simonb wl->wl_error_count -= errcnt;
1721 1.2 simonb cv_broadcast(&wl->wl_reclaimable_cv);
1722 1.2 simonb }
1723 1.2 simonb }
1724 1.2 simonb
1725 1.2 simonb mutex_exit(&wl->wl_mtx);
1726 1.2 simonb }
1727 1.2 simonb
1728 1.2 simonb /*
1729 1.71 riastrad * wapbl_flush(wl, wait)
1730 1.71 riastrad *
1731 1.71 riastrad * Flush pending block writes, deallocations, and inodes from
1732 1.71 riastrad * the current transaction in memory to the log on disk:
1733 1.71 riastrad *
1734 1.71 riastrad * 1. Call the file system's wl_flush callback to flush any
1735 1.71 riastrad * per-file-system pending updates.
1736 1.71 riastrad * 2. Wait for enough space in the log for the current transaction.
1737 1.71 riastrad * 3. Synchronously write the new log records, advancing the
1738 1.71 riastrad * circular queue head.
1739 1.77 riastrad * 4. Issue the pending block writes asynchronously, now that they
1740 1.77 riastrad * are recorded in the log and can be replayed after crash.
1741 1.77 riastrad * 5. If wait is true, wait for all writes to complete and for the
1742 1.77 riastrad * log to become empty.
1743 1.71 riastrad *
1744 1.71 riastrad * On failure, call the file system's wl_flush_abort callback.
1745 1.2 simonb */
1746 1.2 simonb int
1747 1.2 simonb wapbl_flush(struct wapbl *wl, int waitfor)
1748 1.2 simonb {
1749 1.2 simonb struct buf *bp;
1750 1.2 simonb struct wapbl_entry *we;
1751 1.2 simonb off_t off;
1752 1.2 simonb off_t head;
1753 1.2 simonb off_t tail;
1754 1.2 simonb size_t delta = 0;
1755 1.2 simonb size_t flushsize;
1756 1.2 simonb size_t reserved;
1757 1.2 simonb int error = 0;
1758 1.2 simonb
1759 1.2 simonb /*
1760 1.2 simonb * Do a quick check to see if a full flush can be skipped
1761 1.2 simonb * This assumes that the flush callback does not need to be called
1762 1.2 simonb * unless there are other outstanding bufs.
1763 1.2 simonb */
1764 1.2 simonb if (!waitfor) {
1765 1.2 simonb size_t nbufs;
1766 1.2 simonb mutex_enter(&wl->wl_mtx); /* XXX need mutex here to
1767 1.2 simonb protect the KASSERTS */
1768 1.2 simonb nbufs = wl->wl_bufcount;
1769 1.2 simonb KASSERT((wl->wl_bufcount == 0) == (wl->wl_bufbytes == 0));
1770 1.2 simonb KASSERT((wl->wl_bufcount == 0) == (wl->wl_bcount == 0));
1771 1.2 simonb mutex_exit(&wl->wl_mtx);
1772 1.2 simonb if (nbufs == 0)
1773 1.2 simonb return 0;
1774 1.2 simonb }
1775 1.2 simonb
1776 1.2 simonb /*
1777 1.2 simonb * XXX we may consider using LK_UPGRADE here
1778 1.2 simonb * if we want to call flush from inside a transaction
1779 1.2 simonb */
1780 1.2 simonb rw_enter(&wl->wl_rwlock, RW_WRITER);
1781 1.86 jdolecek wl->wl_flush(wl->wl_mount, TAILQ_FIRST(&wl->wl_dealloclist));
1782 1.2 simonb
1783 1.2 simonb /*
1784 1.75 riastrad * Now that we are exclusively locked and the file system has
1785 1.75 riastrad * issued any deferred block writes for this transaction, check
1786 1.75 riastrad * whether there are any blocks to write to the log. If not,
1787 1.75 riastrad * skip waiting for space or writing any log entries.
1788 1.75 riastrad *
1789 1.75 riastrad * XXX Shouldn't this also check wl_dealloccnt and
1790 1.75 riastrad * wl_inohashcnt? Perhaps wl_dealloccnt doesn't matter if the
1791 1.75 riastrad * file system didn't produce any blocks as a consequence of
1792 1.75 riastrad * it, but the same does not seem to be so of wl_inohashcnt.
1793 1.2 simonb */
1794 1.2 simonb if (wl->wl_bufcount == 0) {
1795 1.69 riastrad goto wait_out;
1796 1.2 simonb }
1797 1.2 simonb
1798 1.2 simonb #if 0
1799 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
1800 1.2 simonb ("wapbl_flush thread %d.%d flushing entries with "
1801 1.2 simonb "bufcount=%zu bufbytes=%zu\n",
1802 1.2 simonb curproc->p_pid, curlwp->l_lid, wl->wl_bufcount,
1803 1.2 simonb wl->wl_bufbytes));
1804 1.2 simonb #endif
1805 1.2 simonb
1806 1.2 simonb /* Calculate amount of space needed to flush */
1807 1.2 simonb flushsize = wapbl_transaction_len(wl);
1808 1.39 christos if (wapbl_verbose_commit) {
1809 1.39 christos struct timespec ts;
1810 1.39 christos getnanotime(&ts);
1811 1.43 nakayama printf("%s: %lld.%09ld this transaction = %zu bytes\n",
1812 1.39 christos __func__, (long long)ts.tv_sec,
1813 1.39 christos (long)ts.tv_nsec, flushsize);
1814 1.39 christos }
1815 1.2 simonb
1816 1.2 simonb if (flushsize > (wl->wl_circ_size - wl->wl_reserved_bytes)) {
1817 1.2 simonb /*
1818 1.2 simonb * XXX this could be handled more gracefully, perhaps place
1819 1.2 simonb * only a partial transaction in the log and allow the
1820 1.2 simonb * remaining to flush without the protection of the journal.
1821 1.2 simonb */
1822 1.66 riastrad panic("wapbl_flush: current transaction too big to flush");
1823 1.2 simonb }
1824 1.2 simonb
1825 1.73 riastrad error = wapbl_truncate(wl, flushsize);
1826 1.2 simonb if (error)
1827 1.69 riastrad goto out;
1828 1.2 simonb
1829 1.2 simonb off = wl->wl_head;
1830 1.70 riastrad KASSERT((off == 0) || (off >= wl->wl_circ_off));
1831 1.70 riastrad KASSERT((off == 0) || (off < wl->wl_circ_off + wl->wl_circ_size));
1832 1.2 simonb error = wapbl_write_blocks(wl, &off);
1833 1.2 simonb if (error)
1834 1.69 riastrad goto out;
1835 1.2 simonb error = wapbl_write_revocations(wl, &off);
1836 1.2 simonb if (error)
1837 1.69 riastrad goto out;
1838 1.2 simonb error = wapbl_write_inodes(wl, &off);
1839 1.2 simonb if (error)
1840 1.69 riastrad goto out;
1841 1.2 simonb
1842 1.2 simonb reserved = 0;
1843 1.2 simonb if (wl->wl_inohashcnt)
1844 1.2 simonb reserved = wapbl_transaction_inodes_len(wl);
1845 1.2 simonb
1846 1.2 simonb head = wl->wl_head;
1847 1.2 simonb tail = wl->wl_tail;
1848 1.2 simonb
1849 1.2 simonb wapbl_advance_head(wl->wl_circ_size, wl->wl_circ_off, flushsize,
1850 1.2 simonb &head, &tail);
1851 1.72 riastrad
1852 1.72 riastrad KASSERTMSG(head == off,
1853 1.72 riastrad "lost head! head=%"PRIdMAX" tail=%" PRIdMAX
1854 1.72 riastrad " off=%"PRIdMAX" flush=%zu",
1855 1.72 riastrad (intmax_t)head, (intmax_t)tail, (intmax_t)off,
1856 1.72 riastrad flushsize);
1857 1.2 simonb
1858 1.2 simonb /* Opportunistically move the tail forward if we can */
1859 1.73 riastrad mutex_enter(&wl->wl_mtx);
1860 1.73 riastrad delta = wl->wl_reclaimable_bytes;
1861 1.73 riastrad mutex_exit(&wl->wl_mtx);
1862 1.73 riastrad wapbl_advance_tail(wl->wl_circ_size, wl->wl_circ_off, delta,
1863 1.73 riastrad &head, &tail);
1864 1.2 simonb
1865 1.2 simonb error = wapbl_write_commit(wl, head, tail);
1866 1.2 simonb if (error)
1867 1.69 riastrad goto out;
1868 1.2 simonb
1869 1.51 para we = pool_get(&wapbl_entry_pool, PR_WAITOK);
1870 1.2 simonb
1871 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1872 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
1873 1.2 simonb ("wapbl_flush: thread %d.%d head+=%zu tail+=%zu used=%zu"
1874 1.2 simonb " unsynced=%zu"
1875 1.2 simonb "\n\tbufcount=%zu bufbytes=%zu bcount=%zu deallocs=%d "
1876 1.2 simonb "inodes=%d\n",
1877 1.2 simonb curproc->p_pid, curlwp->l_lid, flushsize, delta,
1878 1.2 simonb wapbl_space_used(wl->wl_circ_size, head, tail),
1879 1.2 simonb wl->wl_unsynced_bufbytes, wl->wl_bufcount,
1880 1.2 simonb wl->wl_bufbytes, wl->wl_bcount, wl->wl_dealloccnt,
1881 1.2 simonb wl->wl_inohashcnt));
1882 1.2 simonb #else
1883 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
1884 1.2 simonb ("wapbl_flush: thread %d.%d head+=%zu tail+=%zu used=%zu"
1885 1.2 simonb "\n\tbufcount=%zu bufbytes=%zu bcount=%zu deallocs=%d "
1886 1.2 simonb "inodes=%d\n",
1887 1.2 simonb curproc->p_pid, curlwp->l_lid, flushsize, delta,
1888 1.2 simonb wapbl_space_used(wl->wl_circ_size, head, tail),
1889 1.2 simonb wl->wl_bufcount, wl->wl_bufbytes, wl->wl_bcount,
1890 1.2 simonb wl->wl_dealloccnt, wl->wl_inohashcnt));
1891 1.2 simonb #endif
1892 1.2 simonb
1893 1.2 simonb
1894 1.2 simonb mutex_enter(&bufcache_lock);
1895 1.2 simonb mutex_enter(&wl->wl_mtx);
1896 1.2 simonb
1897 1.2 simonb wl->wl_reserved_bytes = reserved;
1898 1.2 simonb wl->wl_head = head;
1899 1.2 simonb wl->wl_tail = tail;
1900 1.2 simonb KASSERT(wl->wl_reclaimable_bytes >= delta);
1901 1.2 simonb wl->wl_reclaimable_bytes -= delta;
1902 1.81 jdolecek KDASSERT(wl->wl_dealloccnt == 0);
1903 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1904 1.2 simonb wl->wl_unsynced_bufbytes += wl->wl_bufbytes;
1905 1.2 simonb #endif
1906 1.2 simonb
1907 1.2 simonb we->we_wapbl = wl;
1908 1.2 simonb we->we_bufcount = wl->wl_bufcount;
1909 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1910 1.2 simonb we->we_unsynced_bufbytes = wl->wl_bufbytes;
1911 1.2 simonb #endif
1912 1.2 simonb we->we_reclaimable_bytes = flushsize;
1913 1.2 simonb we->we_error = 0;
1914 1.2 simonb SIMPLEQ_INSERT_TAIL(&wl->wl_entries, we, we_entries);
1915 1.2 simonb
1916 1.2 simonb /*
1917 1.94 jdolecek * This flushes bufs in order than they were queued, so the LRU
1918 1.94 jdolecek * order is preserved.
1919 1.2 simonb */
1920 1.94 jdolecek while ((bp = TAILQ_FIRST(&wl->wl_bufs)) != NULL) {
1921 1.2 simonb if (bbusy(bp, 0, 0, &wl->wl_mtx)) {
1922 1.2 simonb continue;
1923 1.2 simonb }
1924 1.2 simonb bp->b_iodone = wapbl_biodone;
1925 1.2 simonb bp->b_private = we;
1926 1.93 jdolecek
1927 1.2 simonb bremfree(bp);
1928 1.2 simonb wapbl_remove_buf_locked(wl, bp);
1929 1.2 simonb mutex_exit(&wl->wl_mtx);
1930 1.2 simonb mutex_exit(&bufcache_lock);
1931 1.2 simonb bawrite(bp);
1932 1.2 simonb mutex_enter(&bufcache_lock);
1933 1.2 simonb mutex_enter(&wl->wl_mtx);
1934 1.2 simonb }
1935 1.2 simonb mutex_exit(&wl->wl_mtx);
1936 1.2 simonb mutex_exit(&bufcache_lock);
1937 1.2 simonb
1938 1.2 simonb #if 0
1939 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
1940 1.2 simonb ("wapbl_flush thread %d.%d done flushing entries...\n",
1941 1.2 simonb curproc->p_pid, curlwp->l_lid));
1942 1.2 simonb #endif
1943 1.2 simonb
1944 1.69 riastrad wait_out:
1945 1.2 simonb
1946 1.2 simonb /*
1947 1.2 simonb * If the waitfor flag is set, don't return until everything is
1948 1.2 simonb * fully flushed and the on disk log is empty.
1949 1.2 simonb */
1950 1.2 simonb if (waitfor) {
1951 1.91 riastrad error = wapbl_truncate(wl, wl->wl_circ_size -
1952 1.73 riastrad wl->wl_reserved_bytes);
1953 1.2 simonb }
1954 1.2 simonb
1955 1.69 riastrad out:
1956 1.2 simonb if (error) {
1957 1.81 jdolecek wl->wl_flush_abort(wl->wl_mount,
1958 1.86 jdolecek TAILQ_FIRST(&wl->wl_dealloclist));
1959 1.2 simonb }
1960 1.2 simonb
1961 1.2 simonb #ifdef WAPBL_DEBUG_PRINT
1962 1.2 simonb if (error) {
1963 1.2 simonb pid_t pid = -1;
1964 1.2 simonb lwpid_t lid = -1;
1965 1.2 simonb if (curproc)
1966 1.2 simonb pid = curproc->p_pid;
1967 1.2 simonb if (curlwp)
1968 1.2 simonb lid = curlwp->l_lid;
1969 1.2 simonb mutex_enter(&wl->wl_mtx);
1970 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
1971 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_ERROR,
1972 1.2 simonb ("wapbl_flush: thread %d.%d aborted flush: "
1973 1.2 simonb "error = %d\n"
1974 1.2 simonb "\tbufcount=%zu bufbytes=%zu bcount=%zu "
1975 1.2 simonb "deallocs=%d inodes=%d\n"
1976 1.2 simonb "\terrcnt = %d, reclaimable=%zu reserved=%zu "
1977 1.2 simonb "unsynced=%zu\n",
1978 1.2 simonb pid, lid, error, wl->wl_bufcount,
1979 1.2 simonb wl->wl_bufbytes, wl->wl_bcount,
1980 1.2 simonb wl->wl_dealloccnt, wl->wl_inohashcnt,
1981 1.2 simonb wl->wl_error_count, wl->wl_reclaimable_bytes,
1982 1.2 simonb wl->wl_reserved_bytes, wl->wl_unsynced_bufbytes));
1983 1.2 simonb SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
1984 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_ERROR,
1985 1.2 simonb ("\tentry: bufcount = %zu, reclaimable = %zu, "
1986 1.2 simonb "error = %d, unsynced = %zu\n",
1987 1.2 simonb we->we_bufcount, we->we_reclaimable_bytes,
1988 1.2 simonb we->we_error, we->we_unsynced_bufbytes));
1989 1.2 simonb }
1990 1.2 simonb #else
1991 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_ERROR,
1992 1.2 simonb ("wapbl_flush: thread %d.%d aborted flush: "
1993 1.2 simonb "error = %d\n"
1994 1.2 simonb "\tbufcount=%zu bufbytes=%zu bcount=%zu "
1995 1.2 simonb "deallocs=%d inodes=%d\n"
1996 1.2 simonb "\terrcnt = %d, reclaimable=%zu reserved=%zu\n",
1997 1.2 simonb pid, lid, error, wl->wl_bufcount,
1998 1.2 simonb wl->wl_bufbytes, wl->wl_bcount,
1999 1.2 simonb wl->wl_dealloccnt, wl->wl_inohashcnt,
2000 1.2 simonb wl->wl_error_count, wl->wl_reclaimable_bytes,
2001 1.2 simonb wl->wl_reserved_bytes));
2002 1.2 simonb SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
2003 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_ERROR,
2004 1.2 simonb ("\tentry: bufcount = %zu, reclaimable = %zu, "
2005 1.2 simonb "error = %d\n", we->we_bufcount,
2006 1.2 simonb we->we_reclaimable_bytes, we->we_error));
2007 1.2 simonb }
2008 1.2 simonb #endif
2009 1.2 simonb mutex_exit(&wl->wl_mtx);
2010 1.2 simonb }
2011 1.2 simonb #endif
2012 1.2 simonb
2013 1.2 simonb rw_exit(&wl->wl_rwlock);
2014 1.2 simonb return error;
2015 1.2 simonb }
2016 1.2 simonb
2017 1.2 simonb /****************************************************************/
2018 1.2 simonb
2019 1.2 simonb void
2020 1.2 simonb wapbl_jlock_assert(struct wapbl *wl)
2021 1.2 simonb {
2022 1.2 simonb
2023 1.23 ad KASSERT(rw_lock_held(&wl->wl_rwlock));
2024 1.2 simonb }
2025 1.2 simonb
2026 1.2 simonb void
2027 1.2 simonb wapbl_junlock_assert(struct wapbl *wl)
2028 1.2 simonb {
2029 1.2 simonb
2030 1.2 simonb KASSERT(!rw_write_held(&wl->wl_rwlock));
2031 1.2 simonb }
2032 1.2 simonb
2033 1.2 simonb /****************************************************************/
2034 1.2 simonb
2035 1.2 simonb /* locks missing */
2036 1.2 simonb void
2037 1.2 simonb wapbl_print(struct wapbl *wl,
2038 1.2 simonb int full,
2039 1.2 simonb void (*pr)(const char *, ...))
2040 1.2 simonb {
2041 1.2 simonb struct buf *bp;
2042 1.2 simonb struct wapbl_entry *we;
2043 1.2 simonb (*pr)("wapbl %p", wl);
2044 1.2 simonb (*pr)("\nlogvp = %p, devvp = %p, logpbn = %"PRId64"\n",
2045 1.2 simonb wl->wl_logvp, wl->wl_devvp, wl->wl_logpbn);
2046 1.2 simonb (*pr)("circ = %zu, header = %zu, head = %"PRIdMAX" tail = %"PRIdMAX"\n",
2047 1.2 simonb wl->wl_circ_size, wl->wl_circ_off,
2048 1.2 simonb (intmax_t)wl->wl_head, (intmax_t)wl->wl_tail);
2049 1.2 simonb (*pr)("fs_dev_bshift = %d, log_dev_bshift = %d\n",
2050 1.2 simonb wl->wl_log_dev_bshift, wl->wl_fs_dev_bshift);
2051 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
2052 1.2 simonb (*pr)("bufcount = %zu, bufbytes = %zu bcount = %zu reclaimable = %zu "
2053 1.2 simonb "reserved = %zu errcnt = %d unsynced = %zu\n",
2054 1.2 simonb wl->wl_bufcount, wl->wl_bufbytes, wl->wl_bcount,
2055 1.2 simonb wl->wl_reclaimable_bytes, wl->wl_reserved_bytes,
2056 1.2 simonb wl->wl_error_count, wl->wl_unsynced_bufbytes);
2057 1.2 simonb #else
2058 1.2 simonb (*pr)("bufcount = %zu, bufbytes = %zu bcount = %zu reclaimable = %zu "
2059 1.2 simonb "reserved = %zu errcnt = %d\n", wl->wl_bufcount, wl->wl_bufbytes,
2060 1.2 simonb wl->wl_bcount, wl->wl_reclaimable_bytes, wl->wl_reserved_bytes,
2061 1.2 simonb wl->wl_error_count);
2062 1.2 simonb #endif
2063 1.2 simonb (*pr)("\tdealloccnt = %d, dealloclim = %d\n",
2064 1.2 simonb wl->wl_dealloccnt, wl->wl_dealloclim);
2065 1.2 simonb (*pr)("\tinohashcnt = %d, inohashmask = 0x%08x\n",
2066 1.2 simonb wl->wl_inohashcnt, wl->wl_inohashmask);
2067 1.2 simonb (*pr)("entries:\n");
2068 1.2 simonb SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
2069 1.2 simonb #ifdef WAPBL_DEBUG_BUFBYTES
2070 1.2 simonb (*pr)("\tbufcount = %zu, reclaimable = %zu, error = %d, "
2071 1.2 simonb "unsynced = %zu\n",
2072 1.2 simonb we->we_bufcount, we->we_reclaimable_bytes,
2073 1.2 simonb we->we_error, we->we_unsynced_bufbytes);
2074 1.2 simonb #else
2075 1.2 simonb (*pr)("\tbufcount = %zu, reclaimable = %zu, error = %d\n",
2076 1.2 simonb we->we_bufcount, we->we_reclaimable_bytes, we->we_error);
2077 1.2 simonb #endif
2078 1.2 simonb }
2079 1.2 simonb if (full) {
2080 1.2 simonb int cnt = 0;
2081 1.2 simonb (*pr)("bufs =");
2082 1.94 jdolecek TAILQ_FOREACH(bp, &wl->wl_bufs, b_wapbllist) {
2083 1.94 jdolecek if (!TAILQ_NEXT(bp, b_wapbllist)) {
2084 1.2 simonb (*pr)(" %p", bp);
2085 1.2 simonb } else if ((++cnt % 6) == 0) {
2086 1.2 simonb (*pr)(" %p,\n\t", bp);
2087 1.2 simonb } else {
2088 1.2 simonb (*pr)(" %p,", bp);
2089 1.2 simonb }
2090 1.2 simonb }
2091 1.2 simonb (*pr)("\n");
2092 1.2 simonb
2093 1.2 simonb (*pr)("dealloced blks = ");
2094 1.2 simonb {
2095 1.81 jdolecek struct wapbl_dealloc *wd;
2096 1.2 simonb cnt = 0;
2097 1.86 jdolecek TAILQ_FOREACH(wd, &wl->wl_dealloclist, wd_entries) {
2098 1.2 simonb (*pr)(" %"PRId64":%d,",
2099 1.81 jdolecek wd->wd_blkno,
2100 1.81 jdolecek wd->wd_len);
2101 1.2 simonb if ((++cnt % 4) == 0) {
2102 1.2 simonb (*pr)("\n\t");
2103 1.2 simonb }
2104 1.2 simonb }
2105 1.2 simonb }
2106 1.2 simonb (*pr)("\n");
2107 1.2 simonb
2108 1.2 simonb (*pr)("registered inodes = ");
2109 1.2 simonb {
2110 1.2 simonb int i;
2111 1.2 simonb cnt = 0;
2112 1.2 simonb for (i = 0; i <= wl->wl_inohashmask; i++) {
2113 1.2 simonb struct wapbl_ino_head *wih;
2114 1.2 simonb struct wapbl_ino *wi;
2115 1.2 simonb
2116 1.2 simonb wih = &wl->wl_inohash[i];
2117 1.2 simonb LIST_FOREACH(wi, wih, wi_hash) {
2118 1.2 simonb if (wi->wi_ino == 0)
2119 1.2 simonb continue;
2120 1.55 christos (*pr)(" %"PRIu64"/0%06"PRIo32",",
2121 1.2 simonb wi->wi_ino, wi->wi_mode);
2122 1.2 simonb if ((++cnt % 4) == 0) {
2123 1.2 simonb (*pr)("\n\t");
2124 1.2 simonb }
2125 1.2 simonb }
2126 1.2 simonb }
2127 1.2 simonb (*pr)("\n");
2128 1.2 simonb }
2129 1.95 jdolecek
2130 1.95 jdolecek (*pr)("iobufs free =");
2131 1.95 jdolecek TAILQ_FOREACH(bp, &wl->wl_iobufs, b_wapbllist) {
2132 1.95 jdolecek if (!TAILQ_NEXT(bp, b_wapbllist)) {
2133 1.95 jdolecek (*pr)(" %p", bp);
2134 1.95 jdolecek } else if ((++cnt % 6) == 0) {
2135 1.95 jdolecek (*pr)(" %p,\n\t", bp);
2136 1.95 jdolecek } else {
2137 1.95 jdolecek (*pr)(" %p,", bp);
2138 1.95 jdolecek }
2139 1.95 jdolecek }
2140 1.95 jdolecek (*pr)("\n");
2141 1.95 jdolecek
2142 1.95 jdolecek (*pr)("iobufs busy =");
2143 1.95 jdolecek TAILQ_FOREACH(bp, &wl->wl_iobufs_busy, b_wapbllist) {
2144 1.95 jdolecek if (!TAILQ_NEXT(bp, b_wapbllist)) {
2145 1.95 jdolecek (*pr)(" %p", bp);
2146 1.95 jdolecek } else if ((++cnt % 6) == 0) {
2147 1.95 jdolecek (*pr)(" %p,\n\t", bp);
2148 1.95 jdolecek } else {
2149 1.95 jdolecek (*pr)(" %p,", bp);
2150 1.95 jdolecek }
2151 1.95 jdolecek }
2152 1.95 jdolecek (*pr)("\n");
2153 1.2 simonb }
2154 1.2 simonb }
2155 1.2 simonb
2156 1.2 simonb #if defined(WAPBL_DEBUG) || defined(DDB)
2157 1.2 simonb void
2158 1.2 simonb wapbl_dump(struct wapbl *wl)
2159 1.2 simonb {
2160 1.2 simonb #if defined(WAPBL_DEBUG)
2161 1.2 simonb if (!wl)
2162 1.2 simonb wl = wapbl_debug_wl;
2163 1.2 simonb #endif
2164 1.2 simonb if (!wl)
2165 1.2 simonb return;
2166 1.100 joerg wapbl_print(wl, 1, printf);
2167 1.2 simonb }
2168 1.2 simonb #endif
2169 1.2 simonb
2170 1.2 simonb /****************************************************************/
2171 1.2 simonb
2172 1.85 jdolecek int
2173 1.86 jdolecek wapbl_register_deallocation(struct wapbl *wl, daddr_t blk, int len, bool force,
2174 1.86 jdolecek void **cookiep)
2175 1.2 simonb {
2176 1.81 jdolecek struct wapbl_dealloc *wd;
2177 1.85 jdolecek int error = 0;
2178 1.2 simonb
2179 1.2 simonb wapbl_jlock_assert(wl);
2180 1.2 simonb
2181 1.38 hannken mutex_enter(&wl->wl_mtx);
2182 1.85 jdolecek
2183 1.85 jdolecek if (__predict_false(wl->wl_dealloccnt >= wl->wl_dealloclim)) {
2184 1.85 jdolecek if (!force) {
2185 1.85 jdolecek error = EAGAIN;
2186 1.85 jdolecek goto out;
2187 1.85 jdolecek }
2188 1.85 jdolecek
2189 1.85 jdolecek /*
2190 1.85 jdolecek * Forced registration can only be used when:
2191 1.85 jdolecek * 1) the caller can't cope with failure
2192 1.85 jdolecek * 2) the path can be triggered only bounded, small
2193 1.85 jdolecek * times per transaction
2194 1.85 jdolecek * If this is not fullfilled, and the path would be triggered
2195 1.85 jdolecek * many times, this could overflow maximum transaction size
2196 1.85 jdolecek * and panic later.
2197 1.85 jdolecek */
2198 1.85 jdolecek printf("%s: forced dealloc registration over limit: %d >= %d\n",
2199 1.85 jdolecek wl->wl_mount->mnt_stat.f_mntonname,
2200 1.85 jdolecek wl->wl_dealloccnt, wl->wl_dealloclim);
2201 1.85 jdolecek }
2202 1.27 pooka
2203 1.84 jdolecek wl->wl_dealloccnt++;
2204 1.84 jdolecek mutex_exit(&wl->wl_mtx);
2205 1.84 jdolecek
2206 1.81 jdolecek wd = pool_get(&wapbl_dealloc_pool, PR_WAITOK);
2207 1.81 jdolecek wd->wd_blkno = blk;
2208 1.81 jdolecek wd->wd_len = len;
2209 1.81 jdolecek
2210 1.84 jdolecek mutex_enter(&wl->wl_mtx);
2211 1.86 jdolecek TAILQ_INSERT_TAIL(&wl->wl_dealloclist, wd, wd_entries);
2212 1.86 jdolecek
2213 1.86 jdolecek if (cookiep)
2214 1.86 jdolecek *cookiep = wd;
2215 1.85 jdolecek
2216 1.85 jdolecek out:
2217 1.84 jdolecek mutex_exit(&wl->wl_mtx);
2218 1.81 jdolecek
2219 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_ALLOC,
2220 1.85 jdolecek ("wapbl_register_deallocation: blk=%"PRId64" len=%d error=%d\n",
2221 1.85 jdolecek blk, len, error));
2222 1.85 jdolecek
2223 1.85 jdolecek return error;
2224 1.2 simonb }
2225 1.2 simonb
2226 1.86 jdolecek static void
2227 1.86 jdolecek wapbl_deallocation_free(struct wapbl *wl, struct wapbl_dealloc *wd,
2228 1.86 jdolecek bool locked)
2229 1.86 jdolecek {
2230 1.86 jdolecek KASSERT(!locked
2231 1.86 jdolecek || rw_lock_held(&wl->wl_rwlock) || mutex_owned(&wl->wl_mtx));
2232 1.86 jdolecek
2233 1.86 jdolecek if (!locked)
2234 1.86 jdolecek mutex_enter(&wl->wl_mtx);
2235 1.86 jdolecek
2236 1.86 jdolecek TAILQ_REMOVE(&wl->wl_dealloclist, wd, wd_entries);
2237 1.86 jdolecek wl->wl_dealloccnt--;
2238 1.86 jdolecek
2239 1.86 jdolecek if (!locked)
2240 1.86 jdolecek mutex_exit(&wl->wl_mtx);
2241 1.86 jdolecek
2242 1.86 jdolecek pool_put(&wapbl_dealloc_pool, wd);
2243 1.86 jdolecek }
2244 1.86 jdolecek
2245 1.86 jdolecek void
2246 1.86 jdolecek wapbl_unregister_deallocation(struct wapbl *wl, void *cookie)
2247 1.86 jdolecek {
2248 1.86 jdolecek KASSERT(cookie != NULL);
2249 1.86 jdolecek wapbl_deallocation_free(wl, cookie, false);
2250 1.86 jdolecek }
2251 1.86 jdolecek
2252 1.2 simonb /****************************************************************/
2253 1.2 simonb
2254 1.2 simonb static void
2255 1.2 simonb wapbl_inodetrk_init(struct wapbl *wl, u_int size)
2256 1.2 simonb {
2257 1.2 simonb
2258 1.2 simonb wl->wl_inohash = hashinit(size, HASH_LIST, true, &wl->wl_inohashmask);
2259 1.2 simonb if (atomic_inc_uint_nv(&wapbl_ino_pool_refcount) == 1) {
2260 1.2 simonb pool_init(&wapbl_ino_pool, sizeof(struct wapbl_ino), 0, 0, 0,
2261 1.2 simonb "wapblinopl", &pool_allocator_nointr, IPL_NONE);
2262 1.2 simonb }
2263 1.2 simonb }
2264 1.2 simonb
2265 1.2 simonb static void
2266 1.2 simonb wapbl_inodetrk_free(struct wapbl *wl)
2267 1.2 simonb {
2268 1.2 simonb
2269 1.2 simonb /* XXX this KASSERT needs locking/mutex analysis */
2270 1.2 simonb KASSERT(wl->wl_inohashcnt == 0);
2271 1.2 simonb hashdone(wl->wl_inohash, HASH_LIST, wl->wl_inohashmask);
2272 1.2 simonb if (atomic_dec_uint_nv(&wapbl_ino_pool_refcount) == 0) {
2273 1.2 simonb pool_destroy(&wapbl_ino_pool);
2274 1.2 simonb }
2275 1.2 simonb }
2276 1.2 simonb
2277 1.2 simonb static struct wapbl_ino *
2278 1.2 simonb wapbl_inodetrk_get(struct wapbl *wl, ino_t ino)
2279 1.2 simonb {
2280 1.2 simonb struct wapbl_ino_head *wih;
2281 1.2 simonb struct wapbl_ino *wi;
2282 1.2 simonb
2283 1.2 simonb KASSERT(mutex_owned(&wl->wl_mtx));
2284 1.2 simonb
2285 1.2 simonb wih = &wl->wl_inohash[ino & wl->wl_inohashmask];
2286 1.2 simonb LIST_FOREACH(wi, wih, wi_hash) {
2287 1.2 simonb if (ino == wi->wi_ino)
2288 1.2 simonb return wi;
2289 1.2 simonb }
2290 1.2 simonb return 0;
2291 1.2 simonb }
2292 1.2 simonb
2293 1.2 simonb void
2294 1.2 simonb wapbl_register_inode(struct wapbl *wl, ino_t ino, mode_t mode)
2295 1.2 simonb {
2296 1.2 simonb struct wapbl_ino_head *wih;
2297 1.2 simonb struct wapbl_ino *wi;
2298 1.2 simonb
2299 1.2 simonb wi = pool_get(&wapbl_ino_pool, PR_WAITOK);
2300 1.2 simonb
2301 1.2 simonb mutex_enter(&wl->wl_mtx);
2302 1.2 simonb if (wapbl_inodetrk_get(wl, ino) == NULL) {
2303 1.2 simonb wi->wi_ino = ino;
2304 1.2 simonb wi->wi_mode = mode;
2305 1.2 simonb wih = &wl->wl_inohash[ino & wl->wl_inohashmask];
2306 1.2 simonb LIST_INSERT_HEAD(wih, wi, wi_hash);
2307 1.2 simonb wl->wl_inohashcnt++;
2308 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_INODE,
2309 1.2 simonb ("wapbl_register_inode: ino=%"PRId64"\n", ino));
2310 1.2 simonb mutex_exit(&wl->wl_mtx);
2311 1.2 simonb } else {
2312 1.2 simonb mutex_exit(&wl->wl_mtx);
2313 1.2 simonb pool_put(&wapbl_ino_pool, wi);
2314 1.2 simonb }
2315 1.2 simonb }
2316 1.2 simonb
2317 1.2 simonb void
2318 1.2 simonb wapbl_unregister_inode(struct wapbl *wl, ino_t ino, mode_t mode)
2319 1.2 simonb {
2320 1.2 simonb struct wapbl_ino *wi;
2321 1.2 simonb
2322 1.2 simonb mutex_enter(&wl->wl_mtx);
2323 1.2 simonb wi = wapbl_inodetrk_get(wl, ino);
2324 1.2 simonb if (wi) {
2325 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_INODE,
2326 1.2 simonb ("wapbl_unregister_inode: ino=%"PRId64"\n", ino));
2327 1.2 simonb KASSERT(wl->wl_inohashcnt > 0);
2328 1.2 simonb wl->wl_inohashcnt--;
2329 1.2 simonb LIST_REMOVE(wi, wi_hash);
2330 1.2 simonb mutex_exit(&wl->wl_mtx);
2331 1.2 simonb
2332 1.2 simonb pool_put(&wapbl_ino_pool, wi);
2333 1.2 simonb } else {
2334 1.2 simonb mutex_exit(&wl->wl_mtx);
2335 1.2 simonb }
2336 1.2 simonb }
2337 1.2 simonb
2338 1.2 simonb /****************************************************************/
2339 1.2 simonb
2340 1.71 riastrad /*
2341 1.71 riastrad * wapbl_transaction_inodes_len(wl)
2342 1.71 riastrad *
2343 1.71 riastrad * Calculate the number of bytes required for inode registration
2344 1.71 riastrad * log records in wl.
2345 1.71 riastrad */
2346 1.30 uebayasi static inline size_t
2347 1.2 simonb wapbl_transaction_inodes_len(struct wapbl *wl)
2348 1.2 simonb {
2349 1.2 simonb int blocklen = 1<<wl->wl_log_dev_bshift;
2350 1.2 simonb int iph;
2351 1.2 simonb
2352 1.2 simonb /* Calculate number of inodes described in a inodelist header */
2353 1.2 simonb iph = (blocklen - offsetof(struct wapbl_wc_inodelist, wc_inodes)) /
2354 1.2 simonb sizeof(((struct wapbl_wc_inodelist *)0)->wc_inodes[0]);
2355 1.2 simonb
2356 1.2 simonb KASSERT(iph > 0);
2357 1.2 simonb
2358 1.39 christos return MAX(1, howmany(wl->wl_inohashcnt, iph)) * blocklen;
2359 1.2 simonb }
2360 1.2 simonb
2361 1.2 simonb
2362 1.71 riastrad /*
2363 1.71 riastrad * wapbl_transaction_len(wl)
2364 1.71 riastrad *
2365 1.71 riastrad * Calculate number of bytes required for all log records in wl.
2366 1.71 riastrad */
2367 1.2 simonb static size_t
2368 1.2 simonb wapbl_transaction_len(struct wapbl *wl)
2369 1.2 simonb {
2370 1.2 simonb int blocklen = 1<<wl->wl_log_dev_bshift;
2371 1.2 simonb size_t len;
2372 1.2 simonb
2373 1.80 jdolecek /* Calculate number of blocks described in a blocklist header */
2374 1.2 simonb len = wl->wl_bcount;
2375 1.79 jdolecek len += howmany(wl->wl_bufcount, wl->wl_brperjblock) * blocklen;
2376 1.79 jdolecek len += howmany(wl->wl_dealloccnt, wl->wl_brperjblock) * blocklen;
2377 1.2 simonb len += wapbl_transaction_inodes_len(wl);
2378 1.2 simonb
2379 1.2 simonb return len;
2380 1.2 simonb }
2381 1.2 simonb
2382 1.2 simonb /*
2383 1.71 riastrad * wapbl_cache_sync(wl, msg)
2384 1.71 riastrad *
2385 1.71 riastrad * Issue DIOCCACHESYNC to wl->wl_devvp.
2386 1.71 riastrad *
2387 1.71 riastrad * If sysctl(vfs.wapbl.verbose_commit) >= 2, print a message
2388 1.71 riastrad * including msg about the duration of the cache sync.
2389 1.48 yamt */
2390 1.48 yamt static int
2391 1.48 yamt wapbl_cache_sync(struct wapbl *wl, const char *msg)
2392 1.48 yamt {
2393 1.48 yamt const bool verbose = wapbl_verbose_commit >= 2;
2394 1.48 yamt struct bintime start_time;
2395 1.48 yamt int force = 1;
2396 1.48 yamt int error;
2397 1.48 yamt
2398 1.101 jdolecek /* Skip full cache sync if disabled */
2399 1.101 jdolecek if (!wapbl_flush_disk_cache) {
2400 1.48 yamt return 0;
2401 1.48 yamt }
2402 1.48 yamt if (verbose) {
2403 1.48 yamt bintime(&start_time);
2404 1.48 yamt }
2405 1.48 yamt error = VOP_IOCTL(wl->wl_devvp, DIOCCACHESYNC, &force,
2406 1.48 yamt FWRITE, FSCRED);
2407 1.48 yamt if (error) {
2408 1.48 yamt WAPBL_PRINTF(WAPBL_PRINT_ERROR,
2409 1.76 riastrad ("wapbl_cache_sync: DIOCCACHESYNC on dev 0x%jx "
2410 1.76 riastrad "returned %d\n", (uintmax_t)wl->wl_devvp->v_rdev, error));
2411 1.48 yamt }
2412 1.48 yamt if (verbose) {
2413 1.48 yamt struct bintime d;
2414 1.48 yamt struct timespec ts;
2415 1.48 yamt
2416 1.48 yamt bintime(&d);
2417 1.48 yamt bintime_sub(&d, &start_time);
2418 1.48 yamt bintime2timespec(&d, &ts);
2419 1.48 yamt printf("wapbl_cache_sync: %s: dev 0x%jx %ju.%09lu\n",
2420 1.48 yamt msg, (uintmax_t)wl->wl_devvp->v_rdev,
2421 1.48 yamt (uintmax_t)ts.tv_sec, ts.tv_nsec);
2422 1.48 yamt }
2423 1.87 jdolecek
2424 1.87 jdolecek wl->wl_ev_cacheflush.ev_count++;
2425 1.87 jdolecek
2426 1.48 yamt return error;
2427 1.48 yamt }
2428 1.48 yamt
2429 1.48 yamt /*
2430 1.71 riastrad * wapbl_write_commit(wl, head, tail)
2431 1.71 riastrad *
2432 1.71 riastrad * Issue a disk cache sync to wait for all pending writes to the
2433 1.71 riastrad * log to complete, and then synchronously commit the current
2434 1.71 riastrad * circular queue head and tail to the log, in the next of two
2435 1.71 riastrad * locations for commit headers on disk.
2436 1.2 simonb *
2437 1.71 riastrad * Increment the generation number. If the generation number
2438 1.71 riastrad * rolls over to zero, then a subsequent commit would appear to
2439 1.71 riastrad * have an older generation than this one -- in that case, issue a
2440 1.71 riastrad * duplicate commit to avoid this.
2441 1.71 riastrad *
2442 1.71 riastrad * => Caller must have exclusive access to wl, either by holding
2443 1.71 riastrad * wl->wl_rwlock for writer or by being wapbl_start before anyone
2444 1.71 riastrad * else has seen wl.
2445 1.2 simonb */
2446 1.2 simonb static int
2447 1.2 simonb wapbl_write_commit(struct wapbl *wl, off_t head, off_t tail)
2448 1.2 simonb {
2449 1.2 simonb struct wapbl_wc_header *wc = wl->wl_wc_header;
2450 1.2 simonb struct timespec ts;
2451 1.2 simonb int error;
2452 1.34 mlelstv daddr_t pbn;
2453 1.2 simonb
2454 1.95 jdolecek error = wapbl_buffered_flush(wl, true);
2455 1.54 hannken if (error)
2456 1.54 hannken return error;
2457 1.49 yamt /*
2458 1.101 jdolecek * Flush disk cache to ensure that blocks we've written are actually
2459 1.49 yamt * written to the stable storage before the commit header.
2460 1.101 jdolecek * This flushes to disk not only journal blocks, but also all
2461 1.101 jdolecek * metadata blocks, written asynchronously since previous commit.
2462 1.49 yamt *
2463 1.49 yamt * XXX Calc checksum here, instead we do this for now
2464 1.49 yamt */
2465 1.48 yamt wapbl_cache_sync(wl, "1");
2466 1.2 simonb
2467 1.2 simonb wc->wc_head = head;
2468 1.2 simonb wc->wc_tail = tail;
2469 1.2 simonb wc->wc_checksum = 0;
2470 1.2 simonb wc->wc_version = 1;
2471 1.2 simonb getnanotime(&ts);
2472 1.17 yamt wc->wc_time = ts.tv_sec;
2473 1.2 simonb wc->wc_timensec = ts.tv_nsec;
2474 1.2 simonb
2475 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_WRITE,
2476 1.2 simonb ("wapbl_write_commit: head = %"PRIdMAX "tail = %"PRIdMAX"\n",
2477 1.2 simonb (intmax_t)head, (intmax_t)tail));
2478 1.2 simonb
2479 1.2 simonb /*
2480 1.49 yamt * write the commit header.
2481 1.49 yamt *
2482 1.2 simonb * XXX if generation will rollover, then first zero
2483 1.2 simonb * over second commit header before trying to write both headers.
2484 1.2 simonb */
2485 1.2 simonb
2486 1.34 mlelstv pbn = wl->wl_logpbn + (wc->wc_generation % 2);
2487 1.34 mlelstv #ifdef _KERNEL
2488 1.34 mlelstv pbn = btodb(pbn << wc->wc_log_dev_bshift);
2489 1.34 mlelstv #endif
2490 1.101 jdolecek error = wapbl_buffered_write(wc, wc->wc_len, wl, pbn, WAPBL_JFLAGS(wl));
2491 1.54 hannken if (error)
2492 1.54 hannken return error;
2493 1.95 jdolecek error = wapbl_buffered_flush(wl, true);
2494 1.2 simonb if (error)
2495 1.2 simonb return error;
2496 1.2 simonb
2497 1.49 yamt /*
2498 1.101 jdolecek * Flush disk cache to ensure that the commit header is actually
2499 1.101 jdolecek * written before meta data blocks. Commit block is written using
2500 1.101 jdolecek * FUA when enabled, in that case this flush is not needed.
2501 1.49 yamt */
2502 1.101 jdolecek if (!WAPBL_USE_FUA(wl))
2503 1.101 jdolecek wapbl_cache_sync(wl, "2");
2504 1.2 simonb
2505 1.2 simonb /*
2506 1.2 simonb * If the generation number was zero, write it out a second time.
2507 1.2 simonb * This handles initialization and generation number rollover
2508 1.2 simonb */
2509 1.2 simonb if (wc->wc_generation++ == 0) {
2510 1.2 simonb error = wapbl_write_commit(wl, head, tail);
2511 1.2 simonb /*
2512 1.2 simonb * This panic should be able to be removed if we do the
2513 1.2 simonb * zero'ing mentioned above, and we are certain to roll
2514 1.2 simonb * back generation number on failure.
2515 1.2 simonb */
2516 1.2 simonb if (error)
2517 1.2 simonb panic("wapbl_write_commit: error writing duplicate "
2518 1.66 riastrad "log header: %d", error);
2519 1.2 simonb }
2520 1.87 jdolecek
2521 1.87 jdolecek wl->wl_ev_commit.ev_count++;
2522 1.87 jdolecek
2523 1.2 simonb return 0;
2524 1.2 simonb }
2525 1.2 simonb
2526 1.71 riastrad /*
2527 1.71 riastrad * wapbl_write_blocks(wl, offp)
2528 1.71 riastrad *
2529 1.71 riastrad * Write all pending physical blocks in the current transaction
2530 1.71 riastrad * from wapbl_add_buf to the log on disk, adding to the circular
2531 1.71 riastrad * queue head at byte offset *offp, and returning the new head's
2532 1.71 riastrad * byte offset in *offp.
2533 1.71 riastrad */
2534 1.2 simonb static int
2535 1.2 simonb wapbl_write_blocks(struct wapbl *wl, off_t *offp)
2536 1.2 simonb {
2537 1.2 simonb struct wapbl_wc_blocklist *wc =
2538 1.2 simonb (struct wapbl_wc_blocklist *)wl->wl_wc_scratch;
2539 1.2 simonb int blocklen = 1<<wl->wl_log_dev_bshift;
2540 1.2 simonb struct buf *bp;
2541 1.2 simonb off_t off = *offp;
2542 1.2 simonb int error;
2543 1.7 joerg size_t padding;
2544 1.2 simonb
2545 1.2 simonb KASSERT(rw_write_held(&wl->wl_rwlock));
2546 1.2 simonb
2547 1.94 jdolecek bp = TAILQ_FIRST(&wl->wl_bufs);
2548 1.2 simonb
2549 1.2 simonb while (bp) {
2550 1.2 simonb int cnt;
2551 1.2 simonb struct buf *obp = bp;
2552 1.2 simonb
2553 1.2 simonb KASSERT(bp->b_flags & B_LOCKED);
2554 1.2 simonb
2555 1.2 simonb wc->wc_type = WAPBL_WC_BLOCKS;
2556 1.2 simonb wc->wc_len = blocklen;
2557 1.2 simonb wc->wc_blkcount = 0;
2558 1.79 jdolecek while (bp && (wc->wc_blkcount < wl->wl_brperjblock)) {
2559 1.2 simonb /*
2560 1.2 simonb * Make sure all the physical block numbers are up to
2561 1.2 simonb * date. If this is not always true on a given
2562 1.2 simonb * filesystem, then VOP_BMAP must be called. We
2563 1.2 simonb * could call VOP_BMAP here, or else in the filesystem
2564 1.2 simonb * specific flush callback, although neither of those
2565 1.2 simonb * solutions allow us to take the vnode lock. If a
2566 1.2 simonb * filesystem requires that we must take the vnode lock
2567 1.2 simonb * to call VOP_BMAP, then we can probably do it in
2568 1.2 simonb * bwrite when the vnode lock should already be held
2569 1.2 simonb * by the invoking code.
2570 1.2 simonb */
2571 1.2 simonb KASSERT((bp->b_vp->v_type == VBLK) ||
2572 1.2 simonb (bp->b_blkno != bp->b_lblkno));
2573 1.2 simonb KASSERT(bp->b_blkno > 0);
2574 1.2 simonb
2575 1.2 simonb wc->wc_blocks[wc->wc_blkcount].wc_daddr = bp->b_blkno;
2576 1.2 simonb wc->wc_blocks[wc->wc_blkcount].wc_dlen = bp->b_bcount;
2577 1.2 simonb wc->wc_len += bp->b_bcount;
2578 1.2 simonb wc->wc_blkcount++;
2579 1.94 jdolecek bp = TAILQ_NEXT(bp, b_wapbllist);
2580 1.2 simonb }
2581 1.7 joerg if (wc->wc_len % blocklen != 0) {
2582 1.7 joerg padding = blocklen - wc->wc_len % blocklen;
2583 1.7 joerg wc->wc_len += padding;
2584 1.7 joerg } else {
2585 1.7 joerg padding = 0;
2586 1.7 joerg }
2587 1.7 joerg
2588 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_WRITE,
2589 1.7 joerg ("wapbl_write_blocks: len = %u (padding %zu) off = %"PRIdMAX"\n",
2590 1.7 joerg wc->wc_len, padding, (intmax_t)off));
2591 1.2 simonb
2592 1.2 simonb error = wapbl_circ_write(wl, wc, blocklen, &off);
2593 1.2 simonb if (error)
2594 1.2 simonb return error;
2595 1.2 simonb bp = obp;
2596 1.2 simonb cnt = 0;
2597 1.79 jdolecek while (bp && (cnt++ < wl->wl_brperjblock)) {
2598 1.2 simonb error = wapbl_circ_write(wl, bp->b_data,
2599 1.2 simonb bp->b_bcount, &off);
2600 1.2 simonb if (error)
2601 1.2 simonb return error;
2602 1.94 jdolecek bp = TAILQ_NEXT(bp, b_wapbllist);
2603 1.2 simonb }
2604 1.7 joerg if (padding) {
2605 1.7 joerg void *zero;
2606 1.91 riastrad
2607 1.51 para zero = wapbl_alloc(padding);
2608 1.7 joerg memset(zero, 0, padding);
2609 1.7 joerg error = wapbl_circ_write(wl, zero, padding, &off);
2610 1.18 yamt wapbl_free(zero, padding);
2611 1.7 joerg if (error)
2612 1.7 joerg return error;
2613 1.7 joerg }
2614 1.2 simonb }
2615 1.2 simonb *offp = off;
2616 1.2 simonb return 0;
2617 1.2 simonb }
2618 1.2 simonb
2619 1.71 riastrad /*
2620 1.71 riastrad * wapbl_write_revocations(wl, offp)
2621 1.71 riastrad *
2622 1.71 riastrad * Write all pending deallocations in the current transaction from
2623 1.71 riastrad * wapbl_register_deallocation to the log on disk, adding to the
2624 1.71 riastrad * circular queue's head at byte offset *offp, and returning the
2625 1.71 riastrad * new head's byte offset in *offp.
2626 1.71 riastrad */
2627 1.2 simonb static int
2628 1.2 simonb wapbl_write_revocations(struct wapbl *wl, off_t *offp)
2629 1.2 simonb {
2630 1.2 simonb struct wapbl_wc_blocklist *wc =
2631 1.2 simonb (struct wapbl_wc_blocklist *)wl->wl_wc_scratch;
2632 1.81 jdolecek struct wapbl_dealloc *wd, *lwd;
2633 1.2 simonb int blocklen = 1<<wl->wl_log_dev_bshift;
2634 1.2 simonb off_t off = *offp;
2635 1.2 simonb int error;
2636 1.2 simonb
2637 1.89 riastrad KASSERT(rw_write_held(&wl->wl_rwlock));
2638 1.89 riastrad
2639 1.2 simonb if (wl->wl_dealloccnt == 0)
2640 1.2 simonb return 0;
2641 1.2 simonb
2642 1.86 jdolecek while ((wd = TAILQ_FIRST(&wl->wl_dealloclist)) != NULL) {
2643 1.2 simonb wc->wc_type = WAPBL_WC_REVOCATIONS;
2644 1.2 simonb wc->wc_len = blocklen;
2645 1.2 simonb wc->wc_blkcount = 0;
2646 1.81 jdolecek while (wd && (wc->wc_blkcount < wl->wl_brperjblock)) {
2647 1.2 simonb wc->wc_blocks[wc->wc_blkcount].wc_daddr =
2648 1.81 jdolecek wd->wd_blkno;
2649 1.2 simonb wc->wc_blocks[wc->wc_blkcount].wc_dlen =
2650 1.81 jdolecek wd->wd_len;
2651 1.2 simonb wc->wc_blkcount++;
2652 1.81 jdolecek
2653 1.86 jdolecek wd = TAILQ_NEXT(wd, wd_entries);
2654 1.2 simonb }
2655 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_WRITE,
2656 1.2 simonb ("wapbl_write_revocations: len = %u off = %"PRIdMAX"\n",
2657 1.2 simonb wc->wc_len, (intmax_t)off));
2658 1.2 simonb error = wapbl_circ_write(wl, wc, blocklen, &off);
2659 1.2 simonb if (error)
2660 1.2 simonb return error;
2661 1.81 jdolecek
2662 1.81 jdolecek /* free all successfully written deallocs */
2663 1.81 jdolecek lwd = wd;
2664 1.86 jdolecek while ((wd = TAILQ_FIRST(&wl->wl_dealloclist)) != NULL) {
2665 1.83 jdolecek if (wd == lwd)
2666 1.83 jdolecek break;
2667 1.86 jdolecek wapbl_deallocation_free(wl, wd, true);
2668 1.81 jdolecek }
2669 1.2 simonb }
2670 1.2 simonb *offp = off;
2671 1.2 simonb return 0;
2672 1.2 simonb }
2673 1.2 simonb
2674 1.71 riastrad /*
2675 1.71 riastrad * wapbl_write_inodes(wl, offp)
2676 1.71 riastrad *
2677 1.71 riastrad * Write all pending inode allocations in the current transaction
2678 1.71 riastrad * from wapbl_register_inode to the log on disk, adding to the
2679 1.71 riastrad * circular queue's head at byte offset *offp and returning the
2680 1.71 riastrad * new head's byte offset in *offp.
2681 1.71 riastrad */
2682 1.2 simonb static int
2683 1.2 simonb wapbl_write_inodes(struct wapbl *wl, off_t *offp)
2684 1.2 simonb {
2685 1.2 simonb struct wapbl_wc_inodelist *wc =
2686 1.2 simonb (struct wapbl_wc_inodelist *)wl->wl_wc_scratch;
2687 1.2 simonb int i;
2688 1.14 joerg int blocklen = 1 << wl->wl_log_dev_bshift;
2689 1.2 simonb off_t off = *offp;
2690 1.2 simonb int error;
2691 1.2 simonb
2692 1.2 simonb struct wapbl_ino_head *wih;
2693 1.2 simonb struct wapbl_ino *wi;
2694 1.2 simonb int iph;
2695 1.2 simonb
2696 1.2 simonb iph = (blocklen - offsetof(struct wapbl_wc_inodelist, wc_inodes)) /
2697 1.2 simonb sizeof(((struct wapbl_wc_inodelist *)0)->wc_inodes[0]);
2698 1.2 simonb
2699 1.2 simonb i = 0;
2700 1.2 simonb wih = &wl->wl_inohash[0];
2701 1.2 simonb wi = 0;
2702 1.2 simonb do {
2703 1.2 simonb wc->wc_type = WAPBL_WC_INODES;
2704 1.2 simonb wc->wc_len = blocklen;
2705 1.2 simonb wc->wc_inocnt = 0;
2706 1.2 simonb wc->wc_clear = (i == 0);
2707 1.2 simonb while ((i < wl->wl_inohashcnt) && (wc->wc_inocnt < iph)) {
2708 1.2 simonb while (!wi) {
2709 1.2 simonb KASSERT((wih - &wl->wl_inohash[0])
2710 1.2 simonb <= wl->wl_inohashmask);
2711 1.2 simonb wi = LIST_FIRST(wih++);
2712 1.2 simonb }
2713 1.2 simonb wc->wc_inodes[wc->wc_inocnt].wc_inumber = wi->wi_ino;
2714 1.2 simonb wc->wc_inodes[wc->wc_inocnt].wc_imode = wi->wi_mode;
2715 1.2 simonb wc->wc_inocnt++;
2716 1.2 simonb i++;
2717 1.2 simonb wi = LIST_NEXT(wi, wi_hash);
2718 1.2 simonb }
2719 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_WRITE,
2720 1.2 simonb ("wapbl_write_inodes: len = %u off = %"PRIdMAX"\n",
2721 1.2 simonb wc->wc_len, (intmax_t)off));
2722 1.2 simonb error = wapbl_circ_write(wl, wc, blocklen, &off);
2723 1.2 simonb if (error)
2724 1.2 simonb return error;
2725 1.2 simonb } while (i < wl->wl_inohashcnt);
2726 1.91 riastrad
2727 1.2 simonb *offp = off;
2728 1.2 simonb return 0;
2729 1.2 simonb }
2730 1.2 simonb
2731 1.2 simonb #endif /* _KERNEL */
2732 1.2 simonb
2733 1.2 simonb /****************************************************************/
2734 1.2 simonb
2735 1.2 simonb struct wapbl_blk {
2736 1.2 simonb LIST_ENTRY(wapbl_blk) wb_hash;
2737 1.2 simonb daddr_t wb_blk;
2738 1.2 simonb off_t wb_off; /* Offset of this block in the log */
2739 1.2 simonb };
2740 1.2 simonb #define WAPBL_BLKPOOL_MIN 83
2741 1.2 simonb
2742 1.2 simonb static void
2743 1.2 simonb wapbl_blkhash_init(struct wapbl_replay *wr, u_int size)
2744 1.2 simonb {
2745 1.2 simonb if (size < WAPBL_BLKPOOL_MIN)
2746 1.2 simonb size = WAPBL_BLKPOOL_MIN;
2747 1.2 simonb KASSERT(wr->wr_blkhash == 0);
2748 1.2 simonb #ifdef _KERNEL
2749 1.2 simonb wr->wr_blkhash = hashinit(size, HASH_LIST, true, &wr->wr_blkhashmask);
2750 1.2 simonb #else /* ! _KERNEL */
2751 1.2 simonb /* Manually implement hashinit */
2752 1.2 simonb {
2753 1.25 lukem unsigned long i, hashsize;
2754 1.2 simonb for (hashsize = 1; hashsize < size; hashsize <<= 1)
2755 1.2 simonb continue;
2756 1.51 para wr->wr_blkhash = wapbl_alloc(hashsize * sizeof(*wr->wr_blkhash));
2757 1.37 drochner for (i = 0; i < hashsize; i++)
2758 1.2 simonb LIST_INIT(&wr->wr_blkhash[i]);
2759 1.2 simonb wr->wr_blkhashmask = hashsize - 1;
2760 1.2 simonb }
2761 1.2 simonb #endif /* ! _KERNEL */
2762 1.2 simonb }
2763 1.2 simonb
2764 1.2 simonb static void
2765 1.2 simonb wapbl_blkhash_free(struct wapbl_replay *wr)
2766 1.2 simonb {
2767 1.2 simonb KASSERT(wr->wr_blkhashcnt == 0);
2768 1.2 simonb #ifdef _KERNEL
2769 1.2 simonb hashdone(wr->wr_blkhash, HASH_LIST, wr->wr_blkhashmask);
2770 1.2 simonb #else /* ! _KERNEL */
2771 1.18 yamt wapbl_free(wr->wr_blkhash,
2772 1.18 yamt (wr->wr_blkhashmask + 1) * sizeof(*wr->wr_blkhash));
2773 1.2 simonb #endif /* ! _KERNEL */
2774 1.2 simonb }
2775 1.2 simonb
2776 1.2 simonb static struct wapbl_blk *
2777 1.2 simonb wapbl_blkhash_get(struct wapbl_replay *wr, daddr_t blk)
2778 1.2 simonb {
2779 1.2 simonb struct wapbl_blk_head *wbh;
2780 1.2 simonb struct wapbl_blk *wb;
2781 1.2 simonb wbh = &wr->wr_blkhash[blk & wr->wr_blkhashmask];
2782 1.2 simonb LIST_FOREACH(wb, wbh, wb_hash) {
2783 1.2 simonb if (blk == wb->wb_blk)
2784 1.2 simonb return wb;
2785 1.2 simonb }
2786 1.2 simonb return 0;
2787 1.2 simonb }
2788 1.2 simonb
2789 1.2 simonb static void
2790 1.2 simonb wapbl_blkhash_ins(struct wapbl_replay *wr, daddr_t blk, off_t off)
2791 1.2 simonb {
2792 1.2 simonb struct wapbl_blk_head *wbh;
2793 1.2 simonb struct wapbl_blk *wb;
2794 1.2 simonb wb = wapbl_blkhash_get(wr, blk);
2795 1.2 simonb if (wb) {
2796 1.2 simonb KASSERT(wb->wb_blk == blk);
2797 1.2 simonb wb->wb_off = off;
2798 1.2 simonb } else {
2799 1.51 para wb = wapbl_alloc(sizeof(*wb));
2800 1.2 simonb wb->wb_blk = blk;
2801 1.2 simonb wb->wb_off = off;
2802 1.2 simonb wbh = &wr->wr_blkhash[blk & wr->wr_blkhashmask];
2803 1.2 simonb LIST_INSERT_HEAD(wbh, wb, wb_hash);
2804 1.2 simonb wr->wr_blkhashcnt++;
2805 1.2 simonb }
2806 1.2 simonb }
2807 1.2 simonb
2808 1.2 simonb static void
2809 1.2 simonb wapbl_blkhash_rem(struct wapbl_replay *wr, daddr_t blk)
2810 1.2 simonb {
2811 1.2 simonb struct wapbl_blk *wb = wapbl_blkhash_get(wr, blk);
2812 1.2 simonb if (wb) {
2813 1.2 simonb KASSERT(wr->wr_blkhashcnt > 0);
2814 1.2 simonb wr->wr_blkhashcnt--;
2815 1.2 simonb LIST_REMOVE(wb, wb_hash);
2816 1.18 yamt wapbl_free(wb, sizeof(*wb));
2817 1.2 simonb }
2818 1.2 simonb }
2819 1.2 simonb
2820 1.2 simonb static void
2821 1.2 simonb wapbl_blkhash_clear(struct wapbl_replay *wr)
2822 1.2 simonb {
2823 1.25 lukem unsigned long i;
2824 1.2 simonb for (i = 0; i <= wr->wr_blkhashmask; i++) {
2825 1.2 simonb struct wapbl_blk *wb;
2826 1.2 simonb
2827 1.2 simonb while ((wb = LIST_FIRST(&wr->wr_blkhash[i]))) {
2828 1.2 simonb KASSERT(wr->wr_blkhashcnt > 0);
2829 1.2 simonb wr->wr_blkhashcnt--;
2830 1.2 simonb LIST_REMOVE(wb, wb_hash);
2831 1.18 yamt wapbl_free(wb, sizeof(*wb));
2832 1.2 simonb }
2833 1.2 simonb }
2834 1.2 simonb KASSERT(wr->wr_blkhashcnt == 0);
2835 1.2 simonb }
2836 1.2 simonb
2837 1.2 simonb /****************************************************************/
2838 1.2 simonb
2839 1.71 riastrad /*
2840 1.71 riastrad * wapbl_circ_read(wr, data, len, offp)
2841 1.71 riastrad *
2842 1.71 riastrad * Read len bytes into data from the circular queue of wr,
2843 1.71 riastrad * starting at the linear byte offset *offp, and returning the new
2844 1.71 riastrad * linear byte offset in *offp.
2845 1.71 riastrad *
2846 1.71 riastrad * If the starting linear byte offset precedes wr->wr_circ_off,
2847 1.71 riastrad * the read instead begins at wr->wr_circ_off. XXX WTF? This
2848 1.71 riastrad * should be a KASSERT, not a conditional.
2849 1.71 riastrad */
2850 1.2 simonb static int
2851 1.2 simonb wapbl_circ_read(struct wapbl_replay *wr, void *data, size_t len, off_t *offp)
2852 1.2 simonb {
2853 1.2 simonb size_t slen;
2854 1.2 simonb off_t off = *offp;
2855 1.2 simonb int error;
2856 1.34 mlelstv daddr_t pbn;
2857 1.2 simonb
2858 1.14 joerg KASSERT(((len >> wr->wr_log_dev_bshift) <<
2859 1.14 joerg wr->wr_log_dev_bshift) == len);
2860 1.34 mlelstv
2861 1.14 joerg if (off < wr->wr_circ_off)
2862 1.14 joerg off = wr->wr_circ_off;
2863 1.14 joerg slen = wr->wr_circ_off + wr->wr_circ_size - off;
2864 1.2 simonb if (slen < len) {
2865 1.34 mlelstv pbn = wr->wr_logpbn + (off >> wr->wr_log_dev_bshift);
2866 1.34 mlelstv #ifdef _KERNEL
2867 1.34 mlelstv pbn = btodb(pbn << wr->wr_log_dev_bshift);
2868 1.34 mlelstv #endif
2869 1.34 mlelstv error = wapbl_read(data, slen, wr->wr_devvp, pbn);
2870 1.2 simonb if (error)
2871 1.2 simonb return error;
2872 1.2 simonb data = (uint8_t *)data + slen;
2873 1.2 simonb len -= slen;
2874 1.14 joerg off = wr->wr_circ_off;
2875 1.2 simonb }
2876 1.34 mlelstv pbn = wr->wr_logpbn + (off >> wr->wr_log_dev_bshift);
2877 1.34 mlelstv #ifdef _KERNEL
2878 1.34 mlelstv pbn = btodb(pbn << wr->wr_log_dev_bshift);
2879 1.34 mlelstv #endif
2880 1.34 mlelstv error = wapbl_read(data, len, wr->wr_devvp, pbn);
2881 1.2 simonb if (error)
2882 1.2 simonb return error;
2883 1.2 simonb off += len;
2884 1.14 joerg if (off >= wr->wr_circ_off + wr->wr_circ_size)
2885 1.14 joerg off = wr->wr_circ_off;
2886 1.2 simonb *offp = off;
2887 1.2 simonb return 0;
2888 1.2 simonb }
2889 1.2 simonb
2890 1.71 riastrad /*
2891 1.71 riastrad * wapbl_circ_advance(wr, len, offp)
2892 1.71 riastrad *
2893 1.71 riastrad * Compute the linear byte offset of the circular queue of wr that
2894 1.71 riastrad * is len bytes past *offp, and store it in *offp.
2895 1.71 riastrad *
2896 1.71 riastrad * This is as if wapbl_circ_read, but without actually reading
2897 1.71 riastrad * anything.
2898 1.71 riastrad *
2899 1.71 riastrad * If the starting linear byte offset precedes wr->wr_circ_off, it
2900 1.71 riastrad * is taken to be wr->wr_circ_off instead. XXX WTF? This should
2901 1.71 riastrad * be a KASSERT, not a conditional.
2902 1.71 riastrad */
2903 1.2 simonb static void
2904 1.2 simonb wapbl_circ_advance(struct wapbl_replay *wr, size_t len, off_t *offp)
2905 1.2 simonb {
2906 1.2 simonb size_t slen;
2907 1.2 simonb off_t off = *offp;
2908 1.2 simonb
2909 1.14 joerg KASSERT(((len >> wr->wr_log_dev_bshift) <<
2910 1.14 joerg wr->wr_log_dev_bshift) == len);
2911 1.2 simonb
2912 1.14 joerg if (off < wr->wr_circ_off)
2913 1.14 joerg off = wr->wr_circ_off;
2914 1.14 joerg slen = wr->wr_circ_off + wr->wr_circ_size - off;
2915 1.2 simonb if (slen < len) {
2916 1.2 simonb len -= slen;
2917 1.14 joerg off = wr->wr_circ_off;
2918 1.2 simonb }
2919 1.2 simonb off += len;
2920 1.14 joerg if (off >= wr->wr_circ_off + wr->wr_circ_size)
2921 1.14 joerg off = wr->wr_circ_off;
2922 1.2 simonb *offp = off;
2923 1.2 simonb }
2924 1.2 simonb
2925 1.2 simonb /****************************************************************/
2926 1.2 simonb
2927 1.2 simonb int
2928 1.2 simonb wapbl_replay_start(struct wapbl_replay **wrp, struct vnode *vp,
2929 1.2 simonb daddr_t off, size_t count, size_t blksize)
2930 1.2 simonb {
2931 1.2 simonb struct wapbl_replay *wr;
2932 1.2 simonb int error;
2933 1.2 simonb struct vnode *devvp;
2934 1.2 simonb daddr_t logpbn;
2935 1.2 simonb uint8_t *scratch;
2936 1.2 simonb struct wapbl_wc_header *wch;
2937 1.2 simonb struct wapbl_wc_header *wch2;
2938 1.2 simonb /* Use this until we read the actual log header */
2939 1.31 mlelstv int log_dev_bshift = ilog2(blksize);
2940 1.2 simonb size_t used;
2941 1.34 mlelstv daddr_t pbn;
2942 1.2 simonb
2943 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_REPLAY,
2944 1.2 simonb ("wapbl_replay_start: vp=%p off=%"PRId64 " count=%zu blksize=%zu\n",
2945 1.2 simonb vp, off, count, blksize));
2946 1.2 simonb
2947 1.2 simonb if (off < 0)
2948 1.2 simonb return EINVAL;
2949 1.2 simonb
2950 1.2 simonb if (blksize < DEV_BSIZE)
2951 1.2 simonb return EINVAL;
2952 1.2 simonb if (blksize % DEV_BSIZE)
2953 1.2 simonb return EINVAL;
2954 1.2 simonb
2955 1.2 simonb #ifdef _KERNEL
2956 1.2 simonb #if 0
2957 1.2 simonb /* XXX vp->v_size isn't reliably set for VBLK devices,
2958 1.2 simonb * especially root. However, we might still want to verify
2959 1.2 simonb * that the full load is readable */
2960 1.2 simonb if ((off + count) * blksize > vp->v_size)
2961 1.2 simonb return EINVAL;
2962 1.2 simonb #endif
2963 1.2 simonb if ((error = VOP_BMAP(vp, off, &devvp, &logpbn, 0)) != 0) {
2964 1.2 simonb return error;
2965 1.2 simonb }
2966 1.2 simonb #else /* ! _KERNEL */
2967 1.2 simonb devvp = vp;
2968 1.2 simonb logpbn = off;
2969 1.2 simonb #endif /* ! _KERNEL */
2970 1.2 simonb
2971 1.51 para scratch = wapbl_alloc(MAXBSIZE);
2972 1.2 simonb
2973 1.34 mlelstv pbn = logpbn;
2974 1.34 mlelstv #ifdef _KERNEL
2975 1.34 mlelstv pbn = btodb(pbn << log_dev_bshift);
2976 1.34 mlelstv #endif
2977 1.34 mlelstv error = wapbl_read(scratch, 2<<log_dev_bshift, devvp, pbn);
2978 1.2 simonb if (error)
2979 1.2 simonb goto errout;
2980 1.2 simonb
2981 1.2 simonb wch = (struct wapbl_wc_header *)scratch;
2982 1.2 simonb wch2 =
2983 1.2 simonb (struct wapbl_wc_header *)(scratch + (1<<log_dev_bshift));
2984 1.2 simonb /* XXX verify checksums and magic numbers */
2985 1.2 simonb if (wch->wc_type != WAPBL_WC_HEADER) {
2986 1.2 simonb printf("Unrecognized wapbl magic: 0x%08x\n", wch->wc_type);
2987 1.2 simonb error = EFTYPE;
2988 1.2 simonb goto errout;
2989 1.2 simonb }
2990 1.2 simonb
2991 1.2 simonb if (wch2->wc_generation > wch->wc_generation)
2992 1.2 simonb wch = wch2;
2993 1.2 simonb
2994 1.2 simonb wr = wapbl_calloc(1, sizeof(*wr));
2995 1.2 simonb
2996 1.2 simonb wr->wr_logvp = vp;
2997 1.2 simonb wr->wr_devvp = devvp;
2998 1.2 simonb wr->wr_logpbn = logpbn;
2999 1.2 simonb
3000 1.2 simonb wr->wr_scratch = scratch;
3001 1.2 simonb
3002 1.14 joerg wr->wr_log_dev_bshift = wch->wc_log_dev_bshift;
3003 1.14 joerg wr->wr_fs_dev_bshift = wch->wc_fs_dev_bshift;
3004 1.14 joerg wr->wr_circ_off = wch->wc_circ_off;
3005 1.14 joerg wr->wr_circ_size = wch->wc_circ_size;
3006 1.14 joerg wr->wr_generation = wch->wc_generation;
3007 1.2 simonb
3008 1.2 simonb used = wapbl_space_used(wch->wc_circ_size, wch->wc_head, wch->wc_tail);
3009 1.2 simonb
3010 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_REPLAY,
3011 1.2 simonb ("wapbl_replay: head=%"PRId64" tail=%"PRId64" off=%"PRId64
3012 1.2 simonb " len=%"PRId64" used=%zu\n",
3013 1.2 simonb wch->wc_head, wch->wc_tail, wch->wc_circ_off,
3014 1.2 simonb wch->wc_circ_size, used));
3015 1.2 simonb
3016 1.2 simonb wapbl_blkhash_init(wr, (used >> wch->wc_fs_dev_bshift));
3017 1.11 joerg
3018 1.14 joerg error = wapbl_replay_process(wr, wch->wc_head, wch->wc_tail);
3019 1.2 simonb if (error) {
3020 1.2 simonb wapbl_replay_stop(wr);
3021 1.2 simonb wapbl_replay_free(wr);
3022 1.2 simonb return error;
3023 1.2 simonb }
3024 1.2 simonb
3025 1.2 simonb *wrp = wr;
3026 1.2 simonb return 0;
3027 1.2 simonb
3028 1.2 simonb errout:
3029 1.18 yamt wapbl_free(scratch, MAXBSIZE);
3030 1.2 simonb return error;
3031 1.2 simonb }
3032 1.2 simonb
3033 1.2 simonb void
3034 1.2 simonb wapbl_replay_stop(struct wapbl_replay *wr)
3035 1.2 simonb {
3036 1.2 simonb
3037 1.4 joerg if (!wapbl_replay_isopen(wr))
3038 1.4 joerg return;
3039 1.4 joerg
3040 1.2 simonb WAPBL_PRINTF(WAPBL_PRINT_REPLAY, ("wapbl_replay_stop called\n"));
3041 1.2 simonb
3042 1.18 yamt wapbl_free(wr->wr_scratch, MAXBSIZE);
3043 1.18 yamt wr->wr_scratch = NULL;
3044 1.2 simonb
3045 1.18 yamt wr->wr_logvp = NULL;
3046 1.2 simonb
3047 1.2 simonb wapbl_blkhash_clear(wr);
3048 1.2 simonb wapbl_blkhash_free(wr);
3049 1.2 simonb }
3050 1.2 simonb
3051 1.2 simonb void
3052 1.2 simonb wapbl_replay_free(struct wapbl_replay *wr)
3053 1.2 simonb {
3054 1.2 simonb
3055 1.2 simonb KDASSERT(!wapbl_replay_isopen(wr));
3056 1.2 simonb
3057 1.2 simonb if (wr->wr_inodes)
3058 1.18 yamt wapbl_free(wr->wr_inodes,
3059 1.18 yamt wr->wr_inodescnt * sizeof(wr->wr_inodes[0]));
3060 1.18 yamt wapbl_free(wr, sizeof(*wr));
3061 1.2 simonb }
3062 1.2 simonb
3063 1.4 joerg #ifdef _KERNEL
3064 1.2 simonb int
3065 1.2 simonb wapbl_replay_isopen1(struct wapbl_replay *wr)
3066 1.2 simonb {
3067 1.2 simonb
3068 1.2 simonb return wapbl_replay_isopen(wr);
3069 1.2 simonb }
3070 1.4 joerg #endif
3071 1.2 simonb
3072 1.62 mlelstv /*
3073 1.62 mlelstv * calculate the disk address for the i'th block in the wc_blockblist
3074 1.62 mlelstv * offset by j blocks of size blen.
3075 1.62 mlelstv *
3076 1.62 mlelstv * wc_daddr is always a kernel disk address in DEV_BSIZE units that
3077 1.62 mlelstv * was written to the journal.
3078 1.62 mlelstv *
3079 1.62 mlelstv * The kernel needs that address plus the offset in DEV_BSIZE units.
3080 1.62 mlelstv *
3081 1.62 mlelstv * Userland needs that address plus the offset in blen units.
3082 1.62 mlelstv *
3083 1.62 mlelstv */
3084 1.62 mlelstv static daddr_t
3085 1.62 mlelstv wapbl_block_daddr(struct wapbl_wc_blocklist *wc, int i, int j, int blen)
3086 1.62 mlelstv {
3087 1.62 mlelstv daddr_t pbn;
3088 1.62 mlelstv
3089 1.62 mlelstv #ifdef _KERNEL
3090 1.62 mlelstv pbn = wc->wc_blocks[i].wc_daddr + btodb(j * blen);
3091 1.62 mlelstv #else
3092 1.62 mlelstv pbn = dbtob(wc->wc_blocks[i].wc_daddr) / blen + j;
3093 1.62 mlelstv #endif
3094 1.62 mlelstv
3095 1.62 mlelstv return pbn;
3096 1.62 mlelstv }
3097 1.62 mlelstv
3098 1.10 joerg static void
3099 1.10 joerg wapbl_replay_process_blocks(struct wapbl_replay *wr, off_t *offp)
3100 1.10 joerg {
3101 1.10 joerg struct wapbl_wc_blocklist *wc =
3102 1.10 joerg (struct wapbl_wc_blocklist *)wr->wr_scratch;
3103 1.14 joerg int fsblklen = 1 << wr->wr_fs_dev_bshift;
3104 1.10 joerg int i, j, n;
3105 1.10 joerg
3106 1.10 joerg for (i = 0; i < wc->wc_blkcount; i++) {
3107 1.10 joerg /*
3108 1.10 joerg * Enter each physical block into the hashtable independently.
3109 1.10 joerg */
3110 1.14 joerg n = wc->wc_blocks[i].wc_dlen >> wr->wr_fs_dev_bshift;
3111 1.10 joerg for (j = 0; j < n; j++) {
3112 1.62 mlelstv wapbl_blkhash_ins(wr, wapbl_block_daddr(wc, i, j, fsblklen),
3113 1.10 joerg *offp);
3114 1.10 joerg wapbl_circ_advance(wr, fsblklen, offp);
3115 1.10 joerg }
3116 1.10 joerg }
3117 1.10 joerg }
3118 1.10 joerg
3119 1.10 joerg static void
3120 1.10 joerg wapbl_replay_process_revocations(struct wapbl_replay *wr)
3121 1.10 joerg {
3122 1.10 joerg struct wapbl_wc_blocklist *wc =
3123 1.10 joerg (struct wapbl_wc_blocklist *)wr->wr_scratch;
3124 1.34 mlelstv int fsblklen = 1 << wr->wr_fs_dev_bshift;
3125 1.10 joerg int i, j, n;
3126 1.10 joerg
3127 1.10 joerg for (i = 0; i < wc->wc_blkcount; i++) {
3128 1.10 joerg /*
3129 1.10 joerg * Remove any blocks found from the hashtable.
3130 1.10 joerg */
3131 1.14 joerg n = wc->wc_blocks[i].wc_dlen >> wr->wr_fs_dev_bshift;
3132 1.10 joerg for (j = 0; j < n; j++)
3133 1.62 mlelstv wapbl_blkhash_rem(wr, wapbl_block_daddr(wc, i, j, fsblklen));
3134 1.10 joerg }
3135 1.10 joerg }
3136 1.10 joerg
3137 1.10 joerg static void
3138 1.10 joerg wapbl_replay_process_inodes(struct wapbl_replay *wr, off_t oldoff, off_t newoff)
3139 1.10 joerg {
3140 1.10 joerg struct wapbl_wc_inodelist *wc =
3141 1.10 joerg (struct wapbl_wc_inodelist *)wr->wr_scratch;
3142 1.18 yamt void *new_inodes;
3143 1.18 yamt const size_t oldsize = wr->wr_inodescnt * sizeof(wr->wr_inodes[0]);
3144 1.18 yamt
3145 1.18 yamt KASSERT(sizeof(wr->wr_inodes[0]) == sizeof(wc->wc_inodes[0]));
3146 1.18 yamt
3147 1.10 joerg /*
3148 1.10 joerg * Keep track of where we found this so location won't be
3149 1.10 joerg * overwritten.
3150 1.10 joerg */
3151 1.10 joerg if (wc->wc_clear) {
3152 1.10 joerg wr->wr_inodestail = oldoff;
3153 1.10 joerg wr->wr_inodescnt = 0;
3154 1.12 joerg if (wr->wr_inodes != NULL) {
3155 1.18 yamt wapbl_free(wr->wr_inodes, oldsize);
3156 1.12 joerg wr->wr_inodes = NULL;
3157 1.12 joerg }
3158 1.10 joerg }
3159 1.10 joerg wr->wr_inodeshead = newoff;
3160 1.10 joerg if (wc->wc_inocnt == 0)
3161 1.10 joerg return;
3162 1.10 joerg
3163 1.51 para new_inodes = wapbl_alloc((wr->wr_inodescnt + wc->wc_inocnt) *
3164 1.18 yamt sizeof(wr->wr_inodes[0]));
3165 1.18 yamt if (wr->wr_inodes != NULL) {
3166 1.18 yamt memcpy(new_inodes, wr->wr_inodes, oldsize);
3167 1.18 yamt wapbl_free(wr->wr_inodes, oldsize);
3168 1.18 yamt }
3169 1.18 yamt wr->wr_inodes = new_inodes;
3170 1.10 joerg memcpy(&wr->wr_inodes[wr->wr_inodescnt], wc->wc_inodes,
3171 1.18 yamt wc->wc_inocnt * sizeof(wr->wr_inodes[0]));
3172 1.10 joerg wr->wr_inodescnt += wc->wc_inocnt;
3173 1.10 joerg }
3174 1.10 joerg
3175 1.2 simonb static int
3176 1.14 joerg wapbl_replay_process(struct wapbl_replay *wr, off_t head, off_t tail)
3177 1.2 simonb {
3178 1.2 simonb off_t off;
3179 1.2 simonb int error;
3180 1.2 simonb
3181 1.14 joerg int logblklen = 1 << wr->wr_log_dev_bshift;
3182 1.2 simonb
3183 1.2 simonb wapbl_blkhash_clear(wr);
3184 1.2 simonb
3185 1.14 joerg off = tail;
3186 1.14 joerg while (off != head) {
3187 1.2 simonb struct wapbl_wc_null *wcn;
3188 1.2 simonb off_t saveoff = off;
3189 1.2 simonb error = wapbl_circ_read(wr, wr->wr_scratch, logblklen, &off);
3190 1.2 simonb if (error)
3191 1.2 simonb goto errout;
3192 1.2 simonb wcn = (struct wapbl_wc_null *)wr->wr_scratch;
3193 1.2 simonb switch (wcn->wc_type) {
3194 1.2 simonb case WAPBL_WC_BLOCKS:
3195 1.10 joerg wapbl_replay_process_blocks(wr, &off);
3196 1.2 simonb break;
3197 1.2 simonb
3198 1.2 simonb case WAPBL_WC_REVOCATIONS:
3199 1.10 joerg wapbl_replay_process_revocations(wr);
3200 1.2 simonb break;
3201 1.2 simonb
3202 1.2 simonb case WAPBL_WC_INODES:
3203 1.10 joerg wapbl_replay_process_inodes(wr, saveoff, off);
3204 1.2 simonb break;
3205 1.10 joerg
3206 1.2 simonb default:
3207 1.2 simonb printf("Unrecognized wapbl type: 0x%08x\n",
3208 1.2 simonb wcn->wc_type);
3209 1.2 simonb error = EFTYPE;
3210 1.2 simonb goto errout;
3211 1.2 simonb }
3212 1.2 simonb wapbl_circ_advance(wr, wcn->wc_len, &saveoff);
3213 1.2 simonb if (off != saveoff) {
3214 1.2 simonb printf("wapbl_replay: corrupted records\n");
3215 1.2 simonb error = EFTYPE;
3216 1.2 simonb goto errout;
3217 1.2 simonb }
3218 1.2 simonb }
3219 1.2 simonb return 0;
3220 1.2 simonb
3221 1.2 simonb errout:
3222 1.2 simonb wapbl_blkhash_clear(wr);
3223 1.2 simonb return error;
3224 1.2 simonb }
3225 1.2 simonb
3226 1.13 joerg #if 0
3227 1.2 simonb int
3228 1.2 simonb wapbl_replay_verify(struct wapbl_replay *wr, struct vnode *fsdevvp)
3229 1.2 simonb {
3230 1.2 simonb off_t off;
3231 1.2 simonb int mismatchcnt = 0;
3232 1.14 joerg int logblklen = 1 << wr->wr_log_dev_bshift;
3233 1.14 joerg int fsblklen = 1 << wr->wr_fs_dev_bshift;
3234 1.51 para void *scratch1 = wapbl_alloc(MAXBSIZE);
3235 1.51 para void *scratch2 = wapbl_alloc(MAXBSIZE);
3236 1.2 simonb int error = 0;
3237 1.2 simonb
3238 1.2 simonb KDASSERT(wapbl_replay_isopen(wr));
3239 1.2 simonb
3240 1.2 simonb off = wch->wc_tail;
3241 1.2 simonb while (off != wch->wc_head) {
3242 1.2 simonb struct wapbl_wc_null *wcn;
3243 1.2 simonb #ifdef DEBUG
3244 1.2 simonb off_t saveoff = off;
3245 1.2 simonb #endif
3246 1.2 simonb error = wapbl_circ_read(wr, wr->wr_scratch, logblklen, &off);
3247 1.2 simonb if (error)
3248 1.2 simonb goto out;
3249 1.2 simonb wcn = (struct wapbl_wc_null *)wr->wr_scratch;
3250 1.2 simonb switch (wcn->wc_type) {
3251 1.2 simonb case WAPBL_WC_BLOCKS:
3252 1.2 simonb {
3253 1.2 simonb struct wapbl_wc_blocklist *wc =
3254 1.2 simonb (struct wapbl_wc_blocklist *)wr->wr_scratch;
3255 1.2 simonb int i;
3256 1.2 simonb for (i = 0; i < wc->wc_blkcount; i++) {
3257 1.2 simonb int foundcnt = 0;
3258 1.2 simonb int dirtycnt = 0;
3259 1.2 simonb int j, n;
3260 1.2 simonb /*
3261 1.2 simonb * Check each physical block into the
3262 1.2 simonb * hashtable independently
3263 1.2 simonb */
3264 1.2 simonb n = wc->wc_blocks[i].wc_dlen >>
3265 1.2 simonb wch->wc_fs_dev_bshift;
3266 1.2 simonb for (j = 0; j < n; j++) {
3267 1.2 simonb struct wapbl_blk *wb =
3268 1.2 simonb wapbl_blkhash_get(wr,
3269 1.62 mlelstv wapbl_block_daddr(wc, i, j, fsblklen));
3270 1.2 simonb if (wb && (wb->wb_off == off)) {
3271 1.2 simonb foundcnt++;
3272 1.2 simonb error =
3273 1.2 simonb wapbl_circ_read(wr,
3274 1.2 simonb scratch1, fsblklen,
3275 1.2 simonb &off);
3276 1.2 simonb if (error)
3277 1.2 simonb goto out;
3278 1.2 simonb error =
3279 1.2 simonb wapbl_read(scratch2,
3280 1.2 simonb fsblklen, fsdevvp,
3281 1.2 simonb wb->wb_blk);
3282 1.2 simonb if (error)
3283 1.2 simonb goto out;
3284 1.2 simonb if (memcmp(scratch1,
3285 1.2 simonb scratch2,
3286 1.2 simonb fsblklen)) {
3287 1.2 simonb printf(
3288 1.2 simonb "wapbl_verify: mismatch block %"PRId64" at off %"PRIdMAX"\n",
3289 1.2 simonb wb->wb_blk, (intmax_t)off);
3290 1.2 simonb dirtycnt++;
3291 1.2 simonb mismatchcnt++;
3292 1.2 simonb }
3293 1.2 simonb } else {
3294 1.2 simonb wapbl_circ_advance(wr,
3295 1.2 simonb fsblklen, &off);
3296 1.2 simonb }
3297 1.2 simonb }
3298 1.2 simonb #if 0
3299 1.2 simonb /*
3300 1.2 simonb * If all of the blocks in an entry
3301 1.2 simonb * are clean, then remove all of its
3302 1.2 simonb * blocks from the hashtable since they
3303 1.2 simonb * never will need replay.
3304 1.2 simonb */
3305 1.2 simonb if ((foundcnt != 0) &&
3306 1.2 simonb (dirtycnt == 0)) {
3307 1.2 simonb off = saveoff;
3308 1.2 simonb wapbl_circ_advance(wr,
3309 1.2 simonb logblklen, &off);
3310 1.2 simonb for (j = 0; j < n; j++) {
3311 1.2 simonb struct wapbl_blk *wb =
3312 1.2 simonb wapbl_blkhash_get(wr,
3313 1.62 mlelstv wapbl_block_daddr(wc, i, j, fsblklen));
3314 1.2 simonb if (wb &&
3315 1.2 simonb (wb->wb_off == off)) {
3316 1.2 simonb wapbl_blkhash_rem(wr, wb->wb_blk);
3317 1.2 simonb }
3318 1.2 simonb wapbl_circ_advance(wr,
3319 1.2 simonb fsblklen, &off);
3320 1.2 simonb }
3321 1.2 simonb }
3322 1.2 simonb #endif
3323 1.2 simonb }
3324 1.2 simonb }
3325 1.2 simonb break;
3326 1.2 simonb case WAPBL_WC_REVOCATIONS:
3327 1.2 simonb case WAPBL_WC_INODES:
3328 1.2 simonb break;
3329 1.2 simonb default:
3330 1.2 simonb KASSERT(0);
3331 1.2 simonb }
3332 1.2 simonb #ifdef DEBUG
3333 1.2 simonb wapbl_circ_advance(wr, wcn->wc_len, &saveoff);
3334 1.2 simonb KASSERT(off == saveoff);
3335 1.2 simonb #endif
3336 1.2 simonb }
3337 1.2 simonb out:
3338 1.18 yamt wapbl_free(scratch1, MAXBSIZE);
3339 1.18 yamt wapbl_free(scratch2, MAXBSIZE);
3340 1.2 simonb if (!error && mismatchcnt)
3341 1.2 simonb error = EFTYPE;
3342 1.2 simonb return error;
3343 1.2 simonb }
3344 1.2 simonb #endif
3345 1.2 simonb
3346 1.2 simonb int
3347 1.2 simonb wapbl_replay_write(struct wapbl_replay *wr, struct vnode *fsdevvp)
3348 1.2 simonb {
3349 1.9 joerg struct wapbl_blk *wb;
3350 1.9 joerg size_t i;
3351 1.2 simonb off_t off;
3352 1.9 joerg void *scratch;
3353 1.2 simonb int error = 0;
3354 1.14 joerg int fsblklen = 1 << wr->wr_fs_dev_bshift;
3355 1.2 simonb
3356 1.2 simonb KDASSERT(wapbl_replay_isopen(wr));
3357 1.2 simonb
3358 1.51 para scratch = wapbl_alloc(MAXBSIZE);
3359 1.2 simonb
3360 1.37 drochner for (i = 0; i <= wr->wr_blkhashmask; ++i) {
3361 1.9 joerg LIST_FOREACH(wb, &wr->wr_blkhash[i], wb_hash) {
3362 1.9 joerg off = wb->wb_off;
3363 1.9 joerg error = wapbl_circ_read(wr, scratch, fsblklen, &off);
3364 1.9 joerg if (error)
3365 1.9 joerg break;
3366 1.9 joerg error = wapbl_write(scratch, fsblklen, fsdevvp,
3367 1.9 joerg wb->wb_blk);
3368 1.9 joerg if (error)
3369 1.9 joerg break;
3370 1.2 simonb }
3371 1.2 simonb }
3372 1.9 joerg
3373 1.18 yamt wapbl_free(scratch, MAXBSIZE);
3374 1.2 simonb return error;
3375 1.2 simonb }
3376 1.2 simonb
3377 1.2 simonb int
3378 1.6 joerg wapbl_replay_can_read(struct wapbl_replay *wr, daddr_t blk, long len)
3379 1.6 joerg {
3380 1.14 joerg int fsblklen = 1 << wr->wr_fs_dev_bshift;
3381 1.6 joerg
3382 1.6 joerg KDASSERT(wapbl_replay_isopen(wr));
3383 1.6 joerg KASSERT((len % fsblklen) == 0);
3384 1.6 joerg
3385 1.6 joerg while (len != 0) {
3386 1.6 joerg struct wapbl_blk *wb = wapbl_blkhash_get(wr, blk);
3387 1.6 joerg if (wb)
3388 1.6 joerg return 1;
3389 1.6 joerg len -= fsblklen;
3390 1.6 joerg }
3391 1.6 joerg return 0;
3392 1.6 joerg }
3393 1.6 joerg
3394 1.6 joerg int
3395 1.2 simonb wapbl_replay_read(struct wapbl_replay *wr, void *data, daddr_t blk, long len)
3396 1.2 simonb {
3397 1.14 joerg int fsblklen = 1 << wr->wr_fs_dev_bshift;
3398 1.2 simonb
3399 1.2 simonb KDASSERT(wapbl_replay_isopen(wr));
3400 1.2 simonb
3401 1.2 simonb KASSERT((len % fsblklen) == 0);
3402 1.2 simonb
3403 1.2 simonb while (len != 0) {
3404 1.2 simonb struct wapbl_blk *wb = wapbl_blkhash_get(wr, blk);
3405 1.2 simonb if (wb) {
3406 1.2 simonb off_t off = wb->wb_off;
3407 1.2 simonb int error;
3408 1.2 simonb error = wapbl_circ_read(wr, data, fsblklen, &off);
3409 1.2 simonb if (error)
3410 1.2 simonb return error;
3411 1.2 simonb }
3412 1.2 simonb data = (uint8_t *)data + fsblklen;
3413 1.2 simonb len -= fsblklen;
3414 1.2 simonb blk++;
3415 1.2 simonb }
3416 1.2 simonb return 0;
3417 1.2 simonb }
3418 1.35 pooka
3419 1.36 pooka #ifdef _KERNEL
3420 1.64 pgoyette
3421 1.35 pooka MODULE(MODULE_CLASS_VFS, wapbl, NULL);
3422 1.35 pooka
3423 1.35 pooka static int
3424 1.35 pooka wapbl_modcmd(modcmd_t cmd, void *arg)
3425 1.35 pooka {
3426 1.35 pooka
3427 1.35 pooka switch (cmd) {
3428 1.35 pooka case MODULE_CMD_INIT:
3429 1.39 christos wapbl_init();
3430 1.35 pooka return 0;
3431 1.35 pooka case MODULE_CMD_FINI:
3432 1.74 riastrad return wapbl_fini();
3433 1.35 pooka default:
3434 1.35 pooka return ENOTTY;
3435 1.35 pooka }
3436 1.35 pooka }
3437 1.36 pooka #endif /* _KERNEL */
3438