]>
Commit | Line | Data |
---|---|---|
1da177e4 | 1 | /* |
7b718769 NS |
2 | * Copyright (c) 2000-2005 Silicon Graphics, Inc. |
3 | * All Rights Reserved. | |
1da177e4 | 4 | * |
7b718769 NS |
5 | * This program is free software; you can redistribute it and/or |
6 | * modify it under the terms of the GNU General Public License as | |
1da177e4 LT |
7 | * published by the Free Software Foundation. |
8 | * | |
7b718769 NS |
9 | * This program is distributed in the hope that it would be useful, |
10 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | |
11 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
12 | * GNU General Public License for more details. | |
1da177e4 | 13 | * |
7b718769 NS |
14 | * You should have received a copy of the GNU General Public License |
15 | * along with this program; if not, write the Free Software Foundation, | |
16 | * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA | |
1da177e4 | 17 | */ |
1da177e4 | 18 | #include "xfs.h" |
a844f451 | 19 | #include "xfs_fs.h" |
1da177e4 | 20 | #include "xfs_types.h" |
a844f451 | 21 | #include "xfs_bit.h" |
1da177e4 | 22 | #include "xfs_log.h" |
a844f451 | 23 | #include "xfs_inum.h" |
1da177e4 | 24 | #include "xfs_trans.h" |
a844f451 NS |
25 | #include "xfs_sb.h" |
26 | #include "xfs_ag.h" | |
1da177e4 LT |
27 | #include "xfs_mount.h" |
28 | #include "xfs_error.h" | |
29 | #include "xfs_log_priv.h" | |
30 | #include "xfs_buf_item.h" | |
a844f451 | 31 | #include "xfs_bmap_btree.h" |
1da177e4 | 32 | #include "xfs_alloc_btree.h" |
a844f451 | 33 | #include "xfs_ialloc_btree.h" |
1da177e4 | 34 | #include "xfs_log_recover.h" |
1da177e4 | 35 | #include "xfs_trans_priv.h" |
a844f451 NS |
36 | #include "xfs_dinode.h" |
37 | #include "xfs_inode.h" | |
38 | #include "xfs_rw.h" | |
0b1b213f | 39 | #include "xfs_trace.h" |
1da177e4 | 40 | |
eb01c9cd | 41 | kmem_zone_t *xfs_log_ticket_zone; |
1da177e4 | 42 | |
1da177e4 | 43 | /* Local miscellaneous function prototypes */ |
55b66332 | 44 | STATIC int xlog_commit_record(struct log *log, struct xlog_ticket *ticket, |
1da177e4 LT |
45 | xlog_in_core_t **, xfs_lsn_t *); |
46 | STATIC xlog_t * xlog_alloc_log(xfs_mount_t *mp, | |
47 | xfs_buftarg_t *log_target, | |
48 | xfs_daddr_t blk_offset, | |
49 | int num_bblks); | |
c8a09ff8 | 50 | STATIC int xlog_space_left(struct log *log, atomic64_t *head); |
1da177e4 | 51 | STATIC int xlog_sync(xlog_t *log, xlog_in_core_t *iclog); |
c41564b5 | 52 | STATIC void xlog_dealloc_log(xlog_t *log); |
1da177e4 LT |
53 | |
54 | /* local state machine functions */ | |
55 | STATIC void xlog_state_done_syncing(xlog_in_core_t *iclog, int); | |
56 | STATIC void xlog_state_do_callback(xlog_t *log,int aborted, xlog_in_core_t *iclog); | |
57 | STATIC int xlog_state_get_iclog_space(xlog_t *log, | |
58 | int len, | |
59 | xlog_in_core_t **iclog, | |
60 | xlog_ticket_t *ticket, | |
61 | int *continued_write, | |
62 | int *logoffsetp); | |
1da177e4 LT |
63 | STATIC int xlog_state_release_iclog(xlog_t *log, |
64 | xlog_in_core_t *iclog); | |
65 | STATIC void xlog_state_switch_iclogs(xlog_t *log, | |
66 | xlog_in_core_t *iclog, | |
67 | int eventual_size); | |
1da177e4 LT |
68 | STATIC void xlog_state_want_sync(xlog_t *log, xlog_in_core_t *iclog); |
69 | ||
70 | /* local functions to manipulate grant head */ | |
71 | STATIC int xlog_grant_log_space(xlog_t *log, | |
72 | xlog_ticket_t *xtic); | |
2ced19cb | 73 | STATIC void xlog_grant_push_ail(struct log *log, |
1da177e4 LT |
74 | int need_bytes); |
75 | STATIC void xlog_regrant_reserve_log_space(xlog_t *log, | |
76 | xlog_ticket_t *ticket); | |
77 | STATIC int xlog_regrant_write_log_space(xlog_t *log, | |
78 | xlog_ticket_t *ticket); | |
79 | STATIC void xlog_ungrant_log_space(xlog_t *log, | |
80 | xlog_ticket_t *ticket); | |
81 | ||
cfcbbbd0 | 82 | #if defined(DEBUG) |
e6b1f273 | 83 | STATIC void xlog_verify_dest_ptr(xlog_t *log, char *ptr); |
3f336c6f | 84 | STATIC void xlog_verify_grant_tail(struct log *log); |
1da177e4 LT |
85 | STATIC void xlog_verify_iclog(xlog_t *log, xlog_in_core_t *iclog, |
86 | int count, boolean_t syncing); | |
87 | STATIC void xlog_verify_tail_lsn(xlog_t *log, xlog_in_core_t *iclog, | |
88 | xfs_lsn_t tail_lsn); | |
89 | #else | |
90 | #define xlog_verify_dest_ptr(a,b) | |
3f336c6f | 91 | #define xlog_verify_grant_tail(a) |
1da177e4 LT |
92 | #define xlog_verify_iclog(a,b,c,d) |
93 | #define xlog_verify_tail_lsn(a,b,c) | |
94 | #endif | |
95 | ||
ba0f32d4 | 96 | STATIC int xlog_iclogs_empty(xlog_t *log); |
1da177e4 | 97 | |
dd954c69 | 98 | static void |
663e496a DC |
99 | xlog_grant_sub_space( |
100 | struct log *log, | |
c8a09ff8 | 101 | atomic64_t *head, |
663e496a | 102 | int bytes) |
dd954c69 | 103 | { |
d0eb2f38 DC |
104 | int64_t head_val = atomic64_read(head); |
105 | int64_t new, old; | |
a69ed03c | 106 | |
d0eb2f38 DC |
107 | do { |
108 | int cycle, space; | |
a69ed03c | 109 | |
d0eb2f38 | 110 | xlog_crack_grant_head_val(head_val, &cycle, &space); |
a69ed03c | 111 | |
d0eb2f38 DC |
112 | space -= bytes; |
113 | if (space < 0) { | |
114 | space += log->l_logsize; | |
115 | cycle--; | |
116 | } | |
117 | ||
118 | old = head_val; | |
119 | new = xlog_assign_grant_head_val(cycle, space); | |
120 | head_val = atomic64_cmpxchg(head, old, new); | |
121 | } while (head_val != old); | |
dd954c69 CH |
122 | } |
123 | ||
124 | static void | |
663e496a DC |
125 | xlog_grant_add_space( |
126 | struct log *log, | |
c8a09ff8 | 127 | atomic64_t *head, |
663e496a | 128 | int bytes) |
dd954c69 | 129 | { |
d0eb2f38 DC |
130 | int64_t head_val = atomic64_read(head); |
131 | int64_t new, old; | |
a69ed03c | 132 | |
d0eb2f38 DC |
133 | do { |
134 | int tmp; | |
135 | int cycle, space; | |
a69ed03c | 136 | |
d0eb2f38 | 137 | xlog_crack_grant_head_val(head_val, &cycle, &space); |
a69ed03c | 138 | |
d0eb2f38 DC |
139 | tmp = log->l_logsize - space; |
140 | if (tmp > bytes) | |
141 | space += bytes; | |
142 | else { | |
143 | space = bytes - tmp; | |
144 | cycle++; | |
145 | } | |
146 | ||
147 | old = head_val; | |
148 | new = xlog_assign_grant_head_val(cycle, space); | |
149 | head_val = atomic64_cmpxchg(head, old, new); | |
150 | } while (head_val != old); | |
dd954c69 | 151 | } |
a69ed03c | 152 | |
0adba536 CH |
153 | static void |
154 | xlog_tic_reset_res(xlog_ticket_t *tic) | |
155 | { | |
156 | tic->t_res_num = 0; | |
157 | tic->t_res_arr_sum = 0; | |
158 | tic->t_res_num_ophdrs = 0; | |
159 | } | |
160 | ||
161 | static void | |
162 | xlog_tic_add_region(xlog_ticket_t *tic, uint len, uint type) | |
163 | { | |
164 | if (tic->t_res_num == XLOG_TIC_LEN_MAX) { | |
165 | /* add to overflow and start again */ | |
166 | tic->t_res_o_flow += tic->t_res_arr_sum; | |
167 | tic->t_res_num = 0; | |
168 | tic->t_res_arr_sum = 0; | |
169 | } | |
170 | ||
171 | tic->t_res_arr[tic->t_res_num].r_len = len; | |
172 | tic->t_res_arr[tic->t_res_num].r_type = type; | |
173 | tic->t_res_arr_sum += len; | |
174 | tic->t_res_num++; | |
175 | } | |
dd954c69 | 176 | |
1da177e4 LT |
177 | /* |
178 | * NOTES: | |
179 | * | |
180 | * 1. currblock field gets updated at startup and after in-core logs | |
181 | * marked as with WANT_SYNC. | |
182 | */ | |
183 | ||
184 | /* | |
185 | * This routine is called when a user of a log manager ticket is done with | |
186 | * the reservation. If the ticket was ever used, then a commit record for | |
187 | * the associated transaction is written out as a log operation header with | |
188 | * no data. The flag XLOG_TIC_INITED is set when the first write occurs with | |
189 | * a given ticket. If the ticket was one with a permanent reservation, then | |
190 | * a few operations are done differently. Permanent reservation tickets by | |
191 | * default don't release the reservation. They just commit the current | |
192 | * transaction with the belief that the reservation is still needed. A flag | |
193 | * must be passed in before permanent reservations are actually released. | |
194 | * When these type of tickets are not released, they need to be set into | |
195 | * the inited state again. By doing this, a start record will be written | |
196 | * out when the next write occurs. | |
197 | */ | |
198 | xfs_lsn_t | |
35a8a72f CH |
199 | xfs_log_done( |
200 | struct xfs_mount *mp, | |
201 | struct xlog_ticket *ticket, | |
202 | struct xlog_in_core **iclog, | |
203 | uint flags) | |
1da177e4 | 204 | { |
35a8a72f CH |
205 | struct log *log = mp->m_log; |
206 | xfs_lsn_t lsn = 0; | |
1da177e4 | 207 | |
1da177e4 LT |
208 | if (XLOG_FORCED_SHUTDOWN(log) || |
209 | /* | |
210 | * If nothing was ever written, don't write out commit record. | |
211 | * If we get an error, just continue and give back the log ticket. | |
212 | */ | |
213 | (((ticket->t_flags & XLOG_TIC_INITED) == 0) && | |
55b66332 | 214 | (xlog_commit_record(log, ticket, iclog, &lsn)))) { |
1da177e4 LT |
215 | lsn = (xfs_lsn_t) -1; |
216 | if (ticket->t_flags & XLOG_TIC_PERM_RESERV) { | |
217 | flags |= XFS_LOG_REL_PERM_RESERV; | |
218 | } | |
219 | } | |
220 | ||
221 | ||
222 | if ((ticket->t_flags & XLOG_TIC_PERM_RESERV) == 0 || | |
223 | (flags & XFS_LOG_REL_PERM_RESERV)) { | |
0b1b213f CH |
224 | trace_xfs_log_done_nonperm(log, ticket); |
225 | ||
1da177e4 | 226 | /* |
c41564b5 | 227 | * Release ticket if not permanent reservation or a specific |
1da177e4 LT |
228 | * request has been made to release a permanent reservation. |
229 | */ | |
230 | xlog_ungrant_log_space(log, ticket); | |
cc09c0dc | 231 | xfs_log_ticket_put(ticket); |
1da177e4 | 232 | } else { |
0b1b213f CH |
233 | trace_xfs_log_done_perm(log, ticket); |
234 | ||
1da177e4 | 235 | xlog_regrant_reserve_log_space(log, ticket); |
c6a7b0f8 LM |
236 | /* If this ticket was a permanent reservation and we aren't |
237 | * trying to release it, reset the inited flags; so next time | |
238 | * we write, a start record will be written out. | |
239 | */ | |
1da177e4 | 240 | ticket->t_flags |= XLOG_TIC_INITED; |
c6a7b0f8 | 241 | } |
1da177e4 LT |
242 | |
243 | return lsn; | |
35a8a72f | 244 | } |
1da177e4 | 245 | |
1da177e4 LT |
246 | /* |
247 | * Attaches a new iclog I/O completion callback routine during | |
248 | * transaction commit. If the log is in error state, a non-zero | |
249 | * return code is handed back and the caller is responsible for | |
250 | * executing the callback at an appropriate time. | |
251 | */ | |
252 | int | |
35a8a72f CH |
253 | xfs_log_notify( |
254 | struct xfs_mount *mp, | |
255 | struct xlog_in_core *iclog, | |
256 | xfs_log_callback_t *cb) | |
1da177e4 | 257 | { |
b22cd72c | 258 | int abortflg; |
1da177e4 | 259 | |
114d23aa | 260 | spin_lock(&iclog->ic_callback_lock); |
1da177e4 LT |
261 | abortflg = (iclog->ic_state & XLOG_STATE_IOERROR); |
262 | if (!abortflg) { | |
263 | ASSERT_ALWAYS((iclog->ic_state == XLOG_STATE_ACTIVE) || | |
264 | (iclog->ic_state == XLOG_STATE_WANT_SYNC)); | |
265 | cb->cb_next = NULL; | |
266 | *(iclog->ic_callback_tail) = cb; | |
267 | iclog->ic_callback_tail = &(cb->cb_next); | |
268 | } | |
114d23aa | 269 | spin_unlock(&iclog->ic_callback_lock); |
1da177e4 | 270 | return abortflg; |
35a8a72f | 271 | } |
1da177e4 LT |
272 | |
273 | int | |
35a8a72f CH |
274 | xfs_log_release_iclog( |
275 | struct xfs_mount *mp, | |
276 | struct xlog_in_core *iclog) | |
1da177e4 | 277 | { |
35a8a72f | 278 | if (xlog_state_release_iclog(mp->m_log, iclog)) { |
7d04a335 | 279 | xfs_force_shutdown(mp, SHUTDOWN_LOG_IO_ERROR); |
014c2544 | 280 | return EIO; |
1da177e4 LT |
281 | } |
282 | ||
283 | return 0; | |
284 | } | |
285 | ||
286 | /* | |
287 | * 1. Reserve an amount of on-disk log space and return a ticket corresponding | |
288 | * to the reservation. | |
289 | * 2. Potentially, push buffers at tail of log to disk. | |
290 | * | |
291 | * Each reservation is going to reserve extra space for a log record header. | |
292 | * When writes happen to the on-disk log, we don't subtract the length of the | |
293 | * log record header from any reservation. By wasting space in each | |
294 | * reservation, we prevent over allocation problems. | |
295 | */ | |
296 | int | |
35a8a72f CH |
297 | xfs_log_reserve( |
298 | struct xfs_mount *mp, | |
299 | int unit_bytes, | |
300 | int cnt, | |
301 | struct xlog_ticket **ticket, | |
302 | __uint8_t client, | |
303 | uint flags, | |
304 | uint t_type) | |
1da177e4 | 305 | { |
35a8a72f CH |
306 | struct log *log = mp->m_log; |
307 | struct xlog_ticket *internal_ticket; | |
308 | int retval = 0; | |
1da177e4 | 309 | |
1da177e4 | 310 | ASSERT(client == XFS_TRANSACTION || client == XFS_LOG); |
1da177e4 LT |
311 | |
312 | if (XLOG_FORCED_SHUTDOWN(log)) | |
313 | return XFS_ERROR(EIO); | |
314 | ||
315 | XFS_STATS_INC(xs_try_logspace); | |
316 | ||
0b1b213f | 317 | |
1da177e4 LT |
318 | if (*ticket != NULL) { |
319 | ASSERT(flags & XFS_LOG_PERM_RESERV); | |
35a8a72f | 320 | internal_ticket = *ticket; |
0b1b213f | 321 | |
524ee36f DC |
322 | /* |
323 | * this is a new transaction on the ticket, so we need to | |
324 | * change the transaction ID so that the next transaction has a | |
325 | * different TID in the log. Just add one to the existing tid | |
326 | * so that we can see chains of rolling transactions in the log | |
327 | * easily. | |
328 | */ | |
329 | internal_ticket->t_tid++; | |
330 | ||
0b1b213f CH |
331 | trace_xfs_log_reserve(log, internal_ticket); |
332 | ||
2ced19cb | 333 | xlog_grant_push_ail(log, internal_ticket->t_unit_res); |
1da177e4 LT |
334 | retval = xlog_regrant_write_log_space(log, internal_ticket); |
335 | } else { | |
336 | /* may sleep if need to allocate more tickets */ | |
cc09c0dc | 337 | internal_ticket = xlog_ticket_alloc(log, unit_bytes, cnt, |
3383ca57 DC |
338 | client, flags, |
339 | KM_SLEEP|KM_MAYFAIL); | |
eb01c9cd DC |
340 | if (!internal_ticket) |
341 | return XFS_ERROR(ENOMEM); | |
7e9c6396 | 342 | internal_ticket->t_trans_type = t_type; |
1da177e4 | 343 | *ticket = internal_ticket; |
0b1b213f CH |
344 | |
345 | trace_xfs_log_reserve(log, internal_ticket); | |
346 | ||
2ced19cb | 347 | xlog_grant_push_ail(log, |
1da177e4 LT |
348 | (internal_ticket->t_unit_res * |
349 | internal_ticket->t_cnt)); | |
350 | retval = xlog_grant_log_space(log, internal_ticket); | |
351 | } | |
352 | ||
353 | return retval; | |
354 | } /* xfs_log_reserve */ | |
355 | ||
356 | ||
357 | /* | |
358 | * Mount a log filesystem | |
359 | * | |
360 | * mp - ubiquitous xfs mount point structure | |
361 | * log_target - buftarg of on-disk log device | |
362 | * blk_offset - Start block # where block size is 512 bytes (BBSIZE) | |
363 | * num_bblocks - Number of BBSIZE blocks in on-disk log | |
364 | * | |
365 | * Return error or zero. | |
366 | */ | |
367 | int | |
249a8c11 DC |
368 | xfs_log_mount( |
369 | xfs_mount_t *mp, | |
370 | xfs_buftarg_t *log_target, | |
371 | xfs_daddr_t blk_offset, | |
372 | int num_bblks) | |
1da177e4 | 373 | { |
249a8c11 DC |
374 | int error; |
375 | ||
1da177e4 | 376 | if (!(mp->m_flags & XFS_MOUNT_NORECOVERY)) |
a0fa2b67 | 377 | xfs_notice(mp, "Mounting Filesystem"); |
1da177e4 | 378 | else { |
a0fa2b67 DC |
379 | xfs_notice(mp, |
380 | "Mounting filesystem in no-recovery mode. Filesystem will be inconsistent."); | |
bd186aa9 | 381 | ASSERT(mp->m_flags & XFS_MOUNT_RDONLY); |
1da177e4 LT |
382 | } |
383 | ||
384 | mp->m_log = xlog_alloc_log(mp, log_target, blk_offset, num_bblks); | |
a6cb767e DC |
385 | if (IS_ERR(mp->m_log)) { |
386 | error = -PTR_ERR(mp->m_log); | |
644c3567 DC |
387 | goto out; |
388 | } | |
1da177e4 | 389 | |
249a8c11 DC |
390 | /* |
391 | * Initialize the AIL now we have a log. | |
392 | */ | |
249a8c11 DC |
393 | error = xfs_trans_ail_init(mp); |
394 | if (error) { | |
a0fa2b67 | 395 | xfs_warn(mp, "AIL initialisation failed: error %d", error); |
26430752 | 396 | goto out_free_log; |
249a8c11 | 397 | } |
a9c21c1b | 398 | mp->m_log->l_ailp = mp->m_ail; |
249a8c11 | 399 | |
1da177e4 LT |
400 | /* |
401 | * skip log recovery on a norecovery mount. pretend it all | |
402 | * just worked. | |
403 | */ | |
404 | if (!(mp->m_flags & XFS_MOUNT_NORECOVERY)) { | |
249a8c11 | 405 | int readonly = (mp->m_flags & XFS_MOUNT_RDONLY); |
1da177e4 LT |
406 | |
407 | if (readonly) | |
bd186aa9 | 408 | mp->m_flags &= ~XFS_MOUNT_RDONLY; |
1da177e4 | 409 | |
65be6054 | 410 | error = xlog_recover(mp->m_log); |
1da177e4 LT |
411 | |
412 | if (readonly) | |
bd186aa9 | 413 | mp->m_flags |= XFS_MOUNT_RDONLY; |
1da177e4 | 414 | if (error) { |
a0fa2b67 DC |
415 | xfs_warn(mp, "log mount/recovery failed: error %d", |
416 | error); | |
26430752 | 417 | goto out_destroy_ail; |
1da177e4 LT |
418 | } |
419 | } | |
420 | ||
421 | /* Normal transactions can now occur */ | |
422 | mp->m_log->l_flags &= ~XLOG_ACTIVE_RECOVERY; | |
423 | ||
71e330b5 DC |
424 | /* |
425 | * Now the log has been fully initialised and we know were our | |
426 | * space grant counters are, we can initialise the permanent ticket | |
427 | * needed for delayed logging to work. | |
428 | */ | |
429 | xlog_cil_init_post_recovery(mp->m_log); | |
430 | ||
1da177e4 | 431 | return 0; |
26430752 CH |
432 | |
433 | out_destroy_ail: | |
434 | xfs_trans_ail_destroy(mp); | |
435 | out_free_log: | |
436 | xlog_dealloc_log(mp->m_log); | |
644c3567 | 437 | out: |
249a8c11 | 438 | return error; |
26430752 | 439 | } |
1da177e4 LT |
440 | |
441 | /* | |
442 | * Finish the recovery of the file system. This is separate from | |
443 | * the xfs_log_mount() call, because it depends on the code in | |
444 | * xfs_mountfs() to read in the root and real-time bitmap inodes | |
445 | * between calling xfs_log_mount() and here. | |
446 | * | |
447 | * mp - ubiquitous xfs mount point structure | |
448 | */ | |
449 | int | |
4249023a | 450 | xfs_log_mount_finish(xfs_mount_t *mp) |
1da177e4 LT |
451 | { |
452 | int error; | |
453 | ||
454 | if (!(mp->m_flags & XFS_MOUNT_NORECOVERY)) | |
4249023a | 455 | error = xlog_recover_finish(mp->m_log); |
1da177e4 LT |
456 | else { |
457 | error = 0; | |
bd186aa9 | 458 | ASSERT(mp->m_flags & XFS_MOUNT_RDONLY); |
1da177e4 LT |
459 | } |
460 | ||
461 | return error; | |
462 | } | |
463 | ||
1da177e4 LT |
464 | /* |
465 | * Final log writes as part of unmount. | |
466 | * | |
467 | * Mark the filesystem clean as unmount happens. Note that during relocation | |
468 | * this routine needs to be executed as part of source-bag while the | |
469 | * deallocation must not be done until source-end. | |
470 | */ | |
471 | ||
472 | /* | |
473 | * Unmount record used to have a string "Unmount filesystem--" in the | |
474 | * data section where the "Un" was really a magic number (XLOG_UNMOUNT_TYPE). | |
475 | * We just write the magic number now since that particular field isn't | |
476 | * currently architecture converted and "nUmount" is a bit foo. | |
477 | * As far as I know, there weren't any dependencies on the old behaviour. | |
478 | */ | |
479 | ||
480 | int | |
481 | xfs_log_unmount_write(xfs_mount_t *mp) | |
482 | { | |
483 | xlog_t *log = mp->m_log; | |
484 | xlog_in_core_t *iclog; | |
485 | #ifdef DEBUG | |
486 | xlog_in_core_t *first_iclog; | |
487 | #endif | |
35a8a72f | 488 | xlog_ticket_t *tic = NULL; |
1da177e4 LT |
489 | xfs_lsn_t lsn; |
490 | int error; | |
1da177e4 | 491 | |
1da177e4 LT |
492 | /* |
493 | * Don't write out unmount record on read-only mounts. | |
494 | * Or, if we are doing a forced umount (typically because of IO errors). | |
495 | */ | |
bd186aa9 | 496 | if (mp->m_flags & XFS_MOUNT_RDONLY) |
1da177e4 LT |
497 | return 0; |
498 | ||
a14a348b | 499 | error = _xfs_log_force(mp, XFS_LOG_SYNC, NULL); |
b911ca04 | 500 | ASSERT(error || !(XLOG_FORCED_SHUTDOWN(log))); |
1da177e4 LT |
501 | |
502 | #ifdef DEBUG | |
503 | first_iclog = iclog = log->l_iclog; | |
504 | do { | |
505 | if (!(iclog->ic_state & XLOG_STATE_IOERROR)) { | |
506 | ASSERT(iclog->ic_state & XLOG_STATE_ACTIVE); | |
507 | ASSERT(iclog->ic_offset == 0); | |
508 | } | |
509 | iclog = iclog->ic_next; | |
510 | } while (iclog != first_iclog); | |
511 | #endif | |
512 | if (! (XLOG_FORCED_SHUTDOWN(log))) { | |
955e47ad TS |
513 | error = xfs_log_reserve(mp, 600, 1, &tic, |
514 | XFS_LOG, 0, XLOG_UNMOUNT_REC_TYPE); | |
1da177e4 | 515 | if (!error) { |
55b66332 DC |
516 | /* the data section must be 32 bit size aligned */ |
517 | struct { | |
518 | __uint16_t magic; | |
519 | __uint16_t pad1; | |
520 | __uint32_t pad2; /* may as well make it 64 bits */ | |
521 | } magic = { | |
522 | .magic = XLOG_UNMOUNT_TYPE, | |
523 | }; | |
524 | struct xfs_log_iovec reg = { | |
4e0d5f92 | 525 | .i_addr = &magic, |
55b66332 DC |
526 | .i_len = sizeof(magic), |
527 | .i_type = XLOG_REG_TYPE_UNMOUNT, | |
528 | }; | |
529 | struct xfs_log_vec vec = { | |
530 | .lv_niovecs = 1, | |
531 | .lv_iovecp = ®, | |
532 | }; | |
533 | ||
1da177e4 | 534 | /* remove inited flag */ |
55b66332 DC |
535 | tic->t_flags = 0; |
536 | error = xlog_write(log, &vec, tic, &lsn, | |
1da177e4 LT |
537 | NULL, XLOG_UNMOUNT_TRANS); |
538 | /* | |
539 | * At this point, we're umounting anyway, | |
540 | * so there's no point in transitioning log state | |
541 | * to IOERROR. Just continue... | |
542 | */ | |
543 | } | |
544 | ||
a0fa2b67 DC |
545 | if (error) |
546 | xfs_alert(mp, "%s: unmount record failed", __func__); | |
1da177e4 LT |
547 | |
548 | ||
b22cd72c | 549 | spin_lock(&log->l_icloglock); |
1da177e4 | 550 | iclog = log->l_iclog; |
155cc6b7 | 551 | atomic_inc(&iclog->ic_refcnt); |
1da177e4 | 552 | xlog_state_want_sync(log, iclog); |
39e2defe | 553 | spin_unlock(&log->l_icloglock); |
1bb7d6b5 | 554 | error = xlog_state_release_iclog(log, iclog); |
1da177e4 | 555 | |
b22cd72c | 556 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
557 | if (!(iclog->ic_state == XLOG_STATE_ACTIVE || |
558 | iclog->ic_state == XLOG_STATE_DIRTY)) { | |
559 | if (!XLOG_FORCED_SHUTDOWN(log)) { | |
eb40a875 DC |
560 | xlog_wait(&iclog->ic_force_wait, |
561 | &log->l_icloglock); | |
1da177e4 | 562 | } else { |
b22cd72c | 563 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
564 | } |
565 | } else { | |
b22cd72c | 566 | spin_unlock(&log->l_icloglock); |
1da177e4 | 567 | } |
955e47ad | 568 | if (tic) { |
0b1b213f | 569 | trace_xfs_log_umount_write(log, tic); |
955e47ad | 570 | xlog_ungrant_log_space(log, tic); |
cc09c0dc | 571 | xfs_log_ticket_put(tic); |
955e47ad | 572 | } |
1da177e4 LT |
573 | } else { |
574 | /* | |
575 | * We're already in forced_shutdown mode, couldn't | |
576 | * even attempt to write out the unmount transaction. | |
577 | * | |
578 | * Go through the motions of sync'ing and releasing | |
579 | * the iclog, even though no I/O will actually happen, | |
c41564b5 | 580 | * we need to wait for other log I/Os that may already |
1da177e4 LT |
581 | * be in progress. Do this as a separate section of |
582 | * code so we'll know if we ever get stuck here that | |
583 | * we're in this odd situation of trying to unmount | |
584 | * a file system that went into forced_shutdown as | |
585 | * the result of an unmount.. | |
586 | */ | |
b22cd72c | 587 | spin_lock(&log->l_icloglock); |
1da177e4 | 588 | iclog = log->l_iclog; |
155cc6b7 | 589 | atomic_inc(&iclog->ic_refcnt); |
1da177e4 LT |
590 | |
591 | xlog_state_want_sync(log, iclog); | |
39e2defe | 592 | spin_unlock(&log->l_icloglock); |
1bb7d6b5 | 593 | error = xlog_state_release_iclog(log, iclog); |
1da177e4 | 594 | |
b22cd72c | 595 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
596 | |
597 | if ( ! ( iclog->ic_state == XLOG_STATE_ACTIVE | |
598 | || iclog->ic_state == XLOG_STATE_DIRTY | |
599 | || iclog->ic_state == XLOG_STATE_IOERROR) ) { | |
600 | ||
eb40a875 DC |
601 | xlog_wait(&iclog->ic_force_wait, |
602 | &log->l_icloglock); | |
1da177e4 | 603 | } else { |
b22cd72c | 604 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
605 | } |
606 | } | |
607 | ||
1bb7d6b5 | 608 | return error; |
1da177e4 LT |
609 | } /* xfs_log_unmount_write */ |
610 | ||
611 | /* | |
612 | * Deallocate log structures for unmount/relocation. | |
249a8c11 DC |
613 | * |
614 | * We need to stop the aild from running before we destroy | |
615 | * and deallocate the log as the aild references the log. | |
1da177e4 LT |
616 | */ |
617 | void | |
21b699c8 | 618 | xfs_log_unmount(xfs_mount_t *mp) |
1da177e4 | 619 | { |
249a8c11 | 620 | xfs_trans_ail_destroy(mp); |
c41564b5 | 621 | xlog_dealloc_log(mp->m_log); |
1da177e4 LT |
622 | } |
623 | ||
43f5efc5 DC |
624 | void |
625 | xfs_log_item_init( | |
626 | struct xfs_mount *mp, | |
627 | struct xfs_log_item *item, | |
628 | int type, | |
629 | struct xfs_item_ops *ops) | |
630 | { | |
631 | item->li_mountp = mp; | |
632 | item->li_ailp = mp->m_ail; | |
633 | item->li_type = type; | |
634 | item->li_ops = ops; | |
71e330b5 DC |
635 | item->li_lv = NULL; |
636 | ||
637 | INIT_LIST_HEAD(&item->li_ail); | |
638 | INIT_LIST_HEAD(&item->li_cil); | |
43f5efc5 DC |
639 | } |
640 | ||
1da177e4 LT |
641 | /* |
642 | * Write region vectors to log. The write happens using the space reservation | |
643 | * of the ticket (tic). It is not a requirement that all writes for a given | |
9b9fc2b7 DC |
644 | * transaction occur with one call to xfs_log_write(). However, it is important |
645 | * to note that the transaction reservation code makes an assumption about the | |
646 | * number of log headers a transaction requires that may be violated if you | |
647 | * don't pass all the transaction vectors in one call.... | |
1da177e4 LT |
648 | */ |
649 | int | |
35a8a72f CH |
650 | xfs_log_write( |
651 | struct xfs_mount *mp, | |
652 | struct xfs_log_iovec reg[], | |
653 | int nentries, | |
654 | struct xlog_ticket *tic, | |
655 | xfs_lsn_t *start_lsn) | |
1da177e4 | 656 | { |
35a8a72f CH |
657 | struct log *log = mp->m_log; |
658 | int error; | |
55b66332 DC |
659 | struct xfs_log_vec vec = { |
660 | .lv_niovecs = nentries, | |
661 | .lv_iovecp = reg, | |
662 | }; | |
1da177e4 | 663 | |
1da177e4 LT |
664 | if (XLOG_FORCED_SHUTDOWN(log)) |
665 | return XFS_ERROR(EIO); | |
666 | ||
55b66332 | 667 | error = xlog_write(log, &vec, tic, start_lsn, NULL, 0); |
35a8a72f | 668 | if (error) |
7d04a335 | 669 | xfs_force_shutdown(mp, SHUTDOWN_LOG_IO_ERROR); |
014c2544 | 670 | return error; |
35a8a72f | 671 | } |
1da177e4 LT |
672 | |
673 | void | |
674 | xfs_log_move_tail(xfs_mount_t *mp, | |
675 | xfs_lsn_t tail_lsn) | |
676 | { | |
677 | xlog_ticket_t *tic; | |
678 | xlog_t *log = mp->m_log; | |
a69ed03c | 679 | int need_bytes, free_bytes; |
1da177e4 | 680 | |
1da177e4 LT |
681 | if (XLOG_FORCED_SHUTDOWN(log)) |
682 | return; | |
1da177e4 | 683 | |
84f3c683 DC |
684 | if (tail_lsn == 0) |
685 | tail_lsn = atomic64_read(&log->l_last_sync_lsn); | |
1da177e4 | 686 | |
1c3cb9ec DC |
687 | /* tail_lsn == 1 implies that we weren't passed a valid value. */ |
688 | if (tail_lsn != 1) | |
689 | atomic64_set(&log->l_tail_lsn, tail_lsn); | |
1da177e4 | 690 | |
3f16b985 | 691 | if (!list_empty_careful(&log->l_writeq)) { |
1da177e4 LT |
692 | #ifdef DEBUG |
693 | if (log->l_flags & XLOG_ACTIVE_RECOVERY) | |
694 | panic("Recovery problem"); | |
695 | #endif | |
3f16b985 | 696 | spin_lock(&log->l_grant_write_lock); |
a69ed03c | 697 | free_bytes = xlog_space_left(log, &log->l_grant_write_head); |
10547941 | 698 | list_for_each_entry(tic, &log->l_writeq, t_queue) { |
1da177e4 LT |
699 | ASSERT(tic->t_flags & XLOG_TIC_PERM_RESERV); |
700 | ||
701 | if (free_bytes < tic->t_unit_res && tail_lsn != 1) | |
702 | break; | |
703 | tail_lsn = 0; | |
704 | free_bytes -= tic->t_unit_res; | |
3f16b985 | 705 | trace_xfs_log_regrant_write_wake_up(log, tic); |
eb40a875 | 706 | wake_up(&tic->t_wait); |
10547941 | 707 | } |
3f16b985 | 708 | spin_unlock(&log->l_grant_write_lock); |
1da177e4 | 709 | } |
10547941 | 710 | |
3f16b985 | 711 | if (!list_empty_careful(&log->l_reserveq)) { |
1da177e4 LT |
712 | #ifdef DEBUG |
713 | if (log->l_flags & XLOG_ACTIVE_RECOVERY) | |
714 | panic("Recovery problem"); | |
715 | #endif | |
3f16b985 | 716 | spin_lock(&log->l_grant_reserve_lock); |
a69ed03c | 717 | free_bytes = xlog_space_left(log, &log->l_grant_reserve_head); |
10547941 | 718 | list_for_each_entry(tic, &log->l_reserveq, t_queue) { |
1da177e4 LT |
719 | if (tic->t_flags & XLOG_TIC_PERM_RESERV) |
720 | need_bytes = tic->t_unit_res*tic->t_cnt; | |
721 | else | |
722 | need_bytes = tic->t_unit_res; | |
723 | if (free_bytes < need_bytes && tail_lsn != 1) | |
724 | break; | |
725 | tail_lsn = 0; | |
726 | free_bytes -= need_bytes; | |
3f16b985 | 727 | trace_xfs_log_grant_wake_up(log, tic); |
eb40a875 | 728 | wake_up(&tic->t_wait); |
10547941 | 729 | } |
3f16b985 | 730 | spin_unlock(&log->l_grant_reserve_lock); |
1da177e4 | 731 | } |
3f16b985 | 732 | } |
1da177e4 LT |
733 | |
734 | /* | |
735 | * Determine if we have a transaction that has gone to disk | |
b6f8dd49 DC |
736 | * that needs to be covered. To begin the transition to the idle state |
737 | * firstly the log needs to be idle (no AIL and nothing in the iclogs). | |
738 | * If we are then in a state where covering is needed, the caller is informed | |
739 | * that dummy transactions are required to move the log into the idle state. | |
740 | * | |
741 | * Because this is called as part of the sync process, we should also indicate | |
742 | * that dummy transactions should be issued in anything but the covered or | |
743 | * idle states. This ensures that the log tail is accurately reflected in | |
744 | * the log at the end of the sync, hence if a crash occurrs avoids replay | |
745 | * of transactions where the metadata is already on disk. | |
1da177e4 LT |
746 | */ |
747 | int | |
748 | xfs_log_need_covered(xfs_mount_t *mp) | |
749 | { | |
27d8d5fe | 750 | int needed = 0; |
1da177e4 | 751 | xlog_t *log = mp->m_log; |
1da177e4 | 752 | |
92821e2b | 753 | if (!xfs_fs_writable(mp)) |
1da177e4 LT |
754 | return 0; |
755 | ||
b22cd72c | 756 | spin_lock(&log->l_icloglock); |
b6f8dd49 DC |
757 | switch (log->l_covered_state) { |
758 | case XLOG_STATE_COVER_DONE: | |
759 | case XLOG_STATE_COVER_DONE2: | |
760 | case XLOG_STATE_COVER_IDLE: | |
761 | break; | |
762 | case XLOG_STATE_COVER_NEED: | |
763 | case XLOG_STATE_COVER_NEED2: | |
fd074841 | 764 | if (!xfs_ail_min_lsn(log->l_ailp) && |
b6f8dd49 DC |
765 | xlog_iclogs_empty(log)) { |
766 | if (log->l_covered_state == XLOG_STATE_COVER_NEED) | |
767 | log->l_covered_state = XLOG_STATE_COVER_DONE; | |
768 | else | |
769 | log->l_covered_state = XLOG_STATE_COVER_DONE2; | |
1da177e4 | 770 | } |
b6f8dd49 DC |
771 | /* FALLTHRU */ |
772 | default: | |
1da177e4 | 773 | needed = 1; |
b6f8dd49 | 774 | break; |
1da177e4 | 775 | } |
b22cd72c | 776 | spin_unlock(&log->l_icloglock); |
014c2544 | 777 | return needed; |
1da177e4 LT |
778 | } |
779 | ||
780 | /****************************************************************************** | |
781 | * | |
782 | * local routines | |
783 | * | |
784 | ****************************************************************************** | |
785 | */ | |
786 | ||
787 | /* xfs_trans_tail_ail returns 0 when there is nothing in the list. | |
788 | * The log manager must keep track of the last LR which was committed | |
789 | * to disk. The lsn of this LR will become the new tail_lsn whenever | |
790 | * xfs_trans_tail_ail returns 0. If we don't do this, we run into | |
791 | * the situation where stuff could be written into the log but nothing | |
792 | * was ever in the AIL when asked. Eventually, we panic since the | |
793 | * tail hits the head. | |
794 | * | |
795 | * We may be holding the log iclog lock upon entering this routine. | |
796 | */ | |
797 | xfs_lsn_t | |
1c3cb9ec DC |
798 | xlog_assign_tail_lsn( |
799 | struct xfs_mount *mp) | |
1da177e4 | 800 | { |
1c3cb9ec DC |
801 | xfs_lsn_t tail_lsn; |
802 | struct log *log = mp->m_log; | |
1da177e4 | 803 | |
fd074841 | 804 | tail_lsn = xfs_ail_min_lsn(mp->m_ail); |
84f3c683 DC |
805 | if (!tail_lsn) |
806 | tail_lsn = atomic64_read(&log->l_last_sync_lsn); | |
1da177e4 | 807 | |
1c3cb9ec | 808 | atomic64_set(&log->l_tail_lsn, tail_lsn); |
1da177e4 | 809 | return tail_lsn; |
1c3cb9ec | 810 | } |
1da177e4 LT |
811 | |
812 | /* | |
813 | * Return the space in the log between the tail and the head. The head | |
814 | * is passed in the cycle/bytes formal parms. In the special case where | |
815 | * the reserve head has wrapped passed the tail, this calculation is no | |
816 | * longer valid. In this case, just return 0 which means there is no space | |
817 | * in the log. This works for all places where this function is called | |
818 | * with the reserve head. Of course, if the write head were to ever | |
819 | * wrap the tail, we should blow up. Rather than catch this case here, | |
820 | * we depend on other ASSERTions in other parts of the code. XXXmiken | |
821 | * | |
822 | * This code also handles the case where the reservation head is behind | |
823 | * the tail. The details of this case are described below, but the end | |
824 | * result is that we return the size of the log as the amount of space left. | |
825 | */ | |
a8272ce0 | 826 | STATIC int |
a69ed03c DC |
827 | xlog_space_left( |
828 | struct log *log, | |
c8a09ff8 | 829 | atomic64_t *head) |
1da177e4 | 830 | { |
a69ed03c DC |
831 | int free_bytes; |
832 | int tail_bytes; | |
833 | int tail_cycle; | |
834 | int head_cycle; | |
835 | int head_bytes; | |
1da177e4 | 836 | |
a69ed03c | 837 | xlog_crack_grant_head(head, &head_cycle, &head_bytes); |
1c3cb9ec DC |
838 | xlog_crack_atomic_lsn(&log->l_tail_lsn, &tail_cycle, &tail_bytes); |
839 | tail_bytes = BBTOB(tail_bytes); | |
a69ed03c DC |
840 | if (tail_cycle == head_cycle && head_bytes >= tail_bytes) |
841 | free_bytes = log->l_logsize - (head_bytes - tail_bytes); | |
842 | else if (tail_cycle + 1 < head_cycle) | |
1da177e4 | 843 | return 0; |
a69ed03c DC |
844 | else if (tail_cycle < head_cycle) { |
845 | ASSERT(tail_cycle == (head_cycle - 1)); | |
846 | free_bytes = tail_bytes - head_bytes; | |
1da177e4 LT |
847 | } else { |
848 | /* | |
849 | * The reservation head is behind the tail. | |
850 | * In this case we just want to return the size of the | |
851 | * log as the amount of space left. | |
852 | */ | |
a0fa2b67 | 853 | xfs_alert(log->l_mp, |
1da177e4 LT |
854 | "xlog_space_left: head behind tail\n" |
855 | " tail_cycle = %d, tail_bytes = %d\n" | |
856 | " GH cycle = %d, GH bytes = %d", | |
a69ed03c | 857 | tail_cycle, tail_bytes, head_cycle, head_bytes); |
1da177e4 LT |
858 | ASSERT(0); |
859 | free_bytes = log->l_logsize; | |
860 | } | |
861 | return free_bytes; | |
a69ed03c | 862 | } |
1da177e4 LT |
863 | |
864 | ||
865 | /* | |
866 | * Log function which is called when an io completes. | |
867 | * | |
868 | * The log manager needs its own routine, in order to control what | |
869 | * happens with the buffer after the write completes. | |
870 | */ | |
871 | void | |
872 | xlog_iodone(xfs_buf_t *bp) | |
873 | { | |
874 | xlog_in_core_t *iclog; | |
875 | xlog_t *l; | |
876 | int aborted; | |
877 | ||
878 | iclog = XFS_BUF_FSPRIVATE(bp, xlog_in_core_t *); | |
879 | ASSERT(XFS_BUF_FSPRIVATE2(bp, unsigned long) == (unsigned long) 2); | |
880 | XFS_BUF_SET_FSPRIVATE2(bp, (unsigned long)1); | |
881 | aborted = 0; | |
1da177e4 LT |
882 | l = iclog->ic_log; |
883 | ||
884 | /* | |
885 | * Race to shutdown the filesystem if we see an error. | |
886 | */ | |
887 | if (XFS_TEST_ERROR((XFS_BUF_GETERROR(bp)), l->l_mp, | |
888 | XFS_ERRTAG_IODONE_IOERR, XFS_RANDOM_IODONE_IOERR)) { | |
889 | xfs_ioerror_alert("xlog_iodone", l->l_mp, bp, XFS_BUF_ADDR(bp)); | |
890 | XFS_BUF_STALE(bp); | |
7d04a335 | 891 | xfs_force_shutdown(l->l_mp, SHUTDOWN_LOG_IO_ERROR); |
1da177e4 LT |
892 | /* |
893 | * This flag will be propagated to the trans-committed | |
894 | * callback routines to let them know that the log-commit | |
895 | * didn't succeed. | |
896 | */ | |
897 | aborted = XFS_LI_ABORTED; | |
898 | } else if (iclog->ic_state & XLOG_STATE_IOERROR) { | |
899 | aborted = XFS_LI_ABORTED; | |
900 | } | |
3db296f3 DC |
901 | |
902 | /* log I/O is always issued ASYNC */ | |
903 | ASSERT(XFS_BUF_ISASYNC(bp)); | |
1da177e4 | 904 | xlog_state_done_syncing(iclog, aborted); |
3db296f3 DC |
905 | /* |
906 | * do not reference the buffer (bp) here as we could race | |
907 | * with it being freed after writing the unmount record to the | |
908 | * log. | |
909 | */ | |
910 | ||
1da177e4 LT |
911 | } /* xlog_iodone */ |
912 | ||
1da177e4 LT |
913 | /* |
914 | * Return size of each in-core log record buffer. | |
915 | * | |
9da096fd | 916 | * All machines get 8 x 32kB buffers by default, unless tuned otherwise. |
1da177e4 LT |
917 | * |
918 | * If the filesystem blocksize is too large, we may need to choose a | |
919 | * larger size since the directory code currently logs entire blocks. | |
920 | */ | |
921 | ||
922 | STATIC void | |
923 | xlog_get_iclog_buffer_size(xfs_mount_t *mp, | |
924 | xlog_t *log) | |
925 | { | |
926 | int size; | |
927 | int xhdrs; | |
928 | ||
1cb51258 ES |
929 | if (mp->m_logbufs <= 0) |
930 | log->l_iclog_bufs = XLOG_MAX_ICLOGS; | |
931 | else | |
cfcbbbd0 | 932 | log->l_iclog_bufs = mp->m_logbufs; |
1da177e4 LT |
933 | |
934 | /* | |
935 | * Buffer size passed in from mount system call. | |
936 | */ | |
cfcbbbd0 | 937 | if (mp->m_logbsize > 0) { |
1da177e4 LT |
938 | size = log->l_iclog_size = mp->m_logbsize; |
939 | log->l_iclog_size_log = 0; | |
940 | while (size != 1) { | |
941 | log->l_iclog_size_log++; | |
942 | size >>= 1; | |
943 | } | |
944 | ||
62118709 | 945 | if (xfs_sb_version_haslogv2(&mp->m_sb)) { |
9da096fd MP |
946 | /* # headers = size / 32k |
947 | * one header holds cycles from 32k of data | |
1da177e4 LT |
948 | */ |
949 | ||
950 | xhdrs = mp->m_logbsize / XLOG_HEADER_CYCLE_SIZE; | |
951 | if (mp->m_logbsize % XLOG_HEADER_CYCLE_SIZE) | |
952 | xhdrs++; | |
953 | log->l_iclog_hsize = xhdrs << BBSHIFT; | |
954 | log->l_iclog_heads = xhdrs; | |
955 | } else { | |
956 | ASSERT(mp->m_logbsize <= XLOG_BIG_RECORD_BSIZE); | |
957 | log->l_iclog_hsize = BBSIZE; | |
958 | log->l_iclog_heads = 1; | |
959 | } | |
cfcbbbd0 | 960 | goto done; |
1da177e4 LT |
961 | } |
962 | ||
9da096fd | 963 | /* All machines use 32kB buffers by default. */ |
1cb51258 ES |
964 | log->l_iclog_size = XLOG_BIG_RECORD_BSIZE; |
965 | log->l_iclog_size_log = XLOG_BIG_RECORD_BSHIFT; | |
1da177e4 LT |
966 | |
967 | /* the default log size is 16k or 32k which is one header sector */ | |
968 | log->l_iclog_hsize = BBSIZE; | |
969 | log->l_iclog_heads = 1; | |
970 | ||
7153f8ba CH |
971 | done: |
972 | /* are we being asked to make the sizes selected above visible? */ | |
cfcbbbd0 NS |
973 | if (mp->m_logbufs == 0) |
974 | mp->m_logbufs = log->l_iclog_bufs; | |
975 | if (mp->m_logbsize == 0) | |
976 | mp->m_logbsize = log->l_iclog_size; | |
1da177e4 LT |
977 | } /* xlog_get_iclog_buffer_size */ |
978 | ||
979 | ||
980 | /* | |
981 | * This routine initializes some of the log structure for a given mount point. | |
982 | * Its primary purpose is to fill in enough, so recovery can occur. However, | |
983 | * some other stuff may be filled in too. | |
984 | */ | |
985 | STATIC xlog_t * | |
986 | xlog_alloc_log(xfs_mount_t *mp, | |
987 | xfs_buftarg_t *log_target, | |
988 | xfs_daddr_t blk_offset, | |
989 | int num_bblks) | |
990 | { | |
991 | xlog_t *log; | |
992 | xlog_rec_header_t *head; | |
993 | xlog_in_core_t **iclogp; | |
994 | xlog_in_core_t *iclog, *prev_iclog=NULL; | |
995 | xfs_buf_t *bp; | |
996 | int i; | |
a6cb767e | 997 | int error = ENOMEM; |
69ce58f0 | 998 | uint log2_size = 0; |
1da177e4 | 999 | |
644c3567 | 1000 | log = kmem_zalloc(sizeof(xlog_t), KM_MAYFAIL); |
a6cb767e | 1001 | if (!log) { |
a0fa2b67 | 1002 | xfs_warn(mp, "Log allocation failed: No memory!"); |
a6cb767e DC |
1003 | goto out; |
1004 | } | |
1da177e4 LT |
1005 | |
1006 | log->l_mp = mp; | |
1007 | log->l_targ = log_target; | |
1008 | log->l_logsize = BBTOB(num_bblks); | |
1009 | log->l_logBBstart = blk_offset; | |
1010 | log->l_logBBsize = num_bblks; | |
1011 | log->l_covered_state = XLOG_STATE_COVER_IDLE; | |
1012 | log->l_flags |= XLOG_ACTIVE_RECOVERY; | |
1013 | ||
1014 | log->l_prev_block = -1; | |
1da177e4 | 1015 | /* log->l_tail_lsn = 0x100000000LL; cycle = 1; current block = 0 */ |
1c3cb9ec DC |
1016 | xlog_assign_atomic_lsn(&log->l_tail_lsn, 1, 0); |
1017 | xlog_assign_atomic_lsn(&log->l_last_sync_lsn, 1, 0); | |
1da177e4 | 1018 | log->l_curr_cycle = 1; /* 0 is bad since this is initial value */ |
a69ed03c DC |
1019 | xlog_assign_grant_head(&log->l_grant_reserve_head, 1, 0); |
1020 | xlog_assign_grant_head(&log->l_grant_write_head, 1, 0); | |
10547941 DC |
1021 | INIT_LIST_HEAD(&log->l_reserveq); |
1022 | INIT_LIST_HEAD(&log->l_writeq); | |
3f16b985 DC |
1023 | spin_lock_init(&log->l_grant_reserve_lock); |
1024 | spin_lock_init(&log->l_grant_write_lock); | |
1da177e4 | 1025 | |
a6cb767e | 1026 | error = EFSCORRUPTED; |
62118709 | 1027 | if (xfs_sb_version_hassector(&mp->m_sb)) { |
69ce58f0 AE |
1028 | log2_size = mp->m_sb.sb_logsectlog; |
1029 | if (log2_size < BBSHIFT) { | |
a0fa2b67 DC |
1030 | xfs_warn(mp, "Log sector size too small (0x%x < 0x%x)", |
1031 | log2_size, BBSHIFT); | |
a6cb767e DC |
1032 | goto out_free_log; |
1033 | } | |
1034 | ||
69ce58f0 AE |
1035 | log2_size -= BBSHIFT; |
1036 | if (log2_size > mp->m_sectbb_log) { | |
a0fa2b67 DC |
1037 | xfs_warn(mp, "Log sector size too large (0x%x > 0x%x)", |
1038 | log2_size, mp->m_sectbb_log); | |
a6cb767e DC |
1039 | goto out_free_log; |
1040 | } | |
69ce58f0 AE |
1041 | |
1042 | /* for larger sector sizes, must have v2 or external log */ | |
1043 | if (log2_size && log->l_logBBstart > 0 && | |
1044 | !xfs_sb_version_haslogv2(&mp->m_sb)) { | |
a0fa2b67 DC |
1045 | xfs_warn(mp, |
1046 | "log sector size (0x%x) invalid for configuration.", | |
1047 | log2_size); | |
a6cb767e DC |
1048 | goto out_free_log; |
1049 | } | |
1da177e4 | 1050 | } |
69ce58f0 | 1051 | log->l_sectBBsize = 1 << log2_size; |
1da177e4 LT |
1052 | |
1053 | xlog_get_iclog_buffer_size(mp, log); | |
1054 | ||
a6cb767e | 1055 | error = ENOMEM; |
1da177e4 | 1056 | bp = xfs_buf_get_empty(log->l_iclog_size, mp->m_logdev_targp); |
644c3567 DC |
1057 | if (!bp) |
1058 | goto out_free_log; | |
1da177e4 | 1059 | XFS_BUF_SET_IODONE_FUNC(bp, xlog_iodone); |
1da177e4 LT |
1060 | XFS_BUF_SET_FSPRIVATE2(bp, (unsigned long)1); |
1061 | ASSERT(XFS_BUF_ISBUSY(bp)); | |
1062 | ASSERT(XFS_BUF_VALUSEMA(bp) <= 0); | |
1063 | log->l_xbuf = bp; | |
1064 | ||
007c61c6 | 1065 | spin_lock_init(&log->l_icloglock); |
eb40a875 | 1066 | init_waitqueue_head(&log->l_flush_wait); |
1da177e4 LT |
1067 | |
1068 | /* log record size must be multiple of BBSIZE; see xlog_rec_header_t */ | |
1069 | ASSERT((XFS_BUF_SIZE(bp) & BBMASK) == 0); | |
1070 | ||
1071 | iclogp = &log->l_iclog; | |
1072 | /* | |
1073 | * The amount of memory to allocate for the iclog structure is | |
1074 | * rather funky due to the way the structure is defined. It is | |
1075 | * done this way so that we can use different sizes for machines | |
1076 | * with different amounts of memory. See the definition of | |
1077 | * xlog_in_core_t in xfs_log_priv.h for details. | |
1078 | */ | |
1da177e4 LT |
1079 | ASSERT(log->l_iclog_size >= 4096); |
1080 | for (i=0; i < log->l_iclog_bufs; i++) { | |
644c3567 DC |
1081 | *iclogp = kmem_zalloc(sizeof(xlog_in_core_t), KM_MAYFAIL); |
1082 | if (!*iclogp) | |
1083 | goto out_free_iclog; | |
1084 | ||
1da177e4 | 1085 | iclog = *iclogp; |
1da177e4 LT |
1086 | iclog->ic_prev = prev_iclog; |
1087 | prev_iclog = iclog; | |
1fa40b01 | 1088 | |
686865f7 DC |
1089 | bp = xfs_buf_get_uncached(mp->m_logdev_targp, |
1090 | log->l_iclog_size, 0); | |
644c3567 DC |
1091 | if (!bp) |
1092 | goto out_free_iclog; | |
1fa40b01 CH |
1093 | if (!XFS_BUF_CPSEMA(bp)) |
1094 | ASSERT(0); | |
1095 | XFS_BUF_SET_IODONE_FUNC(bp, xlog_iodone); | |
1fa40b01 CH |
1096 | XFS_BUF_SET_FSPRIVATE2(bp, (unsigned long)1); |
1097 | iclog->ic_bp = bp; | |
b28708d6 | 1098 | iclog->ic_data = bp->b_addr; |
4679b2d3 | 1099 | #ifdef DEBUG |
1da177e4 | 1100 | log->l_iclog_bak[i] = (xfs_caddr_t)&(iclog->ic_header); |
4679b2d3 | 1101 | #endif |
1da177e4 LT |
1102 | head = &iclog->ic_header; |
1103 | memset(head, 0, sizeof(xlog_rec_header_t)); | |
b53e675d CH |
1104 | head->h_magicno = cpu_to_be32(XLOG_HEADER_MAGIC_NUM); |
1105 | head->h_version = cpu_to_be32( | |
62118709 | 1106 | xfs_sb_version_haslogv2(&log->l_mp->m_sb) ? 2 : 1); |
b53e675d | 1107 | head->h_size = cpu_to_be32(log->l_iclog_size); |
1da177e4 | 1108 | /* new fields */ |
b53e675d | 1109 | head->h_fmt = cpu_to_be32(XLOG_FMT); |
1da177e4 LT |
1110 | memcpy(&head->h_fs_uuid, &mp->m_sb.sb_uuid, sizeof(uuid_t)); |
1111 | ||
1da177e4 LT |
1112 | iclog->ic_size = XFS_BUF_SIZE(bp) - log->l_iclog_hsize; |
1113 | iclog->ic_state = XLOG_STATE_ACTIVE; | |
1114 | iclog->ic_log = log; | |
114d23aa DC |
1115 | atomic_set(&iclog->ic_refcnt, 0); |
1116 | spin_lock_init(&iclog->ic_callback_lock); | |
1da177e4 | 1117 | iclog->ic_callback_tail = &(iclog->ic_callback); |
b28708d6 | 1118 | iclog->ic_datap = (char *)iclog->ic_data + log->l_iclog_hsize; |
1da177e4 LT |
1119 | |
1120 | ASSERT(XFS_BUF_ISBUSY(iclog->ic_bp)); | |
1121 | ASSERT(XFS_BUF_VALUSEMA(iclog->ic_bp) <= 0); | |
eb40a875 DC |
1122 | init_waitqueue_head(&iclog->ic_force_wait); |
1123 | init_waitqueue_head(&iclog->ic_write_wait); | |
1da177e4 LT |
1124 | |
1125 | iclogp = &iclog->ic_next; | |
1126 | } | |
1127 | *iclogp = log->l_iclog; /* complete ring */ | |
1128 | log->l_iclog->ic_prev = prev_iclog; /* re-write 1st prev ptr */ | |
1129 | ||
71e330b5 DC |
1130 | error = xlog_cil_init(log); |
1131 | if (error) | |
1132 | goto out_free_iclog; | |
1da177e4 | 1133 | return log; |
644c3567 DC |
1134 | |
1135 | out_free_iclog: | |
1136 | for (iclog = log->l_iclog; iclog; iclog = prev_iclog) { | |
1137 | prev_iclog = iclog->ic_next; | |
eb40a875 | 1138 | if (iclog->ic_bp) |
644c3567 | 1139 | xfs_buf_free(iclog->ic_bp); |
644c3567 DC |
1140 | kmem_free(iclog); |
1141 | } | |
1142 | spinlock_destroy(&log->l_icloglock); | |
644c3567 DC |
1143 | xfs_buf_free(log->l_xbuf); |
1144 | out_free_log: | |
1145 | kmem_free(log); | |
a6cb767e DC |
1146 | out: |
1147 | return ERR_PTR(-error); | |
1da177e4 LT |
1148 | } /* xlog_alloc_log */ |
1149 | ||
1150 | ||
1151 | /* | |
1152 | * Write out the commit record of a transaction associated with the given | |
1153 | * ticket. Return the lsn of the commit record. | |
1154 | */ | |
1155 | STATIC int | |
55b66332 DC |
1156 | xlog_commit_record( |
1157 | struct log *log, | |
1158 | struct xlog_ticket *ticket, | |
1159 | struct xlog_in_core **iclog, | |
1160 | xfs_lsn_t *commitlsnp) | |
1da177e4 | 1161 | { |
55b66332 DC |
1162 | struct xfs_mount *mp = log->l_mp; |
1163 | int error; | |
1164 | struct xfs_log_iovec reg = { | |
1165 | .i_addr = NULL, | |
1166 | .i_len = 0, | |
1167 | .i_type = XLOG_REG_TYPE_COMMIT, | |
1168 | }; | |
1169 | struct xfs_log_vec vec = { | |
1170 | .lv_niovecs = 1, | |
1171 | .lv_iovecp = ®, | |
1172 | }; | |
1da177e4 LT |
1173 | |
1174 | ASSERT_ALWAYS(iclog); | |
55b66332 DC |
1175 | error = xlog_write(log, &vec, ticket, commitlsnp, iclog, |
1176 | XLOG_COMMIT_TRANS); | |
1177 | if (error) | |
7d04a335 | 1178 | xfs_force_shutdown(mp, SHUTDOWN_LOG_IO_ERROR); |
014c2544 | 1179 | return error; |
55b66332 | 1180 | } |
1da177e4 LT |
1181 | |
1182 | /* | |
1183 | * Push on the buffer cache code if we ever use more than 75% of the on-disk | |
1184 | * log space. This code pushes on the lsn which would supposedly free up | |
1185 | * the 25% which we want to leave free. We may need to adopt a policy which | |
1186 | * pushes on an lsn which is further along in the log once we reach the high | |
1187 | * water mark. In this manner, we would be creating a low water mark. | |
1188 | */ | |
a8272ce0 | 1189 | STATIC void |
2ced19cb DC |
1190 | xlog_grant_push_ail( |
1191 | struct log *log, | |
1192 | int need_bytes) | |
1da177e4 | 1193 | { |
2ced19cb | 1194 | xfs_lsn_t threshold_lsn = 0; |
84f3c683 | 1195 | xfs_lsn_t last_sync_lsn; |
2ced19cb DC |
1196 | int free_blocks; |
1197 | int free_bytes; | |
1198 | int threshold_block; | |
1199 | int threshold_cycle; | |
1200 | int free_threshold; | |
1201 | ||
1202 | ASSERT(BTOBB(need_bytes) < log->l_logBBsize); | |
1203 | ||
2ced19cb DC |
1204 | free_bytes = xlog_space_left(log, &log->l_grant_reserve_head); |
1205 | free_blocks = BTOBBT(free_bytes); | |
1206 | ||
1207 | /* | |
1208 | * Set the threshold for the minimum number of free blocks in the | |
1209 | * log to the maximum of what the caller needs, one quarter of the | |
1210 | * log, and 256 blocks. | |
1211 | */ | |
1212 | free_threshold = BTOBB(need_bytes); | |
1213 | free_threshold = MAX(free_threshold, (log->l_logBBsize >> 2)); | |
1214 | free_threshold = MAX(free_threshold, 256); | |
1215 | if (free_blocks >= free_threshold) | |
1216 | return; | |
1217 | ||
1c3cb9ec DC |
1218 | xlog_crack_atomic_lsn(&log->l_tail_lsn, &threshold_cycle, |
1219 | &threshold_block); | |
1220 | threshold_block += free_threshold; | |
1da177e4 | 1221 | if (threshold_block >= log->l_logBBsize) { |
2ced19cb DC |
1222 | threshold_block -= log->l_logBBsize; |
1223 | threshold_cycle += 1; | |
1da177e4 | 1224 | } |
2ced19cb DC |
1225 | threshold_lsn = xlog_assign_lsn(threshold_cycle, |
1226 | threshold_block); | |
1227 | /* | |
1228 | * Don't pass in an lsn greater than the lsn of the last | |
84f3c683 DC |
1229 | * log record known to be on disk. Use a snapshot of the last sync lsn |
1230 | * so that it doesn't change between the compare and the set. | |
1da177e4 | 1231 | */ |
84f3c683 DC |
1232 | last_sync_lsn = atomic64_read(&log->l_last_sync_lsn); |
1233 | if (XFS_LSN_CMP(threshold_lsn, last_sync_lsn) > 0) | |
1234 | threshold_lsn = last_sync_lsn; | |
2ced19cb DC |
1235 | |
1236 | /* | |
1237 | * Get the transaction layer to kick the dirty buffers out to | |
1238 | * disk asynchronously. No point in trying to do this if | |
1239 | * the filesystem is shutting down. | |
1240 | */ | |
1241 | if (!XLOG_FORCED_SHUTDOWN(log)) | |
fd074841 | 1242 | xfs_ail_push(log->l_ailp, threshold_lsn); |
2ced19cb | 1243 | } |
1da177e4 | 1244 | |
873ff550 CH |
1245 | /* |
1246 | * The bdstrat callback function for log bufs. This gives us a central | |
1247 | * place to trap bufs in case we get hit by a log I/O error and need to | |
1248 | * shutdown. Actually, in practice, even when we didn't get a log error, | |
1249 | * we transition the iclogs to IOERROR state *after* flushing all existing | |
1250 | * iclogs to disk. This is because we don't want anymore new transactions to be | |
1251 | * started or completed afterwards. | |
1252 | */ | |
1253 | STATIC int | |
1254 | xlog_bdstrat( | |
1255 | struct xfs_buf *bp) | |
1256 | { | |
1257 | struct xlog_in_core *iclog; | |
1258 | ||
1259 | iclog = XFS_BUF_FSPRIVATE(bp, xlog_in_core_t *); | |
1260 | if (iclog->ic_state & XLOG_STATE_IOERROR) { | |
1261 | XFS_BUF_ERROR(bp, EIO); | |
1262 | XFS_BUF_STALE(bp); | |
1a1a3e97 | 1263 | xfs_buf_ioend(bp, 0); |
873ff550 CH |
1264 | /* |
1265 | * It would seem logical to return EIO here, but we rely on | |
1266 | * the log state machine to propagate I/O errors instead of | |
1267 | * doing it here. | |
1268 | */ | |
1269 | return 0; | |
1270 | } | |
1271 | ||
1272 | bp->b_flags |= _XBF_RUN_QUEUES; | |
1273 | xfs_buf_iorequest(bp); | |
1274 | return 0; | |
1275 | } | |
1da177e4 LT |
1276 | |
1277 | /* | |
1278 | * Flush out the in-core log (iclog) to the on-disk log in an asynchronous | |
1279 | * fashion. Previously, we should have moved the current iclog | |
1280 | * ptr in the log to point to the next available iclog. This allows further | |
1281 | * write to continue while this code syncs out an iclog ready to go. | |
1282 | * Before an in-core log can be written out, the data section must be scanned | |
1283 | * to save away the 1st word of each BBSIZE block into the header. We replace | |
1284 | * it with the current cycle count. Each BBSIZE block is tagged with the | |
1285 | * cycle count because there in an implicit assumption that drives will | |
1286 | * guarantee that entire 512 byte blocks get written at once. In other words, | |
1287 | * we can't have part of a 512 byte block written and part not written. By | |
1288 | * tagging each block, we will know which blocks are valid when recovering | |
1289 | * after an unclean shutdown. | |
1290 | * | |
1291 | * This routine is single threaded on the iclog. No other thread can be in | |
1292 | * this routine with the same iclog. Changing contents of iclog can there- | |
1293 | * fore be done without grabbing the state machine lock. Updating the global | |
1294 | * log will require grabbing the lock though. | |
1295 | * | |
1296 | * The entire log manager uses a logical block numbering scheme. Only | |
1297 | * log_sync (and then only bwrite()) know about the fact that the log may | |
1298 | * not start with block zero on a given device. The log block start offset | |
1299 | * is added immediately before calling bwrite(). | |
1300 | */ | |
1301 | ||
a8272ce0 | 1302 | STATIC int |
1da177e4 LT |
1303 | xlog_sync(xlog_t *log, |
1304 | xlog_in_core_t *iclog) | |
1305 | { | |
1306 | xfs_caddr_t dptr; /* pointer to byte sized element */ | |
1307 | xfs_buf_t *bp; | |
b53e675d | 1308 | int i; |
1da177e4 LT |
1309 | uint count; /* byte count of bwrite */ |
1310 | uint count_init; /* initial count before roundup */ | |
1311 | int roundoff; /* roundoff to BB or stripe */ | |
1312 | int split = 0; /* split write into two regions */ | |
1313 | int error; | |
62118709 | 1314 | int v2 = xfs_sb_version_haslogv2(&log->l_mp->m_sb); |
1da177e4 LT |
1315 | |
1316 | XFS_STATS_INC(xs_log_writes); | |
155cc6b7 | 1317 | ASSERT(atomic_read(&iclog->ic_refcnt) == 0); |
1da177e4 LT |
1318 | |
1319 | /* Add for LR header */ | |
1320 | count_init = log->l_iclog_hsize + iclog->ic_offset; | |
1321 | ||
1322 | /* Round out the log write size */ | |
1323 | if (v2 && log->l_mp->m_sb.sb_logsunit > 1) { | |
1324 | /* we have a v2 stripe unit to use */ | |
1325 | count = XLOG_LSUNITTOB(log, XLOG_BTOLSUNIT(log, count_init)); | |
1326 | } else { | |
1327 | count = BBTOB(BTOBB(count_init)); | |
1328 | } | |
1329 | roundoff = count - count_init; | |
1330 | ASSERT(roundoff >= 0); | |
1331 | ASSERT((v2 && log->l_mp->m_sb.sb_logsunit > 1 && | |
1332 | roundoff < log->l_mp->m_sb.sb_logsunit) | |
1333 | || | |
1334 | (log->l_mp->m_sb.sb_logsunit <= 1 && | |
1335 | roundoff < BBTOB(1))); | |
1336 | ||
1337 | /* move grant heads by roundoff in sync */ | |
a69ed03c DC |
1338 | xlog_grant_add_space(log, &log->l_grant_reserve_head, roundoff); |
1339 | xlog_grant_add_space(log, &log->l_grant_write_head, roundoff); | |
1da177e4 LT |
1340 | |
1341 | /* put cycle number in every block */ | |
1342 | xlog_pack_data(log, iclog, roundoff); | |
1343 | ||
1344 | /* real byte length */ | |
1345 | if (v2) { | |
b53e675d CH |
1346 | iclog->ic_header.h_len = |
1347 | cpu_to_be32(iclog->ic_offset + roundoff); | |
1da177e4 | 1348 | } else { |
b53e675d CH |
1349 | iclog->ic_header.h_len = |
1350 | cpu_to_be32(iclog->ic_offset); | |
1da177e4 LT |
1351 | } |
1352 | ||
f5faad79 | 1353 | bp = iclog->ic_bp; |
1da177e4 LT |
1354 | ASSERT(XFS_BUF_FSPRIVATE2(bp, unsigned long) == (unsigned long)1); |
1355 | XFS_BUF_SET_FSPRIVATE2(bp, (unsigned long)2); | |
b53e675d | 1356 | XFS_BUF_SET_ADDR(bp, BLOCK_LSN(be64_to_cpu(iclog->ic_header.h_lsn))); |
1da177e4 LT |
1357 | |
1358 | XFS_STATS_ADD(xs_log_blocks, BTOBB(count)); | |
1359 | ||
1360 | /* Do we need to split this write into 2 parts? */ | |
1361 | if (XFS_BUF_ADDR(bp) + BTOBB(count) > log->l_logBBsize) { | |
1362 | split = count - (BBTOB(log->l_logBBsize - XFS_BUF_ADDR(bp))); | |
1363 | count = BBTOB(log->l_logBBsize - XFS_BUF_ADDR(bp)); | |
1364 | iclog->ic_bwritecnt = 2; /* split into 2 writes */ | |
1365 | } else { | |
1366 | iclog->ic_bwritecnt = 1; | |
1367 | } | |
511105b3 | 1368 | XFS_BUF_SET_COUNT(bp, count); |
1da177e4 | 1369 | XFS_BUF_SET_FSPRIVATE(bp, iclog); /* save for later */ |
f5faad79 | 1370 | XFS_BUF_ZEROFLAGS(bp); |
1da177e4 LT |
1371 | XFS_BUF_BUSY(bp); |
1372 | XFS_BUF_ASYNC(bp); | |
2ee1abad | 1373 | bp->b_flags |= XBF_LOG_BUFFER; |
651701d7 | 1374 | |
a27a263b CH |
1375 | if (log->l_mp->m_flags & XFS_MOUNT_BARRIER) { |
1376 | /* | |
1377 | * If we have an external log device, flush the data device | |
1378 | * before flushing the log to make sure all meta data | |
1379 | * written back from the AIL actually made it to disk | |
1380 | * before writing out the new log tail LSN in the log buffer. | |
1381 | */ | |
1382 | if (log->l_mp->m_logdev_targp != log->l_mp->m_ddev_targp) | |
1383 | xfs_blkdev_issue_flush(log->l_mp->m_ddev_targp); | |
f538d4da | 1384 | XFS_BUF_ORDERED(bp); |
a27a263b | 1385 | } |
1da177e4 LT |
1386 | |
1387 | ASSERT(XFS_BUF_ADDR(bp) <= log->l_logBBsize-1); | |
1388 | ASSERT(XFS_BUF_ADDR(bp) + BTOBB(count) <= log->l_logBBsize); | |
1389 | ||
1390 | xlog_verify_iclog(log, iclog, count, B_TRUE); | |
1391 | ||
1392 | /* account for log which doesn't start at block #0 */ | |
1393 | XFS_BUF_SET_ADDR(bp, XFS_BUF_ADDR(bp) + log->l_logBBstart); | |
1394 | /* | |
1395 | * Don't call xfs_bwrite here. We do log-syncs even when the filesystem | |
1396 | * is shutting down. | |
1397 | */ | |
1398 | XFS_BUF_WRITE(bp); | |
1399 | ||
873ff550 | 1400 | if ((error = xlog_bdstrat(bp))) { |
1da177e4 LT |
1401 | xfs_ioerror_alert("xlog_sync", log->l_mp, bp, |
1402 | XFS_BUF_ADDR(bp)); | |
014c2544 | 1403 | return error; |
1da177e4 LT |
1404 | } |
1405 | if (split) { | |
f5faad79 | 1406 | bp = iclog->ic_log->l_xbuf; |
1da177e4 LT |
1407 | ASSERT(XFS_BUF_FSPRIVATE2(bp, unsigned long) == |
1408 | (unsigned long)1); | |
1409 | XFS_BUF_SET_FSPRIVATE2(bp, (unsigned long)2); | |
1410 | XFS_BUF_SET_ADDR(bp, 0); /* logical 0 */ | |
1411 | XFS_BUF_SET_PTR(bp, (xfs_caddr_t)((__psint_t)&(iclog->ic_header)+ | |
1412 | (__psint_t)count), split); | |
1413 | XFS_BUF_SET_FSPRIVATE(bp, iclog); | |
f5faad79 | 1414 | XFS_BUF_ZEROFLAGS(bp); |
1da177e4 LT |
1415 | XFS_BUF_BUSY(bp); |
1416 | XFS_BUF_ASYNC(bp); | |
2ee1abad | 1417 | bp->b_flags |= XBF_LOG_BUFFER; |
f538d4da CH |
1418 | if (log->l_mp->m_flags & XFS_MOUNT_BARRIER) |
1419 | XFS_BUF_ORDERED(bp); | |
1da177e4 LT |
1420 | dptr = XFS_BUF_PTR(bp); |
1421 | /* | |
1422 | * Bump the cycle numbers at the start of each block | |
1423 | * since this part of the buffer is at the start of | |
1424 | * a new cycle. Watch out for the header magic number | |
1425 | * case, though. | |
1426 | */ | |
b53e675d | 1427 | for (i = 0; i < split; i += BBSIZE) { |
413d57c9 | 1428 | be32_add_cpu((__be32 *)dptr, 1); |
b53e675d | 1429 | if (be32_to_cpu(*(__be32 *)dptr) == XLOG_HEADER_MAGIC_NUM) |
413d57c9 | 1430 | be32_add_cpu((__be32 *)dptr, 1); |
1da177e4 LT |
1431 | dptr += BBSIZE; |
1432 | } | |
1433 | ||
1434 | ASSERT(XFS_BUF_ADDR(bp) <= log->l_logBBsize-1); | |
1435 | ASSERT(XFS_BUF_ADDR(bp) + BTOBB(count) <= log->l_logBBsize); | |
1436 | ||
c41564b5 | 1437 | /* account for internal log which doesn't start at block #0 */ |
1da177e4 LT |
1438 | XFS_BUF_SET_ADDR(bp, XFS_BUF_ADDR(bp) + log->l_logBBstart); |
1439 | XFS_BUF_WRITE(bp); | |
873ff550 | 1440 | if ((error = xlog_bdstrat(bp))) { |
1da177e4 LT |
1441 | xfs_ioerror_alert("xlog_sync (split)", log->l_mp, |
1442 | bp, XFS_BUF_ADDR(bp)); | |
014c2544 | 1443 | return error; |
1da177e4 LT |
1444 | } |
1445 | } | |
014c2544 | 1446 | return 0; |
1da177e4 LT |
1447 | } /* xlog_sync */ |
1448 | ||
1449 | ||
1450 | /* | |
c41564b5 | 1451 | * Deallocate a log structure |
1da177e4 | 1452 | */ |
a8272ce0 | 1453 | STATIC void |
c41564b5 | 1454 | xlog_dealloc_log(xlog_t *log) |
1da177e4 LT |
1455 | { |
1456 | xlog_in_core_t *iclog, *next_iclog; | |
1da177e4 LT |
1457 | int i; |
1458 | ||
71e330b5 DC |
1459 | xlog_cil_destroy(log); |
1460 | ||
44396476 DC |
1461 | /* |
1462 | * always need to ensure that the extra buffer does not point to memory | |
1463 | * owned by another log buffer before we free it. | |
1464 | */ | |
1465 | xfs_buf_set_empty(log->l_xbuf, log->l_iclog_size); | |
1466 | xfs_buf_free(log->l_xbuf); | |
1467 | ||
1da177e4 LT |
1468 | iclog = log->l_iclog; |
1469 | for (i=0; i<log->l_iclog_bufs; i++) { | |
1da177e4 | 1470 | xfs_buf_free(iclog->ic_bp); |
1da177e4 | 1471 | next_iclog = iclog->ic_next; |
f0e2d93c | 1472 | kmem_free(iclog); |
1da177e4 LT |
1473 | iclog = next_iclog; |
1474 | } | |
1da177e4 | 1475 | spinlock_destroy(&log->l_icloglock); |
1da177e4 | 1476 | |
1da177e4 | 1477 | log->l_mp->m_log = NULL; |
f0e2d93c | 1478 | kmem_free(log); |
c41564b5 | 1479 | } /* xlog_dealloc_log */ |
1da177e4 LT |
1480 | |
1481 | /* | |
1482 | * Update counters atomically now that memcpy is done. | |
1483 | */ | |
1484 | /* ARGSUSED */ | |
1485 | static inline void | |
1486 | xlog_state_finish_copy(xlog_t *log, | |
1487 | xlog_in_core_t *iclog, | |
1488 | int record_cnt, | |
1489 | int copy_bytes) | |
1490 | { | |
b22cd72c | 1491 | spin_lock(&log->l_icloglock); |
1da177e4 | 1492 | |
413d57c9 | 1493 | be32_add_cpu(&iclog->ic_header.h_num_logops, record_cnt); |
1da177e4 LT |
1494 | iclog->ic_offset += copy_bytes; |
1495 | ||
b22cd72c | 1496 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
1497 | } /* xlog_state_finish_copy */ |
1498 | ||
1499 | ||
1500 | ||
1501 | ||
7e9c6396 TS |
1502 | /* |
1503 | * print out info relating to regions written which consume | |
1504 | * the reservation | |
1505 | */ | |
71e330b5 DC |
1506 | void |
1507 | xlog_print_tic_res( | |
1508 | struct xfs_mount *mp, | |
1509 | struct xlog_ticket *ticket) | |
7e9c6396 TS |
1510 | { |
1511 | uint i; | |
1512 | uint ophdr_spc = ticket->t_res_num_ophdrs * (uint)sizeof(xlog_op_header_t); | |
1513 | ||
1514 | /* match with XLOG_REG_TYPE_* in xfs_log.h */ | |
1515 | static char *res_type_str[XLOG_REG_TYPE_MAX] = { | |
1516 | "bformat", | |
1517 | "bchunk", | |
1518 | "efi_format", | |
1519 | "efd_format", | |
1520 | "iformat", | |
1521 | "icore", | |
1522 | "iext", | |
1523 | "ibroot", | |
1524 | "ilocal", | |
1525 | "iattr_ext", | |
1526 | "iattr_broot", | |
1527 | "iattr_local", | |
1528 | "qformat", | |
1529 | "dquot", | |
1530 | "quotaoff", | |
1531 | "LR header", | |
1532 | "unmount", | |
1533 | "commit", | |
1534 | "trans header" | |
1535 | }; | |
1536 | static char *trans_type_str[XFS_TRANS_TYPE_MAX] = { | |
1537 | "SETATTR_NOT_SIZE", | |
1538 | "SETATTR_SIZE", | |
1539 | "INACTIVE", | |
1540 | "CREATE", | |
1541 | "CREATE_TRUNC", | |
1542 | "TRUNCATE_FILE", | |
1543 | "REMOVE", | |
1544 | "LINK", | |
1545 | "RENAME", | |
1546 | "MKDIR", | |
1547 | "RMDIR", | |
1548 | "SYMLINK", | |
1549 | "SET_DMATTRS", | |
1550 | "GROWFS", | |
1551 | "STRAT_WRITE", | |
1552 | "DIOSTRAT", | |
1553 | "WRITE_SYNC", | |
1554 | "WRITEID", | |
1555 | "ADDAFORK", | |
1556 | "ATTRINVAL", | |
1557 | "ATRUNCATE", | |
1558 | "ATTR_SET", | |
1559 | "ATTR_RM", | |
1560 | "ATTR_FLAG", | |
1561 | "CLEAR_AGI_BUCKET", | |
1562 | "QM_SBCHANGE", | |
1563 | "DUMMY1", | |
1564 | "DUMMY2", | |
1565 | "QM_QUOTAOFF", | |
1566 | "QM_DQALLOC", | |
1567 | "QM_SETQLIM", | |
1568 | "QM_DQCLUSTER", | |
1569 | "QM_QINOCREATE", | |
1570 | "QM_QUOTAOFF_END", | |
1571 | "SB_UNIT", | |
1572 | "FSYNC_TS", | |
1573 | "GROWFSRT_ALLOC", | |
1574 | "GROWFSRT_ZERO", | |
1575 | "GROWFSRT_FREE", | |
1576 | "SWAPEXT" | |
1577 | }; | |
1578 | ||
a0fa2b67 DC |
1579 | xfs_warn(mp, |
1580 | "xfs_log_write: reservation summary:\n" | |
1581 | " trans type = %s (%u)\n" | |
1582 | " unit res = %d bytes\n" | |
1583 | " current res = %d bytes\n" | |
1584 | " total reg = %u bytes (o/flow = %u bytes)\n" | |
1585 | " ophdrs = %u (ophdr space = %u bytes)\n" | |
1586 | " ophdr + reg = %u bytes\n" | |
1587 | " num regions = %u\n", | |
1588 | ((ticket->t_trans_type <= 0 || | |
1589 | ticket->t_trans_type > XFS_TRANS_TYPE_MAX) ? | |
1590 | "bad-trans-type" : trans_type_str[ticket->t_trans_type-1]), | |
1591 | ticket->t_trans_type, | |
1592 | ticket->t_unit_res, | |
1593 | ticket->t_curr_res, | |
1594 | ticket->t_res_arr_sum, ticket->t_res_o_flow, | |
1595 | ticket->t_res_num_ophdrs, ophdr_spc, | |
1596 | ticket->t_res_arr_sum + | |
1597 | ticket->t_res_o_flow + ophdr_spc, | |
1598 | ticket->t_res_num); | |
7e9c6396 TS |
1599 | |
1600 | for (i = 0; i < ticket->t_res_num; i++) { | |
a0fa2b67 DC |
1601 | uint r_type = ticket->t_res_arr[i].r_type; |
1602 | xfs_warn(mp, "region[%u]: %s - %u bytes\n", i, | |
7e9c6396 TS |
1603 | ((r_type <= 0 || r_type > XLOG_REG_TYPE_MAX) ? |
1604 | "bad-rtype" : res_type_str[r_type-1]), | |
1605 | ticket->t_res_arr[i].r_len); | |
1606 | } | |
169a7b07 | 1607 | |
a0fa2b67 | 1608 | xfs_alert_tag(mp, XFS_PTAG_LOGRES, |
169a7b07 DC |
1609 | "xfs_log_write: reservation ran out. Need to up reservation"); |
1610 | xfs_force_shutdown(mp, SHUTDOWN_CORRUPT_INCORE); | |
7e9c6396 | 1611 | } |
7e9c6396 | 1612 | |
b5203cd0 DC |
1613 | /* |
1614 | * Calculate the potential space needed by the log vector. Each region gets | |
1615 | * its own xlog_op_header_t and may need to be double word aligned. | |
1616 | */ | |
1617 | static int | |
1618 | xlog_write_calc_vec_length( | |
1619 | struct xlog_ticket *ticket, | |
55b66332 | 1620 | struct xfs_log_vec *log_vector) |
b5203cd0 | 1621 | { |
55b66332 | 1622 | struct xfs_log_vec *lv; |
b5203cd0 DC |
1623 | int headers = 0; |
1624 | int len = 0; | |
1625 | int i; | |
1626 | ||
1627 | /* acct for start rec of xact */ | |
1628 | if (ticket->t_flags & XLOG_TIC_INITED) | |
1629 | headers++; | |
1630 | ||
55b66332 DC |
1631 | for (lv = log_vector; lv; lv = lv->lv_next) { |
1632 | headers += lv->lv_niovecs; | |
1633 | ||
1634 | for (i = 0; i < lv->lv_niovecs; i++) { | |
1635 | struct xfs_log_iovec *vecp = &lv->lv_iovecp[i]; | |
b5203cd0 | 1636 | |
55b66332 DC |
1637 | len += vecp->i_len; |
1638 | xlog_tic_add_region(ticket, vecp->i_len, vecp->i_type); | |
1639 | } | |
b5203cd0 DC |
1640 | } |
1641 | ||
1642 | ticket->t_res_num_ophdrs += headers; | |
1643 | len += headers * sizeof(struct xlog_op_header); | |
1644 | ||
1645 | return len; | |
1646 | } | |
1647 | ||
1648 | /* | |
1649 | * If first write for transaction, insert start record We can't be trying to | |
1650 | * commit if we are inited. We can't have any "partial_copy" if we are inited. | |
1651 | */ | |
1652 | static int | |
1653 | xlog_write_start_rec( | |
e6b1f273 | 1654 | struct xlog_op_header *ophdr, |
b5203cd0 DC |
1655 | struct xlog_ticket *ticket) |
1656 | { | |
b5203cd0 DC |
1657 | if (!(ticket->t_flags & XLOG_TIC_INITED)) |
1658 | return 0; | |
1659 | ||
1660 | ophdr->oh_tid = cpu_to_be32(ticket->t_tid); | |
1661 | ophdr->oh_clientid = ticket->t_clientid; | |
1662 | ophdr->oh_len = 0; | |
1663 | ophdr->oh_flags = XLOG_START_TRANS; | |
1664 | ophdr->oh_res2 = 0; | |
1665 | ||
1666 | ticket->t_flags &= ~XLOG_TIC_INITED; | |
1667 | ||
1668 | return sizeof(struct xlog_op_header); | |
1669 | } | |
1670 | ||
1671 | static xlog_op_header_t * | |
1672 | xlog_write_setup_ophdr( | |
1673 | struct log *log, | |
e6b1f273 | 1674 | struct xlog_op_header *ophdr, |
b5203cd0 DC |
1675 | struct xlog_ticket *ticket, |
1676 | uint flags) | |
1677 | { | |
b5203cd0 DC |
1678 | ophdr->oh_tid = cpu_to_be32(ticket->t_tid); |
1679 | ophdr->oh_clientid = ticket->t_clientid; | |
1680 | ophdr->oh_res2 = 0; | |
1681 | ||
1682 | /* are we copying a commit or unmount record? */ | |
1683 | ophdr->oh_flags = flags; | |
1684 | ||
1685 | /* | |
1686 | * We've seen logs corrupted with bad transaction client ids. This | |
1687 | * makes sure that XFS doesn't generate them on. Turn this into an EIO | |
1688 | * and shut down the filesystem. | |
1689 | */ | |
1690 | switch (ophdr->oh_clientid) { | |
1691 | case XFS_TRANSACTION: | |
1692 | case XFS_VOLUME: | |
1693 | case XFS_LOG: | |
1694 | break; | |
1695 | default: | |
a0fa2b67 | 1696 | xfs_warn(log->l_mp, |
b5203cd0 DC |
1697 | "Bad XFS transaction clientid 0x%x in ticket 0x%p", |
1698 | ophdr->oh_clientid, ticket); | |
1699 | return NULL; | |
1700 | } | |
1701 | ||
1702 | return ophdr; | |
1703 | } | |
1704 | ||
1705 | /* | |
1706 | * Set up the parameters of the region copy into the log. This has | |
1707 | * to handle region write split across multiple log buffers - this | |
1708 | * state is kept external to this function so that this code can | |
1709 | * can be written in an obvious, self documenting manner. | |
1710 | */ | |
1711 | static int | |
1712 | xlog_write_setup_copy( | |
1713 | struct xlog_ticket *ticket, | |
1714 | struct xlog_op_header *ophdr, | |
1715 | int space_available, | |
1716 | int space_required, | |
1717 | int *copy_off, | |
1718 | int *copy_len, | |
1719 | int *last_was_partial_copy, | |
1720 | int *bytes_consumed) | |
1721 | { | |
1722 | int still_to_copy; | |
1723 | ||
1724 | still_to_copy = space_required - *bytes_consumed; | |
1725 | *copy_off = *bytes_consumed; | |
1726 | ||
1727 | if (still_to_copy <= space_available) { | |
1728 | /* write of region completes here */ | |
1729 | *copy_len = still_to_copy; | |
1730 | ophdr->oh_len = cpu_to_be32(*copy_len); | |
1731 | if (*last_was_partial_copy) | |
1732 | ophdr->oh_flags |= (XLOG_END_TRANS|XLOG_WAS_CONT_TRANS); | |
1733 | *last_was_partial_copy = 0; | |
1734 | *bytes_consumed = 0; | |
1735 | return 0; | |
1736 | } | |
1737 | ||
1738 | /* partial write of region, needs extra log op header reservation */ | |
1739 | *copy_len = space_available; | |
1740 | ophdr->oh_len = cpu_to_be32(*copy_len); | |
1741 | ophdr->oh_flags |= XLOG_CONTINUE_TRANS; | |
1742 | if (*last_was_partial_copy) | |
1743 | ophdr->oh_flags |= XLOG_WAS_CONT_TRANS; | |
1744 | *bytes_consumed += *copy_len; | |
1745 | (*last_was_partial_copy)++; | |
1746 | ||
1747 | /* account for new log op header */ | |
1748 | ticket->t_curr_res -= sizeof(struct xlog_op_header); | |
1749 | ticket->t_res_num_ophdrs++; | |
1750 | ||
1751 | return sizeof(struct xlog_op_header); | |
1752 | } | |
1753 | ||
1754 | static int | |
1755 | xlog_write_copy_finish( | |
1756 | struct log *log, | |
1757 | struct xlog_in_core *iclog, | |
1758 | uint flags, | |
1759 | int *record_cnt, | |
1760 | int *data_cnt, | |
1761 | int *partial_copy, | |
1762 | int *partial_copy_len, | |
1763 | int log_offset, | |
1764 | struct xlog_in_core **commit_iclog) | |
1765 | { | |
1766 | if (*partial_copy) { | |
1767 | /* | |
1768 | * This iclog has already been marked WANT_SYNC by | |
1769 | * xlog_state_get_iclog_space. | |
1770 | */ | |
1771 | xlog_state_finish_copy(log, iclog, *record_cnt, *data_cnt); | |
1772 | *record_cnt = 0; | |
1773 | *data_cnt = 0; | |
1774 | return xlog_state_release_iclog(log, iclog); | |
1775 | } | |
1776 | ||
1777 | *partial_copy = 0; | |
1778 | *partial_copy_len = 0; | |
1779 | ||
1780 | if (iclog->ic_size - log_offset <= sizeof(xlog_op_header_t)) { | |
1781 | /* no more space in this iclog - push it. */ | |
1782 | xlog_state_finish_copy(log, iclog, *record_cnt, *data_cnt); | |
1783 | *record_cnt = 0; | |
1784 | *data_cnt = 0; | |
1785 | ||
1786 | spin_lock(&log->l_icloglock); | |
1787 | xlog_state_want_sync(log, iclog); | |
1788 | spin_unlock(&log->l_icloglock); | |
1789 | ||
1790 | if (!commit_iclog) | |
1791 | return xlog_state_release_iclog(log, iclog); | |
1792 | ASSERT(flags & XLOG_COMMIT_TRANS); | |
1793 | *commit_iclog = iclog; | |
1794 | } | |
1795 | ||
1796 | return 0; | |
1797 | } | |
1798 | ||
1da177e4 LT |
1799 | /* |
1800 | * Write some region out to in-core log | |
1801 | * | |
1802 | * This will be called when writing externally provided regions or when | |
1803 | * writing out a commit record for a given transaction. | |
1804 | * | |
1805 | * General algorithm: | |
1806 | * 1. Find total length of this write. This may include adding to the | |
1807 | * lengths passed in. | |
1808 | * 2. Check whether we violate the tickets reservation. | |
1809 | * 3. While writing to this iclog | |
1810 | * A. Reserve as much space in this iclog as can get | |
1811 | * B. If this is first write, save away start lsn | |
1812 | * C. While writing this region: | |
1813 | * 1. If first write of transaction, write start record | |
1814 | * 2. Write log operation header (header per region) | |
1815 | * 3. Find out if we can fit entire region into this iclog | |
1816 | * 4. Potentially, verify destination memcpy ptr | |
1817 | * 5. Memcpy (partial) region | |
1818 | * 6. If partial copy, release iclog; otherwise, continue | |
1819 | * copying more regions into current iclog | |
1820 | * 4. Mark want sync bit (in simulation mode) | |
1821 | * 5. Release iclog for potential flush to on-disk log. | |
1822 | * | |
1823 | * ERRORS: | |
1824 | * 1. Panic if reservation is overrun. This should never happen since | |
1825 | * reservation amounts are generated internal to the filesystem. | |
1826 | * NOTES: | |
1827 | * 1. Tickets are single threaded data structures. | |
1828 | * 2. The XLOG_END_TRANS & XLOG_CONTINUE_TRANS flags are passed down to the | |
1829 | * syncing routine. When a single log_write region needs to span | |
1830 | * multiple in-core logs, the XLOG_CONTINUE_TRANS bit should be set | |
1831 | * on all log operation writes which don't contain the end of the | |
1832 | * region. The XLOG_END_TRANS bit is used for the in-core log | |
1833 | * operation which contains the end of the continued log_write region. | |
1834 | * 3. When xlog_state_get_iclog_space() grabs the rest of the current iclog, | |
1835 | * we don't really know exactly how much space will be used. As a result, | |
1836 | * we don't update ic_offset until the end when we know exactly how many | |
1837 | * bytes have been written out. | |
1838 | */ | |
71e330b5 | 1839 | int |
35a8a72f | 1840 | xlog_write( |
55b66332 DC |
1841 | struct log *log, |
1842 | struct xfs_log_vec *log_vector, | |
35a8a72f CH |
1843 | struct xlog_ticket *ticket, |
1844 | xfs_lsn_t *start_lsn, | |
1845 | struct xlog_in_core **commit_iclog, | |
1846 | uint flags) | |
1da177e4 | 1847 | { |
99428ad0 | 1848 | struct xlog_in_core *iclog = NULL; |
55b66332 DC |
1849 | struct xfs_log_iovec *vecp; |
1850 | struct xfs_log_vec *lv; | |
99428ad0 CH |
1851 | int len; |
1852 | int index; | |
1853 | int partial_copy = 0; | |
1854 | int partial_copy_len = 0; | |
1855 | int contwr = 0; | |
1856 | int record_cnt = 0; | |
1857 | int data_cnt = 0; | |
1858 | int error; | |
1859 | ||
1860 | *start_lsn = 0; | |
1861 | ||
55b66332 | 1862 | len = xlog_write_calc_vec_length(ticket, log_vector); |
71e330b5 DC |
1863 | if (log->l_cilp) { |
1864 | /* | |
1865 | * Region headers and bytes are already accounted for. | |
1866 | * We only need to take into account start records and | |
1867 | * split regions in this function. | |
1868 | */ | |
1869 | if (ticket->t_flags & XLOG_TIC_INITED) | |
1870 | ticket->t_curr_res -= sizeof(xlog_op_header_t); | |
1871 | ||
1872 | /* | |
1873 | * Commit record headers need to be accounted for. These | |
1874 | * come in as separate writes so are easy to detect. | |
1875 | */ | |
1876 | if (flags & (XLOG_COMMIT_TRANS | XLOG_UNMOUNT_TRANS)) | |
1877 | ticket->t_curr_res -= sizeof(xlog_op_header_t); | |
1878 | } else | |
1879 | ticket->t_curr_res -= len; | |
1880 | ||
1881 | if (ticket->t_curr_res < 0) | |
55b66332 | 1882 | xlog_print_tic_res(log->l_mp, ticket); |
1da177e4 | 1883 | |
55b66332 DC |
1884 | index = 0; |
1885 | lv = log_vector; | |
1886 | vecp = lv->lv_iovecp; | |
1887 | while (lv && index < lv->lv_niovecs) { | |
e6b1f273 | 1888 | void *ptr; |
99428ad0 | 1889 | int log_offset; |
1da177e4 | 1890 | |
99428ad0 CH |
1891 | error = xlog_state_get_iclog_space(log, len, &iclog, ticket, |
1892 | &contwr, &log_offset); | |
1893 | if (error) | |
1894 | return error; | |
1da177e4 | 1895 | |
99428ad0 | 1896 | ASSERT(log_offset <= iclog->ic_size - 1); |
e6b1f273 | 1897 | ptr = iclog->ic_datap + log_offset; |
1da177e4 | 1898 | |
99428ad0 CH |
1899 | /* start_lsn is the first lsn written to. That's all we need. */ |
1900 | if (!*start_lsn) | |
1901 | *start_lsn = be64_to_cpu(iclog->ic_header.h_lsn); | |
b5203cd0 | 1902 | |
99428ad0 CH |
1903 | /* |
1904 | * This loop writes out as many regions as can fit in the amount | |
1905 | * of space which was allocated by xlog_state_get_iclog_space(). | |
1906 | */ | |
55b66332 DC |
1907 | while (lv && index < lv->lv_niovecs) { |
1908 | struct xfs_log_iovec *reg = &vecp[index]; | |
99428ad0 CH |
1909 | struct xlog_op_header *ophdr; |
1910 | int start_rec_copy; | |
1911 | int copy_len; | |
1912 | int copy_off; | |
1913 | ||
55b66332 | 1914 | ASSERT(reg->i_len % sizeof(__int32_t) == 0); |
e6b1f273 | 1915 | ASSERT((unsigned long)ptr % sizeof(__int32_t) == 0); |
99428ad0 CH |
1916 | |
1917 | start_rec_copy = xlog_write_start_rec(ptr, ticket); | |
1918 | if (start_rec_copy) { | |
1919 | record_cnt++; | |
e6b1f273 | 1920 | xlog_write_adv_cnt(&ptr, &len, &log_offset, |
99428ad0 CH |
1921 | start_rec_copy); |
1922 | } | |
b5203cd0 | 1923 | |
99428ad0 CH |
1924 | ophdr = xlog_write_setup_ophdr(log, ptr, ticket, flags); |
1925 | if (!ophdr) | |
1926 | return XFS_ERROR(EIO); | |
1927 | ||
e6b1f273 | 1928 | xlog_write_adv_cnt(&ptr, &len, &log_offset, |
99428ad0 CH |
1929 | sizeof(struct xlog_op_header)); |
1930 | ||
1931 | len += xlog_write_setup_copy(ticket, ophdr, | |
1932 | iclog->ic_size-log_offset, | |
55b66332 | 1933 | reg->i_len, |
99428ad0 CH |
1934 | ©_off, ©_len, |
1935 | &partial_copy, | |
1936 | &partial_copy_len); | |
1937 | xlog_verify_dest_ptr(log, ptr); | |
1938 | ||
1939 | /* copy region */ | |
1940 | ASSERT(copy_len >= 0); | |
e6b1f273 CH |
1941 | memcpy(ptr, reg->i_addr + copy_off, copy_len); |
1942 | xlog_write_adv_cnt(&ptr, &len, &log_offset, copy_len); | |
99428ad0 CH |
1943 | |
1944 | copy_len += start_rec_copy + sizeof(xlog_op_header_t); | |
1945 | record_cnt++; | |
1946 | data_cnt += contwr ? copy_len : 0; | |
1947 | ||
1948 | error = xlog_write_copy_finish(log, iclog, flags, | |
1949 | &record_cnt, &data_cnt, | |
1950 | &partial_copy, | |
1951 | &partial_copy_len, | |
1952 | log_offset, | |
1953 | commit_iclog); | |
1954 | if (error) | |
1955 | return error; | |
1956 | ||
1957 | /* | |
1958 | * if we had a partial copy, we need to get more iclog | |
1959 | * space but we don't want to increment the region | |
1960 | * index because there is still more is this region to | |
1961 | * write. | |
1962 | * | |
1963 | * If we completed writing this region, and we flushed | |
1964 | * the iclog (indicated by resetting of the record | |
1965 | * count), then we also need to get more log space. If | |
1966 | * this was the last record, though, we are done and | |
1967 | * can just return. | |
1968 | */ | |
1969 | if (partial_copy) | |
1970 | break; | |
1971 | ||
55b66332 DC |
1972 | if (++index == lv->lv_niovecs) { |
1973 | lv = lv->lv_next; | |
1974 | index = 0; | |
1975 | if (lv) | |
1976 | vecp = lv->lv_iovecp; | |
1977 | } | |
99428ad0 | 1978 | if (record_cnt == 0) { |
55b66332 | 1979 | if (!lv) |
99428ad0 CH |
1980 | return 0; |
1981 | break; | |
1982 | } | |
1983 | } | |
1984 | } | |
1985 | ||
1986 | ASSERT(len == 0); | |
1987 | ||
1988 | xlog_state_finish_copy(log, iclog, record_cnt, data_cnt); | |
1989 | if (!commit_iclog) | |
1990 | return xlog_state_release_iclog(log, iclog); | |
1da177e4 | 1991 | |
1da177e4 LT |
1992 | ASSERT(flags & XLOG_COMMIT_TRANS); |
1993 | *commit_iclog = iclog; | |
1994 | return 0; | |
99428ad0 | 1995 | } |
1da177e4 LT |
1996 | |
1997 | ||
1998 | /***************************************************************************** | |
1999 | * | |
2000 | * State Machine functions | |
2001 | * | |
2002 | ***************************************************************************** | |
2003 | */ | |
2004 | ||
2005 | /* Clean iclogs starting from the head. This ordering must be | |
2006 | * maintained, so an iclog doesn't become ACTIVE beyond one that | |
2007 | * is SYNCING. This is also required to maintain the notion that we use | |
12017faf | 2008 | * a ordered wait queue to hold off would be writers to the log when every |
1da177e4 LT |
2009 | * iclog is trying to sync to disk. |
2010 | * | |
2011 | * State Change: DIRTY -> ACTIVE | |
2012 | */ | |
ba0f32d4 | 2013 | STATIC void |
1da177e4 LT |
2014 | xlog_state_clean_log(xlog_t *log) |
2015 | { | |
2016 | xlog_in_core_t *iclog; | |
2017 | int changed = 0; | |
2018 | ||
2019 | iclog = log->l_iclog; | |
2020 | do { | |
2021 | if (iclog->ic_state == XLOG_STATE_DIRTY) { | |
2022 | iclog->ic_state = XLOG_STATE_ACTIVE; | |
2023 | iclog->ic_offset = 0; | |
114d23aa | 2024 | ASSERT(iclog->ic_callback == NULL); |
1da177e4 LT |
2025 | /* |
2026 | * If the number of ops in this iclog indicate it just | |
2027 | * contains the dummy transaction, we can | |
2028 | * change state into IDLE (the second time around). | |
2029 | * Otherwise we should change the state into | |
2030 | * NEED a dummy. | |
2031 | * We don't need to cover the dummy. | |
2032 | */ | |
2033 | if (!changed && | |
b53e675d CH |
2034 | (be32_to_cpu(iclog->ic_header.h_num_logops) == |
2035 | XLOG_COVER_OPS)) { | |
1da177e4 LT |
2036 | changed = 1; |
2037 | } else { | |
2038 | /* | |
2039 | * We have two dirty iclogs so start over | |
2040 | * This could also be num of ops indicates | |
2041 | * this is not the dummy going out. | |
2042 | */ | |
2043 | changed = 2; | |
2044 | } | |
2045 | iclog->ic_header.h_num_logops = 0; | |
2046 | memset(iclog->ic_header.h_cycle_data, 0, | |
2047 | sizeof(iclog->ic_header.h_cycle_data)); | |
2048 | iclog->ic_header.h_lsn = 0; | |
2049 | } else if (iclog->ic_state == XLOG_STATE_ACTIVE) | |
2050 | /* do nothing */; | |
2051 | else | |
2052 | break; /* stop cleaning */ | |
2053 | iclog = iclog->ic_next; | |
2054 | } while (iclog != log->l_iclog); | |
2055 | ||
2056 | /* log is locked when we are called */ | |
2057 | /* | |
2058 | * Change state for the dummy log recording. | |
2059 | * We usually go to NEED. But we go to NEED2 if the changed indicates | |
2060 | * we are done writing the dummy record. | |
2061 | * If we are done with the second dummy recored (DONE2), then | |
2062 | * we go to IDLE. | |
2063 | */ | |
2064 | if (changed) { | |
2065 | switch (log->l_covered_state) { | |
2066 | case XLOG_STATE_COVER_IDLE: | |
2067 | case XLOG_STATE_COVER_NEED: | |
2068 | case XLOG_STATE_COVER_NEED2: | |
2069 | log->l_covered_state = XLOG_STATE_COVER_NEED; | |
2070 | break; | |
2071 | ||
2072 | case XLOG_STATE_COVER_DONE: | |
2073 | if (changed == 1) | |
2074 | log->l_covered_state = XLOG_STATE_COVER_NEED2; | |
2075 | else | |
2076 | log->l_covered_state = XLOG_STATE_COVER_NEED; | |
2077 | break; | |
2078 | ||
2079 | case XLOG_STATE_COVER_DONE2: | |
2080 | if (changed == 1) | |
2081 | log->l_covered_state = XLOG_STATE_COVER_IDLE; | |
2082 | else | |
2083 | log->l_covered_state = XLOG_STATE_COVER_NEED; | |
2084 | break; | |
2085 | ||
2086 | default: | |
2087 | ASSERT(0); | |
2088 | } | |
2089 | } | |
2090 | } /* xlog_state_clean_log */ | |
2091 | ||
2092 | STATIC xfs_lsn_t | |
2093 | xlog_get_lowest_lsn( | |
2094 | xlog_t *log) | |
2095 | { | |
2096 | xlog_in_core_t *lsn_log; | |
2097 | xfs_lsn_t lowest_lsn, lsn; | |
2098 | ||
2099 | lsn_log = log->l_iclog; | |
2100 | lowest_lsn = 0; | |
2101 | do { | |
2102 | if (!(lsn_log->ic_state & (XLOG_STATE_ACTIVE|XLOG_STATE_DIRTY))) { | |
b53e675d | 2103 | lsn = be64_to_cpu(lsn_log->ic_header.h_lsn); |
1da177e4 LT |
2104 | if ((lsn && !lowest_lsn) || |
2105 | (XFS_LSN_CMP(lsn, lowest_lsn) < 0)) { | |
2106 | lowest_lsn = lsn; | |
2107 | } | |
2108 | } | |
2109 | lsn_log = lsn_log->ic_next; | |
2110 | } while (lsn_log != log->l_iclog); | |
014c2544 | 2111 | return lowest_lsn; |
1da177e4 LT |
2112 | } |
2113 | ||
2114 | ||
2115 | STATIC void | |
2116 | xlog_state_do_callback( | |
2117 | xlog_t *log, | |
2118 | int aborted, | |
2119 | xlog_in_core_t *ciclog) | |
2120 | { | |
2121 | xlog_in_core_t *iclog; | |
2122 | xlog_in_core_t *first_iclog; /* used to know when we've | |
2123 | * processed all iclogs once */ | |
2124 | xfs_log_callback_t *cb, *cb_next; | |
2125 | int flushcnt = 0; | |
2126 | xfs_lsn_t lowest_lsn; | |
2127 | int ioerrors; /* counter: iclogs with errors */ | |
2128 | int loopdidcallbacks; /* flag: inner loop did callbacks*/ | |
2129 | int funcdidcallbacks; /* flag: function did callbacks */ | |
2130 | int repeats; /* for issuing console warnings if | |
2131 | * looping too many times */ | |
d748c623 | 2132 | int wake = 0; |
1da177e4 | 2133 | |
b22cd72c | 2134 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
2135 | first_iclog = iclog = log->l_iclog; |
2136 | ioerrors = 0; | |
2137 | funcdidcallbacks = 0; | |
2138 | repeats = 0; | |
2139 | ||
2140 | do { | |
2141 | /* | |
2142 | * Scan all iclogs starting with the one pointed to by the | |
2143 | * log. Reset this starting point each time the log is | |
2144 | * unlocked (during callbacks). | |
2145 | * | |
2146 | * Keep looping through iclogs until one full pass is made | |
2147 | * without running any callbacks. | |
2148 | */ | |
2149 | first_iclog = log->l_iclog; | |
2150 | iclog = log->l_iclog; | |
2151 | loopdidcallbacks = 0; | |
2152 | repeats++; | |
2153 | ||
2154 | do { | |
2155 | ||
2156 | /* skip all iclogs in the ACTIVE & DIRTY states */ | |
2157 | if (iclog->ic_state & | |
2158 | (XLOG_STATE_ACTIVE|XLOG_STATE_DIRTY)) { | |
2159 | iclog = iclog->ic_next; | |
2160 | continue; | |
2161 | } | |
2162 | ||
2163 | /* | |
2164 | * Between marking a filesystem SHUTDOWN and stopping | |
2165 | * the log, we do flush all iclogs to disk (if there | |
2166 | * wasn't a log I/O error). So, we do want things to | |
2167 | * go smoothly in case of just a SHUTDOWN w/o a | |
2168 | * LOG_IO_ERROR. | |
2169 | */ | |
2170 | if (!(iclog->ic_state & XLOG_STATE_IOERROR)) { | |
2171 | /* | |
2172 | * Can only perform callbacks in order. Since | |
2173 | * this iclog is not in the DONE_SYNC/ | |
2174 | * DO_CALLBACK state, we skip the rest and | |
2175 | * just try to clean up. If we set our iclog | |
2176 | * to DO_CALLBACK, we will not process it when | |
2177 | * we retry since a previous iclog is in the | |
2178 | * CALLBACK and the state cannot change since | |
b22cd72c | 2179 | * we are holding the l_icloglock. |
1da177e4 LT |
2180 | */ |
2181 | if (!(iclog->ic_state & | |
2182 | (XLOG_STATE_DONE_SYNC | | |
2183 | XLOG_STATE_DO_CALLBACK))) { | |
2184 | if (ciclog && (ciclog->ic_state == | |
2185 | XLOG_STATE_DONE_SYNC)) { | |
2186 | ciclog->ic_state = XLOG_STATE_DO_CALLBACK; | |
2187 | } | |
2188 | break; | |
2189 | } | |
2190 | /* | |
2191 | * We now have an iclog that is in either the | |
2192 | * DO_CALLBACK or DONE_SYNC states. The other | |
2193 | * states (WANT_SYNC, SYNCING, or CALLBACK were | |
2194 | * caught by the above if and are going to | |
2195 | * clean (i.e. we aren't doing their callbacks) | |
2196 | * see the above if. | |
2197 | */ | |
2198 | ||
2199 | /* | |
2200 | * We will do one more check here to see if we | |
2201 | * have chased our tail around. | |
2202 | */ | |
2203 | ||
2204 | lowest_lsn = xlog_get_lowest_lsn(log); | |
b53e675d CH |
2205 | if (lowest_lsn && |
2206 | XFS_LSN_CMP(lowest_lsn, | |
84f3c683 | 2207 | be64_to_cpu(iclog->ic_header.h_lsn)) < 0) { |
1da177e4 LT |
2208 | iclog = iclog->ic_next; |
2209 | continue; /* Leave this iclog for | |
2210 | * another thread */ | |
2211 | } | |
2212 | ||
2213 | iclog->ic_state = XLOG_STATE_CALLBACK; | |
2214 | ||
1da177e4 | 2215 | |
84f3c683 DC |
2216 | /* |
2217 | * update the last_sync_lsn before we drop the | |
2218 | * icloglock to ensure we are the only one that | |
2219 | * can update it. | |
1da177e4 | 2220 | */ |
84f3c683 DC |
2221 | ASSERT(XFS_LSN_CMP(atomic64_read(&log->l_last_sync_lsn), |
2222 | be64_to_cpu(iclog->ic_header.h_lsn)) <= 0); | |
2223 | atomic64_set(&log->l_last_sync_lsn, | |
2224 | be64_to_cpu(iclog->ic_header.h_lsn)); | |
1da177e4 | 2225 | |
84f3c683 | 2226 | } else |
1da177e4 | 2227 | ioerrors++; |
84f3c683 DC |
2228 | |
2229 | spin_unlock(&log->l_icloglock); | |
1da177e4 | 2230 | |
114d23aa DC |
2231 | /* |
2232 | * Keep processing entries in the callback list until | |
2233 | * we come around and it is empty. We need to | |
2234 | * atomically see that the list is empty and change the | |
2235 | * state to DIRTY so that we don't miss any more | |
2236 | * callbacks being added. | |
2237 | */ | |
2238 | spin_lock(&iclog->ic_callback_lock); | |
2239 | cb = iclog->ic_callback; | |
4b80916b | 2240 | while (cb) { |
1da177e4 LT |
2241 | iclog->ic_callback_tail = &(iclog->ic_callback); |
2242 | iclog->ic_callback = NULL; | |
114d23aa | 2243 | spin_unlock(&iclog->ic_callback_lock); |
1da177e4 LT |
2244 | |
2245 | /* perform callbacks in the order given */ | |
4b80916b | 2246 | for (; cb; cb = cb_next) { |
1da177e4 LT |
2247 | cb_next = cb->cb_next; |
2248 | cb->cb_func(cb->cb_arg, aborted); | |
2249 | } | |
114d23aa | 2250 | spin_lock(&iclog->ic_callback_lock); |
1da177e4 LT |
2251 | cb = iclog->ic_callback; |
2252 | } | |
2253 | ||
2254 | loopdidcallbacks++; | |
2255 | funcdidcallbacks++; | |
2256 | ||
114d23aa | 2257 | spin_lock(&log->l_icloglock); |
4b80916b | 2258 | ASSERT(iclog->ic_callback == NULL); |
114d23aa | 2259 | spin_unlock(&iclog->ic_callback_lock); |
1da177e4 LT |
2260 | if (!(iclog->ic_state & XLOG_STATE_IOERROR)) |
2261 | iclog->ic_state = XLOG_STATE_DIRTY; | |
2262 | ||
2263 | /* | |
2264 | * Transition from DIRTY to ACTIVE if applicable. | |
2265 | * NOP if STATE_IOERROR. | |
2266 | */ | |
2267 | xlog_state_clean_log(log); | |
2268 | ||
2269 | /* wake up threads waiting in xfs_log_force() */ | |
eb40a875 | 2270 | wake_up_all(&iclog->ic_force_wait); |
1da177e4 LT |
2271 | |
2272 | iclog = iclog->ic_next; | |
2273 | } while (first_iclog != iclog); | |
a3c6685e NS |
2274 | |
2275 | if (repeats > 5000) { | |
2276 | flushcnt += repeats; | |
2277 | repeats = 0; | |
a0fa2b67 | 2278 | xfs_warn(log->l_mp, |
a3c6685e | 2279 | "%s: possible infinite loop (%d iterations)", |
34a622b2 | 2280 | __func__, flushcnt); |
1da177e4 LT |
2281 | } |
2282 | } while (!ioerrors && loopdidcallbacks); | |
2283 | ||
2284 | /* | |
2285 | * make one last gasp attempt to see if iclogs are being left in | |
2286 | * limbo.. | |
2287 | */ | |
2288 | #ifdef DEBUG | |
2289 | if (funcdidcallbacks) { | |
2290 | first_iclog = iclog = log->l_iclog; | |
2291 | do { | |
2292 | ASSERT(iclog->ic_state != XLOG_STATE_DO_CALLBACK); | |
2293 | /* | |
2294 | * Terminate the loop if iclogs are found in states | |
2295 | * which will cause other threads to clean up iclogs. | |
2296 | * | |
2297 | * SYNCING - i/o completion will go through logs | |
2298 | * DONE_SYNC - interrupt thread should be waiting for | |
b22cd72c | 2299 | * l_icloglock |
1da177e4 LT |
2300 | * IOERROR - give up hope all ye who enter here |
2301 | */ | |
2302 | if (iclog->ic_state == XLOG_STATE_WANT_SYNC || | |
2303 | iclog->ic_state == XLOG_STATE_SYNCING || | |
2304 | iclog->ic_state == XLOG_STATE_DONE_SYNC || | |
2305 | iclog->ic_state == XLOG_STATE_IOERROR ) | |
2306 | break; | |
2307 | iclog = iclog->ic_next; | |
2308 | } while (first_iclog != iclog); | |
2309 | } | |
2310 | #endif | |
2311 | ||
d748c623 MW |
2312 | if (log->l_iclog->ic_state & (XLOG_STATE_ACTIVE|XLOG_STATE_IOERROR)) |
2313 | wake = 1; | |
b22cd72c | 2314 | spin_unlock(&log->l_icloglock); |
d748c623 MW |
2315 | |
2316 | if (wake) | |
eb40a875 | 2317 | wake_up_all(&log->l_flush_wait); |
d748c623 | 2318 | } |
1da177e4 LT |
2319 | |
2320 | ||
2321 | /* | |
2322 | * Finish transitioning this iclog to the dirty state. | |
2323 | * | |
2324 | * Make sure that we completely execute this routine only when this is | |
2325 | * the last call to the iclog. There is a good chance that iclog flushes, | |
2326 | * when we reach the end of the physical log, get turned into 2 separate | |
2327 | * calls to bwrite. Hence, one iclog flush could generate two calls to this | |
2328 | * routine. By using the reference count bwritecnt, we guarantee that only | |
2329 | * the second completion goes through. | |
2330 | * | |
2331 | * Callbacks could take time, so they are done outside the scope of the | |
12017faf | 2332 | * global state machine log lock. |
1da177e4 | 2333 | */ |
a8272ce0 | 2334 | STATIC void |
1da177e4 LT |
2335 | xlog_state_done_syncing( |
2336 | xlog_in_core_t *iclog, | |
2337 | int aborted) | |
2338 | { | |
2339 | xlog_t *log = iclog->ic_log; | |
1da177e4 | 2340 | |
b22cd72c | 2341 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
2342 | |
2343 | ASSERT(iclog->ic_state == XLOG_STATE_SYNCING || | |
2344 | iclog->ic_state == XLOG_STATE_IOERROR); | |
155cc6b7 | 2345 | ASSERT(atomic_read(&iclog->ic_refcnt) == 0); |
1da177e4 LT |
2346 | ASSERT(iclog->ic_bwritecnt == 1 || iclog->ic_bwritecnt == 2); |
2347 | ||
2348 | ||
2349 | /* | |
2350 | * If we got an error, either on the first buffer, or in the case of | |
2351 | * split log writes, on the second, we mark ALL iclogs STATE_IOERROR, | |
2352 | * and none should ever be attempted to be written to disk | |
2353 | * again. | |
2354 | */ | |
2355 | if (iclog->ic_state != XLOG_STATE_IOERROR) { | |
2356 | if (--iclog->ic_bwritecnt == 1) { | |
b22cd72c | 2357 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2358 | return; |
2359 | } | |
2360 | iclog->ic_state = XLOG_STATE_DONE_SYNC; | |
2361 | } | |
2362 | ||
2363 | /* | |
2364 | * Someone could be sleeping prior to writing out the next | |
2365 | * iclog buffer, we wake them all, one will get to do the | |
2366 | * I/O, the others get to wait for the result. | |
2367 | */ | |
eb40a875 | 2368 | wake_up_all(&iclog->ic_write_wait); |
b22cd72c | 2369 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2370 | xlog_state_do_callback(log, aborted, iclog); /* also cleans log */ |
2371 | } /* xlog_state_done_syncing */ | |
2372 | ||
2373 | ||
2374 | /* | |
2375 | * If the head of the in-core log ring is not (ACTIVE or DIRTY), then we must | |
12017faf DC |
2376 | * sleep. We wait on the flush queue on the head iclog as that should be |
2377 | * the first iclog to complete flushing. Hence if all iclogs are syncing, | |
2378 | * we will wait here and all new writes will sleep until a sync completes. | |
1da177e4 LT |
2379 | * |
2380 | * The in-core logs are used in a circular fashion. They are not used | |
2381 | * out-of-order even when an iclog past the head is free. | |
2382 | * | |
2383 | * return: | |
2384 | * * log_offset where xlog_write() can start writing into the in-core | |
2385 | * log's data space. | |
2386 | * * in-core log pointer to which xlog_write() should write. | |
2387 | * * boolean indicating this is a continued write to an in-core log. | |
2388 | * If this is the last write, then the in-core log's offset field | |
2389 | * needs to be incremented, depending on the amount of data which | |
2390 | * is copied. | |
2391 | */ | |
a8272ce0 | 2392 | STATIC int |
1da177e4 LT |
2393 | xlog_state_get_iclog_space(xlog_t *log, |
2394 | int len, | |
2395 | xlog_in_core_t **iclogp, | |
2396 | xlog_ticket_t *ticket, | |
2397 | int *continued_write, | |
2398 | int *logoffsetp) | |
2399 | { | |
1da177e4 LT |
2400 | int log_offset; |
2401 | xlog_rec_header_t *head; | |
2402 | xlog_in_core_t *iclog; | |
2403 | int error; | |
2404 | ||
2405 | restart: | |
b22cd72c | 2406 | spin_lock(&log->l_icloglock); |
1da177e4 | 2407 | if (XLOG_FORCED_SHUTDOWN(log)) { |
b22cd72c | 2408 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2409 | return XFS_ERROR(EIO); |
2410 | } | |
2411 | ||
2412 | iclog = log->l_iclog; | |
d748c623 | 2413 | if (iclog->ic_state != XLOG_STATE_ACTIVE) { |
1da177e4 | 2414 | XFS_STATS_INC(xs_log_noiclogs); |
d748c623 MW |
2415 | |
2416 | /* Wait for log writes to have flushed */ | |
eb40a875 | 2417 | xlog_wait(&log->l_flush_wait, &log->l_icloglock); |
1da177e4 LT |
2418 | goto restart; |
2419 | } | |
d748c623 | 2420 | |
1da177e4 LT |
2421 | head = &iclog->ic_header; |
2422 | ||
155cc6b7 | 2423 | atomic_inc(&iclog->ic_refcnt); /* prevents sync */ |
1da177e4 LT |
2424 | log_offset = iclog->ic_offset; |
2425 | ||
2426 | /* On the 1st write to an iclog, figure out lsn. This works | |
2427 | * if iclogs marked XLOG_STATE_WANT_SYNC always write out what they are | |
2428 | * committing to. If the offset is set, that's how many blocks | |
2429 | * must be written. | |
2430 | */ | |
2431 | if (log_offset == 0) { | |
2432 | ticket->t_curr_res -= log->l_iclog_hsize; | |
0adba536 | 2433 | xlog_tic_add_region(ticket, |
7e9c6396 TS |
2434 | log->l_iclog_hsize, |
2435 | XLOG_REG_TYPE_LRHEADER); | |
b53e675d CH |
2436 | head->h_cycle = cpu_to_be32(log->l_curr_cycle); |
2437 | head->h_lsn = cpu_to_be64( | |
03bea6fe | 2438 | xlog_assign_lsn(log->l_curr_cycle, log->l_curr_block)); |
1da177e4 LT |
2439 | ASSERT(log->l_curr_block >= 0); |
2440 | } | |
2441 | ||
2442 | /* If there is enough room to write everything, then do it. Otherwise, | |
2443 | * claim the rest of the region and make sure the XLOG_STATE_WANT_SYNC | |
2444 | * bit is on, so this will get flushed out. Don't update ic_offset | |
2445 | * until you know exactly how many bytes get copied. Therefore, wait | |
2446 | * until later to update ic_offset. | |
2447 | * | |
2448 | * xlog_write() algorithm assumes that at least 2 xlog_op_header_t's | |
2449 | * can fit into remaining data section. | |
2450 | */ | |
2451 | if (iclog->ic_size - iclog->ic_offset < 2*sizeof(xlog_op_header_t)) { | |
2452 | xlog_state_switch_iclogs(log, iclog, iclog->ic_size); | |
2453 | ||
49641f1a DC |
2454 | /* |
2455 | * If I'm the only one writing to this iclog, sync it to disk. | |
2456 | * We need to do an atomic compare and decrement here to avoid | |
2457 | * racing with concurrent atomic_dec_and_lock() calls in | |
2458 | * xlog_state_release_iclog() when there is more than one | |
2459 | * reference to the iclog. | |
2460 | */ | |
2461 | if (!atomic_add_unless(&iclog->ic_refcnt, -1, 1)) { | |
2462 | /* we are the only one */ | |
b22cd72c | 2463 | spin_unlock(&log->l_icloglock); |
49641f1a DC |
2464 | error = xlog_state_release_iclog(log, iclog); |
2465 | if (error) | |
014c2544 | 2466 | return error; |
1da177e4 | 2467 | } else { |
b22cd72c | 2468 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2469 | } |
2470 | goto restart; | |
2471 | } | |
2472 | ||
2473 | /* Do we have enough room to write the full amount in the remainder | |
2474 | * of this iclog? Or must we continue a write on the next iclog and | |
2475 | * mark this iclog as completely taken? In the case where we switch | |
2476 | * iclogs (to mark it taken), this particular iclog will release/sync | |
2477 | * to disk in xlog_write(). | |
2478 | */ | |
2479 | if (len <= iclog->ic_size - iclog->ic_offset) { | |
2480 | *continued_write = 0; | |
2481 | iclog->ic_offset += len; | |
2482 | } else { | |
2483 | *continued_write = 1; | |
2484 | xlog_state_switch_iclogs(log, iclog, iclog->ic_size); | |
2485 | } | |
2486 | *iclogp = iclog; | |
2487 | ||
2488 | ASSERT(iclog->ic_offset <= iclog->ic_size); | |
b22cd72c | 2489 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2490 | |
2491 | *logoffsetp = log_offset; | |
2492 | return 0; | |
2493 | } /* xlog_state_get_iclog_space */ | |
2494 | ||
2495 | /* | |
2496 | * Atomically get the log space required for a log ticket. | |
2497 | * | |
2498 | * Once a ticket gets put onto the reserveq, it will only return after | |
2499 | * the needed reservation is satisfied. | |
3f16b985 DC |
2500 | * |
2501 | * This function is structured so that it has a lock free fast path. This is | |
2502 | * necessary because every new transaction reservation will come through this | |
2503 | * path. Hence any lock will be globally hot if we take it unconditionally on | |
2504 | * every pass. | |
2505 | * | |
2506 | * As tickets are only ever moved on and off the reserveq under the | |
2507 | * l_grant_reserve_lock, we only need to take that lock if we are going | |
2508 | * to add the ticket to the queue and sleep. We can avoid taking the lock if the | |
2509 | * ticket was never added to the reserveq because the t_queue list head will be | |
2510 | * empty and we hold the only reference to it so it can safely be checked | |
2511 | * unlocked. | |
1da177e4 LT |
2512 | */ |
2513 | STATIC int | |
2514 | xlog_grant_log_space(xlog_t *log, | |
2515 | xlog_ticket_t *tic) | |
2516 | { | |
2517 | int free_bytes; | |
2518 | int need_bytes; | |
1da177e4 LT |
2519 | |
2520 | #ifdef DEBUG | |
2521 | if (log->l_flags & XLOG_ACTIVE_RECOVERY) | |
2522 | panic("grant Recovery problem"); | |
2523 | #endif | |
2524 | ||
0b1b213f | 2525 | trace_xfs_log_grant_enter(log, tic); |
1da177e4 | 2526 | |
3f16b985 DC |
2527 | need_bytes = tic->t_unit_res; |
2528 | if (tic->t_flags & XFS_LOG_PERM_RESERV) | |
2529 | need_bytes *= tic->t_ocnt; | |
2530 | ||
1da177e4 | 2531 | /* something is already sleeping; insert new transaction at end */ |
3f16b985 DC |
2532 | if (!list_empty_careful(&log->l_reserveq)) { |
2533 | spin_lock(&log->l_grant_reserve_lock); | |
2534 | /* recheck the queue now we are locked */ | |
2535 | if (list_empty(&log->l_reserveq)) { | |
2536 | spin_unlock(&log->l_grant_reserve_lock); | |
2537 | goto redo; | |
2538 | } | |
10547941 | 2539 | list_add_tail(&tic->t_queue, &log->l_reserveq); |
0b1b213f CH |
2540 | |
2541 | trace_xfs_log_grant_sleep1(log, tic); | |
2542 | ||
1da177e4 LT |
2543 | /* |
2544 | * Gotta check this before going to sleep, while we're | |
2545 | * holding the grant lock. | |
2546 | */ | |
2547 | if (XLOG_FORCED_SHUTDOWN(log)) | |
2548 | goto error_return; | |
2549 | ||
2550 | XFS_STATS_INC(xs_sleep_logspace); | |
3f16b985 | 2551 | xlog_wait(&tic->t_wait, &log->l_grant_reserve_lock); |
eb40a875 | 2552 | |
1da177e4 LT |
2553 | /* |
2554 | * If we got an error, and the filesystem is shutting down, | |
2555 | * we'll catch it down below. So just continue... | |
2556 | */ | |
0b1b213f | 2557 | trace_xfs_log_grant_wake1(log, tic); |
1da177e4 | 2558 | } |
1da177e4 LT |
2559 | |
2560 | redo: | |
2561 | if (XLOG_FORCED_SHUTDOWN(log)) | |
3f16b985 | 2562 | goto error_return_unlocked; |
1da177e4 | 2563 | |
a69ed03c | 2564 | free_bytes = xlog_space_left(log, &log->l_grant_reserve_head); |
1da177e4 | 2565 | if (free_bytes < need_bytes) { |
3f16b985 | 2566 | spin_lock(&log->l_grant_reserve_lock); |
10547941 DC |
2567 | if (list_empty(&tic->t_queue)) |
2568 | list_add_tail(&tic->t_queue, &log->l_reserveq); | |
0b1b213f CH |
2569 | |
2570 | trace_xfs_log_grant_sleep2(log, tic); | |
2571 | ||
3f16b985 DC |
2572 | if (XLOG_FORCED_SHUTDOWN(log)) |
2573 | goto error_return; | |
2574 | ||
2ced19cb | 2575 | xlog_grant_push_ail(log, need_bytes); |
9d7fef74 | 2576 | |
1da177e4 | 2577 | XFS_STATS_INC(xs_sleep_logspace); |
3f16b985 | 2578 | xlog_wait(&tic->t_wait, &log->l_grant_reserve_lock); |
1da177e4 | 2579 | |
0b1b213f | 2580 | trace_xfs_log_grant_wake2(log, tic); |
1da177e4 | 2581 | goto redo; |
10547941 DC |
2582 | } |
2583 | ||
3f16b985 DC |
2584 | if (!list_empty(&tic->t_queue)) { |
2585 | spin_lock(&log->l_grant_reserve_lock); | |
2586 | list_del_init(&tic->t_queue); | |
2587 | spin_unlock(&log->l_grant_reserve_lock); | |
2588 | } | |
1da177e4 LT |
2589 | |
2590 | /* we've got enough space */ | |
a69ed03c DC |
2591 | xlog_grant_add_space(log, &log->l_grant_reserve_head, need_bytes); |
2592 | xlog_grant_add_space(log, &log->l_grant_write_head, need_bytes); | |
0b1b213f | 2593 | trace_xfs_log_grant_exit(log, tic); |
3f336c6f | 2594 | xlog_verify_grant_tail(log); |
1da177e4 LT |
2595 | return 0; |
2596 | ||
3f16b985 DC |
2597 | error_return_unlocked: |
2598 | spin_lock(&log->l_grant_reserve_lock); | |
2599 | error_return: | |
10547941 | 2600 | list_del_init(&tic->t_queue); |
3f16b985 | 2601 | spin_unlock(&log->l_grant_reserve_lock); |
0b1b213f CH |
2602 | trace_xfs_log_grant_error(log, tic); |
2603 | ||
1da177e4 LT |
2604 | /* |
2605 | * If we are failing, make sure the ticket doesn't have any | |
2606 | * current reservations. We don't want to add this back when | |
2607 | * the ticket/transaction gets cancelled. | |
2608 | */ | |
2609 | tic->t_curr_res = 0; | |
2610 | tic->t_cnt = 0; /* ungrant will give back unit_res * t_cnt. */ | |
1da177e4 LT |
2611 | return XFS_ERROR(EIO); |
2612 | } /* xlog_grant_log_space */ | |
2613 | ||
2614 | ||
2615 | /* | |
2616 | * Replenish the byte reservation required by moving the grant write head. | |
2617 | * | |
3f16b985 DC |
2618 | * Similar to xlog_grant_log_space, the function is structured to have a lock |
2619 | * free fast path. | |
1da177e4 LT |
2620 | */ |
2621 | STATIC int | |
2622 | xlog_regrant_write_log_space(xlog_t *log, | |
2623 | xlog_ticket_t *tic) | |
2624 | { | |
1da177e4 | 2625 | int free_bytes, need_bytes; |
1da177e4 LT |
2626 | |
2627 | tic->t_curr_res = tic->t_unit_res; | |
0adba536 | 2628 | xlog_tic_reset_res(tic); |
1da177e4 LT |
2629 | |
2630 | if (tic->t_cnt > 0) | |
014c2544 | 2631 | return 0; |
1da177e4 LT |
2632 | |
2633 | #ifdef DEBUG | |
2634 | if (log->l_flags & XLOG_ACTIVE_RECOVERY) | |
2635 | panic("regrant Recovery problem"); | |
2636 | #endif | |
2637 | ||
0b1b213f | 2638 | trace_xfs_log_regrant_write_enter(log, tic); |
1da177e4 | 2639 | if (XLOG_FORCED_SHUTDOWN(log)) |
3f16b985 | 2640 | goto error_return_unlocked; |
1da177e4 LT |
2641 | |
2642 | /* If there are other waiters on the queue then give them a | |
2643 | * chance at logspace before us. Wake up the first waiters, | |
2644 | * if we do not wake up all the waiters then go to sleep waiting | |
2645 | * for more free space, otherwise try to get some space for | |
2646 | * this transaction. | |
2647 | */ | |
9d7fef74 | 2648 | need_bytes = tic->t_unit_res; |
3f16b985 | 2649 | if (!list_empty_careful(&log->l_writeq)) { |
10547941 | 2650 | struct xlog_ticket *ntic; |
3f16b985 DC |
2651 | |
2652 | spin_lock(&log->l_grant_write_lock); | |
a69ed03c | 2653 | free_bytes = xlog_space_left(log, &log->l_grant_write_head); |
10547941 | 2654 | list_for_each_entry(ntic, &log->l_writeq, t_queue) { |
1da177e4 LT |
2655 | ASSERT(ntic->t_flags & XLOG_TIC_PERM_RESERV); |
2656 | ||
2657 | if (free_bytes < ntic->t_unit_res) | |
2658 | break; | |
2659 | free_bytes -= ntic->t_unit_res; | |
eb40a875 | 2660 | wake_up(&ntic->t_wait); |
10547941 | 2661 | } |
1da177e4 | 2662 | |
10547941 DC |
2663 | if (ntic != list_first_entry(&log->l_writeq, |
2664 | struct xlog_ticket, t_queue)) { | |
2665 | if (list_empty(&tic->t_queue)) | |
2666 | list_add_tail(&tic->t_queue, &log->l_writeq); | |
0b1b213f CH |
2667 | trace_xfs_log_regrant_write_sleep1(log, tic); |
2668 | ||
2ced19cb | 2669 | xlog_grant_push_ail(log, need_bytes); |
9d7fef74 | 2670 | |
1da177e4 | 2671 | XFS_STATS_INC(xs_sleep_logspace); |
3f16b985 | 2672 | xlog_wait(&tic->t_wait, &log->l_grant_write_lock); |
0b1b213f | 2673 | trace_xfs_log_regrant_write_wake1(log, tic); |
3f16b985 DC |
2674 | } else |
2675 | spin_unlock(&log->l_grant_write_lock); | |
1da177e4 LT |
2676 | } |
2677 | ||
1da177e4 LT |
2678 | redo: |
2679 | if (XLOG_FORCED_SHUTDOWN(log)) | |
3f16b985 | 2680 | goto error_return_unlocked; |
1da177e4 | 2681 | |
a69ed03c | 2682 | free_bytes = xlog_space_left(log, &log->l_grant_write_head); |
1da177e4 | 2683 | if (free_bytes < need_bytes) { |
3f16b985 | 2684 | spin_lock(&log->l_grant_write_lock); |
10547941 DC |
2685 | if (list_empty(&tic->t_queue)) |
2686 | list_add_tail(&tic->t_queue, &log->l_writeq); | |
3f16b985 DC |
2687 | |
2688 | if (XLOG_FORCED_SHUTDOWN(log)) | |
2689 | goto error_return; | |
2690 | ||
2ced19cb | 2691 | xlog_grant_push_ail(log, need_bytes); |
9d7fef74 | 2692 | |
1da177e4 | 2693 | XFS_STATS_INC(xs_sleep_logspace); |
0b1b213f | 2694 | trace_xfs_log_regrant_write_sleep2(log, tic); |
3f16b985 | 2695 | xlog_wait(&tic->t_wait, &log->l_grant_write_lock); |
1da177e4 | 2696 | |
0b1b213f | 2697 | trace_xfs_log_regrant_write_wake2(log, tic); |
1da177e4 | 2698 | goto redo; |
10547941 DC |
2699 | } |
2700 | ||
3f16b985 DC |
2701 | if (!list_empty(&tic->t_queue)) { |
2702 | spin_lock(&log->l_grant_write_lock); | |
2703 | list_del_init(&tic->t_queue); | |
2704 | spin_unlock(&log->l_grant_write_lock); | |
2705 | } | |
1da177e4 | 2706 | |
dd954c69 | 2707 | /* we've got enough space */ |
a69ed03c | 2708 | xlog_grant_add_space(log, &log->l_grant_write_head, need_bytes); |
0b1b213f | 2709 | trace_xfs_log_regrant_write_exit(log, tic); |
3f336c6f | 2710 | xlog_verify_grant_tail(log); |
014c2544 | 2711 | return 0; |
1da177e4 LT |
2712 | |
2713 | ||
3f16b985 DC |
2714 | error_return_unlocked: |
2715 | spin_lock(&log->l_grant_write_lock); | |
1da177e4 | 2716 | error_return: |
10547941 | 2717 | list_del_init(&tic->t_queue); |
3f16b985 | 2718 | spin_unlock(&log->l_grant_write_lock); |
0b1b213f CH |
2719 | trace_xfs_log_regrant_write_error(log, tic); |
2720 | ||
1da177e4 LT |
2721 | /* |
2722 | * If we are failing, make sure the ticket doesn't have any | |
2723 | * current reservations. We don't want to add this back when | |
2724 | * the ticket/transaction gets cancelled. | |
2725 | */ | |
2726 | tic->t_curr_res = 0; | |
2727 | tic->t_cnt = 0; /* ungrant will give back unit_res * t_cnt. */ | |
1da177e4 LT |
2728 | return XFS_ERROR(EIO); |
2729 | } /* xlog_regrant_write_log_space */ | |
2730 | ||
2731 | ||
2732 | /* The first cnt-1 times through here we don't need to | |
2733 | * move the grant write head because the permanent | |
2734 | * reservation has reserved cnt times the unit amount. | |
2735 | * Release part of current permanent unit reservation and | |
2736 | * reset current reservation to be one units worth. Also | |
2737 | * move grant reservation head forward. | |
2738 | */ | |
2739 | STATIC void | |
2740 | xlog_regrant_reserve_log_space(xlog_t *log, | |
2741 | xlog_ticket_t *ticket) | |
2742 | { | |
0b1b213f CH |
2743 | trace_xfs_log_regrant_reserve_enter(log, ticket); |
2744 | ||
1da177e4 LT |
2745 | if (ticket->t_cnt > 0) |
2746 | ticket->t_cnt--; | |
2747 | ||
a69ed03c DC |
2748 | xlog_grant_sub_space(log, &log->l_grant_reserve_head, |
2749 | ticket->t_curr_res); | |
2750 | xlog_grant_sub_space(log, &log->l_grant_write_head, | |
2751 | ticket->t_curr_res); | |
1da177e4 | 2752 | ticket->t_curr_res = ticket->t_unit_res; |
0adba536 | 2753 | xlog_tic_reset_res(ticket); |
0b1b213f CH |
2754 | |
2755 | trace_xfs_log_regrant_reserve_sub(log, ticket); | |
2756 | ||
1da177e4 | 2757 | /* just return if we still have some of the pre-reserved space */ |
d0eb2f38 | 2758 | if (ticket->t_cnt > 0) |
1da177e4 | 2759 | return; |
1da177e4 | 2760 | |
a69ed03c DC |
2761 | xlog_grant_add_space(log, &log->l_grant_reserve_head, |
2762 | ticket->t_unit_res); | |
0b1b213f CH |
2763 | |
2764 | trace_xfs_log_regrant_reserve_exit(log, ticket); | |
2765 | ||
1da177e4 | 2766 | ticket->t_curr_res = ticket->t_unit_res; |
0adba536 | 2767 | xlog_tic_reset_res(ticket); |
1da177e4 LT |
2768 | } /* xlog_regrant_reserve_log_space */ |
2769 | ||
2770 | ||
2771 | /* | |
2772 | * Give back the space left from a reservation. | |
2773 | * | |
2774 | * All the information we need to make a correct determination of space left | |
2775 | * is present. For non-permanent reservations, things are quite easy. The | |
2776 | * count should have been decremented to zero. We only need to deal with the | |
2777 | * space remaining in the current reservation part of the ticket. If the | |
2778 | * ticket contains a permanent reservation, there may be left over space which | |
2779 | * needs to be released. A count of N means that N-1 refills of the current | |
2780 | * reservation can be done before we need to ask for more space. The first | |
2781 | * one goes to fill up the first current reservation. Once we run out of | |
2782 | * space, the count will stay at zero and the only space remaining will be | |
2783 | * in the current reservation field. | |
2784 | */ | |
2785 | STATIC void | |
2786 | xlog_ungrant_log_space(xlog_t *log, | |
2787 | xlog_ticket_t *ticket) | |
2788 | { | |
663e496a DC |
2789 | int bytes; |
2790 | ||
1da177e4 LT |
2791 | if (ticket->t_cnt > 0) |
2792 | ticket->t_cnt--; | |
2793 | ||
0b1b213f | 2794 | trace_xfs_log_ungrant_enter(log, ticket); |
0b1b213f | 2795 | trace_xfs_log_ungrant_sub(log, ticket); |
1da177e4 | 2796 | |
663e496a DC |
2797 | /* |
2798 | * If this is a permanent reservation ticket, we may be able to free | |
1da177e4 LT |
2799 | * up more space based on the remaining count. |
2800 | */ | |
663e496a | 2801 | bytes = ticket->t_curr_res; |
1da177e4 LT |
2802 | if (ticket->t_cnt > 0) { |
2803 | ASSERT(ticket->t_flags & XLOG_TIC_PERM_RESERV); | |
663e496a | 2804 | bytes += ticket->t_unit_res*ticket->t_cnt; |
1da177e4 LT |
2805 | } |
2806 | ||
a69ed03c DC |
2807 | xlog_grant_sub_space(log, &log->l_grant_reserve_head, bytes); |
2808 | xlog_grant_sub_space(log, &log->l_grant_write_head, bytes); | |
663e496a | 2809 | |
0b1b213f CH |
2810 | trace_xfs_log_ungrant_exit(log, ticket); |
2811 | ||
1da177e4 LT |
2812 | xfs_log_move_tail(log->l_mp, 1); |
2813 | } /* xlog_ungrant_log_space */ | |
2814 | ||
2815 | ||
1da177e4 LT |
2816 | /* |
2817 | * Flush iclog to disk if this is the last reference to the given iclog and | |
2818 | * the WANT_SYNC bit is set. | |
2819 | * | |
2820 | * When this function is entered, the iclog is not necessarily in the | |
2821 | * WANT_SYNC state. It may be sitting around waiting to get filled. | |
2822 | * | |
2823 | * | |
2824 | */ | |
a8272ce0 | 2825 | STATIC int |
b589334c DC |
2826 | xlog_state_release_iclog( |
2827 | xlog_t *log, | |
2828 | xlog_in_core_t *iclog) | |
1da177e4 | 2829 | { |
1da177e4 LT |
2830 | int sync = 0; /* do we sync? */ |
2831 | ||
155cc6b7 DC |
2832 | if (iclog->ic_state & XLOG_STATE_IOERROR) |
2833 | return XFS_ERROR(EIO); | |
2834 | ||
2835 | ASSERT(atomic_read(&iclog->ic_refcnt) > 0); | |
2836 | if (!atomic_dec_and_lock(&iclog->ic_refcnt, &log->l_icloglock)) | |
2837 | return 0; | |
2838 | ||
1da177e4 | 2839 | if (iclog->ic_state & XLOG_STATE_IOERROR) { |
b22cd72c | 2840 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2841 | return XFS_ERROR(EIO); |
2842 | } | |
1da177e4 LT |
2843 | ASSERT(iclog->ic_state == XLOG_STATE_ACTIVE || |
2844 | iclog->ic_state == XLOG_STATE_WANT_SYNC); | |
2845 | ||
155cc6b7 | 2846 | if (iclog->ic_state == XLOG_STATE_WANT_SYNC) { |
b589334c | 2847 | /* update tail before writing to iclog */ |
1c3cb9ec | 2848 | xfs_lsn_t tail_lsn = xlog_assign_tail_lsn(log->l_mp); |
1da177e4 LT |
2849 | sync++; |
2850 | iclog->ic_state = XLOG_STATE_SYNCING; | |
1c3cb9ec DC |
2851 | iclog->ic_header.h_tail_lsn = cpu_to_be64(tail_lsn); |
2852 | xlog_verify_tail_lsn(log, iclog, tail_lsn); | |
1da177e4 LT |
2853 | /* cycle incremented when incrementing curr_block */ |
2854 | } | |
b22cd72c | 2855 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2856 | |
2857 | /* | |
2858 | * We let the log lock go, so it's possible that we hit a log I/O | |
c41564b5 | 2859 | * error or some other SHUTDOWN condition that marks the iclog |
1da177e4 LT |
2860 | * as XLOG_STATE_IOERROR before the bwrite. However, we know that |
2861 | * this iclog has consistent data, so we ignore IOERROR | |
2862 | * flags after this point. | |
2863 | */ | |
b589334c | 2864 | if (sync) |
1da177e4 | 2865 | return xlog_sync(log, iclog); |
014c2544 | 2866 | return 0; |
1da177e4 LT |
2867 | } /* xlog_state_release_iclog */ |
2868 | ||
2869 | ||
2870 | /* | |
2871 | * This routine will mark the current iclog in the ring as WANT_SYNC | |
2872 | * and move the current iclog pointer to the next iclog in the ring. | |
2873 | * When this routine is called from xlog_state_get_iclog_space(), the | |
2874 | * exact size of the iclog has not yet been determined. All we know is | |
2875 | * that every data block. We have run out of space in this log record. | |
2876 | */ | |
2877 | STATIC void | |
2878 | xlog_state_switch_iclogs(xlog_t *log, | |
2879 | xlog_in_core_t *iclog, | |
2880 | int eventual_size) | |
2881 | { | |
2882 | ASSERT(iclog->ic_state == XLOG_STATE_ACTIVE); | |
2883 | if (!eventual_size) | |
2884 | eventual_size = iclog->ic_offset; | |
2885 | iclog->ic_state = XLOG_STATE_WANT_SYNC; | |
b53e675d | 2886 | iclog->ic_header.h_prev_block = cpu_to_be32(log->l_prev_block); |
1da177e4 LT |
2887 | log->l_prev_block = log->l_curr_block; |
2888 | log->l_prev_cycle = log->l_curr_cycle; | |
2889 | ||
2890 | /* roll log?: ic_offset changed later */ | |
2891 | log->l_curr_block += BTOBB(eventual_size)+BTOBB(log->l_iclog_hsize); | |
2892 | ||
2893 | /* Round up to next log-sunit */ | |
62118709 | 2894 | if (xfs_sb_version_haslogv2(&log->l_mp->m_sb) && |
1da177e4 LT |
2895 | log->l_mp->m_sb.sb_logsunit > 1) { |
2896 | __uint32_t sunit_bb = BTOBB(log->l_mp->m_sb.sb_logsunit); | |
2897 | log->l_curr_block = roundup(log->l_curr_block, sunit_bb); | |
2898 | } | |
2899 | ||
2900 | if (log->l_curr_block >= log->l_logBBsize) { | |
2901 | log->l_curr_cycle++; | |
2902 | if (log->l_curr_cycle == XLOG_HEADER_MAGIC_NUM) | |
2903 | log->l_curr_cycle++; | |
2904 | log->l_curr_block -= log->l_logBBsize; | |
2905 | ASSERT(log->l_curr_block >= 0); | |
2906 | } | |
2907 | ASSERT(iclog == log->l_iclog); | |
2908 | log->l_iclog = iclog->ic_next; | |
2909 | } /* xlog_state_switch_iclogs */ | |
2910 | ||
1da177e4 LT |
2911 | /* |
2912 | * Write out all data in the in-core log as of this exact moment in time. | |
2913 | * | |
2914 | * Data may be written to the in-core log during this call. However, | |
2915 | * we don't guarantee this data will be written out. A change from past | |
2916 | * implementation means this routine will *not* write out zero length LRs. | |
2917 | * | |
2918 | * Basically, we try and perform an intelligent scan of the in-core logs. | |
2919 | * If we determine there is no flushable data, we just return. There is no | |
2920 | * flushable data if: | |
2921 | * | |
2922 | * 1. the current iclog is active and has no data; the previous iclog | |
2923 | * is in the active or dirty state. | |
2924 | * 2. the current iclog is drity, and the previous iclog is in the | |
2925 | * active or dirty state. | |
2926 | * | |
12017faf | 2927 | * We may sleep if: |
1da177e4 LT |
2928 | * |
2929 | * 1. the current iclog is not in the active nor dirty state. | |
2930 | * 2. the current iclog dirty, and the previous iclog is not in the | |
2931 | * active nor dirty state. | |
2932 | * 3. the current iclog is active, and there is another thread writing | |
2933 | * to this particular iclog. | |
2934 | * 4. a) the current iclog is active and has no other writers | |
2935 | * b) when we return from flushing out this iclog, it is still | |
2936 | * not in the active nor dirty state. | |
2937 | */ | |
a14a348b CH |
2938 | int |
2939 | _xfs_log_force( | |
2940 | struct xfs_mount *mp, | |
2941 | uint flags, | |
2942 | int *log_flushed) | |
1da177e4 | 2943 | { |
a14a348b CH |
2944 | struct log *log = mp->m_log; |
2945 | struct xlog_in_core *iclog; | |
2946 | xfs_lsn_t lsn; | |
2947 | ||
2948 | XFS_STATS_INC(xs_log_force); | |
1da177e4 | 2949 | |
a44f13ed DC |
2950 | if (log->l_cilp) |
2951 | xlog_cil_force(log); | |
71e330b5 | 2952 | |
b22cd72c | 2953 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
2954 | |
2955 | iclog = log->l_iclog; | |
2956 | if (iclog->ic_state & XLOG_STATE_IOERROR) { | |
b22cd72c | 2957 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2958 | return XFS_ERROR(EIO); |
2959 | } | |
2960 | ||
2961 | /* If the head iclog is not active nor dirty, we just attach | |
2962 | * ourselves to the head and go to sleep. | |
2963 | */ | |
2964 | if (iclog->ic_state == XLOG_STATE_ACTIVE || | |
2965 | iclog->ic_state == XLOG_STATE_DIRTY) { | |
2966 | /* | |
2967 | * If the head is dirty or (active and empty), then | |
2968 | * we need to look at the previous iclog. If the previous | |
2969 | * iclog is active or dirty we are done. There is nothing | |
2970 | * to sync out. Otherwise, we attach ourselves to the | |
2971 | * previous iclog and go to sleep. | |
2972 | */ | |
2973 | if (iclog->ic_state == XLOG_STATE_DIRTY || | |
155cc6b7 DC |
2974 | (atomic_read(&iclog->ic_refcnt) == 0 |
2975 | && iclog->ic_offset == 0)) { | |
1da177e4 LT |
2976 | iclog = iclog->ic_prev; |
2977 | if (iclog->ic_state == XLOG_STATE_ACTIVE || | |
2978 | iclog->ic_state == XLOG_STATE_DIRTY) | |
2979 | goto no_sleep; | |
2980 | else | |
2981 | goto maybe_sleep; | |
2982 | } else { | |
155cc6b7 | 2983 | if (atomic_read(&iclog->ic_refcnt) == 0) { |
1da177e4 LT |
2984 | /* We are the only one with access to this |
2985 | * iclog. Flush it out now. There should | |
2986 | * be a roundoff of zero to show that someone | |
2987 | * has already taken care of the roundoff from | |
2988 | * the previous sync. | |
2989 | */ | |
155cc6b7 | 2990 | atomic_inc(&iclog->ic_refcnt); |
b53e675d | 2991 | lsn = be64_to_cpu(iclog->ic_header.h_lsn); |
1da177e4 | 2992 | xlog_state_switch_iclogs(log, iclog, 0); |
b22cd72c | 2993 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
2994 | |
2995 | if (xlog_state_release_iclog(log, iclog)) | |
2996 | return XFS_ERROR(EIO); | |
a14a348b CH |
2997 | |
2998 | if (log_flushed) | |
2999 | *log_flushed = 1; | |
b22cd72c | 3000 | spin_lock(&log->l_icloglock); |
b53e675d | 3001 | if (be64_to_cpu(iclog->ic_header.h_lsn) == lsn && |
1da177e4 LT |
3002 | iclog->ic_state != XLOG_STATE_DIRTY) |
3003 | goto maybe_sleep; | |
3004 | else | |
3005 | goto no_sleep; | |
3006 | } else { | |
3007 | /* Someone else is writing to this iclog. | |
3008 | * Use its call to flush out the data. However, | |
3009 | * the other thread may not force out this LR, | |
3010 | * so we mark it WANT_SYNC. | |
3011 | */ | |
3012 | xlog_state_switch_iclogs(log, iclog, 0); | |
3013 | goto maybe_sleep; | |
3014 | } | |
3015 | } | |
3016 | } | |
3017 | ||
3018 | /* By the time we come around again, the iclog could've been filled | |
3019 | * which would give it another lsn. If we have a new lsn, just | |
3020 | * return because the relevant data has been flushed. | |
3021 | */ | |
3022 | maybe_sleep: | |
3023 | if (flags & XFS_LOG_SYNC) { | |
3024 | /* | |
3025 | * We must check if we're shutting down here, before | |
b22cd72c | 3026 | * we wait, while we're holding the l_icloglock. |
1da177e4 LT |
3027 | * Then we check again after waking up, in case our |
3028 | * sleep was disturbed by a bad news. | |
3029 | */ | |
3030 | if (iclog->ic_state & XLOG_STATE_IOERROR) { | |
b22cd72c | 3031 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3032 | return XFS_ERROR(EIO); |
3033 | } | |
3034 | XFS_STATS_INC(xs_log_force_sleep); | |
eb40a875 | 3035 | xlog_wait(&iclog->ic_force_wait, &log->l_icloglock); |
1da177e4 LT |
3036 | /* |
3037 | * No need to grab the log lock here since we're | |
3038 | * only deciding whether or not to return EIO | |
3039 | * and the memory read should be atomic. | |
3040 | */ | |
3041 | if (iclog->ic_state & XLOG_STATE_IOERROR) | |
3042 | return XFS_ERROR(EIO); | |
a14a348b CH |
3043 | if (log_flushed) |
3044 | *log_flushed = 1; | |
1da177e4 LT |
3045 | } else { |
3046 | ||
3047 | no_sleep: | |
b22cd72c | 3048 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3049 | } |
3050 | return 0; | |
a14a348b | 3051 | } |
1da177e4 | 3052 | |
a14a348b CH |
3053 | /* |
3054 | * Wrapper for _xfs_log_force(), to be used when caller doesn't care | |
3055 | * about errors or whether the log was flushed or not. This is the normal | |
3056 | * interface to use when trying to unpin items or move the log forward. | |
3057 | */ | |
3058 | void | |
3059 | xfs_log_force( | |
3060 | xfs_mount_t *mp, | |
3061 | uint flags) | |
3062 | { | |
3063 | int error; | |
3064 | ||
3065 | error = _xfs_log_force(mp, flags, NULL); | |
a0fa2b67 DC |
3066 | if (error) |
3067 | xfs_warn(mp, "%s: error %d returned.", __func__, error); | |
a14a348b | 3068 | } |
1da177e4 LT |
3069 | |
3070 | /* | |
a14a348b | 3071 | * Force the in-core log to disk for a specific LSN. |
1da177e4 LT |
3072 | * |
3073 | * Find in-core log with lsn. | |
3074 | * If it is in the DIRTY state, just return. | |
3075 | * If it is in the ACTIVE state, move the in-core log into the WANT_SYNC | |
3076 | * state and go to sleep or return. | |
3077 | * If it is in any other state, go to sleep or return. | |
3078 | * | |
a14a348b CH |
3079 | * Synchronous forces are implemented with a signal variable. All callers |
3080 | * to force a given lsn to disk will wait on a the sv attached to the | |
3081 | * specific in-core log. When given in-core log finally completes its | |
3082 | * write to disk, that thread will wake up all threads waiting on the | |
3083 | * sv. | |
1da177e4 | 3084 | */ |
a14a348b CH |
3085 | int |
3086 | _xfs_log_force_lsn( | |
3087 | struct xfs_mount *mp, | |
3088 | xfs_lsn_t lsn, | |
3089 | uint flags, | |
3090 | int *log_flushed) | |
1da177e4 | 3091 | { |
a14a348b CH |
3092 | struct log *log = mp->m_log; |
3093 | struct xlog_in_core *iclog; | |
3094 | int already_slept = 0; | |
1da177e4 | 3095 | |
a14a348b | 3096 | ASSERT(lsn != 0); |
1da177e4 | 3097 | |
a14a348b | 3098 | XFS_STATS_INC(xs_log_force); |
1da177e4 | 3099 | |
71e330b5 | 3100 | if (log->l_cilp) { |
a44f13ed | 3101 | lsn = xlog_cil_force_lsn(log, lsn); |
71e330b5 DC |
3102 | if (lsn == NULLCOMMITLSN) |
3103 | return 0; | |
3104 | } | |
3105 | ||
a14a348b CH |
3106 | try_again: |
3107 | spin_lock(&log->l_icloglock); | |
3108 | iclog = log->l_iclog; | |
3109 | if (iclog->ic_state & XLOG_STATE_IOERROR) { | |
b22cd72c | 3110 | spin_unlock(&log->l_icloglock); |
a14a348b | 3111 | return XFS_ERROR(EIO); |
1da177e4 LT |
3112 | } |
3113 | ||
a14a348b CH |
3114 | do { |
3115 | if (be64_to_cpu(iclog->ic_header.h_lsn) != lsn) { | |
3116 | iclog = iclog->ic_next; | |
3117 | continue; | |
3118 | } | |
3119 | ||
3120 | if (iclog->ic_state == XLOG_STATE_DIRTY) { | |
3121 | spin_unlock(&log->l_icloglock); | |
3122 | return 0; | |
3123 | } | |
3124 | ||
3125 | if (iclog->ic_state == XLOG_STATE_ACTIVE) { | |
3126 | /* | |
3127 | * We sleep here if we haven't already slept (e.g. | |
3128 | * this is the first time we've looked at the correct | |
3129 | * iclog buf) and the buffer before us is going to | |
3130 | * be sync'ed. The reason for this is that if we | |
3131 | * are doing sync transactions here, by waiting for | |
3132 | * the previous I/O to complete, we can allow a few | |
3133 | * more transactions into this iclog before we close | |
3134 | * it down. | |
3135 | * | |
3136 | * Otherwise, we mark the buffer WANT_SYNC, and bump | |
3137 | * up the refcnt so we can release the log (which | |
3138 | * drops the ref count). The state switch keeps new | |
3139 | * transaction commits from using this buffer. When | |
3140 | * the current commits finish writing into the buffer, | |
3141 | * the refcount will drop to zero and the buffer will | |
3142 | * go out then. | |
3143 | */ | |
3144 | if (!already_slept && | |
3145 | (iclog->ic_prev->ic_state & | |
3146 | (XLOG_STATE_WANT_SYNC | XLOG_STATE_SYNCING))) { | |
3147 | ASSERT(!(iclog->ic_state & XLOG_STATE_IOERROR)); | |
3148 | ||
3149 | XFS_STATS_INC(xs_log_force_sleep); | |
3150 | ||
eb40a875 DC |
3151 | xlog_wait(&iclog->ic_prev->ic_write_wait, |
3152 | &log->l_icloglock); | |
a14a348b CH |
3153 | if (log_flushed) |
3154 | *log_flushed = 1; | |
3155 | already_slept = 1; | |
3156 | goto try_again; | |
3157 | } | |
155cc6b7 | 3158 | atomic_inc(&iclog->ic_refcnt); |
1da177e4 | 3159 | xlog_state_switch_iclogs(log, iclog, 0); |
b22cd72c | 3160 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3161 | if (xlog_state_release_iclog(log, iclog)) |
3162 | return XFS_ERROR(EIO); | |
a14a348b CH |
3163 | if (log_flushed) |
3164 | *log_flushed = 1; | |
b22cd72c | 3165 | spin_lock(&log->l_icloglock); |
1da177e4 | 3166 | } |
1da177e4 | 3167 | |
a14a348b CH |
3168 | if ((flags & XFS_LOG_SYNC) && /* sleep */ |
3169 | !(iclog->ic_state & | |
3170 | (XLOG_STATE_ACTIVE | XLOG_STATE_DIRTY))) { | |
3171 | /* | |
3172 | * Don't wait on completion if we know that we've | |
3173 | * gotten a log write error. | |
3174 | */ | |
3175 | if (iclog->ic_state & XLOG_STATE_IOERROR) { | |
3176 | spin_unlock(&log->l_icloglock); | |
3177 | return XFS_ERROR(EIO); | |
3178 | } | |
3179 | XFS_STATS_INC(xs_log_force_sleep); | |
eb40a875 | 3180 | xlog_wait(&iclog->ic_force_wait, &log->l_icloglock); |
a14a348b CH |
3181 | /* |
3182 | * No need to grab the log lock here since we're | |
3183 | * only deciding whether or not to return EIO | |
3184 | * and the memory read should be atomic. | |
3185 | */ | |
3186 | if (iclog->ic_state & XLOG_STATE_IOERROR) | |
3187 | return XFS_ERROR(EIO); | |
1da177e4 | 3188 | |
a14a348b CH |
3189 | if (log_flushed) |
3190 | *log_flushed = 1; | |
3191 | } else { /* just return */ | |
b22cd72c | 3192 | spin_unlock(&log->l_icloglock); |
1da177e4 | 3193 | } |
1da177e4 | 3194 | |
a14a348b CH |
3195 | return 0; |
3196 | } while (iclog != log->l_iclog); | |
1da177e4 | 3197 | |
a14a348b CH |
3198 | spin_unlock(&log->l_icloglock); |
3199 | return 0; | |
3200 | } | |
3201 | ||
3202 | /* | |
3203 | * Wrapper for _xfs_log_force_lsn(), to be used when caller doesn't care | |
3204 | * about errors or whether the log was flushed or not. This is the normal | |
3205 | * interface to use when trying to unpin items or move the log forward. | |
3206 | */ | |
3207 | void | |
3208 | xfs_log_force_lsn( | |
3209 | xfs_mount_t *mp, | |
3210 | xfs_lsn_t lsn, | |
3211 | uint flags) | |
3212 | { | |
3213 | int error; | |
1da177e4 | 3214 | |
a14a348b | 3215 | error = _xfs_log_force_lsn(mp, lsn, flags, NULL); |
a0fa2b67 DC |
3216 | if (error) |
3217 | xfs_warn(mp, "%s: error %d returned.", __func__, error); | |
a14a348b | 3218 | } |
1da177e4 LT |
3219 | |
3220 | /* | |
3221 | * Called when we want to mark the current iclog as being ready to sync to | |
3222 | * disk. | |
3223 | */ | |
a8272ce0 | 3224 | STATIC void |
1da177e4 LT |
3225 | xlog_state_want_sync(xlog_t *log, xlog_in_core_t *iclog) |
3226 | { | |
a8914f3a | 3227 | assert_spin_locked(&log->l_icloglock); |
1da177e4 LT |
3228 | |
3229 | if (iclog->ic_state == XLOG_STATE_ACTIVE) { | |
3230 | xlog_state_switch_iclogs(log, iclog, 0); | |
3231 | } else { | |
3232 | ASSERT(iclog->ic_state & | |
3233 | (XLOG_STATE_WANT_SYNC|XLOG_STATE_IOERROR)); | |
3234 | } | |
39e2defe | 3235 | } |
1da177e4 LT |
3236 | |
3237 | ||
3238 | /***************************************************************************** | |
3239 | * | |
3240 | * TICKET functions | |
3241 | * | |
3242 | ***************************************************************************** | |
3243 | */ | |
3244 | ||
3245 | /* | |
9da096fd | 3246 | * Free a used ticket when its refcount falls to zero. |
1da177e4 | 3247 | */ |
cc09c0dc DC |
3248 | void |
3249 | xfs_log_ticket_put( | |
3250 | xlog_ticket_t *ticket) | |
1da177e4 | 3251 | { |
cc09c0dc | 3252 | ASSERT(atomic_read(&ticket->t_ref) > 0); |
eb40a875 | 3253 | if (atomic_dec_and_test(&ticket->t_ref)) |
cc09c0dc | 3254 | kmem_zone_free(xfs_log_ticket_zone, ticket); |
cc09c0dc | 3255 | } |
1da177e4 | 3256 | |
cc09c0dc DC |
3257 | xlog_ticket_t * |
3258 | xfs_log_ticket_get( | |
3259 | xlog_ticket_t *ticket) | |
3260 | { | |
3261 | ASSERT(atomic_read(&ticket->t_ref) > 0); | |
3262 | atomic_inc(&ticket->t_ref); | |
3263 | return ticket; | |
3264 | } | |
1da177e4 LT |
3265 | |
3266 | /* | |
eb01c9cd | 3267 | * Allocate and initialise a new log ticket. |
1da177e4 | 3268 | */ |
71e330b5 | 3269 | xlog_ticket_t * |
9b9fc2b7 DC |
3270 | xlog_ticket_alloc( |
3271 | struct log *log, | |
3272 | int unit_bytes, | |
3273 | int cnt, | |
3274 | char client, | |
3383ca57 DC |
3275 | uint xflags, |
3276 | int alloc_flags) | |
1da177e4 | 3277 | { |
9b9fc2b7 | 3278 | struct xlog_ticket *tic; |
1da177e4 | 3279 | uint num_headers; |
9b9fc2b7 | 3280 | int iclog_space; |
1da177e4 | 3281 | |
3383ca57 | 3282 | tic = kmem_zone_zalloc(xfs_log_ticket_zone, alloc_flags); |
eb01c9cd DC |
3283 | if (!tic) |
3284 | return NULL; | |
1da177e4 LT |
3285 | |
3286 | /* | |
3287 | * Permanent reservations have up to 'cnt'-1 active log operations | |
3288 | * in the log. A unit in this case is the amount of space for one | |
3289 | * of these log operations. Normal reservations have a cnt of 1 | |
3290 | * and their unit amount is the total amount of space required. | |
3291 | * | |
3292 | * The following lines of code account for non-transaction data | |
32fb9b57 TS |
3293 | * which occupy space in the on-disk log. |
3294 | * | |
3295 | * Normal form of a transaction is: | |
3296 | * <oph><trans-hdr><start-oph><reg1-oph><reg1><reg2-oph>...<commit-oph> | |
3297 | * and then there are LR hdrs, split-recs and roundoff at end of syncs. | |
3298 | * | |
3299 | * We need to account for all the leadup data and trailer data | |
3300 | * around the transaction data. | |
3301 | * And then we need to account for the worst case in terms of using | |
3302 | * more space. | |
3303 | * The worst case will happen if: | |
3304 | * - the placement of the transaction happens to be such that the | |
3305 | * roundoff is at its maximum | |
3306 | * - the transaction data is synced before the commit record is synced | |
3307 | * i.e. <transaction-data><roundoff> | <commit-rec><roundoff> | |
3308 | * Therefore the commit record is in its own Log Record. | |
3309 | * This can happen as the commit record is called with its | |
3310 | * own region to xlog_write(). | |
3311 | * This then means that in the worst case, roundoff can happen for | |
3312 | * the commit-rec as well. | |
3313 | * The commit-rec is smaller than padding in this scenario and so it is | |
3314 | * not added separately. | |
1da177e4 LT |
3315 | */ |
3316 | ||
32fb9b57 TS |
3317 | /* for trans header */ |
3318 | unit_bytes += sizeof(xlog_op_header_t); | |
3319 | unit_bytes += sizeof(xfs_trans_header_t); | |
3320 | ||
1da177e4 | 3321 | /* for start-rec */ |
32fb9b57 TS |
3322 | unit_bytes += sizeof(xlog_op_header_t); |
3323 | ||
9b9fc2b7 DC |
3324 | /* |
3325 | * for LR headers - the space for data in an iclog is the size minus | |
3326 | * the space used for the headers. If we use the iclog size, then we | |
3327 | * undercalculate the number of headers required. | |
3328 | * | |
3329 | * Furthermore - the addition of op headers for split-recs might | |
3330 | * increase the space required enough to require more log and op | |
3331 | * headers, so take that into account too. | |
3332 | * | |
3333 | * IMPORTANT: This reservation makes the assumption that if this | |
3334 | * transaction is the first in an iclog and hence has the LR headers | |
3335 | * accounted to it, then the remaining space in the iclog is | |
3336 | * exclusively for this transaction. i.e. if the transaction is larger | |
3337 | * than the iclog, it will be the only thing in that iclog. | |
3338 | * Fundamentally, this means we must pass the entire log vector to | |
3339 | * xlog_write to guarantee this. | |
3340 | */ | |
3341 | iclog_space = log->l_iclog_size - log->l_iclog_hsize; | |
3342 | num_headers = howmany(unit_bytes, iclog_space); | |
3343 | ||
3344 | /* for split-recs - ophdrs added when data split over LRs */ | |
3345 | unit_bytes += sizeof(xlog_op_header_t) * num_headers; | |
3346 | ||
3347 | /* add extra header reservations if we overrun */ | |
3348 | while (!num_headers || | |
3349 | howmany(unit_bytes, iclog_space) > num_headers) { | |
3350 | unit_bytes += sizeof(xlog_op_header_t); | |
3351 | num_headers++; | |
3352 | } | |
32fb9b57 | 3353 | unit_bytes += log->l_iclog_hsize * num_headers; |
1da177e4 | 3354 | |
32fb9b57 TS |
3355 | /* for commit-rec LR header - note: padding will subsume the ophdr */ |
3356 | unit_bytes += log->l_iclog_hsize; | |
3357 | ||
32fb9b57 | 3358 | /* for roundoff padding for transaction data and one for commit record */ |
62118709 | 3359 | if (xfs_sb_version_haslogv2(&log->l_mp->m_sb) && |
32fb9b57 | 3360 | log->l_mp->m_sb.sb_logsunit > 1) { |
1da177e4 | 3361 | /* log su roundoff */ |
32fb9b57 | 3362 | unit_bytes += 2*log->l_mp->m_sb.sb_logsunit; |
1da177e4 LT |
3363 | } else { |
3364 | /* BB roundoff */ | |
32fb9b57 | 3365 | unit_bytes += 2*BBSIZE; |
1da177e4 LT |
3366 | } |
3367 | ||
cc09c0dc | 3368 | atomic_set(&tic->t_ref, 1); |
10547941 | 3369 | INIT_LIST_HEAD(&tic->t_queue); |
1da177e4 LT |
3370 | tic->t_unit_res = unit_bytes; |
3371 | tic->t_curr_res = unit_bytes; | |
3372 | tic->t_cnt = cnt; | |
3373 | tic->t_ocnt = cnt; | |
f9837107 | 3374 | tic->t_tid = random32(); |
1da177e4 LT |
3375 | tic->t_clientid = client; |
3376 | tic->t_flags = XLOG_TIC_INITED; | |
7e9c6396 | 3377 | tic->t_trans_type = 0; |
1da177e4 LT |
3378 | if (xflags & XFS_LOG_PERM_RESERV) |
3379 | tic->t_flags |= XLOG_TIC_PERM_RESERV; | |
eb40a875 | 3380 | init_waitqueue_head(&tic->t_wait); |
1da177e4 | 3381 | |
0adba536 | 3382 | xlog_tic_reset_res(tic); |
7e9c6396 | 3383 | |
1da177e4 | 3384 | return tic; |
cc09c0dc | 3385 | } |
1da177e4 LT |
3386 | |
3387 | ||
3388 | /****************************************************************************** | |
3389 | * | |
3390 | * Log debug routines | |
3391 | * | |
3392 | ****************************************************************************** | |
3393 | */ | |
cfcbbbd0 | 3394 | #if defined(DEBUG) |
1da177e4 LT |
3395 | /* |
3396 | * Make sure that the destination ptr is within the valid data region of | |
3397 | * one of the iclogs. This uses backup pointers stored in a different | |
3398 | * part of the log in case we trash the log structure. | |
3399 | */ | |
3400 | void | |
e6b1f273 CH |
3401 | xlog_verify_dest_ptr( |
3402 | struct log *log, | |
3403 | char *ptr) | |
1da177e4 LT |
3404 | { |
3405 | int i; | |
3406 | int good_ptr = 0; | |
3407 | ||
e6b1f273 CH |
3408 | for (i = 0; i < log->l_iclog_bufs; i++) { |
3409 | if (ptr >= log->l_iclog_bak[i] && | |
3410 | ptr <= log->l_iclog_bak[i] + log->l_iclog_size) | |
1da177e4 LT |
3411 | good_ptr++; |
3412 | } | |
e6b1f273 CH |
3413 | |
3414 | if (!good_ptr) | |
a0fa2b67 | 3415 | xfs_emerg(log->l_mp, "%s: invalid ptr", __func__); |
e6b1f273 | 3416 | } |
1da177e4 | 3417 | |
da8a1a4a DC |
3418 | /* |
3419 | * Check to make sure the grant write head didn't just over lap the tail. If | |
3420 | * the cycles are the same, we can't be overlapping. Otherwise, make sure that | |
3421 | * the cycles differ by exactly one and check the byte count. | |
3422 | * | |
3423 | * This check is run unlocked, so can give false positives. Rather than assert | |
3424 | * on failures, use a warn-once flag and a panic tag to allow the admin to | |
3425 | * determine if they want to panic the machine when such an error occurs. For | |
3426 | * debug kernels this will have the same effect as using an assert but, unlinke | |
3427 | * an assert, it can be turned off at runtime. | |
3428 | */ | |
3f336c6f DC |
3429 | STATIC void |
3430 | xlog_verify_grant_tail( | |
3431 | struct log *log) | |
3432 | { | |
1c3cb9ec | 3433 | int tail_cycle, tail_blocks; |
a69ed03c | 3434 | int cycle, space; |
3f336c6f | 3435 | |
a69ed03c | 3436 | xlog_crack_grant_head(&log->l_grant_write_head, &cycle, &space); |
1c3cb9ec DC |
3437 | xlog_crack_atomic_lsn(&log->l_tail_lsn, &tail_cycle, &tail_blocks); |
3438 | if (tail_cycle != cycle) { | |
da8a1a4a DC |
3439 | if (cycle - 1 != tail_cycle && |
3440 | !(log->l_flags & XLOG_TAIL_WARN)) { | |
3441 | xfs_alert_tag(log->l_mp, XFS_PTAG_LOGRES, | |
3442 | "%s: cycle - 1 != tail_cycle", __func__); | |
3443 | log->l_flags |= XLOG_TAIL_WARN; | |
3444 | } | |
3445 | ||
3446 | if (space > BBTOB(tail_blocks) && | |
3447 | !(log->l_flags & XLOG_TAIL_WARN)) { | |
3448 | xfs_alert_tag(log->l_mp, XFS_PTAG_LOGRES, | |
3449 | "%s: space > BBTOB(tail_blocks)", __func__); | |
3450 | log->l_flags |= XLOG_TAIL_WARN; | |
3451 | } | |
3f336c6f DC |
3452 | } |
3453 | } | |
3454 | ||
1da177e4 LT |
3455 | /* check if it will fit */ |
3456 | STATIC void | |
3457 | xlog_verify_tail_lsn(xlog_t *log, | |
3458 | xlog_in_core_t *iclog, | |
3459 | xfs_lsn_t tail_lsn) | |
3460 | { | |
3461 | int blocks; | |
3462 | ||
3463 | if (CYCLE_LSN(tail_lsn) == log->l_prev_cycle) { | |
3464 | blocks = | |
3465 | log->l_logBBsize - (log->l_prev_block - BLOCK_LSN(tail_lsn)); | |
3466 | if (blocks < BTOBB(iclog->ic_offset)+BTOBB(log->l_iclog_hsize)) | |
a0fa2b67 | 3467 | xfs_emerg(log->l_mp, "%s: ran out of log space", __func__); |
1da177e4 LT |
3468 | } else { |
3469 | ASSERT(CYCLE_LSN(tail_lsn)+1 == log->l_prev_cycle); | |
3470 | ||
3471 | if (BLOCK_LSN(tail_lsn) == log->l_prev_block) | |
a0fa2b67 | 3472 | xfs_emerg(log->l_mp, "%s: tail wrapped", __func__); |
1da177e4 LT |
3473 | |
3474 | blocks = BLOCK_LSN(tail_lsn) - log->l_prev_block; | |
3475 | if (blocks < BTOBB(iclog->ic_offset) + 1) | |
a0fa2b67 | 3476 | xfs_emerg(log->l_mp, "%s: ran out of log space", __func__); |
1da177e4 LT |
3477 | } |
3478 | } /* xlog_verify_tail_lsn */ | |
3479 | ||
3480 | /* | |
3481 | * Perform a number of checks on the iclog before writing to disk. | |
3482 | * | |
3483 | * 1. Make sure the iclogs are still circular | |
3484 | * 2. Make sure we have a good magic number | |
3485 | * 3. Make sure we don't have magic numbers in the data | |
3486 | * 4. Check fields of each log operation header for: | |
3487 | * A. Valid client identifier | |
3488 | * B. tid ptr value falls in valid ptr space (user space code) | |
3489 | * C. Length in log record header is correct according to the | |
3490 | * individual operation headers within record. | |
3491 | * 5. When a bwrite will occur within 5 blocks of the front of the physical | |
3492 | * log, check the preceding blocks of the physical log to make sure all | |
3493 | * the cycle numbers agree with the current cycle number. | |
3494 | */ | |
3495 | STATIC void | |
3496 | xlog_verify_iclog(xlog_t *log, | |
3497 | xlog_in_core_t *iclog, | |
3498 | int count, | |
3499 | boolean_t syncing) | |
3500 | { | |
3501 | xlog_op_header_t *ophead; | |
3502 | xlog_in_core_t *icptr; | |
3503 | xlog_in_core_2_t *xhdr; | |
3504 | xfs_caddr_t ptr; | |
3505 | xfs_caddr_t base_ptr; | |
3506 | __psint_t field_offset; | |
3507 | __uint8_t clientid; | |
3508 | int len, i, j, k, op_len; | |
3509 | int idx; | |
1da177e4 LT |
3510 | |
3511 | /* check validity of iclog pointers */ | |
b22cd72c | 3512 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
3513 | icptr = log->l_iclog; |
3514 | for (i=0; i < log->l_iclog_bufs; i++) { | |
4b80916b | 3515 | if (icptr == NULL) |
a0fa2b67 | 3516 | xfs_emerg(log->l_mp, "%s: invalid ptr", __func__); |
1da177e4 LT |
3517 | icptr = icptr->ic_next; |
3518 | } | |
3519 | if (icptr != log->l_iclog) | |
a0fa2b67 | 3520 | xfs_emerg(log->l_mp, "%s: corrupt iclog ring", __func__); |
b22cd72c | 3521 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3522 | |
3523 | /* check log magic numbers */ | |
b53e675d | 3524 | if (be32_to_cpu(iclog->ic_header.h_magicno) != XLOG_HEADER_MAGIC_NUM) |
a0fa2b67 | 3525 | xfs_emerg(log->l_mp, "%s: invalid magic num", __func__); |
1da177e4 | 3526 | |
b53e675d CH |
3527 | ptr = (xfs_caddr_t) &iclog->ic_header; |
3528 | for (ptr += BBSIZE; ptr < ((xfs_caddr_t)&iclog->ic_header) + count; | |
1da177e4 | 3529 | ptr += BBSIZE) { |
b53e675d | 3530 | if (be32_to_cpu(*(__be32 *)ptr) == XLOG_HEADER_MAGIC_NUM) |
a0fa2b67 DC |
3531 | xfs_emerg(log->l_mp, "%s: unexpected magic num", |
3532 | __func__); | |
1da177e4 LT |
3533 | } |
3534 | ||
3535 | /* check fields */ | |
b53e675d | 3536 | len = be32_to_cpu(iclog->ic_header.h_num_logops); |
1da177e4 LT |
3537 | ptr = iclog->ic_datap; |
3538 | base_ptr = ptr; | |
3539 | ophead = (xlog_op_header_t *)ptr; | |
b28708d6 | 3540 | xhdr = iclog->ic_data; |
1da177e4 LT |
3541 | for (i = 0; i < len; i++) { |
3542 | ophead = (xlog_op_header_t *)ptr; | |
3543 | ||
3544 | /* clientid is only 1 byte */ | |
3545 | field_offset = (__psint_t) | |
3546 | ((xfs_caddr_t)&(ophead->oh_clientid) - base_ptr); | |
3547 | if (syncing == B_FALSE || (field_offset & 0x1ff)) { | |
3548 | clientid = ophead->oh_clientid; | |
3549 | } else { | |
3550 | idx = BTOBBT((xfs_caddr_t)&(ophead->oh_clientid) - iclog->ic_datap); | |
3551 | if (idx >= (XLOG_HEADER_CYCLE_SIZE / BBSIZE)) { | |
3552 | j = idx / (XLOG_HEADER_CYCLE_SIZE / BBSIZE); | |
3553 | k = idx % (XLOG_HEADER_CYCLE_SIZE / BBSIZE); | |
03bea6fe CH |
3554 | clientid = xlog_get_client_id( |
3555 | xhdr[j].hic_xheader.xh_cycle_data[k]); | |
1da177e4 | 3556 | } else { |
03bea6fe CH |
3557 | clientid = xlog_get_client_id( |
3558 | iclog->ic_header.h_cycle_data[idx]); | |
1da177e4 LT |
3559 | } |
3560 | } | |
3561 | if (clientid != XFS_TRANSACTION && clientid != XFS_LOG) | |
a0fa2b67 DC |
3562 | xfs_warn(log->l_mp, |
3563 | "%s: invalid clientid %d op 0x%p offset 0x%lx", | |
3564 | __func__, clientid, ophead, | |
3565 | (unsigned long)field_offset); | |
1da177e4 LT |
3566 | |
3567 | /* check length */ | |
3568 | field_offset = (__psint_t) | |
3569 | ((xfs_caddr_t)&(ophead->oh_len) - base_ptr); | |
3570 | if (syncing == B_FALSE || (field_offset & 0x1ff)) { | |
67fcb7bf | 3571 | op_len = be32_to_cpu(ophead->oh_len); |
1da177e4 LT |
3572 | } else { |
3573 | idx = BTOBBT((__psint_t)&ophead->oh_len - | |
3574 | (__psint_t)iclog->ic_datap); | |
3575 | if (idx >= (XLOG_HEADER_CYCLE_SIZE / BBSIZE)) { | |
3576 | j = idx / (XLOG_HEADER_CYCLE_SIZE / BBSIZE); | |
3577 | k = idx % (XLOG_HEADER_CYCLE_SIZE / BBSIZE); | |
b53e675d | 3578 | op_len = be32_to_cpu(xhdr[j].hic_xheader.xh_cycle_data[k]); |
1da177e4 | 3579 | } else { |
b53e675d | 3580 | op_len = be32_to_cpu(iclog->ic_header.h_cycle_data[idx]); |
1da177e4 LT |
3581 | } |
3582 | } | |
3583 | ptr += sizeof(xlog_op_header_t) + op_len; | |
3584 | } | |
3585 | } /* xlog_verify_iclog */ | |
cfcbbbd0 | 3586 | #endif |
1da177e4 LT |
3587 | |
3588 | /* | |
b22cd72c | 3589 | * Mark all iclogs IOERROR. l_icloglock is held by the caller. |
1da177e4 LT |
3590 | */ |
3591 | STATIC int | |
3592 | xlog_state_ioerror( | |
3593 | xlog_t *log) | |
3594 | { | |
3595 | xlog_in_core_t *iclog, *ic; | |
3596 | ||
3597 | iclog = log->l_iclog; | |
3598 | if (! (iclog->ic_state & XLOG_STATE_IOERROR)) { | |
3599 | /* | |
3600 | * Mark all the incore logs IOERROR. | |
3601 | * From now on, no log flushes will result. | |
3602 | */ | |
3603 | ic = iclog; | |
3604 | do { | |
3605 | ic->ic_state = XLOG_STATE_IOERROR; | |
3606 | ic = ic->ic_next; | |
3607 | } while (ic != iclog); | |
014c2544 | 3608 | return 0; |
1da177e4 LT |
3609 | } |
3610 | /* | |
3611 | * Return non-zero, if state transition has already happened. | |
3612 | */ | |
014c2544 | 3613 | return 1; |
1da177e4 LT |
3614 | } |
3615 | ||
3616 | /* | |
3617 | * This is called from xfs_force_shutdown, when we're forcibly | |
3618 | * shutting down the filesystem, typically because of an IO error. | |
3619 | * Our main objectives here are to make sure that: | |
3620 | * a. the filesystem gets marked 'SHUTDOWN' for all interested | |
3621 | * parties to find out, 'atomically'. | |
3622 | * b. those who're sleeping on log reservations, pinned objects and | |
3623 | * other resources get woken up, and be told the bad news. | |
3624 | * c. nothing new gets queued up after (a) and (b) are done. | |
3625 | * d. if !logerror, flush the iclogs to disk, then seal them off | |
3626 | * for business. | |
9da1ab18 DC |
3627 | * |
3628 | * Note: for delayed logging the !logerror case needs to flush the regions | |
3629 | * held in memory out to the iclogs before flushing them to disk. This needs | |
3630 | * to be done before the log is marked as shutdown, otherwise the flush to the | |
3631 | * iclogs will fail. | |
1da177e4 LT |
3632 | */ |
3633 | int | |
3634 | xfs_log_force_umount( | |
3635 | struct xfs_mount *mp, | |
3636 | int logerror) | |
3637 | { | |
3638 | xlog_ticket_t *tic; | |
3639 | xlog_t *log; | |
3640 | int retval; | |
1da177e4 LT |
3641 | |
3642 | log = mp->m_log; | |
3643 | ||
3644 | /* | |
3645 | * If this happens during log recovery, don't worry about | |
3646 | * locking; the log isn't open for business yet. | |
3647 | */ | |
3648 | if (!log || | |
3649 | log->l_flags & XLOG_ACTIVE_RECOVERY) { | |
3650 | mp->m_flags |= XFS_MOUNT_FS_SHUTDOWN; | |
bac8dca9 CH |
3651 | if (mp->m_sb_bp) |
3652 | XFS_BUF_DONE(mp->m_sb_bp); | |
014c2544 | 3653 | return 0; |
1da177e4 LT |
3654 | } |
3655 | ||
3656 | /* | |
3657 | * Somebody could've already done the hard work for us. | |
3658 | * No need to get locks for this. | |
3659 | */ | |
3660 | if (logerror && log->l_iclog->ic_state & XLOG_STATE_IOERROR) { | |
3661 | ASSERT(XLOG_FORCED_SHUTDOWN(log)); | |
014c2544 | 3662 | return 1; |
1da177e4 LT |
3663 | } |
3664 | retval = 0; | |
9da1ab18 DC |
3665 | |
3666 | /* | |
3667 | * Flush the in memory commit item list before marking the log as | |
3668 | * being shut down. We need to do it in this order to ensure all the | |
3669 | * completed transactions are flushed to disk with the xfs_log_force() | |
3670 | * call below. | |
3671 | */ | |
3672 | if (!logerror && (mp->m_flags & XFS_MOUNT_DELAYLOG)) | |
a44f13ed | 3673 | xlog_cil_force(log); |
9da1ab18 | 3674 | |
1da177e4 | 3675 | /* |
3f16b985 DC |
3676 | * mark the filesystem and the as in a shutdown state and wake |
3677 | * everybody up to tell them the bad news. | |
1da177e4 | 3678 | */ |
b22cd72c | 3679 | spin_lock(&log->l_icloglock); |
1da177e4 | 3680 | mp->m_flags |= XFS_MOUNT_FS_SHUTDOWN; |
bac8dca9 CH |
3681 | if (mp->m_sb_bp) |
3682 | XFS_BUF_DONE(mp->m_sb_bp); | |
3683 | ||
1da177e4 LT |
3684 | /* |
3685 | * This flag is sort of redundant because of the mount flag, but | |
3686 | * it's good to maintain the separation between the log and the rest | |
3687 | * of XFS. | |
3688 | */ | |
3689 | log->l_flags |= XLOG_IO_ERROR; | |
3690 | ||
3691 | /* | |
3692 | * If we hit a log error, we want to mark all the iclogs IOERROR | |
3693 | * while we're still holding the loglock. | |
3694 | */ | |
3695 | if (logerror) | |
3696 | retval = xlog_state_ioerror(log); | |
b22cd72c | 3697 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3698 | |
3699 | /* | |
10547941 DC |
3700 | * We don't want anybody waiting for log reservations after this. That |
3701 | * means we have to wake up everybody queued up on reserveq as well as | |
3702 | * writeq. In addition, we make sure in xlog_{re}grant_log_space that | |
3703 | * we don't enqueue anything once the SHUTDOWN flag is set, and this | |
3f16b985 | 3704 | * action is protected by the grant locks. |
1da177e4 | 3705 | */ |
3f16b985 | 3706 | spin_lock(&log->l_grant_reserve_lock); |
10547941 | 3707 | list_for_each_entry(tic, &log->l_reserveq, t_queue) |
eb40a875 | 3708 | wake_up(&tic->t_wait); |
3f16b985 | 3709 | spin_unlock(&log->l_grant_reserve_lock); |
1da177e4 | 3710 | |
3f16b985 | 3711 | spin_lock(&log->l_grant_write_lock); |
10547941 | 3712 | list_for_each_entry(tic, &log->l_writeq, t_queue) |
eb40a875 | 3713 | wake_up(&tic->t_wait); |
3f16b985 | 3714 | spin_unlock(&log->l_grant_write_lock); |
1da177e4 | 3715 | |
a14a348b | 3716 | if (!(log->l_iclog->ic_state & XLOG_STATE_IOERROR)) { |
1da177e4 LT |
3717 | ASSERT(!logerror); |
3718 | /* | |
3719 | * Force the incore logs to disk before shutting the | |
3720 | * log down completely. | |
3721 | */ | |
a14a348b CH |
3722 | _xfs_log_force(mp, XFS_LOG_SYNC, NULL); |
3723 | ||
b22cd72c | 3724 | spin_lock(&log->l_icloglock); |
1da177e4 | 3725 | retval = xlog_state_ioerror(log); |
b22cd72c | 3726 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3727 | } |
3728 | /* | |
3729 | * Wake up everybody waiting on xfs_log_force. | |
3730 | * Callback all log item committed functions as if the | |
3731 | * log writes were completed. | |
3732 | */ | |
3733 | xlog_state_do_callback(log, XFS_LI_ABORTED, NULL); | |
3734 | ||
3735 | #ifdef XFSERRORDEBUG | |
3736 | { | |
3737 | xlog_in_core_t *iclog; | |
3738 | ||
b22cd72c | 3739 | spin_lock(&log->l_icloglock); |
1da177e4 LT |
3740 | iclog = log->l_iclog; |
3741 | do { | |
3742 | ASSERT(iclog->ic_callback == 0); | |
3743 | iclog = iclog->ic_next; | |
3744 | } while (iclog != log->l_iclog); | |
b22cd72c | 3745 | spin_unlock(&log->l_icloglock); |
1da177e4 LT |
3746 | } |
3747 | #endif | |
3748 | /* return non-zero if log IOERROR transition had already happened */ | |
014c2544 | 3749 | return retval; |
1da177e4 LT |
3750 | } |
3751 | ||
ba0f32d4 | 3752 | STATIC int |
1da177e4 LT |
3753 | xlog_iclogs_empty(xlog_t *log) |
3754 | { | |
3755 | xlog_in_core_t *iclog; | |
3756 | ||
3757 | iclog = log->l_iclog; | |
3758 | do { | |
3759 | /* endianness does not matter here, zero is zero in | |
3760 | * any language. | |
3761 | */ | |
3762 | if (iclog->ic_header.h_num_logops) | |
014c2544 | 3763 | return 0; |
1da177e4 LT |
3764 | iclog = iclog->ic_next; |
3765 | } while (iclog != log->l_iclog); | |
014c2544 | 3766 | return 1; |
1da177e4 | 3767 | } |