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9ff05123 RK |
1 | /* |
2 | * segment.c - NILFS segment constructor. | |
3 | * | |
4 | * Copyright (C) 2005-2008 Nippon Telegraph and Telephone Corporation. | |
5 | * | |
6 | * This program is free software; you can redistribute it and/or modify | |
7 | * it under the terms of the GNU General Public License as published by | |
8 | * the Free Software Foundation; either version 2 of the License, or | |
9 | * (at your option) any later version. | |
10 | * | |
11 | * This program is distributed in the hope that it will be useful, | |
12 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | |
13 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
14 | * GNU General Public License for more details. | |
15 | * | |
4b420ab4 | 16 | * Written by Ryusuke Konishi. |
9ff05123 RK |
17 | * |
18 | */ | |
19 | ||
20 | #include <linux/pagemap.h> | |
21 | #include <linux/buffer_head.h> | |
22 | #include <linux/writeback.h> | |
ead8ecff | 23 | #include <linux/bitops.h> |
9ff05123 RK |
24 | #include <linux/bio.h> |
25 | #include <linux/completion.h> | |
26 | #include <linux/blkdev.h> | |
27 | #include <linux/backing-dev.h> | |
28 | #include <linux/freezer.h> | |
29 | #include <linux/kthread.h> | |
30 | #include <linux/crc32.h> | |
31 | #include <linux/pagevec.h> | |
5a0e3ad6 | 32 | #include <linux/slab.h> |
9ff05123 RK |
33 | #include "nilfs.h" |
34 | #include "btnode.h" | |
35 | #include "page.h" | |
36 | #include "segment.h" | |
37 | #include "sufile.h" | |
38 | #include "cpfile.h" | |
39 | #include "ifile.h" | |
9ff05123 RK |
40 | #include "segbuf.h" |
41 | ||
42 | ||
43 | /* | |
44 | * Segment constructor | |
45 | */ | |
46 | #define SC_N_INODEVEC 16 /* Size of locally allocated inode vector */ | |
47 | ||
076a378b RK |
48 | #define SC_MAX_SEGDELTA 64 /* |
49 | * Upper limit of the number of segments | |
50 | * appended in collection retry loop | |
51 | */ | |
9ff05123 RK |
52 | |
53 | /* Construction mode */ | |
54 | enum { | |
55 | SC_LSEG_SR = 1, /* Make a logical segment having a super root */ | |
076a378b RK |
56 | SC_LSEG_DSYNC, /* |
57 | * Flush data blocks of a given file and make | |
58 | * a logical segment without a super root. | |
59 | */ | |
60 | SC_FLUSH_FILE, /* | |
61 | * Flush data files, leads to segment writes without | |
62 | * creating a checkpoint. | |
63 | */ | |
64 | SC_FLUSH_DAT, /* | |
65 | * Flush DAT file. This also creates segments | |
66 | * without a checkpoint. | |
67 | */ | |
9ff05123 RK |
68 | }; |
69 | ||
70 | /* Stage numbers of dirty block collection */ | |
71 | enum { | |
72 | NILFS_ST_INIT = 0, | |
73 | NILFS_ST_GC, /* Collecting dirty blocks for GC */ | |
74 | NILFS_ST_FILE, | |
9ff05123 RK |
75 | NILFS_ST_IFILE, |
76 | NILFS_ST_CPFILE, | |
77 | NILFS_ST_SUFILE, | |
78 | NILFS_ST_DAT, | |
79 | NILFS_ST_SR, /* Super root */ | |
80 | NILFS_ST_DSYNC, /* Data sync blocks */ | |
81 | NILFS_ST_DONE, | |
82 | }; | |
83 | ||
58497703 HM |
84 | #define CREATE_TRACE_POINTS |
85 | #include <trace/events/nilfs2.h> | |
86 | ||
87 | /* | |
88 | * nilfs_sc_cstage_inc(), nilfs_sc_cstage_set(), nilfs_sc_cstage_get() are | |
89 | * wrapper functions of stage count (nilfs_sc_info->sc_stage.scnt). Users of | |
90 | * the variable must use them because transition of stage count must involve | |
91 | * trace events (trace_nilfs2_collection_stage_transition). | |
92 | * | |
93 | * nilfs_sc_cstage_get() isn't required for the above purpose because it doesn't | |
94 | * produce tracepoint events. It is provided just for making the intention | |
95 | * clear. | |
96 | */ | |
97 | static inline void nilfs_sc_cstage_inc(struct nilfs_sc_info *sci) | |
98 | { | |
99 | sci->sc_stage.scnt++; | |
100 | trace_nilfs2_collection_stage_transition(sci); | |
101 | } | |
102 | ||
103 | static inline void nilfs_sc_cstage_set(struct nilfs_sc_info *sci, int next_scnt) | |
104 | { | |
105 | sci->sc_stage.scnt = next_scnt; | |
106 | trace_nilfs2_collection_stage_transition(sci); | |
107 | } | |
108 | ||
109 | static inline int nilfs_sc_cstage_get(struct nilfs_sc_info *sci) | |
110 | { | |
111 | return sci->sc_stage.scnt; | |
112 | } | |
113 | ||
9ff05123 RK |
114 | /* State flags of collection */ |
115 | #define NILFS_CF_NODE 0x0001 /* Collecting node blocks */ | |
116 | #define NILFS_CF_IFILE_STARTED 0x0002 /* IFILE stage has started */ | |
071cb4b8 RK |
117 | #define NILFS_CF_SUFREED 0x0004 /* segment usages has been freed */ |
118 | #define NILFS_CF_HISTORY_MASK (NILFS_CF_IFILE_STARTED | NILFS_CF_SUFREED) | |
9ff05123 RK |
119 | |
120 | /* Operations depending on the construction mode and file type */ | |
121 | struct nilfs_sc_operations { | |
122 | int (*collect_data)(struct nilfs_sc_info *, struct buffer_head *, | |
123 | struct inode *); | |
124 | int (*collect_node)(struct nilfs_sc_info *, struct buffer_head *, | |
125 | struct inode *); | |
126 | int (*collect_bmap)(struct nilfs_sc_info *, struct buffer_head *, | |
127 | struct inode *); | |
128 | void (*write_data_binfo)(struct nilfs_sc_info *, | |
129 | struct nilfs_segsum_pointer *, | |
130 | union nilfs_binfo *); | |
131 | void (*write_node_binfo)(struct nilfs_sc_info *, | |
132 | struct nilfs_segsum_pointer *, | |
133 | union nilfs_binfo *); | |
134 | }; | |
135 | ||
136 | /* | |
137 | * Other definitions | |
138 | */ | |
139 | static void nilfs_segctor_start_timer(struct nilfs_sc_info *); | |
140 | static void nilfs_segctor_do_flush(struct nilfs_sc_info *, int); | |
141 | static void nilfs_segctor_do_immediate_flush(struct nilfs_sc_info *); | |
693dd321 | 142 | static void nilfs_dispose_list(struct the_nilfs *, struct list_head *, int); |
9ff05123 RK |
143 | |
144 | #define nilfs_cnt32_gt(a, b) \ | |
145 | (typecheck(__u32, a) && typecheck(__u32, b) && \ | |
146 | ((__s32)(b) - (__s32)(a) < 0)) | |
147 | #define nilfs_cnt32_ge(a, b) \ | |
148 | (typecheck(__u32, a) && typecheck(__u32, b) && \ | |
149 | ((__s32)(a) - (__s32)(b) >= 0)) | |
150 | #define nilfs_cnt32_lt(a, b) nilfs_cnt32_gt(b, a) | |
151 | #define nilfs_cnt32_le(a, b) nilfs_cnt32_ge(b, a) | |
152 | ||
9ff05123 RK |
153 | static int nilfs_prepare_segment_lock(struct nilfs_transaction_info *ti) |
154 | { | |
155 | struct nilfs_transaction_info *cur_ti = current->journal_info; | |
156 | void *save = NULL; | |
157 | ||
158 | if (cur_ti) { | |
159 | if (cur_ti->ti_magic == NILFS_TI_MAGIC) | |
160 | return ++cur_ti->ti_count; | |
7f00184e RK |
161 | |
162 | /* | |
163 | * If journal_info field is occupied by other FS, | |
164 | * it is saved and will be restored on | |
165 | * nilfs_transaction_commit(). | |
166 | */ | |
167 | printk(KERN_WARNING | |
168 | "NILFS warning: journal info from a different FS\n"); | |
169 | save = current->journal_info; | |
9ff05123 RK |
170 | } |
171 | if (!ti) { | |
172 | ti = kmem_cache_alloc(nilfs_transaction_cachep, GFP_NOFS); | |
173 | if (!ti) | |
174 | return -ENOMEM; | |
175 | ti->ti_flags = NILFS_TI_DYNAMIC_ALLOC; | |
176 | } else { | |
177 | ti->ti_flags = 0; | |
178 | } | |
179 | ti->ti_count = 0; | |
180 | ti->ti_save = save; | |
181 | ti->ti_magic = NILFS_TI_MAGIC; | |
182 | current->journal_info = ti; | |
183 | return 0; | |
184 | } | |
185 | ||
186 | /** | |
187 | * nilfs_transaction_begin - start indivisible file operations. | |
188 | * @sb: super block | |
189 | * @ti: nilfs_transaction_info | |
190 | * @vacancy_check: flags for vacancy rate checks | |
191 | * | |
192 | * nilfs_transaction_begin() acquires a reader/writer semaphore, called | |
193 | * the segment semaphore, to make a segment construction and write tasks | |
47420c79 | 194 | * exclusive. The function is used with nilfs_transaction_commit() in pairs. |
9ff05123 RK |
195 | * The region enclosed by these two functions can be nested. To avoid a |
196 | * deadlock, the semaphore is only acquired or released in the outermost call. | |
197 | * | |
198 | * This function allocates a nilfs_transaction_info struct to keep context | |
199 | * information on it. It is initialized and hooked onto the current task in | |
200 | * the outermost call. If a pre-allocated struct is given to @ti, it is used | |
7a65004b | 201 | * instead; otherwise a new struct is assigned from a slab. |
9ff05123 RK |
202 | * |
203 | * When @vacancy_check flag is set, this function will check the amount of | |
204 | * free space, and will wait for the GC to reclaim disk space if low capacity. | |
205 | * | |
206 | * Return Value: On success, 0 is returned. On error, one of the following | |
207 | * negative error code is returned. | |
208 | * | |
209 | * %-ENOMEM - Insufficient memory available. | |
210 | * | |
9ff05123 RK |
211 | * %-ENOSPC - No space left on device |
212 | */ | |
213 | int nilfs_transaction_begin(struct super_block *sb, | |
214 | struct nilfs_transaction_info *ti, | |
215 | int vacancy_check) | |
216 | { | |
9ff05123 RK |
217 | struct the_nilfs *nilfs; |
218 | int ret = nilfs_prepare_segment_lock(ti); | |
44fda114 | 219 | struct nilfs_transaction_info *trace_ti; |
9ff05123 RK |
220 | |
221 | if (unlikely(ret < 0)) | |
222 | return ret; | |
44fda114 HM |
223 | if (ret > 0) { |
224 | trace_ti = current->journal_info; | |
225 | ||
226 | trace_nilfs2_transaction_transition(sb, trace_ti, | |
227 | trace_ti->ti_count, trace_ti->ti_flags, | |
228 | TRACE_NILFS2_TRANSACTION_BEGIN); | |
9ff05123 | 229 | return 0; |
44fda114 | 230 | } |
9ff05123 | 231 | |
2c22b337 | 232 | sb_start_intwrite(sb); |
5beb6e0b | 233 | |
e3154e97 | 234 | nilfs = sb->s_fs_info; |
9ff05123 RK |
235 | down_read(&nilfs->ns_segctor_sem); |
236 | if (vacancy_check && nilfs_near_disk_full(nilfs)) { | |
237 | up_read(&nilfs->ns_segctor_sem); | |
238 | ret = -ENOSPC; | |
239 | goto failed; | |
240 | } | |
44fda114 HM |
241 | |
242 | trace_ti = current->journal_info; | |
243 | trace_nilfs2_transaction_transition(sb, trace_ti, trace_ti->ti_count, | |
244 | trace_ti->ti_flags, | |
245 | TRACE_NILFS2_TRANSACTION_BEGIN); | |
9ff05123 RK |
246 | return 0; |
247 | ||
248 | failed: | |
249 | ti = current->journal_info; | |
250 | current->journal_info = ti->ti_save; | |
251 | if (ti->ti_flags & NILFS_TI_DYNAMIC_ALLOC) | |
252 | kmem_cache_free(nilfs_transaction_cachep, ti); | |
2c22b337 | 253 | sb_end_intwrite(sb); |
9ff05123 RK |
254 | return ret; |
255 | } | |
256 | ||
257 | /** | |
47420c79 | 258 | * nilfs_transaction_commit - commit indivisible file operations. |
9ff05123 | 259 | * @sb: super block |
9ff05123 | 260 | * |
47420c79 RK |
261 | * nilfs_transaction_commit() releases the read semaphore which is |
262 | * acquired by nilfs_transaction_begin(). This is only performed | |
263 | * in outermost call of this function. If a commit flag is set, | |
264 | * nilfs_transaction_commit() sets a timer to start the segment | |
265 | * constructor. If a sync flag is set, it starts construction | |
266 | * directly. | |
9ff05123 | 267 | */ |
47420c79 | 268 | int nilfs_transaction_commit(struct super_block *sb) |
9ff05123 RK |
269 | { |
270 | struct nilfs_transaction_info *ti = current->journal_info; | |
e3154e97 | 271 | struct the_nilfs *nilfs = sb->s_fs_info; |
9ff05123 RK |
272 | int err = 0; |
273 | ||
274 | BUG_ON(ti == NULL || ti->ti_magic != NILFS_TI_MAGIC); | |
47420c79 | 275 | ti->ti_flags |= NILFS_TI_COMMIT; |
9ff05123 RK |
276 | if (ti->ti_count > 0) { |
277 | ti->ti_count--; | |
44fda114 HM |
278 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, |
279 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_COMMIT); | |
9ff05123 RK |
280 | return 0; |
281 | } | |
3fd3fe5a RK |
282 | if (nilfs->ns_writer) { |
283 | struct nilfs_sc_info *sci = nilfs->ns_writer; | |
284 | ||
9ff05123 RK |
285 | if (ti->ti_flags & NILFS_TI_COMMIT) |
286 | nilfs_segctor_start_timer(sci); | |
3fd3fe5a | 287 | if (atomic_read(&nilfs->ns_ndirtyblks) > sci->sc_watermark) |
9ff05123 RK |
288 | nilfs_segctor_do_flush(sci, 0); |
289 | } | |
3fd3fe5a | 290 | up_read(&nilfs->ns_segctor_sem); |
44fda114 HM |
291 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, |
292 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_COMMIT); | |
293 | ||
9ff05123 RK |
294 | current->journal_info = ti->ti_save; |
295 | ||
296 | if (ti->ti_flags & NILFS_TI_SYNC) | |
297 | err = nilfs_construct_segment(sb); | |
298 | if (ti->ti_flags & NILFS_TI_DYNAMIC_ALLOC) | |
299 | kmem_cache_free(nilfs_transaction_cachep, ti); | |
2c22b337 | 300 | sb_end_intwrite(sb); |
9ff05123 RK |
301 | return err; |
302 | } | |
303 | ||
47420c79 RK |
304 | void nilfs_transaction_abort(struct super_block *sb) |
305 | { | |
306 | struct nilfs_transaction_info *ti = current->journal_info; | |
e3154e97 | 307 | struct the_nilfs *nilfs = sb->s_fs_info; |
47420c79 RK |
308 | |
309 | BUG_ON(ti == NULL || ti->ti_magic != NILFS_TI_MAGIC); | |
310 | if (ti->ti_count > 0) { | |
311 | ti->ti_count--; | |
44fda114 HM |
312 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, |
313 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_ABORT); | |
47420c79 RK |
314 | return; |
315 | } | |
e3154e97 | 316 | up_read(&nilfs->ns_segctor_sem); |
47420c79 | 317 | |
44fda114 HM |
318 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, |
319 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_ABORT); | |
320 | ||
47420c79 RK |
321 | current->journal_info = ti->ti_save; |
322 | if (ti->ti_flags & NILFS_TI_DYNAMIC_ALLOC) | |
323 | kmem_cache_free(nilfs_transaction_cachep, ti); | |
2c22b337 | 324 | sb_end_intwrite(sb); |
47420c79 RK |
325 | } |
326 | ||
9ff05123 RK |
327 | void nilfs_relax_pressure_in_lock(struct super_block *sb) |
328 | { | |
e3154e97 | 329 | struct the_nilfs *nilfs = sb->s_fs_info; |
3fd3fe5a | 330 | struct nilfs_sc_info *sci = nilfs->ns_writer; |
9ff05123 RK |
331 | |
332 | if (!sci || !sci->sc_flush_request) | |
333 | return; | |
334 | ||
335 | set_bit(NILFS_SC_PRIOR_FLUSH, &sci->sc_flags); | |
336 | up_read(&nilfs->ns_segctor_sem); | |
337 | ||
338 | down_write(&nilfs->ns_segctor_sem); | |
339 | if (sci->sc_flush_request && | |
340 | test_bit(NILFS_SC_PRIOR_FLUSH, &sci->sc_flags)) { | |
341 | struct nilfs_transaction_info *ti = current->journal_info; | |
342 | ||
343 | ti->ti_flags |= NILFS_TI_WRITER; | |
344 | nilfs_segctor_do_immediate_flush(sci); | |
345 | ti->ti_flags &= ~NILFS_TI_WRITER; | |
346 | } | |
347 | downgrade_write(&nilfs->ns_segctor_sem); | |
348 | } | |
349 | ||
f7545144 | 350 | static void nilfs_transaction_lock(struct super_block *sb, |
9ff05123 RK |
351 | struct nilfs_transaction_info *ti, |
352 | int gcflag) | |
353 | { | |
354 | struct nilfs_transaction_info *cur_ti = current->journal_info; | |
e3154e97 | 355 | struct the_nilfs *nilfs = sb->s_fs_info; |
3fd3fe5a | 356 | struct nilfs_sc_info *sci = nilfs->ns_writer; |
9ff05123 | 357 | |
1f5abe7e | 358 | WARN_ON(cur_ti); |
9ff05123 RK |
359 | ti->ti_flags = NILFS_TI_WRITER; |
360 | ti->ti_count = 0; | |
361 | ti->ti_save = cur_ti; | |
362 | ti->ti_magic = NILFS_TI_MAGIC; | |
9ff05123 RK |
363 | current->journal_info = ti; |
364 | ||
365 | for (;;) { | |
44fda114 HM |
366 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, |
367 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_TRYLOCK); | |
368 | ||
3fd3fe5a RK |
369 | down_write(&nilfs->ns_segctor_sem); |
370 | if (!test_bit(NILFS_SC_PRIOR_FLUSH, &sci->sc_flags)) | |
9ff05123 RK |
371 | break; |
372 | ||
3fd3fe5a | 373 | nilfs_segctor_do_immediate_flush(sci); |
9ff05123 | 374 | |
f7545144 | 375 | up_write(&nilfs->ns_segctor_sem); |
9ff05123 RK |
376 | yield(); |
377 | } | |
378 | if (gcflag) | |
379 | ti->ti_flags |= NILFS_TI_GC; | |
44fda114 HM |
380 | |
381 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, | |
382 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_LOCK); | |
9ff05123 RK |
383 | } |
384 | ||
f7545144 | 385 | static void nilfs_transaction_unlock(struct super_block *sb) |
9ff05123 RK |
386 | { |
387 | struct nilfs_transaction_info *ti = current->journal_info; | |
e3154e97 | 388 | struct the_nilfs *nilfs = sb->s_fs_info; |
9ff05123 RK |
389 | |
390 | BUG_ON(ti == NULL || ti->ti_magic != NILFS_TI_MAGIC); | |
391 | BUG_ON(ti->ti_count > 0); | |
392 | ||
693dd321 | 393 | up_write(&nilfs->ns_segctor_sem); |
9ff05123 | 394 | current->journal_info = ti->ti_save; |
44fda114 HM |
395 | |
396 | trace_nilfs2_transaction_transition(sb, ti, ti->ti_count, | |
397 | ti->ti_flags, TRACE_NILFS2_TRANSACTION_UNLOCK); | |
9ff05123 RK |
398 | } |
399 | ||
400 | static void *nilfs_segctor_map_segsum_entry(struct nilfs_sc_info *sci, | |
401 | struct nilfs_segsum_pointer *ssp, | |
0c6c44cb | 402 | unsigned int bytes) |
9ff05123 RK |
403 | { |
404 | struct nilfs_segment_buffer *segbuf = sci->sc_curseg; | |
0c6c44cb | 405 | unsigned int blocksize = sci->sc_super->s_blocksize; |
9ff05123 RK |
406 | void *p; |
407 | ||
408 | if (unlikely(ssp->offset + bytes > blocksize)) { | |
409 | ssp->offset = 0; | |
410 | BUG_ON(NILFS_SEGBUF_BH_IS_LAST(ssp->bh, | |
411 | &segbuf->sb_segsum_buffers)); | |
412 | ssp->bh = NILFS_SEGBUF_NEXT_BH(ssp->bh); | |
413 | } | |
414 | p = ssp->bh->b_data + ssp->offset; | |
415 | ssp->offset += bytes; | |
416 | return p; | |
417 | } | |
418 | ||
419 | /** | |
420 | * nilfs_segctor_reset_segment_buffer - reset the current segment buffer | |
421 | * @sci: nilfs_sc_info | |
422 | */ | |
423 | static int nilfs_segctor_reset_segment_buffer(struct nilfs_sc_info *sci) | |
424 | { | |
425 | struct nilfs_segment_buffer *segbuf = sci->sc_curseg; | |
426 | struct buffer_head *sumbh; | |
0c6c44cb RK |
427 | unsigned int sumbytes; |
428 | unsigned int flags = 0; | |
9ff05123 RK |
429 | int err; |
430 | ||
431 | if (nilfs_doing_gc()) | |
432 | flags = NILFS_SS_GC; | |
6c43f410 | 433 | err = nilfs_segbuf_reset(segbuf, flags, sci->sc_seg_ctime, sci->sc_cno); |
9ff05123 RK |
434 | if (unlikely(err)) |
435 | return err; | |
436 | ||
437 | sumbh = NILFS_SEGBUF_FIRST_BH(&segbuf->sb_segsum_buffers); | |
438 | sumbytes = segbuf->sb_sum.sumbytes; | |
439 | sci->sc_finfo_ptr.bh = sumbh; sci->sc_finfo_ptr.offset = sumbytes; | |
440 | sci->sc_binfo_ptr.bh = sumbh; sci->sc_binfo_ptr.offset = sumbytes; | |
441 | sci->sc_blk_cnt = sci->sc_datablk_cnt = 0; | |
442 | return 0; | |
443 | } | |
444 | ||
445 | static int nilfs_segctor_feed_segment(struct nilfs_sc_info *sci) | |
446 | { | |
447 | sci->sc_nblk_this_inc += sci->sc_curseg->sb_sum.nblocks; | |
448 | if (NILFS_SEGBUF_IS_LAST(sci->sc_curseg, &sci->sc_segbufs)) | |
076a378b RK |
449 | return -E2BIG; /* |
450 | * The current segment is filled up | |
451 | * (internal code) | |
452 | */ | |
9ff05123 RK |
453 | sci->sc_curseg = NILFS_NEXT_SEGBUF(sci->sc_curseg); |
454 | return nilfs_segctor_reset_segment_buffer(sci); | |
455 | } | |
456 | ||
457 | static int nilfs_segctor_add_super_root(struct nilfs_sc_info *sci) | |
458 | { | |
459 | struct nilfs_segment_buffer *segbuf = sci->sc_curseg; | |
460 | int err; | |
461 | ||
462 | if (segbuf->sb_sum.nblocks >= segbuf->sb_rest_blocks) { | |
463 | err = nilfs_segctor_feed_segment(sci); | |
464 | if (err) | |
465 | return err; | |
466 | segbuf = sci->sc_curseg; | |
467 | } | |
1e2b68bf | 468 | err = nilfs_segbuf_extend_payload(segbuf, &segbuf->sb_super_root); |
9ff05123 RK |
469 | if (likely(!err)) |
470 | segbuf->sb_sum.flags |= NILFS_SS_SR; | |
471 | return err; | |
472 | } | |
473 | ||
474 | /* | |
475 | * Functions for making segment summary and payloads | |
476 | */ | |
477 | static int nilfs_segctor_segsum_block_required( | |
478 | struct nilfs_sc_info *sci, const struct nilfs_segsum_pointer *ssp, | |
0c6c44cb | 479 | unsigned int binfo_size) |
9ff05123 | 480 | { |
0c6c44cb | 481 | unsigned int blocksize = sci->sc_super->s_blocksize; |
9ff05123 RK |
482 | /* Size of finfo and binfo is enough small against blocksize */ |
483 | ||
484 | return ssp->offset + binfo_size + | |
485 | (!sci->sc_blk_cnt ? sizeof(struct nilfs_finfo) : 0) > | |
486 | blocksize; | |
487 | } | |
488 | ||
489 | static void nilfs_segctor_begin_finfo(struct nilfs_sc_info *sci, | |
490 | struct inode *inode) | |
491 | { | |
492 | sci->sc_curseg->sb_sum.nfinfo++; | |
493 | sci->sc_binfo_ptr = sci->sc_finfo_ptr; | |
494 | nilfs_segctor_map_segsum_entry( | |
495 | sci, &sci->sc_binfo_ptr, sizeof(struct nilfs_finfo)); | |
c96fa464 | 496 | |
72746ac6 RK |
497 | if (NILFS_I(inode)->i_root && |
498 | !test_bit(NILFS_SC_HAVE_DELTA, &sci->sc_flags)) | |
c96fa464 | 499 | set_bit(NILFS_SC_HAVE_DELTA, &sci->sc_flags); |
9ff05123 RK |
500 | /* skip finfo */ |
501 | } | |
502 | ||
503 | static void nilfs_segctor_end_finfo(struct nilfs_sc_info *sci, | |
504 | struct inode *inode) | |
505 | { | |
506 | struct nilfs_finfo *finfo; | |
507 | struct nilfs_inode_info *ii; | |
508 | struct nilfs_segment_buffer *segbuf; | |
6c43f410 | 509 | __u64 cno; |
9ff05123 RK |
510 | |
511 | if (sci->sc_blk_cnt == 0) | |
512 | return; | |
513 | ||
514 | ii = NILFS_I(inode); | |
6c43f410 RK |
515 | |
516 | if (test_bit(NILFS_I_GCINODE, &ii->i_state)) | |
517 | cno = ii->i_cno; | |
518 | else if (NILFS_ROOT_METADATA_FILE(inode->i_ino)) | |
519 | cno = 0; | |
520 | else | |
521 | cno = sci->sc_cno; | |
522 | ||
9ff05123 RK |
523 | finfo = nilfs_segctor_map_segsum_entry(sci, &sci->sc_finfo_ptr, |
524 | sizeof(*finfo)); | |
525 | finfo->fi_ino = cpu_to_le64(inode->i_ino); | |
526 | finfo->fi_nblocks = cpu_to_le32(sci->sc_blk_cnt); | |
527 | finfo->fi_ndatablk = cpu_to_le32(sci->sc_datablk_cnt); | |
6c43f410 | 528 | finfo->fi_cno = cpu_to_le64(cno); |
9ff05123 RK |
529 | |
530 | segbuf = sci->sc_curseg; | |
531 | segbuf->sb_sum.sumbytes = sci->sc_binfo_ptr.offset + | |
532 | sci->sc_super->s_blocksize * (segbuf->sb_sum.nsumblk - 1); | |
533 | sci->sc_finfo_ptr = sci->sc_binfo_ptr; | |
534 | sci->sc_blk_cnt = sci->sc_datablk_cnt = 0; | |
535 | } | |
536 | ||
537 | static int nilfs_segctor_add_file_block(struct nilfs_sc_info *sci, | |
538 | struct buffer_head *bh, | |
539 | struct inode *inode, | |
0c6c44cb | 540 | unsigned int binfo_size) |
9ff05123 RK |
541 | { |
542 | struct nilfs_segment_buffer *segbuf; | |
543 | int required, err = 0; | |
544 | ||
545 | retry: | |
546 | segbuf = sci->sc_curseg; | |
547 | required = nilfs_segctor_segsum_block_required( | |
548 | sci, &sci->sc_binfo_ptr, binfo_size); | |
549 | if (segbuf->sb_sum.nblocks + required + 1 > segbuf->sb_rest_blocks) { | |
550 | nilfs_segctor_end_finfo(sci, inode); | |
551 | err = nilfs_segctor_feed_segment(sci); | |
552 | if (err) | |
553 | return err; | |
554 | goto retry; | |
555 | } | |
556 | if (unlikely(required)) { | |
557 | err = nilfs_segbuf_extend_segsum(segbuf); | |
558 | if (unlikely(err)) | |
559 | goto failed; | |
560 | } | |
561 | if (sci->sc_blk_cnt == 0) | |
562 | nilfs_segctor_begin_finfo(sci, inode); | |
563 | ||
564 | nilfs_segctor_map_segsum_entry(sci, &sci->sc_binfo_ptr, binfo_size); | |
565 | /* Substitution to vblocknr is delayed until update_blocknr() */ | |
566 | nilfs_segbuf_add_file_buffer(segbuf, bh); | |
567 | sci->sc_blk_cnt++; | |
568 | failed: | |
569 | return err; | |
570 | } | |
571 | ||
9ff05123 RK |
572 | /* |
573 | * Callback functions that enumerate, mark, and collect dirty blocks | |
574 | */ | |
575 | static int nilfs_collect_file_data(struct nilfs_sc_info *sci, | |
576 | struct buffer_head *bh, struct inode *inode) | |
577 | { | |
578 | int err; | |
579 | ||
9ff05123 | 580 | err = nilfs_bmap_propagate(NILFS_I(inode)->i_bmap, bh); |
e828949e RK |
581 | if (err < 0) |
582 | return err; | |
9ff05123 RK |
583 | |
584 | err = nilfs_segctor_add_file_block(sci, bh, inode, | |
585 | sizeof(struct nilfs_binfo_v)); | |
586 | if (!err) | |
587 | sci->sc_datablk_cnt++; | |
588 | return err; | |
589 | } | |
590 | ||
591 | static int nilfs_collect_file_node(struct nilfs_sc_info *sci, | |
592 | struct buffer_head *bh, | |
593 | struct inode *inode) | |
594 | { | |
e828949e | 595 | return nilfs_bmap_propagate(NILFS_I(inode)->i_bmap, bh); |
9ff05123 RK |
596 | } |
597 | ||
598 | static int nilfs_collect_file_bmap(struct nilfs_sc_info *sci, | |
599 | struct buffer_head *bh, | |
600 | struct inode *inode) | |
601 | { | |
1f5abe7e | 602 | WARN_ON(!buffer_dirty(bh)); |
9ff05123 RK |
603 | return nilfs_segctor_add_file_block(sci, bh, inode, sizeof(__le64)); |
604 | } | |
605 | ||
606 | static void nilfs_write_file_data_binfo(struct nilfs_sc_info *sci, | |
607 | struct nilfs_segsum_pointer *ssp, | |
608 | union nilfs_binfo *binfo) | |
609 | { | |
610 | struct nilfs_binfo_v *binfo_v = nilfs_segctor_map_segsum_entry( | |
611 | sci, ssp, sizeof(*binfo_v)); | |
612 | *binfo_v = binfo->bi_v; | |
613 | } | |
614 | ||
615 | static void nilfs_write_file_node_binfo(struct nilfs_sc_info *sci, | |
616 | struct nilfs_segsum_pointer *ssp, | |
617 | union nilfs_binfo *binfo) | |
618 | { | |
619 | __le64 *vblocknr = nilfs_segctor_map_segsum_entry( | |
620 | sci, ssp, sizeof(*vblocknr)); | |
621 | *vblocknr = binfo->bi_v.bi_vblocknr; | |
622 | } | |
623 | ||
1c613cb9 | 624 | static const struct nilfs_sc_operations nilfs_sc_file_ops = { |
9ff05123 RK |
625 | .collect_data = nilfs_collect_file_data, |
626 | .collect_node = nilfs_collect_file_node, | |
627 | .collect_bmap = nilfs_collect_file_bmap, | |
628 | .write_data_binfo = nilfs_write_file_data_binfo, | |
629 | .write_node_binfo = nilfs_write_file_node_binfo, | |
630 | }; | |
631 | ||
632 | static int nilfs_collect_dat_data(struct nilfs_sc_info *sci, | |
633 | struct buffer_head *bh, struct inode *inode) | |
634 | { | |
635 | int err; | |
636 | ||
637 | err = nilfs_bmap_propagate(NILFS_I(inode)->i_bmap, bh); | |
e828949e RK |
638 | if (err < 0) |
639 | return err; | |
9ff05123 RK |
640 | |
641 | err = nilfs_segctor_add_file_block(sci, bh, inode, sizeof(__le64)); | |
642 | if (!err) | |
643 | sci->sc_datablk_cnt++; | |
644 | return err; | |
645 | } | |
646 | ||
647 | static int nilfs_collect_dat_bmap(struct nilfs_sc_info *sci, | |
648 | struct buffer_head *bh, struct inode *inode) | |
649 | { | |
1f5abe7e | 650 | WARN_ON(!buffer_dirty(bh)); |
9ff05123 RK |
651 | return nilfs_segctor_add_file_block(sci, bh, inode, |
652 | sizeof(struct nilfs_binfo_dat)); | |
653 | } | |
654 | ||
655 | static void nilfs_write_dat_data_binfo(struct nilfs_sc_info *sci, | |
656 | struct nilfs_segsum_pointer *ssp, | |
657 | union nilfs_binfo *binfo) | |
658 | { | |
659 | __le64 *blkoff = nilfs_segctor_map_segsum_entry(sci, ssp, | |
660 | sizeof(*blkoff)); | |
661 | *blkoff = binfo->bi_dat.bi_blkoff; | |
662 | } | |
663 | ||
664 | static void nilfs_write_dat_node_binfo(struct nilfs_sc_info *sci, | |
665 | struct nilfs_segsum_pointer *ssp, | |
666 | union nilfs_binfo *binfo) | |
667 | { | |
668 | struct nilfs_binfo_dat *binfo_dat = | |
669 | nilfs_segctor_map_segsum_entry(sci, ssp, sizeof(*binfo_dat)); | |
670 | *binfo_dat = binfo->bi_dat; | |
671 | } | |
672 | ||
1c613cb9 | 673 | static const struct nilfs_sc_operations nilfs_sc_dat_ops = { |
9ff05123 RK |
674 | .collect_data = nilfs_collect_dat_data, |
675 | .collect_node = nilfs_collect_file_node, | |
676 | .collect_bmap = nilfs_collect_dat_bmap, | |
677 | .write_data_binfo = nilfs_write_dat_data_binfo, | |
678 | .write_node_binfo = nilfs_write_dat_node_binfo, | |
679 | }; | |
680 | ||
1c613cb9 | 681 | static const struct nilfs_sc_operations nilfs_sc_dsync_ops = { |
9ff05123 RK |
682 | .collect_data = nilfs_collect_file_data, |
683 | .collect_node = NULL, | |
684 | .collect_bmap = NULL, | |
685 | .write_data_binfo = nilfs_write_file_data_binfo, | |
686 | .write_node_binfo = NULL, | |
687 | }; | |
688 | ||
f30bf3e4 RK |
689 | static size_t nilfs_lookup_dirty_data_buffers(struct inode *inode, |
690 | struct list_head *listp, | |
691 | size_t nlimit, | |
692 | loff_t start, loff_t end) | |
9ff05123 | 693 | { |
9ff05123 RK |
694 | struct address_space *mapping = inode->i_mapping; |
695 | struct pagevec pvec; | |
f30bf3e4 RK |
696 | pgoff_t index = 0, last = ULONG_MAX; |
697 | size_t ndirties = 0; | |
698 | int i; | |
9ff05123 | 699 | |
f30bf3e4 RK |
700 | if (unlikely(start != 0 || end != LLONG_MAX)) { |
701 | /* | |
702 | * A valid range is given for sync-ing data pages. The | |
703 | * range is rounded to per-page; extra dirty buffers | |
704 | * may be included if blocksize < pagesize. | |
705 | */ | |
706 | index = start >> PAGE_SHIFT; | |
707 | last = end >> PAGE_SHIFT; | |
708 | } | |
9ff05123 RK |
709 | pagevec_init(&pvec, 0); |
710 | repeat: | |
f30bf3e4 RK |
711 | if (unlikely(index > last) || |
712 | !pagevec_lookup_tag(&pvec, mapping, &index, PAGECACHE_TAG_DIRTY, | |
713 | min_t(pgoff_t, last - index, | |
714 | PAGEVEC_SIZE - 1) + 1)) | |
715 | return ndirties; | |
9ff05123 RK |
716 | |
717 | for (i = 0; i < pagevec_count(&pvec); i++) { | |
718 | struct buffer_head *bh, *head; | |
719 | struct page *page = pvec.pages[i]; | |
720 | ||
f30bf3e4 RK |
721 | if (unlikely(page->index > last)) |
722 | break; | |
723 | ||
aa405b1f RK |
724 | lock_page(page); |
725 | if (!page_has_buffers(page)) | |
726 | create_empty_buffers(page, 1 << inode->i_blkbits, 0); | |
727 | unlock_page(page); | |
9ff05123 RK |
728 | |
729 | bh = head = page_buffers(page); | |
730 | do { | |
7f42ec39 | 731 | if (!buffer_dirty(bh) || buffer_async_write(bh)) |
f30bf3e4 RK |
732 | continue; |
733 | get_bh(bh); | |
734 | list_add_tail(&bh->b_assoc_buffers, listp); | |
735 | ndirties++; | |
736 | if (unlikely(ndirties >= nlimit)) { | |
737 | pagevec_release(&pvec); | |
738 | cond_resched(); | |
739 | return ndirties; | |
9ff05123 | 740 | } |
f30bf3e4 | 741 | } while (bh = bh->b_this_page, bh != head); |
9ff05123 RK |
742 | } |
743 | pagevec_release(&pvec); | |
744 | cond_resched(); | |
f30bf3e4 | 745 | goto repeat; |
9ff05123 RK |
746 | } |
747 | ||
748 | static void nilfs_lookup_dirty_node_buffers(struct inode *inode, | |
749 | struct list_head *listp) | |
750 | { | |
751 | struct nilfs_inode_info *ii = NILFS_I(inode); | |
752 | struct address_space *mapping = &ii->i_btnode_cache; | |
753 | struct pagevec pvec; | |
754 | struct buffer_head *bh, *head; | |
755 | unsigned int i; | |
756 | pgoff_t index = 0; | |
757 | ||
758 | pagevec_init(&pvec, 0); | |
759 | ||
760 | while (pagevec_lookup_tag(&pvec, mapping, &index, PAGECACHE_TAG_DIRTY, | |
761 | PAGEVEC_SIZE)) { | |
762 | for (i = 0; i < pagevec_count(&pvec); i++) { | |
763 | bh = head = page_buffers(pvec.pages[i]); | |
764 | do { | |
7f42ec39 VD |
765 | if (buffer_dirty(bh) && |
766 | !buffer_async_write(bh)) { | |
9ff05123 RK |
767 | get_bh(bh); |
768 | list_add_tail(&bh->b_assoc_buffers, | |
769 | listp); | |
770 | } | |
771 | bh = bh->b_this_page; | |
772 | } while (bh != head); | |
773 | } | |
774 | pagevec_release(&pvec); | |
775 | cond_resched(); | |
776 | } | |
777 | } | |
778 | ||
693dd321 | 779 | static void nilfs_dispose_list(struct the_nilfs *nilfs, |
9ff05123 RK |
780 | struct list_head *head, int force) |
781 | { | |
782 | struct nilfs_inode_info *ii, *n; | |
783 | struct nilfs_inode_info *ivec[SC_N_INODEVEC], **pii; | |
0c6c44cb | 784 | unsigned int nv = 0; |
9ff05123 RK |
785 | |
786 | while (!list_empty(head)) { | |
693dd321 | 787 | spin_lock(&nilfs->ns_inode_lock); |
9ff05123 RK |
788 | list_for_each_entry_safe(ii, n, head, i_dirty) { |
789 | list_del_init(&ii->i_dirty); | |
790 | if (force) { | |
791 | if (unlikely(ii->i_bh)) { | |
792 | brelse(ii->i_bh); | |
793 | ii->i_bh = NULL; | |
794 | } | |
795 | } else if (test_bit(NILFS_I_DIRTY, &ii->i_state)) { | |
796 | set_bit(NILFS_I_QUEUED, &ii->i_state); | |
797 | list_add_tail(&ii->i_dirty, | |
693dd321 | 798 | &nilfs->ns_dirty_files); |
9ff05123 RK |
799 | continue; |
800 | } | |
801 | ivec[nv++] = ii; | |
802 | if (nv == SC_N_INODEVEC) | |
803 | break; | |
804 | } | |
693dd321 | 805 | spin_unlock(&nilfs->ns_inode_lock); |
9ff05123 RK |
806 | |
807 | for (pii = ivec; nv > 0; pii++, nv--) | |
808 | iput(&(*pii)->vfs_inode); | |
809 | } | |
810 | } | |
811 | ||
7ef3ff2f RK |
812 | static void nilfs_iput_work_func(struct work_struct *work) |
813 | { | |
814 | struct nilfs_sc_info *sci = container_of(work, struct nilfs_sc_info, | |
815 | sc_iput_work); | |
816 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; | |
817 | ||
818 | nilfs_dispose_list(nilfs, &sci->sc_iput_queue, 0); | |
819 | } | |
820 | ||
e912a5b6 RK |
821 | static int nilfs_test_metadata_dirty(struct the_nilfs *nilfs, |
822 | struct nilfs_root *root) | |
9ff05123 | 823 | { |
9ff05123 RK |
824 | int ret = 0; |
825 | ||
e912a5b6 | 826 | if (nilfs_mdt_fetch_dirty(root->ifile)) |
9ff05123 RK |
827 | ret++; |
828 | if (nilfs_mdt_fetch_dirty(nilfs->ns_cpfile)) | |
829 | ret++; | |
830 | if (nilfs_mdt_fetch_dirty(nilfs->ns_sufile)) | |
831 | ret++; | |
365e215c RK |
832 | if ((ret || nilfs_doing_gc()) && nilfs_mdt_fetch_dirty(nilfs->ns_dat)) |
833 | ret++; | |
9ff05123 RK |
834 | return ret; |
835 | } | |
836 | ||
837 | static int nilfs_segctor_clean(struct nilfs_sc_info *sci) | |
838 | { | |
839 | return list_empty(&sci->sc_dirty_files) && | |
840 | !test_bit(NILFS_SC_DIRTY, &sci->sc_flags) && | |
071cb4b8 | 841 | sci->sc_nfreesegs == 0 && |
9ff05123 RK |
842 | (!nilfs_doing_gc() || list_empty(&sci->sc_gc_inodes)); |
843 | } | |
844 | ||
845 | static int nilfs_segctor_confirm(struct nilfs_sc_info *sci) | |
846 | { | |
e3154e97 | 847 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 RK |
848 | int ret = 0; |
849 | ||
693dd321 | 850 | if (nilfs_test_metadata_dirty(nilfs, sci->sc_root)) |
9ff05123 RK |
851 | set_bit(NILFS_SC_DIRTY, &sci->sc_flags); |
852 | ||
693dd321 RK |
853 | spin_lock(&nilfs->ns_inode_lock); |
854 | if (list_empty(&nilfs->ns_dirty_files) && nilfs_segctor_clean(sci)) | |
9ff05123 RK |
855 | ret++; |
856 | ||
693dd321 | 857 | spin_unlock(&nilfs->ns_inode_lock); |
9ff05123 RK |
858 | return ret; |
859 | } | |
860 | ||
861 | static void nilfs_segctor_clear_metadata_dirty(struct nilfs_sc_info *sci) | |
862 | { | |
e3154e97 | 863 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 | 864 | |
e912a5b6 | 865 | nilfs_mdt_clear_dirty(sci->sc_root->ifile); |
9ff05123 RK |
866 | nilfs_mdt_clear_dirty(nilfs->ns_cpfile); |
867 | nilfs_mdt_clear_dirty(nilfs->ns_sufile); | |
365e215c | 868 | nilfs_mdt_clear_dirty(nilfs->ns_dat); |
9ff05123 RK |
869 | } |
870 | ||
871 | static int nilfs_segctor_create_checkpoint(struct nilfs_sc_info *sci) | |
872 | { | |
e3154e97 | 873 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 RK |
874 | struct buffer_head *bh_cp; |
875 | struct nilfs_checkpoint *raw_cp; | |
876 | int err; | |
877 | ||
878 | /* XXX: this interface will be changed */ | |
879 | err = nilfs_cpfile_get_checkpoint(nilfs->ns_cpfile, nilfs->ns_cno, 1, | |
880 | &raw_cp, &bh_cp); | |
881 | if (likely(!err)) { | |
076a378b RK |
882 | /* |
883 | * The following code is duplicated with cpfile. But, it is | |
884 | * needed to collect the checkpoint even if it was not newly | |
885 | * created. | |
886 | */ | |
5fc7b141 | 887 | mark_buffer_dirty(bh_cp); |
9ff05123 RK |
888 | nilfs_mdt_mark_dirty(nilfs->ns_cpfile); |
889 | nilfs_cpfile_put_checkpoint( | |
890 | nilfs->ns_cpfile, nilfs->ns_cno, bh_cp); | |
1f5abe7e RK |
891 | } else |
892 | WARN_ON(err == -EINVAL || err == -ENOENT); | |
893 | ||
9ff05123 RK |
894 | return err; |
895 | } | |
896 | ||
897 | static int nilfs_segctor_fill_in_checkpoint(struct nilfs_sc_info *sci) | |
898 | { | |
e3154e97 | 899 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 RK |
900 | struct buffer_head *bh_cp; |
901 | struct nilfs_checkpoint *raw_cp; | |
902 | int err; | |
903 | ||
904 | err = nilfs_cpfile_get_checkpoint(nilfs->ns_cpfile, nilfs->ns_cno, 0, | |
905 | &raw_cp, &bh_cp); | |
906 | if (unlikely(err)) { | |
1f5abe7e | 907 | WARN_ON(err == -EINVAL || err == -ENOENT); |
9ff05123 RK |
908 | goto failed_ibh; |
909 | } | |
910 | raw_cp->cp_snapshot_list.ssl_next = 0; | |
911 | raw_cp->cp_snapshot_list.ssl_prev = 0; | |
912 | raw_cp->cp_inodes_count = | |
e5f7f848 | 913 | cpu_to_le64(atomic64_read(&sci->sc_root->inodes_count)); |
9ff05123 | 914 | raw_cp->cp_blocks_count = |
e5f7f848 | 915 | cpu_to_le64(atomic64_read(&sci->sc_root->blocks_count)); |
9ff05123 RK |
916 | raw_cp->cp_nblk_inc = |
917 | cpu_to_le64(sci->sc_nblk_inc + sci->sc_nblk_this_inc); | |
918 | raw_cp->cp_create = cpu_to_le64(sci->sc_seg_ctime); | |
919 | raw_cp->cp_cno = cpu_to_le64(nilfs->ns_cno); | |
458c5b08 | 920 | |
c96fa464 RK |
921 | if (test_bit(NILFS_SC_HAVE_DELTA, &sci->sc_flags)) |
922 | nilfs_checkpoint_clear_minor(raw_cp); | |
923 | else | |
924 | nilfs_checkpoint_set_minor(raw_cp); | |
925 | ||
e912a5b6 RK |
926 | nilfs_write_inode_common(sci->sc_root->ifile, |
927 | &raw_cp->cp_ifile_inode, 1); | |
9ff05123 RK |
928 | nilfs_cpfile_put_checkpoint(nilfs->ns_cpfile, nilfs->ns_cno, bh_cp); |
929 | return 0; | |
930 | ||
931 | failed_ibh: | |
932 | return err; | |
933 | } | |
934 | ||
935 | static void nilfs_fill_in_file_bmap(struct inode *ifile, | |
936 | struct nilfs_inode_info *ii) | |
937 | ||
938 | { | |
939 | struct buffer_head *ibh; | |
940 | struct nilfs_inode *raw_inode; | |
941 | ||
942 | if (test_bit(NILFS_I_BMAP, &ii->i_state)) { | |
943 | ibh = ii->i_bh; | |
944 | BUG_ON(!ibh); | |
945 | raw_inode = nilfs_ifile_map_inode(ifile, ii->vfs_inode.i_ino, | |
946 | ibh); | |
947 | nilfs_bmap_write(ii->i_bmap, raw_inode); | |
948 | nilfs_ifile_unmap_inode(ifile, ii->vfs_inode.i_ino, ibh); | |
949 | } | |
950 | } | |
951 | ||
e912a5b6 | 952 | static void nilfs_segctor_fill_in_file_bmap(struct nilfs_sc_info *sci) |
9ff05123 RK |
953 | { |
954 | struct nilfs_inode_info *ii; | |
955 | ||
956 | list_for_each_entry(ii, &sci->sc_dirty_files, i_dirty) { | |
e912a5b6 | 957 | nilfs_fill_in_file_bmap(sci->sc_root->ifile, ii); |
9ff05123 RK |
958 | set_bit(NILFS_I_COLLECTED, &ii->i_state); |
959 | } | |
9ff05123 RK |
960 | } |
961 | ||
9ff05123 RK |
962 | static void nilfs_segctor_fill_in_super_root(struct nilfs_sc_info *sci, |
963 | struct the_nilfs *nilfs) | |
964 | { | |
1e2b68bf RK |
965 | struct buffer_head *bh_sr; |
966 | struct nilfs_super_root *raw_sr; | |
0c6c44cb | 967 | unsigned int isz, srsz; |
9ff05123 | 968 | |
1e2b68bf RK |
969 | bh_sr = NILFS_LAST_SEGBUF(&sci->sc_segbufs)->sb_super_root; |
970 | raw_sr = (struct nilfs_super_root *)bh_sr->b_data; | |
56eb5538 RK |
971 | isz = nilfs->ns_inode_size; |
972 | srsz = NILFS_SR_BYTES(isz); | |
1e2b68bf | 973 | |
56eb5538 | 974 | raw_sr->sr_bytes = cpu_to_le16(srsz); |
9ff05123 RK |
975 | raw_sr->sr_nongc_ctime |
976 | = cpu_to_le64(nilfs_doing_gc() ? | |
977 | nilfs->ns_nongc_ctime : sci->sc_seg_ctime); | |
978 | raw_sr->sr_flags = 0; | |
979 | ||
365e215c | 980 | nilfs_write_inode_common(nilfs->ns_dat, (void *)raw_sr + |
3961f0e2 RK |
981 | NILFS_SR_DAT_OFFSET(isz), 1); |
982 | nilfs_write_inode_common(nilfs->ns_cpfile, (void *)raw_sr + | |
983 | NILFS_SR_CPFILE_OFFSET(isz), 1); | |
984 | nilfs_write_inode_common(nilfs->ns_sufile, (void *)raw_sr + | |
985 | NILFS_SR_SUFILE_OFFSET(isz), 1); | |
56eb5538 | 986 | memset((void *)raw_sr + srsz, 0, nilfs->ns_blocksize - srsz); |
9ff05123 RK |
987 | } |
988 | ||
989 | static void nilfs_redirty_inodes(struct list_head *head) | |
990 | { | |
991 | struct nilfs_inode_info *ii; | |
992 | ||
993 | list_for_each_entry(ii, head, i_dirty) { | |
994 | if (test_bit(NILFS_I_COLLECTED, &ii->i_state)) | |
995 | clear_bit(NILFS_I_COLLECTED, &ii->i_state); | |
996 | } | |
997 | } | |
998 | ||
999 | static void nilfs_drop_collected_inodes(struct list_head *head) | |
1000 | { | |
1001 | struct nilfs_inode_info *ii; | |
1002 | ||
1003 | list_for_each_entry(ii, head, i_dirty) { | |
1004 | if (!test_and_clear_bit(NILFS_I_COLLECTED, &ii->i_state)) | |
1005 | continue; | |
1006 | ||
b9f66140 | 1007 | clear_bit(NILFS_I_INODE_SYNC, &ii->i_state); |
9ff05123 RK |
1008 | set_bit(NILFS_I_UPDATED, &ii->i_state); |
1009 | } | |
1010 | } | |
1011 | ||
9ff05123 RK |
1012 | static int nilfs_segctor_apply_buffers(struct nilfs_sc_info *sci, |
1013 | struct inode *inode, | |
1014 | struct list_head *listp, | |
1015 | int (*collect)(struct nilfs_sc_info *, | |
1016 | struct buffer_head *, | |
1017 | struct inode *)) | |
1018 | { | |
1019 | struct buffer_head *bh, *n; | |
1020 | int err = 0; | |
1021 | ||
1022 | if (collect) { | |
1023 | list_for_each_entry_safe(bh, n, listp, b_assoc_buffers) { | |
1024 | list_del_init(&bh->b_assoc_buffers); | |
1025 | err = collect(sci, bh, inode); | |
1026 | brelse(bh); | |
1027 | if (unlikely(err)) | |
1028 | goto dispose_buffers; | |
1029 | } | |
1030 | return 0; | |
1031 | } | |
1032 | ||
1033 | dispose_buffers: | |
1034 | while (!list_empty(listp)) { | |
0cc12838 RK |
1035 | bh = list_first_entry(listp, struct buffer_head, |
1036 | b_assoc_buffers); | |
9ff05123 RK |
1037 | list_del_init(&bh->b_assoc_buffers); |
1038 | brelse(bh); | |
1039 | } | |
1040 | return err; | |
1041 | } | |
1042 | ||
f30bf3e4 RK |
1043 | static size_t nilfs_segctor_buffer_rest(struct nilfs_sc_info *sci) |
1044 | { | |
1045 | /* Remaining number of blocks within segment buffer */ | |
1046 | return sci->sc_segbuf_nblocks - | |
1047 | (sci->sc_nblk_this_inc + sci->sc_curseg->sb_sum.nblocks); | |
1048 | } | |
1049 | ||
9ff05123 RK |
1050 | static int nilfs_segctor_scan_file(struct nilfs_sc_info *sci, |
1051 | struct inode *inode, | |
1c613cb9 | 1052 | const struct nilfs_sc_operations *sc_ops) |
9ff05123 RK |
1053 | { |
1054 | LIST_HEAD(data_buffers); | |
1055 | LIST_HEAD(node_buffers); | |
f30bf3e4 | 1056 | int err; |
9ff05123 RK |
1057 | |
1058 | if (!(sci->sc_stage.flags & NILFS_CF_NODE)) { | |
f30bf3e4 RK |
1059 | size_t n, rest = nilfs_segctor_buffer_rest(sci); |
1060 | ||
1061 | n = nilfs_lookup_dirty_data_buffers( | |
1062 | inode, &data_buffers, rest + 1, 0, LLONG_MAX); | |
1063 | if (n > rest) { | |
1064 | err = nilfs_segctor_apply_buffers( | |
9ff05123 | 1065 | sci, inode, &data_buffers, |
f30bf3e4 RK |
1066 | sc_ops->collect_data); |
1067 | BUG_ON(!err); /* always receive -E2BIG or true error */ | |
9ff05123 RK |
1068 | goto break_or_fail; |
1069 | } | |
1070 | } | |
1071 | nilfs_lookup_dirty_node_buffers(inode, &node_buffers); | |
1072 | ||
1073 | if (!(sci->sc_stage.flags & NILFS_CF_NODE)) { | |
1074 | err = nilfs_segctor_apply_buffers( | |
1075 | sci, inode, &data_buffers, sc_ops->collect_data); | |
1076 | if (unlikely(err)) { | |
1077 | /* dispose node list */ | |
1078 | nilfs_segctor_apply_buffers( | |
1079 | sci, inode, &node_buffers, NULL); | |
1080 | goto break_or_fail; | |
1081 | } | |
1082 | sci->sc_stage.flags |= NILFS_CF_NODE; | |
1083 | } | |
1084 | /* Collect node */ | |
1085 | err = nilfs_segctor_apply_buffers( | |
1086 | sci, inode, &node_buffers, sc_ops->collect_node); | |
1087 | if (unlikely(err)) | |
1088 | goto break_or_fail; | |
1089 | ||
1090 | nilfs_bmap_lookup_dirty_buffers(NILFS_I(inode)->i_bmap, &node_buffers); | |
1091 | err = nilfs_segctor_apply_buffers( | |
1092 | sci, inode, &node_buffers, sc_ops->collect_bmap); | |
1093 | if (unlikely(err)) | |
1094 | goto break_or_fail; | |
1095 | ||
1096 | nilfs_segctor_end_finfo(sci, inode); | |
1097 | sci->sc_stage.flags &= ~NILFS_CF_NODE; | |
1098 | ||
1099 | break_or_fail: | |
1100 | return err; | |
1101 | } | |
1102 | ||
1103 | static int nilfs_segctor_scan_file_dsync(struct nilfs_sc_info *sci, | |
1104 | struct inode *inode) | |
1105 | { | |
1106 | LIST_HEAD(data_buffers); | |
f30bf3e4 RK |
1107 | size_t n, rest = nilfs_segctor_buffer_rest(sci); |
1108 | int err; | |
9ff05123 | 1109 | |
f30bf3e4 RK |
1110 | n = nilfs_lookup_dirty_data_buffers(inode, &data_buffers, rest + 1, |
1111 | sci->sc_dsync_start, | |
1112 | sci->sc_dsync_end); | |
1113 | ||
1114 | err = nilfs_segctor_apply_buffers(sci, inode, &data_buffers, | |
1115 | nilfs_collect_file_data); | |
1116 | if (!err) { | |
9ff05123 | 1117 | nilfs_segctor_end_finfo(sci, inode); |
f30bf3e4 RK |
1118 | BUG_ON(n > rest); |
1119 | /* always receive -E2BIG or true error if n > rest */ | |
1120 | } | |
9ff05123 RK |
1121 | return err; |
1122 | } | |
1123 | ||
1124 | static int nilfs_segctor_collect_blocks(struct nilfs_sc_info *sci, int mode) | |
1125 | { | |
e3154e97 | 1126 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 RK |
1127 | struct list_head *head; |
1128 | struct nilfs_inode_info *ii; | |
071cb4b8 | 1129 | size_t ndone; |
9ff05123 RK |
1130 | int err = 0; |
1131 | ||
58497703 | 1132 | switch (nilfs_sc_cstage_get(sci)) { |
9ff05123 RK |
1133 | case NILFS_ST_INIT: |
1134 | /* Pre-processes */ | |
1135 | sci->sc_stage.flags = 0; | |
1136 | ||
1137 | if (!test_bit(NILFS_SC_UNCLOSED, &sci->sc_flags)) { | |
1138 | sci->sc_nblk_inc = 0; | |
1139 | sci->sc_curseg->sb_sum.flags = NILFS_SS_LOGBGN; | |
1140 | if (mode == SC_LSEG_DSYNC) { | |
58497703 | 1141 | nilfs_sc_cstage_set(sci, NILFS_ST_DSYNC); |
9ff05123 RK |
1142 | goto dsync_mode; |
1143 | } | |
1144 | } | |
1145 | ||
1146 | sci->sc_stage.dirty_file_ptr = NULL; | |
1147 | sci->sc_stage.gc_inode_ptr = NULL; | |
1148 | if (mode == SC_FLUSH_DAT) { | |
58497703 | 1149 | nilfs_sc_cstage_set(sci, NILFS_ST_DAT); |
9ff05123 RK |
1150 | goto dat_stage; |
1151 | } | |
58497703 | 1152 | nilfs_sc_cstage_inc(sci); /* Fall through */ |
9ff05123 RK |
1153 | case NILFS_ST_GC: |
1154 | if (nilfs_doing_gc()) { | |
1155 | head = &sci->sc_gc_inodes; | |
1156 | ii = list_prepare_entry(sci->sc_stage.gc_inode_ptr, | |
1157 | head, i_dirty); | |
1158 | list_for_each_entry_continue(ii, head, i_dirty) { | |
1159 | err = nilfs_segctor_scan_file( | |
1160 | sci, &ii->vfs_inode, | |
1161 | &nilfs_sc_file_ops); | |
1162 | if (unlikely(err)) { | |
1163 | sci->sc_stage.gc_inode_ptr = list_entry( | |
1164 | ii->i_dirty.prev, | |
1165 | struct nilfs_inode_info, | |
1166 | i_dirty); | |
1167 | goto break_or_fail; | |
1168 | } | |
1169 | set_bit(NILFS_I_COLLECTED, &ii->i_state); | |
1170 | } | |
1171 | sci->sc_stage.gc_inode_ptr = NULL; | |
1172 | } | |
58497703 | 1173 | nilfs_sc_cstage_inc(sci); /* Fall through */ |
9ff05123 RK |
1174 | case NILFS_ST_FILE: |
1175 | head = &sci->sc_dirty_files; | |
1176 | ii = list_prepare_entry(sci->sc_stage.dirty_file_ptr, head, | |
1177 | i_dirty); | |
1178 | list_for_each_entry_continue(ii, head, i_dirty) { | |
1179 | clear_bit(NILFS_I_DIRTY, &ii->i_state); | |
1180 | ||
1181 | err = nilfs_segctor_scan_file(sci, &ii->vfs_inode, | |
1182 | &nilfs_sc_file_ops); | |
1183 | if (unlikely(err)) { | |
1184 | sci->sc_stage.dirty_file_ptr = | |
1185 | list_entry(ii->i_dirty.prev, | |
1186 | struct nilfs_inode_info, | |
1187 | i_dirty); | |
1188 | goto break_or_fail; | |
1189 | } | |
1190 | /* sci->sc_stage.dirty_file_ptr = NILFS_I(inode); */ | |
1191 | /* XXX: required ? */ | |
1192 | } | |
1193 | sci->sc_stage.dirty_file_ptr = NULL; | |
1194 | if (mode == SC_FLUSH_FILE) { | |
58497703 | 1195 | nilfs_sc_cstage_set(sci, NILFS_ST_DONE); |
9ff05123 RK |
1196 | return 0; |
1197 | } | |
58497703 | 1198 | nilfs_sc_cstage_inc(sci); |
9ff05123 RK |
1199 | sci->sc_stage.flags |= NILFS_CF_IFILE_STARTED; |
1200 | /* Fall through */ | |
1201 | case NILFS_ST_IFILE: | |
e912a5b6 | 1202 | err = nilfs_segctor_scan_file(sci, sci->sc_root->ifile, |
9ff05123 RK |
1203 | &nilfs_sc_file_ops); |
1204 | if (unlikely(err)) | |
1205 | break; | |
58497703 | 1206 | nilfs_sc_cstage_inc(sci); |
9ff05123 RK |
1207 | /* Creating a checkpoint */ |
1208 | err = nilfs_segctor_create_checkpoint(sci); | |
1209 | if (unlikely(err)) | |
1210 | break; | |
1211 | /* Fall through */ | |
1212 | case NILFS_ST_CPFILE: | |
1213 | err = nilfs_segctor_scan_file(sci, nilfs->ns_cpfile, | |
1214 | &nilfs_sc_file_ops); | |
1215 | if (unlikely(err)) | |
1216 | break; | |
58497703 | 1217 | nilfs_sc_cstage_inc(sci); /* Fall through */ |
9ff05123 | 1218 | case NILFS_ST_SUFILE: |
071cb4b8 RK |
1219 | err = nilfs_sufile_freev(nilfs->ns_sufile, sci->sc_freesegs, |
1220 | sci->sc_nfreesegs, &ndone); | |
1221 | if (unlikely(err)) { | |
1222 | nilfs_sufile_cancel_freev(nilfs->ns_sufile, | |
1223 | sci->sc_freesegs, ndone, | |
1224 | NULL); | |
9ff05123 | 1225 | break; |
071cb4b8 RK |
1226 | } |
1227 | sci->sc_stage.flags |= NILFS_CF_SUFREED; | |
1228 | ||
9ff05123 RK |
1229 | err = nilfs_segctor_scan_file(sci, nilfs->ns_sufile, |
1230 | &nilfs_sc_file_ops); | |
1231 | if (unlikely(err)) | |
1232 | break; | |
58497703 | 1233 | nilfs_sc_cstage_inc(sci); /* Fall through */ |
9ff05123 RK |
1234 | case NILFS_ST_DAT: |
1235 | dat_stage: | |
365e215c | 1236 | err = nilfs_segctor_scan_file(sci, nilfs->ns_dat, |
9ff05123 RK |
1237 | &nilfs_sc_dat_ops); |
1238 | if (unlikely(err)) | |
1239 | break; | |
1240 | if (mode == SC_FLUSH_DAT) { | |
58497703 | 1241 | nilfs_sc_cstage_set(sci, NILFS_ST_DONE); |
9ff05123 RK |
1242 | return 0; |
1243 | } | |
58497703 | 1244 | nilfs_sc_cstage_inc(sci); /* Fall through */ |
9ff05123 RK |
1245 | case NILFS_ST_SR: |
1246 | if (mode == SC_LSEG_SR) { | |
1247 | /* Appending a super root */ | |
1248 | err = nilfs_segctor_add_super_root(sci); | |
1249 | if (unlikely(err)) | |
1250 | break; | |
1251 | } | |
1252 | /* End of a logical segment */ | |
1253 | sci->sc_curseg->sb_sum.flags |= NILFS_SS_LOGEND; | |
58497703 | 1254 | nilfs_sc_cstage_set(sci, NILFS_ST_DONE); |
9ff05123 RK |
1255 | return 0; |
1256 | case NILFS_ST_DSYNC: | |
1257 | dsync_mode: | |
1258 | sci->sc_curseg->sb_sum.flags |= NILFS_SS_SYNDT; | |
f30bf3e4 | 1259 | ii = sci->sc_dsync_inode; |
9ff05123 RK |
1260 | if (!test_bit(NILFS_I_BUSY, &ii->i_state)) |
1261 | break; | |
1262 | ||
1263 | err = nilfs_segctor_scan_file_dsync(sci, &ii->vfs_inode); | |
1264 | if (unlikely(err)) | |
1265 | break; | |
9ff05123 | 1266 | sci->sc_curseg->sb_sum.flags |= NILFS_SS_LOGEND; |
58497703 | 1267 | nilfs_sc_cstage_set(sci, NILFS_ST_DONE); |
9ff05123 RK |
1268 | return 0; |
1269 | case NILFS_ST_DONE: | |
1270 | return 0; | |
1271 | default: | |
1272 | BUG(); | |
1273 | } | |
1274 | ||
1275 | break_or_fail: | |
1276 | return err; | |
1277 | } | |
1278 | ||
a694291a RK |
1279 | /** |
1280 | * nilfs_segctor_begin_construction - setup segment buffer to make a new log | |
1281 | * @sci: nilfs_sc_info | |
1282 | * @nilfs: nilfs object | |
1283 | */ | |
9ff05123 RK |
1284 | static int nilfs_segctor_begin_construction(struct nilfs_sc_info *sci, |
1285 | struct the_nilfs *nilfs) | |
1286 | { | |
a694291a | 1287 | struct nilfs_segment_buffer *segbuf, *prev; |
9ff05123 | 1288 | __u64 nextnum; |
a694291a | 1289 | int err, alloc = 0; |
9ff05123 | 1290 | |
a694291a RK |
1291 | segbuf = nilfs_segbuf_new(sci->sc_super); |
1292 | if (unlikely(!segbuf)) | |
1293 | return -ENOMEM; | |
9ff05123 | 1294 | |
a694291a RK |
1295 | if (list_empty(&sci->sc_write_logs)) { |
1296 | nilfs_segbuf_map(segbuf, nilfs->ns_segnum, | |
1297 | nilfs->ns_pseg_offset, nilfs); | |
1298 | if (segbuf->sb_rest_blocks < NILFS_PSEG_MIN_BLOCKS) { | |
1299 | nilfs_shift_to_next_segment(nilfs); | |
1300 | nilfs_segbuf_map(segbuf, nilfs->ns_segnum, 0, nilfs); | |
1301 | } | |
9ff05123 | 1302 | |
a694291a RK |
1303 | segbuf->sb_sum.seg_seq = nilfs->ns_seg_seq; |
1304 | nextnum = nilfs->ns_nextnum; | |
1305 | ||
1306 | if (nilfs->ns_segnum == nilfs->ns_nextnum) | |
1307 | /* Start from the head of a new full segment */ | |
1308 | alloc++; | |
1309 | } else { | |
1310 | /* Continue logs */ | |
1311 | prev = NILFS_LAST_SEGBUF(&sci->sc_write_logs); | |
1312 | nilfs_segbuf_map_cont(segbuf, prev); | |
1313 | segbuf->sb_sum.seg_seq = prev->sb_sum.seg_seq; | |
1314 | nextnum = prev->sb_nextnum; | |
1315 | ||
1316 | if (segbuf->sb_rest_blocks < NILFS_PSEG_MIN_BLOCKS) { | |
1317 | nilfs_segbuf_map(segbuf, prev->sb_nextnum, 0, nilfs); | |
1318 | segbuf->sb_sum.seg_seq++; | |
1319 | alloc++; | |
1320 | } | |
9ff05123 | 1321 | } |
9ff05123 | 1322 | |
61a189e9 | 1323 | err = nilfs_sufile_mark_dirty(nilfs->ns_sufile, segbuf->sb_segnum); |
a694291a RK |
1324 | if (err) |
1325 | goto failed; | |
9ff05123 | 1326 | |
a694291a | 1327 | if (alloc) { |
cece5520 | 1328 | err = nilfs_sufile_alloc(nilfs->ns_sufile, &nextnum); |
a694291a RK |
1329 | if (err) |
1330 | goto failed; | |
1331 | } | |
9ff05123 RK |
1332 | nilfs_segbuf_set_next_segnum(segbuf, nextnum, nilfs); |
1333 | ||
a694291a RK |
1334 | BUG_ON(!list_empty(&sci->sc_segbufs)); |
1335 | list_add_tail(&segbuf->sb_list, &sci->sc_segbufs); | |
1336 | sci->sc_segbuf_nblocks = segbuf->sb_rest_blocks; | |
cece5520 | 1337 | return 0; |
a694291a RK |
1338 | |
1339 | failed: | |
1340 | nilfs_segbuf_free(segbuf); | |
1341 | return err; | |
9ff05123 RK |
1342 | } |
1343 | ||
1344 | static int nilfs_segctor_extend_segments(struct nilfs_sc_info *sci, | |
1345 | struct the_nilfs *nilfs, int nadd) | |
1346 | { | |
e29df395 | 1347 | struct nilfs_segment_buffer *segbuf, *prev; |
9ff05123 RK |
1348 | struct inode *sufile = nilfs->ns_sufile; |
1349 | __u64 nextnextnum; | |
1350 | LIST_HEAD(list); | |
1351 | int err, ret, i; | |
1352 | ||
1353 | prev = NILFS_LAST_SEGBUF(&sci->sc_segbufs); | |
1354 | /* | |
1355 | * Since the segment specified with nextnum might be allocated during | |
1356 | * the previous construction, the buffer including its segusage may | |
1357 | * not be dirty. The following call ensures that the buffer is dirty | |
1358 | * and will pin the buffer on memory until the sufile is written. | |
1359 | */ | |
61a189e9 | 1360 | err = nilfs_sufile_mark_dirty(sufile, prev->sb_nextnum); |
9ff05123 RK |
1361 | if (unlikely(err)) |
1362 | return err; | |
1363 | ||
1364 | for (i = 0; i < nadd; i++) { | |
1365 | /* extend segment info */ | |
1366 | err = -ENOMEM; | |
1367 | segbuf = nilfs_segbuf_new(sci->sc_super); | |
1368 | if (unlikely(!segbuf)) | |
1369 | goto failed; | |
1370 | ||
1371 | /* map this buffer to region of segment on-disk */ | |
cece5520 | 1372 | nilfs_segbuf_map(segbuf, prev->sb_nextnum, 0, nilfs); |
9ff05123 RK |
1373 | sci->sc_segbuf_nblocks += segbuf->sb_rest_blocks; |
1374 | ||
1375 | /* allocate the next next full segment */ | |
1376 | err = nilfs_sufile_alloc(sufile, &nextnextnum); | |
1377 | if (unlikely(err)) | |
1378 | goto failed_segbuf; | |
1379 | ||
1380 | segbuf->sb_sum.seg_seq = prev->sb_sum.seg_seq + 1; | |
1381 | nilfs_segbuf_set_next_segnum(segbuf, nextnextnum, nilfs); | |
1382 | ||
1383 | list_add_tail(&segbuf->sb_list, &list); | |
1384 | prev = segbuf; | |
1385 | } | |
0935db74 | 1386 | list_splice_tail(&list, &sci->sc_segbufs); |
9ff05123 RK |
1387 | return 0; |
1388 | ||
1389 | failed_segbuf: | |
1390 | nilfs_segbuf_free(segbuf); | |
1391 | failed: | |
e29df395 | 1392 | list_for_each_entry(segbuf, &list, sb_list) { |
9ff05123 | 1393 | ret = nilfs_sufile_free(sufile, segbuf->sb_nextnum); |
1f5abe7e | 1394 | WARN_ON(ret); /* never fails */ |
9ff05123 | 1395 | } |
e29df395 | 1396 | nilfs_destroy_logs(&list); |
9ff05123 RK |
1397 | return err; |
1398 | } | |
1399 | ||
a694291a RK |
1400 | static void nilfs_free_incomplete_logs(struct list_head *logs, |
1401 | struct the_nilfs *nilfs) | |
9ff05123 | 1402 | { |
a694291a RK |
1403 | struct nilfs_segment_buffer *segbuf, *prev; |
1404 | struct inode *sufile = nilfs->ns_sufile; | |
9284ad2a | 1405 | int ret; |
9ff05123 | 1406 | |
a694291a | 1407 | segbuf = NILFS_FIRST_SEGBUF(logs); |
9ff05123 | 1408 | if (nilfs->ns_nextnum != segbuf->sb_nextnum) { |
a694291a | 1409 | ret = nilfs_sufile_free(sufile, segbuf->sb_nextnum); |
1f5abe7e | 1410 | WARN_ON(ret); /* never fails */ |
9ff05123 | 1411 | } |
9284ad2a | 1412 | if (atomic_read(&segbuf->sb_err)) { |
9ff05123 RK |
1413 | /* Case 1: The first segment failed */ |
1414 | if (segbuf->sb_pseg_start != segbuf->sb_fseg_start) | |
076a378b RK |
1415 | /* |
1416 | * Case 1a: Partial segment appended into an existing | |
1417 | * segment | |
1418 | */ | |
9ff05123 RK |
1419 | nilfs_terminate_segment(nilfs, segbuf->sb_fseg_start, |
1420 | segbuf->sb_fseg_end); | |
1421 | else /* Case 1b: New full segment */ | |
1422 | set_nilfs_discontinued(nilfs); | |
9ff05123 RK |
1423 | } |
1424 | ||
a694291a RK |
1425 | prev = segbuf; |
1426 | list_for_each_entry_continue(segbuf, logs, sb_list) { | |
1427 | if (prev->sb_nextnum != segbuf->sb_nextnum) { | |
1428 | ret = nilfs_sufile_free(sufile, segbuf->sb_nextnum); | |
1429 | WARN_ON(ret); /* never fails */ | |
1430 | } | |
9284ad2a RK |
1431 | if (atomic_read(&segbuf->sb_err) && |
1432 | segbuf->sb_segnum != nilfs->ns_nextnum) | |
1433 | /* Case 2: extended segment (!= next) failed */ | |
a694291a RK |
1434 | nilfs_sufile_set_error(sufile, segbuf->sb_segnum); |
1435 | prev = segbuf; | |
9ff05123 | 1436 | } |
9ff05123 RK |
1437 | } |
1438 | ||
1439 | static void nilfs_segctor_update_segusage(struct nilfs_sc_info *sci, | |
1440 | struct inode *sufile) | |
1441 | { | |
1442 | struct nilfs_segment_buffer *segbuf; | |
9ff05123 RK |
1443 | unsigned long live_blocks; |
1444 | int ret; | |
1445 | ||
1446 | list_for_each_entry(segbuf, &sci->sc_segbufs, sb_list) { | |
9ff05123 RK |
1447 | live_blocks = segbuf->sb_sum.nblocks + |
1448 | (segbuf->sb_pseg_start - segbuf->sb_fseg_start); | |
071ec54d RK |
1449 | ret = nilfs_sufile_set_segment_usage(sufile, segbuf->sb_segnum, |
1450 | live_blocks, | |
1451 | sci->sc_seg_ctime); | |
1452 | WARN_ON(ret); /* always succeed because the segusage is dirty */ | |
9ff05123 RK |
1453 | } |
1454 | } | |
1455 | ||
a694291a | 1456 | static void nilfs_cancel_segusage(struct list_head *logs, struct inode *sufile) |
9ff05123 RK |
1457 | { |
1458 | struct nilfs_segment_buffer *segbuf; | |
9ff05123 RK |
1459 | int ret; |
1460 | ||
a694291a | 1461 | segbuf = NILFS_FIRST_SEGBUF(logs); |
071ec54d RK |
1462 | ret = nilfs_sufile_set_segment_usage(sufile, segbuf->sb_segnum, |
1463 | segbuf->sb_pseg_start - | |
1464 | segbuf->sb_fseg_start, 0); | |
1465 | WARN_ON(ret); /* always succeed because the segusage is dirty */ | |
9ff05123 | 1466 | |
a694291a | 1467 | list_for_each_entry_continue(segbuf, logs, sb_list) { |
071ec54d RK |
1468 | ret = nilfs_sufile_set_segment_usage(sufile, segbuf->sb_segnum, |
1469 | 0, 0); | |
1f5abe7e | 1470 | WARN_ON(ret); /* always succeed */ |
9ff05123 RK |
1471 | } |
1472 | } | |
1473 | ||
1474 | static void nilfs_segctor_truncate_segments(struct nilfs_sc_info *sci, | |
1475 | struct nilfs_segment_buffer *last, | |
1476 | struct inode *sufile) | |
1477 | { | |
e29df395 | 1478 | struct nilfs_segment_buffer *segbuf = last; |
9ff05123 RK |
1479 | int ret; |
1480 | ||
e29df395 | 1481 | list_for_each_entry_continue(segbuf, &sci->sc_segbufs, sb_list) { |
9ff05123 RK |
1482 | sci->sc_segbuf_nblocks -= segbuf->sb_rest_blocks; |
1483 | ret = nilfs_sufile_free(sufile, segbuf->sb_nextnum); | |
1f5abe7e | 1484 | WARN_ON(ret); |
9ff05123 | 1485 | } |
e29df395 | 1486 | nilfs_truncate_logs(&sci->sc_segbufs, last); |
9ff05123 RK |
1487 | } |
1488 | ||
1489 | ||
1490 | static int nilfs_segctor_collect(struct nilfs_sc_info *sci, | |
1491 | struct the_nilfs *nilfs, int mode) | |
1492 | { | |
1493 | struct nilfs_cstage prev_stage = sci->sc_stage; | |
1494 | int err, nadd = 1; | |
1495 | ||
1496 | /* Collection retry loop */ | |
1497 | for (;;) { | |
9ff05123 RK |
1498 | sci->sc_nblk_this_inc = 0; |
1499 | sci->sc_curseg = NILFS_FIRST_SEGBUF(&sci->sc_segbufs); | |
1500 | ||
1501 | err = nilfs_segctor_reset_segment_buffer(sci); | |
1502 | if (unlikely(err)) | |
1503 | goto failed; | |
1504 | ||
1505 | err = nilfs_segctor_collect_blocks(sci, mode); | |
1506 | sci->sc_nblk_this_inc += sci->sc_curseg->sb_sum.nblocks; | |
1507 | if (!err) | |
1508 | break; | |
1509 | ||
1510 | if (unlikely(err != -E2BIG)) | |
1511 | goto failed; | |
1512 | ||
1513 | /* The current segment is filled up */ | |
58497703 HM |
1514 | if (mode != SC_LSEG_SR || |
1515 | nilfs_sc_cstage_get(sci) < NILFS_ST_CPFILE) | |
9ff05123 RK |
1516 | break; |
1517 | ||
2d8428ac RK |
1518 | nilfs_clear_logs(&sci->sc_segbufs); |
1519 | ||
071cb4b8 RK |
1520 | if (sci->sc_stage.flags & NILFS_CF_SUFREED) { |
1521 | err = nilfs_sufile_cancel_freev(nilfs->ns_sufile, | |
1522 | sci->sc_freesegs, | |
1523 | sci->sc_nfreesegs, | |
1524 | NULL); | |
1525 | WARN_ON(err); /* do not happen */ | |
70f2fe3a | 1526 | sci->sc_stage.flags &= ~NILFS_CF_SUFREED; |
071cb4b8 | 1527 | } |
70f2fe3a AR |
1528 | |
1529 | err = nilfs_segctor_extend_segments(sci, nilfs, nadd); | |
1530 | if (unlikely(err)) | |
1531 | return err; | |
1532 | ||
9ff05123 RK |
1533 | nadd = min_t(int, nadd << 1, SC_MAX_SEGDELTA); |
1534 | sci->sc_stage = prev_stage; | |
1535 | } | |
1536 | nilfs_segctor_truncate_segments(sci, sci->sc_curseg, nilfs->ns_sufile); | |
1537 | return 0; | |
1538 | ||
1539 | failed: | |
1540 | return err; | |
1541 | } | |
1542 | ||
1543 | static void nilfs_list_replace_buffer(struct buffer_head *old_bh, | |
1544 | struct buffer_head *new_bh) | |
1545 | { | |
1546 | BUG_ON(!list_empty(&new_bh->b_assoc_buffers)); | |
1547 | ||
1548 | list_replace_init(&old_bh->b_assoc_buffers, &new_bh->b_assoc_buffers); | |
1549 | /* The caller must release old_bh */ | |
1550 | } | |
1551 | ||
1552 | static int | |
1553 | nilfs_segctor_update_payload_blocknr(struct nilfs_sc_info *sci, | |
1554 | struct nilfs_segment_buffer *segbuf, | |
1555 | int mode) | |
1556 | { | |
1557 | struct inode *inode = NULL; | |
1558 | sector_t blocknr; | |
1559 | unsigned long nfinfo = segbuf->sb_sum.nfinfo; | |
1560 | unsigned long nblocks = 0, ndatablk = 0; | |
1c613cb9 | 1561 | const struct nilfs_sc_operations *sc_op = NULL; |
9ff05123 RK |
1562 | struct nilfs_segsum_pointer ssp; |
1563 | struct nilfs_finfo *finfo = NULL; | |
1564 | union nilfs_binfo binfo; | |
1565 | struct buffer_head *bh, *bh_org; | |
1566 | ino_t ino = 0; | |
1567 | int err = 0; | |
1568 | ||
1569 | if (!nfinfo) | |
1570 | goto out; | |
1571 | ||
1572 | blocknr = segbuf->sb_pseg_start + segbuf->sb_sum.nsumblk; | |
1573 | ssp.bh = NILFS_SEGBUF_FIRST_BH(&segbuf->sb_segsum_buffers); | |
1574 | ssp.offset = sizeof(struct nilfs_segment_summary); | |
1575 | ||
1576 | list_for_each_entry(bh, &segbuf->sb_payload_buffers, b_assoc_buffers) { | |
1e2b68bf | 1577 | if (bh == segbuf->sb_super_root) |
9ff05123 RK |
1578 | break; |
1579 | if (!finfo) { | |
1580 | finfo = nilfs_segctor_map_segsum_entry( | |
1581 | sci, &ssp, sizeof(*finfo)); | |
1582 | ino = le64_to_cpu(finfo->fi_ino); | |
1583 | nblocks = le32_to_cpu(finfo->fi_nblocks); | |
1584 | ndatablk = le32_to_cpu(finfo->fi_ndatablk); | |
1585 | ||
aa405b1f | 1586 | inode = bh->b_page->mapping->host; |
9ff05123 RK |
1587 | |
1588 | if (mode == SC_LSEG_DSYNC) | |
1589 | sc_op = &nilfs_sc_dsync_ops; | |
1590 | else if (ino == NILFS_DAT_INO) | |
1591 | sc_op = &nilfs_sc_dat_ops; | |
1592 | else /* file blocks */ | |
1593 | sc_op = &nilfs_sc_file_ops; | |
1594 | } | |
1595 | bh_org = bh; | |
1596 | get_bh(bh_org); | |
1597 | err = nilfs_bmap_assign(NILFS_I(inode)->i_bmap, &bh, blocknr, | |
1598 | &binfo); | |
1599 | if (bh != bh_org) | |
1600 | nilfs_list_replace_buffer(bh_org, bh); | |
1601 | brelse(bh_org); | |
1602 | if (unlikely(err)) | |
1603 | goto failed_bmap; | |
1604 | ||
1605 | if (ndatablk > 0) | |
1606 | sc_op->write_data_binfo(sci, &ssp, &binfo); | |
1607 | else | |
1608 | sc_op->write_node_binfo(sci, &ssp, &binfo); | |
1609 | ||
1610 | blocknr++; | |
1611 | if (--nblocks == 0) { | |
1612 | finfo = NULL; | |
1613 | if (--nfinfo == 0) | |
1614 | break; | |
1615 | } else if (ndatablk > 0) | |
1616 | ndatablk--; | |
1617 | } | |
1618 | out: | |
1619 | return 0; | |
1620 | ||
1621 | failed_bmap: | |
9ff05123 RK |
1622 | return err; |
1623 | } | |
1624 | ||
1625 | static int nilfs_segctor_assign(struct nilfs_sc_info *sci, int mode) | |
1626 | { | |
1627 | struct nilfs_segment_buffer *segbuf; | |
1628 | int err; | |
1629 | ||
1630 | list_for_each_entry(segbuf, &sci->sc_segbufs, sb_list) { | |
1631 | err = nilfs_segctor_update_payload_blocknr(sci, segbuf, mode); | |
1632 | if (unlikely(err)) | |
1633 | return err; | |
1634 | nilfs_segbuf_fill_in_segsum(segbuf); | |
1635 | } | |
1636 | return 0; | |
1637 | } | |
1638 | ||
1cb2d38c | 1639 | static void nilfs_begin_page_io(struct page *page) |
9ff05123 RK |
1640 | { |
1641 | if (!page || PageWriteback(page)) | |
076a378b RK |
1642 | /* |
1643 | * For split b-tree node pages, this function may be called | |
1644 | * twice. We ignore the 2nd or later calls by this check. | |
1645 | */ | |
1cb2d38c | 1646 | return; |
9ff05123 RK |
1647 | |
1648 | lock_page(page); | |
1649 | clear_page_dirty_for_io(page); | |
1650 | set_page_writeback(page); | |
1651 | unlock_page(page); | |
9ff05123 RK |
1652 | } |
1653 | ||
1cb2d38c | 1654 | static void nilfs_segctor_prepare_write(struct nilfs_sc_info *sci) |
9ff05123 RK |
1655 | { |
1656 | struct nilfs_segment_buffer *segbuf; | |
1657 | struct page *bd_page = NULL, *fs_page = NULL; | |
9ff05123 | 1658 | |
9ff05123 RK |
1659 | list_for_each_entry(segbuf, &sci->sc_segbufs, sb_list) { |
1660 | struct buffer_head *bh; | |
1661 | ||
1662 | list_for_each_entry(bh, &segbuf->sb_segsum_buffers, | |
1663 | b_assoc_buffers) { | |
1664 | if (bh->b_page != bd_page) { | |
1665 | if (bd_page) { | |
1666 | lock_page(bd_page); | |
1667 | clear_page_dirty_for_io(bd_page); | |
1668 | set_page_writeback(bd_page); | |
1669 | unlock_page(bd_page); | |
1670 | } | |
1671 | bd_page = bh->b_page; | |
1672 | } | |
1673 | } | |
1674 | ||
1675 | list_for_each_entry(bh, &segbuf->sb_payload_buffers, | |
1676 | b_assoc_buffers) { | |
7f42ec39 | 1677 | set_buffer_async_write(bh); |
1e2b68bf | 1678 | if (bh == segbuf->sb_super_root) { |
9ff05123 RK |
1679 | if (bh->b_page != bd_page) { |
1680 | lock_page(bd_page); | |
1681 | clear_page_dirty_for_io(bd_page); | |
1682 | set_page_writeback(bd_page); | |
1683 | unlock_page(bd_page); | |
1684 | bd_page = bh->b_page; | |
1685 | } | |
1686 | break; | |
1687 | } | |
1688 | if (bh->b_page != fs_page) { | |
1cb2d38c | 1689 | nilfs_begin_page_io(fs_page); |
9ff05123 RK |
1690 | fs_page = bh->b_page; |
1691 | } | |
1692 | } | |
1693 | } | |
1694 | if (bd_page) { | |
1695 | lock_page(bd_page); | |
1696 | clear_page_dirty_for_io(bd_page); | |
1697 | set_page_writeback(bd_page); | |
1698 | unlock_page(bd_page); | |
1699 | } | |
1cb2d38c | 1700 | nilfs_begin_page_io(fs_page); |
9ff05123 RK |
1701 | } |
1702 | ||
1703 | static int nilfs_segctor_write(struct nilfs_sc_info *sci, | |
9c965bac | 1704 | struct the_nilfs *nilfs) |
9ff05123 | 1705 | { |
d1c6b72a | 1706 | int ret; |
9ff05123 | 1707 | |
d1c6b72a | 1708 | ret = nilfs_write_logs(&sci->sc_segbufs, nilfs); |
a694291a RK |
1709 | list_splice_tail_init(&sci->sc_segbufs, &sci->sc_write_logs); |
1710 | return ret; | |
9ff05123 RK |
1711 | } |
1712 | ||
9ff05123 RK |
1713 | static void nilfs_end_page_io(struct page *page, int err) |
1714 | { | |
1715 | if (!page) | |
1716 | return; | |
1717 | ||
a9777845 | 1718 | if (buffer_nilfs_node(page_buffers(page)) && !PageWriteback(page)) { |
8227b297 RK |
1719 | /* |
1720 | * For b-tree node pages, this function may be called twice | |
1721 | * or more because they might be split in a segment. | |
1722 | */ | |
a9777845 RK |
1723 | if (PageDirty(page)) { |
1724 | /* | |
1725 | * For pages holding split b-tree node buffers, dirty | |
1726 | * flag on the buffers may be cleared discretely. | |
1727 | * In that case, the page is once redirtied for | |
1728 | * remaining buffers, and it must be cancelled if | |
1729 | * all the buffers get cleaned later. | |
1730 | */ | |
1731 | lock_page(page); | |
1732 | if (nilfs_page_buffers_clean(page)) | |
1733 | __nilfs_clear_page_dirty(page); | |
1734 | unlock_page(page); | |
1735 | } | |
9ff05123 | 1736 | return; |
a9777845 | 1737 | } |
9ff05123 | 1738 | |
1cb2d38c RK |
1739 | if (!err) { |
1740 | if (!nilfs_page_buffers_clean(page)) | |
1741 | __set_page_dirty_nobuffers(page); | |
1742 | ClearPageError(page); | |
1743 | } else { | |
1744 | __set_page_dirty_nobuffers(page); | |
1745 | SetPageError(page); | |
9ff05123 | 1746 | } |
1cb2d38c RK |
1747 | |
1748 | end_page_writeback(page); | |
9ff05123 RK |
1749 | } |
1750 | ||
1cb2d38c | 1751 | static void nilfs_abort_logs(struct list_head *logs, int err) |
9ff05123 RK |
1752 | { |
1753 | struct nilfs_segment_buffer *segbuf; | |
1754 | struct page *bd_page = NULL, *fs_page = NULL; | |
a694291a | 1755 | struct buffer_head *bh; |
9ff05123 | 1756 | |
a694291a RK |
1757 | if (list_empty(logs)) |
1758 | return; | |
9ff05123 | 1759 | |
a694291a | 1760 | list_for_each_entry(segbuf, logs, sb_list) { |
9ff05123 RK |
1761 | list_for_each_entry(bh, &segbuf->sb_segsum_buffers, |
1762 | b_assoc_buffers) { | |
1763 | if (bh->b_page != bd_page) { | |
1764 | if (bd_page) | |
1765 | end_page_writeback(bd_page); | |
1766 | bd_page = bh->b_page; | |
1767 | } | |
1768 | } | |
1769 | ||
1770 | list_for_each_entry(bh, &segbuf->sb_payload_buffers, | |
1771 | b_assoc_buffers) { | |
7f42ec39 | 1772 | clear_buffer_async_write(bh); |
1e2b68bf | 1773 | if (bh == segbuf->sb_super_root) { |
9ff05123 RK |
1774 | if (bh->b_page != bd_page) { |
1775 | end_page_writeback(bd_page); | |
1776 | bd_page = bh->b_page; | |
1777 | } | |
1778 | break; | |
1779 | } | |
1780 | if (bh->b_page != fs_page) { | |
1781 | nilfs_end_page_io(fs_page, err); | |
9ff05123 RK |
1782 | fs_page = bh->b_page; |
1783 | } | |
1784 | } | |
1785 | } | |
1786 | if (bd_page) | |
1787 | end_page_writeback(bd_page); | |
1788 | ||
1789 | nilfs_end_page_io(fs_page, err); | |
a694291a RK |
1790 | } |
1791 | ||
1792 | static void nilfs_segctor_abort_construction(struct nilfs_sc_info *sci, | |
1793 | struct the_nilfs *nilfs, int err) | |
1794 | { | |
1795 | LIST_HEAD(logs); | |
1796 | int ret; | |
1797 | ||
1798 | list_splice_tail_init(&sci->sc_write_logs, &logs); | |
1799 | ret = nilfs_wait_on_logs(&logs); | |
1cb2d38c | 1800 | nilfs_abort_logs(&logs, ret ? : err); |
a694291a RK |
1801 | |
1802 | list_splice_tail_init(&sci->sc_segbufs, &logs); | |
1803 | nilfs_cancel_segusage(&logs, nilfs->ns_sufile); | |
1804 | nilfs_free_incomplete_logs(&logs, nilfs); | |
a694291a RK |
1805 | |
1806 | if (sci->sc_stage.flags & NILFS_CF_SUFREED) { | |
1807 | ret = nilfs_sufile_cancel_freev(nilfs->ns_sufile, | |
1808 | sci->sc_freesegs, | |
1809 | sci->sc_nfreesegs, | |
1810 | NULL); | |
1811 | WARN_ON(ret); /* do not happen */ | |
1812 | } | |
1813 | ||
1814 | nilfs_destroy_logs(&logs); | |
9ff05123 RK |
1815 | } |
1816 | ||
1817 | static void nilfs_set_next_segment(struct the_nilfs *nilfs, | |
1818 | struct nilfs_segment_buffer *segbuf) | |
1819 | { | |
1820 | nilfs->ns_segnum = segbuf->sb_segnum; | |
1821 | nilfs->ns_nextnum = segbuf->sb_nextnum; | |
1822 | nilfs->ns_pseg_offset = segbuf->sb_pseg_start - segbuf->sb_fseg_start | |
1823 | + segbuf->sb_sum.nblocks; | |
1824 | nilfs->ns_seg_seq = segbuf->sb_sum.seg_seq; | |
1825 | nilfs->ns_ctime = segbuf->sb_sum.ctime; | |
1826 | } | |
1827 | ||
1828 | static void nilfs_segctor_complete_write(struct nilfs_sc_info *sci) | |
1829 | { | |
1830 | struct nilfs_segment_buffer *segbuf; | |
1831 | struct page *bd_page = NULL, *fs_page = NULL; | |
e3154e97 | 1832 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
1e2b68bf | 1833 | int update_sr = false; |
9ff05123 | 1834 | |
a694291a | 1835 | list_for_each_entry(segbuf, &sci->sc_write_logs, sb_list) { |
9ff05123 RK |
1836 | struct buffer_head *bh; |
1837 | ||
1838 | list_for_each_entry(bh, &segbuf->sb_segsum_buffers, | |
1839 | b_assoc_buffers) { | |
1840 | set_buffer_uptodate(bh); | |
1841 | clear_buffer_dirty(bh); | |
1842 | if (bh->b_page != bd_page) { | |
1843 | if (bd_page) | |
1844 | end_page_writeback(bd_page); | |
1845 | bd_page = bh->b_page; | |
1846 | } | |
1847 | } | |
1848 | /* | |
1849 | * We assume that the buffers which belong to the same page | |
1850 | * continue over the buffer list. | |
1851 | * Under this assumption, the last BHs of pages is | |
1852 | * identifiable by the discontinuity of bh->b_page | |
1853 | * (page != fs_page). | |
1854 | * | |
1855 | * For B-tree node blocks, however, this assumption is not | |
1856 | * guaranteed. The cleanup code of B-tree node pages needs | |
1857 | * special care. | |
1858 | */ | |
1859 | list_for_each_entry(bh, &segbuf->sb_payload_buffers, | |
1860 | b_assoc_buffers) { | |
ead8ecff RK |
1861 | const unsigned long set_bits = (1 << BH_Uptodate); |
1862 | const unsigned long clear_bits = | |
1863 | (1 << BH_Dirty | 1 << BH_Async_Write | | |
1864 | 1 << BH_Delay | 1 << BH_NILFS_Volatile | | |
1865 | 1 << BH_NILFS_Redirected); | |
1866 | ||
1867 | set_mask_bits(&bh->b_state, clear_bits, set_bits); | |
1e2b68bf | 1868 | if (bh == segbuf->sb_super_root) { |
9ff05123 RK |
1869 | if (bh->b_page != bd_page) { |
1870 | end_page_writeback(bd_page); | |
1871 | bd_page = bh->b_page; | |
1872 | } | |
1e2b68bf | 1873 | update_sr = true; |
9ff05123 RK |
1874 | break; |
1875 | } | |
1876 | if (bh->b_page != fs_page) { | |
1877 | nilfs_end_page_io(fs_page, 0); | |
1878 | fs_page = bh->b_page; | |
1879 | } | |
1880 | } | |
1881 | ||
4762077c RK |
1882 | if (!nilfs_segbuf_simplex(segbuf)) { |
1883 | if (segbuf->sb_sum.flags & NILFS_SS_LOGBGN) { | |
9ff05123 RK |
1884 | set_bit(NILFS_SC_UNCLOSED, &sci->sc_flags); |
1885 | sci->sc_lseg_stime = jiffies; | |
1886 | } | |
4762077c | 1887 | if (segbuf->sb_sum.flags & NILFS_SS_LOGEND) |
9ff05123 RK |
1888 | clear_bit(NILFS_SC_UNCLOSED, &sci->sc_flags); |
1889 | } | |
1890 | } | |
1891 | /* | |
1892 | * Since pages may continue over multiple segment buffers, | |
1893 | * end of the last page must be checked outside of the loop. | |
1894 | */ | |
1895 | if (bd_page) | |
1896 | end_page_writeback(bd_page); | |
1897 | ||
1898 | nilfs_end_page_io(fs_page, 0); | |
1899 | ||
9ff05123 RK |
1900 | nilfs_drop_collected_inodes(&sci->sc_dirty_files); |
1901 | ||
c1c1d709 | 1902 | if (nilfs_doing_gc()) |
9ff05123 | 1903 | nilfs_drop_collected_inodes(&sci->sc_gc_inodes); |
c1c1d709 | 1904 | else |
9ff05123 | 1905 | nilfs->ns_nongc_ctime = sci->sc_seg_ctime; |
9ff05123 RK |
1906 | |
1907 | sci->sc_nblk_inc += sci->sc_nblk_this_inc; | |
1908 | ||
a694291a | 1909 | segbuf = NILFS_LAST_SEGBUF(&sci->sc_write_logs); |
9ff05123 RK |
1910 | nilfs_set_next_segment(nilfs, segbuf); |
1911 | ||
1912 | if (update_sr) { | |
e2c7617a | 1913 | nilfs->ns_flushed_device = 0; |
9ff05123 | 1914 | nilfs_set_last_segment(nilfs, segbuf->sb_pseg_start, |
e339ad31 | 1915 | segbuf->sb_sum.seg_seq, nilfs->ns_cno++); |
9ff05123 | 1916 | |
c96fa464 | 1917 | clear_bit(NILFS_SC_HAVE_DELTA, &sci->sc_flags); |
9ff05123 RK |
1918 | clear_bit(NILFS_SC_DIRTY, &sci->sc_flags); |
1919 | set_bit(NILFS_SC_SUPER_ROOT, &sci->sc_flags); | |
a694291a | 1920 | nilfs_segctor_clear_metadata_dirty(sci); |
9ff05123 RK |
1921 | } else |
1922 | clear_bit(NILFS_SC_SUPER_ROOT, &sci->sc_flags); | |
1923 | } | |
1924 | ||
a694291a RK |
1925 | static int nilfs_segctor_wait(struct nilfs_sc_info *sci) |
1926 | { | |
1927 | int ret; | |
1928 | ||
1929 | ret = nilfs_wait_on_logs(&sci->sc_write_logs); | |
1930 | if (!ret) { | |
1931 | nilfs_segctor_complete_write(sci); | |
1932 | nilfs_destroy_logs(&sci->sc_write_logs); | |
1933 | } | |
1934 | return ret; | |
1935 | } | |
1936 | ||
693dd321 RK |
1937 | static int nilfs_segctor_collect_dirty_files(struct nilfs_sc_info *sci, |
1938 | struct the_nilfs *nilfs) | |
9ff05123 RK |
1939 | { |
1940 | struct nilfs_inode_info *ii, *n; | |
e912a5b6 | 1941 | struct inode *ifile = sci->sc_root->ifile; |
9ff05123 | 1942 | |
693dd321 | 1943 | spin_lock(&nilfs->ns_inode_lock); |
9ff05123 | 1944 | retry: |
693dd321 | 1945 | list_for_each_entry_safe(ii, n, &nilfs->ns_dirty_files, i_dirty) { |
9ff05123 RK |
1946 | if (!ii->i_bh) { |
1947 | struct buffer_head *ibh; | |
1948 | int err; | |
1949 | ||
693dd321 | 1950 | spin_unlock(&nilfs->ns_inode_lock); |
9ff05123 | 1951 | err = nilfs_ifile_get_inode_block( |
e912a5b6 | 1952 | ifile, ii->vfs_inode.i_ino, &ibh); |
9ff05123 | 1953 | if (unlikely(err)) { |
693dd321 | 1954 | nilfs_warning(sci->sc_super, __func__, |
06f4abf6 | 1955 | "failed to get inode block."); |
9ff05123 RK |
1956 | return err; |
1957 | } | |
5fc7b141 | 1958 | mark_buffer_dirty(ibh); |
e912a5b6 | 1959 | nilfs_mdt_mark_dirty(ifile); |
693dd321 | 1960 | spin_lock(&nilfs->ns_inode_lock); |
9ff05123 RK |
1961 | if (likely(!ii->i_bh)) |
1962 | ii->i_bh = ibh; | |
1963 | else | |
1964 | brelse(ibh); | |
1965 | goto retry; | |
1966 | } | |
9ff05123 RK |
1967 | |
1968 | clear_bit(NILFS_I_QUEUED, &ii->i_state); | |
1969 | set_bit(NILFS_I_BUSY, &ii->i_state); | |
eaae0f37 | 1970 | list_move_tail(&ii->i_dirty, &sci->sc_dirty_files); |
9ff05123 | 1971 | } |
693dd321 | 1972 | spin_unlock(&nilfs->ns_inode_lock); |
9ff05123 | 1973 | |
9ff05123 RK |
1974 | return 0; |
1975 | } | |
1976 | ||
693dd321 RK |
1977 | static void nilfs_segctor_drop_written_files(struct nilfs_sc_info *sci, |
1978 | struct the_nilfs *nilfs) | |
9ff05123 | 1979 | { |
9ff05123 | 1980 | struct nilfs_inode_info *ii, *n; |
283ee148 | 1981 | int during_mount = !(sci->sc_super->s_flags & MS_ACTIVE); |
7ef3ff2f | 1982 | int defer_iput = false; |
9ff05123 | 1983 | |
693dd321 | 1984 | spin_lock(&nilfs->ns_inode_lock); |
9ff05123 RK |
1985 | list_for_each_entry_safe(ii, n, &sci->sc_dirty_files, i_dirty) { |
1986 | if (!test_and_clear_bit(NILFS_I_UPDATED, &ii->i_state) || | |
6c43f410 | 1987 | test_bit(NILFS_I_DIRTY, &ii->i_state)) |
9ff05123 | 1988 | continue; |
6c43f410 | 1989 | |
9ff05123 RK |
1990 | clear_bit(NILFS_I_BUSY, &ii->i_state); |
1991 | brelse(ii->i_bh); | |
1992 | ii->i_bh = NULL; | |
7ef3ff2f | 1993 | list_del_init(&ii->i_dirty); |
283ee148 | 1994 | if (!ii->vfs_inode.i_nlink || during_mount) { |
7ef3ff2f | 1995 | /* |
283ee148 RK |
1996 | * Defer calling iput() to avoid deadlocks if |
1997 | * i_nlink == 0 or mount is not yet finished. | |
7ef3ff2f RK |
1998 | */ |
1999 | list_add_tail(&ii->i_dirty, &sci->sc_iput_queue); | |
2000 | defer_iput = true; | |
2001 | } else { | |
2002 | spin_unlock(&nilfs->ns_inode_lock); | |
2003 | iput(&ii->vfs_inode); | |
2004 | spin_lock(&nilfs->ns_inode_lock); | |
2005 | } | |
9ff05123 | 2006 | } |
693dd321 | 2007 | spin_unlock(&nilfs->ns_inode_lock); |
7ef3ff2f RK |
2008 | |
2009 | if (defer_iput) | |
2010 | schedule_work(&sci->sc_iput_work); | |
9ff05123 RK |
2011 | } |
2012 | ||
9ff05123 RK |
2013 | /* |
2014 | * Main procedure of segment constructor | |
2015 | */ | |
2016 | static int nilfs_segctor_do_construct(struct nilfs_sc_info *sci, int mode) | |
2017 | { | |
e3154e97 | 2018 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
1e2b68bf | 2019 | int err; |
9ff05123 | 2020 | |
58497703 | 2021 | nilfs_sc_cstage_set(sci, NILFS_ST_INIT); |
6c43f410 | 2022 | sci->sc_cno = nilfs->ns_cno; |
9ff05123 | 2023 | |
693dd321 | 2024 | err = nilfs_segctor_collect_dirty_files(sci, nilfs); |
9ff05123 RK |
2025 | if (unlikely(err)) |
2026 | goto out; | |
2027 | ||
e912a5b6 | 2028 | if (nilfs_test_metadata_dirty(nilfs, sci->sc_root)) |
9ff05123 RK |
2029 | set_bit(NILFS_SC_DIRTY, &sci->sc_flags); |
2030 | ||
2031 | if (nilfs_segctor_clean(sci)) | |
2032 | goto out; | |
2033 | ||
2034 | do { | |
2035 | sci->sc_stage.flags &= ~NILFS_CF_HISTORY_MASK; | |
2036 | ||
2037 | err = nilfs_segctor_begin_construction(sci, nilfs); | |
2038 | if (unlikely(err)) | |
2039 | goto out; | |
2040 | ||
2041 | /* Update time stamp */ | |
2042 | sci->sc_seg_ctime = get_seconds(); | |
2043 | ||
2044 | err = nilfs_segctor_collect(sci, nilfs, mode); | |
2045 | if (unlikely(err)) | |
2046 | goto failed; | |
2047 | ||
9ff05123 | 2048 | /* Avoid empty segment */ |
58497703 | 2049 | if (nilfs_sc_cstage_get(sci) == NILFS_ST_DONE && |
4762077c | 2050 | nilfs_segbuf_empty(sci->sc_curseg)) { |
a694291a | 2051 | nilfs_segctor_abort_construction(sci, nilfs, 1); |
9ff05123 RK |
2052 | goto out; |
2053 | } | |
2054 | ||
2055 | err = nilfs_segctor_assign(sci, mode); | |
2056 | if (unlikely(err)) | |
2057 | goto failed; | |
2058 | ||
9ff05123 | 2059 | if (sci->sc_stage.flags & NILFS_CF_IFILE_STARTED) |
e912a5b6 | 2060 | nilfs_segctor_fill_in_file_bmap(sci); |
9ff05123 | 2061 | |
1e2b68bf | 2062 | if (mode == SC_LSEG_SR && |
58497703 | 2063 | nilfs_sc_cstage_get(sci) >= NILFS_ST_CPFILE) { |
9ff05123 RK |
2064 | err = nilfs_segctor_fill_in_checkpoint(sci); |
2065 | if (unlikely(err)) | |
a694291a | 2066 | goto failed_to_write; |
9ff05123 RK |
2067 | |
2068 | nilfs_segctor_fill_in_super_root(sci, nilfs); | |
2069 | } | |
2070 | nilfs_segctor_update_segusage(sci, nilfs->ns_sufile); | |
2071 | ||
2072 | /* Write partial segments */ | |
1cb2d38c | 2073 | nilfs_segctor_prepare_write(sci); |
aaed1d5b RK |
2074 | |
2075 | nilfs_add_checksums_on_logs(&sci->sc_segbufs, | |
2076 | nilfs->ns_crc_seed); | |
9ff05123 | 2077 | |
9c965bac | 2078 | err = nilfs_segctor_write(sci, nilfs); |
9ff05123 RK |
2079 | if (unlikely(err)) |
2080 | goto failed_to_write; | |
2081 | ||
58497703 | 2082 | if (nilfs_sc_cstage_get(sci) == NILFS_ST_DONE || |
09cbfeaf | 2083 | nilfs->ns_blocksize_bits != PAGE_SHIFT) { |
a694291a RK |
2084 | /* |
2085 | * At this point, we avoid double buffering | |
2086 | * for blocksize < pagesize because page dirty | |
2087 | * flag is turned off during write and dirty | |
2088 | * buffers are not properly collected for | |
2089 | * pages crossing over segments. | |
2090 | */ | |
2091 | err = nilfs_segctor_wait(sci); | |
2092 | if (err) | |
2093 | goto failed_to_write; | |
2094 | } | |
58497703 | 2095 | } while (nilfs_sc_cstage_get(sci) != NILFS_ST_DONE); |
9ff05123 | 2096 | |
9ff05123 | 2097 | out: |
693dd321 | 2098 | nilfs_segctor_drop_written_files(sci, nilfs); |
9ff05123 RK |
2099 | return err; |
2100 | ||
2101 | failed_to_write: | |
9ff05123 RK |
2102 | if (sci->sc_stage.flags & NILFS_CF_IFILE_STARTED) |
2103 | nilfs_redirty_inodes(&sci->sc_dirty_files); | |
9ff05123 RK |
2104 | |
2105 | failed: | |
2106 | if (nilfs_doing_gc()) | |
2107 | nilfs_redirty_inodes(&sci->sc_gc_inodes); | |
a694291a | 2108 | nilfs_segctor_abort_construction(sci, nilfs, err); |
9ff05123 RK |
2109 | goto out; |
2110 | } | |
2111 | ||
2112 | /** | |
9ccf56c1 | 2113 | * nilfs_segctor_start_timer - set timer of background write |
9ff05123 RK |
2114 | * @sci: nilfs_sc_info |
2115 | * | |
2116 | * If the timer has already been set, it ignores the new request. | |
2117 | * This function MUST be called within a section locking the segment | |
2118 | * semaphore. | |
2119 | */ | |
2120 | static void nilfs_segctor_start_timer(struct nilfs_sc_info *sci) | |
2121 | { | |
2122 | spin_lock(&sci->sc_state_lock); | |
fdce895e LH |
2123 | if (!(sci->sc_state & NILFS_SEGCTOR_COMMIT)) { |
2124 | sci->sc_timer.expires = jiffies + sci->sc_interval; | |
2125 | add_timer(&sci->sc_timer); | |
9ff05123 RK |
2126 | sci->sc_state |= NILFS_SEGCTOR_COMMIT; |
2127 | } | |
2128 | spin_unlock(&sci->sc_state_lock); | |
2129 | } | |
2130 | ||
2131 | static void nilfs_segctor_do_flush(struct nilfs_sc_info *sci, int bn) | |
2132 | { | |
2133 | spin_lock(&sci->sc_state_lock); | |
2134 | if (!(sci->sc_flush_request & (1 << bn))) { | |
2135 | unsigned long prev_req = sci->sc_flush_request; | |
2136 | ||
2137 | sci->sc_flush_request |= (1 << bn); | |
2138 | if (!prev_req) | |
2139 | wake_up(&sci->sc_wait_daemon); | |
2140 | } | |
2141 | spin_unlock(&sci->sc_state_lock); | |
2142 | } | |
2143 | ||
2144 | /** | |
2145 | * nilfs_flush_segment - trigger a segment construction for resource control | |
2146 | * @sb: super block | |
2147 | * @ino: inode number of the file to be flushed out. | |
2148 | */ | |
2149 | void nilfs_flush_segment(struct super_block *sb, ino_t ino) | |
2150 | { | |
e3154e97 | 2151 | struct the_nilfs *nilfs = sb->s_fs_info; |
3fd3fe5a | 2152 | struct nilfs_sc_info *sci = nilfs->ns_writer; |
9ff05123 RK |
2153 | |
2154 | if (!sci || nilfs_doing_construction()) | |
2155 | return; | |
2156 | nilfs_segctor_do_flush(sci, NILFS_MDT_INODE(sb, ino) ? ino : 0); | |
2157 | /* assign bit 0 to data files */ | |
2158 | } | |
2159 | ||
9ff05123 RK |
2160 | struct nilfs_segctor_wait_request { |
2161 | wait_queue_t wq; | |
2162 | __u32 seq; | |
2163 | int err; | |
2164 | atomic_t done; | |
2165 | }; | |
2166 | ||
2167 | static int nilfs_segctor_sync(struct nilfs_sc_info *sci) | |
2168 | { | |
2169 | struct nilfs_segctor_wait_request wait_req; | |
2170 | int err = 0; | |
2171 | ||
2172 | spin_lock(&sci->sc_state_lock); | |
2173 | init_wait(&wait_req.wq); | |
2174 | wait_req.err = 0; | |
2175 | atomic_set(&wait_req.done, 0); | |
2176 | wait_req.seq = ++sci->sc_seq_request; | |
2177 | spin_unlock(&sci->sc_state_lock); | |
2178 | ||
2179 | init_waitqueue_entry(&wait_req.wq, current); | |
2180 | add_wait_queue(&sci->sc_wait_request, &wait_req.wq); | |
2181 | set_current_state(TASK_INTERRUPTIBLE); | |
2182 | wake_up(&sci->sc_wait_daemon); | |
2183 | ||
2184 | for (;;) { | |
2185 | if (atomic_read(&wait_req.done)) { | |
2186 | err = wait_req.err; | |
2187 | break; | |
2188 | } | |
2189 | if (!signal_pending(current)) { | |
2190 | schedule(); | |
2191 | continue; | |
2192 | } | |
2193 | err = -ERESTARTSYS; | |
2194 | break; | |
2195 | } | |
2196 | finish_wait(&sci->sc_wait_request, &wait_req.wq); | |
2197 | return err; | |
2198 | } | |
2199 | ||
2200 | static void nilfs_segctor_wakeup(struct nilfs_sc_info *sci, int err) | |
2201 | { | |
2202 | struct nilfs_segctor_wait_request *wrq, *n; | |
2203 | unsigned long flags; | |
2204 | ||
2205 | spin_lock_irqsave(&sci->sc_wait_request.lock, flags); | |
2206 | list_for_each_entry_safe(wrq, n, &sci->sc_wait_request.task_list, | |
2207 | wq.task_list) { | |
2208 | if (!atomic_read(&wrq->done) && | |
2209 | nilfs_cnt32_ge(sci->sc_seq_done, wrq->seq)) { | |
2210 | wrq->err = err; | |
2211 | atomic_set(&wrq->done, 1); | |
2212 | } | |
2213 | if (atomic_read(&wrq->done)) { | |
2214 | wrq->wq.func(&wrq->wq, | |
2215 | TASK_UNINTERRUPTIBLE | TASK_INTERRUPTIBLE, | |
2216 | 0, NULL); | |
2217 | } | |
2218 | } | |
2219 | spin_unlock_irqrestore(&sci->sc_wait_request.lock, flags); | |
2220 | } | |
2221 | ||
2222 | /** | |
2223 | * nilfs_construct_segment - construct a logical segment | |
2224 | * @sb: super block | |
2225 | * | |
2226 | * Return Value: On success, 0 is retured. On errors, one of the following | |
2227 | * negative error code is returned. | |
2228 | * | |
2229 | * %-EROFS - Read only filesystem. | |
2230 | * | |
2231 | * %-EIO - I/O error | |
2232 | * | |
2233 | * %-ENOSPC - No space left on device (only in a panic state). | |
2234 | * | |
2235 | * %-ERESTARTSYS - Interrupted. | |
2236 | * | |
2237 | * %-ENOMEM - Insufficient memory available. | |
2238 | */ | |
2239 | int nilfs_construct_segment(struct super_block *sb) | |
2240 | { | |
e3154e97 | 2241 | struct the_nilfs *nilfs = sb->s_fs_info; |
3fd3fe5a | 2242 | struct nilfs_sc_info *sci = nilfs->ns_writer; |
9ff05123 RK |
2243 | struct nilfs_transaction_info *ti; |
2244 | int err; | |
2245 | ||
2246 | if (!sci) | |
2247 | return -EROFS; | |
2248 | ||
2249 | /* A call inside transactions causes a deadlock. */ | |
2250 | BUG_ON((ti = current->journal_info) && ti->ti_magic == NILFS_TI_MAGIC); | |
2251 | ||
2252 | err = nilfs_segctor_sync(sci); | |
2253 | return err; | |
2254 | } | |
2255 | ||
2256 | /** | |
2257 | * nilfs_construct_dsync_segment - construct a data-only logical segment | |
2258 | * @sb: super block | |
f30bf3e4 RK |
2259 | * @inode: inode whose data blocks should be written out |
2260 | * @start: start byte offset | |
2261 | * @end: end byte offset (inclusive) | |
9ff05123 RK |
2262 | * |
2263 | * Return Value: On success, 0 is retured. On errors, one of the following | |
2264 | * negative error code is returned. | |
2265 | * | |
2266 | * %-EROFS - Read only filesystem. | |
2267 | * | |
2268 | * %-EIO - I/O error | |
2269 | * | |
2270 | * %-ENOSPC - No space left on device (only in a panic state). | |
2271 | * | |
2272 | * %-ERESTARTSYS - Interrupted. | |
2273 | * | |
2274 | * %-ENOMEM - Insufficient memory available. | |
2275 | */ | |
f30bf3e4 RK |
2276 | int nilfs_construct_dsync_segment(struct super_block *sb, struct inode *inode, |
2277 | loff_t start, loff_t end) | |
9ff05123 | 2278 | { |
e3154e97 | 2279 | struct the_nilfs *nilfs = sb->s_fs_info; |
3fd3fe5a | 2280 | struct nilfs_sc_info *sci = nilfs->ns_writer; |
9ff05123 RK |
2281 | struct nilfs_inode_info *ii; |
2282 | struct nilfs_transaction_info ti; | |
2283 | int err = 0; | |
2284 | ||
2285 | if (!sci) | |
2286 | return -EROFS; | |
2287 | ||
f7545144 | 2288 | nilfs_transaction_lock(sb, &ti, 0); |
9ff05123 RK |
2289 | |
2290 | ii = NILFS_I(inode); | |
b9f66140 | 2291 | if (test_bit(NILFS_I_INODE_SYNC, &ii->i_state) || |
3b2ce58b | 2292 | nilfs_test_opt(nilfs, STRICT_ORDER) || |
9ff05123 | 2293 | test_bit(NILFS_SC_UNCLOSED, &sci->sc_flags) || |
3b2ce58b | 2294 | nilfs_discontinued(nilfs)) { |
f7545144 | 2295 | nilfs_transaction_unlock(sb); |
9ff05123 RK |
2296 | err = nilfs_segctor_sync(sci); |
2297 | return err; | |
2298 | } | |
2299 | ||
693dd321 | 2300 | spin_lock(&nilfs->ns_inode_lock); |
9ff05123 RK |
2301 | if (!test_bit(NILFS_I_QUEUED, &ii->i_state) && |
2302 | !test_bit(NILFS_I_BUSY, &ii->i_state)) { | |
693dd321 | 2303 | spin_unlock(&nilfs->ns_inode_lock); |
f7545144 | 2304 | nilfs_transaction_unlock(sb); |
9ff05123 RK |
2305 | return 0; |
2306 | } | |
693dd321 | 2307 | spin_unlock(&nilfs->ns_inode_lock); |
f30bf3e4 RK |
2308 | sci->sc_dsync_inode = ii; |
2309 | sci->sc_dsync_start = start; | |
2310 | sci->sc_dsync_end = end; | |
9ff05123 RK |
2311 | |
2312 | err = nilfs_segctor_do_construct(sci, SC_LSEG_DSYNC); | |
e2c7617a AR |
2313 | if (!err) |
2314 | nilfs->ns_flushed_device = 0; | |
9ff05123 | 2315 | |
f7545144 | 2316 | nilfs_transaction_unlock(sb); |
9ff05123 RK |
2317 | return err; |
2318 | } | |
2319 | ||
9ff05123 RK |
2320 | #define FLUSH_FILE_BIT (0x1) /* data file only */ |
2321 | #define FLUSH_DAT_BIT (1 << NILFS_DAT_INO) /* DAT only */ | |
2322 | ||
dcd76186 RK |
2323 | /** |
2324 | * nilfs_segctor_accept - record accepted sequence count of log-write requests | |
2325 | * @sci: segment constructor object | |
2326 | */ | |
2327 | static void nilfs_segctor_accept(struct nilfs_sc_info *sci) | |
9ff05123 | 2328 | { |
9ff05123 | 2329 | spin_lock(&sci->sc_state_lock); |
dcd76186 | 2330 | sci->sc_seq_accepted = sci->sc_seq_request; |
9ff05123 | 2331 | spin_unlock(&sci->sc_state_lock); |
fdce895e | 2332 | del_timer_sync(&sci->sc_timer); |
9ff05123 RK |
2333 | } |
2334 | ||
dcd76186 RK |
2335 | /** |
2336 | * nilfs_segctor_notify - notify the result of request to caller threads | |
2337 | * @sci: segment constructor object | |
2338 | * @mode: mode of log forming | |
2339 | * @err: error code to be notified | |
2340 | */ | |
2341 | static void nilfs_segctor_notify(struct nilfs_sc_info *sci, int mode, int err) | |
9ff05123 RK |
2342 | { |
2343 | /* Clear requests (even when the construction failed) */ | |
2344 | spin_lock(&sci->sc_state_lock); | |
2345 | ||
dcd76186 | 2346 | if (mode == SC_LSEG_SR) { |
aeda7f63 | 2347 | sci->sc_state &= ~NILFS_SEGCTOR_COMMIT; |
dcd76186 RK |
2348 | sci->sc_seq_done = sci->sc_seq_accepted; |
2349 | nilfs_segctor_wakeup(sci, err); | |
9ff05123 | 2350 | sci->sc_flush_request = 0; |
aeda7f63 | 2351 | } else { |
dcd76186 | 2352 | if (mode == SC_FLUSH_FILE) |
aeda7f63 | 2353 | sci->sc_flush_request &= ~FLUSH_FILE_BIT; |
dcd76186 | 2354 | else if (mode == SC_FLUSH_DAT) |
aeda7f63 RK |
2355 | sci->sc_flush_request &= ~FLUSH_DAT_BIT; |
2356 | ||
2357 | /* re-enable timer if checkpoint creation was not done */ | |
fdce895e LH |
2358 | if ((sci->sc_state & NILFS_SEGCTOR_COMMIT) && |
2359 | time_before(jiffies, sci->sc_timer.expires)) | |
2360 | add_timer(&sci->sc_timer); | |
aeda7f63 | 2361 | } |
9ff05123 RK |
2362 | spin_unlock(&sci->sc_state_lock); |
2363 | } | |
2364 | ||
dcd76186 RK |
2365 | /** |
2366 | * nilfs_segctor_construct - form logs and write them to disk | |
2367 | * @sci: segment constructor object | |
2368 | * @mode: mode of log forming | |
2369 | */ | |
2370 | static int nilfs_segctor_construct(struct nilfs_sc_info *sci, int mode) | |
9ff05123 | 2371 | { |
e3154e97 | 2372 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
d26493b6 | 2373 | struct nilfs_super_block **sbp; |
9ff05123 RK |
2374 | int err = 0; |
2375 | ||
dcd76186 RK |
2376 | nilfs_segctor_accept(sci); |
2377 | ||
9ff05123 | 2378 | if (nilfs_discontinued(nilfs)) |
dcd76186 RK |
2379 | mode = SC_LSEG_SR; |
2380 | if (!nilfs_segctor_confirm(sci)) | |
2381 | err = nilfs_segctor_do_construct(sci, mode); | |
2382 | ||
9ff05123 | 2383 | if (likely(!err)) { |
dcd76186 | 2384 | if (mode != SC_FLUSH_DAT) |
9ff05123 RK |
2385 | atomic_set(&nilfs->ns_ndirtyblks, 0); |
2386 | if (test_bit(NILFS_SC_SUPER_ROOT, &sci->sc_flags) && | |
2387 | nilfs_discontinued(nilfs)) { | |
2388 | down_write(&nilfs->ns_sem); | |
d26493b6 | 2389 | err = -EIO; |
f7545144 | 2390 | sbp = nilfs_prepare_super(sci->sc_super, |
b2ac86e1 JS |
2391 | nilfs_sb_will_flip(nilfs)); |
2392 | if (likely(sbp)) { | |
2393 | nilfs_set_log_cursor(sbp[0], nilfs); | |
f7545144 RK |
2394 | err = nilfs_commit_super(sci->sc_super, |
2395 | NILFS_SB_COMMIT); | |
b2ac86e1 | 2396 | } |
9ff05123 RK |
2397 | up_write(&nilfs->ns_sem); |
2398 | } | |
2399 | } | |
dcd76186 RK |
2400 | |
2401 | nilfs_segctor_notify(sci, mode, err); | |
9ff05123 RK |
2402 | return err; |
2403 | } | |
2404 | ||
2405 | static void nilfs_construction_timeout(unsigned long data) | |
2406 | { | |
2407 | struct task_struct *p = (struct task_struct *)data; | |
4ad364ca | 2408 | |
9ff05123 RK |
2409 | wake_up_process(p); |
2410 | } | |
2411 | ||
2412 | static void | |
2413 | nilfs_remove_written_gcinodes(struct the_nilfs *nilfs, struct list_head *head) | |
2414 | { | |
2415 | struct nilfs_inode_info *ii, *n; | |
2416 | ||
2417 | list_for_each_entry_safe(ii, n, head, i_dirty) { | |
2418 | if (!test_bit(NILFS_I_UPDATED, &ii->i_state)) | |
2419 | continue; | |
9ff05123 | 2420 | list_del_init(&ii->i_dirty); |
fbb24a3a RK |
2421 | truncate_inode_pages(&ii->vfs_inode.i_data, 0); |
2422 | nilfs_btnode_cache_clear(&ii->i_btnode_cache); | |
263d90ce | 2423 | iput(&ii->vfs_inode); |
9ff05123 RK |
2424 | } |
2425 | } | |
2426 | ||
4f6b8288 RK |
2427 | int nilfs_clean_segments(struct super_block *sb, struct nilfs_argv *argv, |
2428 | void **kbufs) | |
9ff05123 | 2429 | { |
e3154e97 | 2430 | struct the_nilfs *nilfs = sb->s_fs_info; |
3fd3fe5a | 2431 | struct nilfs_sc_info *sci = nilfs->ns_writer; |
9ff05123 | 2432 | struct nilfs_transaction_info ti; |
9ff05123 RK |
2433 | int err; |
2434 | ||
2435 | if (unlikely(!sci)) | |
2436 | return -EROFS; | |
2437 | ||
f7545144 | 2438 | nilfs_transaction_lock(sb, &ti, 1); |
9ff05123 | 2439 | |
c1c1d709 | 2440 | err = nilfs_mdt_save_to_shadow_map(nilfs->ns_dat); |
9ff05123 RK |
2441 | if (unlikely(err)) |
2442 | goto out_unlock; | |
071cb4b8 | 2443 | |
4f6b8288 | 2444 | err = nilfs_ioctl_prepare_clean_segments(nilfs, argv, kbufs); |
c1c1d709 RK |
2445 | if (unlikely(err)) { |
2446 | nilfs_mdt_restore_from_shadow_map(nilfs->ns_dat); | |
9ff05123 | 2447 | goto out_unlock; |
c1c1d709 | 2448 | } |
9ff05123 | 2449 | |
071cb4b8 RK |
2450 | sci->sc_freesegs = kbufs[4]; |
2451 | sci->sc_nfreesegs = argv[4].v_nmembs; | |
0935db74 | 2452 | list_splice_tail_init(&nilfs->ns_gc_inodes, &sci->sc_gc_inodes); |
9ff05123 RK |
2453 | |
2454 | for (;;) { | |
dcd76186 | 2455 | err = nilfs_segctor_construct(sci, SC_LSEG_SR); |
9ff05123 | 2456 | nilfs_remove_written_gcinodes(nilfs, &sci->sc_gc_inodes); |
9ff05123 RK |
2457 | |
2458 | if (likely(!err)) | |
2459 | break; | |
2460 | ||
2461 | nilfs_warning(sb, __func__, | |
2462 | "segment construction failed. (err=%d)", err); | |
2463 | set_current_state(TASK_INTERRUPTIBLE); | |
2464 | schedule_timeout(sci->sc_interval); | |
2465 | } | |
3b2ce58b | 2466 | if (nilfs_test_opt(nilfs, DISCARD)) { |
e902ec99 JS |
2467 | int ret = nilfs_discard_segments(nilfs, sci->sc_freesegs, |
2468 | sci->sc_nfreesegs); | |
2469 | if (ret) { | |
2470 | printk(KERN_WARNING | |
2471 | "NILFS warning: error %d on discard request, " | |
2472 | "turning discards off for the device\n", ret); | |
3b2ce58b | 2473 | nilfs_clear_opt(nilfs, DISCARD); |
e902ec99 JS |
2474 | } |
2475 | } | |
9ff05123 RK |
2476 | |
2477 | out_unlock: | |
071cb4b8 RK |
2478 | sci->sc_freesegs = NULL; |
2479 | sci->sc_nfreesegs = 0; | |
c1c1d709 | 2480 | nilfs_mdt_clear_shadow_map(nilfs->ns_dat); |
f7545144 | 2481 | nilfs_transaction_unlock(sb); |
9ff05123 RK |
2482 | return err; |
2483 | } | |
2484 | ||
2485 | static void nilfs_segctor_thread_construct(struct nilfs_sc_info *sci, int mode) | |
2486 | { | |
9ff05123 | 2487 | struct nilfs_transaction_info ti; |
9ff05123 | 2488 | |
f7545144 | 2489 | nilfs_transaction_lock(sci->sc_super, &ti, 0); |
dcd76186 | 2490 | nilfs_segctor_construct(sci, mode); |
9ff05123 RK |
2491 | |
2492 | /* | |
2493 | * Unclosed segment should be retried. We do this using sc_timer. | |
2494 | * Timeout of sc_timer will invoke complete construction which leads | |
2495 | * to close the current logical segment. | |
2496 | */ | |
2497 | if (test_bit(NILFS_SC_UNCLOSED, &sci->sc_flags)) | |
2498 | nilfs_segctor_start_timer(sci); | |
2499 | ||
f7545144 | 2500 | nilfs_transaction_unlock(sci->sc_super); |
9ff05123 RK |
2501 | } |
2502 | ||
2503 | static void nilfs_segctor_do_immediate_flush(struct nilfs_sc_info *sci) | |
2504 | { | |
2505 | int mode = 0; | |
9ff05123 RK |
2506 | |
2507 | spin_lock(&sci->sc_state_lock); | |
2508 | mode = (sci->sc_flush_request & FLUSH_DAT_BIT) ? | |
2509 | SC_FLUSH_DAT : SC_FLUSH_FILE; | |
2510 | spin_unlock(&sci->sc_state_lock); | |
2511 | ||
2512 | if (mode) { | |
09ef29e0 | 2513 | nilfs_segctor_do_construct(sci, mode); |
9ff05123 RK |
2514 | |
2515 | spin_lock(&sci->sc_state_lock); | |
2516 | sci->sc_flush_request &= (mode == SC_FLUSH_FILE) ? | |
2517 | ~FLUSH_FILE_BIT : ~FLUSH_DAT_BIT; | |
2518 | spin_unlock(&sci->sc_state_lock); | |
2519 | } | |
2520 | clear_bit(NILFS_SC_PRIOR_FLUSH, &sci->sc_flags); | |
2521 | } | |
2522 | ||
2523 | static int nilfs_segctor_flush_mode(struct nilfs_sc_info *sci) | |
2524 | { | |
2525 | if (!test_bit(NILFS_SC_UNCLOSED, &sci->sc_flags) || | |
2526 | time_before(jiffies, sci->sc_lseg_stime + sci->sc_mjcp_freq)) { | |
2527 | if (!(sci->sc_flush_request & ~FLUSH_FILE_BIT)) | |
2528 | return SC_FLUSH_FILE; | |
2529 | else if (!(sci->sc_flush_request & ~FLUSH_DAT_BIT)) | |
2530 | return SC_FLUSH_DAT; | |
2531 | } | |
2532 | return SC_LSEG_SR; | |
2533 | } | |
2534 | ||
2535 | /** | |
2536 | * nilfs_segctor_thread - main loop of the segment constructor thread. | |
2537 | * @arg: pointer to a struct nilfs_sc_info. | |
2538 | * | |
2539 | * nilfs_segctor_thread() initializes a timer and serves as a daemon | |
2540 | * to execute segment constructions. | |
2541 | */ | |
2542 | static int nilfs_segctor_thread(void *arg) | |
2543 | { | |
2544 | struct nilfs_sc_info *sci = (struct nilfs_sc_info *)arg; | |
e3154e97 | 2545 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 RK |
2546 | int timeout = 0; |
2547 | ||
fdce895e LH |
2548 | sci->sc_timer.data = (unsigned long)current; |
2549 | sci->sc_timer.function = nilfs_construction_timeout; | |
9ff05123 RK |
2550 | |
2551 | /* start sync. */ | |
2552 | sci->sc_task = current; | |
2553 | wake_up(&sci->sc_wait_task); /* for nilfs_segctor_start_thread() */ | |
2554 | printk(KERN_INFO | |
2555 | "segctord starting. Construction interval = %lu seconds, " | |
2556 | "CP frequency < %lu seconds\n", | |
2557 | sci->sc_interval / HZ, sci->sc_mjcp_freq / HZ); | |
2558 | ||
2559 | spin_lock(&sci->sc_state_lock); | |
2560 | loop: | |
2561 | for (;;) { | |
2562 | int mode; | |
2563 | ||
2564 | if (sci->sc_state & NILFS_SEGCTOR_QUIT) | |
2565 | goto end_thread; | |
2566 | ||
2567 | if (timeout || sci->sc_seq_request != sci->sc_seq_done) | |
2568 | mode = SC_LSEG_SR; | |
7f00184e | 2569 | else if (sci->sc_flush_request) |
9ff05123 | 2570 | mode = nilfs_segctor_flush_mode(sci); |
7f00184e RK |
2571 | else |
2572 | break; | |
9ff05123 RK |
2573 | |
2574 | spin_unlock(&sci->sc_state_lock); | |
2575 | nilfs_segctor_thread_construct(sci, mode); | |
2576 | spin_lock(&sci->sc_state_lock); | |
2577 | timeout = 0; | |
2578 | } | |
2579 | ||
2580 | ||
2581 | if (freezing(current)) { | |
2582 | spin_unlock(&sci->sc_state_lock); | |
a0acae0e | 2583 | try_to_freeze(); |
9ff05123 RK |
2584 | spin_lock(&sci->sc_state_lock); |
2585 | } else { | |
2586 | DEFINE_WAIT(wait); | |
2587 | int should_sleep = 1; | |
2588 | ||
2589 | prepare_to_wait(&sci->sc_wait_daemon, &wait, | |
2590 | TASK_INTERRUPTIBLE); | |
2591 | ||
2592 | if (sci->sc_seq_request != sci->sc_seq_done) | |
2593 | should_sleep = 0; | |
2594 | else if (sci->sc_flush_request) | |
2595 | should_sleep = 0; | |
2596 | else if (sci->sc_state & NILFS_SEGCTOR_COMMIT) | |
2597 | should_sleep = time_before(jiffies, | |
fdce895e | 2598 | sci->sc_timer.expires); |
9ff05123 RK |
2599 | |
2600 | if (should_sleep) { | |
2601 | spin_unlock(&sci->sc_state_lock); | |
2602 | schedule(); | |
2603 | spin_lock(&sci->sc_state_lock); | |
2604 | } | |
2605 | finish_wait(&sci->sc_wait_daemon, &wait); | |
2606 | timeout = ((sci->sc_state & NILFS_SEGCTOR_COMMIT) && | |
fdce895e | 2607 | time_after_eq(jiffies, sci->sc_timer.expires)); |
e605f0a7 RK |
2608 | |
2609 | if (nilfs_sb_dirty(nilfs) && nilfs_sb_need_update(nilfs)) | |
1dfa2710 | 2610 | set_nilfs_discontinued(nilfs); |
9ff05123 RK |
2611 | } |
2612 | goto loop; | |
2613 | ||
2614 | end_thread: | |
2615 | spin_unlock(&sci->sc_state_lock); | |
9ff05123 RK |
2616 | |
2617 | /* end sync. */ | |
2618 | sci->sc_task = NULL; | |
2619 | wake_up(&sci->sc_wait_task); /* for nilfs_segctor_kill_thread() */ | |
2620 | return 0; | |
2621 | } | |
2622 | ||
2623 | static int nilfs_segctor_start_thread(struct nilfs_sc_info *sci) | |
2624 | { | |
2625 | struct task_struct *t; | |
2626 | ||
2627 | t = kthread_run(nilfs_segctor_thread, sci, "segctord"); | |
2628 | if (IS_ERR(t)) { | |
2629 | int err = PTR_ERR(t); | |
2630 | ||
2631 | printk(KERN_ERR "NILFS: error %d creating segctord thread\n", | |
2632 | err); | |
2633 | return err; | |
2634 | } | |
2635 | wait_event(sci->sc_wait_task, sci->sc_task != NULL); | |
2636 | return 0; | |
2637 | } | |
2638 | ||
2639 | static void nilfs_segctor_kill_thread(struct nilfs_sc_info *sci) | |
6b81e14e JS |
2640 | __acquires(&sci->sc_state_lock) |
2641 | __releases(&sci->sc_state_lock) | |
9ff05123 RK |
2642 | { |
2643 | sci->sc_state |= NILFS_SEGCTOR_QUIT; | |
2644 | ||
2645 | while (sci->sc_task) { | |
2646 | wake_up(&sci->sc_wait_daemon); | |
2647 | spin_unlock(&sci->sc_state_lock); | |
2648 | wait_event(sci->sc_wait_task, sci->sc_task == NULL); | |
2649 | spin_lock(&sci->sc_state_lock); | |
2650 | } | |
2651 | } | |
2652 | ||
9ff05123 RK |
2653 | /* |
2654 | * Setup & clean-up functions | |
2655 | */ | |
f7545144 | 2656 | static struct nilfs_sc_info *nilfs_segctor_new(struct super_block *sb, |
e912a5b6 | 2657 | struct nilfs_root *root) |
9ff05123 | 2658 | { |
e3154e97 | 2659 | struct the_nilfs *nilfs = sb->s_fs_info; |
9ff05123 RK |
2660 | struct nilfs_sc_info *sci; |
2661 | ||
2662 | sci = kzalloc(sizeof(*sci), GFP_KERNEL); | |
2663 | if (!sci) | |
2664 | return NULL; | |
2665 | ||
f7545144 | 2666 | sci->sc_super = sb; |
9ff05123 | 2667 | |
e912a5b6 RK |
2668 | nilfs_get_root(root); |
2669 | sci->sc_root = root; | |
2670 | ||
9ff05123 RK |
2671 | init_waitqueue_head(&sci->sc_wait_request); |
2672 | init_waitqueue_head(&sci->sc_wait_daemon); | |
2673 | init_waitqueue_head(&sci->sc_wait_task); | |
2674 | spin_lock_init(&sci->sc_state_lock); | |
2675 | INIT_LIST_HEAD(&sci->sc_dirty_files); | |
2676 | INIT_LIST_HEAD(&sci->sc_segbufs); | |
a694291a | 2677 | INIT_LIST_HEAD(&sci->sc_write_logs); |
9ff05123 | 2678 | INIT_LIST_HEAD(&sci->sc_gc_inodes); |
7ef3ff2f RK |
2679 | INIT_LIST_HEAD(&sci->sc_iput_queue); |
2680 | INIT_WORK(&sci->sc_iput_work, nilfs_iput_work_func); | |
fdce895e | 2681 | init_timer(&sci->sc_timer); |
9ff05123 RK |
2682 | |
2683 | sci->sc_interval = HZ * NILFS_SC_DEFAULT_TIMEOUT; | |
2684 | sci->sc_mjcp_freq = HZ * NILFS_SC_DEFAULT_SR_FREQ; | |
2685 | sci->sc_watermark = NILFS_SC_DEFAULT_WATERMARK; | |
2686 | ||
574e6c31 | 2687 | if (nilfs->ns_interval) |
071d73cf | 2688 | sci->sc_interval = HZ * nilfs->ns_interval; |
574e6c31 RK |
2689 | if (nilfs->ns_watermark) |
2690 | sci->sc_watermark = nilfs->ns_watermark; | |
9ff05123 RK |
2691 | return sci; |
2692 | } | |
2693 | ||
2694 | static void nilfs_segctor_write_out(struct nilfs_sc_info *sci) | |
2695 | { | |
2696 | int ret, retrycount = NILFS_SC_CLEANUP_RETRY; | |
2697 | ||
076a378b RK |
2698 | /* |
2699 | * The segctord thread was stopped and its timer was removed. | |
2700 | * But some tasks remain. | |
2701 | */ | |
9ff05123 | 2702 | do { |
9ff05123 | 2703 | struct nilfs_transaction_info ti; |
9ff05123 | 2704 | |
f7545144 | 2705 | nilfs_transaction_lock(sci->sc_super, &ti, 0); |
dcd76186 | 2706 | ret = nilfs_segctor_construct(sci, SC_LSEG_SR); |
f7545144 | 2707 | nilfs_transaction_unlock(sci->sc_super); |
9ff05123 | 2708 | |
7ef3ff2f RK |
2709 | flush_work(&sci->sc_iput_work); |
2710 | ||
9ff05123 RK |
2711 | } while (ret && retrycount-- > 0); |
2712 | } | |
2713 | ||
2714 | /** | |
2715 | * nilfs_segctor_destroy - destroy the segment constructor. | |
2716 | * @sci: nilfs_sc_info | |
2717 | * | |
2718 | * nilfs_segctor_destroy() kills the segctord thread and frees | |
2719 | * the nilfs_sc_info struct. | |
2720 | * Caller must hold the segment semaphore. | |
2721 | */ | |
2722 | static void nilfs_segctor_destroy(struct nilfs_sc_info *sci) | |
2723 | { | |
e3154e97 | 2724 | struct the_nilfs *nilfs = sci->sc_super->s_fs_info; |
9ff05123 RK |
2725 | int flag; |
2726 | ||
693dd321 | 2727 | up_write(&nilfs->ns_segctor_sem); |
9ff05123 RK |
2728 | |
2729 | spin_lock(&sci->sc_state_lock); | |
2730 | nilfs_segctor_kill_thread(sci); | |
2731 | flag = ((sci->sc_state & NILFS_SEGCTOR_COMMIT) || sci->sc_flush_request | |
2732 | || sci->sc_seq_request != sci->sc_seq_done); | |
2733 | spin_unlock(&sci->sc_state_lock); | |
2734 | ||
7ef3ff2f RK |
2735 | if (flush_work(&sci->sc_iput_work)) |
2736 | flag = true; | |
2737 | ||
3256a055 | 2738 | if (flag || !nilfs_segctor_confirm(sci)) |
9ff05123 RK |
2739 | nilfs_segctor_write_out(sci); |
2740 | ||
9ff05123 | 2741 | if (!list_empty(&sci->sc_dirty_files)) { |
693dd321 | 2742 | nilfs_warning(sci->sc_super, __func__, |
06f4abf6 | 2743 | "dirty file(s) after the final construction"); |
693dd321 | 2744 | nilfs_dispose_list(nilfs, &sci->sc_dirty_files, 1); |
9ff05123 | 2745 | } |
9ff05123 | 2746 | |
7ef3ff2f RK |
2747 | if (!list_empty(&sci->sc_iput_queue)) { |
2748 | nilfs_warning(sci->sc_super, __func__, | |
06f4abf6 | 2749 | "iput queue is not empty"); |
7ef3ff2f RK |
2750 | nilfs_dispose_list(nilfs, &sci->sc_iput_queue, 1); |
2751 | } | |
2752 | ||
1f5abe7e | 2753 | WARN_ON(!list_empty(&sci->sc_segbufs)); |
a694291a | 2754 | WARN_ON(!list_empty(&sci->sc_write_logs)); |
9ff05123 | 2755 | |
e912a5b6 RK |
2756 | nilfs_put_root(sci->sc_root); |
2757 | ||
693dd321 | 2758 | down_write(&nilfs->ns_segctor_sem); |
9ff05123 | 2759 | |
fdce895e | 2760 | del_timer_sync(&sci->sc_timer); |
9ff05123 RK |
2761 | kfree(sci); |
2762 | } | |
2763 | ||
2764 | /** | |
f7545144 RK |
2765 | * nilfs_attach_log_writer - attach log writer |
2766 | * @sb: super block instance | |
e912a5b6 | 2767 | * @root: root object of the current filesystem tree |
9ff05123 | 2768 | * |
f7545144 RK |
2769 | * This allocates a log writer object, initializes it, and starts the |
2770 | * log writer. | |
9ff05123 RK |
2771 | * |
2772 | * Return Value: On success, 0 is returned. On error, one of the following | |
2773 | * negative error code is returned. | |
2774 | * | |
2775 | * %-ENOMEM - Insufficient memory available. | |
2776 | */ | |
f7545144 | 2777 | int nilfs_attach_log_writer(struct super_block *sb, struct nilfs_root *root) |
9ff05123 | 2778 | { |
e3154e97 | 2779 | struct the_nilfs *nilfs = sb->s_fs_info; |
9ff05123 RK |
2780 | int err; |
2781 | ||
3fd3fe5a | 2782 | if (nilfs->ns_writer) { |
fe5f171b RK |
2783 | /* |
2784 | * This happens if the filesystem was remounted | |
2785 | * read/write after nilfs_error degenerated it into a | |
2786 | * read-only mount. | |
2787 | */ | |
f7545144 | 2788 | nilfs_detach_log_writer(sb); |
fe5f171b RK |
2789 | } |
2790 | ||
f7545144 | 2791 | nilfs->ns_writer = nilfs_segctor_new(sb, root); |
3fd3fe5a | 2792 | if (!nilfs->ns_writer) |
9ff05123 RK |
2793 | return -ENOMEM; |
2794 | ||
3fd3fe5a | 2795 | err = nilfs_segctor_start_thread(nilfs->ns_writer); |
9ff05123 | 2796 | if (err) { |
3fd3fe5a RK |
2797 | kfree(nilfs->ns_writer); |
2798 | nilfs->ns_writer = NULL; | |
9ff05123 RK |
2799 | } |
2800 | return err; | |
2801 | } | |
2802 | ||
2803 | /** | |
f7545144 RK |
2804 | * nilfs_detach_log_writer - destroy log writer |
2805 | * @sb: super block instance | |
9ff05123 | 2806 | * |
f7545144 RK |
2807 | * This kills log writer daemon, frees the log writer object, and |
2808 | * destroys list of dirty files. | |
9ff05123 | 2809 | */ |
f7545144 | 2810 | void nilfs_detach_log_writer(struct super_block *sb) |
9ff05123 | 2811 | { |
e3154e97 | 2812 | struct the_nilfs *nilfs = sb->s_fs_info; |
9ff05123 RK |
2813 | LIST_HEAD(garbage_list); |
2814 | ||
2815 | down_write(&nilfs->ns_segctor_sem); | |
3fd3fe5a RK |
2816 | if (nilfs->ns_writer) { |
2817 | nilfs_segctor_destroy(nilfs->ns_writer); | |
2818 | nilfs->ns_writer = NULL; | |
9ff05123 RK |
2819 | } |
2820 | ||
2821 | /* Force to free the list of dirty files */ | |
693dd321 RK |
2822 | spin_lock(&nilfs->ns_inode_lock); |
2823 | if (!list_empty(&nilfs->ns_dirty_files)) { | |
2824 | list_splice_init(&nilfs->ns_dirty_files, &garbage_list); | |
f7545144 | 2825 | nilfs_warning(sb, __func__, |
06f4abf6 | 2826 | "Hit dirty file after stopped log writer"); |
9ff05123 | 2827 | } |
693dd321 | 2828 | spin_unlock(&nilfs->ns_inode_lock); |
9ff05123 RK |
2829 | up_write(&nilfs->ns_segctor_sem); |
2830 | ||
693dd321 | 2831 | nilfs_dispose_list(nilfs, &garbage_list, 1); |
9ff05123 | 2832 | } |