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ccd979bd MF |
1 | /* -*- mode: c; c-basic-offset: 8; -*- |
2 | * vim: noexpandtab sw=8 ts=8 sts=0: | |
3 | * | |
4 | * Copyright (C) 2002, 2004 Oracle. All rights reserved. | |
5 | * | |
6 | * This program is free software; you can redistribute it and/or | |
7 | * modify it under the terms of the GNU General Public | |
8 | * License as published by the Free Software Foundation; either | |
9 | * version 2 of the License, or (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 GNU | |
14 | * General Public License for more details. | |
15 | * | |
16 | * You should have received a copy of the GNU General Public | |
17 | * License along with this program; if not, write to the | |
18 | * Free Software Foundation, Inc., 59 Temple Place - Suite 330, | |
19 | * Boston, MA 021110-1307, USA. | |
20 | */ | |
21 | ||
22 | #include <linux/fs.h> | |
23 | #include <linux/slab.h> | |
24 | #include <linux/highmem.h> | |
25 | #include <linux/pagemap.h> | |
26 | #include <asm/byteorder.h> | |
9517bac6 | 27 | #include <linux/swap.h> |
6af67d82 | 28 | #include <linux/pipe_fs_i.h> |
628a24f5 | 29 | #include <linux/mpage.h> |
a90714c1 | 30 | #include <linux/quotaops.h> |
24c40b32 | 31 | #include <linux/blkdev.h> |
e2e40f2c | 32 | #include <linux/uio.h> |
ccd979bd | 33 | |
ccd979bd MF |
34 | #include <cluster/masklog.h> |
35 | ||
36 | #include "ocfs2.h" | |
37 | ||
38 | #include "alloc.h" | |
39 | #include "aops.h" | |
40 | #include "dlmglue.h" | |
41 | #include "extent_map.h" | |
42 | #include "file.h" | |
43 | #include "inode.h" | |
44 | #include "journal.h" | |
9517bac6 | 45 | #include "suballoc.h" |
ccd979bd MF |
46 | #include "super.h" |
47 | #include "symlink.h" | |
293b2f70 | 48 | #include "refcounttree.h" |
9558156b | 49 | #include "ocfs2_trace.h" |
ccd979bd MF |
50 | |
51 | #include "buffer_head_io.h" | |
24c40b32 JQ |
52 | #include "dir.h" |
53 | #include "namei.h" | |
54 | #include "sysfile.h" | |
ccd979bd MF |
55 | |
56 | static int ocfs2_symlink_get_block(struct inode *inode, sector_t iblock, | |
57 | struct buffer_head *bh_result, int create) | |
58 | { | |
59 | int err = -EIO; | |
60 | int status; | |
61 | struct ocfs2_dinode *fe = NULL; | |
62 | struct buffer_head *bh = NULL; | |
63 | struct buffer_head *buffer_cache_bh = NULL; | |
64 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); | |
65 | void *kaddr; | |
66 | ||
9558156b TM |
67 | trace_ocfs2_symlink_get_block( |
68 | (unsigned long long)OCFS2_I(inode)->ip_blkno, | |
69 | (unsigned long long)iblock, bh_result, create); | |
ccd979bd MF |
70 | |
71 | BUG_ON(ocfs2_inode_is_fast_symlink(inode)); | |
72 | ||
73 | if ((iblock << inode->i_sb->s_blocksize_bits) > PATH_MAX + 1) { | |
74 | mlog(ML_ERROR, "block offset > PATH_MAX: %llu", | |
75 | (unsigned long long)iblock); | |
76 | goto bail; | |
77 | } | |
78 | ||
b657c95c | 79 | status = ocfs2_read_inode_block(inode, &bh); |
ccd979bd MF |
80 | if (status < 0) { |
81 | mlog_errno(status); | |
82 | goto bail; | |
83 | } | |
84 | fe = (struct ocfs2_dinode *) bh->b_data; | |
85 | ||
ccd979bd MF |
86 | if ((u64)iblock >= ocfs2_clusters_to_blocks(inode->i_sb, |
87 | le32_to_cpu(fe->i_clusters))) { | |
7391a294 | 88 | err = -ENOMEM; |
ccd979bd MF |
89 | mlog(ML_ERROR, "block offset is outside the allocated size: " |
90 | "%llu\n", (unsigned long long)iblock); | |
91 | goto bail; | |
92 | } | |
93 | ||
94 | /* We don't use the page cache to create symlink data, so if | |
95 | * need be, copy it over from the buffer cache. */ | |
96 | if (!buffer_uptodate(bh_result) && ocfs2_inode_is_new(inode)) { | |
97 | u64 blkno = le64_to_cpu(fe->id2.i_list.l_recs[0].e_blkno) + | |
98 | iblock; | |
99 | buffer_cache_bh = sb_getblk(osb->sb, blkno); | |
100 | if (!buffer_cache_bh) { | |
7391a294 | 101 | err = -ENOMEM; |
ccd979bd MF |
102 | mlog(ML_ERROR, "couldn't getblock for symlink!\n"); |
103 | goto bail; | |
104 | } | |
105 | ||
106 | /* we haven't locked out transactions, so a commit | |
107 | * could've happened. Since we've got a reference on | |
108 | * the bh, even if it commits while we're doing the | |
109 | * copy, the data is still good. */ | |
110 | if (buffer_jbd(buffer_cache_bh) | |
111 | && ocfs2_inode_is_new(inode)) { | |
c4bc8dcb | 112 | kaddr = kmap_atomic(bh_result->b_page); |
ccd979bd MF |
113 | if (!kaddr) { |
114 | mlog(ML_ERROR, "couldn't kmap!\n"); | |
115 | goto bail; | |
116 | } | |
117 | memcpy(kaddr + (bh_result->b_size * iblock), | |
118 | buffer_cache_bh->b_data, | |
119 | bh_result->b_size); | |
c4bc8dcb | 120 | kunmap_atomic(kaddr); |
ccd979bd MF |
121 | set_buffer_uptodate(bh_result); |
122 | } | |
123 | brelse(buffer_cache_bh); | |
124 | } | |
125 | ||
126 | map_bh(bh_result, inode->i_sb, | |
127 | le64_to_cpu(fe->id2.i_list.l_recs[0].e_blkno) + iblock); | |
128 | ||
129 | err = 0; | |
130 | ||
131 | bail: | |
a81cb88b | 132 | brelse(bh); |
ccd979bd | 133 | |
ccd979bd MF |
134 | return err; |
135 | } | |
136 | ||
6f70fa51 TM |
137 | int ocfs2_get_block(struct inode *inode, sector_t iblock, |
138 | struct buffer_head *bh_result, int create) | |
ccd979bd MF |
139 | { |
140 | int err = 0; | |
49cb8d2d | 141 | unsigned int ext_flags; |
628a24f5 MF |
142 | u64 max_blocks = bh_result->b_size >> inode->i_blkbits; |
143 | u64 p_blkno, count, past_eof; | |
25baf2da | 144 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); |
ccd979bd | 145 | |
9558156b TM |
146 | trace_ocfs2_get_block((unsigned long long)OCFS2_I(inode)->ip_blkno, |
147 | (unsigned long long)iblock, bh_result, create); | |
ccd979bd MF |
148 | |
149 | if (OCFS2_I(inode)->ip_flags & OCFS2_INODE_SYSTEM_FILE) | |
150 | mlog(ML_NOTICE, "get_block on system inode 0x%p (%lu)\n", | |
151 | inode, inode->i_ino); | |
152 | ||
153 | if (S_ISLNK(inode->i_mode)) { | |
154 | /* this always does I/O for some reason. */ | |
155 | err = ocfs2_symlink_get_block(inode, iblock, bh_result, create); | |
156 | goto bail; | |
157 | } | |
158 | ||
628a24f5 | 159 | err = ocfs2_extent_map_get_blocks(inode, iblock, &p_blkno, &count, |
49cb8d2d | 160 | &ext_flags); |
ccd979bd MF |
161 | if (err) { |
162 | mlog(ML_ERROR, "Error %d from get_blocks(0x%p, %llu, 1, " | |
b0697053 MF |
163 | "%llu, NULL)\n", err, inode, (unsigned long long)iblock, |
164 | (unsigned long long)p_blkno); | |
ccd979bd MF |
165 | goto bail; |
166 | } | |
167 | ||
628a24f5 MF |
168 | if (max_blocks < count) |
169 | count = max_blocks; | |
170 | ||
25baf2da MF |
171 | /* |
172 | * ocfs2 never allocates in this function - the only time we | |
173 | * need to use BH_New is when we're extending i_size on a file | |
174 | * system which doesn't support holes, in which case BH_New | |
ebdec241 | 175 | * allows __block_write_begin() to zero. |
c0420ad2 CL |
176 | * |
177 | * If we see this on a sparse file system, then a truncate has | |
178 | * raced us and removed the cluster. In this case, we clear | |
179 | * the buffers dirty and uptodate bits and let the buffer code | |
180 | * ignore it as a hole. | |
25baf2da | 181 | */ |
c0420ad2 CL |
182 | if (create && p_blkno == 0 && ocfs2_sparse_alloc(osb)) { |
183 | clear_buffer_dirty(bh_result); | |
184 | clear_buffer_uptodate(bh_result); | |
185 | goto bail; | |
186 | } | |
25baf2da | 187 | |
49cb8d2d MF |
188 | /* Treat the unwritten extent as a hole for zeroing purposes. */ |
189 | if (p_blkno && !(ext_flags & OCFS2_EXT_UNWRITTEN)) | |
25baf2da MF |
190 | map_bh(bh_result, inode->i_sb, p_blkno); |
191 | ||
628a24f5 MF |
192 | bh_result->b_size = count << inode->i_blkbits; |
193 | ||
25baf2da MF |
194 | if (!ocfs2_sparse_alloc(osb)) { |
195 | if (p_blkno == 0) { | |
196 | err = -EIO; | |
197 | mlog(ML_ERROR, | |
198 | "iblock = %llu p_blkno = %llu blkno=(%llu)\n", | |
199 | (unsigned long long)iblock, | |
200 | (unsigned long long)p_blkno, | |
201 | (unsigned long long)OCFS2_I(inode)->ip_blkno); | |
202 | mlog(ML_ERROR, "Size %llu, clusters %u\n", (unsigned long long)i_size_read(inode), OCFS2_I(inode)->ip_clusters); | |
203 | dump_stack(); | |
1f4cea37 | 204 | goto bail; |
25baf2da | 205 | } |
25baf2da | 206 | } |
ccd979bd | 207 | |
5693486b | 208 | past_eof = ocfs2_blocks_for_bytes(inode->i_sb, i_size_read(inode)); |
9558156b TM |
209 | |
210 | trace_ocfs2_get_block_end((unsigned long long)OCFS2_I(inode)->ip_blkno, | |
211 | (unsigned long long)past_eof); | |
5693486b JB |
212 | if (create && (iblock >= past_eof)) |
213 | set_buffer_new(bh_result); | |
214 | ||
ccd979bd MF |
215 | bail: |
216 | if (err < 0) | |
217 | err = -EIO; | |
218 | ||
ccd979bd MF |
219 | return err; |
220 | } | |
221 | ||
1afc32b9 MF |
222 | int ocfs2_read_inline_data(struct inode *inode, struct page *page, |
223 | struct buffer_head *di_bh) | |
6798d35a MF |
224 | { |
225 | void *kaddr; | |
d2849fb2 | 226 | loff_t size; |
6798d35a MF |
227 | struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; |
228 | ||
229 | if (!(le16_to_cpu(di->i_dyn_features) & OCFS2_INLINE_DATA_FL)) { | |
7ecef14a | 230 | ocfs2_error(inode->i_sb, "Inode %llu lost inline data flag\n", |
6798d35a MF |
231 | (unsigned long long)OCFS2_I(inode)->ip_blkno); |
232 | return -EROFS; | |
233 | } | |
234 | ||
235 | size = i_size_read(inode); | |
236 | ||
237 | if (size > PAGE_CACHE_SIZE || | |
d9ae49d6 | 238 | size > ocfs2_max_inline_data_with_xattr(inode->i_sb, di)) { |
6798d35a | 239 | ocfs2_error(inode->i_sb, |
7ecef14a | 240 | "Inode %llu has with inline data has bad size: %Lu\n", |
d2849fb2 JK |
241 | (unsigned long long)OCFS2_I(inode)->ip_blkno, |
242 | (unsigned long long)size); | |
6798d35a MF |
243 | return -EROFS; |
244 | } | |
245 | ||
c4bc8dcb | 246 | kaddr = kmap_atomic(page); |
6798d35a MF |
247 | if (size) |
248 | memcpy(kaddr, di->id2.i_data.id_data, size); | |
249 | /* Clear the remaining part of the page */ | |
250 | memset(kaddr + size, 0, PAGE_CACHE_SIZE - size); | |
251 | flush_dcache_page(page); | |
c4bc8dcb | 252 | kunmap_atomic(kaddr); |
6798d35a MF |
253 | |
254 | SetPageUptodate(page); | |
255 | ||
256 | return 0; | |
257 | } | |
258 | ||
259 | static int ocfs2_readpage_inline(struct inode *inode, struct page *page) | |
260 | { | |
261 | int ret; | |
262 | struct buffer_head *di_bh = NULL; | |
6798d35a MF |
263 | |
264 | BUG_ON(!PageLocked(page)); | |
86c838b0 | 265 | BUG_ON(!(OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL)); |
6798d35a | 266 | |
b657c95c | 267 | ret = ocfs2_read_inode_block(inode, &di_bh); |
6798d35a MF |
268 | if (ret) { |
269 | mlog_errno(ret); | |
270 | goto out; | |
271 | } | |
272 | ||
273 | ret = ocfs2_read_inline_data(inode, page, di_bh); | |
274 | out: | |
275 | unlock_page(page); | |
276 | ||
277 | brelse(di_bh); | |
278 | return ret; | |
279 | } | |
280 | ||
ccd979bd MF |
281 | static int ocfs2_readpage(struct file *file, struct page *page) |
282 | { | |
283 | struct inode *inode = page->mapping->host; | |
6798d35a | 284 | struct ocfs2_inode_info *oi = OCFS2_I(inode); |
ccd979bd MF |
285 | loff_t start = (loff_t)page->index << PAGE_CACHE_SHIFT; |
286 | int ret, unlock = 1; | |
287 | ||
9558156b TM |
288 | trace_ocfs2_readpage((unsigned long long)oi->ip_blkno, |
289 | (page ? page->index : 0)); | |
ccd979bd | 290 | |
e63aecb6 | 291 | ret = ocfs2_inode_lock_with_page(inode, NULL, 0, page); |
ccd979bd MF |
292 | if (ret != 0) { |
293 | if (ret == AOP_TRUNCATED_PAGE) | |
294 | unlock = 0; | |
295 | mlog_errno(ret); | |
296 | goto out; | |
297 | } | |
298 | ||
6798d35a | 299 | if (down_read_trylock(&oi->ip_alloc_sem) == 0) { |
c7e25e6e JK |
300 | /* |
301 | * Unlock the page and cycle ip_alloc_sem so that we don't | |
302 | * busyloop waiting for ip_alloc_sem to unlock | |
303 | */ | |
e9dfc0b2 | 304 | ret = AOP_TRUNCATED_PAGE; |
c7e25e6e JK |
305 | unlock_page(page); |
306 | unlock = 0; | |
307 | down_read(&oi->ip_alloc_sem); | |
308 | up_read(&oi->ip_alloc_sem); | |
e63aecb6 | 309 | goto out_inode_unlock; |
e9dfc0b2 | 310 | } |
ccd979bd MF |
311 | |
312 | /* | |
313 | * i_size might have just been updated as we grabed the meta lock. We | |
314 | * might now be discovering a truncate that hit on another node. | |
315 | * block_read_full_page->get_block freaks out if it is asked to read | |
316 | * beyond the end of a file, so we check here. Callers | |
54cb8821 | 317 | * (generic_file_read, vm_ops->fault) are clever enough to check i_size |
ccd979bd MF |
318 | * and notice that the page they just read isn't needed. |
319 | * | |
320 | * XXX sys_readahead() seems to get that wrong? | |
321 | */ | |
322 | if (start >= i_size_read(inode)) { | |
eebd2aa3 | 323 | zero_user(page, 0, PAGE_SIZE); |
ccd979bd MF |
324 | SetPageUptodate(page); |
325 | ret = 0; | |
326 | goto out_alloc; | |
327 | } | |
328 | ||
6798d35a MF |
329 | if (oi->ip_dyn_features & OCFS2_INLINE_DATA_FL) |
330 | ret = ocfs2_readpage_inline(inode, page); | |
331 | else | |
332 | ret = block_read_full_page(page, ocfs2_get_block); | |
ccd979bd MF |
333 | unlock = 0; |
334 | ||
ccd979bd MF |
335 | out_alloc: |
336 | up_read(&OCFS2_I(inode)->ip_alloc_sem); | |
e63aecb6 MF |
337 | out_inode_unlock: |
338 | ocfs2_inode_unlock(inode, 0); | |
ccd979bd MF |
339 | out: |
340 | if (unlock) | |
341 | unlock_page(page); | |
ccd979bd MF |
342 | return ret; |
343 | } | |
344 | ||
628a24f5 MF |
345 | /* |
346 | * This is used only for read-ahead. Failures or difficult to handle | |
347 | * situations are safe to ignore. | |
348 | * | |
349 | * Right now, we don't bother with BH_Boundary - in-inode extent lists | |
350 | * are quite large (243 extents on 4k blocks), so most inodes don't | |
351 | * grow out to a tree. If need be, detecting boundary extents could | |
352 | * trivially be added in a future version of ocfs2_get_block(). | |
353 | */ | |
354 | static int ocfs2_readpages(struct file *filp, struct address_space *mapping, | |
355 | struct list_head *pages, unsigned nr_pages) | |
356 | { | |
357 | int ret, err = -EIO; | |
358 | struct inode *inode = mapping->host; | |
359 | struct ocfs2_inode_info *oi = OCFS2_I(inode); | |
360 | loff_t start; | |
361 | struct page *last; | |
362 | ||
363 | /* | |
364 | * Use the nonblocking flag for the dlm code to avoid page | |
365 | * lock inversion, but don't bother with retrying. | |
366 | */ | |
367 | ret = ocfs2_inode_lock_full(inode, NULL, 0, OCFS2_LOCK_NONBLOCK); | |
368 | if (ret) | |
369 | return err; | |
370 | ||
371 | if (down_read_trylock(&oi->ip_alloc_sem) == 0) { | |
372 | ocfs2_inode_unlock(inode, 0); | |
373 | return err; | |
374 | } | |
375 | ||
376 | /* | |
377 | * Don't bother with inline-data. There isn't anything | |
378 | * to read-ahead in that case anyway... | |
379 | */ | |
380 | if (oi->ip_dyn_features & OCFS2_INLINE_DATA_FL) | |
381 | goto out_unlock; | |
382 | ||
383 | /* | |
384 | * Check whether a remote node truncated this file - we just | |
385 | * drop out in that case as it's not worth handling here. | |
386 | */ | |
387 | last = list_entry(pages->prev, struct page, lru); | |
388 | start = (loff_t)last->index << PAGE_CACHE_SHIFT; | |
389 | if (start >= i_size_read(inode)) | |
390 | goto out_unlock; | |
391 | ||
392 | err = mpage_readpages(mapping, pages, nr_pages, ocfs2_get_block); | |
393 | ||
394 | out_unlock: | |
395 | up_read(&oi->ip_alloc_sem); | |
396 | ocfs2_inode_unlock(inode, 0); | |
397 | ||
398 | return err; | |
399 | } | |
400 | ||
ccd979bd MF |
401 | /* Note: Because we don't support holes, our allocation has |
402 | * already happened (allocation writes zeros to the file data) | |
403 | * so we don't have to worry about ordered writes in | |
404 | * ocfs2_writepage. | |
405 | * | |
406 | * ->writepage is called during the process of invalidating the page cache | |
407 | * during blocked lock processing. It can't block on any cluster locks | |
408 | * to during block mapping. It's relying on the fact that the block | |
409 | * mapping can't have disappeared under the dirty pages that it is | |
410 | * being asked to write back. | |
411 | */ | |
412 | static int ocfs2_writepage(struct page *page, struct writeback_control *wbc) | |
413 | { | |
9558156b TM |
414 | trace_ocfs2_writepage( |
415 | (unsigned long long)OCFS2_I(page->mapping->host)->ip_blkno, | |
416 | page->index); | |
ccd979bd | 417 | |
9558156b | 418 | return block_write_full_page(page, ocfs2_get_block, wbc); |
ccd979bd MF |
419 | } |
420 | ||
ccd979bd MF |
421 | /* Taken from ext3. We don't necessarily need the full blown |
422 | * functionality yet, but IMHO it's better to cut and paste the whole | |
423 | * thing so we can avoid introducing our own bugs (and easily pick up | |
424 | * their fixes when they happen) --Mark */ | |
60b11392 MF |
425 | int walk_page_buffers( handle_t *handle, |
426 | struct buffer_head *head, | |
427 | unsigned from, | |
428 | unsigned to, | |
429 | int *partial, | |
430 | int (*fn)( handle_t *handle, | |
431 | struct buffer_head *bh)) | |
ccd979bd MF |
432 | { |
433 | struct buffer_head *bh; | |
434 | unsigned block_start, block_end; | |
435 | unsigned blocksize = head->b_size; | |
436 | int err, ret = 0; | |
437 | struct buffer_head *next; | |
438 | ||
439 | for ( bh = head, block_start = 0; | |
440 | ret == 0 && (bh != head || !block_start); | |
441 | block_start = block_end, bh = next) | |
442 | { | |
443 | next = bh->b_this_page; | |
444 | block_end = block_start + blocksize; | |
445 | if (block_end <= from || block_start >= to) { | |
446 | if (partial && !buffer_uptodate(bh)) | |
447 | *partial = 1; | |
448 | continue; | |
449 | } | |
450 | err = (*fn)(handle, bh); | |
451 | if (!ret) | |
452 | ret = err; | |
453 | } | |
454 | return ret; | |
455 | } | |
456 | ||
ccd979bd MF |
457 | static sector_t ocfs2_bmap(struct address_space *mapping, sector_t block) |
458 | { | |
459 | sector_t status; | |
460 | u64 p_blkno = 0; | |
461 | int err = 0; | |
462 | struct inode *inode = mapping->host; | |
463 | ||
9558156b TM |
464 | trace_ocfs2_bmap((unsigned long long)OCFS2_I(inode)->ip_blkno, |
465 | (unsigned long long)block); | |
ccd979bd MF |
466 | |
467 | /* We don't need to lock journal system files, since they aren't | |
468 | * accessed concurrently from multiple nodes. | |
469 | */ | |
470 | if (!INODE_JOURNAL(inode)) { | |
e63aecb6 | 471 | err = ocfs2_inode_lock(inode, NULL, 0); |
ccd979bd MF |
472 | if (err) { |
473 | if (err != -ENOENT) | |
474 | mlog_errno(err); | |
475 | goto bail; | |
476 | } | |
477 | down_read(&OCFS2_I(inode)->ip_alloc_sem); | |
478 | } | |
479 | ||
6798d35a MF |
480 | if (!(OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL)) |
481 | err = ocfs2_extent_map_get_blocks(inode, block, &p_blkno, NULL, | |
482 | NULL); | |
ccd979bd MF |
483 | |
484 | if (!INODE_JOURNAL(inode)) { | |
485 | up_read(&OCFS2_I(inode)->ip_alloc_sem); | |
e63aecb6 | 486 | ocfs2_inode_unlock(inode, 0); |
ccd979bd MF |
487 | } |
488 | ||
489 | if (err) { | |
490 | mlog(ML_ERROR, "get_blocks() failed, block = %llu\n", | |
491 | (unsigned long long)block); | |
492 | mlog_errno(err); | |
493 | goto bail; | |
494 | } | |
495 | ||
ccd979bd MF |
496 | bail: |
497 | status = err ? 0 : p_blkno; | |
498 | ||
ccd979bd MF |
499 | return status; |
500 | } | |
501 | ||
502 | /* | |
503 | * TODO: Make this into a generic get_blocks function. | |
504 | * | |
505 | * From do_direct_io in direct-io.c: | |
506 | * "So what we do is to permit the ->get_blocks function to populate | |
507 | * bh.b_size with the size of IO which is permitted at this offset and | |
508 | * this i_blkbits." | |
509 | * | |
510 | * This function is called directly from get_more_blocks in direct-io.c. | |
511 | * | |
512 | * called like this: dio->get_blocks(dio->inode, fs_startblk, | |
513 | * fs_count, map_bh, dio->rw == WRITE); | |
514 | */ | |
515 | static int ocfs2_direct_IO_get_blocks(struct inode *inode, sector_t iblock, | |
ccd979bd MF |
516 | struct buffer_head *bh_result, int create) |
517 | { | |
518 | int ret; | |
49255dce JQ |
519 | u32 cpos = 0; |
520 | int alloc_locked = 0; | |
4f902c37 | 521 | u64 p_blkno, inode_blocks, contig_blocks; |
49cb8d2d | 522 | unsigned int ext_flags; |
184d7d20 | 523 | unsigned char blocksize_bits = inode->i_sb->s_blocksize_bits; |
1d8fa7a2 | 524 | unsigned long max_blocks = bh_result->b_size >> inode->i_blkbits; |
49255dce | 525 | unsigned long len = bh_result->b_size; |
ae1f0814 | 526 | unsigned int clusters_to_alloc = 0, contig_clusters = 0; |
49255dce JQ |
527 | |
528 | cpos = ocfs2_blocks_to_clusters(inode->i_sb, iblock); | |
ccd979bd | 529 | |
ccd979bd MF |
530 | /* This function won't even be called if the request isn't all |
531 | * nicely aligned and of the right size, so there's no need | |
532 | * for us to check any of that. */ | |
533 | ||
25baf2da | 534 | inode_blocks = ocfs2_blocks_for_bytes(inode->i_sb, i_size_read(inode)); |
564f8a32 | 535 | |
6ab855a9 WW |
536 | down_read(&OCFS2_I(inode)->ip_alloc_sem); |
537 | ||
ccd979bd MF |
538 | /* This figures out the size of the next contiguous block, and |
539 | * our logical offset */ | |
363041a5 | 540 | ret = ocfs2_extent_map_get_blocks(inode, iblock, &p_blkno, |
49cb8d2d | 541 | &contig_blocks, &ext_flags); |
6ab855a9 WW |
542 | up_read(&OCFS2_I(inode)->ip_alloc_sem); |
543 | ||
ccd979bd MF |
544 | if (ret) { |
545 | mlog(ML_ERROR, "get_blocks() failed iblock=%llu\n", | |
546 | (unsigned long long)iblock); | |
547 | ret = -EIO; | |
548 | goto bail; | |
549 | } | |
550 | ||
cbaee472 TM |
551 | /* We should already CoW the refcounted extent in case of create. */ |
552 | BUG_ON(create && (ext_flags & OCFS2_EXT_REFCOUNTED)); | |
553 | ||
49255dce JQ |
554 | /* allocate blocks if no p_blkno is found, and create == 1 */ |
555 | if (!p_blkno && create) { | |
556 | ret = ocfs2_inode_lock(inode, NULL, 1); | |
557 | if (ret < 0) { | |
558 | mlog_errno(ret); | |
559 | goto bail; | |
560 | } | |
561 | ||
562 | alloc_locked = 1; | |
563 | ||
6ab855a9 WW |
564 | down_write(&OCFS2_I(inode)->ip_alloc_sem); |
565 | ||
49255dce JQ |
566 | /* fill hole, allocate blocks can't be larger than the size |
567 | * of the hole */ | |
568 | clusters_to_alloc = ocfs2_clusters_for_bytes(inode->i_sb, len); | |
ae1f0814 JQ |
569 | contig_clusters = ocfs2_clusters_for_blocks(inode->i_sb, |
570 | contig_blocks); | |
571 | if (clusters_to_alloc > contig_clusters) | |
572 | clusters_to_alloc = contig_clusters; | |
49255dce JQ |
573 | |
574 | /* allocate extent and insert them into the extent tree */ | |
575 | ret = ocfs2_extend_allocation(inode, cpos, | |
576 | clusters_to_alloc, 0); | |
577 | if (ret < 0) { | |
6ab855a9 | 578 | up_write(&OCFS2_I(inode)->ip_alloc_sem); |
49255dce JQ |
579 | mlog_errno(ret); |
580 | goto bail; | |
581 | } | |
582 | ||
583 | ret = ocfs2_extent_map_get_blocks(inode, iblock, &p_blkno, | |
584 | &contig_blocks, &ext_flags); | |
585 | if (ret < 0) { | |
6ab855a9 | 586 | up_write(&OCFS2_I(inode)->ip_alloc_sem); |
49255dce JQ |
587 | mlog(ML_ERROR, "get_blocks() failed iblock=%llu\n", |
588 | (unsigned long long)iblock); | |
589 | ret = -EIO; | |
590 | goto bail; | |
591 | } | |
6ab855a9 | 592 | up_write(&OCFS2_I(inode)->ip_alloc_sem); |
49255dce JQ |
593 | } |
594 | ||
25baf2da MF |
595 | /* |
596 | * get_more_blocks() expects us to describe a hole by clearing | |
597 | * the mapped bit on bh_result(). | |
49cb8d2d MF |
598 | * |
599 | * Consider an unwritten extent as a hole. | |
25baf2da | 600 | */ |
49cb8d2d | 601 | if (p_blkno && !(ext_flags & OCFS2_EXT_UNWRITTEN)) |
25baf2da | 602 | map_bh(bh_result, inode->i_sb, p_blkno); |
5fe878ae | 603 | else |
25baf2da | 604 | clear_buffer_mapped(bh_result); |
ccd979bd MF |
605 | |
606 | /* make sure we don't map more than max_blocks blocks here as | |
607 | that's all the kernel will handle at this point. */ | |
608 | if (max_blocks < contig_blocks) | |
609 | contig_blocks = max_blocks; | |
610 | bh_result->b_size = contig_blocks << blocksize_bits; | |
611 | bail: | |
49255dce JQ |
612 | if (alloc_locked) |
613 | ocfs2_inode_unlock(inode, 1); | |
ccd979bd MF |
614 | return ret; |
615 | } | |
616 | ||
2bd63216 | 617 | /* |
ccd979bd | 618 | * ocfs2_dio_end_io is called by the dio core when a dio is finished. We're |
bd5fe6c5 CH |
619 | * particularly interested in the aio/dio case. We use the rw_lock DLM lock |
620 | * to protect io on one node from truncation on another. | |
ccd979bd MF |
621 | */ |
622 | static void ocfs2_dio_end_io(struct kiocb *iocb, | |
623 | loff_t offset, | |
624 | ssize_t bytes, | |
7b7a8665 | 625 | void *private) |
ccd979bd | 626 | { |
496ad9aa | 627 | struct inode *inode = file_inode(iocb->ki_filp); |
7cdfc3a1 | 628 | int level; |
ccd979bd MF |
629 | |
630 | /* this io's submitter should not have unlocked this before we could */ | |
631 | BUG_ON(!ocfs2_iocb_is_rw_locked(iocb)); | |
7cdfc3a1 | 632 | |
a11f7e63 MF |
633 | if (ocfs2_iocb_is_unaligned_aio(iocb)) { |
634 | ocfs2_iocb_clear_unaligned_aio(iocb); | |
635 | ||
c18ceab0 | 636 | mutex_unlock(&OCFS2_I(inode)->ip_unaligned_aio); |
a11f7e63 MF |
637 | } |
638 | ||
512f62ac JQ |
639 | /* Let rw unlock to be done later to protect append direct io write */ |
640 | if (offset + bytes <= i_size_read(inode)) { | |
641 | ocfs2_iocb_clear_rw_locked(iocb); | |
7cdfc3a1 | 642 | |
512f62ac JQ |
643 | level = ocfs2_iocb_rw_locked_level(iocb); |
644 | ocfs2_rw_unlock(inode, level); | |
645 | } | |
ccd979bd MF |
646 | } |
647 | ||
03f981cf JB |
648 | static int ocfs2_releasepage(struct page *page, gfp_t wait) |
649 | { | |
03f981cf JB |
650 | if (!page_has_buffers(page)) |
651 | return 0; | |
41ecc345 | 652 | return try_to_free_buffers(page); |
03f981cf JB |
653 | } |
654 | ||
24c40b32 JQ |
655 | static int ocfs2_is_overwrite(struct ocfs2_super *osb, |
656 | struct inode *inode, loff_t offset) | |
657 | { | |
658 | int ret = 0; | |
659 | u32 v_cpos = 0; | |
660 | u32 p_cpos = 0; | |
661 | unsigned int num_clusters = 0; | |
662 | unsigned int ext_flags = 0; | |
663 | ||
664 | v_cpos = ocfs2_bytes_to_clusters(osb->sb, offset); | |
665 | ret = ocfs2_get_clusters(inode, v_cpos, &p_cpos, | |
666 | &num_clusters, &ext_flags); | |
667 | if (ret < 0) { | |
668 | mlog_errno(ret); | |
669 | return ret; | |
670 | } | |
671 | ||
672 | if (p_cpos && !(ext_flags & OCFS2_EXT_UNWRITTEN)) | |
673 | return 1; | |
674 | ||
675 | return 0; | |
676 | } | |
677 | ||
14a5275d JQ |
678 | static int ocfs2_direct_IO_zero_extend(struct ocfs2_super *osb, |
679 | struct inode *inode, loff_t offset, | |
680 | u64 zero_len, int cluster_align) | |
681 | { | |
682 | u32 p_cpos = 0; | |
683 | u32 v_cpos = ocfs2_bytes_to_clusters(osb->sb, i_size_read(inode)); | |
684 | unsigned int num_clusters = 0; | |
685 | unsigned int ext_flags = 0; | |
686 | int ret = 0; | |
687 | ||
688 | if (offset <= i_size_read(inode) || cluster_align) | |
689 | return 0; | |
690 | ||
691 | ret = ocfs2_get_clusters(inode, v_cpos, &p_cpos, &num_clusters, | |
692 | &ext_flags); | |
693 | if (ret < 0) { | |
694 | mlog_errno(ret); | |
695 | return ret; | |
696 | } | |
697 | ||
698 | if (p_cpos && !(ext_flags & OCFS2_EXT_UNWRITTEN)) { | |
699 | u64 s = i_size_read(inode); | |
32e5a2a2 | 700 | sector_t sector = ((u64)p_cpos << (osb->s_clustersize_bits - 9)) + |
14a5275d JQ |
701 | (do_div(s, osb->s_clustersize) >> 9); |
702 | ||
703 | ret = blkdev_issue_zeroout(osb->sb->s_bdev, sector, | |
704 | zero_len >> 9, GFP_NOFS, false); | |
705 | if (ret < 0) | |
706 | mlog_errno(ret); | |
707 | } | |
708 | ||
709 | return ret; | |
710 | } | |
711 | ||
712 | static int ocfs2_direct_IO_extend_no_holes(struct ocfs2_super *osb, | |
713 | struct inode *inode, loff_t offset) | |
714 | { | |
715 | u64 zero_start, zero_len, total_zero_len; | |
716 | u32 p_cpos = 0, clusters_to_add; | |
717 | u32 v_cpos = ocfs2_bytes_to_clusters(osb->sb, i_size_read(inode)); | |
718 | unsigned int num_clusters = 0; | |
719 | unsigned int ext_flags = 0; | |
720 | u32 size_div, offset_div; | |
721 | int ret = 0; | |
722 | ||
723 | { | |
724 | u64 o = offset; | |
725 | u64 s = i_size_read(inode); | |
726 | ||
727 | offset_div = do_div(o, osb->s_clustersize); | |
728 | size_div = do_div(s, osb->s_clustersize); | |
729 | } | |
730 | ||
731 | if (offset <= i_size_read(inode)) | |
732 | return 0; | |
733 | ||
734 | clusters_to_add = ocfs2_bytes_to_clusters(inode->i_sb, offset) - | |
735 | ocfs2_bytes_to_clusters(inode->i_sb, i_size_read(inode)); | |
736 | total_zero_len = offset - i_size_read(inode); | |
737 | if (clusters_to_add) | |
738 | total_zero_len -= offset_div; | |
739 | ||
740 | /* Allocate clusters to fill out holes, and this is only needed | |
741 | * when we add more than one clusters. Otherwise the cluster will | |
742 | * be allocated during direct IO */ | |
743 | if (clusters_to_add > 1) { | |
744 | ret = ocfs2_extend_allocation(inode, | |
745 | OCFS2_I(inode)->ip_clusters, | |
746 | clusters_to_add - 1, 0); | |
747 | if (ret) { | |
748 | mlog_errno(ret); | |
749 | goto out; | |
750 | } | |
751 | } | |
752 | ||
753 | while (total_zero_len) { | |
754 | ret = ocfs2_get_clusters(inode, v_cpos, &p_cpos, &num_clusters, | |
755 | &ext_flags); | |
756 | if (ret < 0) { | |
757 | mlog_errno(ret); | |
758 | goto out; | |
759 | } | |
760 | ||
761 | zero_start = ocfs2_clusters_to_bytes(osb->sb, p_cpos) + | |
762 | size_div; | |
763 | zero_len = ocfs2_clusters_to_bytes(osb->sb, num_clusters) - | |
764 | size_div; | |
765 | zero_len = min(total_zero_len, zero_len); | |
766 | ||
767 | if (p_cpos && !(ext_flags & OCFS2_EXT_UNWRITTEN)) { | |
768 | ret = blkdev_issue_zeroout(osb->sb->s_bdev, | |
769 | zero_start >> 9, zero_len >> 9, | |
770 | GFP_NOFS, false); | |
771 | if (ret < 0) { | |
772 | mlog_errno(ret); | |
773 | goto out; | |
774 | } | |
775 | } | |
776 | ||
777 | total_zero_len -= zero_len; | |
778 | v_cpos += ocfs2_bytes_to_clusters(osb->sb, zero_len + size_div); | |
779 | ||
780 | /* Only at first iteration can be cluster not aligned. | |
781 | * So set size_div to 0 for the rest */ | |
782 | size_div = 0; | |
783 | } | |
784 | ||
785 | out: | |
786 | return ret; | |
787 | } | |
788 | ||
24c40b32 JQ |
789 | static ssize_t ocfs2_direct_IO_write(struct kiocb *iocb, |
790 | struct iov_iter *iter, | |
791 | loff_t offset) | |
792 | { | |
793 | ssize_t ret = 0; | |
794 | ssize_t written = 0; | |
795 | bool orphaned = false; | |
796 | int is_overwrite = 0; | |
797 | struct file *file = iocb->ki_filp; | |
798 | struct inode *inode = file_inode(file)->i_mapping->host; | |
799 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); | |
800 | struct buffer_head *di_bh = NULL; | |
801 | size_t count = iter->count; | |
802 | journal_t *journal = osb->journal->j_journal; | |
14a5275d JQ |
803 | u64 zero_len_head, zero_len_tail; |
804 | int cluster_align_head, cluster_align_tail; | |
24c40b32 JQ |
805 | loff_t final_size = offset + count; |
806 | int append_write = offset >= i_size_read(inode) ? 1 : 0; | |
807 | unsigned int num_clusters = 0; | |
808 | unsigned int ext_flags = 0; | |
809 | ||
810 | { | |
811 | u64 o = offset; | |
14a5275d JQ |
812 | u64 s = i_size_read(inode); |
813 | ||
814 | zero_len_head = do_div(o, 1 << osb->s_clustersize_bits); | |
815 | cluster_align_head = !zero_len_head; | |
24c40b32 | 816 | |
14a5275d JQ |
817 | zero_len_tail = osb->s_clustersize - |
818 | do_div(s, osb->s_clustersize); | |
819 | if ((offset - i_size_read(inode)) < zero_len_tail) | |
820 | zero_len_tail = offset - i_size_read(inode); | |
821 | cluster_align_tail = !zero_len_tail; | |
24c40b32 JQ |
822 | } |
823 | ||
824 | /* | |
825 | * when final_size > inode->i_size, inode->i_size will be | |
826 | * updated after direct write, so add the inode to orphan | |
827 | * dir first. | |
828 | */ | |
829 | if (final_size > i_size_read(inode)) { | |
830 | ret = ocfs2_add_inode_to_orphan(osb, inode); | |
831 | if (ret < 0) { | |
832 | mlog_errno(ret); | |
833 | goto out; | |
834 | } | |
835 | orphaned = true; | |
836 | } | |
837 | ||
838 | if (append_write) { | |
7e9b1955 | 839 | ret = ocfs2_inode_lock(inode, NULL, 1); |
24c40b32 JQ |
840 | if (ret < 0) { |
841 | mlog_errno(ret); | |
842 | goto clean_orphan; | |
843 | } | |
844 | ||
14a5275d JQ |
845 | /* zeroing out the previously allocated cluster tail |
846 | * that but not zeroed */ | |
6ab855a9 WW |
847 | if (ocfs2_sparse_alloc(OCFS2_SB(inode->i_sb))) { |
848 | down_read(&OCFS2_I(inode)->ip_alloc_sem); | |
14a5275d JQ |
849 | ret = ocfs2_direct_IO_zero_extend(osb, inode, offset, |
850 | zero_len_tail, cluster_align_tail); | |
6ab855a9 WW |
851 | up_read(&OCFS2_I(inode)->ip_alloc_sem); |
852 | } else { | |
853 | down_write(&OCFS2_I(inode)->ip_alloc_sem); | |
14a5275d | 854 | ret = ocfs2_direct_IO_extend_no_holes(osb, inode, |
24c40b32 | 855 | offset); |
6ab855a9 WW |
856 | up_write(&OCFS2_I(inode)->ip_alloc_sem); |
857 | } | |
24c40b32 JQ |
858 | if (ret < 0) { |
859 | mlog_errno(ret); | |
860 | ocfs2_inode_unlock(inode, 1); | |
24c40b32 JQ |
861 | goto clean_orphan; |
862 | } | |
863 | ||
864 | is_overwrite = ocfs2_is_overwrite(osb, inode, offset); | |
865 | if (is_overwrite < 0) { | |
866 | mlog_errno(is_overwrite); | |
867 | ocfs2_inode_unlock(inode, 1); | |
24c40b32 JQ |
868 | goto clean_orphan; |
869 | } | |
870 | ||
871 | ocfs2_inode_unlock(inode, 1); | |
24c40b32 JQ |
872 | } |
873 | ||
17f8c842 OS |
874 | written = __blockdev_direct_IO(iocb, inode, inode->i_sb->s_bdev, iter, |
875 | offset, ocfs2_direct_IO_get_blocks, | |
876 | ocfs2_dio_end_io, NULL, 0); | |
faaebf18 JQ |
877 | /* overwrite aio may return -EIOCBQUEUED, and it is not an error */ |
878 | if ((written < 0) && (written != -EIOCBQUEUED)) { | |
24c40b32 JQ |
879 | loff_t i_size = i_size_read(inode); |
880 | ||
881 | if (offset + count > i_size) { | |
882 | ret = ocfs2_inode_lock(inode, &di_bh, 1); | |
883 | if (ret < 0) { | |
884 | mlog_errno(ret); | |
885 | goto clean_orphan; | |
886 | } | |
887 | ||
888 | if (i_size == i_size_read(inode)) { | |
889 | ret = ocfs2_truncate_file(inode, di_bh, | |
890 | i_size); | |
891 | if (ret < 0) { | |
892 | if (ret != -ENOSPC) | |
893 | mlog_errno(ret); | |
894 | ||
895 | ocfs2_inode_unlock(inode, 1); | |
896 | brelse(di_bh); | |
faaebf18 | 897 | di_bh = NULL; |
24c40b32 JQ |
898 | goto clean_orphan; |
899 | } | |
900 | } | |
901 | ||
902 | ocfs2_inode_unlock(inode, 1); | |
903 | brelse(di_bh); | |
faaebf18 | 904 | di_bh = NULL; |
24c40b32 JQ |
905 | |
906 | ret = jbd2_journal_force_commit(journal); | |
907 | if (ret < 0) | |
908 | mlog_errno(ret); | |
909 | } | |
bdd86215 | 910 | } else if (written > 0 && append_write && !is_overwrite && |
14a5275d JQ |
911 | !cluster_align_head) { |
912 | /* zeroing out the allocated cluster head */ | |
24c40b32 JQ |
913 | u32 p_cpos = 0; |
914 | u32 v_cpos = ocfs2_bytes_to_clusters(osb->sb, offset); | |
915 | ||
37a8d89a JQ |
916 | ret = ocfs2_inode_lock(inode, NULL, 0); |
917 | if (ret < 0) { | |
918 | mlog_errno(ret); | |
919 | goto clean_orphan; | |
920 | } | |
921 | ||
24c40b32 JQ |
922 | ret = ocfs2_get_clusters(inode, v_cpos, &p_cpos, |
923 | &num_clusters, &ext_flags); | |
924 | if (ret < 0) { | |
925 | mlog_errno(ret); | |
37a8d89a | 926 | ocfs2_inode_unlock(inode, 0); |
24c40b32 JQ |
927 | goto clean_orphan; |
928 | } | |
929 | ||
930 | BUG_ON(!p_cpos || (ext_flags & OCFS2_EXT_UNWRITTEN)); | |
931 | ||
932 | ret = blkdev_issue_zeroout(osb->sb->s_bdev, | |
32e5a2a2 | 933 | (u64)p_cpos << (osb->s_clustersize_bits - 9), |
14a5275d | 934 | zero_len_head >> 9, GFP_NOFS, false); |
24c40b32 JQ |
935 | if (ret < 0) |
936 | mlog_errno(ret); | |
37a8d89a JQ |
937 | |
938 | ocfs2_inode_unlock(inode, 0); | |
24c40b32 JQ |
939 | } |
940 | ||
941 | clean_orphan: | |
942 | if (orphaned) { | |
943 | int tmp_ret; | |
944 | int update_isize = written > 0 ? 1 : 0; | |
945 | loff_t end = update_isize ? offset + written : 0; | |
946 | ||
cf1776a9 JQ |
947 | tmp_ret = ocfs2_inode_lock(inode, &di_bh, 1); |
948 | if (tmp_ret < 0) { | |
949 | ret = tmp_ret; | |
950 | mlog_errno(ret); | |
951 | goto out; | |
952 | } | |
953 | ||
954 | tmp_ret = ocfs2_del_inode_from_orphan(osb, inode, di_bh, | |
24c40b32 JQ |
955 | update_isize, end); |
956 | if (tmp_ret < 0) { | |
957 | ret = tmp_ret; | |
cf1776a9 | 958 | mlog_errno(ret); |
faaebf18 | 959 | brelse(di_bh); |
24c40b32 JQ |
960 | goto out; |
961 | } | |
962 | ||
cf1776a9 | 963 | ocfs2_inode_unlock(inode, 1); |
faaebf18 | 964 | brelse(di_bh); |
cf1776a9 | 965 | |
24c40b32 JQ |
966 | tmp_ret = jbd2_journal_force_commit(journal); |
967 | if (tmp_ret < 0) { | |
968 | ret = tmp_ret; | |
969 | mlog_errno(tmp_ret); | |
970 | } | |
971 | } | |
972 | ||
973 | out: | |
974 | if (ret >= 0) | |
975 | ret = written; | |
976 | return ret; | |
977 | } | |
978 | ||
22c6186e | 979 | static ssize_t ocfs2_direct_IO(struct kiocb *iocb, struct iov_iter *iter, |
d8d3d94b | 980 | loff_t offset) |
ccd979bd MF |
981 | { |
982 | struct file *file = iocb->ki_filp; | |
496ad9aa | 983 | struct inode *inode = file_inode(file)->i_mapping->host; |
24c40b32 JQ |
984 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); |
985 | int full_coherency = !(osb->s_mount_opt & | |
986 | OCFS2_MOUNT_COHERENCY_BUFFERED); | |
53013cba | 987 | |
6798d35a MF |
988 | /* |
989 | * Fallback to buffered I/O if we see an inode without | |
990 | * extents. | |
991 | */ | |
992 | if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) | |
993 | return 0; | |
994 | ||
24c40b32 JQ |
995 | /* Fallback to buffered I/O if we are appending and |
996 | * concurrent O_DIRECT writes are allowed. | |
997 | */ | |
998 | if (i_size_read(inode) <= offset && !full_coherency) | |
b80474b4 TM |
999 | return 0; |
1000 | ||
6f673763 | 1001 | if (iov_iter_rw(iter) == READ) |
17f8c842 OS |
1002 | return __blockdev_direct_IO(iocb, inode, inode->i_sb->s_bdev, |
1003 | iter, offset, | |
1004 | ocfs2_direct_IO_get_blocks, | |
1005 | ocfs2_dio_end_io, NULL, 0); | |
24c40b32 JQ |
1006 | else |
1007 | return ocfs2_direct_IO_write(iocb, iter, offset); | |
ccd979bd MF |
1008 | } |
1009 | ||
9517bac6 MF |
1010 | static void ocfs2_figure_cluster_boundaries(struct ocfs2_super *osb, |
1011 | u32 cpos, | |
1012 | unsigned int *start, | |
1013 | unsigned int *end) | |
1014 | { | |
1015 | unsigned int cluster_start = 0, cluster_end = PAGE_CACHE_SIZE; | |
1016 | ||
1017 | if (unlikely(PAGE_CACHE_SHIFT > osb->s_clustersize_bits)) { | |
1018 | unsigned int cpp; | |
1019 | ||
1020 | cpp = 1 << (PAGE_CACHE_SHIFT - osb->s_clustersize_bits); | |
1021 | ||
1022 | cluster_start = cpos % cpp; | |
1023 | cluster_start = cluster_start << osb->s_clustersize_bits; | |
1024 | ||
1025 | cluster_end = cluster_start + osb->s_clustersize; | |
1026 | } | |
1027 | ||
1028 | BUG_ON(cluster_start > PAGE_SIZE); | |
1029 | BUG_ON(cluster_end > PAGE_SIZE); | |
1030 | ||
1031 | if (start) | |
1032 | *start = cluster_start; | |
1033 | if (end) | |
1034 | *end = cluster_end; | |
1035 | } | |
1036 | ||
1037 | /* | |
1038 | * 'from' and 'to' are the region in the page to avoid zeroing. | |
1039 | * | |
1040 | * If pagesize > clustersize, this function will avoid zeroing outside | |
1041 | * of the cluster boundary. | |
1042 | * | |
1043 | * from == to == 0 is code for "zero the entire cluster region" | |
1044 | */ | |
1045 | static void ocfs2_clear_page_regions(struct page *page, | |
1046 | struct ocfs2_super *osb, u32 cpos, | |
1047 | unsigned from, unsigned to) | |
1048 | { | |
1049 | void *kaddr; | |
1050 | unsigned int cluster_start, cluster_end; | |
1051 | ||
1052 | ocfs2_figure_cluster_boundaries(osb, cpos, &cluster_start, &cluster_end); | |
1053 | ||
c4bc8dcb | 1054 | kaddr = kmap_atomic(page); |
9517bac6 MF |
1055 | |
1056 | if (from || to) { | |
1057 | if (from > cluster_start) | |
1058 | memset(kaddr + cluster_start, 0, from - cluster_start); | |
1059 | if (to < cluster_end) | |
1060 | memset(kaddr + to, 0, cluster_end - to); | |
1061 | } else { | |
1062 | memset(kaddr + cluster_start, 0, cluster_end - cluster_start); | |
1063 | } | |
1064 | ||
c4bc8dcb | 1065 | kunmap_atomic(kaddr); |
9517bac6 MF |
1066 | } |
1067 | ||
4e9563fd MF |
1068 | /* |
1069 | * Nonsparse file systems fully allocate before we get to the write | |
1070 | * code. This prevents ocfs2_write() from tagging the write as an | |
1071 | * allocating one, which means ocfs2_map_page_blocks() might try to | |
1072 | * read-in the blocks at the tail of our file. Avoid reading them by | |
1073 | * testing i_size against each block offset. | |
1074 | */ | |
1075 | static int ocfs2_should_read_blk(struct inode *inode, struct page *page, | |
1076 | unsigned int block_start) | |
1077 | { | |
1078 | u64 offset = page_offset(page) + block_start; | |
1079 | ||
1080 | if (ocfs2_sparse_alloc(OCFS2_SB(inode->i_sb))) | |
1081 | return 1; | |
1082 | ||
1083 | if (i_size_read(inode) > offset) | |
1084 | return 1; | |
1085 | ||
1086 | return 0; | |
1087 | } | |
1088 | ||
9517bac6 | 1089 | /* |
ebdec241 | 1090 | * Some of this taken from __block_write_begin(). We already have our |
9517bac6 MF |
1091 | * mapping by now though, and the entire write will be allocating or |
1092 | * it won't, so not much need to use BH_New. | |
1093 | * | |
1094 | * This will also skip zeroing, which is handled externally. | |
1095 | */ | |
60b11392 MF |
1096 | int ocfs2_map_page_blocks(struct page *page, u64 *p_blkno, |
1097 | struct inode *inode, unsigned int from, | |
1098 | unsigned int to, int new) | |
9517bac6 MF |
1099 | { |
1100 | int ret = 0; | |
1101 | struct buffer_head *head, *bh, *wait[2], **wait_bh = wait; | |
1102 | unsigned int block_end, block_start; | |
1103 | unsigned int bsize = 1 << inode->i_blkbits; | |
1104 | ||
1105 | if (!page_has_buffers(page)) | |
1106 | create_empty_buffers(page, bsize, 0); | |
1107 | ||
1108 | head = page_buffers(page); | |
1109 | for (bh = head, block_start = 0; bh != head || !block_start; | |
1110 | bh = bh->b_this_page, block_start += bsize) { | |
1111 | block_end = block_start + bsize; | |
1112 | ||
3a307ffc MF |
1113 | clear_buffer_new(bh); |
1114 | ||
9517bac6 MF |
1115 | /* |
1116 | * Ignore blocks outside of our i/o range - | |
1117 | * they may belong to unallocated clusters. | |
1118 | */ | |
60b11392 | 1119 | if (block_start >= to || block_end <= from) { |
9517bac6 MF |
1120 | if (PageUptodate(page)) |
1121 | set_buffer_uptodate(bh); | |
1122 | continue; | |
1123 | } | |
1124 | ||
1125 | /* | |
1126 | * For an allocating write with cluster size >= page | |
1127 | * size, we always write the entire page. | |
1128 | */ | |
3a307ffc MF |
1129 | if (new) |
1130 | set_buffer_new(bh); | |
9517bac6 MF |
1131 | |
1132 | if (!buffer_mapped(bh)) { | |
1133 | map_bh(bh, inode->i_sb, *p_blkno); | |
1134 | unmap_underlying_metadata(bh->b_bdev, bh->b_blocknr); | |
1135 | } | |
1136 | ||
1137 | if (PageUptodate(page)) { | |
1138 | if (!buffer_uptodate(bh)) | |
1139 | set_buffer_uptodate(bh); | |
1140 | } else if (!buffer_uptodate(bh) && !buffer_delay(bh) && | |
bce99768 | 1141 | !buffer_new(bh) && |
4e9563fd | 1142 | ocfs2_should_read_blk(inode, page, block_start) && |
bce99768 | 1143 | (block_start < from || block_end > to)) { |
9517bac6 MF |
1144 | ll_rw_block(READ, 1, &bh); |
1145 | *wait_bh++=bh; | |
1146 | } | |
1147 | ||
1148 | *p_blkno = *p_blkno + 1; | |
1149 | } | |
1150 | ||
1151 | /* | |
1152 | * If we issued read requests - let them complete. | |
1153 | */ | |
1154 | while(wait_bh > wait) { | |
1155 | wait_on_buffer(*--wait_bh); | |
1156 | if (!buffer_uptodate(*wait_bh)) | |
1157 | ret = -EIO; | |
1158 | } | |
1159 | ||
1160 | if (ret == 0 || !new) | |
1161 | return ret; | |
1162 | ||
1163 | /* | |
1164 | * If we get -EIO above, zero out any newly allocated blocks | |
1165 | * to avoid exposing stale data. | |
1166 | */ | |
1167 | bh = head; | |
1168 | block_start = 0; | |
1169 | do { | |
9517bac6 MF |
1170 | block_end = block_start + bsize; |
1171 | if (block_end <= from) | |
1172 | goto next_bh; | |
1173 | if (block_start >= to) | |
1174 | break; | |
1175 | ||
eebd2aa3 | 1176 | zero_user(page, block_start, bh->b_size); |
9517bac6 MF |
1177 | set_buffer_uptodate(bh); |
1178 | mark_buffer_dirty(bh); | |
1179 | ||
1180 | next_bh: | |
1181 | block_start = block_end; | |
1182 | bh = bh->b_this_page; | |
1183 | } while (bh != head); | |
1184 | ||
1185 | return ret; | |
1186 | } | |
1187 | ||
3a307ffc MF |
1188 | #if (PAGE_CACHE_SIZE >= OCFS2_MAX_CLUSTERSIZE) |
1189 | #define OCFS2_MAX_CTXT_PAGES 1 | |
1190 | #else | |
1191 | #define OCFS2_MAX_CTXT_PAGES (OCFS2_MAX_CLUSTERSIZE / PAGE_CACHE_SIZE) | |
1192 | #endif | |
1193 | ||
1194 | #define OCFS2_MAX_CLUSTERS_PER_PAGE (PAGE_CACHE_SIZE / OCFS2_MIN_CLUSTERSIZE) | |
1195 | ||
6af67d82 | 1196 | /* |
3a307ffc | 1197 | * Describe the state of a single cluster to be written to. |
6af67d82 | 1198 | */ |
3a307ffc MF |
1199 | struct ocfs2_write_cluster_desc { |
1200 | u32 c_cpos; | |
1201 | u32 c_phys; | |
1202 | /* | |
1203 | * Give this a unique field because c_phys eventually gets | |
1204 | * filled. | |
1205 | */ | |
1206 | unsigned c_new; | |
b27b7cbc | 1207 | unsigned c_unwritten; |
e7432675 | 1208 | unsigned c_needs_zero; |
3a307ffc | 1209 | }; |
6af67d82 | 1210 | |
3a307ffc MF |
1211 | struct ocfs2_write_ctxt { |
1212 | /* Logical cluster position / len of write */ | |
1213 | u32 w_cpos; | |
1214 | u32 w_clen; | |
6af67d82 | 1215 | |
e7432675 SM |
1216 | /* First cluster allocated in a nonsparse extend */ |
1217 | u32 w_first_new_cpos; | |
1218 | ||
3a307ffc | 1219 | struct ocfs2_write_cluster_desc w_desc[OCFS2_MAX_CLUSTERS_PER_PAGE]; |
6af67d82 | 1220 | |
3a307ffc MF |
1221 | /* |
1222 | * This is true if page_size > cluster_size. | |
1223 | * | |
1224 | * It triggers a set of special cases during write which might | |
1225 | * have to deal with allocating writes to partial pages. | |
1226 | */ | |
1227 | unsigned int w_large_pages; | |
6af67d82 | 1228 | |
3a307ffc MF |
1229 | /* |
1230 | * Pages involved in this write. | |
1231 | * | |
1232 | * w_target_page is the page being written to by the user. | |
1233 | * | |
1234 | * w_pages is an array of pages which always contains | |
1235 | * w_target_page, and in the case of an allocating write with | |
1236 | * page_size < cluster size, it will contain zero'd and mapped | |
1237 | * pages adjacent to w_target_page which need to be written | |
1238 | * out in so that future reads from that region will get | |
1239 | * zero's. | |
1240 | */ | |
3a307ffc | 1241 | unsigned int w_num_pages; |
83fd9c7f | 1242 | struct page *w_pages[OCFS2_MAX_CTXT_PAGES]; |
3a307ffc | 1243 | struct page *w_target_page; |
eeb47d12 | 1244 | |
5cffff9e WW |
1245 | /* |
1246 | * w_target_locked is used for page_mkwrite path indicating no unlocking | |
1247 | * against w_target_page in ocfs2_write_end_nolock. | |
1248 | */ | |
1249 | unsigned int w_target_locked:1; | |
1250 | ||
3a307ffc MF |
1251 | /* |
1252 | * ocfs2_write_end() uses this to know what the real range to | |
1253 | * write in the target should be. | |
1254 | */ | |
1255 | unsigned int w_target_from; | |
1256 | unsigned int w_target_to; | |
1257 | ||
1258 | /* | |
1259 | * We could use journal_current_handle() but this is cleaner, | |
1260 | * IMHO -Mark | |
1261 | */ | |
1262 | handle_t *w_handle; | |
1263 | ||
1264 | struct buffer_head *w_di_bh; | |
b27b7cbc MF |
1265 | |
1266 | struct ocfs2_cached_dealloc_ctxt w_dealloc; | |
3a307ffc MF |
1267 | }; |
1268 | ||
1d410a6e | 1269 | void ocfs2_unlock_and_free_pages(struct page **pages, int num_pages) |
3a307ffc MF |
1270 | { |
1271 | int i; | |
1272 | ||
1d410a6e MF |
1273 | for(i = 0; i < num_pages; i++) { |
1274 | if (pages[i]) { | |
1275 | unlock_page(pages[i]); | |
1276 | mark_page_accessed(pages[i]); | |
1277 | page_cache_release(pages[i]); | |
1278 | } | |
6af67d82 | 1279 | } |
1d410a6e MF |
1280 | } |
1281 | ||
136f49b9 | 1282 | static void ocfs2_unlock_pages(struct ocfs2_write_ctxt *wc) |
1d410a6e | 1283 | { |
5cffff9e WW |
1284 | int i; |
1285 | ||
1286 | /* | |
1287 | * w_target_locked is only set to true in the page_mkwrite() case. | |
1288 | * The intent is to allow us to lock the target page from write_begin() | |
1289 | * to write_end(). The caller must hold a ref on w_target_page. | |
1290 | */ | |
1291 | if (wc->w_target_locked) { | |
1292 | BUG_ON(!wc->w_target_page); | |
1293 | for (i = 0; i < wc->w_num_pages; i++) { | |
1294 | if (wc->w_target_page == wc->w_pages[i]) { | |
1295 | wc->w_pages[i] = NULL; | |
1296 | break; | |
1297 | } | |
1298 | } | |
1299 | mark_page_accessed(wc->w_target_page); | |
1300 | page_cache_release(wc->w_target_page); | |
1301 | } | |
1d410a6e | 1302 | ocfs2_unlock_and_free_pages(wc->w_pages, wc->w_num_pages); |
136f49b9 | 1303 | } |
6af67d82 | 1304 | |
136f49b9 JB |
1305 | static void ocfs2_free_write_ctxt(struct ocfs2_write_ctxt *wc) |
1306 | { | |
1307 | ocfs2_unlock_pages(wc); | |
3a307ffc MF |
1308 | brelse(wc->w_di_bh); |
1309 | kfree(wc); | |
1310 | } | |
1311 | ||
1312 | static int ocfs2_alloc_write_ctxt(struct ocfs2_write_ctxt **wcp, | |
1313 | struct ocfs2_super *osb, loff_t pos, | |
607d44aa | 1314 | unsigned len, struct buffer_head *di_bh) |
3a307ffc | 1315 | { |
30b8548f | 1316 | u32 cend; |
3a307ffc MF |
1317 | struct ocfs2_write_ctxt *wc; |
1318 | ||
1319 | wc = kzalloc(sizeof(struct ocfs2_write_ctxt), GFP_NOFS); | |
1320 | if (!wc) | |
1321 | return -ENOMEM; | |
6af67d82 | 1322 | |
3a307ffc | 1323 | wc->w_cpos = pos >> osb->s_clustersize_bits; |
e7432675 | 1324 | wc->w_first_new_cpos = UINT_MAX; |
30b8548f | 1325 | cend = (pos + len - 1) >> osb->s_clustersize_bits; |
1326 | wc->w_clen = cend - wc->w_cpos + 1; | |
607d44aa MF |
1327 | get_bh(di_bh); |
1328 | wc->w_di_bh = di_bh; | |
6af67d82 | 1329 | |
3a307ffc MF |
1330 | if (unlikely(PAGE_CACHE_SHIFT > osb->s_clustersize_bits)) |
1331 | wc->w_large_pages = 1; | |
1332 | else | |
1333 | wc->w_large_pages = 0; | |
1334 | ||
b27b7cbc MF |
1335 | ocfs2_init_dealloc_ctxt(&wc->w_dealloc); |
1336 | ||
3a307ffc | 1337 | *wcp = wc; |
6af67d82 | 1338 | |
3a307ffc | 1339 | return 0; |
6af67d82 MF |
1340 | } |
1341 | ||
9517bac6 | 1342 | /* |
3a307ffc MF |
1343 | * If a page has any new buffers, zero them out here, and mark them uptodate |
1344 | * and dirty so they'll be written out (in order to prevent uninitialised | |
1345 | * block data from leaking). And clear the new bit. | |
9517bac6 | 1346 | */ |
3a307ffc | 1347 | static void ocfs2_zero_new_buffers(struct page *page, unsigned from, unsigned to) |
9517bac6 | 1348 | { |
3a307ffc MF |
1349 | unsigned int block_start, block_end; |
1350 | struct buffer_head *head, *bh; | |
9517bac6 | 1351 | |
3a307ffc MF |
1352 | BUG_ON(!PageLocked(page)); |
1353 | if (!page_has_buffers(page)) | |
1354 | return; | |
9517bac6 | 1355 | |
3a307ffc MF |
1356 | bh = head = page_buffers(page); |
1357 | block_start = 0; | |
1358 | do { | |
1359 | block_end = block_start + bh->b_size; | |
1360 | ||
1361 | if (buffer_new(bh)) { | |
1362 | if (block_end > from && block_start < to) { | |
1363 | if (!PageUptodate(page)) { | |
1364 | unsigned start, end; | |
3a307ffc MF |
1365 | |
1366 | start = max(from, block_start); | |
1367 | end = min(to, block_end); | |
1368 | ||
eebd2aa3 | 1369 | zero_user_segment(page, start, end); |
3a307ffc MF |
1370 | set_buffer_uptodate(bh); |
1371 | } | |
1372 | ||
1373 | clear_buffer_new(bh); | |
1374 | mark_buffer_dirty(bh); | |
1375 | } | |
1376 | } | |
9517bac6 | 1377 | |
3a307ffc MF |
1378 | block_start = block_end; |
1379 | bh = bh->b_this_page; | |
1380 | } while (bh != head); | |
1381 | } | |
1382 | ||
1383 | /* | |
1384 | * Only called when we have a failure during allocating write to write | |
1385 | * zero's to the newly allocated region. | |
1386 | */ | |
1387 | static void ocfs2_write_failure(struct inode *inode, | |
1388 | struct ocfs2_write_ctxt *wc, | |
1389 | loff_t user_pos, unsigned user_len) | |
1390 | { | |
1391 | int i; | |
5c26a7b7 MF |
1392 | unsigned from = user_pos & (PAGE_CACHE_SIZE - 1), |
1393 | to = user_pos + user_len; | |
3a307ffc MF |
1394 | struct page *tmppage; |
1395 | ||
5c26a7b7 | 1396 | ocfs2_zero_new_buffers(wc->w_target_page, from, to); |
9517bac6 | 1397 | |
3a307ffc MF |
1398 | for(i = 0; i < wc->w_num_pages; i++) { |
1399 | tmppage = wc->w_pages[i]; | |
9517bac6 | 1400 | |
961cecbe | 1401 | if (page_has_buffers(tmppage)) { |
53ef99ca | 1402 | if (ocfs2_should_order_data(inode)) |
2b4e30fb | 1403 | ocfs2_jbd2_file_inode(wc->w_handle, inode); |
961cecbe SM |
1404 | |
1405 | block_commit_write(tmppage, from, to); | |
1406 | } | |
9517bac6 | 1407 | } |
9517bac6 MF |
1408 | } |
1409 | ||
3a307ffc MF |
1410 | static int ocfs2_prepare_page_for_write(struct inode *inode, u64 *p_blkno, |
1411 | struct ocfs2_write_ctxt *wc, | |
1412 | struct page *page, u32 cpos, | |
1413 | loff_t user_pos, unsigned user_len, | |
1414 | int new) | |
9517bac6 | 1415 | { |
3a307ffc MF |
1416 | int ret; |
1417 | unsigned int map_from = 0, map_to = 0; | |
9517bac6 | 1418 | unsigned int cluster_start, cluster_end; |
3a307ffc | 1419 | unsigned int user_data_from = 0, user_data_to = 0; |
9517bac6 | 1420 | |
3a307ffc | 1421 | ocfs2_figure_cluster_boundaries(OCFS2_SB(inode->i_sb), cpos, |
9517bac6 MF |
1422 | &cluster_start, &cluster_end); |
1423 | ||
272b62c1 GR |
1424 | /* treat the write as new if the a hole/lseek spanned across |
1425 | * the page boundary. | |
1426 | */ | |
1427 | new = new | ((i_size_read(inode) <= page_offset(page)) && | |
1428 | (page_offset(page) <= user_pos)); | |
1429 | ||
3a307ffc MF |
1430 | if (page == wc->w_target_page) { |
1431 | map_from = user_pos & (PAGE_CACHE_SIZE - 1); | |
1432 | map_to = map_from + user_len; | |
1433 | ||
1434 | if (new) | |
1435 | ret = ocfs2_map_page_blocks(page, p_blkno, inode, | |
1436 | cluster_start, cluster_end, | |
1437 | new); | |
1438 | else | |
1439 | ret = ocfs2_map_page_blocks(page, p_blkno, inode, | |
1440 | map_from, map_to, new); | |
1441 | if (ret) { | |
9517bac6 MF |
1442 | mlog_errno(ret); |
1443 | goto out; | |
1444 | } | |
1445 | ||
3a307ffc MF |
1446 | user_data_from = map_from; |
1447 | user_data_to = map_to; | |
9517bac6 | 1448 | if (new) { |
3a307ffc MF |
1449 | map_from = cluster_start; |
1450 | map_to = cluster_end; | |
9517bac6 MF |
1451 | } |
1452 | } else { | |
1453 | /* | |
1454 | * If we haven't allocated the new page yet, we | |
1455 | * shouldn't be writing it out without copying user | |
1456 | * data. This is likely a math error from the caller. | |
1457 | */ | |
1458 | BUG_ON(!new); | |
1459 | ||
3a307ffc MF |
1460 | map_from = cluster_start; |
1461 | map_to = cluster_end; | |
9517bac6 MF |
1462 | |
1463 | ret = ocfs2_map_page_blocks(page, p_blkno, inode, | |
3a307ffc | 1464 | cluster_start, cluster_end, new); |
9517bac6 MF |
1465 | if (ret) { |
1466 | mlog_errno(ret); | |
1467 | goto out; | |
1468 | } | |
1469 | } | |
1470 | ||
1471 | /* | |
1472 | * Parts of newly allocated pages need to be zero'd. | |
1473 | * | |
1474 | * Above, we have also rewritten 'to' and 'from' - as far as | |
1475 | * the rest of the function is concerned, the entire cluster | |
1476 | * range inside of a page needs to be written. | |
1477 | * | |
1478 | * We can skip this if the page is up to date - it's already | |
1479 | * been zero'd from being read in as a hole. | |
1480 | */ | |
1481 | if (new && !PageUptodate(page)) | |
1482 | ocfs2_clear_page_regions(page, OCFS2_SB(inode->i_sb), | |
3a307ffc | 1483 | cpos, user_data_from, user_data_to); |
9517bac6 MF |
1484 | |
1485 | flush_dcache_page(page); | |
1486 | ||
9517bac6 | 1487 | out: |
3a307ffc | 1488 | return ret; |
9517bac6 MF |
1489 | } |
1490 | ||
1491 | /* | |
3a307ffc | 1492 | * This function will only grab one clusters worth of pages. |
9517bac6 | 1493 | */ |
3a307ffc MF |
1494 | static int ocfs2_grab_pages_for_write(struct address_space *mapping, |
1495 | struct ocfs2_write_ctxt *wc, | |
693c241a JB |
1496 | u32 cpos, loff_t user_pos, |
1497 | unsigned user_len, int new, | |
7307de80 | 1498 | struct page *mmap_page) |
9517bac6 | 1499 | { |
3a307ffc | 1500 | int ret = 0, i; |
693c241a | 1501 | unsigned long start, target_index, end_index, index; |
9517bac6 | 1502 | struct inode *inode = mapping->host; |
693c241a | 1503 | loff_t last_byte; |
9517bac6 | 1504 | |
3a307ffc | 1505 | target_index = user_pos >> PAGE_CACHE_SHIFT; |
9517bac6 MF |
1506 | |
1507 | /* | |
1508 | * Figure out how many pages we'll be manipulating here. For | |
60b11392 | 1509 | * non allocating write, we just change the one |
693c241a JB |
1510 | * page. Otherwise, we'll need a whole clusters worth. If we're |
1511 | * writing past i_size, we only need enough pages to cover the | |
1512 | * last page of the write. | |
9517bac6 | 1513 | */ |
9517bac6 | 1514 | if (new) { |
3a307ffc MF |
1515 | wc->w_num_pages = ocfs2_pages_per_cluster(inode->i_sb); |
1516 | start = ocfs2_align_clusters_to_page_index(inode->i_sb, cpos); | |
693c241a JB |
1517 | /* |
1518 | * We need the index *past* the last page we could possibly | |
1519 | * touch. This is the page past the end of the write or | |
1520 | * i_size, whichever is greater. | |
1521 | */ | |
1522 | last_byte = max(user_pos + user_len, i_size_read(inode)); | |
1523 | BUG_ON(last_byte < 1); | |
1524 | end_index = ((last_byte - 1) >> PAGE_CACHE_SHIFT) + 1; | |
1525 | if ((start + wc->w_num_pages) > end_index) | |
1526 | wc->w_num_pages = end_index - start; | |
9517bac6 | 1527 | } else { |
3a307ffc MF |
1528 | wc->w_num_pages = 1; |
1529 | start = target_index; | |
9517bac6 MF |
1530 | } |
1531 | ||
3a307ffc | 1532 | for(i = 0; i < wc->w_num_pages; i++) { |
9517bac6 MF |
1533 | index = start + i; |
1534 | ||
7307de80 MF |
1535 | if (index == target_index && mmap_page) { |
1536 | /* | |
1537 | * ocfs2_pagemkwrite() is a little different | |
1538 | * and wants us to directly use the page | |
1539 | * passed in. | |
1540 | */ | |
1541 | lock_page(mmap_page); | |
1542 | ||
5cffff9e | 1543 | /* Exit and let the caller retry */ |
7307de80 | 1544 | if (mmap_page->mapping != mapping) { |
5cffff9e | 1545 | WARN_ON(mmap_page->mapping); |
7307de80 | 1546 | unlock_page(mmap_page); |
5cffff9e | 1547 | ret = -EAGAIN; |
7307de80 MF |
1548 | goto out; |
1549 | } | |
1550 | ||
1551 | page_cache_get(mmap_page); | |
1552 | wc->w_pages[i] = mmap_page; | |
5cffff9e | 1553 | wc->w_target_locked = true; |
7307de80 MF |
1554 | } else { |
1555 | wc->w_pages[i] = find_or_create_page(mapping, index, | |
1556 | GFP_NOFS); | |
1557 | if (!wc->w_pages[i]) { | |
1558 | ret = -ENOMEM; | |
1559 | mlog_errno(ret); | |
1560 | goto out; | |
1561 | } | |
9517bac6 | 1562 | } |
1269529b | 1563 | wait_for_stable_page(wc->w_pages[i]); |
3a307ffc MF |
1564 | |
1565 | if (index == target_index) | |
1566 | wc->w_target_page = wc->w_pages[i]; | |
9517bac6 | 1567 | } |
3a307ffc | 1568 | out: |
5cffff9e WW |
1569 | if (ret) |
1570 | wc->w_target_locked = false; | |
3a307ffc MF |
1571 | return ret; |
1572 | } | |
1573 | ||
1574 | /* | |
1575 | * Prepare a single cluster for write one cluster into the file. | |
1576 | */ | |
1577 | static int ocfs2_write_cluster(struct address_space *mapping, | |
b27b7cbc | 1578 | u32 phys, unsigned int unwritten, |
e7432675 | 1579 | unsigned int should_zero, |
b27b7cbc | 1580 | struct ocfs2_alloc_context *data_ac, |
3a307ffc MF |
1581 | struct ocfs2_alloc_context *meta_ac, |
1582 | struct ocfs2_write_ctxt *wc, u32 cpos, | |
1583 | loff_t user_pos, unsigned user_len) | |
1584 | { | |
e7432675 | 1585 | int ret, i, new; |
3a307ffc MF |
1586 | u64 v_blkno, p_blkno; |
1587 | struct inode *inode = mapping->host; | |
f99b9b7c | 1588 | struct ocfs2_extent_tree et; |
3a307ffc MF |
1589 | |
1590 | new = phys == 0 ? 1 : 0; | |
9517bac6 | 1591 | if (new) { |
3a307ffc MF |
1592 | u32 tmp_pos; |
1593 | ||
9517bac6 MF |
1594 | /* |
1595 | * This is safe to call with the page locks - it won't take | |
1596 | * any additional semaphores or cluster locks. | |
1597 | */ | |
3a307ffc | 1598 | tmp_pos = cpos; |
0eb8d47e TM |
1599 | ret = ocfs2_add_inode_data(OCFS2_SB(inode->i_sb), inode, |
1600 | &tmp_pos, 1, 0, wc->w_di_bh, | |
1601 | wc->w_handle, data_ac, | |
1602 | meta_ac, NULL); | |
9517bac6 MF |
1603 | /* |
1604 | * This shouldn't happen because we must have already | |
1605 | * calculated the correct meta data allocation required. The | |
1606 | * internal tree allocation code should know how to increase | |
1607 | * transaction credits itself. | |
1608 | * | |
1609 | * If need be, we could handle -EAGAIN for a | |
1610 | * RESTART_TRANS here. | |
1611 | */ | |
1612 | mlog_bug_on_msg(ret == -EAGAIN, | |
1613 | "Inode %llu: EAGAIN return during allocation.\n", | |
1614 | (unsigned long long)OCFS2_I(inode)->ip_blkno); | |
1615 | if (ret < 0) { | |
1616 | mlog_errno(ret); | |
1617 | goto out; | |
1618 | } | |
b27b7cbc | 1619 | } else if (unwritten) { |
5e404e9e JB |
1620 | ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(inode), |
1621 | wc->w_di_bh); | |
f99b9b7c | 1622 | ret = ocfs2_mark_extent_written(inode, &et, |
b27b7cbc | 1623 | wc->w_handle, cpos, 1, phys, |
f99b9b7c | 1624 | meta_ac, &wc->w_dealloc); |
b27b7cbc MF |
1625 | if (ret < 0) { |
1626 | mlog_errno(ret); | |
1627 | goto out; | |
1628 | } | |
1629 | } | |
3a307ffc | 1630 | |
b27b7cbc | 1631 | if (should_zero) |
3a307ffc | 1632 | v_blkno = ocfs2_clusters_to_blocks(inode->i_sb, cpos); |
b27b7cbc | 1633 | else |
3a307ffc | 1634 | v_blkno = user_pos >> inode->i_sb->s_blocksize_bits; |
9517bac6 | 1635 | |
3a307ffc MF |
1636 | /* |
1637 | * The only reason this should fail is due to an inability to | |
1638 | * find the extent added. | |
1639 | */ | |
49cb8d2d MF |
1640 | ret = ocfs2_extent_map_get_blocks(inode, v_blkno, &p_blkno, NULL, |
1641 | NULL); | |
9517bac6 | 1642 | if (ret < 0) { |
61fb9ea4 | 1643 | mlog(ML_ERROR, "Get physical blkno failed for inode %llu, " |
3a307ffc MF |
1644 | "at logical block %llu", |
1645 | (unsigned long long)OCFS2_I(inode)->ip_blkno, | |
1646 | (unsigned long long)v_blkno); | |
9517bac6 MF |
1647 | goto out; |
1648 | } | |
1649 | ||
1650 | BUG_ON(p_blkno == 0); | |
1651 | ||
3a307ffc MF |
1652 | for(i = 0; i < wc->w_num_pages; i++) { |
1653 | int tmpret; | |
9517bac6 | 1654 | |
3a307ffc MF |
1655 | tmpret = ocfs2_prepare_page_for_write(inode, &p_blkno, wc, |
1656 | wc->w_pages[i], cpos, | |
b27b7cbc MF |
1657 | user_pos, user_len, |
1658 | should_zero); | |
3a307ffc MF |
1659 | if (tmpret) { |
1660 | mlog_errno(tmpret); | |
1661 | if (ret == 0) | |
cbfa9639 | 1662 | ret = tmpret; |
3a307ffc | 1663 | } |
9517bac6 MF |
1664 | } |
1665 | ||
3a307ffc MF |
1666 | /* |
1667 | * We only have cleanup to do in case of allocating write. | |
1668 | */ | |
1669 | if (ret && new) | |
1670 | ocfs2_write_failure(inode, wc, user_pos, user_len); | |
1671 | ||
9517bac6 | 1672 | out: |
9517bac6 | 1673 | |
3a307ffc | 1674 | return ret; |
9517bac6 MF |
1675 | } |
1676 | ||
0d172baa MF |
1677 | static int ocfs2_write_cluster_by_desc(struct address_space *mapping, |
1678 | struct ocfs2_alloc_context *data_ac, | |
1679 | struct ocfs2_alloc_context *meta_ac, | |
1680 | struct ocfs2_write_ctxt *wc, | |
1681 | loff_t pos, unsigned len) | |
1682 | { | |
1683 | int ret, i; | |
db56246c MF |
1684 | loff_t cluster_off; |
1685 | unsigned int local_len = len; | |
0d172baa | 1686 | struct ocfs2_write_cluster_desc *desc; |
db56246c | 1687 | struct ocfs2_super *osb = OCFS2_SB(mapping->host->i_sb); |
0d172baa MF |
1688 | |
1689 | for (i = 0; i < wc->w_clen; i++) { | |
1690 | desc = &wc->w_desc[i]; | |
1691 | ||
db56246c MF |
1692 | /* |
1693 | * We have to make sure that the total write passed in | |
1694 | * doesn't extend past a single cluster. | |
1695 | */ | |
1696 | local_len = len; | |
1697 | cluster_off = pos & (osb->s_clustersize - 1); | |
1698 | if ((cluster_off + local_len) > osb->s_clustersize) | |
1699 | local_len = osb->s_clustersize - cluster_off; | |
1700 | ||
b27b7cbc | 1701 | ret = ocfs2_write_cluster(mapping, desc->c_phys, |
e7432675 SM |
1702 | desc->c_unwritten, |
1703 | desc->c_needs_zero, | |
1704 | data_ac, meta_ac, | |
db56246c | 1705 | wc, desc->c_cpos, pos, local_len); |
0d172baa MF |
1706 | if (ret) { |
1707 | mlog_errno(ret); | |
1708 | goto out; | |
1709 | } | |
db56246c MF |
1710 | |
1711 | len -= local_len; | |
1712 | pos += local_len; | |
0d172baa MF |
1713 | } |
1714 | ||
1715 | ret = 0; | |
1716 | out: | |
1717 | return ret; | |
1718 | } | |
1719 | ||
3a307ffc MF |
1720 | /* |
1721 | * ocfs2_write_end() wants to know which parts of the target page it | |
1722 | * should complete the write on. It's easiest to compute them ahead of | |
1723 | * time when a more complete view of the write is available. | |
1724 | */ | |
1725 | static void ocfs2_set_target_boundaries(struct ocfs2_super *osb, | |
1726 | struct ocfs2_write_ctxt *wc, | |
1727 | loff_t pos, unsigned len, int alloc) | |
9517bac6 | 1728 | { |
3a307ffc | 1729 | struct ocfs2_write_cluster_desc *desc; |
9517bac6 | 1730 | |
3a307ffc MF |
1731 | wc->w_target_from = pos & (PAGE_CACHE_SIZE - 1); |
1732 | wc->w_target_to = wc->w_target_from + len; | |
1733 | ||
1734 | if (alloc == 0) | |
1735 | return; | |
1736 | ||
1737 | /* | |
1738 | * Allocating write - we may have different boundaries based | |
1739 | * on page size and cluster size. | |
1740 | * | |
1741 | * NOTE: We can no longer compute one value from the other as | |
1742 | * the actual write length and user provided length may be | |
1743 | * different. | |
1744 | */ | |
9517bac6 | 1745 | |
3a307ffc MF |
1746 | if (wc->w_large_pages) { |
1747 | /* | |
1748 | * We only care about the 1st and last cluster within | |
b27b7cbc | 1749 | * our range and whether they should be zero'd or not. Either |
3a307ffc MF |
1750 | * value may be extended out to the start/end of a |
1751 | * newly allocated cluster. | |
1752 | */ | |
1753 | desc = &wc->w_desc[0]; | |
e7432675 | 1754 | if (desc->c_needs_zero) |
3a307ffc MF |
1755 | ocfs2_figure_cluster_boundaries(osb, |
1756 | desc->c_cpos, | |
1757 | &wc->w_target_from, | |
1758 | NULL); | |
1759 | ||
1760 | desc = &wc->w_desc[wc->w_clen - 1]; | |
e7432675 | 1761 | if (desc->c_needs_zero) |
3a307ffc MF |
1762 | ocfs2_figure_cluster_boundaries(osb, |
1763 | desc->c_cpos, | |
1764 | NULL, | |
1765 | &wc->w_target_to); | |
1766 | } else { | |
1767 | wc->w_target_from = 0; | |
1768 | wc->w_target_to = PAGE_CACHE_SIZE; | |
1769 | } | |
9517bac6 MF |
1770 | } |
1771 | ||
0d172baa MF |
1772 | /* |
1773 | * Populate each single-cluster write descriptor in the write context | |
1774 | * with information about the i/o to be done. | |
b27b7cbc MF |
1775 | * |
1776 | * Returns the number of clusters that will have to be allocated, as | |
1777 | * well as a worst case estimate of the number of extent records that | |
1778 | * would have to be created during a write to an unwritten region. | |
0d172baa MF |
1779 | */ |
1780 | static int ocfs2_populate_write_desc(struct inode *inode, | |
1781 | struct ocfs2_write_ctxt *wc, | |
b27b7cbc MF |
1782 | unsigned int *clusters_to_alloc, |
1783 | unsigned int *extents_to_split) | |
9517bac6 | 1784 | { |
0d172baa | 1785 | int ret; |
3a307ffc | 1786 | struct ocfs2_write_cluster_desc *desc; |
0d172baa | 1787 | unsigned int num_clusters = 0; |
b27b7cbc | 1788 | unsigned int ext_flags = 0; |
0d172baa MF |
1789 | u32 phys = 0; |
1790 | int i; | |
9517bac6 | 1791 | |
b27b7cbc MF |
1792 | *clusters_to_alloc = 0; |
1793 | *extents_to_split = 0; | |
1794 | ||
3a307ffc MF |
1795 | for (i = 0; i < wc->w_clen; i++) { |
1796 | desc = &wc->w_desc[i]; | |
1797 | desc->c_cpos = wc->w_cpos + i; | |
1798 | ||
1799 | if (num_clusters == 0) { | |
b27b7cbc MF |
1800 | /* |
1801 | * Need to look up the next extent record. | |
1802 | */ | |
3a307ffc | 1803 | ret = ocfs2_get_clusters(inode, desc->c_cpos, &phys, |
b27b7cbc | 1804 | &num_clusters, &ext_flags); |
3a307ffc MF |
1805 | if (ret) { |
1806 | mlog_errno(ret); | |
607d44aa | 1807 | goto out; |
3a307ffc | 1808 | } |
b27b7cbc | 1809 | |
293b2f70 TM |
1810 | /* We should already CoW the refcountd extent. */ |
1811 | BUG_ON(ext_flags & OCFS2_EXT_REFCOUNTED); | |
1812 | ||
b27b7cbc MF |
1813 | /* |
1814 | * Assume worst case - that we're writing in | |
1815 | * the middle of the extent. | |
1816 | * | |
1817 | * We can assume that the write proceeds from | |
1818 | * left to right, in which case the extent | |
1819 | * insert code is smart enough to coalesce the | |
1820 | * next splits into the previous records created. | |
1821 | */ | |
1822 | if (ext_flags & OCFS2_EXT_UNWRITTEN) | |
1823 | *extents_to_split = *extents_to_split + 2; | |
3a307ffc MF |
1824 | } else if (phys) { |
1825 | /* | |
1826 | * Only increment phys if it doesn't describe | |
1827 | * a hole. | |
1828 | */ | |
1829 | phys++; | |
1830 | } | |
1831 | ||
e7432675 SM |
1832 | /* |
1833 | * If w_first_new_cpos is < UINT_MAX, we have a non-sparse | |
1834 | * file that got extended. w_first_new_cpos tells us | |
1835 | * where the newly allocated clusters are so we can | |
1836 | * zero them. | |
1837 | */ | |
1838 | if (desc->c_cpos >= wc->w_first_new_cpos) { | |
1839 | BUG_ON(phys == 0); | |
1840 | desc->c_needs_zero = 1; | |
1841 | } | |
1842 | ||
3a307ffc MF |
1843 | desc->c_phys = phys; |
1844 | if (phys == 0) { | |
1845 | desc->c_new = 1; | |
e7432675 | 1846 | desc->c_needs_zero = 1; |
0d172baa | 1847 | *clusters_to_alloc = *clusters_to_alloc + 1; |
3a307ffc | 1848 | } |
e7432675 SM |
1849 | |
1850 | if (ext_flags & OCFS2_EXT_UNWRITTEN) { | |
b27b7cbc | 1851 | desc->c_unwritten = 1; |
e7432675 SM |
1852 | desc->c_needs_zero = 1; |
1853 | } | |
3a307ffc MF |
1854 | |
1855 | num_clusters--; | |
9517bac6 MF |
1856 | } |
1857 | ||
0d172baa MF |
1858 | ret = 0; |
1859 | out: | |
1860 | return ret; | |
1861 | } | |
1862 | ||
1afc32b9 MF |
1863 | static int ocfs2_write_begin_inline(struct address_space *mapping, |
1864 | struct inode *inode, | |
1865 | struct ocfs2_write_ctxt *wc) | |
1866 | { | |
1867 | int ret; | |
1868 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); | |
1869 | struct page *page; | |
1870 | handle_t *handle; | |
1871 | struct ocfs2_dinode *di = (struct ocfs2_dinode *)wc->w_di_bh->b_data; | |
1872 | ||
f775da2f JB |
1873 | handle = ocfs2_start_trans(osb, OCFS2_INODE_UPDATE_CREDITS); |
1874 | if (IS_ERR(handle)) { | |
1875 | ret = PTR_ERR(handle); | |
1876 | mlog_errno(ret); | |
1877 | goto out; | |
1878 | } | |
1879 | ||
1afc32b9 MF |
1880 | page = find_or_create_page(mapping, 0, GFP_NOFS); |
1881 | if (!page) { | |
f775da2f | 1882 | ocfs2_commit_trans(osb, handle); |
1afc32b9 MF |
1883 | ret = -ENOMEM; |
1884 | mlog_errno(ret); | |
1885 | goto out; | |
1886 | } | |
1887 | /* | |
1888 | * If we don't set w_num_pages then this page won't get unlocked | |
1889 | * and freed on cleanup of the write context. | |
1890 | */ | |
1891 | wc->w_pages[0] = wc->w_target_page = page; | |
1892 | wc->w_num_pages = 1; | |
1893 | ||
0cf2f763 | 1894 | ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), wc->w_di_bh, |
13723d00 | 1895 | OCFS2_JOURNAL_ACCESS_WRITE); |
1afc32b9 MF |
1896 | if (ret) { |
1897 | ocfs2_commit_trans(osb, handle); | |
1898 | ||
1899 | mlog_errno(ret); | |
1900 | goto out; | |
1901 | } | |
1902 | ||
1903 | if (!(OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL)) | |
1904 | ocfs2_set_inode_data_inline(inode, di); | |
1905 | ||
1906 | if (!PageUptodate(page)) { | |
1907 | ret = ocfs2_read_inline_data(inode, page, wc->w_di_bh); | |
1908 | if (ret) { | |
1909 | ocfs2_commit_trans(osb, handle); | |
1910 | ||
1911 | goto out; | |
1912 | } | |
1913 | } | |
1914 | ||
1915 | wc->w_handle = handle; | |
1916 | out: | |
1917 | return ret; | |
1918 | } | |
1919 | ||
1920 | int ocfs2_size_fits_inline_data(struct buffer_head *di_bh, u64 new_size) | |
1921 | { | |
1922 | struct ocfs2_dinode *di = (struct ocfs2_dinode *)di_bh->b_data; | |
1923 | ||
0d8a4e0c | 1924 | if (new_size <= le16_to_cpu(di->id2.i_data.id_count)) |
1afc32b9 MF |
1925 | return 1; |
1926 | return 0; | |
1927 | } | |
1928 | ||
1929 | static int ocfs2_try_to_write_inline_data(struct address_space *mapping, | |
1930 | struct inode *inode, loff_t pos, | |
1931 | unsigned len, struct page *mmap_page, | |
1932 | struct ocfs2_write_ctxt *wc) | |
1933 | { | |
1934 | int ret, written = 0; | |
1935 | loff_t end = pos + len; | |
1936 | struct ocfs2_inode_info *oi = OCFS2_I(inode); | |
d9ae49d6 | 1937 | struct ocfs2_dinode *di = NULL; |
1afc32b9 | 1938 | |
9558156b TM |
1939 | trace_ocfs2_try_to_write_inline_data((unsigned long long)oi->ip_blkno, |
1940 | len, (unsigned long long)pos, | |
1941 | oi->ip_dyn_features); | |
1afc32b9 MF |
1942 | |
1943 | /* | |
1944 | * Handle inodes which already have inline data 1st. | |
1945 | */ | |
1946 | if (oi->ip_dyn_features & OCFS2_INLINE_DATA_FL) { | |
1947 | if (mmap_page == NULL && | |
1948 | ocfs2_size_fits_inline_data(wc->w_di_bh, end)) | |
1949 | goto do_inline_write; | |
1950 | ||
1951 | /* | |
1952 | * The write won't fit - we have to give this inode an | |
1953 | * inline extent list now. | |
1954 | */ | |
1955 | ret = ocfs2_convert_inline_data_to_extents(inode, wc->w_di_bh); | |
1956 | if (ret) | |
1957 | mlog_errno(ret); | |
1958 | goto out; | |
1959 | } | |
1960 | ||
1961 | /* | |
1962 | * Check whether the inode can accept inline data. | |
1963 | */ | |
1964 | if (oi->ip_clusters != 0 || i_size_read(inode) != 0) | |
1965 | return 0; | |
1966 | ||
1967 | /* | |
1968 | * Check whether the write can fit. | |
1969 | */ | |
d9ae49d6 TY |
1970 | di = (struct ocfs2_dinode *)wc->w_di_bh->b_data; |
1971 | if (mmap_page || | |
1972 | end > ocfs2_max_inline_data_with_xattr(inode->i_sb, di)) | |
1afc32b9 MF |
1973 | return 0; |
1974 | ||
1975 | do_inline_write: | |
1976 | ret = ocfs2_write_begin_inline(mapping, inode, wc); | |
1977 | if (ret) { | |
1978 | mlog_errno(ret); | |
1979 | goto out; | |
1980 | } | |
1981 | ||
1982 | /* | |
1983 | * This signals to the caller that the data can be written | |
1984 | * inline. | |
1985 | */ | |
1986 | written = 1; | |
1987 | out: | |
1988 | return written ? written : ret; | |
1989 | } | |
1990 | ||
65ed39d6 MF |
1991 | /* |
1992 | * This function only does anything for file systems which can't | |
1993 | * handle sparse files. | |
1994 | * | |
1995 | * What we want to do here is fill in any hole between the current end | |
1996 | * of allocation and the end of our write. That way the rest of the | |
1997 | * write path can treat it as an non-allocating write, which has no | |
1998 | * special case code for sparse/nonsparse files. | |
1999 | */ | |
5693486b JB |
2000 | static int ocfs2_expand_nonsparse_inode(struct inode *inode, |
2001 | struct buffer_head *di_bh, | |
2002 | loff_t pos, unsigned len, | |
65ed39d6 MF |
2003 | struct ocfs2_write_ctxt *wc) |
2004 | { | |
2005 | int ret; | |
65ed39d6 MF |
2006 | loff_t newsize = pos + len; |
2007 | ||
5693486b | 2008 | BUG_ON(ocfs2_sparse_alloc(OCFS2_SB(inode->i_sb))); |
65ed39d6 MF |
2009 | |
2010 | if (newsize <= i_size_read(inode)) | |
2011 | return 0; | |
2012 | ||
5693486b | 2013 | ret = ocfs2_extend_no_holes(inode, di_bh, newsize, pos); |
65ed39d6 MF |
2014 | if (ret) |
2015 | mlog_errno(ret); | |
2016 | ||
e7432675 SM |
2017 | wc->w_first_new_cpos = |
2018 | ocfs2_clusters_for_bytes(inode->i_sb, i_size_read(inode)); | |
2019 | ||
65ed39d6 MF |
2020 | return ret; |
2021 | } | |
2022 | ||
5693486b JB |
2023 | static int ocfs2_zero_tail(struct inode *inode, struct buffer_head *di_bh, |
2024 | loff_t pos) | |
2025 | { | |
2026 | int ret = 0; | |
2027 | ||
2028 | BUG_ON(!ocfs2_sparse_alloc(OCFS2_SB(inode->i_sb))); | |
2029 | if (pos > i_size_read(inode)) | |
2030 | ret = ocfs2_zero_extend(inode, di_bh, pos); | |
2031 | ||
2032 | return ret; | |
2033 | } | |
2034 | ||
50308d81 TM |
2035 | /* |
2036 | * Try to flush truncate logs if we can free enough clusters from it. | |
2037 | * As for return value, "< 0" means error, "0" no space and "1" means | |
2038 | * we have freed enough spaces and let the caller try to allocate again. | |
2039 | */ | |
2040 | static int ocfs2_try_to_free_truncate_log(struct ocfs2_super *osb, | |
2041 | unsigned int needed) | |
2042 | { | |
2043 | tid_t target; | |
2044 | int ret = 0; | |
2045 | unsigned int truncated_clusters; | |
2046 | ||
2047 | mutex_lock(&osb->osb_tl_inode->i_mutex); | |
2048 | truncated_clusters = osb->truncated_clusters; | |
2049 | mutex_unlock(&osb->osb_tl_inode->i_mutex); | |
2050 | ||
2051 | /* | |
2052 | * Check whether we can succeed in allocating if we free | |
2053 | * the truncate log. | |
2054 | */ | |
2055 | if (truncated_clusters < needed) | |
2056 | goto out; | |
2057 | ||
2058 | ret = ocfs2_flush_truncate_log(osb); | |
2059 | if (ret) { | |
2060 | mlog_errno(ret); | |
2061 | goto out; | |
2062 | } | |
2063 | ||
2064 | if (jbd2_journal_start_commit(osb->journal->j_journal, &target)) { | |
2065 | jbd2_log_wait_commit(osb->journal->j_journal, target); | |
2066 | ret = 1; | |
2067 | } | |
2068 | out: | |
2069 | return ret; | |
2070 | } | |
2071 | ||
0378da0f TM |
2072 | int ocfs2_write_begin_nolock(struct file *filp, |
2073 | struct address_space *mapping, | |
0d172baa MF |
2074 | loff_t pos, unsigned len, unsigned flags, |
2075 | struct page **pagep, void **fsdata, | |
2076 | struct buffer_head *di_bh, struct page *mmap_page) | |
2077 | { | |
e7432675 | 2078 | int ret, cluster_of_pages, credits = OCFS2_INODE_UPDATE_CREDITS; |
50308d81 | 2079 | unsigned int clusters_to_alloc, extents_to_split, clusters_need = 0; |
0d172baa MF |
2080 | struct ocfs2_write_ctxt *wc; |
2081 | struct inode *inode = mapping->host; | |
2082 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); | |
2083 | struct ocfs2_dinode *di; | |
2084 | struct ocfs2_alloc_context *data_ac = NULL; | |
2085 | struct ocfs2_alloc_context *meta_ac = NULL; | |
2086 | handle_t *handle; | |
f99b9b7c | 2087 | struct ocfs2_extent_tree et; |
50308d81 | 2088 | int try_free = 1, ret1; |
0d172baa | 2089 | |
50308d81 | 2090 | try_again: |
0d172baa MF |
2091 | ret = ocfs2_alloc_write_ctxt(&wc, osb, pos, len, di_bh); |
2092 | if (ret) { | |
2093 | mlog_errno(ret); | |
2094 | return ret; | |
2095 | } | |
2096 | ||
1afc32b9 MF |
2097 | if (ocfs2_supports_inline_data(osb)) { |
2098 | ret = ocfs2_try_to_write_inline_data(mapping, inode, pos, len, | |
2099 | mmap_page, wc); | |
2100 | if (ret == 1) { | |
2101 | ret = 0; | |
2102 | goto success; | |
2103 | } | |
2104 | if (ret < 0) { | |
2105 | mlog_errno(ret); | |
2106 | goto out; | |
2107 | } | |
2108 | } | |
2109 | ||
5693486b JB |
2110 | if (ocfs2_sparse_alloc(osb)) |
2111 | ret = ocfs2_zero_tail(inode, di_bh, pos); | |
2112 | else | |
2113 | ret = ocfs2_expand_nonsparse_inode(inode, di_bh, pos, len, | |
2114 | wc); | |
65ed39d6 MF |
2115 | if (ret) { |
2116 | mlog_errno(ret); | |
2117 | goto out; | |
2118 | } | |
2119 | ||
293b2f70 TM |
2120 | ret = ocfs2_check_range_for_refcount(inode, pos, len); |
2121 | if (ret < 0) { | |
2122 | mlog_errno(ret); | |
2123 | goto out; | |
2124 | } else if (ret == 1) { | |
50308d81 | 2125 | clusters_need = wc->w_clen; |
c7dd3392 | 2126 | ret = ocfs2_refcount_cow(inode, di_bh, |
37f8a2bf | 2127 | wc->w_cpos, wc->w_clen, UINT_MAX); |
293b2f70 TM |
2128 | if (ret) { |
2129 | mlog_errno(ret); | |
2130 | goto out; | |
2131 | } | |
2132 | } | |
2133 | ||
b27b7cbc MF |
2134 | ret = ocfs2_populate_write_desc(inode, wc, &clusters_to_alloc, |
2135 | &extents_to_split); | |
0d172baa MF |
2136 | if (ret) { |
2137 | mlog_errno(ret); | |
2138 | goto out; | |
2139 | } | |
50308d81 | 2140 | clusters_need += clusters_to_alloc; |
0d172baa MF |
2141 | |
2142 | di = (struct ocfs2_dinode *)wc->w_di_bh->b_data; | |
2143 | ||
9558156b TM |
2144 | trace_ocfs2_write_begin_nolock( |
2145 | (unsigned long long)OCFS2_I(inode)->ip_blkno, | |
2146 | (long long)i_size_read(inode), | |
2147 | le32_to_cpu(di->i_clusters), | |
2148 | pos, len, flags, mmap_page, | |
2149 | clusters_to_alloc, extents_to_split); | |
2150 | ||
3a307ffc MF |
2151 | /* |
2152 | * We set w_target_from, w_target_to here so that | |
2153 | * ocfs2_write_end() knows which range in the target page to | |
2154 | * write out. An allocation requires that we write the entire | |
2155 | * cluster range. | |
2156 | */ | |
b27b7cbc | 2157 | if (clusters_to_alloc || extents_to_split) { |
3a307ffc MF |
2158 | /* |
2159 | * XXX: We are stretching the limits of | |
b27b7cbc | 2160 | * ocfs2_lock_allocators(). It greatly over-estimates |
3a307ffc MF |
2161 | * the work to be done. |
2162 | */ | |
5e404e9e JB |
2163 | ocfs2_init_dinode_extent_tree(&et, INODE_CACHE(inode), |
2164 | wc->w_di_bh); | |
f99b9b7c | 2165 | ret = ocfs2_lock_allocators(inode, &et, |
231b87d1 | 2166 | clusters_to_alloc, extents_to_split, |
f99b9b7c | 2167 | &data_ac, &meta_ac); |
9517bac6 MF |
2168 | if (ret) { |
2169 | mlog_errno(ret); | |
607d44aa | 2170 | goto out; |
9517bac6 MF |
2171 | } |
2172 | ||
4fe370af MF |
2173 | if (data_ac) |
2174 | data_ac->ac_resv = &OCFS2_I(inode)->ip_la_data_resv; | |
2175 | ||
811f933d | 2176 | credits = ocfs2_calc_extend_credits(inode->i_sb, |
06f9da6e | 2177 | &di->id2.i_list); |
3a307ffc | 2178 | |
9517bac6 MF |
2179 | } |
2180 | ||
e7432675 SM |
2181 | /* |
2182 | * We have to zero sparse allocated clusters, unwritten extent clusters, | |
2183 | * and non-sparse clusters we just extended. For non-sparse writes, | |
2184 | * we know zeros will only be needed in the first and/or last cluster. | |
2185 | */ | |
2186 | if (clusters_to_alloc || extents_to_split || | |
8379e7c4 SM |
2187 | (wc->w_clen && (wc->w_desc[0].c_needs_zero || |
2188 | wc->w_desc[wc->w_clen - 1].c_needs_zero))) | |
e7432675 SM |
2189 | cluster_of_pages = 1; |
2190 | else | |
2191 | cluster_of_pages = 0; | |
2192 | ||
2193 | ocfs2_set_target_boundaries(osb, wc, pos, len, cluster_of_pages); | |
3a307ffc | 2194 | |
9517bac6 MF |
2195 | handle = ocfs2_start_trans(osb, credits); |
2196 | if (IS_ERR(handle)) { | |
2197 | ret = PTR_ERR(handle); | |
2198 | mlog_errno(ret); | |
607d44aa | 2199 | goto out; |
9517bac6 MF |
2200 | } |
2201 | ||
3a307ffc MF |
2202 | wc->w_handle = handle; |
2203 | ||
5dd4056d CH |
2204 | if (clusters_to_alloc) { |
2205 | ret = dquot_alloc_space_nodirty(inode, | |
2206 | ocfs2_clusters_to_bytes(osb->sb, clusters_to_alloc)); | |
2207 | if (ret) | |
2208 | goto out_commit; | |
a90714c1 | 2209 | } |
7f27ec97 | 2210 | |
0cf2f763 | 2211 | ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), wc->w_di_bh, |
13723d00 | 2212 | OCFS2_JOURNAL_ACCESS_WRITE); |
3a307ffc | 2213 | if (ret) { |
9517bac6 | 2214 | mlog_errno(ret); |
a90714c1 | 2215 | goto out_quota; |
9517bac6 MF |
2216 | } |
2217 | ||
3a307ffc MF |
2218 | /* |
2219 | * Fill our page array first. That way we've grabbed enough so | |
2220 | * that we can zero and flush if we error after adding the | |
2221 | * extent. | |
2222 | */ | |
693c241a | 2223 | ret = ocfs2_grab_pages_for_write(mapping, wc, wc->w_cpos, pos, len, |
e7432675 | 2224 | cluster_of_pages, mmap_page); |
5cffff9e | 2225 | if (ret && ret != -EAGAIN) { |
9517bac6 | 2226 | mlog_errno(ret); |
a90714c1 | 2227 | goto out_quota; |
9517bac6 MF |
2228 | } |
2229 | ||
5cffff9e WW |
2230 | /* |
2231 | * ocfs2_grab_pages_for_write() returns -EAGAIN if it could not lock | |
2232 | * the target page. In this case, we exit with no error and no target | |
2233 | * page. This will trigger the caller, page_mkwrite(), to re-try | |
2234 | * the operation. | |
2235 | */ | |
2236 | if (ret == -EAGAIN) { | |
2237 | BUG_ON(wc->w_target_page); | |
2238 | ret = 0; | |
2239 | goto out_quota; | |
2240 | } | |
2241 | ||
0d172baa MF |
2242 | ret = ocfs2_write_cluster_by_desc(mapping, data_ac, meta_ac, wc, pos, |
2243 | len); | |
2244 | if (ret) { | |
2245 | mlog_errno(ret); | |
a90714c1 | 2246 | goto out_quota; |
9517bac6 | 2247 | } |
9517bac6 | 2248 | |
3a307ffc MF |
2249 | if (data_ac) |
2250 | ocfs2_free_alloc_context(data_ac); | |
2251 | if (meta_ac) | |
2252 | ocfs2_free_alloc_context(meta_ac); | |
9517bac6 | 2253 | |
1afc32b9 | 2254 | success: |
3a307ffc MF |
2255 | *pagep = wc->w_target_page; |
2256 | *fsdata = wc; | |
2257 | return 0; | |
a90714c1 JK |
2258 | out_quota: |
2259 | if (clusters_to_alloc) | |
5dd4056d | 2260 | dquot_free_space(inode, |
a90714c1 | 2261 | ocfs2_clusters_to_bytes(osb->sb, clusters_to_alloc)); |
9517bac6 MF |
2262 | out_commit: |
2263 | ocfs2_commit_trans(osb, handle); | |
2264 | ||
9517bac6 | 2265 | out: |
3a307ffc MF |
2266 | ocfs2_free_write_ctxt(wc); |
2267 | ||
b1214e47 | 2268 | if (data_ac) { |
9517bac6 | 2269 | ocfs2_free_alloc_context(data_ac); |
b1214e47 X |
2270 | data_ac = NULL; |
2271 | } | |
2272 | if (meta_ac) { | |
9517bac6 | 2273 | ocfs2_free_alloc_context(meta_ac); |
b1214e47 X |
2274 | meta_ac = NULL; |
2275 | } | |
50308d81 TM |
2276 | |
2277 | if (ret == -ENOSPC && try_free) { | |
2278 | /* | |
2279 | * Try to free some truncate log so that we can have enough | |
2280 | * clusters to allocate. | |
2281 | */ | |
2282 | try_free = 0; | |
2283 | ||
2284 | ret1 = ocfs2_try_to_free_truncate_log(osb, clusters_need); | |
2285 | if (ret1 == 1) | |
2286 | goto try_again; | |
2287 | ||
2288 | if (ret1 < 0) | |
2289 | mlog_errno(ret1); | |
2290 | } | |
2291 | ||
3a307ffc MF |
2292 | return ret; |
2293 | } | |
2294 | ||
b6af1bcd NP |
2295 | static int ocfs2_write_begin(struct file *file, struct address_space *mapping, |
2296 | loff_t pos, unsigned len, unsigned flags, | |
2297 | struct page **pagep, void **fsdata) | |
607d44aa MF |
2298 | { |
2299 | int ret; | |
2300 | struct buffer_head *di_bh = NULL; | |
2301 | struct inode *inode = mapping->host; | |
2302 | ||
e63aecb6 | 2303 | ret = ocfs2_inode_lock(inode, &di_bh, 1); |
607d44aa MF |
2304 | if (ret) { |
2305 | mlog_errno(ret); | |
2306 | return ret; | |
2307 | } | |
2308 | ||
2309 | /* | |
2310 | * Take alloc sem here to prevent concurrent lookups. That way | |
2311 | * the mapping, zeroing and tree manipulation within | |
2312 | * ocfs2_write() will be safe against ->readpage(). This | |
2313 | * should also serve to lock out allocation from a shared | |
2314 | * writeable region. | |
2315 | */ | |
2316 | down_write(&OCFS2_I(inode)->ip_alloc_sem); | |
2317 | ||
0378da0f | 2318 | ret = ocfs2_write_begin_nolock(file, mapping, pos, len, flags, pagep, |
7307de80 | 2319 | fsdata, di_bh, NULL); |
607d44aa MF |
2320 | if (ret) { |
2321 | mlog_errno(ret); | |
c934a92d | 2322 | goto out_fail; |
607d44aa MF |
2323 | } |
2324 | ||
2325 | brelse(di_bh); | |
2326 | ||
2327 | return 0; | |
2328 | ||
607d44aa MF |
2329 | out_fail: |
2330 | up_write(&OCFS2_I(inode)->ip_alloc_sem); | |
2331 | ||
2332 | brelse(di_bh); | |
e63aecb6 | 2333 | ocfs2_inode_unlock(inode, 1); |
607d44aa MF |
2334 | |
2335 | return ret; | |
2336 | } | |
2337 | ||
1afc32b9 MF |
2338 | static void ocfs2_write_end_inline(struct inode *inode, loff_t pos, |
2339 | unsigned len, unsigned *copied, | |
2340 | struct ocfs2_dinode *di, | |
2341 | struct ocfs2_write_ctxt *wc) | |
2342 | { | |
2343 | void *kaddr; | |
2344 | ||
2345 | if (unlikely(*copied < len)) { | |
2346 | if (!PageUptodate(wc->w_target_page)) { | |
2347 | *copied = 0; | |
2348 | return; | |
2349 | } | |
2350 | } | |
2351 | ||
c4bc8dcb | 2352 | kaddr = kmap_atomic(wc->w_target_page); |
1afc32b9 | 2353 | memcpy(di->id2.i_data.id_data + pos, kaddr + pos, *copied); |
c4bc8dcb | 2354 | kunmap_atomic(kaddr); |
1afc32b9 | 2355 | |
9558156b TM |
2356 | trace_ocfs2_write_end_inline( |
2357 | (unsigned long long)OCFS2_I(inode)->ip_blkno, | |
1afc32b9 MF |
2358 | (unsigned long long)pos, *copied, |
2359 | le16_to_cpu(di->id2.i_data.id_count), | |
2360 | le16_to_cpu(di->i_dyn_features)); | |
2361 | } | |
2362 | ||
7307de80 MF |
2363 | int ocfs2_write_end_nolock(struct address_space *mapping, |
2364 | loff_t pos, unsigned len, unsigned copied, | |
2365 | struct page *page, void *fsdata) | |
3a307ffc | 2366 | { |
7f27ec97 | 2367 | int i, ret; |
3a307ffc MF |
2368 | unsigned from, to, start = pos & (PAGE_CACHE_SIZE - 1); |
2369 | struct inode *inode = mapping->host; | |
2370 | struct ocfs2_super *osb = OCFS2_SB(inode->i_sb); | |
2371 | struct ocfs2_write_ctxt *wc = fsdata; | |
2372 | struct ocfs2_dinode *di = (struct ocfs2_dinode *)wc->w_di_bh->b_data; | |
2373 | handle_t *handle = wc->w_handle; | |
2374 | struct page *tmppage; | |
2375 | ||
7f27ec97 | 2376 | ret = ocfs2_journal_access_di(handle, INODE_CACHE(inode), wc->w_di_bh, |
2377 | OCFS2_JOURNAL_ACCESS_WRITE); | |
2378 | if (ret) { | |
2379 | copied = ret; | |
2380 | mlog_errno(ret); | |
2381 | goto out; | |
2382 | } | |
2383 | ||
1afc32b9 MF |
2384 | if (OCFS2_I(inode)->ip_dyn_features & OCFS2_INLINE_DATA_FL) { |
2385 | ocfs2_write_end_inline(inode, pos, len, &copied, di, wc); | |
2386 | goto out_write_size; | |
2387 | } | |
2388 | ||
3a307ffc MF |
2389 | if (unlikely(copied < len)) { |
2390 | if (!PageUptodate(wc->w_target_page)) | |
2391 | copied = 0; | |
2392 | ||
2393 | ocfs2_zero_new_buffers(wc->w_target_page, start+copied, | |
2394 | start+len); | |
2395 | } | |
2396 | flush_dcache_page(wc->w_target_page); | |
2397 | ||
2398 | for(i = 0; i < wc->w_num_pages; i++) { | |
2399 | tmppage = wc->w_pages[i]; | |
2400 | ||
2401 | if (tmppage == wc->w_target_page) { | |
2402 | from = wc->w_target_from; | |
2403 | to = wc->w_target_to; | |
2404 | ||
2405 | BUG_ON(from > PAGE_CACHE_SIZE || | |
2406 | to > PAGE_CACHE_SIZE || | |
2407 | to < from); | |
2408 | } else { | |
2409 | /* | |
2410 | * Pages adjacent to the target (if any) imply | |
2411 | * a hole-filling write in which case we want | |
2412 | * to flush their entire range. | |
2413 | */ | |
2414 | from = 0; | |
2415 | to = PAGE_CACHE_SIZE; | |
2416 | } | |
2417 | ||
961cecbe | 2418 | if (page_has_buffers(tmppage)) { |
53ef99ca | 2419 | if (ocfs2_should_order_data(inode)) |
2b4e30fb | 2420 | ocfs2_jbd2_file_inode(wc->w_handle, inode); |
961cecbe SM |
2421 | block_commit_write(tmppage, from, to); |
2422 | } | |
3a307ffc MF |
2423 | } |
2424 | ||
1afc32b9 | 2425 | out_write_size: |
3a307ffc | 2426 | pos += copied; |
f17c20dd | 2427 | if (pos > i_size_read(inode)) { |
3a307ffc MF |
2428 | i_size_write(inode, pos); |
2429 | mark_inode_dirty(inode); | |
2430 | } | |
2431 | inode->i_blocks = ocfs2_inode_sector_count(inode); | |
2432 | di->i_size = cpu_to_le64((u64)i_size_read(inode)); | |
2433 | inode->i_mtime = inode->i_ctime = CURRENT_TIME; | |
2434 | di->i_mtime = di->i_ctime = cpu_to_le64(inode->i_mtime.tv_sec); | |
2435 | di->i_mtime_nsec = di->i_ctime_nsec = cpu_to_le32(inode->i_mtime.tv_nsec); | |
2931cdcb | 2436 | ocfs2_update_inode_fsync_trans(handle, inode, 1); |
3a307ffc MF |
2437 | ocfs2_journal_dirty(handle, wc->w_di_bh); |
2438 | ||
7f27ec97 | 2439 | out: |
136f49b9 JB |
2440 | /* unlock pages before dealloc since it needs acquiring j_trans_barrier |
2441 | * lock, or it will cause a deadlock since journal commit threads holds | |
2442 | * this lock and will ask for the page lock when flushing the data. | |
2443 | * put it here to preserve the unlock order. | |
2444 | */ | |
2445 | ocfs2_unlock_pages(wc); | |
2446 | ||
3a307ffc | 2447 | ocfs2_commit_trans(osb, handle); |
59a5e416 | 2448 | |
b27b7cbc MF |
2449 | ocfs2_run_deallocs(osb, &wc->w_dealloc); |
2450 | ||
136f49b9 JB |
2451 | brelse(wc->w_di_bh); |
2452 | kfree(wc); | |
607d44aa MF |
2453 | |
2454 | return copied; | |
2455 | } | |
2456 | ||
b6af1bcd NP |
2457 | static int ocfs2_write_end(struct file *file, struct address_space *mapping, |
2458 | loff_t pos, unsigned len, unsigned copied, | |
2459 | struct page *page, void *fsdata) | |
607d44aa MF |
2460 | { |
2461 | int ret; | |
2462 | struct inode *inode = mapping->host; | |
2463 | ||
2464 | ret = ocfs2_write_end_nolock(mapping, pos, len, copied, page, fsdata); | |
2465 | ||
3a307ffc | 2466 | up_write(&OCFS2_I(inode)->ip_alloc_sem); |
e63aecb6 | 2467 | ocfs2_inode_unlock(inode, 1); |
9517bac6 | 2468 | |
607d44aa | 2469 | return ret; |
9517bac6 MF |
2470 | } |
2471 | ||
f5e54d6e | 2472 | const struct address_space_operations ocfs2_aops = { |
1fca3a05 HH |
2473 | .readpage = ocfs2_readpage, |
2474 | .readpages = ocfs2_readpages, | |
2475 | .writepage = ocfs2_writepage, | |
2476 | .write_begin = ocfs2_write_begin, | |
2477 | .write_end = ocfs2_write_end, | |
2478 | .bmap = ocfs2_bmap, | |
1fca3a05 | 2479 | .direct_IO = ocfs2_direct_IO, |
41ecc345 | 2480 | .invalidatepage = block_invalidatepage, |
1fca3a05 HH |
2481 | .releasepage = ocfs2_releasepage, |
2482 | .migratepage = buffer_migrate_page, | |
2483 | .is_partially_uptodate = block_is_partially_uptodate, | |
aa261f54 | 2484 | .error_remove_page = generic_error_remove_page, |
ccd979bd | 2485 | }; |