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6cbd5570 CM |
1 | /* |
2 | * Copyright (C) 2007 Oracle. All rights reserved. | |
3 | * | |
4 | * This program is free software; you can redistribute it and/or | |
5 | * modify it under the terms of the GNU General Public | |
6 | * License v2 as published by the Free Software Foundation. | |
7 | * | |
8 | * This program is distributed in the hope that it will be useful, | |
9 | * but WITHOUT ANY WARRANTY; without even the implied warranty of | |
10 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
11 | * General Public License for more details. | |
12 | * | |
13 | * You should have received a copy of the GNU General Public | |
14 | * License along with this program; if not, write to the | |
15 | * Free Software Foundation, Inc., 59 Temple Place - Suite 330, | |
16 | * Boston, MA 021110-1307, USA. | |
17 | */ | |
18 | ||
8f18cf13 | 19 | #include <linux/kernel.h> |
065631f6 | 20 | #include <linux/bio.h> |
39279cc3 | 21 | #include <linux/buffer_head.h> |
f2eb0a24 | 22 | #include <linux/file.h> |
39279cc3 CM |
23 | #include <linux/fs.h> |
24 | #include <linux/pagemap.h> | |
25 | #include <linux/highmem.h> | |
26 | #include <linux/time.h> | |
27 | #include <linux/init.h> | |
28 | #include <linux/string.h> | |
39279cc3 CM |
29 | #include <linux/backing-dev.h> |
30 | #include <linux/mpage.h> | |
31 | #include <linux/swap.h> | |
32 | #include <linux/writeback.h> | |
33 | #include <linux/statfs.h> | |
34 | #include <linux/compat.h> | |
a27bb332 | 35 | #include <linux/aio.h> |
9ebefb18 | 36 | #include <linux/bit_spinlock.h> |
5103e947 | 37 | #include <linux/xattr.h> |
33268eaf | 38 | #include <linux/posix_acl.h> |
d899e052 | 39 | #include <linux/falloc.h> |
5a0e3ad6 | 40 | #include <linux/slab.h> |
7a36ddec | 41 | #include <linux/ratelimit.h> |
22c44fe6 | 42 | #include <linux/mount.h> |
55e301fd | 43 | #include <linux/btrfs.h> |
53b381b3 | 44 | #include <linux/blkdev.h> |
f23b5a59 | 45 | #include <linux/posix_acl_xattr.h> |
39279cc3 CM |
46 | #include "ctree.h" |
47 | #include "disk-io.h" | |
48 | #include "transaction.h" | |
49 | #include "btrfs_inode.h" | |
39279cc3 | 50 | #include "print-tree.h" |
e6dcd2dc | 51 | #include "ordered-data.h" |
95819c05 | 52 | #include "xattr.h" |
e02119d5 | 53 | #include "tree-log.h" |
4a54c8c1 | 54 | #include "volumes.h" |
c8b97818 | 55 | #include "compression.h" |
b4ce94de | 56 | #include "locking.h" |
dc89e982 | 57 | #include "free-space-cache.h" |
581bb050 | 58 | #include "inode-map.h" |
38c227d8 | 59 | #include "backref.h" |
f23b5a59 | 60 | #include "hash.h" |
63541927 | 61 | #include "props.h" |
39279cc3 CM |
62 | |
63 | struct btrfs_iget_args { | |
90d3e592 | 64 | struct btrfs_key *location; |
39279cc3 CM |
65 | struct btrfs_root *root; |
66 | }; | |
67 | ||
6e1d5dcc AD |
68 | static const struct inode_operations btrfs_dir_inode_operations; |
69 | static const struct inode_operations btrfs_symlink_inode_operations; | |
70 | static const struct inode_operations btrfs_dir_ro_inode_operations; | |
71 | static const struct inode_operations btrfs_special_inode_operations; | |
72 | static const struct inode_operations btrfs_file_inode_operations; | |
7f09410b AD |
73 | static const struct address_space_operations btrfs_aops; |
74 | static const struct address_space_operations btrfs_symlink_aops; | |
828c0950 | 75 | static const struct file_operations btrfs_dir_file_operations; |
d1310b2e | 76 | static struct extent_io_ops btrfs_extent_io_ops; |
39279cc3 CM |
77 | |
78 | static struct kmem_cache *btrfs_inode_cachep; | |
8ccf6f19 | 79 | static struct kmem_cache *btrfs_delalloc_work_cachep; |
39279cc3 CM |
80 | struct kmem_cache *btrfs_trans_handle_cachep; |
81 | struct kmem_cache *btrfs_transaction_cachep; | |
39279cc3 | 82 | struct kmem_cache *btrfs_path_cachep; |
dc89e982 | 83 | struct kmem_cache *btrfs_free_space_cachep; |
39279cc3 CM |
84 | |
85 | #define S_SHIFT 12 | |
86 | static unsigned char btrfs_type_by_mode[S_IFMT >> S_SHIFT] = { | |
87 | [S_IFREG >> S_SHIFT] = BTRFS_FT_REG_FILE, | |
88 | [S_IFDIR >> S_SHIFT] = BTRFS_FT_DIR, | |
89 | [S_IFCHR >> S_SHIFT] = BTRFS_FT_CHRDEV, | |
90 | [S_IFBLK >> S_SHIFT] = BTRFS_FT_BLKDEV, | |
91 | [S_IFIFO >> S_SHIFT] = BTRFS_FT_FIFO, | |
92 | [S_IFSOCK >> S_SHIFT] = BTRFS_FT_SOCK, | |
93 | [S_IFLNK >> S_SHIFT] = BTRFS_FT_SYMLINK, | |
94 | }; | |
95 | ||
3972f260 | 96 | static int btrfs_setsize(struct inode *inode, struct iattr *attr); |
a41ad394 | 97 | static int btrfs_truncate(struct inode *inode); |
5fd02043 | 98 | static int btrfs_finish_ordered_io(struct btrfs_ordered_extent *ordered_extent); |
771ed689 CM |
99 | static noinline int cow_file_range(struct inode *inode, |
100 | struct page *locked_page, | |
101 | u64 start, u64 end, int *page_started, | |
102 | unsigned long *nr_written, int unlock); | |
70c8a91c JB |
103 | static struct extent_map *create_pinned_em(struct inode *inode, u64 start, |
104 | u64 len, u64 orig_start, | |
105 | u64 block_start, u64 block_len, | |
cc95bef6 JB |
106 | u64 orig_block_len, u64 ram_bytes, |
107 | int type); | |
7b128766 | 108 | |
48a3b636 | 109 | static int btrfs_dirty_inode(struct inode *inode); |
7b128766 | 110 | |
f34f57a3 | 111 | static int btrfs_init_inode_security(struct btrfs_trans_handle *trans, |
2a7dba39 EP |
112 | struct inode *inode, struct inode *dir, |
113 | const struct qstr *qstr) | |
0279b4cd JO |
114 | { |
115 | int err; | |
116 | ||
f34f57a3 | 117 | err = btrfs_init_acl(trans, inode, dir); |
0279b4cd | 118 | if (!err) |
2a7dba39 | 119 | err = btrfs_xattr_security_init(trans, inode, dir, qstr); |
0279b4cd JO |
120 | return err; |
121 | } | |
122 | ||
c8b97818 CM |
123 | /* |
124 | * this does all the hard work for inserting an inline extent into | |
125 | * the btree. The caller should have done a btrfs_drop_extents so that | |
126 | * no overlapping inline items exist in the btree | |
127 | */ | |
d397712b | 128 | static noinline int insert_inline_extent(struct btrfs_trans_handle *trans, |
1acae57b | 129 | struct btrfs_path *path, int extent_inserted, |
c8b97818 CM |
130 | struct btrfs_root *root, struct inode *inode, |
131 | u64 start, size_t size, size_t compressed_size, | |
fe3f566c | 132 | int compress_type, |
c8b97818 CM |
133 | struct page **compressed_pages) |
134 | { | |
c8b97818 CM |
135 | struct extent_buffer *leaf; |
136 | struct page *page = NULL; | |
137 | char *kaddr; | |
138 | unsigned long ptr; | |
139 | struct btrfs_file_extent_item *ei; | |
140 | int err = 0; | |
141 | int ret; | |
142 | size_t cur_size = size; | |
c8b97818 | 143 | unsigned long offset; |
c8b97818 | 144 | |
fe3f566c | 145 | if (compressed_size && compressed_pages) |
c8b97818 | 146 | cur_size = compressed_size; |
c8b97818 | 147 | |
1acae57b | 148 | inode_add_bytes(inode, size); |
c8b97818 | 149 | |
1acae57b FDBM |
150 | if (!extent_inserted) { |
151 | struct btrfs_key key; | |
152 | size_t datasize; | |
c8b97818 | 153 | |
1acae57b FDBM |
154 | key.objectid = btrfs_ino(inode); |
155 | key.offset = start; | |
156 | btrfs_set_key_type(&key, BTRFS_EXTENT_DATA_KEY); | |
c8b97818 | 157 | |
1acae57b FDBM |
158 | datasize = btrfs_file_extent_calc_inline_size(cur_size); |
159 | path->leave_spinning = 1; | |
160 | ret = btrfs_insert_empty_item(trans, root, path, &key, | |
161 | datasize); | |
162 | if (ret) { | |
163 | err = ret; | |
164 | goto fail; | |
165 | } | |
c8b97818 CM |
166 | } |
167 | leaf = path->nodes[0]; | |
168 | ei = btrfs_item_ptr(leaf, path->slots[0], | |
169 | struct btrfs_file_extent_item); | |
170 | btrfs_set_file_extent_generation(leaf, ei, trans->transid); | |
171 | btrfs_set_file_extent_type(leaf, ei, BTRFS_FILE_EXTENT_INLINE); | |
172 | btrfs_set_file_extent_encryption(leaf, ei, 0); | |
173 | btrfs_set_file_extent_other_encoding(leaf, ei, 0); | |
174 | btrfs_set_file_extent_ram_bytes(leaf, ei, size); | |
175 | ptr = btrfs_file_extent_inline_start(ei); | |
176 | ||
261507a0 | 177 | if (compress_type != BTRFS_COMPRESS_NONE) { |
c8b97818 CM |
178 | struct page *cpage; |
179 | int i = 0; | |
d397712b | 180 | while (compressed_size > 0) { |
c8b97818 | 181 | cpage = compressed_pages[i]; |
5b050f04 | 182 | cur_size = min_t(unsigned long, compressed_size, |
c8b97818 CM |
183 | PAGE_CACHE_SIZE); |
184 | ||
7ac687d9 | 185 | kaddr = kmap_atomic(cpage); |
c8b97818 | 186 | write_extent_buffer(leaf, kaddr, ptr, cur_size); |
7ac687d9 | 187 | kunmap_atomic(kaddr); |
c8b97818 CM |
188 | |
189 | i++; | |
190 | ptr += cur_size; | |
191 | compressed_size -= cur_size; | |
192 | } | |
193 | btrfs_set_file_extent_compression(leaf, ei, | |
261507a0 | 194 | compress_type); |
c8b97818 CM |
195 | } else { |
196 | page = find_get_page(inode->i_mapping, | |
197 | start >> PAGE_CACHE_SHIFT); | |
198 | btrfs_set_file_extent_compression(leaf, ei, 0); | |
7ac687d9 | 199 | kaddr = kmap_atomic(page); |
c8b97818 CM |
200 | offset = start & (PAGE_CACHE_SIZE - 1); |
201 | write_extent_buffer(leaf, kaddr + offset, ptr, size); | |
7ac687d9 | 202 | kunmap_atomic(kaddr); |
c8b97818 CM |
203 | page_cache_release(page); |
204 | } | |
205 | btrfs_mark_buffer_dirty(leaf); | |
1acae57b | 206 | btrfs_release_path(path); |
c8b97818 | 207 | |
c2167754 YZ |
208 | /* |
209 | * we're an inline extent, so nobody can | |
210 | * extend the file past i_size without locking | |
211 | * a page we already have locked. | |
212 | * | |
213 | * We must do any isize and inode updates | |
214 | * before we unlock the pages. Otherwise we | |
215 | * could end up racing with unlink. | |
216 | */ | |
c8b97818 | 217 | BTRFS_I(inode)->disk_i_size = inode->i_size; |
79787eaa | 218 | ret = btrfs_update_inode(trans, root, inode); |
c2167754 | 219 | |
79787eaa | 220 | return ret; |
c8b97818 | 221 | fail: |
c8b97818 CM |
222 | return err; |
223 | } | |
224 | ||
225 | ||
226 | /* | |
227 | * conditionally insert an inline extent into the file. This | |
228 | * does the checks required to make sure the data is small enough | |
229 | * to fit as an inline extent. | |
230 | */ | |
00361589 JB |
231 | static noinline int cow_file_range_inline(struct btrfs_root *root, |
232 | struct inode *inode, u64 start, | |
233 | u64 end, size_t compressed_size, | |
234 | int compress_type, | |
235 | struct page **compressed_pages) | |
c8b97818 | 236 | { |
00361589 | 237 | struct btrfs_trans_handle *trans; |
c8b97818 CM |
238 | u64 isize = i_size_read(inode); |
239 | u64 actual_end = min(end + 1, isize); | |
240 | u64 inline_len = actual_end - start; | |
fda2832f | 241 | u64 aligned_end = ALIGN(end, root->sectorsize); |
c8b97818 CM |
242 | u64 data_len = inline_len; |
243 | int ret; | |
1acae57b FDBM |
244 | struct btrfs_path *path; |
245 | int extent_inserted = 0; | |
246 | u32 extent_item_size; | |
c8b97818 CM |
247 | |
248 | if (compressed_size) | |
249 | data_len = compressed_size; | |
250 | ||
251 | if (start > 0 || | |
70b99e69 | 252 | actual_end >= PAGE_CACHE_SIZE || |
c8b97818 CM |
253 | data_len >= BTRFS_MAX_INLINE_DATA_SIZE(root) || |
254 | (!compressed_size && | |
255 | (actual_end & (root->sectorsize - 1)) == 0) || | |
256 | end + 1 < isize || | |
257 | data_len > root->fs_info->max_inline) { | |
258 | return 1; | |
259 | } | |
260 | ||
1acae57b FDBM |
261 | path = btrfs_alloc_path(); |
262 | if (!path) | |
263 | return -ENOMEM; | |
264 | ||
00361589 | 265 | trans = btrfs_join_transaction(root); |
1acae57b FDBM |
266 | if (IS_ERR(trans)) { |
267 | btrfs_free_path(path); | |
00361589 | 268 | return PTR_ERR(trans); |
1acae57b | 269 | } |
00361589 JB |
270 | trans->block_rsv = &root->fs_info->delalloc_block_rsv; |
271 | ||
1acae57b FDBM |
272 | if (compressed_size && compressed_pages) |
273 | extent_item_size = btrfs_file_extent_calc_inline_size( | |
274 | compressed_size); | |
275 | else | |
276 | extent_item_size = btrfs_file_extent_calc_inline_size( | |
277 | inline_len); | |
278 | ||
279 | ret = __btrfs_drop_extents(trans, root, inode, path, | |
280 | start, aligned_end, NULL, | |
281 | 1, 1, extent_item_size, &extent_inserted); | |
00361589 JB |
282 | if (ret) { |
283 | btrfs_abort_transaction(trans, root, ret); | |
284 | goto out; | |
285 | } | |
c8b97818 CM |
286 | |
287 | if (isize > actual_end) | |
288 | inline_len = min_t(u64, isize, actual_end); | |
1acae57b FDBM |
289 | ret = insert_inline_extent(trans, path, extent_inserted, |
290 | root, inode, start, | |
c8b97818 | 291 | inline_len, compressed_size, |
fe3f566c | 292 | compress_type, compressed_pages); |
2adcac1a | 293 | if (ret && ret != -ENOSPC) { |
79787eaa | 294 | btrfs_abort_transaction(trans, root, ret); |
00361589 | 295 | goto out; |
2adcac1a | 296 | } else if (ret == -ENOSPC) { |
00361589 JB |
297 | ret = 1; |
298 | goto out; | |
79787eaa | 299 | } |
2adcac1a | 300 | |
bdc20e67 | 301 | set_bit(BTRFS_INODE_NEEDS_FULL_SYNC, &BTRFS_I(inode)->runtime_flags); |
0ca1f7ce | 302 | btrfs_delalloc_release_metadata(inode, end + 1 - start); |
a1ed835e | 303 | btrfs_drop_extent_cache(inode, start, aligned_end - 1, 0); |
00361589 | 304 | out: |
1acae57b | 305 | btrfs_free_path(path); |
00361589 JB |
306 | btrfs_end_transaction(trans, root); |
307 | return ret; | |
c8b97818 CM |
308 | } |
309 | ||
771ed689 CM |
310 | struct async_extent { |
311 | u64 start; | |
312 | u64 ram_size; | |
313 | u64 compressed_size; | |
314 | struct page **pages; | |
315 | unsigned long nr_pages; | |
261507a0 | 316 | int compress_type; |
771ed689 CM |
317 | struct list_head list; |
318 | }; | |
319 | ||
320 | struct async_cow { | |
321 | struct inode *inode; | |
322 | struct btrfs_root *root; | |
323 | struct page *locked_page; | |
324 | u64 start; | |
325 | u64 end; | |
326 | struct list_head extents; | |
327 | struct btrfs_work work; | |
328 | }; | |
329 | ||
330 | static noinline int add_async_extent(struct async_cow *cow, | |
331 | u64 start, u64 ram_size, | |
332 | u64 compressed_size, | |
333 | struct page **pages, | |
261507a0 LZ |
334 | unsigned long nr_pages, |
335 | int compress_type) | |
771ed689 CM |
336 | { |
337 | struct async_extent *async_extent; | |
338 | ||
339 | async_extent = kmalloc(sizeof(*async_extent), GFP_NOFS); | |
79787eaa | 340 | BUG_ON(!async_extent); /* -ENOMEM */ |
771ed689 CM |
341 | async_extent->start = start; |
342 | async_extent->ram_size = ram_size; | |
343 | async_extent->compressed_size = compressed_size; | |
344 | async_extent->pages = pages; | |
345 | async_extent->nr_pages = nr_pages; | |
261507a0 | 346 | async_extent->compress_type = compress_type; |
771ed689 CM |
347 | list_add_tail(&async_extent->list, &cow->extents); |
348 | return 0; | |
349 | } | |
350 | ||
d352ac68 | 351 | /* |
771ed689 CM |
352 | * we create compressed extents in two phases. The first |
353 | * phase compresses a range of pages that have already been | |
354 | * locked (both pages and state bits are locked). | |
c8b97818 | 355 | * |
771ed689 CM |
356 | * This is done inside an ordered work queue, and the compression |
357 | * is spread across many cpus. The actual IO submission is step | |
358 | * two, and the ordered work queue takes care of making sure that | |
359 | * happens in the same order things were put onto the queue by | |
360 | * writepages and friends. | |
c8b97818 | 361 | * |
771ed689 CM |
362 | * If this code finds it can't get good compression, it puts an |
363 | * entry onto the work queue to write the uncompressed bytes. This | |
364 | * makes sure that both compressed inodes and uncompressed inodes | |
b2570314 AB |
365 | * are written in the same order that the flusher thread sent them |
366 | * down. | |
d352ac68 | 367 | */ |
771ed689 CM |
368 | static noinline int compress_file_range(struct inode *inode, |
369 | struct page *locked_page, | |
370 | u64 start, u64 end, | |
371 | struct async_cow *async_cow, | |
372 | int *num_added) | |
b888db2b CM |
373 | { |
374 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
db94535d | 375 | u64 num_bytes; |
db94535d | 376 | u64 blocksize = root->sectorsize; |
c8b97818 | 377 | u64 actual_end; |
42dc7bab | 378 | u64 isize = i_size_read(inode); |
e6dcd2dc | 379 | int ret = 0; |
c8b97818 CM |
380 | struct page **pages = NULL; |
381 | unsigned long nr_pages; | |
382 | unsigned long nr_pages_ret = 0; | |
383 | unsigned long total_compressed = 0; | |
384 | unsigned long total_in = 0; | |
385 | unsigned long max_compressed = 128 * 1024; | |
771ed689 | 386 | unsigned long max_uncompressed = 128 * 1024; |
c8b97818 CM |
387 | int i; |
388 | int will_compress; | |
261507a0 | 389 | int compress_type = root->fs_info->compress_type; |
4adaa611 | 390 | int redirty = 0; |
b888db2b | 391 | |
4cb13e5d LB |
392 | /* if this is a small write inside eof, kick off a defrag */ |
393 | if ((end - start + 1) < 16 * 1024 && | |
394 | (start > 0 || end + 1 < BTRFS_I(inode)->disk_i_size)) | |
4cb5300b CM |
395 | btrfs_add_inode_defrag(NULL, inode); |
396 | ||
42dc7bab | 397 | actual_end = min_t(u64, isize, end + 1); |
c8b97818 CM |
398 | again: |
399 | will_compress = 0; | |
400 | nr_pages = (end >> PAGE_CACHE_SHIFT) - (start >> PAGE_CACHE_SHIFT) + 1; | |
401 | nr_pages = min(nr_pages, (128 * 1024UL) / PAGE_CACHE_SIZE); | |
be20aa9d | 402 | |
f03d9301 CM |
403 | /* |
404 | * we don't want to send crud past the end of i_size through | |
405 | * compression, that's just a waste of CPU time. So, if the | |
406 | * end of the file is before the start of our current | |
407 | * requested range of bytes, we bail out to the uncompressed | |
408 | * cleanup code that can deal with all of this. | |
409 | * | |
410 | * It isn't really the fastest way to fix things, but this is a | |
411 | * very uncommon corner. | |
412 | */ | |
413 | if (actual_end <= start) | |
414 | goto cleanup_and_bail_uncompressed; | |
415 | ||
c8b97818 CM |
416 | total_compressed = actual_end - start; |
417 | ||
418 | /* we want to make sure that amount of ram required to uncompress | |
419 | * an extent is reasonable, so we limit the total size in ram | |
771ed689 CM |
420 | * of a compressed extent to 128k. This is a crucial number |
421 | * because it also controls how easily we can spread reads across | |
422 | * cpus for decompression. | |
423 | * | |
424 | * We also want to make sure the amount of IO required to do | |
425 | * a random read is reasonably small, so we limit the size of | |
426 | * a compressed extent to 128k. | |
c8b97818 CM |
427 | */ |
428 | total_compressed = min(total_compressed, max_uncompressed); | |
fda2832f | 429 | num_bytes = ALIGN(end - start + 1, blocksize); |
be20aa9d | 430 | num_bytes = max(blocksize, num_bytes); |
c8b97818 CM |
431 | total_in = 0; |
432 | ret = 0; | |
db94535d | 433 | |
771ed689 CM |
434 | /* |
435 | * we do compression for mount -o compress and when the | |
436 | * inode has not been flagged as nocompress. This flag can | |
437 | * change at any time if we discover bad compression ratios. | |
c8b97818 | 438 | */ |
6cbff00f | 439 | if (!(BTRFS_I(inode)->flags & BTRFS_INODE_NOCOMPRESS) && |
1e701a32 | 440 | (btrfs_test_opt(root, COMPRESS) || |
75e7cb7f LB |
441 | (BTRFS_I(inode)->force_compress) || |
442 | (BTRFS_I(inode)->flags & BTRFS_INODE_COMPRESS))) { | |
c8b97818 | 443 | WARN_ON(pages); |
cfbc246e | 444 | pages = kzalloc(sizeof(struct page *) * nr_pages, GFP_NOFS); |
560f7d75 LZ |
445 | if (!pages) { |
446 | /* just bail out to the uncompressed code */ | |
447 | goto cont; | |
448 | } | |
c8b97818 | 449 | |
261507a0 LZ |
450 | if (BTRFS_I(inode)->force_compress) |
451 | compress_type = BTRFS_I(inode)->force_compress; | |
452 | ||
4adaa611 CM |
453 | /* |
454 | * we need to call clear_page_dirty_for_io on each | |
455 | * page in the range. Otherwise applications with the file | |
456 | * mmap'd can wander in and change the page contents while | |
457 | * we are compressing them. | |
458 | * | |
459 | * If the compression fails for any reason, we set the pages | |
460 | * dirty again later on. | |
461 | */ | |
462 | extent_range_clear_dirty_for_io(inode, start, end); | |
463 | redirty = 1; | |
261507a0 LZ |
464 | ret = btrfs_compress_pages(compress_type, |
465 | inode->i_mapping, start, | |
466 | total_compressed, pages, | |
467 | nr_pages, &nr_pages_ret, | |
468 | &total_in, | |
469 | &total_compressed, | |
470 | max_compressed); | |
c8b97818 CM |
471 | |
472 | if (!ret) { | |
473 | unsigned long offset = total_compressed & | |
474 | (PAGE_CACHE_SIZE - 1); | |
475 | struct page *page = pages[nr_pages_ret - 1]; | |
476 | char *kaddr; | |
477 | ||
478 | /* zero the tail end of the last page, we might be | |
479 | * sending it down to disk | |
480 | */ | |
481 | if (offset) { | |
7ac687d9 | 482 | kaddr = kmap_atomic(page); |
c8b97818 CM |
483 | memset(kaddr + offset, 0, |
484 | PAGE_CACHE_SIZE - offset); | |
7ac687d9 | 485 | kunmap_atomic(kaddr); |
c8b97818 CM |
486 | } |
487 | will_compress = 1; | |
488 | } | |
489 | } | |
560f7d75 | 490 | cont: |
c8b97818 CM |
491 | if (start == 0) { |
492 | /* lets try to make an inline extent */ | |
771ed689 | 493 | if (ret || total_in < (actual_end - start)) { |
c8b97818 | 494 | /* we didn't compress the entire range, try |
771ed689 | 495 | * to make an uncompressed inline extent. |
c8b97818 | 496 | */ |
00361589 JB |
497 | ret = cow_file_range_inline(root, inode, start, end, |
498 | 0, 0, NULL); | |
c8b97818 | 499 | } else { |
771ed689 | 500 | /* try making a compressed inline extent */ |
00361589 | 501 | ret = cow_file_range_inline(root, inode, start, end, |
fe3f566c LZ |
502 | total_compressed, |
503 | compress_type, pages); | |
c8b97818 | 504 | } |
79787eaa | 505 | if (ret <= 0) { |
151a41bc JB |
506 | unsigned long clear_flags = EXTENT_DELALLOC | |
507 | EXTENT_DEFRAG; | |
508 | clear_flags |= (ret < 0) ? EXTENT_DO_ACCOUNTING : 0; | |
509 | ||
771ed689 | 510 | /* |
79787eaa JM |
511 | * inline extent creation worked or returned error, |
512 | * we don't need to create any more async work items. | |
513 | * Unlock and free up our temp pages. | |
771ed689 | 514 | */ |
c2790a2e | 515 | extent_clear_unlock_delalloc(inode, start, end, NULL, |
151a41bc | 516 | clear_flags, PAGE_UNLOCK | |
c2790a2e JB |
517 | PAGE_CLEAR_DIRTY | |
518 | PAGE_SET_WRITEBACK | | |
519 | PAGE_END_WRITEBACK); | |
c8b97818 CM |
520 | goto free_pages_out; |
521 | } | |
522 | } | |
523 | ||
524 | if (will_compress) { | |
525 | /* | |
526 | * we aren't doing an inline extent round the compressed size | |
527 | * up to a block size boundary so the allocator does sane | |
528 | * things | |
529 | */ | |
fda2832f | 530 | total_compressed = ALIGN(total_compressed, blocksize); |
c8b97818 CM |
531 | |
532 | /* | |
533 | * one last check to make sure the compression is really a | |
534 | * win, compare the page count read with the blocks on disk | |
535 | */ | |
fda2832f | 536 | total_in = ALIGN(total_in, PAGE_CACHE_SIZE); |
c8b97818 CM |
537 | if (total_compressed >= total_in) { |
538 | will_compress = 0; | |
539 | } else { | |
c8b97818 CM |
540 | num_bytes = total_in; |
541 | } | |
542 | } | |
543 | if (!will_compress && pages) { | |
544 | /* | |
545 | * the compression code ran but failed to make things smaller, | |
546 | * free any pages it allocated and our page pointer array | |
547 | */ | |
548 | for (i = 0; i < nr_pages_ret; i++) { | |
70b99e69 | 549 | WARN_ON(pages[i]->mapping); |
c8b97818 CM |
550 | page_cache_release(pages[i]); |
551 | } | |
552 | kfree(pages); | |
553 | pages = NULL; | |
554 | total_compressed = 0; | |
555 | nr_pages_ret = 0; | |
556 | ||
557 | /* flag the file so we don't compress in the future */ | |
1e701a32 CM |
558 | if (!btrfs_test_opt(root, FORCE_COMPRESS) && |
559 | !(BTRFS_I(inode)->force_compress)) { | |
a555f810 | 560 | BTRFS_I(inode)->flags |= BTRFS_INODE_NOCOMPRESS; |
1e701a32 | 561 | } |
c8b97818 | 562 | } |
771ed689 CM |
563 | if (will_compress) { |
564 | *num_added += 1; | |
c8b97818 | 565 | |
771ed689 CM |
566 | /* the async work queues will take care of doing actual |
567 | * allocation on disk for these compressed pages, | |
568 | * and will submit them to the elevator. | |
569 | */ | |
570 | add_async_extent(async_cow, start, num_bytes, | |
261507a0 LZ |
571 | total_compressed, pages, nr_pages_ret, |
572 | compress_type); | |
179e29e4 | 573 | |
24ae6365 | 574 | if (start + num_bytes < end) { |
771ed689 CM |
575 | start += num_bytes; |
576 | pages = NULL; | |
577 | cond_resched(); | |
578 | goto again; | |
579 | } | |
580 | } else { | |
f03d9301 | 581 | cleanup_and_bail_uncompressed: |
771ed689 CM |
582 | /* |
583 | * No compression, but we still need to write the pages in | |
584 | * the file we've been given so far. redirty the locked | |
585 | * page if it corresponds to our extent and set things up | |
586 | * for the async work queue to run cow_file_range to do | |
587 | * the normal delalloc dance | |
588 | */ | |
589 | if (page_offset(locked_page) >= start && | |
590 | page_offset(locked_page) <= end) { | |
591 | __set_page_dirty_nobuffers(locked_page); | |
592 | /* unlocked later on in the async handlers */ | |
593 | } | |
4adaa611 CM |
594 | if (redirty) |
595 | extent_range_redirty_for_io(inode, start, end); | |
261507a0 LZ |
596 | add_async_extent(async_cow, start, end - start + 1, |
597 | 0, NULL, 0, BTRFS_COMPRESS_NONE); | |
771ed689 CM |
598 | *num_added += 1; |
599 | } | |
3b951516 | 600 | |
771ed689 | 601 | out: |
79787eaa | 602 | return ret; |
771ed689 CM |
603 | |
604 | free_pages_out: | |
605 | for (i = 0; i < nr_pages_ret; i++) { | |
606 | WARN_ON(pages[i]->mapping); | |
607 | page_cache_release(pages[i]); | |
608 | } | |
d397712b | 609 | kfree(pages); |
771ed689 CM |
610 | |
611 | goto out; | |
612 | } | |
613 | ||
614 | /* | |
615 | * phase two of compressed writeback. This is the ordered portion | |
616 | * of the code, which only gets called in the order the work was | |
617 | * queued. We walk all the async extents created by compress_file_range | |
618 | * and send them down to the disk. | |
619 | */ | |
620 | static noinline int submit_compressed_extents(struct inode *inode, | |
621 | struct async_cow *async_cow) | |
622 | { | |
623 | struct async_extent *async_extent; | |
624 | u64 alloc_hint = 0; | |
771ed689 CM |
625 | struct btrfs_key ins; |
626 | struct extent_map *em; | |
627 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
628 | struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree; | |
629 | struct extent_io_tree *io_tree; | |
f5a84ee3 | 630 | int ret = 0; |
771ed689 CM |
631 | |
632 | if (list_empty(&async_cow->extents)) | |
633 | return 0; | |
634 | ||
3e04e7f1 | 635 | again: |
d397712b | 636 | while (!list_empty(&async_cow->extents)) { |
771ed689 CM |
637 | async_extent = list_entry(async_cow->extents.next, |
638 | struct async_extent, list); | |
639 | list_del(&async_extent->list); | |
c8b97818 | 640 | |
771ed689 CM |
641 | io_tree = &BTRFS_I(inode)->io_tree; |
642 | ||
f5a84ee3 | 643 | retry: |
771ed689 CM |
644 | /* did the compression code fall back to uncompressed IO? */ |
645 | if (!async_extent->pages) { | |
646 | int page_started = 0; | |
647 | unsigned long nr_written = 0; | |
648 | ||
649 | lock_extent(io_tree, async_extent->start, | |
2ac55d41 | 650 | async_extent->start + |
d0082371 | 651 | async_extent->ram_size - 1); |
771ed689 CM |
652 | |
653 | /* allocate blocks */ | |
f5a84ee3 JB |
654 | ret = cow_file_range(inode, async_cow->locked_page, |
655 | async_extent->start, | |
656 | async_extent->start + | |
657 | async_extent->ram_size - 1, | |
658 | &page_started, &nr_written, 0); | |
771ed689 | 659 | |
79787eaa JM |
660 | /* JDM XXX */ |
661 | ||
771ed689 CM |
662 | /* |
663 | * if page_started, cow_file_range inserted an | |
664 | * inline extent and took care of all the unlocking | |
665 | * and IO for us. Otherwise, we need to submit | |
666 | * all those pages down to the drive. | |
667 | */ | |
f5a84ee3 | 668 | if (!page_started && !ret) |
771ed689 CM |
669 | extent_write_locked_range(io_tree, |
670 | inode, async_extent->start, | |
d397712b | 671 | async_extent->start + |
771ed689 CM |
672 | async_extent->ram_size - 1, |
673 | btrfs_get_extent, | |
674 | WB_SYNC_ALL); | |
3e04e7f1 JB |
675 | else if (ret) |
676 | unlock_page(async_cow->locked_page); | |
771ed689 CM |
677 | kfree(async_extent); |
678 | cond_resched(); | |
679 | continue; | |
680 | } | |
681 | ||
682 | lock_extent(io_tree, async_extent->start, | |
d0082371 | 683 | async_extent->start + async_extent->ram_size - 1); |
771ed689 | 684 | |
00361589 | 685 | ret = btrfs_reserve_extent(root, |
771ed689 CM |
686 | async_extent->compressed_size, |
687 | async_extent->compressed_size, | |
81c9ad23 | 688 | 0, alloc_hint, &ins, 1); |
f5a84ee3 JB |
689 | if (ret) { |
690 | int i; | |
3e04e7f1 | 691 | |
f5a84ee3 JB |
692 | for (i = 0; i < async_extent->nr_pages; i++) { |
693 | WARN_ON(async_extent->pages[i]->mapping); | |
694 | page_cache_release(async_extent->pages[i]); | |
695 | } | |
696 | kfree(async_extent->pages); | |
697 | async_extent->nr_pages = 0; | |
698 | async_extent->pages = NULL; | |
3e04e7f1 | 699 | |
fdf8e2ea JB |
700 | if (ret == -ENOSPC) { |
701 | unlock_extent(io_tree, async_extent->start, | |
702 | async_extent->start + | |
703 | async_extent->ram_size - 1); | |
79787eaa | 704 | goto retry; |
fdf8e2ea | 705 | } |
3e04e7f1 | 706 | goto out_free; |
f5a84ee3 JB |
707 | } |
708 | ||
c2167754 YZ |
709 | /* |
710 | * here we're doing allocation and writeback of the | |
711 | * compressed pages | |
712 | */ | |
713 | btrfs_drop_extent_cache(inode, async_extent->start, | |
714 | async_extent->start + | |
715 | async_extent->ram_size - 1, 0); | |
716 | ||
172ddd60 | 717 | em = alloc_extent_map(); |
b9aa55be LB |
718 | if (!em) { |
719 | ret = -ENOMEM; | |
3e04e7f1 | 720 | goto out_free_reserve; |
b9aa55be | 721 | } |
771ed689 CM |
722 | em->start = async_extent->start; |
723 | em->len = async_extent->ram_size; | |
445a6944 | 724 | em->orig_start = em->start; |
2ab28f32 JB |
725 | em->mod_start = em->start; |
726 | em->mod_len = em->len; | |
c8b97818 | 727 | |
771ed689 CM |
728 | em->block_start = ins.objectid; |
729 | em->block_len = ins.offset; | |
b4939680 | 730 | em->orig_block_len = ins.offset; |
cc95bef6 | 731 | em->ram_bytes = async_extent->ram_size; |
771ed689 | 732 | em->bdev = root->fs_info->fs_devices->latest_bdev; |
261507a0 | 733 | em->compress_type = async_extent->compress_type; |
771ed689 CM |
734 | set_bit(EXTENT_FLAG_PINNED, &em->flags); |
735 | set_bit(EXTENT_FLAG_COMPRESSED, &em->flags); | |
70c8a91c | 736 | em->generation = -1; |
771ed689 | 737 | |
d397712b | 738 | while (1) { |
890871be | 739 | write_lock(&em_tree->lock); |
09a2a8f9 | 740 | ret = add_extent_mapping(em_tree, em, 1); |
890871be | 741 | write_unlock(&em_tree->lock); |
771ed689 CM |
742 | if (ret != -EEXIST) { |
743 | free_extent_map(em); | |
744 | break; | |
745 | } | |
746 | btrfs_drop_extent_cache(inode, async_extent->start, | |
747 | async_extent->start + | |
748 | async_extent->ram_size - 1, 0); | |
749 | } | |
750 | ||
3e04e7f1 JB |
751 | if (ret) |
752 | goto out_free_reserve; | |
753 | ||
261507a0 LZ |
754 | ret = btrfs_add_ordered_extent_compress(inode, |
755 | async_extent->start, | |
756 | ins.objectid, | |
757 | async_extent->ram_size, | |
758 | ins.offset, | |
759 | BTRFS_ORDERED_COMPRESSED, | |
760 | async_extent->compress_type); | |
3e04e7f1 JB |
761 | if (ret) |
762 | goto out_free_reserve; | |
771ed689 | 763 | |
771ed689 CM |
764 | /* |
765 | * clear dirty, set writeback and unlock the pages. | |
766 | */ | |
c2790a2e | 767 | extent_clear_unlock_delalloc(inode, async_extent->start, |
a791e35e CM |
768 | async_extent->start + |
769 | async_extent->ram_size - 1, | |
151a41bc JB |
770 | NULL, EXTENT_LOCKED | EXTENT_DELALLOC, |
771 | PAGE_UNLOCK | PAGE_CLEAR_DIRTY | | |
c2790a2e | 772 | PAGE_SET_WRITEBACK); |
771ed689 | 773 | ret = btrfs_submit_compressed_write(inode, |
d397712b CM |
774 | async_extent->start, |
775 | async_extent->ram_size, | |
776 | ins.objectid, | |
777 | ins.offset, async_extent->pages, | |
778 | async_extent->nr_pages); | |
771ed689 CM |
779 | alloc_hint = ins.objectid + ins.offset; |
780 | kfree(async_extent); | |
3e04e7f1 JB |
781 | if (ret) |
782 | goto out; | |
771ed689 CM |
783 | cond_resched(); |
784 | } | |
79787eaa JM |
785 | ret = 0; |
786 | out: | |
787 | return ret; | |
3e04e7f1 JB |
788 | out_free_reserve: |
789 | btrfs_free_reserved_extent(root, ins.objectid, ins.offset); | |
79787eaa | 790 | out_free: |
c2790a2e | 791 | extent_clear_unlock_delalloc(inode, async_extent->start, |
3e04e7f1 JB |
792 | async_extent->start + |
793 | async_extent->ram_size - 1, | |
c2790a2e | 794 | NULL, EXTENT_LOCKED | EXTENT_DELALLOC | |
151a41bc JB |
795 | EXTENT_DEFRAG | EXTENT_DO_ACCOUNTING, |
796 | PAGE_UNLOCK | PAGE_CLEAR_DIRTY | | |
797 | PAGE_SET_WRITEBACK | PAGE_END_WRITEBACK); | |
79787eaa | 798 | kfree(async_extent); |
3e04e7f1 | 799 | goto again; |
771ed689 CM |
800 | } |
801 | ||
4b46fce2 JB |
802 | static u64 get_extent_allocation_hint(struct inode *inode, u64 start, |
803 | u64 num_bytes) | |
804 | { | |
805 | struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree; | |
806 | struct extent_map *em; | |
807 | u64 alloc_hint = 0; | |
808 | ||
809 | read_lock(&em_tree->lock); | |
810 | em = search_extent_mapping(em_tree, start, num_bytes); | |
811 | if (em) { | |
812 | /* | |
813 | * if block start isn't an actual block number then find the | |
814 | * first block in this inode and use that as a hint. If that | |
815 | * block is also bogus then just don't worry about it. | |
816 | */ | |
817 | if (em->block_start >= EXTENT_MAP_LAST_BYTE) { | |
818 | free_extent_map(em); | |
819 | em = search_extent_mapping(em_tree, 0, 0); | |
820 | if (em && em->block_start < EXTENT_MAP_LAST_BYTE) | |
821 | alloc_hint = em->block_start; | |
822 | if (em) | |
823 | free_extent_map(em); | |
824 | } else { | |
825 | alloc_hint = em->block_start; | |
826 | free_extent_map(em); | |
827 | } | |
828 | } | |
829 | read_unlock(&em_tree->lock); | |
830 | ||
831 | return alloc_hint; | |
832 | } | |
833 | ||
771ed689 CM |
834 | /* |
835 | * when extent_io.c finds a delayed allocation range in the file, | |
836 | * the call backs end up in this code. The basic idea is to | |
837 | * allocate extents on disk for the range, and create ordered data structs | |
838 | * in ram to track those extents. | |
839 | * | |
840 | * locked_page is the page that writepage had locked already. We use | |
841 | * it to make sure we don't do extra locks or unlocks. | |
842 | * | |
843 | * *page_started is set to one if we unlock locked_page and do everything | |
844 | * required to start IO on it. It may be clean and already done with | |
845 | * IO when we return. | |
846 | */ | |
00361589 JB |
847 | static noinline int cow_file_range(struct inode *inode, |
848 | struct page *locked_page, | |
849 | u64 start, u64 end, int *page_started, | |
850 | unsigned long *nr_written, | |
851 | int unlock) | |
771ed689 | 852 | { |
00361589 | 853 | struct btrfs_root *root = BTRFS_I(inode)->root; |
771ed689 CM |
854 | u64 alloc_hint = 0; |
855 | u64 num_bytes; | |
856 | unsigned long ram_size; | |
857 | u64 disk_num_bytes; | |
858 | u64 cur_alloc_size; | |
859 | u64 blocksize = root->sectorsize; | |
771ed689 CM |
860 | struct btrfs_key ins; |
861 | struct extent_map *em; | |
862 | struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree; | |
863 | int ret = 0; | |
864 | ||
02ecd2c2 JB |
865 | if (btrfs_is_free_space_inode(inode)) { |
866 | WARN_ON_ONCE(1); | |
29bce2f3 JB |
867 | ret = -EINVAL; |
868 | goto out_unlock; | |
02ecd2c2 | 869 | } |
771ed689 | 870 | |
fda2832f | 871 | num_bytes = ALIGN(end - start + 1, blocksize); |
771ed689 CM |
872 | num_bytes = max(blocksize, num_bytes); |
873 | disk_num_bytes = num_bytes; | |
771ed689 | 874 | |
4cb5300b | 875 | /* if this is a small write inside eof, kick off defrag */ |
4cb13e5d LB |
876 | if (num_bytes < 64 * 1024 && |
877 | (start > 0 || end + 1 < BTRFS_I(inode)->disk_i_size)) | |
00361589 | 878 | btrfs_add_inode_defrag(NULL, inode); |
4cb5300b | 879 | |
771ed689 CM |
880 | if (start == 0) { |
881 | /* lets try to make an inline extent */ | |
00361589 JB |
882 | ret = cow_file_range_inline(root, inode, start, end, 0, 0, |
883 | NULL); | |
771ed689 | 884 | if (ret == 0) { |
c2790a2e JB |
885 | extent_clear_unlock_delalloc(inode, start, end, NULL, |
886 | EXTENT_LOCKED | EXTENT_DELALLOC | | |
151a41bc | 887 | EXTENT_DEFRAG, PAGE_UNLOCK | |
c2790a2e JB |
888 | PAGE_CLEAR_DIRTY | PAGE_SET_WRITEBACK | |
889 | PAGE_END_WRITEBACK); | |
c2167754 | 890 | |
771ed689 CM |
891 | *nr_written = *nr_written + |
892 | (end - start + PAGE_CACHE_SIZE) / PAGE_CACHE_SIZE; | |
893 | *page_started = 1; | |
771ed689 | 894 | goto out; |
79787eaa | 895 | } else if (ret < 0) { |
79787eaa | 896 | goto out_unlock; |
771ed689 CM |
897 | } |
898 | } | |
899 | ||
900 | BUG_ON(disk_num_bytes > | |
6c41761f | 901 | btrfs_super_total_bytes(root->fs_info->super_copy)); |
771ed689 | 902 | |
4b46fce2 | 903 | alloc_hint = get_extent_allocation_hint(inode, start, num_bytes); |
771ed689 CM |
904 | btrfs_drop_extent_cache(inode, start, start + num_bytes - 1, 0); |
905 | ||
d397712b | 906 | while (disk_num_bytes > 0) { |
a791e35e CM |
907 | unsigned long op; |
908 | ||
287a0ab9 | 909 | cur_alloc_size = disk_num_bytes; |
00361589 | 910 | ret = btrfs_reserve_extent(root, cur_alloc_size, |
771ed689 | 911 | root->sectorsize, 0, alloc_hint, |
81c9ad23 | 912 | &ins, 1); |
00361589 | 913 | if (ret < 0) |
79787eaa | 914 | goto out_unlock; |
d397712b | 915 | |
172ddd60 | 916 | em = alloc_extent_map(); |
b9aa55be LB |
917 | if (!em) { |
918 | ret = -ENOMEM; | |
ace68bac | 919 | goto out_reserve; |
b9aa55be | 920 | } |
e6dcd2dc | 921 | em->start = start; |
445a6944 | 922 | em->orig_start = em->start; |
771ed689 CM |
923 | ram_size = ins.offset; |
924 | em->len = ins.offset; | |
2ab28f32 JB |
925 | em->mod_start = em->start; |
926 | em->mod_len = em->len; | |
c8b97818 | 927 | |
e6dcd2dc | 928 | em->block_start = ins.objectid; |
c8b97818 | 929 | em->block_len = ins.offset; |
b4939680 | 930 | em->orig_block_len = ins.offset; |
cc95bef6 | 931 | em->ram_bytes = ram_size; |
e6dcd2dc | 932 | em->bdev = root->fs_info->fs_devices->latest_bdev; |
7f3c74fb | 933 | set_bit(EXTENT_FLAG_PINNED, &em->flags); |
70c8a91c | 934 | em->generation = -1; |
c8b97818 | 935 | |
d397712b | 936 | while (1) { |
890871be | 937 | write_lock(&em_tree->lock); |
09a2a8f9 | 938 | ret = add_extent_mapping(em_tree, em, 1); |
890871be | 939 | write_unlock(&em_tree->lock); |
e6dcd2dc CM |
940 | if (ret != -EEXIST) { |
941 | free_extent_map(em); | |
942 | break; | |
943 | } | |
944 | btrfs_drop_extent_cache(inode, start, | |
c8b97818 | 945 | start + ram_size - 1, 0); |
e6dcd2dc | 946 | } |
ace68bac LB |
947 | if (ret) |
948 | goto out_reserve; | |
e6dcd2dc | 949 | |
98d20f67 | 950 | cur_alloc_size = ins.offset; |
e6dcd2dc | 951 | ret = btrfs_add_ordered_extent(inode, start, ins.objectid, |
771ed689 | 952 | ram_size, cur_alloc_size, 0); |
ace68bac LB |
953 | if (ret) |
954 | goto out_reserve; | |
c8b97818 | 955 | |
17d217fe YZ |
956 | if (root->root_key.objectid == |
957 | BTRFS_DATA_RELOC_TREE_OBJECTID) { | |
958 | ret = btrfs_reloc_clone_csums(inode, start, | |
959 | cur_alloc_size); | |
00361589 | 960 | if (ret) |
ace68bac | 961 | goto out_reserve; |
17d217fe YZ |
962 | } |
963 | ||
d397712b | 964 | if (disk_num_bytes < cur_alloc_size) |
3b951516 | 965 | break; |
d397712b | 966 | |
c8b97818 CM |
967 | /* we're not doing compressed IO, don't unlock the first |
968 | * page (which the caller expects to stay locked), don't | |
969 | * clear any dirty bits and don't set any writeback bits | |
8b62b72b CM |
970 | * |
971 | * Do set the Private2 bit so we know this page was properly | |
972 | * setup for writepage | |
c8b97818 | 973 | */ |
c2790a2e JB |
974 | op = unlock ? PAGE_UNLOCK : 0; |
975 | op |= PAGE_SET_PRIVATE2; | |
a791e35e | 976 | |
c2790a2e JB |
977 | extent_clear_unlock_delalloc(inode, start, |
978 | start + ram_size - 1, locked_page, | |
979 | EXTENT_LOCKED | EXTENT_DELALLOC, | |
980 | op); | |
c8b97818 | 981 | disk_num_bytes -= cur_alloc_size; |
c59f8951 CM |
982 | num_bytes -= cur_alloc_size; |
983 | alloc_hint = ins.objectid + ins.offset; | |
984 | start += cur_alloc_size; | |
b888db2b | 985 | } |
79787eaa | 986 | out: |
be20aa9d | 987 | return ret; |
b7d5b0a8 | 988 | |
ace68bac LB |
989 | out_reserve: |
990 | btrfs_free_reserved_extent(root, ins.objectid, ins.offset); | |
79787eaa | 991 | out_unlock: |
c2790a2e | 992 | extent_clear_unlock_delalloc(inode, start, end, locked_page, |
151a41bc JB |
993 | EXTENT_LOCKED | EXTENT_DO_ACCOUNTING | |
994 | EXTENT_DELALLOC | EXTENT_DEFRAG, | |
995 | PAGE_UNLOCK | PAGE_CLEAR_DIRTY | | |
996 | PAGE_SET_WRITEBACK | PAGE_END_WRITEBACK); | |
79787eaa | 997 | goto out; |
771ed689 | 998 | } |
c8b97818 | 999 | |
771ed689 CM |
1000 | /* |
1001 | * work queue call back to started compression on a file and pages | |
1002 | */ | |
1003 | static noinline void async_cow_start(struct btrfs_work *work) | |
1004 | { | |
1005 | struct async_cow *async_cow; | |
1006 | int num_added = 0; | |
1007 | async_cow = container_of(work, struct async_cow, work); | |
1008 | ||
1009 | compress_file_range(async_cow->inode, async_cow->locked_page, | |
1010 | async_cow->start, async_cow->end, async_cow, | |
1011 | &num_added); | |
8180ef88 | 1012 | if (num_added == 0) { |
cb77fcd8 | 1013 | btrfs_add_delayed_iput(async_cow->inode); |
771ed689 | 1014 | async_cow->inode = NULL; |
8180ef88 | 1015 | } |
771ed689 CM |
1016 | } |
1017 | ||
1018 | /* | |
1019 | * work queue call back to submit previously compressed pages | |
1020 | */ | |
1021 | static noinline void async_cow_submit(struct btrfs_work *work) | |
1022 | { | |
1023 | struct async_cow *async_cow; | |
1024 | struct btrfs_root *root; | |
1025 | unsigned long nr_pages; | |
1026 | ||
1027 | async_cow = container_of(work, struct async_cow, work); | |
1028 | ||
1029 | root = async_cow->root; | |
1030 | nr_pages = (async_cow->end - async_cow->start + PAGE_CACHE_SIZE) >> | |
1031 | PAGE_CACHE_SHIFT; | |
1032 | ||
66657b31 | 1033 | if (atomic_sub_return(nr_pages, &root->fs_info->async_delalloc_pages) < |
287082b0 | 1034 | 5 * 1024 * 1024 && |
771ed689 CM |
1035 | waitqueue_active(&root->fs_info->async_submit_wait)) |
1036 | wake_up(&root->fs_info->async_submit_wait); | |
1037 | ||
d397712b | 1038 | if (async_cow->inode) |
771ed689 | 1039 | submit_compressed_extents(async_cow->inode, async_cow); |
771ed689 | 1040 | } |
c8b97818 | 1041 | |
771ed689 CM |
1042 | static noinline void async_cow_free(struct btrfs_work *work) |
1043 | { | |
1044 | struct async_cow *async_cow; | |
1045 | async_cow = container_of(work, struct async_cow, work); | |
8180ef88 | 1046 | if (async_cow->inode) |
cb77fcd8 | 1047 | btrfs_add_delayed_iput(async_cow->inode); |
771ed689 CM |
1048 | kfree(async_cow); |
1049 | } | |
1050 | ||
1051 | static int cow_file_range_async(struct inode *inode, struct page *locked_page, | |
1052 | u64 start, u64 end, int *page_started, | |
1053 | unsigned long *nr_written) | |
1054 | { | |
1055 | struct async_cow *async_cow; | |
1056 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
1057 | unsigned long nr_pages; | |
1058 | u64 cur_end; | |
287082b0 | 1059 | int limit = 10 * 1024 * 1024; |
771ed689 | 1060 | |
a3429ab7 CM |
1061 | clear_extent_bit(&BTRFS_I(inode)->io_tree, start, end, EXTENT_LOCKED, |
1062 | 1, 0, NULL, GFP_NOFS); | |
d397712b | 1063 | while (start < end) { |
771ed689 | 1064 | async_cow = kmalloc(sizeof(*async_cow), GFP_NOFS); |
79787eaa | 1065 | BUG_ON(!async_cow); /* -ENOMEM */ |
8180ef88 | 1066 | async_cow->inode = igrab(inode); |
771ed689 CM |
1067 | async_cow->root = root; |
1068 | async_cow->locked_page = locked_page; | |
1069 | async_cow->start = start; | |
1070 | ||
6cbff00f | 1071 | if (BTRFS_I(inode)->flags & BTRFS_INODE_NOCOMPRESS) |
771ed689 CM |
1072 | cur_end = end; |
1073 | else | |
1074 | cur_end = min(end, start + 512 * 1024 - 1); | |
1075 | ||
1076 | async_cow->end = cur_end; | |
1077 | INIT_LIST_HEAD(&async_cow->extents); | |
1078 | ||
1079 | async_cow->work.func = async_cow_start; | |
1080 | async_cow->work.ordered_func = async_cow_submit; | |
1081 | async_cow->work.ordered_free = async_cow_free; | |
1082 | async_cow->work.flags = 0; | |
1083 | ||
771ed689 CM |
1084 | nr_pages = (cur_end - start + PAGE_CACHE_SIZE) >> |
1085 | PAGE_CACHE_SHIFT; | |
1086 | atomic_add(nr_pages, &root->fs_info->async_delalloc_pages); | |
1087 | ||
1088 | btrfs_queue_worker(&root->fs_info->delalloc_workers, | |
1089 | &async_cow->work); | |
1090 | ||
1091 | if (atomic_read(&root->fs_info->async_delalloc_pages) > limit) { | |
1092 | wait_event(root->fs_info->async_submit_wait, | |
1093 | (atomic_read(&root->fs_info->async_delalloc_pages) < | |
1094 | limit)); | |
1095 | } | |
1096 | ||
d397712b | 1097 | while (atomic_read(&root->fs_info->async_submit_draining) && |
771ed689 CM |
1098 | atomic_read(&root->fs_info->async_delalloc_pages)) { |
1099 | wait_event(root->fs_info->async_submit_wait, | |
1100 | (atomic_read(&root->fs_info->async_delalloc_pages) == | |
1101 | 0)); | |
1102 | } | |
1103 | ||
1104 | *nr_written += nr_pages; | |
1105 | start = cur_end + 1; | |
1106 | } | |
1107 | *page_started = 1; | |
1108 | return 0; | |
be20aa9d CM |
1109 | } |
1110 | ||
d397712b | 1111 | static noinline int csum_exist_in_range(struct btrfs_root *root, |
17d217fe YZ |
1112 | u64 bytenr, u64 num_bytes) |
1113 | { | |
1114 | int ret; | |
1115 | struct btrfs_ordered_sum *sums; | |
1116 | LIST_HEAD(list); | |
1117 | ||
07d400a6 | 1118 | ret = btrfs_lookup_csums_range(root->fs_info->csum_root, bytenr, |
a2de733c | 1119 | bytenr + num_bytes - 1, &list, 0); |
17d217fe YZ |
1120 | if (ret == 0 && list_empty(&list)) |
1121 | return 0; | |
1122 | ||
1123 | while (!list_empty(&list)) { | |
1124 | sums = list_entry(list.next, struct btrfs_ordered_sum, list); | |
1125 | list_del(&sums->list); | |
1126 | kfree(sums); | |
1127 | } | |
1128 | return 1; | |
1129 | } | |
1130 | ||
d352ac68 CM |
1131 | /* |
1132 | * when nowcow writeback call back. This checks for snapshots or COW copies | |
1133 | * of the extents that exist in the file, and COWs the file as required. | |
1134 | * | |
1135 | * If no cow copies or snapshots exist, we write directly to the existing | |
1136 | * blocks on disk | |
1137 | */ | |
7f366cfe CM |
1138 | static noinline int run_delalloc_nocow(struct inode *inode, |
1139 | struct page *locked_page, | |
771ed689 CM |
1140 | u64 start, u64 end, int *page_started, int force, |
1141 | unsigned long *nr_written) | |
be20aa9d | 1142 | { |
be20aa9d | 1143 | struct btrfs_root *root = BTRFS_I(inode)->root; |
7ea394f1 | 1144 | struct btrfs_trans_handle *trans; |
be20aa9d | 1145 | struct extent_buffer *leaf; |
be20aa9d | 1146 | struct btrfs_path *path; |
80ff3856 | 1147 | struct btrfs_file_extent_item *fi; |
be20aa9d | 1148 | struct btrfs_key found_key; |
80ff3856 YZ |
1149 | u64 cow_start; |
1150 | u64 cur_offset; | |
1151 | u64 extent_end; | |
5d4f98a2 | 1152 | u64 extent_offset; |
80ff3856 YZ |
1153 | u64 disk_bytenr; |
1154 | u64 num_bytes; | |
b4939680 | 1155 | u64 disk_num_bytes; |
cc95bef6 | 1156 | u64 ram_bytes; |
80ff3856 | 1157 | int extent_type; |
79787eaa | 1158 | int ret, err; |
d899e052 | 1159 | int type; |
80ff3856 YZ |
1160 | int nocow; |
1161 | int check_prev = 1; | |
82d5902d | 1162 | bool nolock; |
33345d01 | 1163 | u64 ino = btrfs_ino(inode); |
be20aa9d CM |
1164 | |
1165 | path = btrfs_alloc_path(); | |
17ca04af | 1166 | if (!path) { |
c2790a2e JB |
1167 | extent_clear_unlock_delalloc(inode, start, end, locked_page, |
1168 | EXTENT_LOCKED | EXTENT_DELALLOC | | |
151a41bc JB |
1169 | EXTENT_DO_ACCOUNTING | |
1170 | EXTENT_DEFRAG, PAGE_UNLOCK | | |
c2790a2e JB |
1171 | PAGE_CLEAR_DIRTY | |
1172 | PAGE_SET_WRITEBACK | | |
1173 | PAGE_END_WRITEBACK); | |
d8926bb3 | 1174 | return -ENOMEM; |
17ca04af | 1175 | } |
82d5902d | 1176 | |
83eea1f1 | 1177 | nolock = btrfs_is_free_space_inode(inode); |
82d5902d LZ |
1178 | |
1179 | if (nolock) | |
7a7eaa40 | 1180 | trans = btrfs_join_transaction_nolock(root); |
82d5902d | 1181 | else |
7a7eaa40 | 1182 | trans = btrfs_join_transaction(root); |
ff5714cc | 1183 | |
79787eaa | 1184 | if (IS_ERR(trans)) { |
c2790a2e JB |
1185 | extent_clear_unlock_delalloc(inode, start, end, locked_page, |
1186 | EXTENT_LOCKED | EXTENT_DELALLOC | | |
151a41bc JB |
1187 | EXTENT_DO_ACCOUNTING | |
1188 | EXTENT_DEFRAG, PAGE_UNLOCK | | |
c2790a2e JB |
1189 | PAGE_CLEAR_DIRTY | |
1190 | PAGE_SET_WRITEBACK | | |
1191 | PAGE_END_WRITEBACK); | |
79787eaa JM |
1192 | btrfs_free_path(path); |
1193 | return PTR_ERR(trans); | |
1194 | } | |
1195 | ||
74b21075 | 1196 | trans->block_rsv = &root->fs_info->delalloc_block_rsv; |
be20aa9d | 1197 | |
80ff3856 YZ |
1198 | cow_start = (u64)-1; |
1199 | cur_offset = start; | |
1200 | while (1) { | |
33345d01 | 1201 | ret = btrfs_lookup_file_extent(trans, root, path, ino, |
80ff3856 | 1202 | cur_offset, 0); |
d788a349 | 1203 | if (ret < 0) |
79787eaa | 1204 | goto error; |
80ff3856 YZ |
1205 | if (ret > 0 && path->slots[0] > 0 && check_prev) { |
1206 | leaf = path->nodes[0]; | |
1207 | btrfs_item_key_to_cpu(leaf, &found_key, | |
1208 | path->slots[0] - 1); | |
33345d01 | 1209 | if (found_key.objectid == ino && |
80ff3856 YZ |
1210 | found_key.type == BTRFS_EXTENT_DATA_KEY) |
1211 | path->slots[0]--; | |
1212 | } | |
1213 | check_prev = 0; | |
1214 | next_slot: | |
1215 | leaf = path->nodes[0]; | |
1216 | if (path->slots[0] >= btrfs_header_nritems(leaf)) { | |
1217 | ret = btrfs_next_leaf(root, path); | |
d788a349 | 1218 | if (ret < 0) |
79787eaa | 1219 | goto error; |
80ff3856 YZ |
1220 | if (ret > 0) |
1221 | break; | |
1222 | leaf = path->nodes[0]; | |
1223 | } | |
be20aa9d | 1224 | |
80ff3856 YZ |
1225 | nocow = 0; |
1226 | disk_bytenr = 0; | |
17d217fe | 1227 | num_bytes = 0; |
80ff3856 YZ |
1228 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); |
1229 | ||
33345d01 | 1230 | if (found_key.objectid > ino || |
80ff3856 YZ |
1231 | found_key.type > BTRFS_EXTENT_DATA_KEY || |
1232 | found_key.offset > end) | |
1233 | break; | |
1234 | ||
1235 | if (found_key.offset > cur_offset) { | |
1236 | extent_end = found_key.offset; | |
e9061e21 | 1237 | extent_type = 0; |
80ff3856 YZ |
1238 | goto out_check; |
1239 | } | |
1240 | ||
1241 | fi = btrfs_item_ptr(leaf, path->slots[0], | |
1242 | struct btrfs_file_extent_item); | |
1243 | extent_type = btrfs_file_extent_type(leaf, fi); | |
1244 | ||
cc95bef6 | 1245 | ram_bytes = btrfs_file_extent_ram_bytes(leaf, fi); |
d899e052 YZ |
1246 | if (extent_type == BTRFS_FILE_EXTENT_REG || |
1247 | extent_type == BTRFS_FILE_EXTENT_PREALLOC) { | |
80ff3856 | 1248 | disk_bytenr = btrfs_file_extent_disk_bytenr(leaf, fi); |
5d4f98a2 | 1249 | extent_offset = btrfs_file_extent_offset(leaf, fi); |
80ff3856 YZ |
1250 | extent_end = found_key.offset + |
1251 | btrfs_file_extent_num_bytes(leaf, fi); | |
b4939680 JB |
1252 | disk_num_bytes = |
1253 | btrfs_file_extent_disk_num_bytes(leaf, fi); | |
80ff3856 YZ |
1254 | if (extent_end <= start) { |
1255 | path->slots[0]++; | |
1256 | goto next_slot; | |
1257 | } | |
17d217fe YZ |
1258 | if (disk_bytenr == 0) |
1259 | goto out_check; | |
80ff3856 YZ |
1260 | if (btrfs_file_extent_compression(leaf, fi) || |
1261 | btrfs_file_extent_encryption(leaf, fi) || | |
1262 | btrfs_file_extent_other_encoding(leaf, fi)) | |
1263 | goto out_check; | |
d899e052 YZ |
1264 | if (extent_type == BTRFS_FILE_EXTENT_REG && !force) |
1265 | goto out_check; | |
d2fb3437 | 1266 | if (btrfs_extent_readonly(root, disk_bytenr)) |
80ff3856 | 1267 | goto out_check; |
33345d01 | 1268 | if (btrfs_cross_ref_exist(trans, root, ino, |
5d4f98a2 YZ |
1269 | found_key.offset - |
1270 | extent_offset, disk_bytenr)) | |
17d217fe | 1271 | goto out_check; |
5d4f98a2 | 1272 | disk_bytenr += extent_offset; |
17d217fe YZ |
1273 | disk_bytenr += cur_offset - found_key.offset; |
1274 | num_bytes = min(end + 1, extent_end) - cur_offset; | |
1275 | /* | |
1276 | * force cow if csum exists in the range. | |
1277 | * this ensure that csum for a given extent are | |
1278 | * either valid or do not exist. | |
1279 | */ | |
1280 | if (csum_exist_in_range(root, disk_bytenr, num_bytes)) | |
1281 | goto out_check; | |
80ff3856 YZ |
1282 | nocow = 1; |
1283 | } else if (extent_type == BTRFS_FILE_EXTENT_INLINE) { | |
1284 | extent_end = found_key.offset + | |
514ac8ad CM |
1285 | btrfs_file_extent_inline_len(leaf, |
1286 | path->slots[0], fi); | |
80ff3856 YZ |
1287 | extent_end = ALIGN(extent_end, root->sectorsize); |
1288 | } else { | |
1289 | BUG_ON(1); | |
1290 | } | |
1291 | out_check: | |
1292 | if (extent_end <= start) { | |
1293 | path->slots[0]++; | |
1294 | goto next_slot; | |
1295 | } | |
1296 | if (!nocow) { | |
1297 | if (cow_start == (u64)-1) | |
1298 | cow_start = cur_offset; | |
1299 | cur_offset = extent_end; | |
1300 | if (cur_offset > end) | |
1301 | break; | |
1302 | path->slots[0]++; | |
1303 | goto next_slot; | |
7ea394f1 YZ |
1304 | } |
1305 | ||
b3b4aa74 | 1306 | btrfs_release_path(path); |
80ff3856 | 1307 | if (cow_start != (u64)-1) { |
00361589 JB |
1308 | ret = cow_file_range(inode, locked_page, |
1309 | cow_start, found_key.offset - 1, | |
1310 | page_started, nr_written, 1); | |
d788a349 | 1311 | if (ret) |
79787eaa | 1312 | goto error; |
80ff3856 | 1313 | cow_start = (u64)-1; |
7ea394f1 | 1314 | } |
80ff3856 | 1315 | |
d899e052 YZ |
1316 | if (extent_type == BTRFS_FILE_EXTENT_PREALLOC) { |
1317 | struct extent_map *em; | |
1318 | struct extent_map_tree *em_tree; | |
1319 | em_tree = &BTRFS_I(inode)->extent_tree; | |
172ddd60 | 1320 | em = alloc_extent_map(); |
79787eaa | 1321 | BUG_ON(!em); /* -ENOMEM */ |
d899e052 | 1322 | em->start = cur_offset; |
70c8a91c | 1323 | em->orig_start = found_key.offset - extent_offset; |
d899e052 YZ |
1324 | em->len = num_bytes; |
1325 | em->block_len = num_bytes; | |
1326 | em->block_start = disk_bytenr; | |
b4939680 | 1327 | em->orig_block_len = disk_num_bytes; |
cc95bef6 | 1328 | em->ram_bytes = ram_bytes; |
d899e052 | 1329 | em->bdev = root->fs_info->fs_devices->latest_bdev; |
2ab28f32 JB |
1330 | em->mod_start = em->start; |
1331 | em->mod_len = em->len; | |
d899e052 | 1332 | set_bit(EXTENT_FLAG_PINNED, &em->flags); |
b11e234d | 1333 | set_bit(EXTENT_FLAG_FILLING, &em->flags); |
70c8a91c | 1334 | em->generation = -1; |
d899e052 | 1335 | while (1) { |
890871be | 1336 | write_lock(&em_tree->lock); |
09a2a8f9 | 1337 | ret = add_extent_mapping(em_tree, em, 1); |
890871be | 1338 | write_unlock(&em_tree->lock); |
d899e052 YZ |
1339 | if (ret != -EEXIST) { |
1340 | free_extent_map(em); | |
1341 | break; | |
1342 | } | |
1343 | btrfs_drop_extent_cache(inode, em->start, | |
1344 | em->start + em->len - 1, 0); | |
1345 | } | |
1346 | type = BTRFS_ORDERED_PREALLOC; | |
1347 | } else { | |
1348 | type = BTRFS_ORDERED_NOCOW; | |
1349 | } | |
80ff3856 YZ |
1350 | |
1351 | ret = btrfs_add_ordered_extent(inode, cur_offset, disk_bytenr, | |
d899e052 | 1352 | num_bytes, num_bytes, type); |
79787eaa | 1353 | BUG_ON(ret); /* -ENOMEM */ |
771ed689 | 1354 | |
efa56464 YZ |
1355 | if (root->root_key.objectid == |
1356 | BTRFS_DATA_RELOC_TREE_OBJECTID) { | |
1357 | ret = btrfs_reloc_clone_csums(inode, cur_offset, | |
1358 | num_bytes); | |
d788a349 | 1359 | if (ret) |
79787eaa | 1360 | goto error; |
efa56464 YZ |
1361 | } |
1362 | ||
c2790a2e JB |
1363 | extent_clear_unlock_delalloc(inode, cur_offset, |
1364 | cur_offset + num_bytes - 1, | |
1365 | locked_page, EXTENT_LOCKED | | |
1366 | EXTENT_DELALLOC, PAGE_UNLOCK | | |
1367 | PAGE_SET_PRIVATE2); | |
80ff3856 YZ |
1368 | cur_offset = extent_end; |
1369 | if (cur_offset > end) | |
1370 | break; | |
be20aa9d | 1371 | } |
b3b4aa74 | 1372 | btrfs_release_path(path); |
80ff3856 | 1373 | |
17ca04af | 1374 | if (cur_offset <= end && cow_start == (u64)-1) { |
80ff3856 | 1375 | cow_start = cur_offset; |
17ca04af JB |
1376 | cur_offset = end; |
1377 | } | |
1378 | ||
80ff3856 | 1379 | if (cow_start != (u64)-1) { |
00361589 JB |
1380 | ret = cow_file_range(inode, locked_page, cow_start, end, |
1381 | page_started, nr_written, 1); | |
d788a349 | 1382 | if (ret) |
79787eaa | 1383 | goto error; |
80ff3856 YZ |
1384 | } |
1385 | ||
79787eaa | 1386 | error: |
a698d075 | 1387 | err = btrfs_end_transaction(trans, root); |
79787eaa JM |
1388 | if (!ret) |
1389 | ret = err; | |
1390 | ||
17ca04af | 1391 | if (ret && cur_offset < end) |
c2790a2e JB |
1392 | extent_clear_unlock_delalloc(inode, cur_offset, end, |
1393 | locked_page, EXTENT_LOCKED | | |
151a41bc JB |
1394 | EXTENT_DELALLOC | EXTENT_DEFRAG | |
1395 | EXTENT_DO_ACCOUNTING, PAGE_UNLOCK | | |
1396 | PAGE_CLEAR_DIRTY | | |
c2790a2e JB |
1397 | PAGE_SET_WRITEBACK | |
1398 | PAGE_END_WRITEBACK); | |
7ea394f1 | 1399 | btrfs_free_path(path); |
79787eaa | 1400 | return ret; |
be20aa9d CM |
1401 | } |
1402 | ||
d352ac68 CM |
1403 | /* |
1404 | * extent_io.c call back to do delayed allocation processing | |
1405 | */ | |
c8b97818 | 1406 | static int run_delalloc_range(struct inode *inode, struct page *locked_page, |
771ed689 CM |
1407 | u64 start, u64 end, int *page_started, |
1408 | unsigned long *nr_written) | |
be20aa9d | 1409 | { |
be20aa9d | 1410 | int ret; |
7f366cfe | 1411 | struct btrfs_root *root = BTRFS_I(inode)->root; |
a2135011 | 1412 | |
7ddf5a42 | 1413 | if (BTRFS_I(inode)->flags & BTRFS_INODE_NODATACOW) { |
c8b97818 | 1414 | ret = run_delalloc_nocow(inode, locked_page, start, end, |
d397712b | 1415 | page_started, 1, nr_written); |
7ddf5a42 | 1416 | } else if (BTRFS_I(inode)->flags & BTRFS_INODE_PREALLOC) { |
d899e052 | 1417 | ret = run_delalloc_nocow(inode, locked_page, start, end, |
d397712b | 1418 | page_started, 0, nr_written); |
7ddf5a42 JB |
1419 | } else if (!btrfs_test_opt(root, COMPRESS) && |
1420 | !(BTRFS_I(inode)->force_compress) && | |
1421 | !(BTRFS_I(inode)->flags & BTRFS_INODE_COMPRESS)) { | |
7f366cfe CM |
1422 | ret = cow_file_range(inode, locked_page, start, end, |
1423 | page_started, nr_written, 1); | |
7ddf5a42 JB |
1424 | } else { |
1425 | set_bit(BTRFS_INODE_HAS_ASYNC_EXTENT, | |
1426 | &BTRFS_I(inode)->runtime_flags); | |
771ed689 | 1427 | ret = cow_file_range_async(inode, locked_page, start, end, |
d397712b | 1428 | page_started, nr_written); |
7ddf5a42 | 1429 | } |
b888db2b CM |
1430 | return ret; |
1431 | } | |
1432 | ||
1bf85046 JM |
1433 | static void btrfs_split_extent_hook(struct inode *inode, |
1434 | struct extent_state *orig, u64 split) | |
9ed74f2d | 1435 | { |
0ca1f7ce | 1436 | /* not delalloc, ignore it */ |
9ed74f2d | 1437 | if (!(orig->state & EXTENT_DELALLOC)) |
1bf85046 | 1438 | return; |
9ed74f2d | 1439 | |
9e0baf60 JB |
1440 | spin_lock(&BTRFS_I(inode)->lock); |
1441 | BTRFS_I(inode)->outstanding_extents++; | |
1442 | spin_unlock(&BTRFS_I(inode)->lock); | |
9ed74f2d JB |
1443 | } |
1444 | ||
1445 | /* | |
1446 | * extent_io.c merge_extent_hook, used to track merged delayed allocation | |
1447 | * extents so we can keep track of new extents that are just merged onto old | |
1448 | * extents, such as when we are doing sequential writes, so we can properly | |
1449 | * account for the metadata space we'll need. | |
1450 | */ | |
1bf85046 JM |
1451 | static void btrfs_merge_extent_hook(struct inode *inode, |
1452 | struct extent_state *new, | |
1453 | struct extent_state *other) | |
9ed74f2d | 1454 | { |
9ed74f2d JB |
1455 | /* not delalloc, ignore it */ |
1456 | if (!(other->state & EXTENT_DELALLOC)) | |
1bf85046 | 1457 | return; |
9ed74f2d | 1458 | |
9e0baf60 JB |
1459 | spin_lock(&BTRFS_I(inode)->lock); |
1460 | BTRFS_I(inode)->outstanding_extents--; | |
1461 | spin_unlock(&BTRFS_I(inode)->lock); | |
9ed74f2d JB |
1462 | } |
1463 | ||
eb73c1b7 MX |
1464 | static void btrfs_add_delalloc_inodes(struct btrfs_root *root, |
1465 | struct inode *inode) | |
1466 | { | |
1467 | spin_lock(&root->delalloc_lock); | |
1468 | if (list_empty(&BTRFS_I(inode)->delalloc_inodes)) { | |
1469 | list_add_tail(&BTRFS_I(inode)->delalloc_inodes, | |
1470 | &root->delalloc_inodes); | |
1471 | set_bit(BTRFS_INODE_IN_DELALLOC_LIST, | |
1472 | &BTRFS_I(inode)->runtime_flags); | |
1473 | root->nr_delalloc_inodes++; | |
1474 | if (root->nr_delalloc_inodes == 1) { | |
1475 | spin_lock(&root->fs_info->delalloc_root_lock); | |
1476 | BUG_ON(!list_empty(&root->delalloc_root)); | |
1477 | list_add_tail(&root->delalloc_root, | |
1478 | &root->fs_info->delalloc_roots); | |
1479 | spin_unlock(&root->fs_info->delalloc_root_lock); | |
1480 | } | |
1481 | } | |
1482 | spin_unlock(&root->delalloc_lock); | |
1483 | } | |
1484 | ||
1485 | static void btrfs_del_delalloc_inode(struct btrfs_root *root, | |
1486 | struct inode *inode) | |
1487 | { | |
1488 | spin_lock(&root->delalloc_lock); | |
1489 | if (!list_empty(&BTRFS_I(inode)->delalloc_inodes)) { | |
1490 | list_del_init(&BTRFS_I(inode)->delalloc_inodes); | |
1491 | clear_bit(BTRFS_INODE_IN_DELALLOC_LIST, | |
1492 | &BTRFS_I(inode)->runtime_flags); | |
1493 | root->nr_delalloc_inodes--; | |
1494 | if (!root->nr_delalloc_inodes) { | |
1495 | spin_lock(&root->fs_info->delalloc_root_lock); | |
1496 | BUG_ON(list_empty(&root->delalloc_root)); | |
1497 | list_del_init(&root->delalloc_root); | |
1498 | spin_unlock(&root->fs_info->delalloc_root_lock); | |
1499 | } | |
1500 | } | |
1501 | spin_unlock(&root->delalloc_lock); | |
1502 | } | |
1503 | ||
d352ac68 CM |
1504 | /* |
1505 | * extent_io.c set_bit_hook, used to track delayed allocation | |
1506 | * bytes in this file, and to maintain the list of inodes that | |
1507 | * have pending delalloc work to be done. | |
1508 | */ | |
1bf85046 | 1509 | static void btrfs_set_bit_hook(struct inode *inode, |
41074888 | 1510 | struct extent_state *state, unsigned long *bits) |
291d673e | 1511 | { |
9ed74f2d | 1512 | |
75eff68e CM |
1513 | /* |
1514 | * set_bit and clear bit hooks normally require _irqsave/restore | |
27160b6b | 1515 | * but in this case, we are only testing for the DELALLOC |
75eff68e CM |
1516 | * bit, which is only set or cleared with irqs on |
1517 | */ | |
0ca1f7ce | 1518 | if (!(state->state & EXTENT_DELALLOC) && (*bits & EXTENT_DELALLOC)) { |
291d673e | 1519 | struct btrfs_root *root = BTRFS_I(inode)->root; |
0ca1f7ce | 1520 | u64 len = state->end + 1 - state->start; |
83eea1f1 | 1521 | bool do_list = !btrfs_is_free_space_inode(inode); |
9ed74f2d | 1522 | |
9e0baf60 | 1523 | if (*bits & EXTENT_FIRST_DELALLOC) { |
0ca1f7ce | 1524 | *bits &= ~EXTENT_FIRST_DELALLOC; |
9e0baf60 JB |
1525 | } else { |
1526 | spin_lock(&BTRFS_I(inode)->lock); | |
1527 | BTRFS_I(inode)->outstanding_extents++; | |
1528 | spin_unlock(&BTRFS_I(inode)->lock); | |
1529 | } | |
287a0ab9 | 1530 | |
963d678b MX |
1531 | __percpu_counter_add(&root->fs_info->delalloc_bytes, len, |
1532 | root->fs_info->delalloc_batch); | |
df0af1a5 | 1533 | spin_lock(&BTRFS_I(inode)->lock); |
0ca1f7ce | 1534 | BTRFS_I(inode)->delalloc_bytes += len; |
df0af1a5 | 1535 | if (do_list && !test_bit(BTRFS_INODE_IN_DELALLOC_LIST, |
eb73c1b7 MX |
1536 | &BTRFS_I(inode)->runtime_flags)) |
1537 | btrfs_add_delalloc_inodes(root, inode); | |
df0af1a5 | 1538 | spin_unlock(&BTRFS_I(inode)->lock); |
291d673e | 1539 | } |
291d673e CM |
1540 | } |
1541 | ||
d352ac68 CM |
1542 | /* |
1543 | * extent_io.c clear_bit_hook, see set_bit_hook for why | |
1544 | */ | |
1bf85046 | 1545 | static void btrfs_clear_bit_hook(struct inode *inode, |
41074888 DS |
1546 | struct extent_state *state, |
1547 | unsigned long *bits) | |
291d673e | 1548 | { |
75eff68e CM |
1549 | /* |
1550 | * set_bit and clear bit hooks normally require _irqsave/restore | |
27160b6b | 1551 | * but in this case, we are only testing for the DELALLOC |
75eff68e CM |
1552 | * bit, which is only set or cleared with irqs on |
1553 | */ | |
0ca1f7ce | 1554 | if ((state->state & EXTENT_DELALLOC) && (*bits & EXTENT_DELALLOC)) { |
291d673e | 1555 | struct btrfs_root *root = BTRFS_I(inode)->root; |
0ca1f7ce | 1556 | u64 len = state->end + 1 - state->start; |
83eea1f1 | 1557 | bool do_list = !btrfs_is_free_space_inode(inode); |
bcbfce8a | 1558 | |
9e0baf60 | 1559 | if (*bits & EXTENT_FIRST_DELALLOC) { |
0ca1f7ce | 1560 | *bits &= ~EXTENT_FIRST_DELALLOC; |
9e0baf60 JB |
1561 | } else if (!(*bits & EXTENT_DO_ACCOUNTING)) { |
1562 | spin_lock(&BTRFS_I(inode)->lock); | |
1563 | BTRFS_I(inode)->outstanding_extents--; | |
1564 | spin_unlock(&BTRFS_I(inode)->lock); | |
1565 | } | |
0ca1f7ce | 1566 | |
b6d08f06 JB |
1567 | /* |
1568 | * We don't reserve metadata space for space cache inodes so we | |
1569 | * don't need to call dellalloc_release_metadata if there is an | |
1570 | * error. | |
1571 | */ | |
1572 | if (*bits & EXTENT_DO_ACCOUNTING && | |
1573 | root != root->fs_info->tree_root) | |
0ca1f7ce YZ |
1574 | btrfs_delalloc_release_metadata(inode, len); |
1575 | ||
0cb59c99 | 1576 | if (root->root_key.objectid != BTRFS_DATA_RELOC_TREE_OBJECTID |
7ee9e440 | 1577 | && do_list && !(state->state & EXTENT_NORESERVE)) |
0ca1f7ce | 1578 | btrfs_free_reserved_data_space(inode, len); |
9ed74f2d | 1579 | |
963d678b MX |
1580 | __percpu_counter_add(&root->fs_info->delalloc_bytes, -len, |
1581 | root->fs_info->delalloc_batch); | |
df0af1a5 | 1582 | spin_lock(&BTRFS_I(inode)->lock); |
0ca1f7ce | 1583 | BTRFS_I(inode)->delalloc_bytes -= len; |
0cb59c99 | 1584 | if (do_list && BTRFS_I(inode)->delalloc_bytes == 0 && |
df0af1a5 | 1585 | test_bit(BTRFS_INODE_IN_DELALLOC_LIST, |
eb73c1b7 MX |
1586 | &BTRFS_I(inode)->runtime_flags)) |
1587 | btrfs_del_delalloc_inode(root, inode); | |
df0af1a5 | 1588 | spin_unlock(&BTRFS_I(inode)->lock); |
291d673e | 1589 | } |
291d673e CM |
1590 | } |
1591 | ||
d352ac68 CM |
1592 | /* |
1593 | * extent_io.c merge_bio_hook, this must check the chunk tree to make sure | |
1594 | * we don't create bios that span stripes or chunks | |
1595 | */ | |
64a16701 | 1596 | int btrfs_merge_bio_hook(int rw, struct page *page, unsigned long offset, |
c8b97818 CM |
1597 | size_t size, struct bio *bio, |
1598 | unsigned long bio_flags) | |
239b14b3 CM |
1599 | { |
1600 | struct btrfs_root *root = BTRFS_I(page->mapping->host)->root; | |
a62b9401 | 1601 | u64 logical = (u64)bio->bi_sector << 9; |
239b14b3 CM |
1602 | u64 length = 0; |
1603 | u64 map_length; | |
239b14b3 CM |
1604 | int ret; |
1605 | ||
771ed689 CM |
1606 | if (bio_flags & EXTENT_BIO_COMPRESSED) |
1607 | return 0; | |
1608 | ||
f2d8d74d | 1609 | length = bio->bi_size; |
239b14b3 | 1610 | map_length = length; |
64a16701 | 1611 | ret = btrfs_map_block(root->fs_info, rw, logical, |
f188591e | 1612 | &map_length, NULL, 0); |
3ec706c8 | 1613 | /* Will always return 0 with map_multi == NULL */ |
3444a972 | 1614 | BUG_ON(ret < 0); |
d397712b | 1615 | if (map_length < length + size) |
239b14b3 | 1616 | return 1; |
3444a972 | 1617 | return 0; |
239b14b3 CM |
1618 | } |
1619 | ||
d352ac68 CM |
1620 | /* |
1621 | * in order to insert checksums into the metadata in large chunks, | |
1622 | * we wait until bio submission time. All the pages in the bio are | |
1623 | * checksummed and sums are attached onto the ordered extent record. | |
1624 | * | |
1625 | * At IO completion time the cums attached on the ordered extent record | |
1626 | * are inserted into the btree | |
1627 | */ | |
d397712b CM |
1628 | static int __btrfs_submit_bio_start(struct inode *inode, int rw, |
1629 | struct bio *bio, int mirror_num, | |
eaf25d93 CM |
1630 | unsigned long bio_flags, |
1631 | u64 bio_offset) | |
065631f6 | 1632 | { |
065631f6 | 1633 | struct btrfs_root *root = BTRFS_I(inode)->root; |
065631f6 | 1634 | int ret = 0; |
e015640f | 1635 | |
d20f7043 | 1636 | ret = btrfs_csum_one_bio(root, inode, bio, 0, 0); |
79787eaa | 1637 | BUG_ON(ret); /* -ENOMEM */ |
4a69a410 CM |
1638 | return 0; |
1639 | } | |
e015640f | 1640 | |
4a69a410 CM |
1641 | /* |
1642 | * in order to insert checksums into the metadata in large chunks, | |
1643 | * we wait until bio submission time. All the pages in the bio are | |
1644 | * checksummed and sums are attached onto the ordered extent record. | |
1645 | * | |
1646 | * At IO completion time the cums attached on the ordered extent record | |
1647 | * are inserted into the btree | |
1648 | */ | |
b2950863 | 1649 | static int __btrfs_submit_bio_done(struct inode *inode, int rw, struct bio *bio, |
eaf25d93 CM |
1650 | int mirror_num, unsigned long bio_flags, |
1651 | u64 bio_offset) | |
4a69a410 CM |
1652 | { |
1653 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
61891923 SB |
1654 | int ret; |
1655 | ||
1656 | ret = btrfs_map_bio(root, rw, bio, mirror_num, 1); | |
1657 | if (ret) | |
1658 | bio_endio(bio, ret); | |
1659 | return ret; | |
44b8bd7e CM |
1660 | } |
1661 | ||
d352ac68 | 1662 | /* |
cad321ad CM |
1663 | * extent_io.c submission hook. This does the right thing for csum calculation |
1664 | * on write, or reading the csums from the tree before a read | |
d352ac68 | 1665 | */ |
b2950863 | 1666 | static int btrfs_submit_bio_hook(struct inode *inode, int rw, struct bio *bio, |
eaf25d93 CM |
1667 | int mirror_num, unsigned long bio_flags, |
1668 | u64 bio_offset) | |
44b8bd7e CM |
1669 | { |
1670 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
1671 | int ret = 0; | |
19b9bdb0 | 1672 | int skip_sum; |
0417341e | 1673 | int metadata = 0; |
b812ce28 | 1674 | int async = !atomic_read(&BTRFS_I(inode)->sync_writers); |
44b8bd7e | 1675 | |
6cbff00f | 1676 | skip_sum = BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM; |
cad321ad | 1677 | |
83eea1f1 | 1678 | if (btrfs_is_free_space_inode(inode)) |
0417341e JM |
1679 | metadata = 2; |
1680 | ||
7b6d91da | 1681 | if (!(rw & REQ_WRITE)) { |
5fd02043 JB |
1682 | ret = btrfs_bio_wq_end_io(root->fs_info, bio, metadata); |
1683 | if (ret) | |
61891923 | 1684 | goto out; |
5fd02043 | 1685 | |
d20f7043 | 1686 | if (bio_flags & EXTENT_BIO_COMPRESSED) { |
61891923 SB |
1687 | ret = btrfs_submit_compressed_read(inode, bio, |
1688 | mirror_num, | |
1689 | bio_flags); | |
1690 | goto out; | |
c2db1073 TI |
1691 | } else if (!skip_sum) { |
1692 | ret = btrfs_lookup_bio_sums(root, inode, bio, NULL); | |
1693 | if (ret) | |
61891923 | 1694 | goto out; |
c2db1073 | 1695 | } |
4d1b5fb4 | 1696 | goto mapit; |
b812ce28 | 1697 | } else if (async && !skip_sum) { |
17d217fe YZ |
1698 | /* csum items have already been cloned */ |
1699 | if (root->root_key.objectid == BTRFS_DATA_RELOC_TREE_OBJECTID) | |
1700 | goto mapit; | |
19b9bdb0 | 1701 | /* we're doing a write, do the async checksumming */ |
61891923 | 1702 | ret = btrfs_wq_submit_bio(BTRFS_I(inode)->root->fs_info, |
44b8bd7e | 1703 | inode, rw, bio, mirror_num, |
eaf25d93 CM |
1704 | bio_flags, bio_offset, |
1705 | __btrfs_submit_bio_start, | |
4a69a410 | 1706 | __btrfs_submit_bio_done); |
61891923 | 1707 | goto out; |
b812ce28 JB |
1708 | } else if (!skip_sum) { |
1709 | ret = btrfs_csum_one_bio(root, inode, bio, 0, 0); | |
1710 | if (ret) | |
1711 | goto out; | |
19b9bdb0 CM |
1712 | } |
1713 | ||
0b86a832 | 1714 | mapit: |
61891923 SB |
1715 | ret = btrfs_map_bio(root, rw, bio, mirror_num, 0); |
1716 | ||
1717 | out: | |
1718 | if (ret < 0) | |
1719 | bio_endio(bio, ret); | |
1720 | return ret; | |
065631f6 | 1721 | } |
6885f308 | 1722 | |
d352ac68 CM |
1723 | /* |
1724 | * given a list of ordered sums record them in the inode. This happens | |
1725 | * at IO completion time based on sums calculated at bio submission time. | |
1726 | */ | |
ba1da2f4 | 1727 | static noinline int add_pending_csums(struct btrfs_trans_handle *trans, |
e6dcd2dc CM |
1728 | struct inode *inode, u64 file_offset, |
1729 | struct list_head *list) | |
1730 | { | |
e6dcd2dc CM |
1731 | struct btrfs_ordered_sum *sum; |
1732 | ||
c6e30871 | 1733 | list_for_each_entry(sum, list, list) { |
39847c4d | 1734 | trans->adding_csums = 1; |
d20f7043 CM |
1735 | btrfs_csum_file_blocks(trans, |
1736 | BTRFS_I(inode)->root->fs_info->csum_root, sum); | |
39847c4d | 1737 | trans->adding_csums = 0; |
e6dcd2dc CM |
1738 | } |
1739 | return 0; | |
1740 | } | |
1741 | ||
2ac55d41 JB |
1742 | int btrfs_set_extent_delalloc(struct inode *inode, u64 start, u64 end, |
1743 | struct extent_state **cached_state) | |
ea8c2819 | 1744 | { |
6c1500f2 | 1745 | WARN_ON((end & (PAGE_CACHE_SIZE - 1)) == 0); |
ea8c2819 | 1746 | return set_extent_delalloc(&BTRFS_I(inode)->io_tree, start, end, |
2ac55d41 | 1747 | cached_state, GFP_NOFS); |
ea8c2819 CM |
1748 | } |
1749 | ||
d352ac68 | 1750 | /* see btrfs_writepage_start_hook for details on why this is required */ |
247e743c CM |
1751 | struct btrfs_writepage_fixup { |
1752 | struct page *page; | |
1753 | struct btrfs_work work; | |
1754 | }; | |
1755 | ||
b2950863 | 1756 | static void btrfs_writepage_fixup_worker(struct btrfs_work *work) |
247e743c CM |
1757 | { |
1758 | struct btrfs_writepage_fixup *fixup; | |
1759 | struct btrfs_ordered_extent *ordered; | |
2ac55d41 | 1760 | struct extent_state *cached_state = NULL; |
247e743c CM |
1761 | struct page *page; |
1762 | struct inode *inode; | |
1763 | u64 page_start; | |
1764 | u64 page_end; | |
87826df0 | 1765 | int ret; |
247e743c CM |
1766 | |
1767 | fixup = container_of(work, struct btrfs_writepage_fixup, work); | |
1768 | page = fixup->page; | |
4a096752 | 1769 | again: |
247e743c CM |
1770 | lock_page(page); |
1771 | if (!page->mapping || !PageDirty(page) || !PageChecked(page)) { | |
1772 | ClearPageChecked(page); | |
1773 | goto out_page; | |
1774 | } | |
1775 | ||
1776 | inode = page->mapping->host; | |
1777 | page_start = page_offset(page); | |
1778 | page_end = page_offset(page) + PAGE_CACHE_SIZE - 1; | |
1779 | ||
2ac55d41 | 1780 | lock_extent_bits(&BTRFS_I(inode)->io_tree, page_start, page_end, 0, |
d0082371 | 1781 | &cached_state); |
4a096752 CM |
1782 | |
1783 | /* already ordered? We're done */ | |
8b62b72b | 1784 | if (PagePrivate2(page)) |
247e743c | 1785 | goto out; |
4a096752 CM |
1786 | |
1787 | ordered = btrfs_lookup_ordered_extent(inode, page_start); | |
1788 | if (ordered) { | |
2ac55d41 JB |
1789 | unlock_extent_cached(&BTRFS_I(inode)->io_tree, page_start, |
1790 | page_end, &cached_state, GFP_NOFS); | |
4a096752 CM |
1791 | unlock_page(page); |
1792 | btrfs_start_ordered_extent(inode, ordered, 1); | |
87826df0 | 1793 | btrfs_put_ordered_extent(ordered); |
4a096752 CM |
1794 | goto again; |
1795 | } | |
247e743c | 1796 | |
87826df0 JM |
1797 | ret = btrfs_delalloc_reserve_space(inode, PAGE_CACHE_SIZE); |
1798 | if (ret) { | |
1799 | mapping_set_error(page->mapping, ret); | |
1800 | end_extent_writepage(page, ret, page_start, page_end); | |
1801 | ClearPageChecked(page); | |
1802 | goto out; | |
1803 | } | |
1804 | ||
2ac55d41 | 1805 | btrfs_set_extent_delalloc(inode, page_start, page_end, &cached_state); |
247e743c | 1806 | ClearPageChecked(page); |
87826df0 | 1807 | set_page_dirty(page); |
247e743c | 1808 | out: |
2ac55d41 JB |
1809 | unlock_extent_cached(&BTRFS_I(inode)->io_tree, page_start, page_end, |
1810 | &cached_state, GFP_NOFS); | |
247e743c CM |
1811 | out_page: |
1812 | unlock_page(page); | |
1813 | page_cache_release(page); | |
b897abec | 1814 | kfree(fixup); |
247e743c CM |
1815 | } |
1816 | ||
1817 | /* | |
1818 | * There are a few paths in the higher layers of the kernel that directly | |
1819 | * set the page dirty bit without asking the filesystem if it is a | |
1820 | * good idea. This causes problems because we want to make sure COW | |
1821 | * properly happens and the data=ordered rules are followed. | |
1822 | * | |
c8b97818 | 1823 | * In our case any range that doesn't have the ORDERED bit set |
247e743c CM |
1824 | * hasn't been properly setup for IO. We kick off an async process |
1825 | * to fix it up. The async helper will wait for ordered extents, set | |
1826 | * the delalloc bit and make it safe to write the page. | |
1827 | */ | |
b2950863 | 1828 | static int btrfs_writepage_start_hook(struct page *page, u64 start, u64 end) |
247e743c CM |
1829 | { |
1830 | struct inode *inode = page->mapping->host; | |
1831 | struct btrfs_writepage_fixup *fixup; | |
1832 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
247e743c | 1833 | |
8b62b72b CM |
1834 | /* this page is properly in the ordered list */ |
1835 | if (TestClearPagePrivate2(page)) | |
247e743c CM |
1836 | return 0; |
1837 | ||
1838 | if (PageChecked(page)) | |
1839 | return -EAGAIN; | |
1840 | ||
1841 | fixup = kzalloc(sizeof(*fixup), GFP_NOFS); | |
1842 | if (!fixup) | |
1843 | return -EAGAIN; | |
f421950f | 1844 | |
247e743c CM |
1845 | SetPageChecked(page); |
1846 | page_cache_get(page); | |
1847 | fixup->work.func = btrfs_writepage_fixup_worker; | |
1848 | fixup->page = page; | |
1849 | btrfs_queue_worker(&root->fs_info->fixup_workers, &fixup->work); | |
87826df0 | 1850 | return -EBUSY; |
247e743c CM |
1851 | } |
1852 | ||
d899e052 YZ |
1853 | static int insert_reserved_file_extent(struct btrfs_trans_handle *trans, |
1854 | struct inode *inode, u64 file_pos, | |
1855 | u64 disk_bytenr, u64 disk_num_bytes, | |
1856 | u64 num_bytes, u64 ram_bytes, | |
1857 | u8 compression, u8 encryption, | |
1858 | u16 other_encoding, int extent_type) | |
1859 | { | |
1860 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
1861 | struct btrfs_file_extent_item *fi; | |
1862 | struct btrfs_path *path; | |
1863 | struct extent_buffer *leaf; | |
1864 | struct btrfs_key ins; | |
1acae57b | 1865 | int extent_inserted = 0; |
d899e052 YZ |
1866 | int ret; |
1867 | ||
1868 | path = btrfs_alloc_path(); | |
d8926bb3 MF |
1869 | if (!path) |
1870 | return -ENOMEM; | |
d899e052 | 1871 | |
a1ed835e CM |
1872 | /* |
1873 | * we may be replacing one extent in the tree with another. | |
1874 | * The new extent is pinned in the extent map, and we don't want | |
1875 | * to drop it from the cache until it is completely in the btree. | |
1876 | * | |
1877 | * So, tell btrfs_drop_extents to leave this extent in the cache. | |
1878 | * the caller is expected to unpin it and allow it to be merged | |
1879 | * with the others. | |
1880 | */ | |
1acae57b FDBM |
1881 | ret = __btrfs_drop_extents(trans, root, inode, path, file_pos, |
1882 | file_pos + num_bytes, NULL, 0, | |
1883 | 1, sizeof(*fi), &extent_inserted); | |
79787eaa JM |
1884 | if (ret) |
1885 | goto out; | |
d899e052 | 1886 | |
1acae57b FDBM |
1887 | if (!extent_inserted) { |
1888 | ins.objectid = btrfs_ino(inode); | |
1889 | ins.offset = file_pos; | |
1890 | ins.type = BTRFS_EXTENT_DATA_KEY; | |
1891 | ||
1892 | path->leave_spinning = 1; | |
1893 | ret = btrfs_insert_empty_item(trans, root, path, &ins, | |
1894 | sizeof(*fi)); | |
1895 | if (ret) | |
1896 | goto out; | |
1897 | } | |
d899e052 YZ |
1898 | leaf = path->nodes[0]; |
1899 | fi = btrfs_item_ptr(leaf, path->slots[0], | |
1900 | struct btrfs_file_extent_item); | |
1901 | btrfs_set_file_extent_generation(leaf, fi, trans->transid); | |
1902 | btrfs_set_file_extent_type(leaf, fi, extent_type); | |
1903 | btrfs_set_file_extent_disk_bytenr(leaf, fi, disk_bytenr); | |
1904 | btrfs_set_file_extent_disk_num_bytes(leaf, fi, disk_num_bytes); | |
1905 | btrfs_set_file_extent_offset(leaf, fi, 0); | |
1906 | btrfs_set_file_extent_num_bytes(leaf, fi, num_bytes); | |
1907 | btrfs_set_file_extent_ram_bytes(leaf, fi, ram_bytes); | |
1908 | btrfs_set_file_extent_compression(leaf, fi, compression); | |
1909 | btrfs_set_file_extent_encryption(leaf, fi, encryption); | |
1910 | btrfs_set_file_extent_other_encoding(leaf, fi, other_encoding); | |
b9473439 | 1911 | |
d899e052 | 1912 | btrfs_mark_buffer_dirty(leaf); |
ce195332 | 1913 | btrfs_release_path(path); |
d899e052 YZ |
1914 | |
1915 | inode_add_bytes(inode, num_bytes); | |
d899e052 YZ |
1916 | |
1917 | ins.objectid = disk_bytenr; | |
1918 | ins.offset = disk_num_bytes; | |
1919 | ins.type = BTRFS_EXTENT_ITEM_KEY; | |
5d4f98a2 YZ |
1920 | ret = btrfs_alloc_reserved_file_extent(trans, root, |
1921 | root->root_key.objectid, | |
33345d01 | 1922 | btrfs_ino(inode), file_pos, &ins); |
79787eaa | 1923 | out: |
d899e052 | 1924 | btrfs_free_path(path); |
b9473439 | 1925 | |
79787eaa | 1926 | return ret; |
d899e052 YZ |
1927 | } |
1928 | ||
38c227d8 LB |
1929 | /* snapshot-aware defrag */ |
1930 | struct sa_defrag_extent_backref { | |
1931 | struct rb_node node; | |
1932 | struct old_sa_defrag_extent *old; | |
1933 | u64 root_id; | |
1934 | u64 inum; | |
1935 | u64 file_pos; | |
1936 | u64 extent_offset; | |
1937 | u64 num_bytes; | |
1938 | u64 generation; | |
1939 | }; | |
1940 | ||
1941 | struct old_sa_defrag_extent { | |
1942 | struct list_head list; | |
1943 | struct new_sa_defrag_extent *new; | |
1944 | ||
1945 | u64 extent_offset; | |
1946 | u64 bytenr; | |
1947 | u64 offset; | |
1948 | u64 len; | |
1949 | int count; | |
1950 | }; | |
1951 | ||
1952 | struct new_sa_defrag_extent { | |
1953 | struct rb_root root; | |
1954 | struct list_head head; | |
1955 | struct btrfs_path *path; | |
1956 | struct inode *inode; | |
1957 | u64 file_pos; | |
1958 | u64 len; | |
1959 | u64 bytenr; | |
1960 | u64 disk_len; | |
1961 | u8 compress_type; | |
1962 | }; | |
1963 | ||
1964 | static int backref_comp(struct sa_defrag_extent_backref *b1, | |
1965 | struct sa_defrag_extent_backref *b2) | |
1966 | { | |
1967 | if (b1->root_id < b2->root_id) | |
1968 | return -1; | |
1969 | else if (b1->root_id > b2->root_id) | |
1970 | return 1; | |
1971 | ||
1972 | if (b1->inum < b2->inum) | |
1973 | return -1; | |
1974 | else if (b1->inum > b2->inum) | |
1975 | return 1; | |
1976 | ||
1977 | if (b1->file_pos < b2->file_pos) | |
1978 | return -1; | |
1979 | else if (b1->file_pos > b2->file_pos) | |
1980 | return 1; | |
1981 | ||
1982 | /* | |
1983 | * [------------------------------] ===> (a range of space) | |
1984 | * |<--->| |<---->| =============> (fs/file tree A) | |
1985 | * |<---------------------------->| ===> (fs/file tree B) | |
1986 | * | |
1987 | * A range of space can refer to two file extents in one tree while | |
1988 | * refer to only one file extent in another tree. | |
1989 | * | |
1990 | * So we may process a disk offset more than one time(two extents in A) | |
1991 | * and locate at the same extent(one extent in B), then insert two same | |
1992 | * backrefs(both refer to the extent in B). | |
1993 | */ | |
1994 | return 0; | |
1995 | } | |
1996 | ||
1997 | static void backref_insert(struct rb_root *root, | |
1998 | struct sa_defrag_extent_backref *backref) | |
1999 | { | |
2000 | struct rb_node **p = &root->rb_node; | |
2001 | struct rb_node *parent = NULL; | |
2002 | struct sa_defrag_extent_backref *entry; | |
2003 | int ret; | |
2004 | ||
2005 | while (*p) { | |
2006 | parent = *p; | |
2007 | entry = rb_entry(parent, struct sa_defrag_extent_backref, node); | |
2008 | ||
2009 | ret = backref_comp(backref, entry); | |
2010 | if (ret < 0) | |
2011 | p = &(*p)->rb_left; | |
2012 | else | |
2013 | p = &(*p)->rb_right; | |
2014 | } | |
2015 | ||
2016 | rb_link_node(&backref->node, parent, p); | |
2017 | rb_insert_color(&backref->node, root); | |
2018 | } | |
2019 | ||
2020 | /* | |
2021 | * Note the backref might has changed, and in this case we just return 0. | |
2022 | */ | |
2023 | static noinline int record_one_backref(u64 inum, u64 offset, u64 root_id, | |
2024 | void *ctx) | |
2025 | { | |
2026 | struct btrfs_file_extent_item *extent; | |
2027 | struct btrfs_fs_info *fs_info; | |
2028 | struct old_sa_defrag_extent *old = ctx; | |
2029 | struct new_sa_defrag_extent *new = old->new; | |
2030 | struct btrfs_path *path = new->path; | |
2031 | struct btrfs_key key; | |
2032 | struct btrfs_root *root; | |
2033 | struct sa_defrag_extent_backref *backref; | |
2034 | struct extent_buffer *leaf; | |
2035 | struct inode *inode = new->inode; | |
2036 | int slot; | |
2037 | int ret; | |
2038 | u64 extent_offset; | |
2039 | u64 num_bytes; | |
2040 | ||
2041 | if (BTRFS_I(inode)->root->root_key.objectid == root_id && | |
2042 | inum == btrfs_ino(inode)) | |
2043 | return 0; | |
2044 | ||
2045 | key.objectid = root_id; | |
2046 | key.type = BTRFS_ROOT_ITEM_KEY; | |
2047 | key.offset = (u64)-1; | |
2048 | ||
2049 | fs_info = BTRFS_I(inode)->root->fs_info; | |
2050 | root = btrfs_read_fs_root_no_name(fs_info, &key); | |
2051 | if (IS_ERR(root)) { | |
2052 | if (PTR_ERR(root) == -ENOENT) | |
2053 | return 0; | |
2054 | WARN_ON(1); | |
2055 | pr_debug("inum=%llu, offset=%llu, root_id=%llu\n", | |
2056 | inum, offset, root_id); | |
2057 | return PTR_ERR(root); | |
2058 | } | |
2059 | ||
2060 | key.objectid = inum; | |
2061 | key.type = BTRFS_EXTENT_DATA_KEY; | |
2062 | if (offset > (u64)-1 << 32) | |
2063 | key.offset = 0; | |
2064 | else | |
2065 | key.offset = offset; | |
2066 | ||
2067 | ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); | |
fae7f21c | 2068 | if (WARN_ON(ret < 0)) |
38c227d8 | 2069 | return ret; |
50f1319c | 2070 | ret = 0; |
38c227d8 LB |
2071 | |
2072 | while (1) { | |
2073 | cond_resched(); | |
2074 | ||
2075 | leaf = path->nodes[0]; | |
2076 | slot = path->slots[0]; | |
2077 | ||
2078 | if (slot >= btrfs_header_nritems(leaf)) { | |
2079 | ret = btrfs_next_leaf(root, path); | |
2080 | if (ret < 0) { | |
2081 | goto out; | |
2082 | } else if (ret > 0) { | |
2083 | ret = 0; | |
2084 | goto out; | |
2085 | } | |
2086 | continue; | |
2087 | } | |
2088 | ||
2089 | path->slots[0]++; | |
2090 | ||
2091 | btrfs_item_key_to_cpu(leaf, &key, slot); | |
2092 | ||
2093 | if (key.objectid > inum) | |
2094 | goto out; | |
2095 | ||
2096 | if (key.objectid < inum || key.type != BTRFS_EXTENT_DATA_KEY) | |
2097 | continue; | |
2098 | ||
2099 | extent = btrfs_item_ptr(leaf, slot, | |
2100 | struct btrfs_file_extent_item); | |
2101 | ||
2102 | if (btrfs_file_extent_disk_bytenr(leaf, extent) != old->bytenr) | |
2103 | continue; | |
2104 | ||
e68afa49 LB |
2105 | /* |
2106 | * 'offset' refers to the exact key.offset, | |
2107 | * NOT the 'offset' field in btrfs_extent_data_ref, ie. | |
2108 | * (key.offset - extent_offset). | |
2109 | */ | |
2110 | if (key.offset != offset) | |
38c227d8 LB |
2111 | continue; |
2112 | ||
e68afa49 | 2113 | extent_offset = btrfs_file_extent_offset(leaf, extent); |
38c227d8 | 2114 | num_bytes = btrfs_file_extent_num_bytes(leaf, extent); |
e68afa49 | 2115 | |
38c227d8 LB |
2116 | if (extent_offset >= old->extent_offset + old->offset + |
2117 | old->len || extent_offset + num_bytes <= | |
2118 | old->extent_offset + old->offset) | |
2119 | continue; | |
38c227d8 LB |
2120 | break; |
2121 | } | |
2122 | ||
2123 | backref = kmalloc(sizeof(*backref), GFP_NOFS); | |
2124 | if (!backref) { | |
2125 | ret = -ENOENT; | |
2126 | goto out; | |
2127 | } | |
2128 | ||
2129 | backref->root_id = root_id; | |
2130 | backref->inum = inum; | |
e68afa49 | 2131 | backref->file_pos = offset; |
38c227d8 LB |
2132 | backref->num_bytes = num_bytes; |
2133 | backref->extent_offset = extent_offset; | |
2134 | backref->generation = btrfs_file_extent_generation(leaf, extent); | |
2135 | backref->old = old; | |
2136 | backref_insert(&new->root, backref); | |
2137 | old->count++; | |
2138 | out: | |
2139 | btrfs_release_path(path); | |
2140 | WARN_ON(ret); | |
2141 | return ret; | |
2142 | } | |
2143 | ||
2144 | static noinline bool record_extent_backrefs(struct btrfs_path *path, | |
2145 | struct new_sa_defrag_extent *new) | |
2146 | { | |
2147 | struct btrfs_fs_info *fs_info = BTRFS_I(new->inode)->root->fs_info; | |
2148 | struct old_sa_defrag_extent *old, *tmp; | |
2149 | int ret; | |
2150 | ||
2151 | new->path = path; | |
2152 | ||
2153 | list_for_each_entry_safe(old, tmp, &new->head, list) { | |
e68afa49 LB |
2154 | ret = iterate_inodes_from_logical(old->bytenr + |
2155 | old->extent_offset, fs_info, | |
38c227d8 LB |
2156 | path, record_one_backref, |
2157 | old); | |
4724b106 JB |
2158 | if (ret < 0 && ret != -ENOENT) |
2159 | return false; | |
38c227d8 LB |
2160 | |
2161 | /* no backref to be processed for this extent */ | |
2162 | if (!old->count) { | |
2163 | list_del(&old->list); | |
2164 | kfree(old); | |
2165 | } | |
2166 | } | |
2167 | ||
2168 | if (list_empty(&new->head)) | |
2169 | return false; | |
2170 | ||
2171 | return true; | |
2172 | } | |
2173 | ||
2174 | static int relink_is_mergable(struct extent_buffer *leaf, | |
2175 | struct btrfs_file_extent_item *fi, | |
116e0024 | 2176 | struct new_sa_defrag_extent *new) |
38c227d8 | 2177 | { |
116e0024 | 2178 | if (btrfs_file_extent_disk_bytenr(leaf, fi) != new->bytenr) |
38c227d8 LB |
2179 | return 0; |
2180 | ||
2181 | if (btrfs_file_extent_type(leaf, fi) != BTRFS_FILE_EXTENT_REG) | |
2182 | return 0; | |
2183 | ||
116e0024 LB |
2184 | if (btrfs_file_extent_compression(leaf, fi) != new->compress_type) |
2185 | return 0; | |
2186 | ||
2187 | if (btrfs_file_extent_encryption(leaf, fi) || | |
38c227d8 LB |
2188 | btrfs_file_extent_other_encoding(leaf, fi)) |
2189 | return 0; | |
2190 | ||
2191 | return 1; | |
2192 | } | |
2193 | ||
2194 | /* | |
2195 | * Note the backref might has changed, and in this case we just return 0. | |
2196 | */ | |
2197 | static noinline int relink_extent_backref(struct btrfs_path *path, | |
2198 | struct sa_defrag_extent_backref *prev, | |
2199 | struct sa_defrag_extent_backref *backref) | |
2200 | { | |
2201 | struct btrfs_file_extent_item *extent; | |
2202 | struct btrfs_file_extent_item *item; | |
2203 | struct btrfs_ordered_extent *ordered; | |
2204 | struct btrfs_trans_handle *trans; | |
2205 | struct btrfs_fs_info *fs_info; | |
2206 | struct btrfs_root *root; | |
2207 | struct btrfs_key key; | |
2208 | struct extent_buffer *leaf; | |
2209 | struct old_sa_defrag_extent *old = backref->old; | |
2210 | struct new_sa_defrag_extent *new = old->new; | |
2211 | struct inode *src_inode = new->inode; | |
2212 | struct inode *inode; | |
2213 | struct extent_state *cached = NULL; | |
2214 | int ret = 0; | |
2215 | u64 start; | |
2216 | u64 len; | |
2217 | u64 lock_start; | |
2218 | u64 lock_end; | |
2219 | bool merge = false; | |
2220 | int index; | |
2221 | ||
2222 | if (prev && prev->root_id == backref->root_id && | |
2223 | prev->inum == backref->inum && | |
2224 | prev->file_pos + prev->num_bytes == backref->file_pos) | |
2225 | merge = true; | |
2226 | ||
2227 | /* step 1: get root */ | |
2228 | key.objectid = backref->root_id; | |
2229 | key.type = BTRFS_ROOT_ITEM_KEY; | |
2230 | key.offset = (u64)-1; | |
2231 | ||
2232 | fs_info = BTRFS_I(src_inode)->root->fs_info; | |
2233 | index = srcu_read_lock(&fs_info->subvol_srcu); | |
2234 | ||
2235 | root = btrfs_read_fs_root_no_name(fs_info, &key); | |
2236 | if (IS_ERR(root)) { | |
2237 | srcu_read_unlock(&fs_info->subvol_srcu, index); | |
2238 | if (PTR_ERR(root) == -ENOENT) | |
2239 | return 0; | |
2240 | return PTR_ERR(root); | |
2241 | } | |
38c227d8 | 2242 | |
bcbba5e6 WS |
2243 | if (btrfs_root_readonly(root)) { |
2244 | srcu_read_unlock(&fs_info->subvol_srcu, index); | |
2245 | return 0; | |
2246 | } | |
2247 | ||
38c227d8 LB |
2248 | /* step 2: get inode */ |
2249 | key.objectid = backref->inum; | |
2250 | key.type = BTRFS_INODE_ITEM_KEY; | |
2251 | key.offset = 0; | |
2252 | ||
2253 | inode = btrfs_iget(fs_info->sb, &key, root, NULL); | |
2254 | if (IS_ERR(inode)) { | |
2255 | srcu_read_unlock(&fs_info->subvol_srcu, index); | |
2256 | return 0; | |
2257 | } | |
2258 | ||
2259 | srcu_read_unlock(&fs_info->subvol_srcu, index); | |
2260 | ||
2261 | /* step 3: relink backref */ | |
2262 | lock_start = backref->file_pos; | |
2263 | lock_end = backref->file_pos + backref->num_bytes - 1; | |
2264 | lock_extent_bits(&BTRFS_I(inode)->io_tree, lock_start, lock_end, | |
2265 | 0, &cached); | |
2266 | ||
2267 | ordered = btrfs_lookup_first_ordered_extent(inode, lock_end); | |
2268 | if (ordered) { | |
2269 | btrfs_put_ordered_extent(ordered); | |
2270 | goto out_unlock; | |
2271 | } | |
2272 | ||
2273 | trans = btrfs_join_transaction(root); | |
2274 | if (IS_ERR(trans)) { | |
2275 | ret = PTR_ERR(trans); | |
2276 | goto out_unlock; | |
2277 | } | |
2278 | ||
2279 | key.objectid = backref->inum; | |
2280 | key.type = BTRFS_EXTENT_DATA_KEY; | |
2281 | key.offset = backref->file_pos; | |
2282 | ||
2283 | ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); | |
2284 | if (ret < 0) { | |
2285 | goto out_free_path; | |
2286 | } else if (ret > 0) { | |
2287 | ret = 0; | |
2288 | goto out_free_path; | |
2289 | } | |
2290 | ||
2291 | extent = btrfs_item_ptr(path->nodes[0], path->slots[0], | |
2292 | struct btrfs_file_extent_item); | |
2293 | ||
2294 | if (btrfs_file_extent_generation(path->nodes[0], extent) != | |
2295 | backref->generation) | |
2296 | goto out_free_path; | |
2297 | ||
2298 | btrfs_release_path(path); | |
2299 | ||
2300 | start = backref->file_pos; | |
2301 | if (backref->extent_offset < old->extent_offset + old->offset) | |
2302 | start += old->extent_offset + old->offset - | |
2303 | backref->extent_offset; | |
2304 | ||
2305 | len = min(backref->extent_offset + backref->num_bytes, | |
2306 | old->extent_offset + old->offset + old->len); | |
2307 | len -= max(backref->extent_offset, old->extent_offset + old->offset); | |
2308 | ||
2309 | ret = btrfs_drop_extents(trans, root, inode, start, | |
2310 | start + len, 1); | |
2311 | if (ret) | |
2312 | goto out_free_path; | |
2313 | again: | |
2314 | key.objectid = btrfs_ino(inode); | |
2315 | key.type = BTRFS_EXTENT_DATA_KEY; | |
2316 | key.offset = start; | |
2317 | ||
a09a0a70 | 2318 | path->leave_spinning = 1; |
38c227d8 LB |
2319 | if (merge) { |
2320 | struct btrfs_file_extent_item *fi; | |
2321 | u64 extent_len; | |
2322 | struct btrfs_key found_key; | |
2323 | ||
3c9665df | 2324 | ret = btrfs_search_slot(trans, root, &key, path, 0, 1); |
38c227d8 LB |
2325 | if (ret < 0) |
2326 | goto out_free_path; | |
2327 | ||
2328 | path->slots[0]--; | |
2329 | leaf = path->nodes[0]; | |
2330 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); | |
2331 | ||
2332 | fi = btrfs_item_ptr(leaf, path->slots[0], | |
2333 | struct btrfs_file_extent_item); | |
2334 | extent_len = btrfs_file_extent_num_bytes(leaf, fi); | |
2335 | ||
116e0024 LB |
2336 | if (extent_len + found_key.offset == start && |
2337 | relink_is_mergable(leaf, fi, new)) { | |
38c227d8 LB |
2338 | btrfs_set_file_extent_num_bytes(leaf, fi, |
2339 | extent_len + len); | |
2340 | btrfs_mark_buffer_dirty(leaf); | |
2341 | inode_add_bytes(inode, len); | |
2342 | ||
2343 | ret = 1; | |
2344 | goto out_free_path; | |
2345 | } else { | |
2346 | merge = false; | |
2347 | btrfs_release_path(path); | |
2348 | goto again; | |
2349 | } | |
2350 | } | |
2351 | ||
2352 | ret = btrfs_insert_empty_item(trans, root, path, &key, | |
2353 | sizeof(*extent)); | |
2354 | if (ret) { | |
2355 | btrfs_abort_transaction(trans, root, ret); | |
2356 | goto out_free_path; | |
2357 | } | |
2358 | ||
2359 | leaf = path->nodes[0]; | |
2360 | item = btrfs_item_ptr(leaf, path->slots[0], | |
2361 | struct btrfs_file_extent_item); | |
2362 | btrfs_set_file_extent_disk_bytenr(leaf, item, new->bytenr); | |
2363 | btrfs_set_file_extent_disk_num_bytes(leaf, item, new->disk_len); | |
2364 | btrfs_set_file_extent_offset(leaf, item, start - new->file_pos); | |
2365 | btrfs_set_file_extent_num_bytes(leaf, item, len); | |
2366 | btrfs_set_file_extent_ram_bytes(leaf, item, new->len); | |
2367 | btrfs_set_file_extent_generation(leaf, item, trans->transid); | |
2368 | btrfs_set_file_extent_type(leaf, item, BTRFS_FILE_EXTENT_REG); | |
2369 | btrfs_set_file_extent_compression(leaf, item, new->compress_type); | |
2370 | btrfs_set_file_extent_encryption(leaf, item, 0); | |
2371 | btrfs_set_file_extent_other_encoding(leaf, item, 0); | |
2372 | ||
2373 | btrfs_mark_buffer_dirty(leaf); | |
2374 | inode_add_bytes(inode, len); | |
a09a0a70 | 2375 | btrfs_release_path(path); |
38c227d8 LB |
2376 | |
2377 | ret = btrfs_inc_extent_ref(trans, root, new->bytenr, | |
2378 | new->disk_len, 0, | |
2379 | backref->root_id, backref->inum, | |
2380 | new->file_pos, 0); /* start - extent_offset */ | |
2381 | if (ret) { | |
2382 | btrfs_abort_transaction(trans, root, ret); | |
2383 | goto out_free_path; | |
2384 | } | |
2385 | ||
2386 | ret = 1; | |
2387 | out_free_path: | |
2388 | btrfs_release_path(path); | |
a09a0a70 | 2389 | path->leave_spinning = 0; |
38c227d8 LB |
2390 | btrfs_end_transaction(trans, root); |
2391 | out_unlock: | |
2392 | unlock_extent_cached(&BTRFS_I(inode)->io_tree, lock_start, lock_end, | |
2393 | &cached, GFP_NOFS); | |
2394 | iput(inode); | |
2395 | return ret; | |
2396 | } | |
2397 | ||
6f519564 LB |
2398 | static void free_sa_defrag_extent(struct new_sa_defrag_extent *new) |
2399 | { | |
2400 | struct old_sa_defrag_extent *old, *tmp; | |
2401 | ||
2402 | if (!new) | |
2403 | return; | |
2404 | ||
2405 | list_for_each_entry_safe(old, tmp, &new->head, list) { | |
2406 | list_del(&old->list); | |
2407 | kfree(old); | |
2408 | } | |
2409 | kfree(new); | |
2410 | } | |
2411 | ||
38c227d8 LB |
2412 | static void relink_file_extents(struct new_sa_defrag_extent *new) |
2413 | { | |
2414 | struct btrfs_path *path; | |
38c227d8 LB |
2415 | struct sa_defrag_extent_backref *backref; |
2416 | struct sa_defrag_extent_backref *prev = NULL; | |
2417 | struct inode *inode; | |
2418 | struct btrfs_root *root; | |
2419 | struct rb_node *node; | |
2420 | int ret; | |
2421 | ||
2422 | inode = new->inode; | |
2423 | root = BTRFS_I(inode)->root; | |
2424 | ||
2425 | path = btrfs_alloc_path(); | |
2426 | if (!path) | |
2427 | return; | |
2428 | ||
2429 | if (!record_extent_backrefs(path, new)) { | |
2430 | btrfs_free_path(path); | |
2431 | goto out; | |
2432 | } | |
2433 | btrfs_release_path(path); | |
2434 | ||
2435 | while (1) { | |
2436 | node = rb_first(&new->root); | |
2437 | if (!node) | |
2438 | break; | |
2439 | rb_erase(node, &new->root); | |
2440 | ||
2441 | backref = rb_entry(node, struct sa_defrag_extent_backref, node); | |
2442 | ||
2443 | ret = relink_extent_backref(path, prev, backref); | |
2444 | WARN_ON(ret < 0); | |
2445 | ||
2446 | kfree(prev); | |
2447 | ||
2448 | if (ret == 1) | |
2449 | prev = backref; | |
2450 | else | |
2451 | prev = NULL; | |
2452 | cond_resched(); | |
2453 | } | |
2454 | kfree(prev); | |
2455 | ||
2456 | btrfs_free_path(path); | |
38c227d8 | 2457 | out: |
6f519564 LB |
2458 | free_sa_defrag_extent(new); |
2459 | ||
38c227d8 LB |
2460 | atomic_dec(&root->fs_info->defrag_running); |
2461 | wake_up(&root->fs_info->transaction_wait); | |
38c227d8 LB |
2462 | } |
2463 | ||
2464 | static struct new_sa_defrag_extent * | |
2465 | record_old_file_extents(struct inode *inode, | |
2466 | struct btrfs_ordered_extent *ordered) | |
2467 | { | |
2468 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
2469 | struct btrfs_path *path; | |
2470 | struct btrfs_key key; | |
6f519564 | 2471 | struct old_sa_defrag_extent *old; |
38c227d8 LB |
2472 | struct new_sa_defrag_extent *new; |
2473 | int ret; | |
2474 | ||
2475 | new = kmalloc(sizeof(*new), GFP_NOFS); | |
2476 | if (!new) | |
2477 | return NULL; | |
2478 | ||
2479 | new->inode = inode; | |
2480 | new->file_pos = ordered->file_offset; | |
2481 | new->len = ordered->len; | |
2482 | new->bytenr = ordered->start; | |
2483 | new->disk_len = ordered->disk_len; | |
2484 | new->compress_type = ordered->compress_type; | |
2485 | new->root = RB_ROOT; | |
2486 | INIT_LIST_HEAD(&new->head); | |
2487 | ||
2488 | path = btrfs_alloc_path(); | |
2489 | if (!path) | |
2490 | goto out_kfree; | |
2491 | ||
2492 | key.objectid = btrfs_ino(inode); | |
2493 | key.type = BTRFS_EXTENT_DATA_KEY; | |
2494 | key.offset = new->file_pos; | |
2495 | ||
2496 | ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); | |
2497 | if (ret < 0) | |
2498 | goto out_free_path; | |
2499 | if (ret > 0 && path->slots[0] > 0) | |
2500 | path->slots[0]--; | |
2501 | ||
2502 | /* find out all the old extents for the file range */ | |
2503 | while (1) { | |
2504 | struct btrfs_file_extent_item *extent; | |
2505 | struct extent_buffer *l; | |
2506 | int slot; | |
2507 | u64 num_bytes; | |
2508 | u64 offset; | |
2509 | u64 end; | |
2510 | u64 disk_bytenr; | |
2511 | u64 extent_offset; | |
2512 | ||
2513 | l = path->nodes[0]; | |
2514 | slot = path->slots[0]; | |
2515 | ||
2516 | if (slot >= btrfs_header_nritems(l)) { | |
2517 | ret = btrfs_next_leaf(root, path); | |
2518 | if (ret < 0) | |
6f519564 | 2519 | goto out_free_path; |
38c227d8 LB |
2520 | else if (ret > 0) |
2521 | break; | |
2522 | continue; | |
2523 | } | |
2524 | ||
2525 | btrfs_item_key_to_cpu(l, &key, slot); | |
2526 | ||
2527 | if (key.objectid != btrfs_ino(inode)) | |
2528 | break; | |
2529 | if (key.type != BTRFS_EXTENT_DATA_KEY) | |
2530 | break; | |
2531 | if (key.offset >= new->file_pos + new->len) | |
2532 | break; | |
2533 | ||
2534 | extent = btrfs_item_ptr(l, slot, struct btrfs_file_extent_item); | |
2535 | ||
2536 | num_bytes = btrfs_file_extent_num_bytes(l, extent); | |
2537 | if (key.offset + num_bytes < new->file_pos) | |
2538 | goto next; | |
2539 | ||
2540 | disk_bytenr = btrfs_file_extent_disk_bytenr(l, extent); | |
2541 | if (!disk_bytenr) | |
2542 | goto next; | |
2543 | ||
2544 | extent_offset = btrfs_file_extent_offset(l, extent); | |
2545 | ||
2546 | old = kmalloc(sizeof(*old), GFP_NOFS); | |
2547 | if (!old) | |
6f519564 | 2548 | goto out_free_path; |
38c227d8 LB |
2549 | |
2550 | offset = max(new->file_pos, key.offset); | |
2551 | end = min(new->file_pos + new->len, key.offset + num_bytes); | |
2552 | ||
2553 | old->bytenr = disk_bytenr; | |
2554 | old->extent_offset = extent_offset; | |
2555 | old->offset = offset - key.offset; | |
2556 | old->len = end - offset; | |
2557 | old->new = new; | |
2558 | old->count = 0; | |
2559 | list_add_tail(&old->list, &new->head); | |
2560 | next: | |
2561 | path->slots[0]++; | |
2562 | cond_resched(); | |
2563 | } | |
2564 | ||
2565 | btrfs_free_path(path); | |
2566 | atomic_inc(&root->fs_info->defrag_running); | |
2567 | ||
2568 | return new; | |
2569 | ||
38c227d8 LB |
2570 | out_free_path: |
2571 | btrfs_free_path(path); | |
2572 | out_kfree: | |
6f519564 | 2573 | free_sa_defrag_extent(new); |
38c227d8 LB |
2574 | return NULL; |
2575 | } | |
2576 | ||
d352ac68 CM |
2577 | /* as ordered data IO finishes, this gets called so we can finish |
2578 | * an ordered extent if the range of bytes in the file it covers are | |
2579 | * fully written. | |
2580 | */ | |
5fd02043 | 2581 | static int btrfs_finish_ordered_io(struct btrfs_ordered_extent *ordered_extent) |
e6dcd2dc | 2582 | { |
5fd02043 | 2583 | struct inode *inode = ordered_extent->inode; |
e6dcd2dc | 2584 | struct btrfs_root *root = BTRFS_I(inode)->root; |
0ca1f7ce | 2585 | struct btrfs_trans_handle *trans = NULL; |
e6dcd2dc | 2586 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; |
2ac55d41 | 2587 | struct extent_state *cached_state = NULL; |
38c227d8 | 2588 | struct new_sa_defrag_extent *new = NULL; |
261507a0 | 2589 | int compress_type = 0; |
77cef2ec JB |
2590 | int ret = 0; |
2591 | u64 logical_len = ordered_extent->len; | |
82d5902d | 2592 | bool nolock; |
77cef2ec | 2593 | bool truncated = false; |
e6dcd2dc | 2594 | |
83eea1f1 | 2595 | nolock = btrfs_is_free_space_inode(inode); |
0cb59c99 | 2596 | |
5fd02043 JB |
2597 | if (test_bit(BTRFS_ORDERED_IOERR, &ordered_extent->flags)) { |
2598 | ret = -EIO; | |
2599 | goto out; | |
2600 | } | |
2601 | ||
77cef2ec JB |
2602 | if (test_bit(BTRFS_ORDERED_TRUNCATED, &ordered_extent->flags)) { |
2603 | truncated = true; | |
2604 | logical_len = ordered_extent->truncated_len; | |
2605 | /* Truncated the entire extent, don't bother adding */ | |
2606 | if (!logical_len) | |
2607 | goto out; | |
2608 | } | |
2609 | ||
c2167754 | 2610 | if (test_bit(BTRFS_ORDERED_NOCOW, &ordered_extent->flags)) { |
79787eaa | 2611 | BUG_ON(!list_empty(&ordered_extent->list)); /* Logic error */ |
6c760c07 JB |
2612 | btrfs_ordered_update_i_size(inode, 0, ordered_extent); |
2613 | if (nolock) | |
2614 | trans = btrfs_join_transaction_nolock(root); | |
2615 | else | |
2616 | trans = btrfs_join_transaction(root); | |
2617 | if (IS_ERR(trans)) { | |
2618 | ret = PTR_ERR(trans); | |
2619 | trans = NULL; | |
2620 | goto out; | |
c2167754 | 2621 | } |
6c760c07 JB |
2622 | trans->block_rsv = &root->fs_info->delalloc_block_rsv; |
2623 | ret = btrfs_update_inode_fallback(trans, root, inode); | |
2624 | if (ret) /* -ENOMEM or corruption */ | |
2625 | btrfs_abort_transaction(trans, root, ret); | |
c2167754 YZ |
2626 | goto out; |
2627 | } | |
e6dcd2dc | 2628 | |
2ac55d41 JB |
2629 | lock_extent_bits(io_tree, ordered_extent->file_offset, |
2630 | ordered_extent->file_offset + ordered_extent->len - 1, | |
d0082371 | 2631 | 0, &cached_state); |
e6dcd2dc | 2632 | |
38c227d8 LB |
2633 | ret = test_range_bit(io_tree, ordered_extent->file_offset, |
2634 | ordered_extent->file_offset + ordered_extent->len - 1, | |
2635 | EXTENT_DEFRAG, 1, cached_state); | |
2636 | if (ret) { | |
2637 | u64 last_snapshot = btrfs_root_last_snapshot(&root->root_item); | |
8101c8db | 2638 | if (0 && last_snapshot >= BTRFS_I(inode)->generation) |
38c227d8 LB |
2639 | /* the inode is shared */ |
2640 | new = record_old_file_extents(inode, ordered_extent); | |
2641 | ||
2642 | clear_extent_bit(io_tree, ordered_extent->file_offset, | |
2643 | ordered_extent->file_offset + ordered_extent->len - 1, | |
2644 | EXTENT_DEFRAG, 0, 0, &cached_state, GFP_NOFS); | |
2645 | } | |
2646 | ||
0cb59c99 | 2647 | if (nolock) |
7a7eaa40 | 2648 | trans = btrfs_join_transaction_nolock(root); |
0cb59c99 | 2649 | else |
7a7eaa40 | 2650 | trans = btrfs_join_transaction(root); |
79787eaa JM |
2651 | if (IS_ERR(trans)) { |
2652 | ret = PTR_ERR(trans); | |
2653 | trans = NULL; | |
2654 | goto out_unlock; | |
2655 | } | |
0ca1f7ce | 2656 | trans->block_rsv = &root->fs_info->delalloc_block_rsv; |
c2167754 | 2657 | |
c8b97818 | 2658 | if (test_bit(BTRFS_ORDERED_COMPRESSED, &ordered_extent->flags)) |
261507a0 | 2659 | compress_type = ordered_extent->compress_type; |
d899e052 | 2660 | if (test_bit(BTRFS_ORDERED_PREALLOC, &ordered_extent->flags)) { |
261507a0 | 2661 | BUG_ON(compress_type); |
920bbbfb | 2662 | ret = btrfs_mark_extent_written(trans, inode, |
d899e052 YZ |
2663 | ordered_extent->file_offset, |
2664 | ordered_extent->file_offset + | |
77cef2ec | 2665 | logical_len); |
d899e052 | 2666 | } else { |
0af3d00b | 2667 | BUG_ON(root == root->fs_info->tree_root); |
d899e052 YZ |
2668 | ret = insert_reserved_file_extent(trans, inode, |
2669 | ordered_extent->file_offset, | |
2670 | ordered_extent->start, | |
2671 | ordered_extent->disk_len, | |
77cef2ec | 2672 | logical_len, logical_len, |
261507a0 | 2673 | compress_type, 0, 0, |
d899e052 | 2674 | BTRFS_FILE_EXTENT_REG); |
d899e052 | 2675 | } |
5dc562c5 JB |
2676 | unpin_extent_cache(&BTRFS_I(inode)->extent_tree, |
2677 | ordered_extent->file_offset, ordered_extent->len, | |
2678 | trans->transid); | |
79787eaa JM |
2679 | if (ret < 0) { |
2680 | btrfs_abort_transaction(trans, root, ret); | |
5fd02043 | 2681 | goto out_unlock; |
79787eaa | 2682 | } |
2ac55d41 | 2683 | |
e6dcd2dc CM |
2684 | add_pending_csums(trans, inode, ordered_extent->file_offset, |
2685 | &ordered_extent->list); | |
2686 | ||
6c760c07 JB |
2687 | btrfs_ordered_update_i_size(inode, 0, ordered_extent); |
2688 | ret = btrfs_update_inode_fallback(trans, root, inode); | |
2689 | if (ret) { /* -ENOMEM or corruption */ | |
2690 | btrfs_abort_transaction(trans, root, ret); | |
2691 | goto out_unlock; | |
1ef30be1 JB |
2692 | } |
2693 | ret = 0; | |
5fd02043 JB |
2694 | out_unlock: |
2695 | unlock_extent_cached(io_tree, ordered_extent->file_offset, | |
2696 | ordered_extent->file_offset + | |
2697 | ordered_extent->len - 1, &cached_state, GFP_NOFS); | |
c2167754 | 2698 | out: |
5b0e95bf | 2699 | if (root != root->fs_info->tree_root) |
0cb59c99 | 2700 | btrfs_delalloc_release_metadata(inode, ordered_extent->len); |
a698d075 MX |
2701 | if (trans) |
2702 | btrfs_end_transaction(trans, root); | |
0cb59c99 | 2703 | |
77cef2ec JB |
2704 | if (ret || truncated) { |
2705 | u64 start, end; | |
2706 | ||
2707 | if (truncated) | |
2708 | start = ordered_extent->file_offset + logical_len; | |
2709 | else | |
2710 | start = ordered_extent->file_offset; | |
2711 | end = ordered_extent->file_offset + ordered_extent->len - 1; | |
2712 | clear_extent_uptodate(io_tree, start, end, NULL, GFP_NOFS); | |
2713 | ||
2714 | /* Drop the cache for the part of the extent we didn't write. */ | |
2715 | btrfs_drop_extent_cache(inode, start, end, 0); | |
5fd02043 | 2716 | |
0bec9ef5 JB |
2717 | /* |
2718 | * If the ordered extent had an IOERR or something else went | |
2719 | * wrong we need to return the space for this ordered extent | |
77cef2ec JB |
2720 | * back to the allocator. We only free the extent in the |
2721 | * truncated case if we didn't write out the extent at all. | |
0bec9ef5 | 2722 | */ |
77cef2ec JB |
2723 | if ((ret || !logical_len) && |
2724 | !test_bit(BTRFS_ORDERED_NOCOW, &ordered_extent->flags) && | |
0bec9ef5 JB |
2725 | !test_bit(BTRFS_ORDERED_PREALLOC, &ordered_extent->flags)) |
2726 | btrfs_free_reserved_extent(root, ordered_extent->start, | |
2727 | ordered_extent->disk_len); | |
2728 | } | |
2729 | ||
2730 | ||
5fd02043 | 2731 | /* |
8bad3c02 LB |
2732 | * This needs to be done to make sure anybody waiting knows we are done |
2733 | * updating everything for this ordered extent. | |
5fd02043 JB |
2734 | */ |
2735 | btrfs_remove_ordered_extent(inode, ordered_extent); | |
2736 | ||
38c227d8 | 2737 | /* for snapshot-aware defrag */ |
6f519564 LB |
2738 | if (new) { |
2739 | if (ret) { | |
2740 | free_sa_defrag_extent(new); | |
2741 | atomic_dec(&root->fs_info->defrag_running); | |
2742 | } else { | |
2743 | relink_file_extents(new); | |
2744 | } | |
2745 | } | |
38c227d8 | 2746 | |
e6dcd2dc CM |
2747 | /* once for us */ |
2748 | btrfs_put_ordered_extent(ordered_extent); | |
2749 | /* once for the tree */ | |
2750 | btrfs_put_ordered_extent(ordered_extent); | |
2751 | ||
5fd02043 JB |
2752 | return ret; |
2753 | } | |
2754 | ||
2755 | static void finish_ordered_fn(struct btrfs_work *work) | |
2756 | { | |
2757 | struct btrfs_ordered_extent *ordered_extent; | |
2758 | ordered_extent = container_of(work, struct btrfs_ordered_extent, work); | |
2759 | btrfs_finish_ordered_io(ordered_extent); | |
e6dcd2dc CM |
2760 | } |
2761 | ||
b2950863 | 2762 | static int btrfs_writepage_end_io_hook(struct page *page, u64 start, u64 end, |
211f90e6 CM |
2763 | struct extent_state *state, int uptodate) |
2764 | { | |
5fd02043 JB |
2765 | struct inode *inode = page->mapping->host; |
2766 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
2767 | struct btrfs_ordered_extent *ordered_extent = NULL; | |
2768 | struct btrfs_workers *workers; | |
2769 | ||
1abe9b8a | 2770 | trace_btrfs_writepage_end_io_hook(page, start, end, uptodate); |
2771 | ||
8b62b72b | 2772 | ClearPagePrivate2(page); |
5fd02043 JB |
2773 | if (!btrfs_dec_test_ordered_pending(inode, &ordered_extent, start, |
2774 | end - start + 1, uptodate)) | |
2775 | return 0; | |
2776 | ||
2777 | ordered_extent->work.func = finish_ordered_fn; | |
2778 | ordered_extent->work.flags = 0; | |
2779 | ||
83eea1f1 | 2780 | if (btrfs_is_free_space_inode(inode)) |
5fd02043 JB |
2781 | workers = &root->fs_info->endio_freespace_worker; |
2782 | else | |
2783 | workers = &root->fs_info->endio_write_workers; | |
2784 | btrfs_queue_worker(workers, &ordered_extent->work); | |
2785 | ||
2786 | return 0; | |
211f90e6 CM |
2787 | } |
2788 | ||
d352ac68 CM |
2789 | /* |
2790 | * when reads are done, we need to check csums to verify the data is correct | |
4a54c8c1 JS |
2791 | * if there's a match, we allow the bio to finish. If not, the code in |
2792 | * extent_io.c will try to find good copies for us. | |
d352ac68 | 2793 | */ |
facc8a22 MX |
2794 | static int btrfs_readpage_end_io_hook(struct btrfs_io_bio *io_bio, |
2795 | u64 phy_offset, struct page *page, | |
2796 | u64 start, u64 end, int mirror) | |
07157aac | 2797 | { |
4eee4fa4 | 2798 | size_t offset = start - page_offset(page); |
07157aac | 2799 | struct inode *inode = page->mapping->host; |
d1310b2e | 2800 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; |
07157aac | 2801 | char *kaddr; |
ff79f819 | 2802 | struct btrfs_root *root = BTRFS_I(inode)->root; |
facc8a22 | 2803 | u32 csum_expected; |
ff79f819 | 2804 | u32 csum = ~(u32)0; |
c2cf52eb SK |
2805 | static DEFINE_RATELIMIT_STATE(_rs, DEFAULT_RATELIMIT_INTERVAL, |
2806 | DEFAULT_RATELIMIT_BURST); | |
d1310b2e | 2807 | |
d20f7043 CM |
2808 | if (PageChecked(page)) { |
2809 | ClearPageChecked(page); | |
2810 | goto good; | |
2811 | } | |
6cbff00f CH |
2812 | |
2813 | if (BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM) | |
08d2f347 | 2814 | goto good; |
17d217fe YZ |
2815 | |
2816 | if (root->root_key.objectid == BTRFS_DATA_RELOC_TREE_OBJECTID && | |
9655d298 | 2817 | test_range_bit(io_tree, start, end, EXTENT_NODATASUM, 1, NULL)) { |
17d217fe YZ |
2818 | clear_extent_bits(io_tree, start, end, EXTENT_NODATASUM, |
2819 | GFP_NOFS); | |
b6cda9bc | 2820 | return 0; |
17d217fe | 2821 | } |
d20f7043 | 2822 | |
facc8a22 MX |
2823 | phy_offset >>= inode->i_sb->s_blocksize_bits; |
2824 | csum_expected = *(((u32 *)io_bio->csum) + phy_offset); | |
d397712b | 2825 | |
facc8a22 | 2826 | kaddr = kmap_atomic(page); |
b0496686 | 2827 | csum = btrfs_csum_data(kaddr + offset, csum, end - start + 1); |
ff79f819 | 2828 | btrfs_csum_final(csum, (char *)&csum); |
facc8a22 | 2829 | if (csum != csum_expected) |
07157aac | 2830 | goto zeroit; |
d397712b | 2831 | |
7ac687d9 | 2832 | kunmap_atomic(kaddr); |
d20f7043 | 2833 | good: |
07157aac CM |
2834 | return 0; |
2835 | ||
2836 | zeroit: | |
c2cf52eb | 2837 | if (__ratelimit(&_rs)) |
facc8a22 | 2838 | btrfs_info(root->fs_info, "csum failed ino %llu off %llu csum %u expected csum %u", |
c1c9ff7c | 2839 | btrfs_ino(page->mapping->host), start, csum, csum_expected); |
db94535d CM |
2840 | memset(kaddr + offset, 1, end - start + 1); |
2841 | flush_dcache_page(page); | |
7ac687d9 | 2842 | kunmap_atomic(kaddr); |
facc8a22 | 2843 | if (csum_expected == 0) |
3b951516 | 2844 | return 0; |
7e38326f | 2845 | return -EIO; |
07157aac | 2846 | } |
b888db2b | 2847 | |
24bbcf04 YZ |
2848 | struct delayed_iput { |
2849 | struct list_head list; | |
2850 | struct inode *inode; | |
2851 | }; | |
2852 | ||
79787eaa JM |
2853 | /* JDM: If this is fs-wide, why can't we add a pointer to |
2854 | * btrfs_inode instead and avoid the allocation? */ | |
24bbcf04 YZ |
2855 | void btrfs_add_delayed_iput(struct inode *inode) |
2856 | { | |
2857 | struct btrfs_fs_info *fs_info = BTRFS_I(inode)->root->fs_info; | |
2858 | struct delayed_iput *delayed; | |
2859 | ||
2860 | if (atomic_add_unless(&inode->i_count, -1, 1)) | |
2861 | return; | |
2862 | ||
2863 | delayed = kmalloc(sizeof(*delayed), GFP_NOFS | __GFP_NOFAIL); | |
2864 | delayed->inode = inode; | |
2865 | ||
2866 | spin_lock(&fs_info->delayed_iput_lock); | |
2867 | list_add_tail(&delayed->list, &fs_info->delayed_iputs); | |
2868 | spin_unlock(&fs_info->delayed_iput_lock); | |
2869 | } | |
2870 | ||
2871 | void btrfs_run_delayed_iputs(struct btrfs_root *root) | |
2872 | { | |
2873 | LIST_HEAD(list); | |
2874 | struct btrfs_fs_info *fs_info = root->fs_info; | |
2875 | struct delayed_iput *delayed; | |
2876 | int empty; | |
2877 | ||
2878 | spin_lock(&fs_info->delayed_iput_lock); | |
2879 | empty = list_empty(&fs_info->delayed_iputs); | |
2880 | spin_unlock(&fs_info->delayed_iput_lock); | |
2881 | if (empty) | |
2882 | return; | |
2883 | ||
24bbcf04 YZ |
2884 | spin_lock(&fs_info->delayed_iput_lock); |
2885 | list_splice_init(&fs_info->delayed_iputs, &list); | |
2886 | spin_unlock(&fs_info->delayed_iput_lock); | |
2887 | ||
2888 | while (!list_empty(&list)) { | |
2889 | delayed = list_entry(list.next, struct delayed_iput, list); | |
2890 | list_del(&delayed->list); | |
2891 | iput(delayed->inode); | |
2892 | kfree(delayed); | |
2893 | } | |
24bbcf04 YZ |
2894 | } |
2895 | ||
d68fc57b | 2896 | /* |
42b2aa86 | 2897 | * This is called in transaction commit time. If there are no orphan |
d68fc57b YZ |
2898 | * files in the subvolume, it removes orphan item and frees block_rsv |
2899 | * structure. | |
2900 | */ | |
2901 | void btrfs_orphan_commit_root(struct btrfs_trans_handle *trans, | |
2902 | struct btrfs_root *root) | |
2903 | { | |
90290e19 | 2904 | struct btrfs_block_rsv *block_rsv; |
d68fc57b YZ |
2905 | int ret; |
2906 | ||
8a35d95f | 2907 | if (atomic_read(&root->orphan_inodes) || |
d68fc57b YZ |
2908 | root->orphan_cleanup_state != ORPHAN_CLEANUP_DONE) |
2909 | return; | |
2910 | ||
90290e19 | 2911 | spin_lock(&root->orphan_lock); |
8a35d95f | 2912 | if (atomic_read(&root->orphan_inodes)) { |
90290e19 JB |
2913 | spin_unlock(&root->orphan_lock); |
2914 | return; | |
2915 | } | |
2916 | ||
2917 | if (root->orphan_cleanup_state != ORPHAN_CLEANUP_DONE) { | |
2918 | spin_unlock(&root->orphan_lock); | |
2919 | return; | |
2920 | } | |
2921 | ||
2922 | block_rsv = root->orphan_block_rsv; | |
2923 | root->orphan_block_rsv = NULL; | |
2924 | spin_unlock(&root->orphan_lock); | |
2925 | ||
d68fc57b YZ |
2926 | if (root->orphan_item_inserted && |
2927 | btrfs_root_refs(&root->root_item) > 0) { | |
2928 | ret = btrfs_del_orphan_item(trans, root->fs_info->tree_root, | |
2929 | root->root_key.objectid); | |
4ef31a45 JB |
2930 | if (ret) |
2931 | btrfs_abort_transaction(trans, root, ret); | |
2932 | else | |
2933 | root->orphan_item_inserted = 0; | |
d68fc57b YZ |
2934 | } |
2935 | ||
90290e19 JB |
2936 | if (block_rsv) { |
2937 | WARN_ON(block_rsv->size > 0); | |
2938 | btrfs_free_block_rsv(root, block_rsv); | |
d68fc57b YZ |
2939 | } |
2940 | } | |
2941 | ||
7b128766 JB |
2942 | /* |
2943 | * This creates an orphan entry for the given inode in case something goes | |
2944 | * wrong in the middle of an unlink/truncate. | |
d68fc57b YZ |
2945 | * |
2946 | * NOTE: caller of this function should reserve 5 units of metadata for | |
2947 | * this function. | |
7b128766 JB |
2948 | */ |
2949 | int btrfs_orphan_add(struct btrfs_trans_handle *trans, struct inode *inode) | |
2950 | { | |
2951 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
d68fc57b YZ |
2952 | struct btrfs_block_rsv *block_rsv = NULL; |
2953 | int reserve = 0; | |
2954 | int insert = 0; | |
2955 | int ret; | |
7b128766 | 2956 | |
d68fc57b | 2957 | if (!root->orphan_block_rsv) { |
66d8f3dd | 2958 | block_rsv = btrfs_alloc_block_rsv(root, BTRFS_BLOCK_RSV_TEMP); |
b532402e TI |
2959 | if (!block_rsv) |
2960 | return -ENOMEM; | |
d68fc57b | 2961 | } |
7b128766 | 2962 | |
d68fc57b YZ |
2963 | spin_lock(&root->orphan_lock); |
2964 | if (!root->orphan_block_rsv) { | |
2965 | root->orphan_block_rsv = block_rsv; | |
2966 | } else if (block_rsv) { | |
2967 | btrfs_free_block_rsv(root, block_rsv); | |
2968 | block_rsv = NULL; | |
7b128766 | 2969 | } |
7b128766 | 2970 | |
8a35d95f JB |
2971 | if (!test_and_set_bit(BTRFS_INODE_HAS_ORPHAN_ITEM, |
2972 | &BTRFS_I(inode)->runtime_flags)) { | |
d68fc57b YZ |
2973 | #if 0 |
2974 | /* | |
2975 | * For proper ENOSPC handling, we should do orphan | |
2976 | * cleanup when mounting. But this introduces backward | |
2977 | * compatibility issue. | |
2978 | */ | |
2979 | if (!xchg(&root->orphan_item_inserted, 1)) | |
2980 | insert = 2; | |
2981 | else | |
2982 | insert = 1; | |
2983 | #endif | |
2984 | insert = 1; | |
321f0e70 | 2985 | atomic_inc(&root->orphan_inodes); |
7b128766 JB |
2986 | } |
2987 | ||
72ac3c0d JB |
2988 | if (!test_and_set_bit(BTRFS_INODE_ORPHAN_META_RESERVED, |
2989 | &BTRFS_I(inode)->runtime_flags)) | |
d68fc57b | 2990 | reserve = 1; |
d68fc57b | 2991 | spin_unlock(&root->orphan_lock); |
7b128766 | 2992 | |
d68fc57b YZ |
2993 | /* grab metadata reservation from transaction handle */ |
2994 | if (reserve) { | |
2995 | ret = btrfs_orphan_reserve_metadata(trans, inode); | |
79787eaa | 2996 | BUG_ON(ret); /* -ENOSPC in reservation; Logic error? JDM */ |
d68fc57b | 2997 | } |
7b128766 | 2998 | |
d68fc57b YZ |
2999 | /* insert an orphan item to track this unlinked/truncated file */ |
3000 | if (insert >= 1) { | |
33345d01 | 3001 | ret = btrfs_insert_orphan_item(trans, root, btrfs_ino(inode)); |
4ef31a45 | 3002 | if (ret) { |
703c88e0 | 3003 | atomic_dec(&root->orphan_inodes); |
4ef31a45 JB |
3004 | if (reserve) { |
3005 | clear_bit(BTRFS_INODE_ORPHAN_META_RESERVED, | |
3006 | &BTRFS_I(inode)->runtime_flags); | |
3007 | btrfs_orphan_release_metadata(inode); | |
3008 | } | |
3009 | if (ret != -EEXIST) { | |
e8e7cff6 JB |
3010 | clear_bit(BTRFS_INODE_HAS_ORPHAN_ITEM, |
3011 | &BTRFS_I(inode)->runtime_flags); | |
4ef31a45 JB |
3012 | btrfs_abort_transaction(trans, root, ret); |
3013 | return ret; | |
3014 | } | |
79787eaa JM |
3015 | } |
3016 | ret = 0; | |
d68fc57b YZ |
3017 | } |
3018 | ||
3019 | /* insert an orphan item to track subvolume contains orphan files */ | |
3020 | if (insert >= 2) { | |
3021 | ret = btrfs_insert_orphan_item(trans, root->fs_info->tree_root, | |
3022 | root->root_key.objectid); | |
79787eaa JM |
3023 | if (ret && ret != -EEXIST) { |
3024 | btrfs_abort_transaction(trans, root, ret); | |
3025 | return ret; | |
3026 | } | |
d68fc57b YZ |
3027 | } |
3028 | return 0; | |
7b128766 JB |
3029 | } |
3030 | ||
3031 | /* | |
3032 | * We have done the truncate/delete so we can go ahead and remove the orphan | |
3033 | * item for this particular inode. | |
3034 | */ | |
48a3b636 ES |
3035 | static int btrfs_orphan_del(struct btrfs_trans_handle *trans, |
3036 | struct inode *inode) | |
7b128766 JB |
3037 | { |
3038 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
d68fc57b YZ |
3039 | int delete_item = 0; |
3040 | int release_rsv = 0; | |
7b128766 JB |
3041 | int ret = 0; |
3042 | ||
d68fc57b | 3043 | spin_lock(&root->orphan_lock); |
8a35d95f JB |
3044 | if (test_and_clear_bit(BTRFS_INODE_HAS_ORPHAN_ITEM, |
3045 | &BTRFS_I(inode)->runtime_flags)) | |
d68fc57b | 3046 | delete_item = 1; |
7b128766 | 3047 | |
72ac3c0d JB |
3048 | if (test_and_clear_bit(BTRFS_INODE_ORPHAN_META_RESERVED, |
3049 | &BTRFS_I(inode)->runtime_flags)) | |
d68fc57b | 3050 | release_rsv = 1; |
d68fc57b | 3051 | spin_unlock(&root->orphan_lock); |
7b128766 | 3052 | |
703c88e0 | 3053 | if (delete_item) { |
8a35d95f | 3054 | atomic_dec(&root->orphan_inodes); |
703c88e0 FDBM |
3055 | if (trans) |
3056 | ret = btrfs_del_orphan_item(trans, root, | |
3057 | btrfs_ino(inode)); | |
8a35d95f | 3058 | } |
7b128766 | 3059 | |
703c88e0 FDBM |
3060 | if (release_rsv) |
3061 | btrfs_orphan_release_metadata(inode); | |
3062 | ||
4ef31a45 | 3063 | return ret; |
7b128766 JB |
3064 | } |
3065 | ||
3066 | /* | |
3067 | * this cleans up any orphans that may be left on the list from the last use | |
3068 | * of this root. | |
3069 | */ | |
66b4ffd1 | 3070 | int btrfs_orphan_cleanup(struct btrfs_root *root) |
7b128766 JB |
3071 | { |
3072 | struct btrfs_path *path; | |
3073 | struct extent_buffer *leaf; | |
7b128766 JB |
3074 | struct btrfs_key key, found_key; |
3075 | struct btrfs_trans_handle *trans; | |
3076 | struct inode *inode; | |
8f6d7f4f | 3077 | u64 last_objectid = 0; |
7b128766 JB |
3078 | int ret = 0, nr_unlink = 0, nr_truncate = 0; |
3079 | ||
d68fc57b | 3080 | if (cmpxchg(&root->orphan_cleanup_state, 0, ORPHAN_CLEANUP_STARTED)) |
66b4ffd1 | 3081 | return 0; |
c71bf099 YZ |
3082 | |
3083 | path = btrfs_alloc_path(); | |
66b4ffd1 JB |
3084 | if (!path) { |
3085 | ret = -ENOMEM; | |
3086 | goto out; | |
3087 | } | |
7b128766 JB |
3088 | path->reada = -1; |
3089 | ||
3090 | key.objectid = BTRFS_ORPHAN_OBJECTID; | |
3091 | btrfs_set_key_type(&key, BTRFS_ORPHAN_ITEM_KEY); | |
3092 | key.offset = (u64)-1; | |
3093 | ||
7b128766 JB |
3094 | while (1) { |
3095 | ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); | |
66b4ffd1 JB |
3096 | if (ret < 0) |
3097 | goto out; | |
7b128766 JB |
3098 | |
3099 | /* | |
3100 | * if ret == 0 means we found what we were searching for, which | |
25985edc | 3101 | * is weird, but possible, so only screw with path if we didn't |
7b128766 JB |
3102 | * find the key and see if we have stuff that matches |
3103 | */ | |
3104 | if (ret > 0) { | |
66b4ffd1 | 3105 | ret = 0; |
7b128766 JB |
3106 | if (path->slots[0] == 0) |
3107 | break; | |
3108 | path->slots[0]--; | |
3109 | } | |
3110 | ||
3111 | /* pull out the item */ | |
3112 | leaf = path->nodes[0]; | |
7b128766 JB |
3113 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); |
3114 | ||
3115 | /* make sure the item matches what we want */ | |
3116 | if (found_key.objectid != BTRFS_ORPHAN_OBJECTID) | |
3117 | break; | |
3118 | if (btrfs_key_type(&found_key) != BTRFS_ORPHAN_ITEM_KEY) | |
3119 | break; | |
3120 | ||
3121 | /* release the path since we're done with it */ | |
b3b4aa74 | 3122 | btrfs_release_path(path); |
7b128766 JB |
3123 | |
3124 | /* | |
3125 | * this is where we are basically btrfs_lookup, without the | |
3126 | * crossing root thing. we store the inode number in the | |
3127 | * offset of the orphan item. | |
3128 | */ | |
8f6d7f4f JB |
3129 | |
3130 | if (found_key.offset == last_objectid) { | |
c2cf52eb SK |
3131 | btrfs_err(root->fs_info, |
3132 | "Error removing orphan entry, stopping orphan cleanup"); | |
8f6d7f4f JB |
3133 | ret = -EINVAL; |
3134 | goto out; | |
3135 | } | |
3136 | ||
3137 | last_objectid = found_key.offset; | |
3138 | ||
5d4f98a2 YZ |
3139 | found_key.objectid = found_key.offset; |
3140 | found_key.type = BTRFS_INODE_ITEM_KEY; | |
3141 | found_key.offset = 0; | |
73f73415 | 3142 | inode = btrfs_iget(root->fs_info->sb, &found_key, root, NULL); |
8c6ffba0 | 3143 | ret = PTR_ERR_OR_ZERO(inode); |
a8c9e576 | 3144 | if (ret && ret != -ESTALE) |
66b4ffd1 | 3145 | goto out; |
7b128766 | 3146 | |
f8e9e0b0 AJ |
3147 | if (ret == -ESTALE && root == root->fs_info->tree_root) { |
3148 | struct btrfs_root *dead_root; | |
3149 | struct btrfs_fs_info *fs_info = root->fs_info; | |
3150 | int is_dead_root = 0; | |
3151 | ||
3152 | /* | |
3153 | * this is an orphan in the tree root. Currently these | |
3154 | * could come from 2 sources: | |
3155 | * a) a snapshot deletion in progress | |
3156 | * b) a free space cache inode | |
3157 | * We need to distinguish those two, as the snapshot | |
3158 | * orphan must not get deleted. | |
3159 | * find_dead_roots already ran before us, so if this | |
3160 | * is a snapshot deletion, we should find the root | |
3161 | * in the dead_roots list | |
3162 | */ | |
3163 | spin_lock(&fs_info->trans_lock); | |
3164 | list_for_each_entry(dead_root, &fs_info->dead_roots, | |
3165 | root_list) { | |
3166 | if (dead_root->root_key.objectid == | |
3167 | found_key.objectid) { | |
3168 | is_dead_root = 1; | |
3169 | break; | |
3170 | } | |
3171 | } | |
3172 | spin_unlock(&fs_info->trans_lock); | |
3173 | if (is_dead_root) { | |
3174 | /* prevent this orphan from being found again */ | |
3175 | key.offset = found_key.objectid - 1; | |
3176 | continue; | |
3177 | } | |
3178 | } | |
7b128766 | 3179 | /* |
a8c9e576 JB |
3180 | * Inode is already gone but the orphan item is still there, |
3181 | * kill the orphan item. | |
7b128766 | 3182 | */ |
a8c9e576 JB |
3183 | if (ret == -ESTALE) { |
3184 | trans = btrfs_start_transaction(root, 1); | |
66b4ffd1 JB |
3185 | if (IS_ERR(trans)) { |
3186 | ret = PTR_ERR(trans); | |
3187 | goto out; | |
3188 | } | |
c2cf52eb SK |
3189 | btrfs_debug(root->fs_info, "auto deleting %Lu", |
3190 | found_key.objectid); | |
a8c9e576 JB |
3191 | ret = btrfs_del_orphan_item(trans, root, |
3192 | found_key.objectid); | |
5b21f2ed | 3193 | btrfs_end_transaction(trans, root); |
4ef31a45 JB |
3194 | if (ret) |
3195 | goto out; | |
7b128766 JB |
3196 | continue; |
3197 | } | |
3198 | ||
a8c9e576 JB |
3199 | /* |
3200 | * add this inode to the orphan list so btrfs_orphan_del does | |
3201 | * the proper thing when we hit it | |
3202 | */ | |
8a35d95f JB |
3203 | set_bit(BTRFS_INODE_HAS_ORPHAN_ITEM, |
3204 | &BTRFS_I(inode)->runtime_flags); | |
925396ec | 3205 | atomic_inc(&root->orphan_inodes); |
a8c9e576 | 3206 | |
7b128766 JB |
3207 | /* if we have links, this was a truncate, lets do that */ |
3208 | if (inode->i_nlink) { | |
fae7f21c | 3209 | if (WARN_ON(!S_ISREG(inode->i_mode))) { |
a41ad394 JB |
3210 | iput(inode); |
3211 | continue; | |
3212 | } | |
7b128766 | 3213 | nr_truncate++; |
f3fe820c JB |
3214 | |
3215 | /* 1 for the orphan item deletion. */ | |
3216 | trans = btrfs_start_transaction(root, 1); | |
3217 | if (IS_ERR(trans)) { | |
c69b26b0 | 3218 | iput(inode); |
f3fe820c JB |
3219 | ret = PTR_ERR(trans); |
3220 | goto out; | |
3221 | } | |
3222 | ret = btrfs_orphan_add(trans, inode); | |
3223 | btrfs_end_transaction(trans, root); | |
c69b26b0 JB |
3224 | if (ret) { |
3225 | iput(inode); | |
f3fe820c | 3226 | goto out; |
c69b26b0 | 3227 | } |
f3fe820c | 3228 | |
66b4ffd1 | 3229 | ret = btrfs_truncate(inode); |
4a7d0f68 JB |
3230 | if (ret) |
3231 | btrfs_orphan_del(NULL, inode); | |
7b128766 JB |
3232 | } else { |
3233 | nr_unlink++; | |
3234 | } | |
3235 | ||
3236 | /* this will do delete_inode and everything for us */ | |
3237 | iput(inode); | |
66b4ffd1 JB |
3238 | if (ret) |
3239 | goto out; | |
7b128766 | 3240 | } |
3254c876 MX |
3241 | /* release the path since we're done with it */ |
3242 | btrfs_release_path(path); | |
3243 | ||
d68fc57b YZ |
3244 | root->orphan_cleanup_state = ORPHAN_CLEANUP_DONE; |
3245 | ||
3246 | if (root->orphan_block_rsv) | |
3247 | btrfs_block_rsv_release(root, root->orphan_block_rsv, | |
3248 | (u64)-1); | |
3249 | ||
3250 | if (root->orphan_block_rsv || root->orphan_item_inserted) { | |
7a7eaa40 | 3251 | trans = btrfs_join_transaction(root); |
66b4ffd1 JB |
3252 | if (!IS_ERR(trans)) |
3253 | btrfs_end_transaction(trans, root); | |
d68fc57b | 3254 | } |
7b128766 JB |
3255 | |
3256 | if (nr_unlink) | |
4884b476 | 3257 | btrfs_debug(root->fs_info, "unlinked %d orphans", nr_unlink); |
7b128766 | 3258 | if (nr_truncate) |
4884b476 | 3259 | btrfs_debug(root->fs_info, "truncated %d orphans", nr_truncate); |
66b4ffd1 JB |
3260 | |
3261 | out: | |
3262 | if (ret) | |
c2cf52eb SK |
3263 | btrfs_crit(root->fs_info, |
3264 | "could not do orphan cleanup %d", ret); | |
66b4ffd1 JB |
3265 | btrfs_free_path(path); |
3266 | return ret; | |
7b128766 JB |
3267 | } |
3268 | ||
46a53cca CM |
3269 | /* |
3270 | * very simple check to peek ahead in the leaf looking for xattrs. If we | |
3271 | * don't find any xattrs, we know there can't be any acls. | |
3272 | * | |
3273 | * slot is the slot the inode is in, objectid is the objectid of the inode | |
3274 | */ | |
3275 | static noinline int acls_after_inode_item(struct extent_buffer *leaf, | |
63541927 FDBM |
3276 | int slot, u64 objectid, |
3277 | int *first_xattr_slot) | |
46a53cca CM |
3278 | { |
3279 | u32 nritems = btrfs_header_nritems(leaf); | |
3280 | struct btrfs_key found_key; | |
f23b5a59 JB |
3281 | static u64 xattr_access = 0; |
3282 | static u64 xattr_default = 0; | |
46a53cca CM |
3283 | int scanned = 0; |
3284 | ||
f23b5a59 JB |
3285 | if (!xattr_access) { |
3286 | xattr_access = btrfs_name_hash(POSIX_ACL_XATTR_ACCESS, | |
3287 | strlen(POSIX_ACL_XATTR_ACCESS)); | |
3288 | xattr_default = btrfs_name_hash(POSIX_ACL_XATTR_DEFAULT, | |
3289 | strlen(POSIX_ACL_XATTR_DEFAULT)); | |
3290 | } | |
3291 | ||
46a53cca | 3292 | slot++; |
63541927 | 3293 | *first_xattr_slot = -1; |
46a53cca CM |
3294 | while (slot < nritems) { |
3295 | btrfs_item_key_to_cpu(leaf, &found_key, slot); | |
3296 | ||
3297 | /* we found a different objectid, there must not be acls */ | |
3298 | if (found_key.objectid != objectid) | |
3299 | return 0; | |
3300 | ||
3301 | /* we found an xattr, assume we've got an acl */ | |
f23b5a59 | 3302 | if (found_key.type == BTRFS_XATTR_ITEM_KEY) { |
63541927 FDBM |
3303 | if (*first_xattr_slot == -1) |
3304 | *first_xattr_slot = slot; | |
f23b5a59 JB |
3305 | if (found_key.offset == xattr_access || |
3306 | found_key.offset == xattr_default) | |
3307 | return 1; | |
3308 | } | |
46a53cca CM |
3309 | |
3310 | /* | |
3311 | * we found a key greater than an xattr key, there can't | |
3312 | * be any acls later on | |
3313 | */ | |
3314 | if (found_key.type > BTRFS_XATTR_ITEM_KEY) | |
3315 | return 0; | |
3316 | ||
3317 | slot++; | |
3318 | scanned++; | |
3319 | ||
3320 | /* | |
3321 | * it goes inode, inode backrefs, xattrs, extents, | |
3322 | * so if there are a ton of hard links to an inode there can | |
3323 | * be a lot of backrefs. Don't waste time searching too hard, | |
3324 | * this is just an optimization | |
3325 | */ | |
3326 | if (scanned >= 8) | |
3327 | break; | |
3328 | } | |
3329 | /* we hit the end of the leaf before we found an xattr or | |
3330 | * something larger than an xattr. We have to assume the inode | |
3331 | * has acls | |
3332 | */ | |
63541927 FDBM |
3333 | if (*first_xattr_slot == -1) |
3334 | *first_xattr_slot = slot; | |
46a53cca CM |
3335 | return 1; |
3336 | } | |
3337 | ||
d352ac68 CM |
3338 | /* |
3339 | * read an inode from the btree into the in-memory inode | |
3340 | */ | |
5d4f98a2 | 3341 | static void btrfs_read_locked_inode(struct inode *inode) |
39279cc3 CM |
3342 | { |
3343 | struct btrfs_path *path; | |
5f39d397 | 3344 | struct extent_buffer *leaf; |
39279cc3 | 3345 | struct btrfs_inode_item *inode_item; |
0b86a832 | 3346 | struct btrfs_timespec *tspec; |
39279cc3 CM |
3347 | struct btrfs_root *root = BTRFS_I(inode)->root; |
3348 | struct btrfs_key location; | |
67de1176 | 3349 | unsigned long ptr; |
46a53cca | 3350 | int maybe_acls; |
618e21d5 | 3351 | u32 rdev; |
39279cc3 | 3352 | int ret; |
2f7e33d4 | 3353 | bool filled = false; |
63541927 | 3354 | int first_xattr_slot; |
2f7e33d4 MX |
3355 | |
3356 | ret = btrfs_fill_inode(inode, &rdev); | |
3357 | if (!ret) | |
3358 | filled = true; | |
39279cc3 CM |
3359 | |
3360 | path = btrfs_alloc_path(); | |
1748f843 MF |
3361 | if (!path) |
3362 | goto make_bad; | |
3363 | ||
39279cc3 | 3364 | memcpy(&location, &BTRFS_I(inode)->location, sizeof(location)); |
dc17ff8f | 3365 | |
39279cc3 | 3366 | ret = btrfs_lookup_inode(NULL, root, path, &location, 0); |
5f39d397 | 3367 | if (ret) |
39279cc3 | 3368 | goto make_bad; |
39279cc3 | 3369 | |
5f39d397 | 3370 | leaf = path->nodes[0]; |
2f7e33d4 MX |
3371 | |
3372 | if (filled) | |
67de1176 | 3373 | goto cache_index; |
2f7e33d4 | 3374 | |
5f39d397 CM |
3375 | inode_item = btrfs_item_ptr(leaf, path->slots[0], |
3376 | struct btrfs_inode_item); | |
5f39d397 | 3377 | inode->i_mode = btrfs_inode_mode(leaf, inode_item); |
bfe86848 | 3378 | set_nlink(inode, btrfs_inode_nlink(leaf, inode_item)); |
2f2f43d3 EB |
3379 | i_uid_write(inode, btrfs_inode_uid(leaf, inode_item)); |
3380 | i_gid_write(inode, btrfs_inode_gid(leaf, inode_item)); | |
dbe674a9 | 3381 | btrfs_i_size_write(inode, btrfs_inode_size(leaf, inode_item)); |
5f39d397 CM |
3382 | |
3383 | tspec = btrfs_inode_atime(inode_item); | |
3384 | inode->i_atime.tv_sec = btrfs_timespec_sec(leaf, tspec); | |
3385 | inode->i_atime.tv_nsec = btrfs_timespec_nsec(leaf, tspec); | |
3386 | ||
3387 | tspec = btrfs_inode_mtime(inode_item); | |
3388 | inode->i_mtime.tv_sec = btrfs_timespec_sec(leaf, tspec); | |
3389 | inode->i_mtime.tv_nsec = btrfs_timespec_nsec(leaf, tspec); | |
3390 | ||
3391 | tspec = btrfs_inode_ctime(inode_item); | |
3392 | inode->i_ctime.tv_sec = btrfs_timespec_sec(leaf, tspec); | |
3393 | inode->i_ctime.tv_nsec = btrfs_timespec_nsec(leaf, tspec); | |
3394 | ||
a76a3cd4 | 3395 | inode_set_bytes(inode, btrfs_inode_nbytes(leaf, inode_item)); |
e02119d5 | 3396 | BTRFS_I(inode)->generation = btrfs_inode_generation(leaf, inode_item); |
5dc562c5 JB |
3397 | BTRFS_I(inode)->last_trans = btrfs_inode_transid(leaf, inode_item); |
3398 | ||
3399 | /* | |
3400 | * If we were modified in the current generation and evicted from memory | |
3401 | * and then re-read we need to do a full sync since we don't have any | |
3402 | * idea about which extents were modified before we were evicted from | |
3403 | * cache. | |
3404 | */ | |
3405 | if (BTRFS_I(inode)->last_trans == root->fs_info->generation) | |
3406 | set_bit(BTRFS_INODE_NEEDS_FULL_SYNC, | |
3407 | &BTRFS_I(inode)->runtime_flags); | |
3408 | ||
0c4d2d95 | 3409 | inode->i_version = btrfs_inode_sequence(leaf, inode_item); |
e02119d5 | 3410 | inode->i_generation = BTRFS_I(inode)->generation; |
618e21d5 | 3411 | inode->i_rdev = 0; |
5f39d397 CM |
3412 | rdev = btrfs_inode_rdev(leaf, inode_item); |
3413 | ||
aec7477b | 3414 | BTRFS_I(inode)->index_cnt = (u64)-1; |
d2fb3437 | 3415 | BTRFS_I(inode)->flags = btrfs_inode_flags(leaf, inode_item); |
67de1176 MX |
3416 | |
3417 | cache_index: | |
3418 | path->slots[0]++; | |
3419 | if (inode->i_nlink != 1 || | |
3420 | path->slots[0] >= btrfs_header_nritems(leaf)) | |
3421 | goto cache_acl; | |
3422 | ||
3423 | btrfs_item_key_to_cpu(leaf, &location, path->slots[0]); | |
3424 | if (location.objectid != btrfs_ino(inode)) | |
3425 | goto cache_acl; | |
3426 | ||
3427 | ptr = btrfs_item_ptr_offset(leaf, path->slots[0]); | |
3428 | if (location.type == BTRFS_INODE_REF_KEY) { | |
3429 | struct btrfs_inode_ref *ref; | |
3430 | ||
3431 | ref = (struct btrfs_inode_ref *)ptr; | |
3432 | BTRFS_I(inode)->dir_index = btrfs_inode_ref_index(leaf, ref); | |
3433 | } else if (location.type == BTRFS_INODE_EXTREF_KEY) { | |
3434 | struct btrfs_inode_extref *extref; | |
3435 | ||
3436 | extref = (struct btrfs_inode_extref *)ptr; | |
3437 | BTRFS_I(inode)->dir_index = btrfs_inode_extref_index(leaf, | |
3438 | extref); | |
3439 | } | |
2f7e33d4 | 3440 | cache_acl: |
46a53cca CM |
3441 | /* |
3442 | * try to precache a NULL acl entry for files that don't have | |
3443 | * any xattrs or acls | |
3444 | */ | |
33345d01 | 3445 | maybe_acls = acls_after_inode_item(leaf, path->slots[0], |
63541927 FDBM |
3446 | btrfs_ino(inode), &first_xattr_slot); |
3447 | if (first_xattr_slot != -1) { | |
3448 | path->slots[0] = first_xattr_slot; | |
3449 | ret = btrfs_load_inode_props(inode, path); | |
3450 | if (ret) | |
3451 | btrfs_err(root->fs_info, | |
3452 | "error loading props for ino %llu (root %llu): %d\n", | |
3453 | btrfs_ino(inode), | |
3454 | root->root_key.objectid, ret); | |
3455 | } | |
3456 | btrfs_free_path(path); | |
3457 | ||
72c04902 AV |
3458 | if (!maybe_acls) |
3459 | cache_no_acl(inode); | |
46a53cca | 3460 | |
39279cc3 | 3461 | switch (inode->i_mode & S_IFMT) { |
39279cc3 CM |
3462 | case S_IFREG: |
3463 | inode->i_mapping->a_ops = &btrfs_aops; | |
04160088 | 3464 | inode->i_mapping->backing_dev_info = &root->fs_info->bdi; |
d1310b2e | 3465 | BTRFS_I(inode)->io_tree.ops = &btrfs_extent_io_ops; |
39279cc3 CM |
3466 | inode->i_fop = &btrfs_file_operations; |
3467 | inode->i_op = &btrfs_file_inode_operations; | |
3468 | break; | |
3469 | case S_IFDIR: | |
3470 | inode->i_fop = &btrfs_dir_file_operations; | |
3471 | if (root == root->fs_info->tree_root) | |
3472 | inode->i_op = &btrfs_dir_ro_inode_operations; | |
3473 | else | |
3474 | inode->i_op = &btrfs_dir_inode_operations; | |
3475 | break; | |
3476 | case S_IFLNK: | |
3477 | inode->i_op = &btrfs_symlink_inode_operations; | |
3478 | inode->i_mapping->a_ops = &btrfs_symlink_aops; | |
04160088 | 3479 | inode->i_mapping->backing_dev_info = &root->fs_info->bdi; |
39279cc3 | 3480 | break; |
618e21d5 | 3481 | default: |
0279b4cd | 3482 | inode->i_op = &btrfs_special_inode_operations; |
618e21d5 JB |
3483 | init_special_inode(inode, inode->i_mode, rdev); |
3484 | break; | |
39279cc3 | 3485 | } |
6cbff00f CH |
3486 | |
3487 | btrfs_update_iflags(inode); | |
39279cc3 CM |
3488 | return; |
3489 | ||
3490 | make_bad: | |
39279cc3 | 3491 | btrfs_free_path(path); |
39279cc3 CM |
3492 | make_bad_inode(inode); |
3493 | } | |
3494 | ||
d352ac68 CM |
3495 | /* |
3496 | * given a leaf and an inode, copy the inode fields into the leaf | |
3497 | */ | |
e02119d5 CM |
3498 | static void fill_inode_item(struct btrfs_trans_handle *trans, |
3499 | struct extent_buffer *leaf, | |
5f39d397 | 3500 | struct btrfs_inode_item *item, |
39279cc3 CM |
3501 | struct inode *inode) |
3502 | { | |
51fab693 LB |
3503 | struct btrfs_map_token token; |
3504 | ||
3505 | btrfs_init_map_token(&token); | |
5f39d397 | 3506 | |
51fab693 LB |
3507 | btrfs_set_token_inode_uid(leaf, item, i_uid_read(inode), &token); |
3508 | btrfs_set_token_inode_gid(leaf, item, i_gid_read(inode), &token); | |
3509 | btrfs_set_token_inode_size(leaf, item, BTRFS_I(inode)->disk_i_size, | |
3510 | &token); | |
3511 | btrfs_set_token_inode_mode(leaf, item, inode->i_mode, &token); | |
3512 | btrfs_set_token_inode_nlink(leaf, item, inode->i_nlink, &token); | |
5f39d397 | 3513 | |
51fab693 LB |
3514 | btrfs_set_token_timespec_sec(leaf, btrfs_inode_atime(item), |
3515 | inode->i_atime.tv_sec, &token); | |
3516 | btrfs_set_token_timespec_nsec(leaf, btrfs_inode_atime(item), | |
3517 | inode->i_atime.tv_nsec, &token); | |
5f39d397 | 3518 | |
51fab693 LB |
3519 | btrfs_set_token_timespec_sec(leaf, btrfs_inode_mtime(item), |
3520 | inode->i_mtime.tv_sec, &token); | |
3521 | btrfs_set_token_timespec_nsec(leaf, btrfs_inode_mtime(item), | |
3522 | inode->i_mtime.tv_nsec, &token); | |
5f39d397 | 3523 | |
51fab693 LB |
3524 | btrfs_set_token_timespec_sec(leaf, btrfs_inode_ctime(item), |
3525 | inode->i_ctime.tv_sec, &token); | |
3526 | btrfs_set_token_timespec_nsec(leaf, btrfs_inode_ctime(item), | |
3527 | inode->i_ctime.tv_nsec, &token); | |
5f39d397 | 3528 | |
51fab693 LB |
3529 | btrfs_set_token_inode_nbytes(leaf, item, inode_get_bytes(inode), |
3530 | &token); | |
3531 | btrfs_set_token_inode_generation(leaf, item, BTRFS_I(inode)->generation, | |
3532 | &token); | |
3533 | btrfs_set_token_inode_sequence(leaf, item, inode->i_version, &token); | |
3534 | btrfs_set_token_inode_transid(leaf, item, trans->transid, &token); | |
3535 | btrfs_set_token_inode_rdev(leaf, item, inode->i_rdev, &token); | |
3536 | btrfs_set_token_inode_flags(leaf, item, BTRFS_I(inode)->flags, &token); | |
3537 | btrfs_set_token_inode_block_group(leaf, item, 0, &token); | |
39279cc3 CM |
3538 | } |
3539 | ||
d352ac68 CM |
3540 | /* |
3541 | * copy everything in the in-memory inode into the btree. | |
3542 | */ | |
2115133f | 3543 | static noinline int btrfs_update_inode_item(struct btrfs_trans_handle *trans, |
d397712b | 3544 | struct btrfs_root *root, struct inode *inode) |
39279cc3 CM |
3545 | { |
3546 | struct btrfs_inode_item *inode_item; | |
3547 | struct btrfs_path *path; | |
5f39d397 | 3548 | struct extent_buffer *leaf; |
39279cc3 CM |
3549 | int ret; |
3550 | ||
3551 | path = btrfs_alloc_path(); | |
16cdcec7 MX |
3552 | if (!path) |
3553 | return -ENOMEM; | |
3554 | ||
b9473439 | 3555 | path->leave_spinning = 1; |
16cdcec7 MX |
3556 | ret = btrfs_lookup_inode(trans, root, path, &BTRFS_I(inode)->location, |
3557 | 1); | |
39279cc3 CM |
3558 | if (ret) { |
3559 | if (ret > 0) | |
3560 | ret = -ENOENT; | |
3561 | goto failed; | |
3562 | } | |
3563 | ||
5f39d397 CM |
3564 | leaf = path->nodes[0]; |
3565 | inode_item = btrfs_item_ptr(leaf, path->slots[0], | |
16cdcec7 | 3566 | struct btrfs_inode_item); |
39279cc3 | 3567 | |
e02119d5 | 3568 | fill_inode_item(trans, leaf, inode_item, inode); |
5f39d397 | 3569 | btrfs_mark_buffer_dirty(leaf); |
15ee9bc7 | 3570 | btrfs_set_inode_last_trans(trans, inode); |
39279cc3 CM |
3571 | ret = 0; |
3572 | failed: | |
39279cc3 CM |
3573 | btrfs_free_path(path); |
3574 | return ret; | |
3575 | } | |
3576 | ||
2115133f CM |
3577 | /* |
3578 | * copy everything in the in-memory inode into the btree. | |
3579 | */ | |
3580 | noinline int btrfs_update_inode(struct btrfs_trans_handle *trans, | |
3581 | struct btrfs_root *root, struct inode *inode) | |
3582 | { | |
3583 | int ret; | |
3584 | ||
3585 | /* | |
3586 | * If the inode is a free space inode, we can deadlock during commit | |
3587 | * if we put it into the delayed code. | |
3588 | * | |
3589 | * The data relocation inode should also be directly updated | |
3590 | * without delay | |
3591 | */ | |
83eea1f1 | 3592 | if (!btrfs_is_free_space_inode(inode) |
2115133f | 3593 | && root->root_key.objectid != BTRFS_DATA_RELOC_TREE_OBJECTID) { |
8ea05e3a AB |
3594 | btrfs_update_root_times(trans, root); |
3595 | ||
2115133f CM |
3596 | ret = btrfs_delayed_update_inode(trans, root, inode); |
3597 | if (!ret) | |
3598 | btrfs_set_inode_last_trans(trans, inode); | |
3599 | return ret; | |
3600 | } | |
3601 | ||
3602 | return btrfs_update_inode_item(trans, root, inode); | |
3603 | } | |
3604 | ||
be6aef60 JB |
3605 | noinline int btrfs_update_inode_fallback(struct btrfs_trans_handle *trans, |
3606 | struct btrfs_root *root, | |
3607 | struct inode *inode) | |
2115133f CM |
3608 | { |
3609 | int ret; | |
3610 | ||
3611 | ret = btrfs_update_inode(trans, root, inode); | |
3612 | if (ret == -ENOSPC) | |
3613 | return btrfs_update_inode_item(trans, root, inode); | |
3614 | return ret; | |
3615 | } | |
3616 | ||
d352ac68 CM |
3617 | /* |
3618 | * unlink helper that gets used here in inode.c and in the tree logging | |
3619 | * recovery code. It remove a link in a directory with a given name, and | |
3620 | * also drops the back refs in the inode to the directory | |
3621 | */ | |
92986796 AV |
3622 | static int __btrfs_unlink_inode(struct btrfs_trans_handle *trans, |
3623 | struct btrfs_root *root, | |
3624 | struct inode *dir, struct inode *inode, | |
3625 | const char *name, int name_len) | |
39279cc3 CM |
3626 | { |
3627 | struct btrfs_path *path; | |
39279cc3 | 3628 | int ret = 0; |
5f39d397 | 3629 | struct extent_buffer *leaf; |
39279cc3 | 3630 | struct btrfs_dir_item *di; |
5f39d397 | 3631 | struct btrfs_key key; |
aec7477b | 3632 | u64 index; |
33345d01 LZ |
3633 | u64 ino = btrfs_ino(inode); |
3634 | u64 dir_ino = btrfs_ino(dir); | |
39279cc3 CM |
3635 | |
3636 | path = btrfs_alloc_path(); | |
54aa1f4d CM |
3637 | if (!path) { |
3638 | ret = -ENOMEM; | |
554233a6 | 3639 | goto out; |
54aa1f4d CM |
3640 | } |
3641 | ||
b9473439 | 3642 | path->leave_spinning = 1; |
33345d01 | 3643 | di = btrfs_lookup_dir_item(trans, root, path, dir_ino, |
39279cc3 CM |
3644 | name, name_len, -1); |
3645 | if (IS_ERR(di)) { | |
3646 | ret = PTR_ERR(di); | |
3647 | goto err; | |
3648 | } | |
3649 | if (!di) { | |
3650 | ret = -ENOENT; | |
3651 | goto err; | |
3652 | } | |
5f39d397 CM |
3653 | leaf = path->nodes[0]; |
3654 | btrfs_dir_item_key_to_cpu(leaf, di, &key); | |
39279cc3 | 3655 | ret = btrfs_delete_one_dir_name(trans, root, path, di); |
54aa1f4d CM |
3656 | if (ret) |
3657 | goto err; | |
b3b4aa74 | 3658 | btrfs_release_path(path); |
39279cc3 | 3659 | |
67de1176 MX |
3660 | /* |
3661 | * If we don't have dir index, we have to get it by looking up | |
3662 | * the inode ref, since we get the inode ref, remove it directly, | |
3663 | * it is unnecessary to do delayed deletion. | |
3664 | * | |
3665 | * But if we have dir index, needn't search inode ref to get it. | |
3666 | * Since the inode ref is close to the inode item, it is better | |
3667 | * that we delay to delete it, and just do this deletion when | |
3668 | * we update the inode item. | |
3669 | */ | |
3670 | if (BTRFS_I(inode)->dir_index) { | |
3671 | ret = btrfs_delayed_delete_inode_ref(inode); | |
3672 | if (!ret) { | |
3673 | index = BTRFS_I(inode)->dir_index; | |
3674 | goto skip_backref; | |
3675 | } | |
3676 | } | |
3677 | ||
33345d01 LZ |
3678 | ret = btrfs_del_inode_ref(trans, root, name, name_len, ino, |
3679 | dir_ino, &index); | |
aec7477b | 3680 | if (ret) { |
c2cf52eb SK |
3681 | btrfs_info(root->fs_info, |
3682 | "failed to delete reference to %.*s, inode %llu parent %llu", | |
c1c9ff7c | 3683 | name_len, name, ino, dir_ino); |
79787eaa | 3684 | btrfs_abort_transaction(trans, root, ret); |
aec7477b JB |
3685 | goto err; |
3686 | } | |
67de1176 | 3687 | skip_backref: |
16cdcec7 | 3688 | ret = btrfs_delete_delayed_dir_index(trans, root, dir, index); |
79787eaa JM |
3689 | if (ret) { |
3690 | btrfs_abort_transaction(trans, root, ret); | |
39279cc3 | 3691 | goto err; |
79787eaa | 3692 | } |
39279cc3 | 3693 | |
e02119d5 | 3694 | ret = btrfs_del_inode_ref_in_log(trans, root, name, name_len, |
33345d01 | 3695 | inode, dir_ino); |
79787eaa JM |
3696 | if (ret != 0 && ret != -ENOENT) { |
3697 | btrfs_abort_transaction(trans, root, ret); | |
3698 | goto err; | |
3699 | } | |
e02119d5 CM |
3700 | |
3701 | ret = btrfs_del_dir_entries_in_log(trans, root, name, name_len, | |
3702 | dir, index); | |
6418c961 CM |
3703 | if (ret == -ENOENT) |
3704 | ret = 0; | |
d4e3991b ZB |
3705 | else if (ret) |
3706 | btrfs_abort_transaction(trans, root, ret); | |
39279cc3 CM |
3707 | err: |
3708 | btrfs_free_path(path); | |
e02119d5 CM |
3709 | if (ret) |
3710 | goto out; | |
3711 | ||
3712 | btrfs_i_size_write(dir, dir->i_size - name_len * 2); | |
0c4d2d95 JB |
3713 | inode_inc_iversion(inode); |
3714 | inode_inc_iversion(dir); | |
e02119d5 | 3715 | inode->i_ctime = dir->i_mtime = dir->i_ctime = CURRENT_TIME; |
b9959295 | 3716 | ret = btrfs_update_inode(trans, root, dir); |
e02119d5 | 3717 | out: |
39279cc3 CM |
3718 | return ret; |
3719 | } | |
3720 | ||
92986796 AV |
3721 | int btrfs_unlink_inode(struct btrfs_trans_handle *trans, |
3722 | struct btrfs_root *root, | |
3723 | struct inode *dir, struct inode *inode, | |
3724 | const char *name, int name_len) | |
3725 | { | |
3726 | int ret; | |
3727 | ret = __btrfs_unlink_inode(trans, root, dir, inode, name, name_len); | |
3728 | if (!ret) { | |
8b558c5f | 3729 | drop_nlink(inode); |
92986796 AV |
3730 | ret = btrfs_update_inode(trans, root, inode); |
3731 | } | |
3732 | return ret; | |
3733 | } | |
39279cc3 | 3734 | |
a22285a6 YZ |
3735 | /* |
3736 | * helper to start transaction for unlink and rmdir. | |
3737 | * | |
d52be818 JB |
3738 | * unlink and rmdir are special in btrfs, they do not always free space, so |
3739 | * if we cannot make our reservations the normal way try and see if there is | |
3740 | * plenty of slack room in the global reserve to migrate, otherwise we cannot | |
3741 | * allow the unlink to occur. | |
a22285a6 | 3742 | */ |
d52be818 | 3743 | static struct btrfs_trans_handle *__unlink_start_trans(struct inode *dir) |
4df27c4d | 3744 | { |
39279cc3 | 3745 | struct btrfs_trans_handle *trans; |
a22285a6 | 3746 | struct btrfs_root *root = BTRFS_I(dir)->root; |
4df27c4d YZ |
3747 | int ret; |
3748 | ||
e70bea5f JB |
3749 | /* |
3750 | * 1 for the possible orphan item | |
3751 | * 1 for the dir item | |
3752 | * 1 for the dir index | |
3753 | * 1 for the inode ref | |
e70bea5f JB |
3754 | * 1 for the inode |
3755 | */ | |
6e137ed3 | 3756 | trans = btrfs_start_transaction(root, 5); |
a22285a6 YZ |
3757 | if (!IS_ERR(trans) || PTR_ERR(trans) != -ENOSPC) |
3758 | return trans; | |
4df27c4d | 3759 | |
d52be818 JB |
3760 | if (PTR_ERR(trans) == -ENOSPC) { |
3761 | u64 num_bytes = btrfs_calc_trans_metadata_size(root, 5); | |
4df27c4d | 3762 | |
d52be818 JB |
3763 | trans = btrfs_start_transaction(root, 0); |
3764 | if (IS_ERR(trans)) | |
3765 | return trans; | |
3766 | ret = btrfs_cond_migrate_bytes(root->fs_info, | |
3767 | &root->fs_info->trans_block_rsv, | |
3768 | num_bytes, 5); | |
3769 | if (ret) { | |
3770 | btrfs_end_transaction(trans, root); | |
3771 | return ERR_PTR(ret); | |
a22285a6 | 3772 | } |
5a77d76c | 3773 | trans->block_rsv = &root->fs_info->trans_block_rsv; |
d52be818 | 3774 | trans->bytes_reserved = num_bytes; |
a22285a6 | 3775 | } |
d52be818 | 3776 | return trans; |
a22285a6 YZ |
3777 | } |
3778 | ||
3779 | static int btrfs_unlink(struct inode *dir, struct dentry *dentry) | |
3780 | { | |
3781 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
3782 | struct btrfs_trans_handle *trans; | |
3783 | struct inode *inode = dentry->d_inode; | |
3784 | int ret; | |
a22285a6 | 3785 | |
d52be818 | 3786 | trans = __unlink_start_trans(dir); |
a22285a6 YZ |
3787 | if (IS_ERR(trans)) |
3788 | return PTR_ERR(trans); | |
5f39d397 | 3789 | |
12fcfd22 CM |
3790 | btrfs_record_unlink_dir(trans, dir, dentry->d_inode, 0); |
3791 | ||
e02119d5 CM |
3792 | ret = btrfs_unlink_inode(trans, root, dir, dentry->d_inode, |
3793 | dentry->d_name.name, dentry->d_name.len); | |
b532402e TI |
3794 | if (ret) |
3795 | goto out; | |
7b128766 | 3796 | |
a22285a6 | 3797 | if (inode->i_nlink == 0) { |
7b128766 | 3798 | ret = btrfs_orphan_add(trans, inode); |
b532402e TI |
3799 | if (ret) |
3800 | goto out; | |
a22285a6 | 3801 | } |
7b128766 | 3802 | |
b532402e | 3803 | out: |
d52be818 | 3804 | btrfs_end_transaction(trans, root); |
b53d3f5d | 3805 | btrfs_btree_balance_dirty(root); |
39279cc3 CM |
3806 | return ret; |
3807 | } | |
3808 | ||
4df27c4d YZ |
3809 | int btrfs_unlink_subvol(struct btrfs_trans_handle *trans, |
3810 | struct btrfs_root *root, | |
3811 | struct inode *dir, u64 objectid, | |
3812 | const char *name, int name_len) | |
3813 | { | |
3814 | struct btrfs_path *path; | |
3815 | struct extent_buffer *leaf; | |
3816 | struct btrfs_dir_item *di; | |
3817 | struct btrfs_key key; | |
3818 | u64 index; | |
3819 | int ret; | |
33345d01 | 3820 | u64 dir_ino = btrfs_ino(dir); |
4df27c4d YZ |
3821 | |
3822 | path = btrfs_alloc_path(); | |
3823 | if (!path) | |
3824 | return -ENOMEM; | |
3825 | ||
33345d01 | 3826 | di = btrfs_lookup_dir_item(trans, root, path, dir_ino, |
4df27c4d | 3827 | name, name_len, -1); |
79787eaa JM |
3828 | if (IS_ERR_OR_NULL(di)) { |
3829 | if (!di) | |
3830 | ret = -ENOENT; | |
3831 | else | |
3832 | ret = PTR_ERR(di); | |
3833 | goto out; | |
3834 | } | |
4df27c4d YZ |
3835 | |
3836 | leaf = path->nodes[0]; | |
3837 | btrfs_dir_item_key_to_cpu(leaf, di, &key); | |
3838 | WARN_ON(key.type != BTRFS_ROOT_ITEM_KEY || key.objectid != objectid); | |
3839 | ret = btrfs_delete_one_dir_name(trans, root, path, di); | |
79787eaa JM |
3840 | if (ret) { |
3841 | btrfs_abort_transaction(trans, root, ret); | |
3842 | goto out; | |
3843 | } | |
b3b4aa74 | 3844 | btrfs_release_path(path); |
4df27c4d YZ |
3845 | |
3846 | ret = btrfs_del_root_ref(trans, root->fs_info->tree_root, | |
3847 | objectid, root->root_key.objectid, | |
33345d01 | 3848 | dir_ino, &index, name, name_len); |
4df27c4d | 3849 | if (ret < 0) { |
79787eaa JM |
3850 | if (ret != -ENOENT) { |
3851 | btrfs_abort_transaction(trans, root, ret); | |
3852 | goto out; | |
3853 | } | |
33345d01 | 3854 | di = btrfs_search_dir_index_item(root, path, dir_ino, |
4df27c4d | 3855 | name, name_len); |
79787eaa JM |
3856 | if (IS_ERR_OR_NULL(di)) { |
3857 | if (!di) | |
3858 | ret = -ENOENT; | |
3859 | else | |
3860 | ret = PTR_ERR(di); | |
3861 | btrfs_abort_transaction(trans, root, ret); | |
3862 | goto out; | |
3863 | } | |
4df27c4d YZ |
3864 | |
3865 | leaf = path->nodes[0]; | |
3866 | btrfs_item_key_to_cpu(leaf, &key, path->slots[0]); | |
b3b4aa74 | 3867 | btrfs_release_path(path); |
4df27c4d YZ |
3868 | index = key.offset; |
3869 | } | |
945d8962 | 3870 | btrfs_release_path(path); |
4df27c4d | 3871 | |
16cdcec7 | 3872 | ret = btrfs_delete_delayed_dir_index(trans, root, dir, index); |
79787eaa JM |
3873 | if (ret) { |
3874 | btrfs_abort_transaction(trans, root, ret); | |
3875 | goto out; | |
3876 | } | |
4df27c4d YZ |
3877 | |
3878 | btrfs_i_size_write(dir, dir->i_size - name_len * 2); | |
0c4d2d95 | 3879 | inode_inc_iversion(dir); |
4df27c4d | 3880 | dir->i_mtime = dir->i_ctime = CURRENT_TIME; |
5a24e84c | 3881 | ret = btrfs_update_inode_fallback(trans, root, dir); |
79787eaa JM |
3882 | if (ret) |
3883 | btrfs_abort_transaction(trans, root, ret); | |
3884 | out: | |
71d7aed0 | 3885 | btrfs_free_path(path); |
79787eaa | 3886 | return ret; |
4df27c4d YZ |
3887 | } |
3888 | ||
39279cc3 CM |
3889 | static int btrfs_rmdir(struct inode *dir, struct dentry *dentry) |
3890 | { | |
3891 | struct inode *inode = dentry->d_inode; | |
1832a6d5 | 3892 | int err = 0; |
39279cc3 | 3893 | struct btrfs_root *root = BTRFS_I(dir)->root; |
39279cc3 | 3894 | struct btrfs_trans_handle *trans; |
39279cc3 | 3895 | |
b3ae244e | 3896 | if (inode->i_size > BTRFS_EMPTY_DIR_SIZE) |
134d4512 | 3897 | return -ENOTEMPTY; |
b3ae244e DS |
3898 | if (btrfs_ino(inode) == BTRFS_FIRST_FREE_OBJECTID) |
3899 | return -EPERM; | |
134d4512 | 3900 | |
d52be818 | 3901 | trans = __unlink_start_trans(dir); |
a22285a6 | 3902 | if (IS_ERR(trans)) |
5df6a9f6 | 3903 | return PTR_ERR(trans); |
5df6a9f6 | 3904 | |
33345d01 | 3905 | if (unlikely(btrfs_ino(inode) == BTRFS_EMPTY_SUBVOL_DIR_OBJECTID)) { |
4df27c4d YZ |
3906 | err = btrfs_unlink_subvol(trans, root, dir, |
3907 | BTRFS_I(inode)->location.objectid, | |
3908 | dentry->d_name.name, | |
3909 | dentry->d_name.len); | |
3910 | goto out; | |
3911 | } | |
3912 | ||
7b128766 JB |
3913 | err = btrfs_orphan_add(trans, inode); |
3914 | if (err) | |
4df27c4d | 3915 | goto out; |
7b128766 | 3916 | |
39279cc3 | 3917 | /* now the directory is empty */ |
e02119d5 CM |
3918 | err = btrfs_unlink_inode(trans, root, dir, dentry->d_inode, |
3919 | dentry->d_name.name, dentry->d_name.len); | |
d397712b | 3920 | if (!err) |
dbe674a9 | 3921 | btrfs_i_size_write(inode, 0); |
4df27c4d | 3922 | out: |
d52be818 | 3923 | btrfs_end_transaction(trans, root); |
b53d3f5d | 3924 | btrfs_btree_balance_dirty(root); |
3954401f | 3925 | |
39279cc3 CM |
3926 | return err; |
3927 | } | |
3928 | ||
39279cc3 CM |
3929 | /* |
3930 | * this can truncate away extent items, csum items and directory items. | |
3931 | * It starts at a high offset and removes keys until it can't find | |
d352ac68 | 3932 | * any higher than new_size |
39279cc3 CM |
3933 | * |
3934 | * csum items that cross the new i_size are truncated to the new size | |
3935 | * as well. | |
7b128766 JB |
3936 | * |
3937 | * min_type is the minimum key type to truncate down to. If set to 0, this | |
3938 | * will kill all the items on this inode, including the INODE_ITEM_KEY. | |
39279cc3 | 3939 | */ |
8082510e YZ |
3940 | int btrfs_truncate_inode_items(struct btrfs_trans_handle *trans, |
3941 | struct btrfs_root *root, | |
3942 | struct inode *inode, | |
3943 | u64 new_size, u32 min_type) | |
39279cc3 | 3944 | { |
39279cc3 | 3945 | struct btrfs_path *path; |
5f39d397 | 3946 | struct extent_buffer *leaf; |
39279cc3 | 3947 | struct btrfs_file_extent_item *fi; |
8082510e YZ |
3948 | struct btrfs_key key; |
3949 | struct btrfs_key found_key; | |
39279cc3 | 3950 | u64 extent_start = 0; |
db94535d | 3951 | u64 extent_num_bytes = 0; |
5d4f98a2 | 3952 | u64 extent_offset = 0; |
39279cc3 | 3953 | u64 item_end = 0; |
7f4f6e0a | 3954 | u64 last_size = (u64)-1; |
8082510e | 3955 | u32 found_type = (u8)-1; |
39279cc3 CM |
3956 | int found_extent; |
3957 | int del_item; | |
85e21bac CM |
3958 | int pending_del_nr = 0; |
3959 | int pending_del_slot = 0; | |
179e29e4 | 3960 | int extent_type = -1; |
8082510e YZ |
3961 | int ret; |
3962 | int err = 0; | |
33345d01 | 3963 | u64 ino = btrfs_ino(inode); |
8082510e YZ |
3964 | |
3965 | BUG_ON(new_size > 0 && min_type != BTRFS_EXTENT_DATA_KEY); | |
39279cc3 | 3966 | |
0eb0e19c MF |
3967 | path = btrfs_alloc_path(); |
3968 | if (!path) | |
3969 | return -ENOMEM; | |
3970 | path->reada = -1; | |
3971 | ||
5dc562c5 JB |
3972 | /* |
3973 | * We want to drop from the next block forward in case this new size is | |
3974 | * not block aligned since we will be keeping the last block of the | |
3975 | * extent just the way it is. | |
3976 | */ | |
0af3d00b | 3977 | if (root->ref_cows || root == root->fs_info->tree_root) |
fda2832f QW |
3978 | btrfs_drop_extent_cache(inode, ALIGN(new_size, |
3979 | root->sectorsize), (u64)-1, 0); | |
8082510e | 3980 | |
16cdcec7 MX |
3981 | /* |
3982 | * This function is also used to drop the items in the log tree before | |
3983 | * we relog the inode, so if root != BTRFS_I(inode)->root, it means | |
3984 | * it is used to drop the loged items. So we shouldn't kill the delayed | |
3985 | * items. | |
3986 | */ | |
3987 | if (min_type == 0 && root == BTRFS_I(inode)->root) | |
3988 | btrfs_kill_delayed_inode_items(inode); | |
3989 | ||
33345d01 | 3990 | key.objectid = ino; |
39279cc3 | 3991 | key.offset = (u64)-1; |
5f39d397 CM |
3992 | key.type = (u8)-1; |
3993 | ||
85e21bac | 3994 | search_again: |
b9473439 | 3995 | path->leave_spinning = 1; |
85e21bac | 3996 | ret = btrfs_search_slot(trans, root, &key, path, -1, 1); |
8082510e YZ |
3997 | if (ret < 0) { |
3998 | err = ret; | |
3999 | goto out; | |
4000 | } | |
d397712b | 4001 | |
85e21bac | 4002 | if (ret > 0) { |
e02119d5 CM |
4003 | /* there are no items in the tree for us to truncate, we're |
4004 | * done | |
4005 | */ | |
8082510e YZ |
4006 | if (path->slots[0] == 0) |
4007 | goto out; | |
85e21bac CM |
4008 | path->slots[0]--; |
4009 | } | |
4010 | ||
d397712b | 4011 | while (1) { |
39279cc3 | 4012 | fi = NULL; |
5f39d397 CM |
4013 | leaf = path->nodes[0]; |
4014 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); | |
4015 | found_type = btrfs_key_type(&found_key); | |
39279cc3 | 4016 | |
33345d01 | 4017 | if (found_key.objectid != ino) |
39279cc3 | 4018 | break; |
5f39d397 | 4019 | |
85e21bac | 4020 | if (found_type < min_type) |
39279cc3 CM |
4021 | break; |
4022 | ||
5f39d397 | 4023 | item_end = found_key.offset; |
39279cc3 | 4024 | if (found_type == BTRFS_EXTENT_DATA_KEY) { |
5f39d397 | 4025 | fi = btrfs_item_ptr(leaf, path->slots[0], |
39279cc3 | 4026 | struct btrfs_file_extent_item); |
179e29e4 CM |
4027 | extent_type = btrfs_file_extent_type(leaf, fi); |
4028 | if (extent_type != BTRFS_FILE_EXTENT_INLINE) { | |
5f39d397 | 4029 | item_end += |
db94535d | 4030 | btrfs_file_extent_num_bytes(leaf, fi); |
179e29e4 | 4031 | } else if (extent_type == BTRFS_FILE_EXTENT_INLINE) { |
179e29e4 | 4032 | item_end += btrfs_file_extent_inline_len(leaf, |
514ac8ad | 4033 | path->slots[0], fi); |
39279cc3 | 4034 | } |
008630c1 | 4035 | item_end--; |
39279cc3 | 4036 | } |
8082510e YZ |
4037 | if (found_type > min_type) { |
4038 | del_item = 1; | |
4039 | } else { | |
4040 | if (item_end < new_size) | |
b888db2b | 4041 | break; |
8082510e YZ |
4042 | if (found_key.offset >= new_size) |
4043 | del_item = 1; | |
4044 | else | |
4045 | del_item = 0; | |
39279cc3 | 4046 | } |
39279cc3 | 4047 | found_extent = 0; |
39279cc3 | 4048 | /* FIXME, shrink the extent if the ref count is only 1 */ |
179e29e4 CM |
4049 | if (found_type != BTRFS_EXTENT_DATA_KEY) |
4050 | goto delete; | |
4051 | ||
7f4f6e0a JB |
4052 | if (del_item) |
4053 | last_size = found_key.offset; | |
4054 | else | |
4055 | last_size = new_size; | |
4056 | ||
179e29e4 | 4057 | if (extent_type != BTRFS_FILE_EXTENT_INLINE) { |
39279cc3 | 4058 | u64 num_dec; |
db94535d | 4059 | extent_start = btrfs_file_extent_disk_bytenr(leaf, fi); |
f70a9a6b | 4060 | if (!del_item) { |
db94535d CM |
4061 | u64 orig_num_bytes = |
4062 | btrfs_file_extent_num_bytes(leaf, fi); | |
fda2832f QW |
4063 | extent_num_bytes = ALIGN(new_size - |
4064 | found_key.offset, | |
4065 | root->sectorsize); | |
db94535d CM |
4066 | btrfs_set_file_extent_num_bytes(leaf, fi, |
4067 | extent_num_bytes); | |
4068 | num_dec = (orig_num_bytes - | |
9069218d | 4069 | extent_num_bytes); |
e02119d5 | 4070 | if (root->ref_cows && extent_start != 0) |
a76a3cd4 | 4071 | inode_sub_bytes(inode, num_dec); |
5f39d397 | 4072 | btrfs_mark_buffer_dirty(leaf); |
39279cc3 | 4073 | } else { |
db94535d CM |
4074 | extent_num_bytes = |
4075 | btrfs_file_extent_disk_num_bytes(leaf, | |
4076 | fi); | |
5d4f98a2 YZ |
4077 | extent_offset = found_key.offset - |
4078 | btrfs_file_extent_offset(leaf, fi); | |
4079 | ||
39279cc3 | 4080 | /* FIXME blocksize != 4096 */ |
9069218d | 4081 | num_dec = btrfs_file_extent_num_bytes(leaf, fi); |
39279cc3 CM |
4082 | if (extent_start != 0) { |
4083 | found_extent = 1; | |
e02119d5 | 4084 | if (root->ref_cows) |
a76a3cd4 | 4085 | inode_sub_bytes(inode, num_dec); |
e02119d5 | 4086 | } |
39279cc3 | 4087 | } |
9069218d | 4088 | } else if (extent_type == BTRFS_FILE_EXTENT_INLINE) { |
c8b97818 CM |
4089 | /* |
4090 | * we can't truncate inline items that have had | |
4091 | * special encodings | |
4092 | */ | |
4093 | if (!del_item && | |
4094 | btrfs_file_extent_compression(leaf, fi) == 0 && | |
4095 | btrfs_file_extent_encryption(leaf, fi) == 0 && | |
4096 | btrfs_file_extent_other_encoding(leaf, fi) == 0) { | |
e02119d5 CM |
4097 | u32 size = new_size - found_key.offset; |
4098 | ||
4099 | if (root->ref_cows) { | |
a76a3cd4 YZ |
4100 | inode_sub_bytes(inode, item_end + 1 - |
4101 | new_size); | |
e02119d5 | 4102 | } |
514ac8ad CM |
4103 | |
4104 | /* | |
4105 | * update the ram bytes to properly reflect | |
4106 | * the new size of our item | |
4107 | */ | |
4108 | btrfs_set_file_extent_ram_bytes(leaf, fi, size); | |
e02119d5 CM |
4109 | size = |
4110 | btrfs_file_extent_calc_inline_size(size); | |
afe5fea7 | 4111 | btrfs_truncate_item(root, path, size, 1); |
e02119d5 | 4112 | } else if (root->ref_cows) { |
a76a3cd4 YZ |
4113 | inode_sub_bytes(inode, item_end + 1 - |
4114 | found_key.offset); | |
9069218d | 4115 | } |
39279cc3 | 4116 | } |
179e29e4 | 4117 | delete: |
39279cc3 | 4118 | if (del_item) { |
85e21bac CM |
4119 | if (!pending_del_nr) { |
4120 | /* no pending yet, add ourselves */ | |
4121 | pending_del_slot = path->slots[0]; | |
4122 | pending_del_nr = 1; | |
4123 | } else if (pending_del_nr && | |
4124 | path->slots[0] + 1 == pending_del_slot) { | |
4125 | /* hop on the pending chunk */ | |
4126 | pending_del_nr++; | |
4127 | pending_del_slot = path->slots[0]; | |
4128 | } else { | |
d397712b | 4129 | BUG(); |
85e21bac | 4130 | } |
39279cc3 CM |
4131 | } else { |
4132 | break; | |
4133 | } | |
0af3d00b JB |
4134 | if (found_extent && (root->ref_cows || |
4135 | root == root->fs_info->tree_root)) { | |
b9473439 | 4136 | btrfs_set_path_blocking(path); |
39279cc3 | 4137 | ret = btrfs_free_extent(trans, root, extent_start, |
5d4f98a2 YZ |
4138 | extent_num_bytes, 0, |
4139 | btrfs_header_owner(leaf), | |
66d7e7f0 | 4140 | ino, extent_offset, 0); |
39279cc3 CM |
4141 | BUG_ON(ret); |
4142 | } | |
85e21bac | 4143 | |
8082510e YZ |
4144 | if (found_type == BTRFS_INODE_ITEM_KEY) |
4145 | break; | |
4146 | ||
4147 | if (path->slots[0] == 0 || | |
4148 | path->slots[0] != pending_del_slot) { | |
8082510e YZ |
4149 | if (pending_del_nr) { |
4150 | ret = btrfs_del_items(trans, root, path, | |
4151 | pending_del_slot, | |
4152 | pending_del_nr); | |
79787eaa JM |
4153 | if (ret) { |
4154 | btrfs_abort_transaction(trans, | |
4155 | root, ret); | |
4156 | goto error; | |
4157 | } | |
8082510e YZ |
4158 | pending_del_nr = 0; |
4159 | } | |
b3b4aa74 | 4160 | btrfs_release_path(path); |
85e21bac | 4161 | goto search_again; |
8082510e YZ |
4162 | } else { |
4163 | path->slots[0]--; | |
85e21bac | 4164 | } |
39279cc3 | 4165 | } |
8082510e | 4166 | out: |
85e21bac CM |
4167 | if (pending_del_nr) { |
4168 | ret = btrfs_del_items(trans, root, path, pending_del_slot, | |
4169 | pending_del_nr); | |
79787eaa JM |
4170 | if (ret) |
4171 | btrfs_abort_transaction(trans, root, ret); | |
85e21bac | 4172 | } |
79787eaa | 4173 | error: |
7f4f6e0a JB |
4174 | if (last_size != (u64)-1) |
4175 | btrfs_ordered_update_i_size(inode, last_size, NULL); | |
39279cc3 | 4176 | btrfs_free_path(path); |
8082510e | 4177 | return err; |
39279cc3 CM |
4178 | } |
4179 | ||
4180 | /* | |
2aaa6655 JB |
4181 | * btrfs_truncate_page - read, zero a chunk and write a page |
4182 | * @inode - inode that we're zeroing | |
4183 | * @from - the offset to start zeroing | |
4184 | * @len - the length to zero, 0 to zero the entire range respective to the | |
4185 | * offset | |
4186 | * @front - zero up to the offset instead of from the offset on | |
4187 | * | |
4188 | * This will find the page for the "from" offset and cow the page and zero the | |
4189 | * part we want to zero. This is used with truncate and hole punching. | |
39279cc3 | 4190 | */ |
2aaa6655 JB |
4191 | int btrfs_truncate_page(struct inode *inode, loff_t from, loff_t len, |
4192 | int front) | |
39279cc3 | 4193 | { |
2aaa6655 | 4194 | struct address_space *mapping = inode->i_mapping; |
db94535d | 4195 | struct btrfs_root *root = BTRFS_I(inode)->root; |
e6dcd2dc CM |
4196 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; |
4197 | struct btrfs_ordered_extent *ordered; | |
2ac55d41 | 4198 | struct extent_state *cached_state = NULL; |
e6dcd2dc | 4199 | char *kaddr; |
db94535d | 4200 | u32 blocksize = root->sectorsize; |
39279cc3 CM |
4201 | pgoff_t index = from >> PAGE_CACHE_SHIFT; |
4202 | unsigned offset = from & (PAGE_CACHE_SIZE-1); | |
4203 | struct page *page; | |
3b16a4e3 | 4204 | gfp_t mask = btrfs_alloc_write_mask(mapping); |
39279cc3 | 4205 | int ret = 0; |
a52d9a80 | 4206 | u64 page_start; |
e6dcd2dc | 4207 | u64 page_end; |
39279cc3 | 4208 | |
2aaa6655 JB |
4209 | if ((offset & (blocksize - 1)) == 0 && |
4210 | (!len || ((len & (blocksize - 1)) == 0))) | |
39279cc3 | 4211 | goto out; |
0ca1f7ce | 4212 | ret = btrfs_delalloc_reserve_space(inode, PAGE_CACHE_SIZE); |
5d5e103a JB |
4213 | if (ret) |
4214 | goto out; | |
39279cc3 | 4215 | |
211c17f5 | 4216 | again: |
3b16a4e3 | 4217 | page = find_or_create_page(mapping, index, mask); |
5d5e103a | 4218 | if (!page) { |
0ca1f7ce | 4219 | btrfs_delalloc_release_space(inode, PAGE_CACHE_SIZE); |
ac6a2b36 | 4220 | ret = -ENOMEM; |
39279cc3 | 4221 | goto out; |
5d5e103a | 4222 | } |
e6dcd2dc CM |
4223 | |
4224 | page_start = page_offset(page); | |
4225 | page_end = page_start + PAGE_CACHE_SIZE - 1; | |
4226 | ||
39279cc3 | 4227 | if (!PageUptodate(page)) { |
9ebefb18 | 4228 | ret = btrfs_readpage(NULL, page); |
39279cc3 | 4229 | lock_page(page); |
211c17f5 CM |
4230 | if (page->mapping != mapping) { |
4231 | unlock_page(page); | |
4232 | page_cache_release(page); | |
4233 | goto again; | |
4234 | } | |
39279cc3 CM |
4235 | if (!PageUptodate(page)) { |
4236 | ret = -EIO; | |
89642229 | 4237 | goto out_unlock; |
39279cc3 CM |
4238 | } |
4239 | } | |
211c17f5 | 4240 | wait_on_page_writeback(page); |
e6dcd2dc | 4241 | |
d0082371 | 4242 | lock_extent_bits(io_tree, page_start, page_end, 0, &cached_state); |
e6dcd2dc CM |
4243 | set_page_extent_mapped(page); |
4244 | ||
4245 | ordered = btrfs_lookup_ordered_extent(inode, page_start); | |
4246 | if (ordered) { | |
2ac55d41 JB |
4247 | unlock_extent_cached(io_tree, page_start, page_end, |
4248 | &cached_state, GFP_NOFS); | |
e6dcd2dc CM |
4249 | unlock_page(page); |
4250 | page_cache_release(page); | |
eb84ae03 | 4251 | btrfs_start_ordered_extent(inode, ordered, 1); |
e6dcd2dc CM |
4252 | btrfs_put_ordered_extent(ordered); |
4253 | goto again; | |
4254 | } | |
4255 | ||
2ac55d41 | 4256 | clear_extent_bit(&BTRFS_I(inode)->io_tree, page_start, page_end, |
9e8a4a8b LB |
4257 | EXTENT_DIRTY | EXTENT_DELALLOC | |
4258 | EXTENT_DO_ACCOUNTING | EXTENT_DEFRAG, | |
2ac55d41 | 4259 | 0, 0, &cached_state, GFP_NOFS); |
5d5e103a | 4260 | |
2ac55d41 JB |
4261 | ret = btrfs_set_extent_delalloc(inode, page_start, page_end, |
4262 | &cached_state); | |
9ed74f2d | 4263 | if (ret) { |
2ac55d41 JB |
4264 | unlock_extent_cached(io_tree, page_start, page_end, |
4265 | &cached_state, GFP_NOFS); | |
9ed74f2d JB |
4266 | goto out_unlock; |
4267 | } | |
4268 | ||
e6dcd2dc | 4269 | if (offset != PAGE_CACHE_SIZE) { |
2aaa6655 JB |
4270 | if (!len) |
4271 | len = PAGE_CACHE_SIZE - offset; | |
e6dcd2dc | 4272 | kaddr = kmap(page); |
2aaa6655 JB |
4273 | if (front) |
4274 | memset(kaddr, 0, offset); | |
4275 | else | |
4276 | memset(kaddr + offset, 0, len); | |
e6dcd2dc CM |
4277 | flush_dcache_page(page); |
4278 | kunmap(page); | |
4279 | } | |
247e743c | 4280 | ClearPageChecked(page); |
e6dcd2dc | 4281 | set_page_dirty(page); |
2ac55d41 JB |
4282 | unlock_extent_cached(io_tree, page_start, page_end, &cached_state, |
4283 | GFP_NOFS); | |
39279cc3 | 4284 | |
89642229 | 4285 | out_unlock: |
5d5e103a | 4286 | if (ret) |
0ca1f7ce | 4287 | btrfs_delalloc_release_space(inode, PAGE_CACHE_SIZE); |
39279cc3 CM |
4288 | unlock_page(page); |
4289 | page_cache_release(page); | |
4290 | out: | |
4291 | return ret; | |
4292 | } | |
4293 | ||
16e7549f JB |
4294 | static int maybe_insert_hole(struct btrfs_root *root, struct inode *inode, |
4295 | u64 offset, u64 len) | |
4296 | { | |
4297 | struct btrfs_trans_handle *trans; | |
4298 | int ret; | |
4299 | ||
4300 | /* | |
4301 | * Still need to make sure the inode looks like it's been updated so | |
4302 | * that any holes get logged if we fsync. | |
4303 | */ | |
4304 | if (btrfs_fs_incompat(root->fs_info, NO_HOLES)) { | |
4305 | BTRFS_I(inode)->last_trans = root->fs_info->generation; | |
4306 | BTRFS_I(inode)->last_sub_trans = root->log_transid; | |
4307 | BTRFS_I(inode)->last_log_commit = root->last_log_commit; | |
4308 | return 0; | |
4309 | } | |
4310 | ||
4311 | /* | |
4312 | * 1 - for the one we're dropping | |
4313 | * 1 - for the one we're adding | |
4314 | * 1 - for updating the inode. | |
4315 | */ | |
4316 | trans = btrfs_start_transaction(root, 3); | |
4317 | if (IS_ERR(trans)) | |
4318 | return PTR_ERR(trans); | |
4319 | ||
4320 | ret = btrfs_drop_extents(trans, root, inode, offset, offset + len, 1); | |
4321 | if (ret) { | |
4322 | btrfs_abort_transaction(trans, root, ret); | |
4323 | btrfs_end_transaction(trans, root); | |
4324 | return ret; | |
4325 | } | |
4326 | ||
4327 | ret = btrfs_insert_file_extent(trans, root, btrfs_ino(inode), offset, | |
4328 | 0, 0, len, 0, len, 0, 0, 0); | |
4329 | if (ret) | |
4330 | btrfs_abort_transaction(trans, root, ret); | |
4331 | else | |
4332 | btrfs_update_inode(trans, root, inode); | |
4333 | btrfs_end_transaction(trans, root); | |
4334 | return ret; | |
4335 | } | |
4336 | ||
695a0d0d JB |
4337 | /* |
4338 | * This function puts in dummy file extents for the area we're creating a hole | |
4339 | * for. So if we are truncating this file to a larger size we need to insert | |
4340 | * these file extents so that btrfs_get_extent will return a EXTENT_MAP_HOLE for | |
4341 | * the range between oldsize and size | |
4342 | */ | |
a41ad394 | 4343 | int btrfs_cont_expand(struct inode *inode, loff_t oldsize, loff_t size) |
39279cc3 | 4344 | { |
9036c102 YZ |
4345 | struct btrfs_root *root = BTRFS_I(inode)->root; |
4346 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; | |
a22285a6 | 4347 | struct extent_map *em = NULL; |
2ac55d41 | 4348 | struct extent_state *cached_state = NULL; |
5dc562c5 | 4349 | struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree; |
fda2832f QW |
4350 | u64 hole_start = ALIGN(oldsize, root->sectorsize); |
4351 | u64 block_end = ALIGN(size, root->sectorsize); | |
9036c102 YZ |
4352 | u64 last_byte; |
4353 | u64 cur_offset; | |
4354 | u64 hole_size; | |
9ed74f2d | 4355 | int err = 0; |
39279cc3 | 4356 | |
a71754fc JB |
4357 | /* |
4358 | * If our size started in the middle of a page we need to zero out the | |
4359 | * rest of the page before we expand the i_size, otherwise we could | |
4360 | * expose stale data. | |
4361 | */ | |
4362 | err = btrfs_truncate_page(inode, oldsize, 0, 0); | |
4363 | if (err) | |
4364 | return err; | |
4365 | ||
9036c102 YZ |
4366 | if (size <= hole_start) |
4367 | return 0; | |
4368 | ||
9036c102 YZ |
4369 | while (1) { |
4370 | struct btrfs_ordered_extent *ordered; | |
fa7c1494 | 4371 | |
2ac55d41 | 4372 | lock_extent_bits(io_tree, hole_start, block_end - 1, 0, |
d0082371 | 4373 | &cached_state); |
fa7c1494 MX |
4374 | ordered = btrfs_lookup_ordered_range(inode, hole_start, |
4375 | block_end - hole_start); | |
9036c102 YZ |
4376 | if (!ordered) |
4377 | break; | |
2ac55d41 JB |
4378 | unlock_extent_cached(io_tree, hole_start, block_end - 1, |
4379 | &cached_state, GFP_NOFS); | |
fa7c1494 | 4380 | btrfs_start_ordered_extent(inode, ordered, 1); |
9036c102 YZ |
4381 | btrfs_put_ordered_extent(ordered); |
4382 | } | |
39279cc3 | 4383 | |
9036c102 YZ |
4384 | cur_offset = hole_start; |
4385 | while (1) { | |
4386 | em = btrfs_get_extent(inode, NULL, 0, cur_offset, | |
4387 | block_end - cur_offset, 0); | |
79787eaa JM |
4388 | if (IS_ERR(em)) { |
4389 | err = PTR_ERR(em); | |
f2767956 | 4390 | em = NULL; |
79787eaa JM |
4391 | break; |
4392 | } | |
9036c102 | 4393 | last_byte = min(extent_map_end(em), block_end); |
fda2832f | 4394 | last_byte = ALIGN(last_byte , root->sectorsize); |
8082510e | 4395 | if (!test_bit(EXTENT_FLAG_PREALLOC, &em->flags)) { |
5dc562c5 | 4396 | struct extent_map *hole_em; |
9036c102 | 4397 | hole_size = last_byte - cur_offset; |
9ed74f2d | 4398 | |
16e7549f JB |
4399 | err = maybe_insert_hole(root, inode, cur_offset, |
4400 | hole_size); | |
4401 | if (err) | |
3893e33b | 4402 | break; |
5dc562c5 JB |
4403 | btrfs_drop_extent_cache(inode, cur_offset, |
4404 | cur_offset + hole_size - 1, 0); | |
4405 | hole_em = alloc_extent_map(); | |
4406 | if (!hole_em) { | |
4407 | set_bit(BTRFS_INODE_NEEDS_FULL_SYNC, | |
4408 | &BTRFS_I(inode)->runtime_flags); | |
4409 | goto next; | |
4410 | } | |
4411 | hole_em->start = cur_offset; | |
4412 | hole_em->len = hole_size; | |
4413 | hole_em->orig_start = cur_offset; | |
8082510e | 4414 | |
5dc562c5 JB |
4415 | hole_em->block_start = EXTENT_MAP_HOLE; |
4416 | hole_em->block_len = 0; | |
b4939680 | 4417 | hole_em->orig_block_len = 0; |
cc95bef6 | 4418 | hole_em->ram_bytes = hole_size; |
5dc562c5 JB |
4419 | hole_em->bdev = root->fs_info->fs_devices->latest_bdev; |
4420 | hole_em->compress_type = BTRFS_COMPRESS_NONE; | |
16e7549f | 4421 | hole_em->generation = root->fs_info->generation; |
8082510e | 4422 | |
5dc562c5 JB |
4423 | while (1) { |
4424 | write_lock(&em_tree->lock); | |
09a2a8f9 | 4425 | err = add_extent_mapping(em_tree, hole_em, 1); |
5dc562c5 JB |
4426 | write_unlock(&em_tree->lock); |
4427 | if (err != -EEXIST) | |
4428 | break; | |
4429 | btrfs_drop_extent_cache(inode, cur_offset, | |
4430 | cur_offset + | |
4431 | hole_size - 1, 0); | |
4432 | } | |
4433 | free_extent_map(hole_em); | |
9036c102 | 4434 | } |
16e7549f | 4435 | next: |
9036c102 | 4436 | free_extent_map(em); |
a22285a6 | 4437 | em = NULL; |
9036c102 | 4438 | cur_offset = last_byte; |
8082510e | 4439 | if (cur_offset >= block_end) |
9036c102 YZ |
4440 | break; |
4441 | } | |
a22285a6 | 4442 | free_extent_map(em); |
2ac55d41 JB |
4443 | unlock_extent_cached(io_tree, hole_start, block_end - 1, &cached_state, |
4444 | GFP_NOFS); | |
9036c102 YZ |
4445 | return err; |
4446 | } | |
39279cc3 | 4447 | |
3972f260 | 4448 | static int btrfs_setsize(struct inode *inode, struct iattr *attr) |
8082510e | 4449 | { |
f4a2f4c5 MX |
4450 | struct btrfs_root *root = BTRFS_I(inode)->root; |
4451 | struct btrfs_trans_handle *trans; | |
a41ad394 | 4452 | loff_t oldsize = i_size_read(inode); |
3972f260 ES |
4453 | loff_t newsize = attr->ia_size; |
4454 | int mask = attr->ia_valid; | |
8082510e YZ |
4455 | int ret; |
4456 | ||
3972f260 ES |
4457 | /* |
4458 | * The regular truncate() case without ATTR_CTIME and ATTR_MTIME is a | |
4459 | * special case where we need to update the times despite not having | |
4460 | * these flags set. For all other operations the VFS set these flags | |
4461 | * explicitly if it wants a timestamp update. | |
4462 | */ | |
4463 | if (newsize != oldsize && (!(mask & (ATTR_CTIME | ATTR_MTIME)))) | |
4464 | inode->i_ctime = inode->i_mtime = current_fs_time(inode->i_sb); | |
4465 | ||
a41ad394 | 4466 | if (newsize > oldsize) { |
7caef267 | 4467 | truncate_pagecache(inode, newsize); |
a41ad394 | 4468 | ret = btrfs_cont_expand(inode, oldsize, newsize); |
f4a2f4c5 | 4469 | if (ret) |
8082510e | 4470 | return ret; |
8082510e | 4471 | |
f4a2f4c5 MX |
4472 | trans = btrfs_start_transaction(root, 1); |
4473 | if (IS_ERR(trans)) | |
4474 | return PTR_ERR(trans); | |
4475 | ||
4476 | i_size_write(inode, newsize); | |
4477 | btrfs_ordered_update_i_size(inode, i_size_read(inode), NULL); | |
4478 | ret = btrfs_update_inode(trans, root, inode); | |
7ad85bb7 | 4479 | btrfs_end_transaction(trans, root); |
a41ad394 | 4480 | } else { |
8082510e | 4481 | |
a41ad394 JB |
4482 | /* |
4483 | * We're truncating a file that used to have good data down to | |
4484 | * zero. Make sure it gets into the ordered flush list so that | |
4485 | * any new writes get down to disk quickly. | |
4486 | */ | |
4487 | if (newsize == 0) | |
72ac3c0d JB |
4488 | set_bit(BTRFS_INODE_ORDERED_DATA_CLOSE, |
4489 | &BTRFS_I(inode)->runtime_flags); | |
8082510e | 4490 | |
f3fe820c JB |
4491 | /* |
4492 | * 1 for the orphan item we're going to add | |
4493 | * 1 for the orphan item deletion. | |
4494 | */ | |
4495 | trans = btrfs_start_transaction(root, 2); | |
4496 | if (IS_ERR(trans)) | |
4497 | return PTR_ERR(trans); | |
4498 | ||
4499 | /* | |
4500 | * We need to do this in case we fail at _any_ point during the | |
4501 | * actual truncate. Once we do the truncate_setsize we could | |
4502 | * invalidate pages which forces any outstanding ordered io to | |
4503 | * be instantly completed which will give us extents that need | |
4504 | * to be truncated. If we fail to get an orphan inode down we | |
4505 | * could have left over extents that were never meant to live, | |
4506 | * so we need to garuntee from this point on that everything | |
4507 | * will be consistent. | |
4508 | */ | |
4509 | ret = btrfs_orphan_add(trans, inode); | |
4510 | btrfs_end_transaction(trans, root); | |
4511 | if (ret) | |
4512 | return ret; | |
4513 | ||
a41ad394 JB |
4514 | /* we don't support swapfiles, so vmtruncate shouldn't fail */ |
4515 | truncate_setsize(inode, newsize); | |
2e60a51e MX |
4516 | |
4517 | /* Disable nonlocked read DIO to avoid the end less truncate */ | |
4518 | btrfs_inode_block_unlocked_dio(inode); | |
4519 | inode_dio_wait(inode); | |
4520 | btrfs_inode_resume_unlocked_dio(inode); | |
4521 | ||
a41ad394 | 4522 | ret = btrfs_truncate(inode); |
7f4f6e0a JB |
4523 | if (ret && inode->i_nlink) { |
4524 | int err; | |
4525 | ||
4526 | /* | |
4527 | * failed to truncate, disk_i_size is only adjusted down | |
4528 | * as we remove extents, so it should represent the true | |
4529 | * size of the inode, so reset the in memory size and | |
4530 | * delete our orphan entry. | |
4531 | */ | |
4532 | trans = btrfs_join_transaction(root); | |
4533 | if (IS_ERR(trans)) { | |
4534 | btrfs_orphan_del(NULL, inode); | |
4535 | return ret; | |
4536 | } | |
4537 | i_size_write(inode, BTRFS_I(inode)->disk_i_size); | |
4538 | err = btrfs_orphan_del(trans, inode); | |
4539 | if (err) | |
4540 | btrfs_abort_transaction(trans, root, err); | |
4541 | btrfs_end_transaction(trans, root); | |
4542 | } | |
8082510e YZ |
4543 | } |
4544 | ||
a41ad394 | 4545 | return ret; |
8082510e YZ |
4546 | } |
4547 | ||
9036c102 YZ |
4548 | static int btrfs_setattr(struct dentry *dentry, struct iattr *attr) |
4549 | { | |
4550 | struct inode *inode = dentry->d_inode; | |
b83cc969 | 4551 | struct btrfs_root *root = BTRFS_I(inode)->root; |
9036c102 | 4552 | int err; |
39279cc3 | 4553 | |
b83cc969 LZ |
4554 | if (btrfs_root_readonly(root)) |
4555 | return -EROFS; | |
4556 | ||
9036c102 YZ |
4557 | err = inode_change_ok(inode, attr); |
4558 | if (err) | |
4559 | return err; | |
2bf5a725 | 4560 | |
5a3f23d5 | 4561 | if (S_ISREG(inode->i_mode) && (attr->ia_valid & ATTR_SIZE)) { |
3972f260 | 4562 | err = btrfs_setsize(inode, attr); |
8082510e YZ |
4563 | if (err) |
4564 | return err; | |
39279cc3 | 4565 | } |
9036c102 | 4566 | |
1025774c CH |
4567 | if (attr->ia_valid) { |
4568 | setattr_copy(inode, attr); | |
0c4d2d95 | 4569 | inode_inc_iversion(inode); |
22c44fe6 | 4570 | err = btrfs_dirty_inode(inode); |
1025774c | 4571 | |
22c44fe6 | 4572 | if (!err && attr->ia_valid & ATTR_MODE) |
1025774c CH |
4573 | err = btrfs_acl_chmod(inode); |
4574 | } | |
33268eaf | 4575 | |
39279cc3 CM |
4576 | return err; |
4577 | } | |
61295eb8 | 4578 | |
131e404a FDBM |
4579 | /* |
4580 | * While truncating the inode pages during eviction, we get the VFS calling | |
4581 | * btrfs_invalidatepage() against each page of the inode. This is slow because | |
4582 | * the calls to btrfs_invalidatepage() result in a huge amount of calls to | |
4583 | * lock_extent_bits() and clear_extent_bit(), which keep merging and splitting | |
4584 | * extent_state structures over and over, wasting lots of time. | |
4585 | * | |
4586 | * Therefore if the inode is being evicted, let btrfs_invalidatepage() skip all | |
4587 | * those expensive operations on a per page basis and do only the ordered io | |
4588 | * finishing, while we release here the extent_map and extent_state structures, | |
4589 | * without the excessive merging and splitting. | |
4590 | */ | |
4591 | static void evict_inode_truncate_pages(struct inode *inode) | |
4592 | { | |
4593 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; | |
4594 | struct extent_map_tree *map_tree = &BTRFS_I(inode)->extent_tree; | |
4595 | struct rb_node *node; | |
4596 | ||
4597 | ASSERT(inode->i_state & I_FREEING); | |
4598 | truncate_inode_pages(&inode->i_data, 0); | |
4599 | ||
4600 | write_lock(&map_tree->lock); | |
4601 | while (!RB_EMPTY_ROOT(&map_tree->map)) { | |
4602 | struct extent_map *em; | |
4603 | ||
4604 | node = rb_first(&map_tree->map); | |
4605 | em = rb_entry(node, struct extent_map, rb_node); | |
180589ef WS |
4606 | clear_bit(EXTENT_FLAG_PINNED, &em->flags); |
4607 | clear_bit(EXTENT_FLAG_LOGGING, &em->flags); | |
131e404a FDBM |
4608 | remove_extent_mapping(map_tree, em); |
4609 | free_extent_map(em); | |
4610 | } | |
4611 | write_unlock(&map_tree->lock); | |
4612 | ||
4613 | spin_lock(&io_tree->lock); | |
4614 | while (!RB_EMPTY_ROOT(&io_tree->state)) { | |
4615 | struct extent_state *state; | |
4616 | struct extent_state *cached_state = NULL; | |
4617 | ||
4618 | node = rb_first(&io_tree->state); | |
4619 | state = rb_entry(node, struct extent_state, rb_node); | |
4620 | atomic_inc(&state->refs); | |
4621 | spin_unlock(&io_tree->lock); | |
4622 | ||
4623 | lock_extent_bits(io_tree, state->start, state->end, | |
4624 | 0, &cached_state); | |
4625 | clear_extent_bit(io_tree, state->start, state->end, | |
4626 | EXTENT_LOCKED | EXTENT_DIRTY | | |
4627 | EXTENT_DELALLOC | EXTENT_DO_ACCOUNTING | | |
4628 | EXTENT_DEFRAG, 1, 1, | |
4629 | &cached_state, GFP_NOFS); | |
4630 | free_extent_state(state); | |
4631 | ||
4632 | spin_lock(&io_tree->lock); | |
4633 | } | |
4634 | spin_unlock(&io_tree->lock); | |
4635 | } | |
4636 | ||
bd555975 | 4637 | void btrfs_evict_inode(struct inode *inode) |
39279cc3 CM |
4638 | { |
4639 | struct btrfs_trans_handle *trans; | |
4640 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
726c35fa | 4641 | struct btrfs_block_rsv *rsv, *global_rsv; |
07127184 | 4642 | u64 min_size = btrfs_calc_trunc_metadata_size(root, 1); |
39279cc3 CM |
4643 | int ret; |
4644 | ||
1abe9b8a | 4645 | trace_btrfs_inode_evict(inode); |
4646 | ||
131e404a FDBM |
4647 | evict_inode_truncate_pages(inode); |
4648 | ||
69e9c6c6 SB |
4649 | if (inode->i_nlink && |
4650 | ((btrfs_root_refs(&root->root_item) != 0 && | |
4651 | root->root_key.objectid != BTRFS_ROOT_TREE_OBJECTID) || | |
4652 | btrfs_is_free_space_inode(inode))) | |
bd555975 AV |
4653 | goto no_delete; |
4654 | ||
39279cc3 | 4655 | if (is_bad_inode(inode)) { |
7b128766 | 4656 | btrfs_orphan_del(NULL, inode); |
39279cc3 CM |
4657 | goto no_delete; |
4658 | } | |
bd555975 | 4659 | /* do we really want it for ->i_nlink > 0 and zero btrfs_root_refs? */ |
4a096752 | 4660 | btrfs_wait_ordered_range(inode, 0, (u64)-1); |
5f39d397 | 4661 | |
c71bf099 | 4662 | if (root->fs_info->log_root_recovering) { |
6bf02314 | 4663 | BUG_ON(test_bit(BTRFS_INODE_HAS_ORPHAN_ITEM, |
8a35d95f | 4664 | &BTRFS_I(inode)->runtime_flags)); |
c71bf099 YZ |
4665 | goto no_delete; |
4666 | } | |
4667 | ||
76dda93c | 4668 | if (inode->i_nlink > 0) { |
69e9c6c6 SB |
4669 | BUG_ON(btrfs_root_refs(&root->root_item) != 0 && |
4670 | root->root_key.objectid != BTRFS_ROOT_TREE_OBJECTID); | |
76dda93c YZ |
4671 | goto no_delete; |
4672 | } | |
4673 | ||
0e8c36a9 MX |
4674 | ret = btrfs_commit_inode_delayed_inode(inode); |
4675 | if (ret) { | |
4676 | btrfs_orphan_del(NULL, inode); | |
4677 | goto no_delete; | |
4678 | } | |
4679 | ||
66d8f3dd | 4680 | rsv = btrfs_alloc_block_rsv(root, BTRFS_BLOCK_RSV_TEMP); |
4289a667 JB |
4681 | if (!rsv) { |
4682 | btrfs_orphan_del(NULL, inode); | |
4683 | goto no_delete; | |
4684 | } | |
4a338542 | 4685 | rsv->size = min_size; |
ca7e70f5 | 4686 | rsv->failfast = 1; |
726c35fa | 4687 | global_rsv = &root->fs_info->global_block_rsv; |
4289a667 | 4688 | |
dbe674a9 | 4689 | btrfs_i_size_write(inode, 0); |
5f39d397 | 4690 | |
4289a667 | 4691 | /* |
8407aa46 MX |
4692 | * This is a bit simpler than btrfs_truncate since we've already |
4693 | * reserved our space for our orphan item in the unlink, so we just | |
4694 | * need to reserve some slack space in case we add bytes and update | |
4695 | * inode item when doing the truncate. | |
4289a667 | 4696 | */ |
8082510e | 4697 | while (1) { |
08e007d2 MX |
4698 | ret = btrfs_block_rsv_refill(root, rsv, min_size, |
4699 | BTRFS_RESERVE_FLUSH_LIMIT); | |
726c35fa JB |
4700 | |
4701 | /* | |
4702 | * Try and steal from the global reserve since we will | |
4703 | * likely not use this space anyway, we want to try as | |
4704 | * hard as possible to get this to work. | |
4705 | */ | |
4706 | if (ret) | |
4707 | ret = btrfs_block_rsv_migrate(global_rsv, rsv, min_size); | |
d68fc57b | 4708 | |
d68fc57b | 4709 | if (ret) { |
c2cf52eb SK |
4710 | btrfs_warn(root->fs_info, |
4711 | "Could not get space for a delete, will truncate on mount %d", | |
4712 | ret); | |
4289a667 JB |
4713 | btrfs_orphan_del(NULL, inode); |
4714 | btrfs_free_block_rsv(root, rsv); | |
4715 | goto no_delete; | |
d68fc57b | 4716 | } |
7b128766 | 4717 | |
0e8c36a9 | 4718 | trans = btrfs_join_transaction(root); |
4289a667 JB |
4719 | if (IS_ERR(trans)) { |
4720 | btrfs_orphan_del(NULL, inode); | |
4721 | btrfs_free_block_rsv(root, rsv); | |
4722 | goto no_delete; | |
d68fc57b | 4723 | } |
7b128766 | 4724 | |
4289a667 JB |
4725 | trans->block_rsv = rsv; |
4726 | ||
d68fc57b | 4727 | ret = btrfs_truncate_inode_items(trans, root, inode, 0, 0); |
ca7e70f5 | 4728 | if (ret != -ENOSPC) |
8082510e | 4729 | break; |
85e21bac | 4730 | |
8407aa46 | 4731 | trans->block_rsv = &root->fs_info->trans_block_rsv; |
8082510e YZ |
4732 | btrfs_end_transaction(trans, root); |
4733 | trans = NULL; | |
b53d3f5d | 4734 | btrfs_btree_balance_dirty(root); |
8082510e | 4735 | } |
5f39d397 | 4736 | |
4289a667 JB |
4737 | btrfs_free_block_rsv(root, rsv); |
4738 | ||
4ef31a45 JB |
4739 | /* |
4740 | * Errors here aren't a big deal, it just means we leave orphan items | |
4741 | * in the tree. They will be cleaned up on the next mount. | |
4742 | */ | |
8082510e | 4743 | if (ret == 0) { |
4289a667 | 4744 | trans->block_rsv = root->orphan_block_rsv; |
4ef31a45 JB |
4745 | btrfs_orphan_del(trans, inode); |
4746 | } else { | |
4747 | btrfs_orphan_del(NULL, inode); | |
8082510e | 4748 | } |
54aa1f4d | 4749 | |
4289a667 | 4750 | trans->block_rsv = &root->fs_info->trans_block_rsv; |
581bb050 LZ |
4751 | if (!(root == root->fs_info->tree_root || |
4752 | root->root_key.objectid == BTRFS_TREE_RELOC_OBJECTID)) | |
33345d01 | 4753 | btrfs_return_ino(root, btrfs_ino(inode)); |
581bb050 | 4754 | |
54aa1f4d | 4755 | btrfs_end_transaction(trans, root); |
b53d3f5d | 4756 | btrfs_btree_balance_dirty(root); |
39279cc3 | 4757 | no_delete: |
89042e5a | 4758 | btrfs_remove_delayed_node(inode); |
dbd5768f | 4759 | clear_inode(inode); |
8082510e | 4760 | return; |
39279cc3 CM |
4761 | } |
4762 | ||
4763 | /* | |
4764 | * this returns the key found in the dir entry in the location pointer. | |
4765 | * If no dir entries were found, location->objectid is 0. | |
4766 | */ | |
4767 | static int btrfs_inode_by_name(struct inode *dir, struct dentry *dentry, | |
4768 | struct btrfs_key *location) | |
4769 | { | |
4770 | const char *name = dentry->d_name.name; | |
4771 | int namelen = dentry->d_name.len; | |
4772 | struct btrfs_dir_item *di; | |
4773 | struct btrfs_path *path; | |
4774 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
0d9f7f3e | 4775 | int ret = 0; |
39279cc3 CM |
4776 | |
4777 | path = btrfs_alloc_path(); | |
d8926bb3 MF |
4778 | if (!path) |
4779 | return -ENOMEM; | |
3954401f | 4780 | |
33345d01 | 4781 | di = btrfs_lookup_dir_item(NULL, root, path, btrfs_ino(dir), name, |
39279cc3 | 4782 | namelen, 0); |
0d9f7f3e Y |
4783 | if (IS_ERR(di)) |
4784 | ret = PTR_ERR(di); | |
d397712b | 4785 | |
c704005d | 4786 | if (IS_ERR_OR_NULL(di)) |
3954401f | 4787 | goto out_err; |
d397712b | 4788 | |
5f39d397 | 4789 | btrfs_dir_item_key_to_cpu(path->nodes[0], di, location); |
39279cc3 | 4790 | out: |
39279cc3 CM |
4791 | btrfs_free_path(path); |
4792 | return ret; | |
3954401f CM |
4793 | out_err: |
4794 | location->objectid = 0; | |
4795 | goto out; | |
39279cc3 CM |
4796 | } |
4797 | ||
4798 | /* | |
4799 | * when we hit a tree root in a directory, the btrfs part of the inode | |
4800 | * needs to be changed to reflect the root directory of the tree root. This | |
4801 | * is kind of like crossing a mount point. | |
4802 | */ | |
4803 | static int fixup_tree_root_location(struct btrfs_root *root, | |
4df27c4d YZ |
4804 | struct inode *dir, |
4805 | struct dentry *dentry, | |
4806 | struct btrfs_key *location, | |
4807 | struct btrfs_root **sub_root) | |
39279cc3 | 4808 | { |
4df27c4d YZ |
4809 | struct btrfs_path *path; |
4810 | struct btrfs_root *new_root; | |
4811 | struct btrfs_root_ref *ref; | |
4812 | struct extent_buffer *leaf; | |
4813 | int ret; | |
4814 | int err = 0; | |
39279cc3 | 4815 | |
4df27c4d YZ |
4816 | path = btrfs_alloc_path(); |
4817 | if (!path) { | |
4818 | err = -ENOMEM; | |
4819 | goto out; | |
4820 | } | |
39279cc3 | 4821 | |
4df27c4d | 4822 | err = -ENOENT; |
75ac2dd9 KN |
4823 | ret = btrfs_find_item(root->fs_info->tree_root, path, |
4824 | BTRFS_I(dir)->root->root_key.objectid, | |
4825 | location->objectid, BTRFS_ROOT_REF_KEY, NULL); | |
4df27c4d YZ |
4826 | if (ret) { |
4827 | if (ret < 0) | |
4828 | err = ret; | |
4829 | goto out; | |
4830 | } | |
39279cc3 | 4831 | |
4df27c4d YZ |
4832 | leaf = path->nodes[0]; |
4833 | ref = btrfs_item_ptr(leaf, path->slots[0], struct btrfs_root_ref); | |
33345d01 | 4834 | if (btrfs_root_ref_dirid(leaf, ref) != btrfs_ino(dir) || |
4df27c4d YZ |
4835 | btrfs_root_ref_name_len(leaf, ref) != dentry->d_name.len) |
4836 | goto out; | |
39279cc3 | 4837 | |
4df27c4d YZ |
4838 | ret = memcmp_extent_buffer(leaf, dentry->d_name.name, |
4839 | (unsigned long)(ref + 1), | |
4840 | dentry->d_name.len); | |
4841 | if (ret) | |
4842 | goto out; | |
4843 | ||
b3b4aa74 | 4844 | btrfs_release_path(path); |
4df27c4d YZ |
4845 | |
4846 | new_root = btrfs_read_fs_root_no_name(root->fs_info, location); | |
4847 | if (IS_ERR(new_root)) { | |
4848 | err = PTR_ERR(new_root); | |
4849 | goto out; | |
4850 | } | |
4851 | ||
4df27c4d YZ |
4852 | *sub_root = new_root; |
4853 | location->objectid = btrfs_root_dirid(&new_root->root_item); | |
4854 | location->type = BTRFS_INODE_ITEM_KEY; | |
4855 | location->offset = 0; | |
4856 | err = 0; | |
4857 | out: | |
4858 | btrfs_free_path(path); | |
4859 | return err; | |
39279cc3 CM |
4860 | } |
4861 | ||
5d4f98a2 YZ |
4862 | static void inode_tree_add(struct inode *inode) |
4863 | { | |
4864 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
4865 | struct btrfs_inode *entry; | |
03e860bd NP |
4866 | struct rb_node **p; |
4867 | struct rb_node *parent; | |
cef21937 | 4868 | struct rb_node *new = &BTRFS_I(inode)->rb_node; |
33345d01 | 4869 | u64 ino = btrfs_ino(inode); |
5d4f98a2 | 4870 | |
1d3382cb | 4871 | if (inode_unhashed(inode)) |
76dda93c | 4872 | return; |
e1409cef | 4873 | parent = NULL; |
5d4f98a2 | 4874 | spin_lock(&root->inode_lock); |
e1409cef | 4875 | p = &root->inode_tree.rb_node; |
5d4f98a2 YZ |
4876 | while (*p) { |
4877 | parent = *p; | |
4878 | entry = rb_entry(parent, struct btrfs_inode, rb_node); | |
4879 | ||
33345d01 | 4880 | if (ino < btrfs_ino(&entry->vfs_inode)) |
03e860bd | 4881 | p = &parent->rb_left; |
33345d01 | 4882 | else if (ino > btrfs_ino(&entry->vfs_inode)) |
03e860bd | 4883 | p = &parent->rb_right; |
5d4f98a2 YZ |
4884 | else { |
4885 | WARN_ON(!(entry->vfs_inode.i_state & | |
a4ffdde6 | 4886 | (I_WILL_FREE | I_FREEING))); |
cef21937 | 4887 | rb_replace_node(parent, new, &root->inode_tree); |
03e860bd NP |
4888 | RB_CLEAR_NODE(parent); |
4889 | spin_unlock(&root->inode_lock); | |
cef21937 | 4890 | return; |
5d4f98a2 YZ |
4891 | } |
4892 | } | |
cef21937 FDBM |
4893 | rb_link_node(new, parent, p); |
4894 | rb_insert_color(new, &root->inode_tree); | |
5d4f98a2 YZ |
4895 | spin_unlock(&root->inode_lock); |
4896 | } | |
4897 | ||
4898 | static void inode_tree_del(struct inode *inode) | |
4899 | { | |
4900 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
76dda93c | 4901 | int empty = 0; |
5d4f98a2 | 4902 | |
03e860bd | 4903 | spin_lock(&root->inode_lock); |
5d4f98a2 | 4904 | if (!RB_EMPTY_NODE(&BTRFS_I(inode)->rb_node)) { |
5d4f98a2 | 4905 | rb_erase(&BTRFS_I(inode)->rb_node, &root->inode_tree); |
5d4f98a2 | 4906 | RB_CLEAR_NODE(&BTRFS_I(inode)->rb_node); |
76dda93c | 4907 | empty = RB_EMPTY_ROOT(&root->inode_tree); |
5d4f98a2 | 4908 | } |
03e860bd | 4909 | spin_unlock(&root->inode_lock); |
76dda93c | 4910 | |
69e9c6c6 | 4911 | if (empty && btrfs_root_refs(&root->root_item) == 0) { |
76dda93c YZ |
4912 | synchronize_srcu(&root->fs_info->subvol_srcu); |
4913 | spin_lock(&root->inode_lock); | |
4914 | empty = RB_EMPTY_ROOT(&root->inode_tree); | |
4915 | spin_unlock(&root->inode_lock); | |
4916 | if (empty) | |
4917 | btrfs_add_dead_root(root); | |
4918 | } | |
4919 | } | |
4920 | ||
143bede5 | 4921 | void btrfs_invalidate_inodes(struct btrfs_root *root) |
76dda93c YZ |
4922 | { |
4923 | struct rb_node *node; | |
4924 | struct rb_node *prev; | |
4925 | struct btrfs_inode *entry; | |
4926 | struct inode *inode; | |
4927 | u64 objectid = 0; | |
4928 | ||
4929 | WARN_ON(btrfs_root_refs(&root->root_item) != 0); | |
4930 | ||
4931 | spin_lock(&root->inode_lock); | |
4932 | again: | |
4933 | node = root->inode_tree.rb_node; | |
4934 | prev = NULL; | |
4935 | while (node) { | |
4936 | prev = node; | |
4937 | entry = rb_entry(node, struct btrfs_inode, rb_node); | |
4938 | ||
33345d01 | 4939 | if (objectid < btrfs_ino(&entry->vfs_inode)) |
76dda93c | 4940 | node = node->rb_left; |
33345d01 | 4941 | else if (objectid > btrfs_ino(&entry->vfs_inode)) |
76dda93c YZ |
4942 | node = node->rb_right; |
4943 | else | |
4944 | break; | |
4945 | } | |
4946 | if (!node) { | |
4947 | while (prev) { | |
4948 | entry = rb_entry(prev, struct btrfs_inode, rb_node); | |
33345d01 | 4949 | if (objectid <= btrfs_ino(&entry->vfs_inode)) { |
76dda93c YZ |
4950 | node = prev; |
4951 | break; | |
4952 | } | |
4953 | prev = rb_next(prev); | |
4954 | } | |
4955 | } | |
4956 | while (node) { | |
4957 | entry = rb_entry(node, struct btrfs_inode, rb_node); | |
33345d01 | 4958 | objectid = btrfs_ino(&entry->vfs_inode) + 1; |
76dda93c YZ |
4959 | inode = igrab(&entry->vfs_inode); |
4960 | if (inode) { | |
4961 | spin_unlock(&root->inode_lock); | |
4962 | if (atomic_read(&inode->i_count) > 1) | |
4963 | d_prune_aliases(inode); | |
4964 | /* | |
45321ac5 | 4965 | * btrfs_drop_inode will have it removed from |
76dda93c YZ |
4966 | * the inode cache when its usage count |
4967 | * hits zero. | |
4968 | */ | |
4969 | iput(inode); | |
4970 | cond_resched(); | |
4971 | spin_lock(&root->inode_lock); | |
4972 | goto again; | |
4973 | } | |
4974 | ||
4975 | if (cond_resched_lock(&root->inode_lock)) | |
4976 | goto again; | |
4977 | ||
4978 | node = rb_next(node); | |
4979 | } | |
4980 | spin_unlock(&root->inode_lock); | |
5d4f98a2 YZ |
4981 | } |
4982 | ||
e02119d5 CM |
4983 | static int btrfs_init_locked_inode(struct inode *inode, void *p) |
4984 | { | |
4985 | struct btrfs_iget_args *args = p; | |
90d3e592 CM |
4986 | inode->i_ino = args->location->objectid; |
4987 | memcpy(&BTRFS_I(inode)->location, args->location, | |
4988 | sizeof(*args->location)); | |
e02119d5 | 4989 | BTRFS_I(inode)->root = args->root; |
39279cc3 CM |
4990 | return 0; |
4991 | } | |
4992 | ||
4993 | static int btrfs_find_actor(struct inode *inode, void *opaque) | |
4994 | { | |
4995 | struct btrfs_iget_args *args = opaque; | |
90d3e592 | 4996 | return args->location->objectid == BTRFS_I(inode)->location.objectid && |
d397712b | 4997 | args->root == BTRFS_I(inode)->root; |
39279cc3 CM |
4998 | } |
4999 | ||
5d4f98a2 | 5000 | static struct inode *btrfs_iget_locked(struct super_block *s, |
90d3e592 | 5001 | struct btrfs_key *location, |
5d4f98a2 | 5002 | struct btrfs_root *root) |
39279cc3 CM |
5003 | { |
5004 | struct inode *inode; | |
5005 | struct btrfs_iget_args args; | |
90d3e592 | 5006 | unsigned long hashval = btrfs_inode_hash(location->objectid, root); |
778ba82b | 5007 | |
90d3e592 | 5008 | args.location = location; |
39279cc3 CM |
5009 | args.root = root; |
5010 | ||
778ba82b | 5011 | inode = iget5_locked(s, hashval, btrfs_find_actor, |
39279cc3 CM |
5012 | btrfs_init_locked_inode, |
5013 | (void *)&args); | |
5014 | return inode; | |
5015 | } | |
5016 | ||
1a54ef8c BR |
5017 | /* Get an inode object given its location and corresponding root. |
5018 | * Returns in *is_new if the inode was read from disk | |
5019 | */ | |
5020 | struct inode *btrfs_iget(struct super_block *s, struct btrfs_key *location, | |
73f73415 | 5021 | struct btrfs_root *root, int *new) |
1a54ef8c BR |
5022 | { |
5023 | struct inode *inode; | |
5024 | ||
90d3e592 | 5025 | inode = btrfs_iget_locked(s, location, root); |
1a54ef8c | 5026 | if (!inode) |
5d4f98a2 | 5027 | return ERR_PTR(-ENOMEM); |
1a54ef8c BR |
5028 | |
5029 | if (inode->i_state & I_NEW) { | |
1a54ef8c | 5030 | btrfs_read_locked_inode(inode); |
1748f843 MF |
5031 | if (!is_bad_inode(inode)) { |
5032 | inode_tree_add(inode); | |
5033 | unlock_new_inode(inode); | |
5034 | if (new) | |
5035 | *new = 1; | |
5036 | } else { | |
e0b6d65b ST |
5037 | unlock_new_inode(inode); |
5038 | iput(inode); | |
5039 | inode = ERR_PTR(-ESTALE); | |
1748f843 MF |
5040 | } |
5041 | } | |
5042 | ||
1a54ef8c BR |
5043 | return inode; |
5044 | } | |
5045 | ||
4df27c4d YZ |
5046 | static struct inode *new_simple_dir(struct super_block *s, |
5047 | struct btrfs_key *key, | |
5048 | struct btrfs_root *root) | |
5049 | { | |
5050 | struct inode *inode = new_inode(s); | |
5051 | ||
5052 | if (!inode) | |
5053 | return ERR_PTR(-ENOMEM); | |
5054 | ||
4df27c4d YZ |
5055 | BTRFS_I(inode)->root = root; |
5056 | memcpy(&BTRFS_I(inode)->location, key, sizeof(*key)); | |
72ac3c0d | 5057 | set_bit(BTRFS_INODE_DUMMY, &BTRFS_I(inode)->runtime_flags); |
4df27c4d YZ |
5058 | |
5059 | inode->i_ino = BTRFS_EMPTY_SUBVOL_DIR_OBJECTID; | |
848cce0d | 5060 | inode->i_op = &btrfs_dir_ro_inode_operations; |
4df27c4d YZ |
5061 | inode->i_fop = &simple_dir_operations; |
5062 | inode->i_mode = S_IFDIR | S_IRUGO | S_IWUSR | S_IXUGO; | |
5063 | inode->i_mtime = inode->i_atime = inode->i_ctime = CURRENT_TIME; | |
5064 | ||
5065 | return inode; | |
5066 | } | |
5067 | ||
3de4586c | 5068 | struct inode *btrfs_lookup_dentry(struct inode *dir, struct dentry *dentry) |
39279cc3 | 5069 | { |
d397712b | 5070 | struct inode *inode; |
4df27c4d | 5071 | struct btrfs_root *root = BTRFS_I(dir)->root; |
39279cc3 CM |
5072 | struct btrfs_root *sub_root = root; |
5073 | struct btrfs_key location; | |
76dda93c | 5074 | int index; |
b4aff1f8 | 5075 | int ret = 0; |
39279cc3 CM |
5076 | |
5077 | if (dentry->d_name.len > BTRFS_NAME_LEN) | |
5078 | return ERR_PTR(-ENAMETOOLONG); | |
5f39d397 | 5079 | |
39e3c955 | 5080 | ret = btrfs_inode_by_name(dir, dentry, &location); |
39279cc3 CM |
5081 | if (ret < 0) |
5082 | return ERR_PTR(ret); | |
5f39d397 | 5083 | |
4df27c4d | 5084 | if (location.objectid == 0) |
5662344b | 5085 | return ERR_PTR(-ENOENT); |
4df27c4d YZ |
5086 | |
5087 | if (location.type == BTRFS_INODE_ITEM_KEY) { | |
73f73415 | 5088 | inode = btrfs_iget(dir->i_sb, &location, root, NULL); |
4df27c4d YZ |
5089 | return inode; |
5090 | } | |
5091 | ||
5092 | BUG_ON(location.type != BTRFS_ROOT_ITEM_KEY); | |
5093 | ||
76dda93c | 5094 | index = srcu_read_lock(&root->fs_info->subvol_srcu); |
4df27c4d YZ |
5095 | ret = fixup_tree_root_location(root, dir, dentry, |
5096 | &location, &sub_root); | |
5097 | if (ret < 0) { | |
5098 | if (ret != -ENOENT) | |
5099 | inode = ERR_PTR(ret); | |
5100 | else | |
5101 | inode = new_simple_dir(dir->i_sb, &location, sub_root); | |
5102 | } else { | |
73f73415 | 5103 | inode = btrfs_iget(dir->i_sb, &location, sub_root, NULL); |
39279cc3 | 5104 | } |
76dda93c YZ |
5105 | srcu_read_unlock(&root->fs_info->subvol_srcu, index); |
5106 | ||
34d19bad | 5107 | if (!IS_ERR(inode) && root != sub_root) { |
c71bf099 YZ |
5108 | down_read(&root->fs_info->cleanup_work_sem); |
5109 | if (!(inode->i_sb->s_flags & MS_RDONLY)) | |
66b4ffd1 | 5110 | ret = btrfs_orphan_cleanup(sub_root); |
c71bf099 | 5111 | up_read(&root->fs_info->cleanup_work_sem); |
01cd3367 JB |
5112 | if (ret) { |
5113 | iput(inode); | |
66b4ffd1 | 5114 | inode = ERR_PTR(ret); |
01cd3367 | 5115 | } |
c71bf099 YZ |
5116 | } |
5117 | ||
3de4586c CM |
5118 | return inode; |
5119 | } | |
5120 | ||
fe15ce44 | 5121 | static int btrfs_dentry_delete(const struct dentry *dentry) |
76dda93c YZ |
5122 | { |
5123 | struct btrfs_root *root; | |
848cce0d | 5124 | struct inode *inode = dentry->d_inode; |
76dda93c | 5125 | |
848cce0d LZ |
5126 | if (!inode && !IS_ROOT(dentry)) |
5127 | inode = dentry->d_parent->d_inode; | |
76dda93c | 5128 | |
848cce0d LZ |
5129 | if (inode) { |
5130 | root = BTRFS_I(inode)->root; | |
efefb143 YZ |
5131 | if (btrfs_root_refs(&root->root_item) == 0) |
5132 | return 1; | |
848cce0d LZ |
5133 | |
5134 | if (btrfs_ino(inode) == BTRFS_EMPTY_SUBVOL_DIR_OBJECTID) | |
5135 | return 1; | |
efefb143 | 5136 | } |
76dda93c YZ |
5137 | return 0; |
5138 | } | |
5139 | ||
b4aff1f8 JB |
5140 | static void btrfs_dentry_release(struct dentry *dentry) |
5141 | { | |
5142 | if (dentry->d_fsdata) | |
5143 | kfree(dentry->d_fsdata); | |
5144 | } | |
5145 | ||
3de4586c | 5146 | static struct dentry *btrfs_lookup(struct inode *dir, struct dentry *dentry, |
00cd8dd3 | 5147 | unsigned int flags) |
3de4586c | 5148 | { |
5662344b | 5149 | struct inode *inode; |
a66e7cc6 | 5150 | |
5662344b TI |
5151 | inode = btrfs_lookup_dentry(dir, dentry); |
5152 | if (IS_ERR(inode)) { | |
5153 | if (PTR_ERR(inode) == -ENOENT) | |
5154 | inode = NULL; | |
5155 | else | |
5156 | return ERR_CAST(inode); | |
5157 | } | |
5158 | ||
3a0dfa6a | 5159 | return d_materialise_unique(dentry, inode); |
39279cc3 CM |
5160 | } |
5161 | ||
16cdcec7 | 5162 | unsigned char btrfs_filetype_table[] = { |
39279cc3 CM |
5163 | DT_UNKNOWN, DT_REG, DT_DIR, DT_CHR, DT_BLK, DT_FIFO, DT_SOCK, DT_LNK |
5164 | }; | |
5165 | ||
9cdda8d3 | 5166 | static int btrfs_real_readdir(struct file *file, struct dir_context *ctx) |
39279cc3 | 5167 | { |
9cdda8d3 | 5168 | struct inode *inode = file_inode(file); |
39279cc3 CM |
5169 | struct btrfs_root *root = BTRFS_I(inode)->root; |
5170 | struct btrfs_item *item; | |
5171 | struct btrfs_dir_item *di; | |
5172 | struct btrfs_key key; | |
5f39d397 | 5173 | struct btrfs_key found_key; |
39279cc3 | 5174 | struct btrfs_path *path; |
16cdcec7 MX |
5175 | struct list_head ins_list; |
5176 | struct list_head del_list; | |
39279cc3 | 5177 | int ret; |
5f39d397 | 5178 | struct extent_buffer *leaf; |
39279cc3 | 5179 | int slot; |
39279cc3 CM |
5180 | unsigned char d_type; |
5181 | int over = 0; | |
5182 | u32 di_cur; | |
5183 | u32 di_total; | |
5184 | u32 di_len; | |
5185 | int key_type = BTRFS_DIR_INDEX_KEY; | |
5f39d397 CM |
5186 | char tmp_name[32]; |
5187 | char *name_ptr; | |
5188 | int name_len; | |
9cdda8d3 | 5189 | int is_curr = 0; /* ctx->pos points to the current index? */ |
39279cc3 CM |
5190 | |
5191 | /* FIXME, use a real flag for deciding about the key type */ | |
5192 | if (root->fs_info->tree_root == root) | |
5193 | key_type = BTRFS_DIR_ITEM_KEY; | |
5f39d397 | 5194 | |
9cdda8d3 AV |
5195 | if (!dir_emit_dots(file, ctx)) |
5196 | return 0; | |
5197 | ||
49593bfa | 5198 | path = btrfs_alloc_path(); |
16cdcec7 MX |
5199 | if (!path) |
5200 | return -ENOMEM; | |
ff5714cc | 5201 | |
026fd317 | 5202 | path->reada = 1; |
49593bfa | 5203 | |
16cdcec7 MX |
5204 | if (key_type == BTRFS_DIR_INDEX_KEY) { |
5205 | INIT_LIST_HEAD(&ins_list); | |
5206 | INIT_LIST_HEAD(&del_list); | |
5207 | btrfs_get_delayed_items(inode, &ins_list, &del_list); | |
5208 | } | |
5209 | ||
39279cc3 | 5210 | btrfs_set_key_type(&key, key_type); |
9cdda8d3 | 5211 | key.offset = ctx->pos; |
33345d01 | 5212 | key.objectid = btrfs_ino(inode); |
5f39d397 | 5213 | |
39279cc3 CM |
5214 | ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); |
5215 | if (ret < 0) | |
5216 | goto err; | |
49593bfa DW |
5217 | |
5218 | while (1) { | |
5f39d397 | 5219 | leaf = path->nodes[0]; |
39279cc3 | 5220 | slot = path->slots[0]; |
b9e03af0 LZ |
5221 | if (slot >= btrfs_header_nritems(leaf)) { |
5222 | ret = btrfs_next_leaf(root, path); | |
5223 | if (ret < 0) | |
5224 | goto err; | |
5225 | else if (ret > 0) | |
5226 | break; | |
5227 | continue; | |
39279cc3 | 5228 | } |
3de4586c | 5229 | |
dd3cc16b | 5230 | item = btrfs_item_nr(slot); |
5f39d397 CM |
5231 | btrfs_item_key_to_cpu(leaf, &found_key, slot); |
5232 | ||
5233 | if (found_key.objectid != key.objectid) | |
39279cc3 | 5234 | break; |
5f39d397 | 5235 | if (btrfs_key_type(&found_key) != key_type) |
39279cc3 | 5236 | break; |
9cdda8d3 | 5237 | if (found_key.offset < ctx->pos) |
b9e03af0 | 5238 | goto next; |
16cdcec7 MX |
5239 | if (key_type == BTRFS_DIR_INDEX_KEY && |
5240 | btrfs_should_delete_dir_index(&del_list, | |
5241 | found_key.offset)) | |
5242 | goto next; | |
5f39d397 | 5243 | |
9cdda8d3 | 5244 | ctx->pos = found_key.offset; |
16cdcec7 | 5245 | is_curr = 1; |
49593bfa | 5246 | |
39279cc3 CM |
5247 | di = btrfs_item_ptr(leaf, slot, struct btrfs_dir_item); |
5248 | di_cur = 0; | |
5f39d397 | 5249 | di_total = btrfs_item_size(leaf, item); |
49593bfa DW |
5250 | |
5251 | while (di_cur < di_total) { | |
5f39d397 CM |
5252 | struct btrfs_key location; |
5253 | ||
22a94d44 JB |
5254 | if (verify_dir_item(root, leaf, di)) |
5255 | break; | |
5256 | ||
5f39d397 | 5257 | name_len = btrfs_dir_name_len(leaf, di); |
49593bfa | 5258 | if (name_len <= sizeof(tmp_name)) { |
5f39d397 CM |
5259 | name_ptr = tmp_name; |
5260 | } else { | |
5261 | name_ptr = kmalloc(name_len, GFP_NOFS); | |
49593bfa DW |
5262 | if (!name_ptr) { |
5263 | ret = -ENOMEM; | |
5264 | goto err; | |
5265 | } | |
5f39d397 CM |
5266 | } |
5267 | read_extent_buffer(leaf, name_ptr, | |
5268 | (unsigned long)(di + 1), name_len); | |
5269 | ||
5270 | d_type = btrfs_filetype_table[btrfs_dir_type(leaf, di)]; | |
5271 | btrfs_dir_item_key_to_cpu(leaf, di, &location); | |
3de4586c | 5272 | |
fede766f | 5273 | |
3de4586c | 5274 | /* is this a reference to our own snapshot? If so |
8c9c2bf7 AJ |
5275 | * skip it. |
5276 | * | |
5277 | * In contrast to old kernels, we insert the snapshot's | |
5278 | * dir item and dir index after it has been created, so | |
5279 | * we won't find a reference to our own snapshot. We | |
5280 | * still keep the following code for backward | |
5281 | * compatibility. | |
3de4586c CM |
5282 | */ |
5283 | if (location.type == BTRFS_ROOT_ITEM_KEY && | |
5284 | location.objectid == root->root_key.objectid) { | |
5285 | over = 0; | |
5286 | goto skip; | |
5287 | } | |
9cdda8d3 AV |
5288 | over = !dir_emit(ctx, name_ptr, name_len, |
5289 | location.objectid, d_type); | |
5f39d397 | 5290 | |
3de4586c | 5291 | skip: |
5f39d397 CM |
5292 | if (name_ptr != tmp_name) |
5293 | kfree(name_ptr); | |
5294 | ||
39279cc3 CM |
5295 | if (over) |
5296 | goto nopos; | |
5103e947 | 5297 | di_len = btrfs_dir_name_len(leaf, di) + |
49593bfa | 5298 | btrfs_dir_data_len(leaf, di) + sizeof(*di); |
39279cc3 CM |
5299 | di_cur += di_len; |
5300 | di = (struct btrfs_dir_item *)((char *)di + di_len); | |
5301 | } | |
b9e03af0 LZ |
5302 | next: |
5303 | path->slots[0]++; | |
39279cc3 | 5304 | } |
49593bfa | 5305 | |
16cdcec7 MX |
5306 | if (key_type == BTRFS_DIR_INDEX_KEY) { |
5307 | if (is_curr) | |
9cdda8d3 AV |
5308 | ctx->pos++; |
5309 | ret = btrfs_readdir_delayed_dir_index(ctx, &ins_list); | |
16cdcec7 MX |
5310 | if (ret) |
5311 | goto nopos; | |
5312 | } | |
5313 | ||
49593bfa | 5314 | /* Reached end of directory/root. Bump pos past the last item. */ |
db62efbb ZB |
5315 | ctx->pos++; |
5316 | ||
5317 | /* | |
5318 | * Stop new entries from being returned after we return the last | |
5319 | * entry. | |
5320 | * | |
5321 | * New directory entries are assigned a strictly increasing | |
5322 | * offset. This means that new entries created during readdir | |
5323 | * are *guaranteed* to be seen in the future by that readdir. | |
5324 | * This has broken buggy programs which operate on names as | |
5325 | * they're returned by readdir. Until we re-use freed offsets | |
5326 | * we have this hack to stop new entries from being returned | |
5327 | * under the assumption that they'll never reach this huge | |
5328 | * offset. | |
5329 | * | |
5330 | * This is being careful not to overflow 32bit loff_t unless the | |
5331 | * last entry requires it because doing so has broken 32bit apps | |
5332 | * in the past. | |
5333 | */ | |
5334 | if (key_type == BTRFS_DIR_INDEX_KEY) { | |
5335 | if (ctx->pos >= INT_MAX) | |
5336 | ctx->pos = LLONG_MAX; | |
5337 | else | |
5338 | ctx->pos = INT_MAX; | |
5339 | } | |
39279cc3 CM |
5340 | nopos: |
5341 | ret = 0; | |
5342 | err: | |
16cdcec7 MX |
5343 | if (key_type == BTRFS_DIR_INDEX_KEY) |
5344 | btrfs_put_delayed_items(&ins_list, &del_list); | |
39279cc3 | 5345 | btrfs_free_path(path); |
39279cc3 CM |
5346 | return ret; |
5347 | } | |
5348 | ||
a9185b41 | 5349 | int btrfs_write_inode(struct inode *inode, struct writeback_control *wbc) |
39279cc3 CM |
5350 | { |
5351 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
5352 | struct btrfs_trans_handle *trans; | |
5353 | int ret = 0; | |
0af3d00b | 5354 | bool nolock = false; |
39279cc3 | 5355 | |
72ac3c0d | 5356 | if (test_bit(BTRFS_INODE_DUMMY, &BTRFS_I(inode)->runtime_flags)) |
4ca8b41e CM |
5357 | return 0; |
5358 | ||
83eea1f1 | 5359 | if (btrfs_fs_closing(root->fs_info) && btrfs_is_free_space_inode(inode)) |
82d5902d | 5360 | nolock = true; |
0af3d00b | 5361 | |
a9185b41 | 5362 | if (wbc->sync_mode == WB_SYNC_ALL) { |
0af3d00b | 5363 | if (nolock) |
7a7eaa40 | 5364 | trans = btrfs_join_transaction_nolock(root); |
0af3d00b | 5365 | else |
7a7eaa40 | 5366 | trans = btrfs_join_transaction(root); |
3612b495 TI |
5367 | if (IS_ERR(trans)) |
5368 | return PTR_ERR(trans); | |
a698d075 | 5369 | ret = btrfs_commit_transaction(trans, root); |
39279cc3 CM |
5370 | } |
5371 | return ret; | |
5372 | } | |
5373 | ||
5374 | /* | |
54aa1f4d | 5375 | * This is somewhat expensive, updating the tree every time the |
39279cc3 CM |
5376 | * inode changes. But, it is most likely to find the inode in cache. |
5377 | * FIXME, needs more benchmarking...there are no reasons other than performance | |
5378 | * to keep or drop this code. | |
5379 | */ | |
48a3b636 | 5380 | static int btrfs_dirty_inode(struct inode *inode) |
39279cc3 CM |
5381 | { |
5382 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
5383 | struct btrfs_trans_handle *trans; | |
8929ecfa YZ |
5384 | int ret; |
5385 | ||
72ac3c0d | 5386 | if (test_bit(BTRFS_INODE_DUMMY, &BTRFS_I(inode)->runtime_flags)) |
22c44fe6 | 5387 | return 0; |
39279cc3 | 5388 | |
7a7eaa40 | 5389 | trans = btrfs_join_transaction(root); |
22c44fe6 JB |
5390 | if (IS_ERR(trans)) |
5391 | return PTR_ERR(trans); | |
8929ecfa YZ |
5392 | |
5393 | ret = btrfs_update_inode(trans, root, inode); | |
94b60442 CM |
5394 | if (ret && ret == -ENOSPC) { |
5395 | /* whoops, lets try again with the full transaction */ | |
5396 | btrfs_end_transaction(trans, root); | |
5397 | trans = btrfs_start_transaction(root, 1); | |
22c44fe6 JB |
5398 | if (IS_ERR(trans)) |
5399 | return PTR_ERR(trans); | |
8929ecfa | 5400 | |
94b60442 | 5401 | ret = btrfs_update_inode(trans, root, inode); |
94b60442 | 5402 | } |
39279cc3 | 5403 | btrfs_end_transaction(trans, root); |
16cdcec7 MX |
5404 | if (BTRFS_I(inode)->delayed_node) |
5405 | btrfs_balance_delayed_items(root); | |
22c44fe6 JB |
5406 | |
5407 | return ret; | |
5408 | } | |
5409 | ||
5410 | /* | |
5411 | * This is a copy of file_update_time. We need this so we can return error on | |
5412 | * ENOSPC for updating the inode in the case of file write and mmap writes. | |
5413 | */ | |
e41f941a JB |
5414 | static int btrfs_update_time(struct inode *inode, struct timespec *now, |
5415 | int flags) | |
22c44fe6 | 5416 | { |
2bc55652 AB |
5417 | struct btrfs_root *root = BTRFS_I(inode)->root; |
5418 | ||
5419 | if (btrfs_root_readonly(root)) | |
5420 | return -EROFS; | |
5421 | ||
e41f941a | 5422 | if (flags & S_VERSION) |
22c44fe6 | 5423 | inode_inc_iversion(inode); |
e41f941a JB |
5424 | if (flags & S_CTIME) |
5425 | inode->i_ctime = *now; | |
5426 | if (flags & S_MTIME) | |
5427 | inode->i_mtime = *now; | |
5428 | if (flags & S_ATIME) | |
5429 | inode->i_atime = *now; | |
5430 | return btrfs_dirty_inode(inode); | |
39279cc3 CM |
5431 | } |
5432 | ||
d352ac68 CM |
5433 | /* |
5434 | * find the highest existing sequence number in a directory | |
5435 | * and then set the in-memory index_cnt variable to reflect | |
5436 | * free sequence numbers | |
5437 | */ | |
aec7477b JB |
5438 | static int btrfs_set_inode_index_count(struct inode *inode) |
5439 | { | |
5440 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
5441 | struct btrfs_key key, found_key; | |
5442 | struct btrfs_path *path; | |
5443 | struct extent_buffer *leaf; | |
5444 | int ret; | |
5445 | ||
33345d01 | 5446 | key.objectid = btrfs_ino(inode); |
aec7477b JB |
5447 | btrfs_set_key_type(&key, BTRFS_DIR_INDEX_KEY); |
5448 | key.offset = (u64)-1; | |
5449 | ||
5450 | path = btrfs_alloc_path(); | |
5451 | if (!path) | |
5452 | return -ENOMEM; | |
5453 | ||
5454 | ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); | |
5455 | if (ret < 0) | |
5456 | goto out; | |
5457 | /* FIXME: we should be able to handle this */ | |
5458 | if (ret == 0) | |
5459 | goto out; | |
5460 | ret = 0; | |
5461 | ||
5462 | /* | |
5463 | * MAGIC NUMBER EXPLANATION: | |
5464 | * since we search a directory based on f_pos we have to start at 2 | |
5465 | * since '.' and '..' have f_pos of 0 and 1 respectively, so everybody | |
5466 | * else has to start at 2 | |
5467 | */ | |
5468 | if (path->slots[0] == 0) { | |
5469 | BTRFS_I(inode)->index_cnt = 2; | |
5470 | goto out; | |
5471 | } | |
5472 | ||
5473 | path->slots[0]--; | |
5474 | ||
5475 | leaf = path->nodes[0]; | |
5476 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); | |
5477 | ||
33345d01 | 5478 | if (found_key.objectid != btrfs_ino(inode) || |
aec7477b JB |
5479 | btrfs_key_type(&found_key) != BTRFS_DIR_INDEX_KEY) { |
5480 | BTRFS_I(inode)->index_cnt = 2; | |
5481 | goto out; | |
5482 | } | |
5483 | ||
5484 | BTRFS_I(inode)->index_cnt = found_key.offset + 1; | |
5485 | out: | |
5486 | btrfs_free_path(path); | |
5487 | return ret; | |
5488 | } | |
5489 | ||
d352ac68 CM |
5490 | /* |
5491 | * helper to find a free sequence number in a given directory. This current | |
5492 | * code is very simple, later versions will do smarter things in the btree | |
5493 | */ | |
3de4586c | 5494 | int btrfs_set_inode_index(struct inode *dir, u64 *index) |
aec7477b JB |
5495 | { |
5496 | int ret = 0; | |
5497 | ||
5498 | if (BTRFS_I(dir)->index_cnt == (u64)-1) { | |
16cdcec7 MX |
5499 | ret = btrfs_inode_delayed_dir_index_count(dir); |
5500 | if (ret) { | |
5501 | ret = btrfs_set_inode_index_count(dir); | |
5502 | if (ret) | |
5503 | return ret; | |
5504 | } | |
aec7477b JB |
5505 | } |
5506 | ||
00e4e6b3 | 5507 | *index = BTRFS_I(dir)->index_cnt; |
aec7477b JB |
5508 | BTRFS_I(dir)->index_cnt++; |
5509 | ||
5510 | return ret; | |
5511 | } | |
5512 | ||
39279cc3 CM |
5513 | static struct inode *btrfs_new_inode(struct btrfs_trans_handle *trans, |
5514 | struct btrfs_root *root, | |
aec7477b | 5515 | struct inode *dir, |
9c58309d | 5516 | const char *name, int name_len, |
175a4eb7 AV |
5517 | u64 ref_objectid, u64 objectid, |
5518 | umode_t mode, u64 *index) | |
39279cc3 CM |
5519 | { |
5520 | struct inode *inode; | |
5f39d397 | 5521 | struct btrfs_inode_item *inode_item; |
39279cc3 | 5522 | struct btrfs_key *location; |
5f39d397 | 5523 | struct btrfs_path *path; |
9c58309d CM |
5524 | struct btrfs_inode_ref *ref; |
5525 | struct btrfs_key key[2]; | |
5526 | u32 sizes[2]; | |
5527 | unsigned long ptr; | |
39279cc3 | 5528 | int ret; |
39279cc3 | 5529 | |
5f39d397 | 5530 | path = btrfs_alloc_path(); |
d8926bb3 MF |
5531 | if (!path) |
5532 | return ERR_PTR(-ENOMEM); | |
5f39d397 | 5533 | |
39279cc3 | 5534 | inode = new_inode(root->fs_info->sb); |
8fb27640 YS |
5535 | if (!inode) { |
5536 | btrfs_free_path(path); | |
39279cc3 | 5537 | return ERR_PTR(-ENOMEM); |
8fb27640 | 5538 | } |
39279cc3 | 5539 | |
581bb050 LZ |
5540 | /* |
5541 | * we have to initialize this early, so we can reclaim the inode | |
5542 | * number if we fail afterwards in this function. | |
5543 | */ | |
5544 | inode->i_ino = objectid; | |
5545 | ||
aec7477b | 5546 | if (dir) { |
1abe9b8a | 5547 | trace_btrfs_inode_request(dir); |
5548 | ||
3de4586c | 5549 | ret = btrfs_set_inode_index(dir, index); |
09771430 | 5550 | if (ret) { |
8fb27640 | 5551 | btrfs_free_path(path); |
09771430 | 5552 | iput(inode); |
aec7477b | 5553 | return ERR_PTR(ret); |
09771430 | 5554 | } |
aec7477b JB |
5555 | } |
5556 | /* | |
5557 | * index_cnt is ignored for everything but a dir, | |
5558 | * btrfs_get_inode_index_count has an explanation for the magic | |
5559 | * number | |
5560 | */ | |
5561 | BTRFS_I(inode)->index_cnt = 2; | |
67de1176 | 5562 | BTRFS_I(inode)->dir_index = *index; |
39279cc3 | 5563 | BTRFS_I(inode)->root = root; |
e02119d5 | 5564 | BTRFS_I(inode)->generation = trans->transid; |
76195853 | 5565 | inode->i_generation = BTRFS_I(inode)->generation; |
b888db2b | 5566 | |
5dc562c5 JB |
5567 | /* |
5568 | * We could have gotten an inode number from somebody who was fsynced | |
5569 | * and then removed in this same transaction, so let's just set full | |
5570 | * sync since it will be a full sync anyway and this will blow away the | |
5571 | * old info in the log. | |
5572 | */ | |
5573 | set_bit(BTRFS_INODE_NEEDS_FULL_SYNC, &BTRFS_I(inode)->runtime_flags); | |
5574 | ||
9c58309d CM |
5575 | key[0].objectid = objectid; |
5576 | btrfs_set_key_type(&key[0], BTRFS_INODE_ITEM_KEY); | |
5577 | key[0].offset = 0; | |
5578 | ||
f186373f MF |
5579 | /* |
5580 | * Start new inodes with an inode_ref. This is slightly more | |
5581 | * efficient for small numbers of hard links since they will | |
5582 | * be packed into one item. Extended refs will kick in if we | |
5583 | * add more hard links than can fit in the ref item. | |
5584 | */ | |
9c58309d CM |
5585 | key[1].objectid = objectid; |
5586 | btrfs_set_key_type(&key[1], BTRFS_INODE_REF_KEY); | |
5587 | key[1].offset = ref_objectid; | |
5588 | ||
5589 | sizes[0] = sizeof(struct btrfs_inode_item); | |
5590 | sizes[1] = name_len + sizeof(*ref); | |
5591 | ||
b9473439 | 5592 | path->leave_spinning = 1; |
9c58309d CM |
5593 | ret = btrfs_insert_empty_items(trans, root, path, key, sizes, 2); |
5594 | if (ret != 0) | |
5f39d397 CM |
5595 | goto fail; |
5596 | ||
ecc11fab | 5597 | inode_init_owner(inode, dir, mode); |
a76a3cd4 | 5598 | inode_set_bytes(inode, 0); |
39279cc3 | 5599 | inode->i_mtime = inode->i_atime = inode->i_ctime = CURRENT_TIME; |
5f39d397 CM |
5600 | inode_item = btrfs_item_ptr(path->nodes[0], path->slots[0], |
5601 | struct btrfs_inode_item); | |
293f7e07 LZ |
5602 | memset_extent_buffer(path->nodes[0], 0, (unsigned long)inode_item, |
5603 | sizeof(*inode_item)); | |
e02119d5 | 5604 | fill_inode_item(trans, path->nodes[0], inode_item, inode); |
9c58309d CM |
5605 | |
5606 | ref = btrfs_item_ptr(path->nodes[0], path->slots[0] + 1, | |
5607 | struct btrfs_inode_ref); | |
5608 | btrfs_set_inode_ref_name_len(path->nodes[0], ref, name_len); | |
00e4e6b3 | 5609 | btrfs_set_inode_ref_index(path->nodes[0], ref, *index); |
9c58309d CM |
5610 | ptr = (unsigned long)(ref + 1); |
5611 | write_extent_buffer(path->nodes[0], name, ptr, name_len); | |
5612 | ||
5f39d397 CM |
5613 | btrfs_mark_buffer_dirty(path->nodes[0]); |
5614 | btrfs_free_path(path); | |
5615 | ||
39279cc3 CM |
5616 | location = &BTRFS_I(inode)->location; |
5617 | location->objectid = objectid; | |
39279cc3 CM |
5618 | location->offset = 0; |
5619 | btrfs_set_key_type(location, BTRFS_INODE_ITEM_KEY); | |
5620 | ||
6cbff00f CH |
5621 | btrfs_inherit_iflags(inode, dir); |
5622 | ||
569254b0 | 5623 | if (S_ISREG(mode)) { |
94272164 CM |
5624 | if (btrfs_test_opt(root, NODATASUM)) |
5625 | BTRFS_I(inode)->flags |= BTRFS_INODE_NODATASUM; | |
213490b3 | 5626 | if (btrfs_test_opt(root, NODATACOW)) |
f2bdf9a8 JB |
5627 | BTRFS_I(inode)->flags |= BTRFS_INODE_NODATACOW | |
5628 | BTRFS_INODE_NODATASUM; | |
94272164 CM |
5629 | } |
5630 | ||
778ba82b | 5631 | btrfs_insert_inode_hash(inode); |
5d4f98a2 | 5632 | inode_tree_add(inode); |
1abe9b8a | 5633 | |
5634 | trace_btrfs_inode_new(inode); | |
1973f0fa | 5635 | btrfs_set_inode_last_trans(trans, inode); |
1abe9b8a | 5636 | |
8ea05e3a AB |
5637 | btrfs_update_root_times(trans, root); |
5638 | ||
63541927 FDBM |
5639 | ret = btrfs_inode_inherit_props(trans, inode, dir); |
5640 | if (ret) | |
5641 | btrfs_err(root->fs_info, | |
5642 | "error inheriting props for ino %llu (root %llu): %d", | |
5643 | btrfs_ino(inode), root->root_key.objectid, ret); | |
5644 | ||
39279cc3 | 5645 | return inode; |
5f39d397 | 5646 | fail: |
aec7477b JB |
5647 | if (dir) |
5648 | BTRFS_I(dir)->index_cnt--; | |
5f39d397 | 5649 | btrfs_free_path(path); |
09771430 | 5650 | iput(inode); |
5f39d397 | 5651 | return ERR_PTR(ret); |
39279cc3 CM |
5652 | } |
5653 | ||
5654 | static inline u8 btrfs_inode_type(struct inode *inode) | |
5655 | { | |
5656 | return btrfs_type_by_mode[(inode->i_mode & S_IFMT) >> S_SHIFT]; | |
5657 | } | |
5658 | ||
d352ac68 CM |
5659 | /* |
5660 | * utility function to add 'inode' into 'parent_inode' with | |
5661 | * a give name and a given sequence number. | |
5662 | * if 'add_backref' is true, also insert a backref from the | |
5663 | * inode to the parent directory. | |
5664 | */ | |
e02119d5 CM |
5665 | int btrfs_add_link(struct btrfs_trans_handle *trans, |
5666 | struct inode *parent_inode, struct inode *inode, | |
5667 | const char *name, int name_len, int add_backref, u64 index) | |
39279cc3 | 5668 | { |
4df27c4d | 5669 | int ret = 0; |
39279cc3 | 5670 | struct btrfs_key key; |
e02119d5 | 5671 | struct btrfs_root *root = BTRFS_I(parent_inode)->root; |
33345d01 LZ |
5672 | u64 ino = btrfs_ino(inode); |
5673 | u64 parent_ino = btrfs_ino(parent_inode); | |
5f39d397 | 5674 | |
33345d01 | 5675 | if (unlikely(ino == BTRFS_FIRST_FREE_OBJECTID)) { |
4df27c4d YZ |
5676 | memcpy(&key, &BTRFS_I(inode)->root->root_key, sizeof(key)); |
5677 | } else { | |
33345d01 | 5678 | key.objectid = ino; |
4df27c4d YZ |
5679 | btrfs_set_key_type(&key, BTRFS_INODE_ITEM_KEY); |
5680 | key.offset = 0; | |
5681 | } | |
5682 | ||
33345d01 | 5683 | if (unlikely(ino == BTRFS_FIRST_FREE_OBJECTID)) { |
4df27c4d YZ |
5684 | ret = btrfs_add_root_ref(trans, root->fs_info->tree_root, |
5685 | key.objectid, root->root_key.objectid, | |
33345d01 | 5686 | parent_ino, index, name, name_len); |
4df27c4d | 5687 | } else if (add_backref) { |
33345d01 LZ |
5688 | ret = btrfs_insert_inode_ref(trans, root, name, name_len, ino, |
5689 | parent_ino, index); | |
4df27c4d | 5690 | } |
39279cc3 | 5691 | |
79787eaa JM |
5692 | /* Nothing to clean up yet */ |
5693 | if (ret) | |
5694 | return ret; | |
4df27c4d | 5695 | |
79787eaa JM |
5696 | ret = btrfs_insert_dir_item(trans, root, name, name_len, |
5697 | parent_inode, &key, | |
5698 | btrfs_inode_type(inode), index); | |
9c52057c | 5699 | if (ret == -EEXIST || ret == -EOVERFLOW) |
79787eaa JM |
5700 | goto fail_dir_item; |
5701 | else if (ret) { | |
5702 | btrfs_abort_transaction(trans, root, ret); | |
5703 | return ret; | |
39279cc3 | 5704 | } |
79787eaa JM |
5705 | |
5706 | btrfs_i_size_write(parent_inode, parent_inode->i_size + | |
5707 | name_len * 2); | |
0c4d2d95 | 5708 | inode_inc_iversion(parent_inode); |
79787eaa JM |
5709 | parent_inode->i_mtime = parent_inode->i_ctime = CURRENT_TIME; |
5710 | ret = btrfs_update_inode(trans, root, parent_inode); | |
5711 | if (ret) | |
5712 | btrfs_abort_transaction(trans, root, ret); | |
39279cc3 | 5713 | return ret; |
fe66a05a CM |
5714 | |
5715 | fail_dir_item: | |
5716 | if (unlikely(ino == BTRFS_FIRST_FREE_OBJECTID)) { | |
5717 | u64 local_index; | |
5718 | int err; | |
5719 | err = btrfs_del_root_ref(trans, root->fs_info->tree_root, | |
5720 | key.objectid, root->root_key.objectid, | |
5721 | parent_ino, &local_index, name, name_len); | |
5722 | ||
5723 | } else if (add_backref) { | |
5724 | u64 local_index; | |
5725 | int err; | |
5726 | ||
5727 | err = btrfs_del_inode_ref(trans, root, name, name_len, | |
5728 | ino, parent_ino, &local_index); | |
5729 | } | |
5730 | return ret; | |
39279cc3 CM |
5731 | } |
5732 | ||
5733 | static int btrfs_add_nondir(struct btrfs_trans_handle *trans, | |
a1b075d2 JB |
5734 | struct inode *dir, struct dentry *dentry, |
5735 | struct inode *inode, int backref, u64 index) | |
39279cc3 | 5736 | { |
a1b075d2 JB |
5737 | int err = btrfs_add_link(trans, dir, inode, |
5738 | dentry->d_name.name, dentry->d_name.len, | |
5739 | backref, index); | |
39279cc3 CM |
5740 | if (err > 0) |
5741 | err = -EEXIST; | |
5742 | return err; | |
5743 | } | |
5744 | ||
618e21d5 | 5745 | static int btrfs_mknod(struct inode *dir, struct dentry *dentry, |
1a67aafb | 5746 | umode_t mode, dev_t rdev) |
618e21d5 JB |
5747 | { |
5748 | struct btrfs_trans_handle *trans; | |
5749 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
1832a6d5 | 5750 | struct inode *inode = NULL; |
618e21d5 JB |
5751 | int err; |
5752 | int drop_inode = 0; | |
5753 | u64 objectid; | |
00e4e6b3 | 5754 | u64 index = 0; |
618e21d5 JB |
5755 | |
5756 | if (!new_valid_dev(rdev)) | |
5757 | return -EINVAL; | |
5758 | ||
9ed74f2d JB |
5759 | /* |
5760 | * 2 for inode item and ref | |
5761 | * 2 for dir items | |
5762 | * 1 for xattr if selinux is on | |
5763 | */ | |
a22285a6 YZ |
5764 | trans = btrfs_start_transaction(root, 5); |
5765 | if (IS_ERR(trans)) | |
5766 | return PTR_ERR(trans); | |
1832a6d5 | 5767 | |
581bb050 LZ |
5768 | err = btrfs_find_free_ino(root, &objectid); |
5769 | if (err) | |
5770 | goto out_unlock; | |
5771 | ||
aec7477b | 5772 | inode = btrfs_new_inode(trans, root, dir, dentry->d_name.name, |
33345d01 | 5773 | dentry->d_name.len, btrfs_ino(dir), objectid, |
d82a6f1d | 5774 | mode, &index); |
7cf96da3 TI |
5775 | if (IS_ERR(inode)) { |
5776 | err = PTR_ERR(inode); | |
618e21d5 | 5777 | goto out_unlock; |
7cf96da3 | 5778 | } |
618e21d5 | 5779 | |
2a7dba39 | 5780 | err = btrfs_init_inode_security(trans, inode, dir, &dentry->d_name); |
33268eaf JB |
5781 | if (err) { |
5782 | drop_inode = 1; | |
5783 | goto out_unlock; | |
5784 | } | |
5785 | ||
ad19db71 CS |
5786 | /* |
5787 | * If the active LSM wants to access the inode during | |
5788 | * d_instantiate it needs these. Smack checks to see | |
5789 | * if the filesystem supports xattrs by looking at the | |
5790 | * ops vector. | |
5791 | */ | |
5792 | ||
5793 | inode->i_op = &btrfs_special_inode_operations; | |
a1b075d2 | 5794 | err = btrfs_add_nondir(trans, dir, dentry, inode, 0, index); |
618e21d5 JB |
5795 | if (err) |
5796 | drop_inode = 1; | |
5797 | else { | |
618e21d5 | 5798 | init_special_inode(inode, inode->i_mode, rdev); |
1b4ab1bb | 5799 | btrfs_update_inode(trans, root, inode); |
08c422c2 | 5800 | d_instantiate(dentry, inode); |
618e21d5 | 5801 | } |
618e21d5 | 5802 | out_unlock: |
7ad85bb7 | 5803 | btrfs_end_transaction(trans, root); |
c581afc8 | 5804 | btrfs_balance_delayed_items(root); |
b53d3f5d | 5805 | btrfs_btree_balance_dirty(root); |
618e21d5 JB |
5806 | if (drop_inode) { |
5807 | inode_dec_link_count(inode); | |
5808 | iput(inode); | |
5809 | } | |
618e21d5 JB |
5810 | return err; |
5811 | } | |
5812 | ||
39279cc3 | 5813 | static int btrfs_create(struct inode *dir, struct dentry *dentry, |
ebfc3b49 | 5814 | umode_t mode, bool excl) |
39279cc3 CM |
5815 | { |
5816 | struct btrfs_trans_handle *trans; | |
5817 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
1832a6d5 | 5818 | struct inode *inode = NULL; |
43baa579 | 5819 | int drop_inode_on_err = 0; |
a22285a6 | 5820 | int err; |
39279cc3 | 5821 | u64 objectid; |
00e4e6b3 | 5822 | u64 index = 0; |
39279cc3 | 5823 | |
9ed74f2d JB |
5824 | /* |
5825 | * 2 for inode item and ref | |
5826 | * 2 for dir items | |
5827 | * 1 for xattr if selinux is on | |
5828 | */ | |
a22285a6 YZ |
5829 | trans = btrfs_start_transaction(root, 5); |
5830 | if (IS_ERR(trans)) | |
5831 | return PTR_ERR(trans); | |
9ed74f2d | 5832 | |
581bb050 LZ |
5833 | err = btrfs_find_free_ino(root, &objectid); |
5834 | if (err) | |
5835 | goto out_unlock; | |
5836 | ||
aec7477b | 5837 | inode = btrfs_new_inode(trans, root, dir, dentry->d_name.name, |
33345d01 | 5838 | dentry->d_name.len, btrfs_ino(dir), objectid, |
d82a6f1d | 5839 | mode, &index); |
7cf96da3 TI |
5840 | if (IS_ERR(inode)) { |
5841 | err = PTR_ERR(inode); | |
39279cc3 | 5842 | goto out_unlock; |
7cf96da3 | 5843 | } |
43baa579 | 5844 | drop_inode_on_err = 1; |
39279cc3 | 5845 | |
2a7dba39 | 5846 | err = btrfs_init_inode_security(trans, inode, dir, &dentry->d_name); |
43baa579 | 5847 | if (err) |
33268eaf | 5848 | goto out_unlock; |
33268eaf | 5849 | |
9185aa58 FB |
5850 | err = btrfs_update_inode(trans, root, inode); |
5851 | if (err) | |
5852 | goto out_unlock; | |
5853 | ||
ad19db71 CS |
5854 | /* |
5855 | * If the active LSM wants to access the inode during | |
5856 | * d_instantiate it needs these. Smack checks to see | |
5857 | * if the filesystem supports xattrs by looking at the | |
5858 | * ops vector. | |
5859 | */ | |
5860 | inode->i_fop = &btrfs_file_operations; | |
5861 | inode->i_op = &btrfs_file_inode_operations; | |
5862 | ||
a1b075d2 | 5863 | err = btrfs_add_nondir(trans, dir, dentry, inode, 0, index); |
39279cc3 | 5864 | if (err) |
43baa579 FB |
5865 | goto out_unlock; |
5866 | ||
5867 | inode->i_mapping->a_ops = &btrfs_aops; | |
5868 | inode->i_mapping->backing_dev_info = &root->fs_info->bdi; | |
5869 | BTRFS_I(inode)->io_tree.ops = &btrfs_extent_io_ops; | |
5870 | d_instantiate(dentry, inode); | |
5871 | ||
39279cc3 | 5872 | out_unlock: |
7ad85bb7 | 5873 | btrfs_end_transaction(trans, root); |
43baa579 | 5874 | if (err && drop_inode_on_err) { |
39279cc3 CM |
5875 | inode_dec_link_count(inode); |
5876 | iput(inode); | |
5877 | } | |
c581afc8 | 5878 | btrfs_balance_delayed_items(root); |
b53d3f5d | 5879 | btrfs_btree_balance_dirty(root); |
39279cc3 CM |
5880 | return err; |
5881 | } | |
5882 | ||
5883 | static int btrfs_link(struct dentry *old_dentry, struct inode *dir, | |
5884 | struct dentry *dentry) | |
5885 | { | |
5886 | struct btrfs_trans_handle *trans; | |
5887 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
5888 | struct inode *inode = old_dentry->d_inode; | |
00e4e6b3 | 5889 | u64 index; |
39279cc3 CM |
5890 | int err; |
5891 | int drop_inode = 0; | |
5892 | ||
4a8be425 TH |
5893 | /* do not allow sys_link's with other subvols of the same device */ |
5894 | if (root->objectid != BTRFS_I(inode)->root->objectid) | |
3ab3564f | 5895 | return -EXDEV; |
4a8be425 | 5896 | |
f186373f | 5897 | if (inode->i_nlink >= BTRFS_LINK_MAX) |
c055e99e | 5898 | return -EMLINK; |
4a8be425 | 5899 | |
3de4586c | 5900 | err = btrfs_set_inode_index(dir, &index); |
aec7477b JB |
5901 | if (err) |
5902 | goto fail; | |
5903 | ||
a22285a6 | 5904 | /* |
7e6b6465 | 5905 | * 2 items for inode and inode ref |
a22285a6 | 5906 | * 2 items for dir items |
7e6b6465 | 5907 | * 1 item for parent inode |
a22285a6 | 5908 | */ |
7e6b6465 | 5909 | trans = btrfs_start_transaction(root, 5); |
a22285a6 YZ |
5910 | if (IS_ERR(trans)) { |
5911 | err = PTR_ERR(trans); | |
5912 | goto fail; | |
5913 | } | |
5f39d397 | 5914 | |
67de1176 MX |
5915 | /* There are several dir indexes for this inode, clear the cache. */ |
5916 | BTRFS_I(inode)->dir_index = 0ULL; | |
8b558c5f | 5917 | inc_nlink(inode); |
0c4d2d95 | 5918 | inode_inc_iversion(inode); |
3153495d | 5919 | inode->i_ctime = CURRENT_TIME; |
7de9c6ee | 5920 | ihold(inode); |
e9976151 | 5921 | set_bit(BTRFS_INODE_COPY_EVERYTHING, &BTRFS_I(inode)->runtime_flags); |
aec7477b | 5922 | |
a1b075d2 | 5923 | err = btrfs_add_nondir(trans, dir, dentry, inode, 1, index); |
5f39d397 | 5924 | |
a5719521 | 5925 | if (err) { |
54aa1f4d | 5926 | drop_inode = 1; |
a5719521 | 5927 | } else { |
10d9f309 | 5928 | struct dentry *parent = dentry->d_parent; |
a5719521 | 5929 | err = btrfs_update_inode(trans, root, inode); |
79787eaa JM |
5930 | if (err) |
5931 | goto fail; | |
08c422c2 | 5932 | d_instantiate(dentry, inode); |
6a912213 | 5933 | btrfs_log_new_name(trans, inode, NULL, parent); |
a5719521 | 5934 | } |
39279cc3 | 5935 | |
7ad85bb7 | 5936 | btrfs_end_transaction(trans, root); |
c581afc8 | 5937 | btrfs_balance_delayed_items(root); |
1832a6d5 | 5938 | fail: |
39279cc3 CM |
5939 | if (drop_inode) { |
5940 | inode_dec_link_count(inode); | |
5941 | iput(inode); | |
5942 | } | |
b53d3f5d | 5943 | btrfs_btree_balance_dirty(root); |
39279cc3 CM |
5944 | return err; |
5945 | } | |
5946 | ||
18bb1db3 | 5947 | static int btrfs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode) |
39279cc3 | 5948 | { |
b9d86667 | 5949 | struct inode *inode = NULL; |
39279cc3 CM |
5950 | struct btrfs_trans_handle *trans; |
5951 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
5952 | int err = 0; | |
5953 | int drop_on_err = 0; | |
b9d86667 | 5954 | u64 objectid = 0; |
00e4e6b3 | 5955 | u64 index = 0; |
39279cc3 | 5956 | |
9ed74f2d JB |
5957 | /* |
5958 | * 2 items for inode and ref | |
5959 | * 2 items for dir items | |
5960 | * 1 for xattr if selinux is on | |
5961 | */ | |
a22285a6 YZ |
5962 | trans = btrfs_start_transaction(root, 5); |
5963 | if (IS_ERR(trans)) | |
5964 | return PTR_ERR(trans); | |
39279cc3 | 5965 | |
581bb050 LZ |
5966 | err = btrfs_find_free_ino(root, &objectid); |
5967 | if (err) | |
5968 | goto out_fail; | |
5969 | ||
aec7477b | 5970 | inode = btrfs_new_inode(trans, root, dir, dentry->d_name.name, |
33345d01 | 5971 | dentry->d_name.len, btrfs_ino(dir), objectid, |
d82a6f1d | 5972 | S_IFDIR | mode, &index); |
39279cc3 CM |
5973 | if (IS_ERR(inode)) { |
5974 | err = PTR_ERR(inode); | |
5975 | goto out_fail; | |
5976 | } | |
5f39d397 | 5977 | |
39279cc3 | 5978 | drop_on_err = 1; |
33268eaf | 5979 | |
2a7dba39 | 5980 | err = btrfs_init_inode_security(trans, inode, dir, &dentry->d_name); |
33268eaf JB |
5981 | if (err) |
5982 | goto out_fail; | |
5983 | ||
39279cc3 CM |
5984 | inode->i_op = &btrfs_dir_inode_operations; |
5985 | inode->i_fop = &btrfs_dir_file_operations; | |
39279cc3 | 5986 | |
dbe674a9 | 5987 | btrfs_i_size_write(inode, 0); |
39279cc3 CM |
5988 | err = btrfs_update_inode(trans, root, inode); |
5989 | if (err) | |
5990 | goto out_fail; | |
5f39d397 | 5991 | |
a1b075d2 JB |
5992 | err = btrfs_add_link(trans, dir, inode, dentry->d_name.name, |
5993 | dentry->d_name.len, 0, index); | |
39279cc3 CM |
5994 | if (err) |
5995 | goto out_fail; | |
5f39d397 | 5996 | |
39279cc3 CM |
5997 | d_instantiate(dentry, inode); |
5998 | drop_on_err = 0; | |
39279cc3 CM |
5999 | |
6000 | out_fail: | |
7ad85bb7 | 6001 | btrfs_end_transaction(trans, root); |
39279cc3 CM |
6002 | if (drop_on_err) |
6003 | iput(inode); | |
c581afc8 | 6004 | btrfs_balance_delayed_items(root); |
b53d3f5d | 6005 | btrfs_btree_balance_dirty(root); |
39279cc3 CM |
6006 | return err; |
6007 | } | |
6008 | ||
d352ac68 CM |
6009 | /* helper for btfs_get_extent. Given an existing extent in the tree, |
6010 | * and an extent that you want to insert, deal with overlap and insert | |
6011 | * the new extent into the tree. | |
6012 | */ | |
3b951516 CM |
6013 | static int merge_extent_mapping(struct extent_map_tree *em_tree, |
6014 | struct extent_map *existing, | |
e6dcd2dc CM |
6015 | struct extent_map *em, |
6016 | u64 map_start, u64 map_len) | |
3b951516 CM |
6017 | { |
6018 | u64 start_diff; | |
3b951516 | 6019 | |
e6dcd2dc CM |
6020 | BUG_ON(map_start < em->start || map_start >= extent_map_end(em)); |
6021 | start_diff = map_start - em->start; | |
6022 | em->start = map_start; | |
6023 | em->len = map_len; | |
c8b97818 CM |
6024 | if (em->block_start < EXTENT_MAP_LAST_BYTE && |
6025 | !test_bit(EXTENT_FLAG_COMPRESSED, &em->flags)) { | |
e6dcd2dc | 6026 | em->block_start += start_diff; |
c8b97818 CM |
6027 | em->block_len -= start_diff; |
6028 | } | |
09a2a8f9 | 6029 | return add_extent_mapping(em_tree, em, 0); |
3b951516 CM |
6030 | } |
6031 | ||
c8b97818 CM |
6032 | static noinline int uncompress_inline(struct btrfs_path *path, |
6033 | struct inode *inode, struct page *page, | |
6034 | size_t pg_offset, u64 extent_offset, | |
6035 | struct btrfs_file_extent_item *item) | |
6036 | { | |
6037 | int ret; | |
6038 | struct extent_buffer *leaf = path->nodes[0]; | |
6039 | char *tmp; | |
6040 | size_t max_size; | |
6041 | unsigned long inline_size; | |
6042 | unsigned long ptr; | |
261507a0 | 6043 | int compress_type; |
c8b97818 CM |
6044 | |
6045 | WARN_ON(pg_offset != 0); | |
261507a0 | 6046 | compress_type = btrfs_file_extent_compression(leaf, item); |
c8b97818 CM |
6047 | max_size = btrfs_file_extent_ram_bytes(leaf, item); |
6048 | inline_size = btrfs_file_extent_inline_item_len(leaf, | |
dd3cc16b | 6049 | btrfs_item_nr(path->slots[0])); |
c8b97818 | 6050 | tmp = kmalloc(inline_size, GFP_NOFS); |
8d413713 TI |
6051 | if (!tmp) |
6052 | return -ENOMEM; | |
c8b97818 CM |
6053 | ptr = btrfs_file_extent_inline_start(item); |
6054 | ||
6055 | read_extent_buffer(leaf, tmp, ptr, inline_size); | |
6056 | ||
5b050f04 | 6057 | max_size = min_t(unsigned long, PAGE_CACHE_SIZE, max_size); |
261507a0 LZ |
6058 | ret = btrfs_decompress(compress_type, tmp, page, |
6059 | extent_offset, inline_size, max_size); | |
c8b97818 | 6060 | if (ret) { |
7ac687d9 | 6061 | char *kaddr = kmap_atomic(page); |
c8b97818 CM |
6062 | unsigned long copy_size = min_t(u64, |
6063 | PAGE_CACHE_SIZE - pg_offset, | |
6064 | max_size - extent_offset); | |
6065 | memset(kaddr + pg_offset, 0, copy_size); | |
7ac687d9 | 6066 | kunmap_atomic(kaddr); |
c8b97818 CM |
6067 | } |
6068 | kfree(tmp); | |
6069 | return 0; | |
6070 | } | |
6071 | ||
d352ac68 CM |
6072 | /* |
6073 | * a bit scary, this does extent mapping from logical file offset to the disk. | |
d397712b CM |
6074 | * the ugly parts come from merging extents from the disk with the in-ram |
6075 | * representation. This gets more complex because of the data=ordered code, | |
d352ac68 CM |
6076 | * where the in-ram extents might be locked pending data=ordered completion. |
6077 | * | |
6078 | * This also copies inline extents directly into the page. | |
6079 | */ | |
d397712b | 6080 | |
a52d9a80 | 6081 | struct extent_map *btrfs_get_extent(struct inode *inode, struct page *page, |
70dec807 | 6082 | size_t pg_offset, u64 start, u64 len, |
a52d9a80 CM |
6083 | int create) |
6084 | { | |
6085 | int ret; | |
6086 | int err = 0; | |
db94535d | 6087 | u64 bytenr; |
a52d9a80 CM |
6088 | u64 extent_start = 0; |
6089 | u64 extent_end = 0; | |
33345d01 | 6090 | u64 objectid = btrfs_ino(inode); |
a52d9a80 | 6091 | u32 found_type; |
f421950f | 6092 | struct btrfs_path *path = NULL; |
a52d9a80 CM |
6093 | struct btrfs_root *root = BTRFS_I(inode)->root; |
6094 | struct btrfs_file_extent_item *item; | |
5f39d397 CM |
6095 | struct extent_buffer *leaf; |
6096 | struct btrfs_key found_key; | |
a52d9a80 CM |
6097 | struct extent_map *em = NULL; |
6098 | struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree; | |
d1310b2e | 6099 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; |
a52d9a80 | 6100 | struct btrfs_trans_handle *trans = NULL; |
261507a0 | 6101 | int compress_type; |
a52d9a80 | 6102 | |
a52d9a80 | 6103 | again: |
890871be | 6104 | read_lock(&em_tree->lock); |
d1310b2e | 6105 | em = lookup_extent_mapping(em_tree, start, len); |
a061fc8d CM |
6106 | if (em) |
6107 | em->bdev = root->fs_info->fs_devices->latest_bdev; | |
890871be | 6108 | read_unlock(&em_tree->lock); |
d1310b2e | 6109 | |
a52d9a80 | 6110 | if (em) { |
e1c4b745 CM |
6111 | if (em->start > start || em->start + em->len <= start) |
6112 | free_extent_map(em); | |
6113 | else if (em->block_start == EXTENT_MAP_INLINE && page) | |
70dec807 CM |
6114 | free_extent_map(em); |
6115 | else | |
6116 | goto out; | |
a52d9a80 | 6117 | } |
172ddd60 | 6118 | em = alloc_extent_map(); |
a52d9a80 | 6119 | if (!em) { |
d1310b2e CM |
6120 | err = -ENOMEM; |
6121 | goto out; | |
a52d9a80 | 6122 | } |
e6dcd2dc | 6123 | em->bdev = root->fs_info->fs_devices->latest_bdev; |
d1310b2e | 6124 | em->start = EXTENT_MAP_HOLE; |
445a6944 | 6125 | em->orig_start = EXTENT_MAP_HOLE; |
d1310b2e | 6126 | em->len = (u64)-1; |
c8b97818 | 6127 | em->block_len = (u64)-1; |
f421950f CM |
6128 | |
6129 | if (!path) { | |
6130 | path = btrfs_alloc_path(); | |
026fd317 JB |
6131 | if (!path) { |
6132 | err = -ENOMEM; | |
6133 | goto out; | |
6134 | } | |
6135 | /* | |
6136 | * Chances are we'll be called again, so go ahead and do | |
6137 | * readahead | |
6138 | */ | |
6139 | path->reada = 1; | |
f421950f CM |
6140 | } |
6141 | ||
179e29e4 CM |
6142 | ret = btrfs_lookup_file_extent(trans, root, path, |
6143 | objectid, start, trans != NULL); | |
a52d9a80 CM |
6144 | if (ret < 0) { |
6145 | err = ret; | |
6146 | goto out; | |
6147 | } | |
6148 | ||
6149 | if (ret != 0) { | |
6150 | if (path->slots[0] == 0) | |
6151 | goto not_found; | |
6152 | path->slots[0]--; | |
6153 | } | |
6154 | ||
5f39d397 CM |
6155 | leaf = path->nodes[0]; |
6156 | item = btrfs_item_ptr(leaf, path->slots[0], | |
a52d9a80 | 6157 | struct btrfs_file_extent_item); |
a52d9a80 | 6158 | /* are we inside the extent that was found? */ |
5f39d397 CM |
6159 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); |
6160 | found_type = btrfs_key_type(&found_key); | |
6161 | if (found_key.objectid != objectid || | |
a52d9a80 | 6162 | found_type != BTRFS_EXTENT_DATA_KEY) { |
25a50341 JB |
6163 | /* |
6164 | * If we backup past the first extent we want to move forward | |
6165 | * and see if there is an extent in front of us, otherwise we'll | |
6166 | * say there is a hole for our whole search range which can | |
6167 | * cause problems. | |
6168 | */ | |
6169 | extent_end = start; | |
6170 | goto next; | |
a52d9a80 CM |
6171 | } |
6172 | ||
5f39d397 CM |
6173 | found_type = btrfs_file_extent_type(leaf, item); |
6174 | extent_start = found_key.offset; | |
261507a0 | 6175 | compress_type = btrfs_file_extent_compression(leaf, item); |
d899e052 YZ |
6176 | if (found_type == BTRFS_FILE_EXTENT_REG || |
6177 | found_type == BTRFS_FILE_EXTENT_PREALLOC) { | |
a52d9a80 | 6178 | extent_end = extent_start + |
db94535d | 6179 | btrfs_file_extent_num_bytes(leaf, item); |
9036c102 YZ |
6180 | } else if (found_type == BTRFS_FILE_EXTENT_INLINE) { |
6181 | size_t size; | |
514ac8ad | 6182 | size = btrfs_file_extent_inline_len(leaf, path->slots[0], item); |
fda2832f | 6183 | extent_end = ALIGN(extent_start + size, root->sectorsize); |
9036c102 | 6184 | } |
25a50341 | 6185 | next: |
9036c102 YZ |
6186 | if (start >= extent_end) { |
6187 | path->slots[0]++; | |
6188 | if (path->slots[0] >= btrfs_header_nritems(leaf)) { | |
6189 | ret = btrfs_next_leaf(root, path); | |
6190 | if (ret < 0) { | |
6191 | err = ret; | |
6192 | goto out; | |
a52d9a80 | 6193 | } |
9036c102 YZ |
6194 | if (ret > 0) |
6195 | goto not_found; | |
6196 | leaf = path->nodes[0]; | |
a52d9a80 | 6197 | } |
9036c102 YZ |
6198 | btrfs_item_key_to_cpu(leaf, &found_key, path->slots[0]); |
6199 | if (found_key.objectid != objectid || | |
6200 | found_key.type != BTRFS_EXTENT_DATA_KEY) | |
6201 | goto not_found; | |
6202 | if (start + len <= found_key.offset) | |
6203 | goto not_found; | |
6204 | em->start = start; | |
70c8a91c | 6205 | em->orig_start = start; |
9036c102 YZ |
6206 | em->len = found_key.offset - start; |
6207 | goto not_found_em; | |
6208 | } | |
6209 | ||
cc95bef6 | 6210 | em->ram_bytes = btrfs_file_extent_ram_bytes(leaf, item); |
d899e052 YZ |
6211 | if (found_type == BTRFS_FILE_EXTENT_REG || |
6212 | found_type == BTRFS_FILE_EXTENT_PREALLOC) { | |
9036c102 YZ |
6213 | em->start = extent_start; |
6214 | em->len = extent_end - extent_start; | |
ff5b7ee3 YZ |
6215 | em->orig_start = extent_start - |
6216 | btrfs_file_extent_offset(leaf, item); | |
b4939680 JB |
6217 | em->orig_block_len = btrfs_file_extent_disk_num_bytes(leaf, |
6218 | item); | |
db94535d CM |
6219 | bytenr = btrfs_file_extent_disk_bytenr(leaf, item); |
6220 | if (bytenr == 0) { | |
5f39d397 | 6221 | em->block_start = EXTENT_MAP_HOLE; |
a52d9a80 CM |
6222 | goto insert; |
6223 | } | |
261507a0 | 6224 | if (compress_type != BTRFS_COMPRESS_NONE) { |
c8b97818 | 6225 | set_bit(EXTENT_FLAG_COMPRESSED, &em->flags); |
261507a0 | 6226 | em->compress_type = compress_type; |
c8b97818 | 6227 | em->block_start = bytenr; |
b4939680 | 6228 | em->block_len = em->orig_block_len; |
c8b97818 CM |
6229 | } else { |
6230 | bytenr += btrfs_file_extent_offset(leaf, item); | |
6231 | em->block_start = bytenr; | |
6232 | em->block_len = em->len; | |
d899e052 YZ |
6233 | if (found_type == BTRFS_FILE_EXTENT_PREALLOC) |
6234 | set_bit(EXTENT_FLAG_PREALLOC, &em->flags); | |
c8b97818 | 6235 | } |
a52d9a80 CM |
6236 | goto insert; |
6237 | } else if (found_type == BTRFS_FILE_EXTENT_INLINE) { | |
5f39d397 | 6238 | unsigned long ptr; |
a52d9a80 | 6239 | char *map; |
3326d1b0 CM |
6240 | size_t size; |
6241 | size_t extent_offset; | |
6242 | size_t copy_size; | |
a52d9a80 | 6243 | |
689f9346 | 6244 | em->block_start = EXTENT_MAP_INLINE; |
c8b97818 | 6245 | if (!page || create) { |
689f9346 | 6246 | em->start = extent_start; |
9036c102 | 6247 | em->len = extent_end - extent_start; |
689f9346 Y |
6248 | goto out; |
6249 | } | |
5f39d397 | 6250 | |
514ac8ad | 6251 | size = btrfs_file_extent_inline_len(leaf, path->slots[0], item); |
9036c102 | 6252 | extent_offset = page_offset(page) + pg_offset - extent_start; |
70dec807 | 6253 | copy_size = min_t(u64, PAGE_CACHE_SIZE - pg_offset, |
3326d1b0 | 6254 | size - extent_offset); |
3326d1b0 | 6255 | em->start = extent_start + extent_offset; |
fda2832f | 6256 | em->len = ALIGN(copy_size, root->sectorsize); |
b4939680 | 6257 | em->orig_block_len = em->len; |
70c8a91c | 6258 | em->orig_start = em->start; |
261507a0 | 6259 | if (compress_type) { |
c8b97818 | 6260 | set_bit(EXTENT_FLAG_COMPRESSED, &em->flags); |
261507a0 LZ |
6261 | em->compress_type = compress_type; |
6262 | } | |
689f9346 | 6263 | ptr = btrfs_file_extent_inline_start(item) + extent_offset; |
179e29e4 | 6264 | if (create == 0 && !PageUptodate(page)) { |
261507a0 LZ |
6265 | if (btrfs_file_extent_compression(leaf, item) != |
6266 | BTRFS_COMPRESS_NONE) { | |
c8b97818 CM |
6267 | ret = uncompress_inline(path, inode, page, |
6268 | pg_offset, | |
6269 | extent_offset, item); | |
79787eaa | 6270 | BUG_ON(ret); /* -ENOMEM */ |
c8b97818 CM |
6271 | } else { |
6272 | map = kmap(page); | |
6273 | read_extent_buffer(leaf, map + pg_offset, ptr, | |
6274 | copy_size); | |
93c82d57 CM |
6275 | if (pg_offset + copy_size < PAGE_CACHE_SIZE) { |
6276 | memset(map + pg_offset + copy_size, 0, | |
6277 | PAGE_CACHE_SIZE - pg_offset - | |
6278 | copy_size); | |
6279 | } | |
c8b97818 CM |
6280 | kunmap(page); |
6281 | } | |
179e29e4 CM |
6282 | flush_dcache_page(page); |
6283 | } else if (create && PageUptodate(page)) { | |
6bf7e080 | 6284 | BUG(); |
179e29e4 CM |
6285 | if (!trans) { |
6286 | kunmap(page); | |
6287 | free_extent_map(em); | |
6288 | em = NULL; | |
ff5714cc | 6289 | |
b3b4aa74 | 6290 | btrfs_release_path(path); |
7a7eaa40 | 6291 | trans = btrfs_join_transaction(root); |
ff5714cc | 6292 | |
3612b495 TI |
6293 | if (IS_ERR(trans)) |
6294 | return ERR_CAST(trans); | |
179e29e4 CM |
6295 | goto again; |
6296 | } | |
c8b97818 | 6297 | map = kmap(page); |
70dec807 | 6298 | write_extent_buffer(leaf, map + pg_offset, ptr, |
179e29e4 | 6299 | copy_size); |
c8b97818 | 6300 | kunmap(page); |
179e29e4 | 6301 | btrfs_mark_buffer_dirty(leaf); |
a52d9a80 | 6302 | } |
d1310b2e | 6303 | set_extent_uptodate(io_tree, em->start, |
507903b8 | 6304 | extent_map_end(em) - 1, NULL, GFP_NOFS); |
a52d9a80 CM |
6305 | goto insert; |
6306 | } else { | |
31b1a2bd | 6307 | WARN(1, KERN_ERR "btrfs unknown found_type %d\n", found_type); |
a52d9a80 CM |
6308 | } |
6309 | not_found: | |
6310 | em->start = start; | |
70c8a91c | 6311 | em->orig_start = start; |
d1310b2e | 6312 | em->len = len; |
a52d9a80 | 6313 | not_found_em: |
5f39d397 | 6314 | em->block_start = EXTENT_MAP_HOLE; |
9036c102 | 6315 | set_bit(EXTENT_FLAG_VACANCY, &em->flags); |
a52d9a80 | 6316 | insert: |
b3b4aa74 | 6317 | btrfs_release_path(path); |
d1310b2e | 6318 | if (em->start > start || extent_map_end(em) <= start) { |
c2cf52eb | 6319 | btrfs_err(root->fs_info, "bad extent! em: [%llu %llu] passed [%llu %llu]", |
c1c9ff7c | 6320 | em->start, em->len, start, len); |
a52d9a80 CM |
6321 | err = -EIO; |
6322 | goto out; | |
6323 | } | |
d1310b2e CM |
6324 | |
6325 | err = 0; | |
890871be | 6326 | write_lock(&em_tree->lock); |
09a2a8f9 | 6327 | ret = add_extent_mapping(em_tree, em, 0); |
3b951516 CM |
6328 | /* it is possible that someone inserted the extent into the tree |
6329 | * while we had the lock dropped. It is also possible that | |
6330 | * an overlapping map exists in the tree | |
6331 | */ | |
a52d9a80 | 6332 | if (ret == -EEXIST) { |
3b951516 | 6333 | struct extent_map *existing; |
e6dcd2dc CM |
6334 | |
6335 | ret = 0; | |
6336 | ||
3b951516 | 6337 | existing = lookup_extent_mapping(em_tree, start, len); |
e1c4b745 CM |
6338 | if (existing && (existing->start > start || |
6339 | existing->start + existing->len <= start)) { | |
6340 | free_extent_map(existing); | |
6341 | existing = NULL; | |
6342 | } | |
3b951516 CM |
6343 | if (!existing) { |
6344 | existing = lookup_extent_mapping(em_tree, em->start, | |
6345 | em->len); | |
6346 | if (existing) { | |
6347 | err = merge_extent_mapping(em_tree, existing, | |
e6dcd2dc CM |
6348 | em, start, |
6349 | root->sectorsize); | |
3b951516 CM |
6350 | free_extent_map(existing); |
6351 | if (err) { | |
6352 | free_extent_map(em); | |
6353 | em = NULL; | |
6354 | } | |
6355 | } else { | |
6356 | err = -EIO; | |
3b951516 CM |
6357 | free_extent_map(em); |
6358 | em = NULL; | |
6359 | } | |
6360 | } else { | |
6361 | free_extent_map(em); | |
6362 | em = existing; | |
e6dcd2dc | 6363 | err = 0; |
a52d9a80 | 6364 | } |
a52d9a80 | 6365 | } |
890871be | 6366 | write_unlock(&em_tree->lock); |
a52d9a80 | 6367 | out: |
1abe9b8a | 6368 | |
4cd8587c | 6369 | trace_btrfs_get_extent(root, em); |
1abe9b8a | 6370 | |
f421950f CM |
6371 | if (path) |
6372 | btrfs_free_path(path); | |
a52d9a80 CM |
6373 | if (trans) { |
6374 | ret = btrfs_end_transaction(trans, root); | |
d397712b | 6375 | if (!err) |
a52d9a80 CM |
6376 | err = ret; |
6377 | } | |
a52d9a80 CM |
6378 | if (err) { |
6379 | free_extent_map(em); | |
a52d9a80 CM |
6380 | return ERR_PTR(err); |
6381 | } | |
79787eaa | 6382 | BUG_ON(!em); /* Error is always set */ |
a52d9a80 CM |
6383 | return em; |
6384 | } | |
6385 | ||
ec29ed5b CM |
6386 | struct extent_map *btrfs_get_extent_fiemap(struct inode *inode, struct page *page, |
6387 | size_t pg_offset, u64 start, u64 len, | |
6388 | int create) | |
6389 | { | |
6390 | struct extent_map *em; | |
6391 | struct extent_map *hole_em = NULL; | |
6392 | u64 range_start = start; | |
6393 | u64 end; | |
6394 | u64 found; | |
6395 | u64 found_end; | |
6396 | int err = 0; | |
6397 | ||
6398 | em = btrfs_get_extent(inode, page, pg_offset, start, len, create); | |
6399 | if (IS_ERR(em)) | |
6400 | return em; | |
6401 | if (em) { | |
6402 | /* | |
f9e4fb53 LB |
6403 | * if our em maps to |
6404 | * - a hole or | |
6405 | * - a pre-alloc extent, | |
6406 | * there might actually be delalloc bytes behind it. | |
ec29ed5b | 6407 | */ |
f9e4fb53 LB |
6408 | if (em->block_start != EXTENT_MAP_HOLE && |
6409 | !test_bit(EXTENT_FLAG_PREALLOC, &em->flags)) | |
ec29ed5b CM |
6410 | return em; |
6411 | else | |
6412 | hole_em = em; | |
6413 | } | |
6414 | ||
6415 | /* check to see if we've wrapped (len == -1 or similar) */ | |
6416 | end = start + len; | |
6417 | if (end < start) | |
6418 | end = (u64)-1; | |
6419 | else | |
6420 | end -= 1; | |
6421 | ||
6422 | em = NULL; | |
6423 | ||
6424 | /* ok, we didn't find anything, lets look for delalloc */ | |
6425 | found = count_range_bits(&BTRFS_I(inode)->io_tree, &range_start, | |
6426 | end, len, EXTENT_DELALLOC, 1); | |
6427 | found_end = range_start + found; | |
6428 | if (found_end < range_start) | |
6429 | found_end = (u64)-1; | |
6430 | ||
6431 | /* | |
6432 | * we didn't find anything useful, return | |
6433 | * the original results from get_extent() | |
6434 | */ | |
6435 | if (range_start > end || found_end <= start) { | |
6436 | em = hole_em; | |
6437 | hole_em = NULL; | |
6438 | goto out; | |
6439 | } | |
6440 | ||
6441 | /* adjust the range_start to make sure it doesn't | |
6442 | * go backwards from the start they passed in | |
6443 | */ | |
67871254 | 6444 | range_start = max(start, range_start); |
ec29ed5b CM |
6445 | found = found_end - range_start; |
6446 | ||
6447 | if (found > 0) { | |
6448 | u64 hole_start = start; | |
6449 | u64 hole_len = len; | |
6450 | ||
172ddd60 | 6451 | em = alloc_extent_map(); |
ec29ed5b CM |
6452 | if (!em) { |
6453 | err = -ENOMEM; | |
6454 | goto out; | |
6455 | } | |
6456 | /* | |
6457 | * when btrfs_get_extent can't find anything it | |
6458 | * returns one huge hole | |
6459 | * | |
6460 | * make sure what it found really fits our range, and | |
6461 | * adjust to make sure it is based on the start from | |
6462 | * the caller | |
6463 | */ | |
6464 | if (hole_em) { | |
6465 | u64 calc_end = extent_map_end(hole_em); | |
6466 | ||
6467 | if (calc_end <= start || (hole_em->start > end)) { | |
6468 | free_extent_map(hole_em); | |
6469 | hole_em = NULL; | |
6470 | } else { | |
6471 | hole_start = max(hole_em->start, start); | |
6472 | hole_len = calc_end - hole_start; | |
6473 | } | |
6474 | } | |
6475 | em->bdev = NULL; | |
6476 | if (hole_em && range_start > hole_start) { | |
6477 | /* our hole starts before our delalloc, so we | |
6478 | * have to return just the parts of the hole | |
6479 | * that go until the delalloc starts | |
6480 | */ | |
6481 | em->len = min(hole_len, | |
6482 | range_start - hole_start); | |
6483 | em->start = hole_start; | |
6484 | em->orig_start = hole_start; | |
6485 | /* | |
6486 | * don't adjust block start at all, | |
6487 | * it is fixed at EXTENT_MAP_HOLE | |
6488 | */ | |
6489 | em->block_start = hole_em->block_start; | |
6490 | em->block_len = hole_len; | |
f9e4fb53 LB |
6491 | if (test_bit(EXTENT_FLAG_PREALLOC, &hole_em->flags)) |
6492 | set_bit(EXTENT_FLAG_PREALLOC, &em->flags); | |
ec29ed5b CM |
6493 | } else { |
6494 | em->start = range_start; | |
6495 | em->len = found; | |
6496 | em->orig_start = range_start; | |
6497 | em->block_start = EXTENT_MAP_DELALLOC; | |
6498 | em->block_len = found; | |
6499 | } | |
6500 | } else if (hole_em) { | |
6501 | return hole_em; | |
6502 | } | |
6503 | out: | |
6504 | ||
6505 | free_extent_map(hole_em); | |
6506 | if (err) { | |
6507 | free_extent_map(em); | |
6508 | return ERR_PTR(err); | |
6509 | } | |
6510 | return em; | |
6511 | } | |
6512 | ||
4b46fce2 JB |
6513 | static struct extent_map *btrfs_new_extent_direct(struct inode *inode, |
6514 | u64 start, u64 len) | |
6515 | { | |
6516 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
70c8a91c | 6517 | struct extent_map *em; |
4b46fce2 JB |
6518 | struct btrfs_key ins; |
6519 | u64 alloc_hint; | |
6520 | int ret; | |
4b46fce2 | 6521 | |
4b46fce2 | 6522 | alloc_hint = get_extent_allocation_hint(inode, start, len); |
00361589 | 6523 | ret = btrfs_reserve_extent(root, len, root->sectorsize, 0, |
81c9ad23 | 6524 | alloc_hint, &ins, 1); |
00361589 JB |
6525 | if (ret) |
6526 | return ERR_PTR(ret); | |
4b46fce2 | 6527 | |
70c8a91c | 6528 | em = create_pinned_em(inode, start, ins.offset, start, ins.objectid, |
cc95bef6 | 6529 | ins.offset, ins.offset, ins.offset, 0); |
00361589 JB |
6530 | if (IS_ERR(em)) { |
6531 | btrfs_free_reserved_extent(root, ins.objectid, ins.offset); | |
6532 | return em; | |
6533 | } | |
4b46fce2 JB |
6534 | |
6535 | ret = btrfs_add_ordered_extent_dio(inode, start, ins.objectid, | |
6536 | ins.offset, ins.offset, 0); | |
6537 | if (ret) { | |
6538 | btrfs_free_reserved_extent(root, ins.objectid, ins.offset); | |
00361589 JB |
6539 | free_extent_map(em); |
6540 | return ERR_PTR(ret); | |
4b46fce2 | 6541 | } |
00361589 | 6542 | |
4b46fce2 JB |
6543 | return em; |
6544 | } | |
6545 | ||
46bfbb5c CM |
6546 | /* |
6547 | * returns 1 when the nocow is safe, < 1 on error, 0 if the | |
6548 | * block must be cow'd | |
6549 | */ | |
00361589 | 6550 | noinline int can_nocow_extent(struct inode *inode, u64 offset, u64 *len, |
7ee9e440 JB |
6551 | u64 *orig_start, u64 *orig_block_len, |
6552 | u64 *ram_bytes) | |
46bfbb5c | 6553 | { |
00361589 | 6554 | struct btrfs_trans_handle *trans; |
46bfbb5c CM |
6555 | struct btrfs_path *path; |
6556 | int ret; | |
6557 | struct extent_buffer *leaf; | |
6558 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
6559 | struct btrfs_file_extent_item *fi; | |
6560 | struct btrfs_key key; | |
6561 | u64 disk_bytenr; | |
6562 | u64 backref_offset; | |
6563 | u64 extent_end; | |
6564 | u64 num_bytes; | |
6565 | int slot; | |
6566 | int found_type; | |
7ee9e440 | 6567 | bool nocow = (BTRFS_I(inode)->flags & BTRFS_INODE_NODATACOW); |
e77751aa | 6568 | |
46bfbb5c CM |
6569 | path = btrfs_alloc_path(); |
6570 | if (!path) | |
6571 | return -ENOMEM; | |
6572 | ||
00361589 | 6573 | ret = btrfs_lookup_file_extent(NULL, root, path, btrfs_ino(inode), |
46bfbb5c CM |
6574 | offset, 0); |
6575 | if (ret < 0) | |
6576 | goto out; | |
6577 | ||
6578 | slot = path->slots[0]; | |
6579 | if (ret == 1) { | |
6580 | if (slot == 0) { | |
6581 | /* can't find the item, must cow */ | |
6582 | ret = 0; | |
6583 | goto out; | |
6584 | } | |
6585 | slot--; | |
6586 | } | |
6587 | ret = 0; | |
6588 | leaf = path->nodes[0]; | |
6589 | btrfs_item_key_to_cpu(leaf, &key, slot); | |
33345d01 | 6590 | if (key.objectid != btrfs_ino(inode) || |
46bfbb5c CM |
6591 | key.type != BTRFS_EXTENT_DATA_KEY) { |
6592 | /* not our file or wrong item type, must cow */ | |
6593 | goto out; | |
6594 | } | |
6595 | ||
6596 | if (key.offset > offset) { | |
6597 | /* Wrong offset, must cow */ | |
6598 | goto out; | |
6599 | } | |
6600 | ||
6601 | fi = btrfs_item_ptr(leaf, slot, struct btrfs_file_extent_item); | |
6602 | found_type = btrfs_file_extent_type(leaf, fi); | |
6603 | if (found_type != BTRFS_FILE_EXTENT_REG && | |
6604 | found_type != BTRFS_FILE_EXTENT_PREALLOC) { | |
6605 | /* not a regular extent, must cow */ | |
6606 | goto out; | |
6607 | } | |
7ee9e440 JB |
6608 | |
6609 | if (!nocow && found_type == BTRFS_FILE_EXTENT_REG) | |
6610 | goto out; | |
6611 | ||
e77751aa MX |
6612 | extent_end = key.offset + btrfs_file_extent_num_bytes(leaf, fi); |
6613 | if (extent_end <= offset) | |
6614 | goto out; | |
6615 | ||
46bfbb5c | 6616 | disk_bytenr = btrfs_file_extent_disk_bytenr(leaf, fi); |
7ee9e440 JB |
6617 | if (disk_bytenr == 0) |
6618 | goto out; | |
6619 | ||
6620 | if (btrfs_file_extent_compression(leaf, fi) || | |
6621 | btrfs_file_extent_encryption(leaf, fi) || | |
6622 | btrfs_file_extent_other_encoding(leaf, fi)) | |
6623 | goto out; | |
6624 | ||
46bfbb5c CM |
6625 | backref_offset = btrfs_file_extent_offset(leaf, fi); |
6626 | ||
7ee9e440 JB |
6627 | if (orig_start) { |
6628 | *orig_start = key.offset - backref_offset; | |
6629 | *orig_block_len = btrfs_file_extent_disk_num_bytes(leaf, fi); | |
6630 | *ram_bytes = btrfs_file_extent_ram_bytes(leaf, fi); | |
6631 | } | |
eb384b55 | 6632 | |
46bfbb5c CM |
6633 | if (btrfs_extent_readonly(root, disk_bytenr)) |
6634 | goto out; | |
1bda19eb | 6635 | btrfs_release_path(path); |
46bfbb5c CM |
6636 | |
6637 | /* | |
6638 | * look for other files referencing this extent, if we | |
6639 | * find any we must cow | |
6640 | */ | |
00361589 JB |
6641 | trans = btrfs_join_transaction(root); |
6642 | if (IS_ERR(trans)) { | |
6643 | ret = 0; | |
46bfbb5c | 6644 | goto out; |
00361589 JB |
6645 | } |
6646 | ||
6647 | ret = btrfs_cross_ref_exist(trans, root, btrfs_ino(inode), | |
6648 | key.offset - backref_offset, disk_bytenr); | |
6649 | btrfs_end_transaction(trans, root); | |
6650 | if (ret) { | |
6651 | ret = 0; | |
6652 | goto out; | |
6653 | } | |
46bfbb5c CM |
6654 | |
6655 | /* | |
6656 | * adjust disk_bytenr and num_bytes to cover just the bytes | |
6657 | * in this extent we are about to write. If there | |
6658 | * are any csums in that range we have to cow in order | |
6659 | * to keep the csums correct | |
6660 | */ | |
6661 | disk_bytenr += backref_offset; | |
6662 | disk_bytenr += offset - key.offset; | |
eb384b55 | 6663 | num_bytes = min(offset + *len, extent_end) - offset; |
46bfbb5c CM |
6664 | if (csum_exist_in_range(root, disk_bytenr, num_bytes)) |
6665 | goto out; | |
6666 | /* | |
6667 | * all of the above have passed, it is safe to overwrite this extent | |
6668 | * without cow | |
6669 | */ | |
eb384b55 | 6670 | *len = num_bytes; |
46bfbb5c CM |
6671 | ret = 1; |
6672 | out: | |
6673 | btrfs_free_path(path); | |
6674 | return ret; | |
6675 | } | |
6676 | ||
eb838e73 JB |
6677 | static int lock_extent_direct(struct inode *inode, u64 lockstart, u64 lockend, |
6678 | struct extent_state **cached_state, int writing) | |
6679 | { | |
6680 | struct btrfs_ordered_extent *ordered; | |
6681 | int ret = 0; | |
6682 | ||
6683 | while (1) { | |
6684 | lock_extent_bits(&BTRFS_I(inode)->io_tree, lockstart, lockend, | |
6685 | 0, cached_state); | |
6686 | /* | |
6687 | * We're concerned with the entire range that we're going to be | |
6688 | * doing DIO to, so we need to make sure theres no ordered | |
6689 | * extents in this range. | |
6690 | */ | |
6691 | ordered = btrfs_lookup_ordered_range(inode, lockstart, | |
6692 | lockend - lockstart + 1); | |
6693 | ||
6694 | /* | |
6695 | * We need to make sure there are no buffered pages in this | |
6696 | * range either, we could have raced between the invalidate in | |
6697 | * generic_file_direct_write and locking the extent. The | |
6698 | * invalidate needs to happen so that reads after a write do not | |
6699 | * get stale data. | |
6700 | */ | |
6701 | if (!ordered && (!writing || | |
6702 | !test_range_bit(&BTRFS_I(inode)->io_tree, | |
6703 | lockstart, lockend, EXTENT_UPTODATE, 0, | |
6704 | *cached_state))) | |
6705 | break; | |
6706 | ||
6707 | unlock_extent_cached(&BTRFS_I(inode)->io_tree, lockstart, lockend, | |
6708 | cached_state, GFP_NOFS); | |
6709 | ||
6710 | if (ordered) { | |
6711 | btrfs_start_ordered_extent(inode, ordered, 1); | |
6712 | btrfs_put_ordered_extent(ordered); | |
6713 | } else { | |
6714 | /* Screw you mmap */ | |
6715 | ret = filemap_write_and_wait_range(inode->i_mapping, | |
6716 | lockstart, | |
6717 | lockend); | |
6718 | if (ret) | |
6719 | break; | |
6720 | ||
6721 | /* | |
6722 | * If we found a page that couldn't be invalidated just | |
6723 | * fall back to buffered. | |
6724 | */ | |
6725 | ret = invalidate_inode_pages2_range(inode->i_mapping, | |
6726 | lockstart >> PAGE_CACHE_SHIFT, | |
6727 | lockend >> PAGE_CACHE_SHIFT); | |
6728 | if (ret) | |
6729 | break; | |
6730 | } | |
6731 | ||
6732 | cond_resched(); | |
6733 | } | |
6734 | ||
6735 | return ret; | |
6736 | } | |
6737 | ||
69ffb543 JB |
6738 | static struct extent_map *create_pinned_em(struct inode *inode, u64 start, |
6739 | u64 len, u64 orig_start, | |
6740 | u64 block_start, u64 block_len, | |
cc95bef6 JB |
6741 | u64 orig_block_len, u64 ram_bytes, |
6742 | int type) | |
69ffb543 JB |
6743 | { |
6744 | struct extent_map_tree *em_tree; | |
6745 | struct extent_map *em; | |
6746 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
6747 | int ret; | |
6748 | ||
6749 | em_tree = &BTRFS_I(inode)->extent_tree; | |
6750 | em = alloc_extent_map(); | |
6751 | if (!em) | |
6752 | return ERR_PTR(-ENOMEM); | |
6753 | ||
6754 | em->start = start; | |
6755 | em->orig_start = orig_start; | |
2ab28f32 JB |
6756 | em->mod_start = start; |
6757 | em->mod_len = len; | |
69ffb543 JB |
6758 | em->len = len; |
6759 | em->block_len = block_len; | |
6760 | em->block_start = block_start; | |
6761 | em->bdev = root->fs_info->fs_devices->latest_bdev; | |
b4939680 | 6762 | em->orig_block_len = orig_block_len; |
cc95bef6 | 6763 | em->ram_bytes = ram_bytes; |
70c8a91c | 6764 | em->generation = -1; |
69ffb543 JB |
6765 | set_bit(EXTENT_FLAG_PINNED, &em->flags); |
6766 | if (type == BTRFS_ORDERED_PREALLOC) | |
b11e234d | 6767 | set_bit(EXTENT_FLAG_FILLING, &em->flags); |
69ffb543 JB |
6768 | |
6769 | do { | |
6770 | btrfs_drop_extent_cache(inode, em->start, | |
6771 | em->start + em->len - 1, 0); | |
6772 | write_lock(&em_tree->lock); | |
09a2a8f9 | 6773 | ret = add_extent_mapping(em_tree, em, 1); |
69ffb543 JB |
6774 | write_unlock(&em_tree->lock); |
6775 | } while (ret == -EEXIST); | |
6776 | ||
6777 | if (ret) { | |
6778 | free_extent_map(em); | |
6779 | return ERR_PTR(ret); | |
6780 | } | |
6781 | ||
6782 | return em; | |
6783 | } | |
6784 | ||
6785 | ||
4b46fce2 JB |
6786 | static int btrfs_get_blocks_direct(struct inode *inode, sector_t iblock, |
6787 | struct buffer_head *bh_result, int create) | |
6788 | { | |
6789 | struct extent_map *em; | |
6790 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
eb838e73 | 6791 | struct extent_state *cached_state = NULL; |
4b46fce2 | 6792 | u64 start = iblock << inode->i_blkbits; |
eb838e73 | 6793 | u64 lockstart, lockend; |
4b46fce2 | 6794 | u64 len = bh_result->b_size; |
eb838e73 | 6795 | int unlock_bits = EXTENT_LOCKED; |
0934856d | 6796 | int ret = 0; |
eb838e73 | 6797 | |
172a5049 | 6798 | if (create) |
eb838e73 | 6799 | unlock_bits |= EXTENT_DELALLOC | EXTENT_DIRTY; |
172a5049 | 6800 | else |
c329861d | 6801 | len = min_t(u64, len, root->sectorsize); |
eb838e73 | 6802 | |
c329861d JB |
6803 | lockstart = start; |
6804 | lockend = start + len - 1; | |
6805 | ||
eb838e73 JB |
6806 | /* |
6807 | * If this errors out it's because we couldn't invalidate pagecache for | |
6808 | * this range and we need to fallback to buffered. | |
6809 | */ | |
6810 | if (lock_extent_direct(inode, lockstart, lockend, &cached_state, create)) | |
6811 | return -ENOTBLK; | |
6812 | ||
4b46fce2 | 6813 | em = btrfs_get_extent(inode, NULL, 0, start, len, 0); |
eb838e73 JB |
6814 | if (IS_ERR(em)) { |
6815 | ret = PTR_ERR(em); | |
6816 | goto unlock_err; | |
6817 | } | |
4b46fce2 JB |
6818 | |
6819 | /* | |
6820 | * Ok for INLINE and COMPRESSED extents we need to fallback on buffered | |
6821 | * io. INLINE is special, and we could probably kludge it in here, but | |
6822 | * it's still buffered so for safety lets just fall back to the generic | |
6823 | * buffered path. | |
6824 | * | |
6825 | * For COMPRESSED we _have_ to read the entire extent in so we can | |
6826 | * decompress it, so there will be buffering required no matter what we | |
6827 | * do, so go ahead and fallback to buffered. | |
6828 | * | |
6829 | * We return -ENOTBLK because thats what makes DIO go ahead and go back | |
6830 | * to buffered IO. Don't blame me, this is the price we pay for using | |
6831 | * the generic code. | |
6832 | */ | |
6833 | if (test_bit(EXTENT_FLAG_COMPRESSED, &em->flags) || | |
6834 | em->block_start == EXTENT_MAP_INLINE) { | |
6835 | free_extent_map(em); | |
eb838e73 JB |
6836 | ret = -ENOTBLK; |
6837 | goto unlock_err; | |
4b46fce2 JB |
6838 | } |
6839 | ||
6840 | /* Just a good old fashioned hole, return */ | |
6841 | if (!create && (em->block_start == EXTENT_MAP_HOLE || | |
6842 | test_bit(EXTENT_FLAG_PREALLOC, &em->flags))) { | |
6843 | free_extent_map(em); | |
eb838e73 | 6844 | goto unlock_err; |
4b46fce2 JB |
6845 | } |
6846 | ||
6847 | /* | |
6848 | * We don't allocate a new extent in the following cases | |
6849 | * | |
6850 | * 1) The inode is marked as NODATACOW. In this case we'll just use the | |
6851 | * existing extent. | |
6852 | * 2) The extent is marked as PREALLOC. We're good to go here and can | |
6853 | * just use the extent. | |
6854 | * | |
6855 | */ | |
46bfbb5c | 6856 | if (!create) { |
eb838e73 JB |
6857 | len = min(len, em->len - (start - em->start)); |
6858 | lockstart = start + len; | |
6859 | goto unlock; | |
46bfbb5c | 6860 | } |
4b46fce2 JB |
6861 | |
6862 | if (test_bit(EXTENT_FLAG_PREALLOC, &em->flags) || | |
6863 | ((BTRFS_I(inode)->flags & BTRFS_INODE_NODATACOW) && | |
6864 | em->block_start != EXTENT_MAP_HOLE)) { | |
4b46fce2 JB |
6865 | int type; |
6866 | int ret; | |
eb384b55 | 6867 | u64 block_start, orig_start, orig_block_len, ram_bytes; |
4b46fce2 JB |
6868 | |
6869 | if (test_bit(EXTENT_FLAG_PREALLOC, &em->flags)) | |
6870 | type = BTRFS_ORDERED_PREALLOC; | |
6871 | else | |
6872 | type = BTRFS_ORDERED_NOCOW; | |
46bfbb5c | 6873 | len = min(len, em->len - (start - em->start)); |
4b46fce2 | 6874 | block_start = em->block_start + (start - em->start); |
46bfbb5c | 6875 | |
00361589 | 6876 | if (can_nocow_extent(inode, start, &len, &orig_start, |
7ee9e440 | 6877 | &orig_block_len, &ram_bytes) == 1) { |
69ffb543 JB |
6878 | if (type == BTRFS_ORDERED_PREALLOC) { |
6879 | free_extent_map(em); | |
6880 | em = create_pinned_em(inode, start, len, | |
6881 | orig_start, | |
b4939680 | 6882 | block_start, len, |
cc95bef6 JB |
6883 | orig_block_len, |
6884 | ram_bytes, type); | |
00361589 | 6885 | if (IS_ERR(em)) |
69ffb543 | 6886 | goto unlock_err; |
69ffb543 JB |
6887 | } |
6888 | ||
46bfbb5c CM |
6889 | ret = btrfs_add_ordered_extent_dio(inode, start, |
6890 | block_start, len, len, type); | |
46bfbb5c CM |
6891 | if (ret) { |
6892 | free_extent_map(em); | |
eb838e73 | 6893 | goto unlock_err; |
46bfbb5c CM |
6894 | } |
6895 | goto unlock; | |
4b46fce2 | 6896 | } |
4b46fce2 | 6897 | } |
00361589 | 6898 | |
46bfbb5c CM |
6899 | /* |
6900 | * this will cow the extent, reset the len in case we changed | |
6901 | * it above | |
6902 | */ | |
6903 | len = bh_result->b_size; | |
70c8a91c JB |
6904 | free_extent_map(em); |
6905 | em = btrfs_new_extent_direct(inode, start, len); | |
eb838e73 JB |
6906 | if (IS_ERR(em)) { |
6907 | ret = PTR_ERR(em); | |
6908 | goto unlock_err; | |
6909 | } | |
46bfbb5c CM |
6910 | len = min(len, em->len - (start - em->start)); |
6911 | unlock: | |
4b46fce2 JB |
6912 | bh_result->b_blocknr = (em->block_start + (start - em->start)) >> |
6913 | inode->i_blkbits; | |
46bfbb5c | 6914 | bh_result->b_size = len; |
4b46fce2 JB |
6915 | bh_result->b_bdev = em->bdev; |
6916 | set_buffer_mapped(bh_result); | |
c3473e83 JB |
6917 | if (create) { |
6918 | if (!test_bit(EXTENT_FLAG_PREALLOC, &em->flags)) | |
6919 | set_buffer_new(bh_result); | |
6920 | ||
6921 | /* | |
6922 | * Need to update the i_size under the extent lock so buffered | |
6923 | * readers will get the updated i_size when we unlock. | |
6924 | */ | |
6925 | if (start + len > i_size_read(inode)) | |
6926 | i_size_write(inode, start + len); | |
0934856d | 6927 | |
172a5049 MX |
6928 | spin_lock(&BTRFS_I(inode)->lock); |
6929 | BTRFS_I(inode)->outstanding_extents++; | |
6930 | spin_unlock(&BTRFS_I(inode)->lock); | |
6931 | ||
0934856d MX |
6932 | ret = set_extent_bit(&BTRFS_I(inode)->io_tree, lockstart, |
6933 | lockstart + len - 1, EXTENT_DELALLOC, NULL, | |
6934 | &cached_state, GFP_NOFS); | |
6935 | BUG_ON(ret); | |
c3473e83 | 6936 | } |
4b46fce2 | 6937 | |
eb838e73 JB |
6938 | /* |
6939 | * In the case of write we need to clear and unlock the entire range, | |
6940 | * in the case of read we need to unlock only the end area that we | |
6941 | * aren't using if there is any left over space. | |
6942 | */ | |
24c03fa5 | 6943 | if (lockstart < lockend) { |
0934856d MX |
6944 | clear_extent_bit(&BTRFS_I(inode)->io_tree, lockstart, |
6945 | lockend, unlock_bits, 1, 0, | |
6946 | &cached_state, GFP_NOFS); | |
24c03fa5 | 6947 | } else { |
eb838e73 | 6948 | free_extent_state(cached_state); |
24c03fa5 | 6949 | } |
eb838e73 | 6950 | |
4b46fce2 JB |
6951 | free_extent_map(em); |
6952 | ||
6953 | return 0; | |
eb838e73 JB |
6954 | |
6955 | unlock_err: | |
eb838e73 JB |
6956 | clear_extent_bit(&BTRFS_I(inode)->io_tree, lockstart, lockend, |
6957 | unlock_bits, 1, 0, &cached_state, GFP_NOFS); | |
6958 | return ret; | |
4b46fce2 JB |
6959 | } |
6960 | ||
4b46fce2 JB |
6961 | static void btrfs_endio_direct_read(struct bio *bio, int err) |
6962 | { | |
e65e1535 | 6963 | struct btrfs_dio_private *dip = bio->bi_private; |
4b46fce2 JB |
6964 | struct bio_vec *bvec_end = bio->bi_io_vec + bio->bi_vcnt - 1; |
6965 | struct bio_vec *bvec = bio->bi_io_vec; | |
4b46fce2 JB |
6966 | struct inode *inode = dip->inode; |
6967 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
9be3395b | 6968 | struct bio *dio_bio; |
facc8a22 MX |
6969 | u32 *csums = (u32 *)dip->csum; |
6970 | int index = 0; | |
4b46fce2 | 6971 | u64 start; |
4b46fce2 JB |
6972 | |
6973 | start = dip->logical_offset; | |
6974 | do { | |
6975 | if (!(BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM)) { | |
6976 | struct page *page = bvec->bv_page; | |
6977 | char *kaddr; | |
6978 | u32 csum = ~(u32)0; | |
6979 | unsigned long flags; | |
6980 | ||
6981 | local_irq_save(flags); | |
7ac687d9 | 6982 | kaddr = kmap_atomic(page); |
b0496686 | 6983 | csum = btrfs_csum_data(kaddr + bvec->bv_offset, |
4b46fce2 JB |
6984 | csum, bvec->bv_len); |
6985 | btrfs_csum_final(csum, (char *)&csum); | |
7ac687d9 | 6986 | kunmap_atomic(kaddr); |
4b46fce2 JB |
6987 | local_irq_restore(flags); |
6988 | ||
6989 | flush_dcache_page(bvec->bv_page); | |
facc8a22 MX |
6990 | if (csum != csums[index]) { |
6991 | btrfs_err(root->fs_info, "csum failed ino %llu off %llu csum %u expected csum %u", | |
c1c9ff7c GU |
6992 | btrfs_ino(inode), start, csum, |
6993 | csums[index]); | |
4b46fce2 JB |
6994 | err = -EIO; |
6995 | } | |
6996 | } | |
6997 | ||
6998 | start += bvec->bv_len; | |
4b46fce2 | 6999 | bvec++; |
facc8a22 | 7000 | index++; |
4b46fce2 JB |
7001 | } while (bvec <= bvec_end); |
7002 | ||
7003 | unlock_extent(&BTRFS_I(inode)->io_tree, dip->logical_offset, | |
d0082371 | 7004 | dip->logical_offset + dip->bytes - 1); |
9be3395b | 7005 | dio_bio = dip->dio_bio; |
4b46fce2 | 7006 | |
4b46fce2 | 7007 | kfree(dip); |
c0da7aa1 JB |
7008 | |
7009 | /* If we had a csum failure make sure to clear the uptodate flag */ | |
7010 | if (err) | |
9be3395b CM |
7011 | clear_bit(BIO_UPTODATE, &dio_bio->bi_flags); |
7012 | dio_end_io(dio_bio, err); | |
7013 | bio_put(bio); | |
4b46fce2 JB |
7014 | } |
7015 | ||
7016 | static void btrfs_endio_direct_write(struct bio *bio, int err) | |
7017 | { | |
7018 | struct btrfs_dio_private *dip = bio->bi_private; | |
7019 | struct inode *inode = dip->inode; | |
7020 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
4b46fce2 | 7021 | struct btrfs_ordered_extent *ordered = NULL; |
163cf09c CM |
7022 | u64 ordered_offset = dip->logical_offset; |
7023 | u64 ordered_bytes = dip->bytes; | |
9be3395b | 7024 | struct bio *dio_bio; |
4b46fce2 JB |
7025 | int ret; |
7026 | ||
7027 | if (err) | |
7028 | goto out_done; | |
163cf09c CM |
7029 | again: |
7030 | ret = btrfs_dec_test_first_ordered_pending(inode, &ordered, | |
7031 | &ordered_offset, | |
5fd02043 | 7032 | ordered_bytes, !err); |
4b46fce2 | 7033 | if (!ret) |
163cf09c | 7034 | goto out_test; |
4b46fce2 | 7035 | |
5fd02043 JB |
7036 | ordered->work.func = finish_ordered_fn; |
7037 | ordered->work.flags = 0; | |
7038 | btrfs_queue_worker(&root->fs_info->endio_write_workers, | |
7039 | &ordered->work); | |
163cf09c CM |
7040 | out_test: |
7041 | /* | |
7042 | * our bio might span multiple ordered extents. If we haven't | |
7043 | * completed the accounting for the whole dio, go back and try again | |
7044 | */ | |
7045 | if (ordered_offset < dip->logical_offset + dip->bytes) { | |
7046 | ordered_bytes = dip->logical_offset + dip->bytes - | |
7047 | ordered_offset; | |
5fd02043 | 7048 | ordered = NULL; |
163cf09c CM |
7049 | goto again; |
7050 | } | |
4b46fce2 | 7051 | out_done: |
9be3395b | 7052 | dio_bio = dip->dio_bio; |
4b46fce2 | 7053 | |
4b46fce2 | 7054 | kfree(dip); |
c0da7aa1 JB |
7055 | |
7056 | /* If we had an error make sure to clear the uptodate flag */ | |
7057 | if (err) | |
9be3395b CM |
7058 | clear_bit(BIO_UPTODATE, &dio_bio->bi_flags); |
7059 | dio_end_io(dio_bio, err); | |
7060 | bio_put(bio); | |
4b46fce2 JB |
7061 | } |
7062 | ||
eaf25d93 CM |
7063 | static int __btrfs_submit_bio_start_direct_io(struct inode *inode, int rw, |
7064 | struct bio *bio, int mirror_num, | |
7065 | unsigned long bio_flags, u64 offset) | |
7066 | { | |
7067 | int ret; | |
7068 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
7069 | ret = btrfs_csum_one_bio(root, inode, bio, offset, 1); | |
79787eaa | 7070 | BUG_ON(ret); /* -ENOMEM */ |
eaf25d93 CM |
7071 | return 0; |
7072 | } | |
7073 | ||
e65e1535 MX |
7074 | static void btrfs_end_dio_bio(struct bio *bio, int err) |
7075 | { | |
7076 | struct btrfs_dio_private *dip = bio->bi_private; | |
7077 | ||
7078 | if (err) { | |
efe120a0 FH |
7079 | btrfs_err(BTRFS_I(dip->inode)->root->fs_info, |
7080 | "direct IO failed ino %llu rw %lu sector %#Lx len %u err no %d", | |
c1c9ff7c | 7081 | btrfs_ino(dip->inode), bio->bi_rw, |
3dd1462e | 7082 | (unsigned long long)bio->bi_sector, bio->bi_size, err); |
e65e1535 MX |
7083 | dip->errors = 1; |
7084 | ||
7085 | /* | |
7086 | * before atomic variable goto zero, we must make sure | |
7087 | * dip->errors is perceived to be set. | |
7088 | */ | |
7089 | smp_mb__before_atomic_dec(); | |
7090 | } | |
7091 | ||
7092 | /* if there are more bios still pending for this dio, just exit */ | |
7093 | if (!atomic_dec_and_test(&dip->pending_bios)) | |
7094 | goto out; | |
7095 | ||
9be3395b | 7096 | if (dip->errors) { |
e65e1535 | 7097 | bio_io_error(dip->orig_bio); |
9be3395b CM |
7098 | } else { |
7099 | set_bit(BIO_UPTODATE, &dip->dio_bio->bi_flags); | |
e65e1535 MX |
7100 | bio_endio(dip->orig_bio, 0); |
7101 | } | |
7102 | out: | |
7103 | bio_put(bio); | |
7104 | } | |
7105 | ||
7106 | static struct bio *btrfs_dio_bio_alloc(struct block_device *bdev, | |
7107 | u64 first_sector, gfp_t gfp_flags) | |
7108 | { | |
7109 | int nr_vecs = bio_get_nr_vecs(bdev); | |
7110 | return btrfs_bio_alloc(bdev, first_sector, nr_vecs, gfp_flags); | |
7111 | } | |
7112 | ||
7113 | static inline int __btrfs_submit_dio_bio(struct bio *bio, struct inode *inode, | |
7114 | int rw, u64 file_offset, int skip_sum, | |
c329861d | 7115 | int async_submit) |
e65e1535 | 7116 | { |
facc8a22 | 7117 | struct btrfs_dio_private *dip = bio->bi_private; |
e65e1535 MX |
7118 | int write = rw & REQ_WRITE; |
7119 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
7120 | int ret; | |
7121 | ||
b812ce28 JB |
7122 | if (async_submit) |
7123 | async_submit = !atomic_read(&BTRFS_I(inode)->sync_writers); | |
7124 | ||
e65e1535 | 7125 | bio_get(bio); |
5fd02043 JB |
7126 | |
7127 | if (!write) { | |
7128 | ret = btrfs_bio_wq_end_io(root->fs_info, bio, 0); | |
7129 | if (ret) | |
7130 | goto err; | |
7131 | } | |
e65e1535 | 7132 | |
1ae39938 JB |
7133 | if (skip_sum) |
7134 | goto map; | |
7135 | ||
7136 | if (write && async_submit) { | |
e65e1535 MX |
7137 | ret = btrfs_wq_submit_bio(root->fs_info, |
7138 | inode, rw, bio, 0, 0, | |
7139 | file_offset, | |
7140 | __btrfs_submit_bio_start_direct_io, | |
7141 | __btrfs_submit_bio_done); | |
7142 | goto err; | |
1ae39938 JB |
7143 | } else if (write) { |
7144 | /* | |
7145 | * If we aren't doing async submit, calculate the csum of the | |
7146 | * bio now. | |
7147 | */ | |
7148 | ret = btrfs_csum_one_bio(root, inode, bio, file_offset, 1); | |
7149 | if (ret) | |
7150 | goto err; | |
c2db1073 | 7151 | } else if (!skip_sum) { |
facc8a22 MX |
7152 | ret = btrfs_lookup_bio_sums_dio(root, inode, dip, bio, |
7153 | file_offset); | |
c2db1073 TI |
7154 | if (ret) |
7155 | goto err; | |
7156 | } | |
e65e1535 | 7157 | |
1ae39938 JB |
7158 | map: |
7159 | ret = btrfs_map_bio(root, rw, bio, 0, async_submit); | |
e65e1535 MX |
7160 | err: |
7161 | bio_put(bio); | |
7162 | return ret; | |
7163 | } | |
7164 | ||
7165 | static int btrfs_submit_direct_hook(int rw, struct btrfs_dio_private *dip, | |
7166 | int skip_sum) | |
7167 | { | |
7168 | struct inode *inode = dip->inode; | |
7169 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
e65e1535 MX |
7170 | struct bio *bio; |
7171 | struct bio *orig_bio = dip->orig_bio; | |
7172 | struct bio_vec *bvec = orig_bio->bi_io_vec; | |
7173 | u64 start_sector = orig_bio->bi_sector; | |
7174 | u64 file_offset = dip->logical_offset; | |
7175 | u64 submit_len = 0; | |
7176 | u64 map_length; | |
7177 | int nr_pages = 0; | |
e65e1535 | 7178 | int ret = 0; |
1ae39938 | 7179 | int async_submit = 0; |
e65e1535 | 7180 | |
e65e1535 | 7181 | map_length = orig_bio->bi_size; |
53b381b3 | 7182 | ret = btrfs_map_block(root->fs_info, rw, start_sector << 9, |
e65e1535 MX |
7183 | &map_length, NULL, 0); |
7184 | if (ret) { | |
64728bbb | 7185 | bio_put(orig_bio); |
e65e1535 MX |
7186 | return -EIO; |
7187 | } | |
facc8a22 | 7188 | |
02f57c7a JB |
7189 | if (map_length >= orig_bio->bi_size) { |
7190 | bio = orig_bio; | |
7191 | goto submit; | |
7192 | } | |
7193 | ||
53b381b3 DW |
7194 | /* async crcs make it difficult to collect full stripe writes. */ |
7195 | if (btrfs_get_alloc_profile(root, 1) & | |
7196 | (BTRFS_BLOCK_GROUP_RAID5 | BTRFS_BLOCK_GROUP_RAID6)) | |
7197 | async_submit = 0; | |
7198 | else | |
7199 | async_submit = 1; | |
7200 | ||
02f57c7a JB |
7201 | bio = btrfs_dio_bio_alloc(orig_bio->bi_bdev, start_sector, GFP_NOFS); |
7202 | if (!bio) | |
7203 | return -ENOMEM; | |
7204 | bio->bi_private = dip; | |
7205 | bio->bi_end_io = btrfs_end_dio_bio; | |
7206 | atomic_inc(&dip->pending_bios); | |
7207 | ||
e65e1535 MX |
7208 | while (bvec <= (orig_bio->bi_io_vec + orig_bio->bi_vcnt - 1)) { |
7209 | if (unlikely(map_length < submit_len + bvec->bv_len || | |
7210 | bio_add_page(bio, bvec->bv_page, bvec->bv_len, | |
7211 | bvec->bv_offset) < bvec->bv_len)) { | |
7212 | /* | |
7213 | * inc the count before we submit the bio so | |
7214 | * we know the end IO handler won't happen before | |
7215 | * we inc the count. Otherwise, the dip might get freed | |
7216 | * before we're done setting it up | |
7217 | */ | |
7218 | atomic_inc(&dip->pending_bios); | |
7219 | ret = __btrfs_submit_dio_bio(bio, inode, rw, | |
7220 | file_offset, skip_sum, | |
c329861d | 7221 | async_submit); |
e65e1535 MX |
7222 | if (ret) { |
7223 | bio_put(bio); | |
7224 | atomic_dec(&dip->pending_bios); | |
7225 | goto out_err; | |
7226 | } | |
7227 | ||
e65e1535 MX |
7228 | start_sector += submit_len >> 9; |
7229 | file_offset += submit_len; | |
7230 | ||
7231 | submit_len = 0; | |
7232 | nr_pages = 0; | |
7233 | ||
7234 | bio = btrfs_dio_bio_alloc(orig_bio->bi_bdev, | |
7235 | start_sector, GFP_NOFS); | |
7236 | if (!bio) | |
7237 | goto out_err; | |
7238 | bio->bi_private = dip; | |
7239 | bio->bi_end_io = btrfs_end_dio_bio; | |
7240 | ||
7241 | map_length = orig_bio->bi_size; | |
53b381b3 | 7242 | ret = btrfs_map_block(root->fs_info, rw, |
3ec706c8 | 7243 | start_sector << 9, |
e65e1535 MX |
7244 | &map_length, NULL, 0); |
7245 | if (ret) { | |
7246 | bio_put(bio); | |
7247 | goto out_err; | |
7248 | } | |
7249 | } else { | |
7250 | submit_len += bvec->bv_len; | |
67871254 | 7251 | nr_pages++; |
e65e1535 MX |
7252 | bvec++; |
7253 | } | |
7254 | } | |
7255 | ||
02f57c7a | 7256 | submit: |
e65e1535 | 7257 | ret = __btrfs_submit_dio_bio(bio, inode, rw, file_offset, skip_sum, |
c329861d | 7258 | async_submit); |
e65e1535 MX |
7259 | if (!ret) |
7260 | return 0; | |
7261 | ||
7262 | bio_put(bio); | |
7263 | out_err: | |
7264 | dip->errors = 1; | |
7265 | /* | |
7266 | * before atomic variable goto zero, we must | |
7267 | * make sure dip->errors is perceived to be set. | |
7268 | */ | |
7269 | smp_mb__before_atomic_dec(); | |
7270 | if (atomic_dec_and_test(&dip->pending_bios)) | |
7271 | bio_io_error(dip->orig_bio); | |
7272 | ||
7273 | /* bio_end_io() will handle error, so we needn't return it */ | |
7274 | return 0; | |
7275 | } | |
7276 | ||
9be3395b CM |
7277 | static void btrfs_submit_direct(int rw, struct bio *dio_bio, |
7278 | struct inode *inode, loff_t file_offset) | |
4b46fce2 JB |
7279 | { |
7280 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
7281 | struct btrfs_dio_private *dip; | |
9be3395b | 7282 | struct bio *io_bio; |
4b46fce2 | 7283 | int skip_sum; |
facc8a22 | 7284 | int sum_len; |
7b6d91da | 7285 | int write = rw & REQ_WRITE; |
4b46fce2 | 7286 | int ret = 0; |
facc8a22 | 7287 | u16 csum_size; |
4b46fce2 JB |
7288 | |
7289 | skip_sum = BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM; | |
7290 | ||
9be3395b | 7291 | io_bio = btrfs_bio_clone(dio_bio, GFP_NOFS); |
9be3395b CM |
7292 | if (!io_bio) { |
7293 | ret = -ENOMEM; | |
7294 | goto free_ordered; | |
7295 | } | |
7296 | ||
facc8a22 MX |
7297 | if (!skip_sum && !write) { |
7298 | csum_size = btrfs_super_csum_size(root->fs_info->super_copy); | |
7299 | sum_len = dio_bio->bi_size >> inode->i_sb->s_blocksize_bits; | |
7300 | sum_len *= csum_size; | |
7301 | } else { | |
7302 | sum_len = 0; | |
7303 | } | |
7304 | ||
7305 | dip = kmalloc(sizeof(*dip) + sum_len, GFP_NOFS); | |
4b46fce2 JB |
7306 | if (!dip) { |
7307 | ret = -ENOMEM; | |
9be3395b | 7308 | goto free_io_bio; |
4b46fce2 | 7309 | } |
4b46fce2 | 7310 | |
9be3395b | 7311 | dip->private = dio_bio->bi_private; |
4b46fce2 JB |
7312 | dip->inode = inode; |
7313 | dip->logical_offset = file_offset; | |
e6da5d2e | 7314 | dip->bytes = dio_bio->bi_size; |
9be3395b CM |
7315 | dip->disk_bytenr = (u64)dio_bio->bi_sector << 9; |
7316 | io_bio->bi_private = dip; | |
e65e1535 | 7317 | dip->errors = 0; |
9be3395b CM |
7318 | dip->orig_bio = io_bio; |
7319 | dip->dio_bio = dio_bio; | |
e65e1535 | 7320 | atomic_set(&dip->pending_bios, 0); |
4b46fce2 JB |
7321 | |
7322 | if (write) | |
9be3395b | 7323 | io_bio->bi_end_io = btrfs_endio_direct_write; |
4b46fce2 | 7324 | else |
9be3395b | 7325 | io_bio->bi_end_io = btrfs_endio_direct_read; |
4b46fce2 | 7326 | |
e65e1535 MX |
7327 | ret = btrfs_submit_direct_hook(rw, dip, skip_sum); |
7328 | if (!ret) | |
eaf25d93 | 7329 | return; |
9be3395b CM |
7330 | |
7331 | free_io_bio: | |
7332 | bio_put(io_bio); | |
7333 | ||
4b46fce2 JB |
7334 | free_ordered: |
7335 | /* | |
7336 | * If this is a write, we need to clean up the reserved space and kill | |
7337 | * the ordered extent. | |
7338 | */ | |
7339 | if (write) { | |
7340 | struct btrfs_ordered_extent *ordered; | |
955256f2 | 7341 | ordered = btrfs_lookup_ordered_extent(inode, file_offset); |
4b46fce2 JB |
7342 | if (!test_bit(BTRFS_ORDERED_PREALLOC, &ordered->flags) && |
7343 | !test_bit(BTRFS_ORDERED_NOCOW, &ordered->flags)) | |
7344 | btrfs_free_reserved_extent(root, ordered->start, | |
7345 | ordered->disk_len); | |
7346 | btrfs_put_ordered_extent(ordered); | |
7347 | btrfs_put_ordered_extent(ordered); | |
7348 | } | |
9be3395b | 7349 | bio_endio(dio_bio, ret); |
4b46fce2 JB |
7350 | } |
7351 | ||
5a5f79b5 CM |
7352 | static ssize_t check_direct_IO(struct btrfs_root *root, int rw, struct kiocb *iocb, |
7353 | const struct iovec *iov, loff_t offset, | |
7354 | unsigned long nr_segs) | |
7355 | { | |
7356 | int seg; | |
a1b75f7d | 7357 | int i; |
5a5f79b5 CM |
7358 | size_t size; |
7359 | unsigned long addr; | |
7360 | unsigned blocksize_mask = root->sectorsize - 1; | |
7361 | ssize_t retval = -EINVAL; | |
7362 | loff_t end = offset; | |
7363 | ||
7364 | if (offset & blocksize_mask) | |
7365 | goto out; | |
7366 | ||
7367 | /* Check the memory alignment. Blocks cannot straddle pages */ | |
7368 | for (seg = 0; seg < nr_segs; seg++) { | |
7369 | addr = (unsigned long)iov[seg].iov_base; | |
7370 | size = iov[seg].iov_len; | |
7371 | end += size; | |
a1b75f7d | 7372 | if ((addr & blocksize_mask) || (size & blocksize_mask)) |
5a5f79b5 | 7373 | goto out; |
a1b75f7d JB |
7374 | |
7375 | /* If this is a write we don't need to check anymore */ | |
7376 | if (rw & WRITE) | |
7377 | continue; | |
7378 | ||
7379 | /* | |
7380 | * Check to make sure we don't have duplicate iov_base's in this | |
7381 | * iovec, if so return EINVAL, otherwise we'll get csum errors | |
7382 | * when reading back. | |
7383 | */ | |
7384 | for (i = seg + 1; i < nr_segs; i++) { | |
7385 | if (iov[seg].iov_base == iov[i].iov_base) | |
7386 | goto out; | |
7387 | } | |
5a5f79b5 CM |
7388 | } |
7389 | retval = 0; | |
7390 | out: | |
7391 | return retval; | |
7392 | } | |
eb838e73 | 7393 | |
16432985 CM |
7394 | static ssize_t btrfs_direct_IO(int rw, struct kiocb *iocb, |
7395 | const struct iovec *iov, loff_t offset, | |
7396 | unsigned long nr_segs) | |
7397 | { | |
4b46fce2 JB |
7398 | struct file *file = iocb->ki_filp; |
7399 | struct inode *inode = file->f_mapping->host; | |
0934856d | 7400 | size_t count = 0; |
2e60a51e | 7401 | int flags = 0; |
38851cc1 MX |
7402 | bool wakeup = true; |
7403 | bool relock = false; | |
0934856d | 7404 | ssize_t ret; |
4b46fce2 | 7405 | |
5a5f79b5 | 7406 | if (check_direct_IO(BTRFS_I(inode)->root, rw, iocb, iov, |
eb838e73 | 7407 | offset, nr_segs)) |
5a5f79b5 | 7408 | return 0; |
3f7c579c | 7409 | |
38851cc1 MX |
7410 | atomic_inc(&inode->i_dio_count); |
7411 | smp_mb__after_atomic_inc(); | |
7412 | ||
0e267c44 JB |
7413 | /* |
7414 | * The generic stuff only does filemap_write_and_wait_range, which isn't | |
7415 | * enough if we've written compressed pages to this area, so we need to | |
7416 | * call btrfs_wait_ordered_range to make absolutely sure that any | |
7417 | * outstanding dirty pages are on disk. | |
7418 | */ | |
7419 | count = iov_length(iov, nr_segs); | |
0ef8b726 JB |
7420 | ret = btrfs_wait_ordered_range(inode, offset, count); |
7421 | if (ret) | |
7422 | return ret; | |
0e267c44 | 7423 | |
0934856d | 7424 | if (rw & WRITE) { |
38851cc1 MX |
7425 | /* |
7426 | * If the write DIO is beyond the EOF, we need update | |
7427 | * the isize, but it is protected by i_mutex. So we can | |
7428 | * not unlock the i_mutex at this case. | |
7429 | */ | |
7430 | if (offset + count <= inode->i_size) { | |
7431 | mutex_unlock(&inode->i_mutex); | |
7432 | relock = true; | |
7433 | } | |
0934856d MX |
7434 | ret = btrfs_delalloc_reserve_space(inode, count); |
7435 | if (ret) | |
38851cc1 MX |
7436 | goto out; |
7437 | } else if (unlikely(test_bit(BTRFS_INODE_READDIO_NEED_LOCK, | |
7438 | &BTRFS_I(inode)->runtime_flags))) { | |
7439 | inode_dio_done(inode); | |
7440 | flags = DIO_LOCKING | DIO_SKIP_HOLES; | |
7441 | wakeup = false; | |
0934856d MX |
7442 | } |
7443 | ||
7444 | ret = __blockdev_direct_IO(rw, iocb, inode, | |
7445 | BTRFS_I(inode)->root->fs_info->fs_devices->latest_bdev, | |
7446 | iov, offset, nr_segs, btrfs_get_blocks_direct, NULL, | |
2e60a51e | 7447 | btrfs_submit_direct, flags); |
0934856d MX |
7448 | if (rw & WRITE) { |
7449 | if (ret < 0 && ret != -EIOCBQUEUED) | |
7450 | btrfs_delalloc_release_space(inode, count); | |
172a5049 | 7451 | else if (ret >= 0 && (size_t)ret < count) |
0934856d MX |
7452 | btrfs_delalloc_release_space(inode, |
7453 | count - (size_t)ret); | |
172a5049 MX |
7454 | else |
7455 | btrfs_delalloc_release_metadata(inode, 0); | |
0934856d | 7456 | } |
38851cc1 | 7457 | out: |
2e60a51e MX |
7458 | if (wakeup) |
7459 | inode_dio_done(inode); | |
38851cc1 MX |
7460 | if (relock) |
7461 | mutex_lock(&inode->i_mutex); | |
0934856d MX |
7462 | |
7463 | return ret; | |
16432985 CM |
7464 | } |
7465 | ||
05dadc09 TI |
7466 | #define BTRFS_FIEMAP_FLAGS (FIEMAP_FLAG_SYNC) |
7467 | ||
1506fcc8 YS |
7468 | static int btrfs_fiemap(struct inode *inode, struct fiemap_extent_info *fieinfo, |
7469 | __u64 start, __u64 len) | |
7470 | { | |
05dadc09 TI |
7471 | int ret; |
7472 | ||
7473 | ret = fiemap_check_flags(fieinfo, BTRFS_FIEMAP_FLAGS); | |
7474 | if (ret) | |
7475 | return ret; | |
7476 | ||
ec29ed5b | 7477 | return extent_fiemap(inode, fieinfo, start, len, btrfs_get_extent_fiemap); |
1506fcc8 YS |
7478 | } |
7479 | ||
a52d9a80 | 7480 | int btrfs_readpage(struct file *file, struct page *page) |
9ebefb18 | 7481 | { |
d1310b2e CM |
7482 | struct extent_io_tree *tree; |
7483 | tree = &BTRFS_I(page->mapping->host)->io_tree; | |
8ddc7d9c | 7484 | return extent_read_full_page(tree, page, btrfs_get_extent, 0); |
9ebefb18 | 7485 | } |
1832a6d5 | 7486 | |
a52d9a80 | 7487 | static int btrfs_writepage(struct page *page, struct writeback_control *wbc) |
39279cc3 | 7488 | { |
d1310b2e | 7489 | struct extent_io_tree *tree; |
b888db2b CM |
7490 | |
7491 | ||
7492 | if (current->flags & PF_MEMALLOC) { | |
7493 | redirty_page_for_writepage(wbc, page); | |
7494 | unlock_page(page); | |
7495 | return 0; | |
7496 | } | |
d1310b2e | 7497 | tree = &BTRFS_I(page->mapping->host)->io_tree; |
a52d9a80 | 7498 | return extent_write_full_page(tree, page, btrfs_get_extent, wbc); |
9ebefb18 CM |
7499 | } |
7500 | ||
48a3b636 ES |
7501 | static int btrfs_writepages(struct address_space *mapping, |
7502 | struct writeback_control *wbc) | |
b293f02e | 7503 | { |
d1310b2e | 7504 | struct extent_io_tree *tree; |
771ed689 | 7505 | |
d1310b2e | 7506 | tree = &BTRFS_I(mapping->host)->io_tree; |
b293f02e CM |
7507 | return extent_writepages(tree, mapping, btrfs_get_extent, wbc); |
7508 | } | |
7509 | ||
3ab2fb5a CM |
7510 | static int |
7511 | btrfs_readpages(struct file *file, struct address_space *mapping, | |
7512 | struct list_head *pages, unsigned nr_pages) | |
7513 | { | |
d1310b2e CM |
7514 | struct extent_io_tree *tree; |
7515 | tree = &BTRFS_I(mapping->host)->io_tree; | |
3ab2fb5a CM |
7516 | return extent_readpages(tree, mapping, pages, nr_pages, |
7517 | btrfs_get_extent); | |
7518 | } | |
e6dcd2dc | 7519 | static int __btrfs_releasepage(struct page *page, gfp_t gfp_flags) |
9ebefb18 | 7520 | { |
d1310b2e CM |
7521 | struct extent_io_tree *tree; |
7522 | struct extent_map_tree *map; | |
a52d9a80 | 7523 | int ret; |
8c2383c3 | 7524 | |
d1310b2e CM |
7525 | tree = &BTRFS_I(page->mapping->host)->io_tree; |
7526 | map = &BTRFS_I(page->mapping->host)->extent_tree; | |
70dec807 | 7527 | ret = try_release_extent_mapping(map, tree, page, gfp_flags); |
a52d9a80 CM |
7528 | if (ret == 1) { |
7529 | ClearPagePrivate(page); | |
7530 | set_page_private(page, 0); | |
7531 | page_cache_release(page); | |
39279cc3 | 7532 | } |
a52d9a80 | 7533 | return ret; |
39279cc3 CM |
7534 | } |
7535 | ||
e6dcd2dc CM |
7536 | static int btrfs_releasepage(struct page *page, gfp_t gfp_flags) |
7537 | { | |
98509cfc CM |
7538 | if (PageWriteback(page) || PageDirty(page)) |
7539 | return 0; | |
b335b003 | 7540 | return __btrfs_releasepage(page, gfp_flags & GFP_NOFS); |
e6dcd2dc CM |
7541 | } |
7542 | ||
d47992f8 LC |
7543 | static void btrfs_invalidatepage(struct page *page, unsigned int offset, |
7544 | unsigned int length) | |
39279cc3 | 7545 | { |
5fd02043 | 7546 | struct inode *inode = page->mapping->host; |
d1310b2e | 7547 | struct extent_io_tree *tree; |
e6dcd2dc | 7548 | struct btrfs_ordered_extent *ordered; |
2ac55d41 | 7549 | struct extent_state *cached_state = NULL; |
e6dcd2dc CM |
7550 | u64 page_start = page_offset(page); |
7551 | u64 page_end = page_start + PAGE_CACHE_SIZE - 1; | |
131e404a | 7552 | int inode_evicting = inode->i_state & I_FREEING; |
39279cc3 | 7553 | |
8b62b72b CM |
7554 | /* |
7555 | * we have the page locked, so new writeback can't start, | |
7556 | * and the dirty bit won't be cleared while we are here. | |
7557 | * | |
7558 | * Wait for IO on this page so that we can safely clear | |
7559 | * the PagePrivate2 bit and do ordered accounting | |
7560 | */ | |
e6dcd2dc | 7561 | wait_on_page_writeback(page); |
8b62b72b | 7562 | |
5fd02043 | 7563 | tree = &BTRFS_I(inode)->io_tree; |
e6dcd2dc CM |
7564 | if (offset) { |
7565 | btrfs_releasepage(page, GFP_NOFS); | |
7566 | return; | |
7567 | } | |
131e404a FDBM |
7568 | |
7569 | if (!inode_evicting) | |
7570 | lock_extent_bits(tree, page_start, page_end, 0, &cached_state); | |
7571 | ordered = btrfs_lookup_ordered_extent(inode, page_start); | |
e6dcd2dc | 7572 | if (ordered) { |
eb84ae03 CM |
7573 | /* |
7574 | * IO on this page will never be started, so we need | |
7575 | * to account for any ordered extents now | |
7576 | */ | |
131e404a FDBM |
7577 | if (!inode_evicting) |
7578 | clear_extent_bit(tree, page_start, page_end, | |
7579 | EXTENT_DIRTY | EXTENT_DELALLOC | | |
7580 | EXTENT_LOCKED | EXTENT_DO_ACCOUNTING | | |
7581 | EXTENT_DEFRAG, 1, 0, &cached_state, | |
7582 | GFP_NOFS); | |
8b62b72b CM |
7583 | /* |
7584 | * whoever cleared the private bit is responsible | |
7585 | * for the finish_ordered_io | |
7586 | */ | |
77cef2ec JB |
7587 | if (TestClearPagePrivate2(page)) { |
7588 | struct btrfs_ordered_inode_tree *tree; | |
7589 | u64 new_len; | |
7590 | ||
7591 | tree = &BTRFS_I(inode)->ordered_tree; | |
7592 | ||
7593 | spin_lock_irq(&tree->lock); | |
7594 | set_bit(BTRFS_ORDERED_TRUNCATED, &ordered->flags); | |
7595 | new_len = page_start - ordered->file_offset; | |
7596 | if (new_len < ordered->truncated_len) | |
7597 | ordered->truncated_len = new_len; | |
7598 | spin_unlock_irq(&tree->lock); | |
7599 | ||
7600 | if (btrfs_dec_test_ordered_pending(inode, &ordered, | |
7601 | page_start, | |
7602 | PAGE_CACHE_SIZE, 1)) | |
7603 | btrfs_finish_ordered_io(ordered); | |
8b62b72b | 7604 | } |
e6dcd2dc | 7605 | btrfs_put_ordered_extent(ordered); |
131e404a FDBM |
7606 | if (!inode_evicting) { |
7607 | cached_state = NULL; | |
7608 | lock_extent_bits(tree, page_start, page_end, 0, | |
7609 | &cached_state); | |
7610 | } | |
7611 | } | |
7612 | ||
7613 | if (!inode_evicting) { | |
7614 | clear_extent_bit(tree, page_start, page_end, | |
7615 | EXTENT_LOCKED | EXTENT_DIRTY | | |
7616 | EXTENT_DELALLOC | EXTENT_DO_ACCOUNTING | | |
7617 | EXTENT_DEFRAG, 1, 1, | |
7618 | &cached_state, GFP_NOFS); | |
7619 | ||
7620 | __btrfs_releasepage(page, GFP_NOFS); | |
e6dcd2dc | 7621 | } |
e6dcd2dc | 7622 | |
4a096752 | 7623 | ClearPageChecked(page); |
9ad6b7bc | 7624 | if (PagePrivate(page)) { |
9ad6b7bc CM |
7625 | ClearPagePrivate(page); |
7626 | set_page_private(page, 0); | |
7627 | page_cache_release(page); | |
7628 | } | |
39279cc3 CM |
7629 | } |
7630 | ||
9ebefb18 CM |
7631 | /* |
7632 | * btrfs_page_mkwrite() is not allowed to change the file size as it gets | |
7633 | * called from a page fault handler when a page is first dirtied. Hence we must | |
7634 | * be careful to check for EOF conditions here. We set the page up correctly | |
7635 | * for a written page which means we get ENOSPC checking when writing into | |
7636 | * holes and correct delalloc and unwritten extent mapping on filesystems that | |
7637 | * support these features. | |
7638 | * | |
7639 | * We are not allowed to take the i_mutex here so we have to play games to | |
7640 | * protect against truncate races as the page could now be beyond EOF. Because | |
7641 | * vmtruncate() writes the inode size before removing pages, once we have the | |
7642 | * page lock we can determine safely if the page is beyond EOF. If it is not | |
7643 | * beyond EOF, then the page is guaranteed safe against truncation until we | |
7644 | * unlock the page. | |
7645 | */ | |
c2ec175c | 7646 | int btrfs_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf) |
9ebefb18 | 7647 | { |
c2ec175c | 7648 | struct page *page = vmf->page; |
496ad9aa | 7649 | struct inode *inode = file_inode(vma->vm_file); |
1832a6d5 | 7650 | struct btrfs_root *root = BTRFS_I(inode)->root; |
e6dcd2dc CM |
7651 | struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree; |
7652 | struct btrfs_ordered_extent *ordered; | |
2ac55d41 | 7653 | struct extent_state *cached_state = NULL; |
e6dcd2dc CM |
7654 | char *kaddr; |
7655 | unsigned long zero_start; | |
9ebefb18 | 7656 | loff_t size; |
1832a6d5 | 7657 | int ret; |
9998eb70 | 7658 | int reserved = 0; |
a52d9a80 | 7659 | u64 page_start; |
e6dcd2dc | 7660 | u64 page_end; |
9ebefb18 | 7661 | |
b2b5ef5c | 7662 | sb_start_pagefault(inode->i_sb); |
0ca1f7ce | 7663 | ret = btrfs_delalloc_reserve_space(inode, PAGE_CACHE_SIZE); |
9998eb70 | 7664 | if (!ret) { |
e41f941a | 7665 | ret = file_update_time(vma->vm_file); |
9998eb70 CM |
7666 | reserved = 1; |
7667 | } | |
56a76f82 NP |
7668 | if (ret) { |
7669 | if (ret == -ENOMEM) | |
7670 | ret = VM_FAULT_OOM; | |
7671 | else /* -ENOSPC, -EIO, etc */ | |
7672 | ret = VM_FAULT_SIGBUS; | |
9998eb70 CM |
7673 | if (reserved) |
7674 | goto out; | |
7675 | goto out_noreserve; | |
56a76f82 | 7676 | } |
1832a6d5 | 7677 | |
56a76f82 | 7678 | ret = VM_FAULT_NOPAGE; /* make the VM retry the fault */ |
e6dcd2dc | 7679 | again: |
9ebefb18 | 7680 | lock_page(page); |
9ebefb18 | 7681 | size = i_size_read(inode); |
e6dcd2dc CM |
7682 | page_start = page_offset(page); |
7683 | page_end = page_start + PAGE_CACHE_SIZE - 1; | |
a52d9a80 | 7684 | |
9ebefb18 | 7685 | if ((page->mapping != inode->i_mapping) || |
e6dcd2dc | 7686 | (page_start >= size)) { |
9ebefb18 CM |
7687 | /* page got truncated out from underneath us */ |
7688 | goto out_unlock; | |
7689 | } | |
e6dcd2dc CM |
7690 | wait_on_page_writeback(page); |
7691 | ||
d0082371 | 7692 | lock_extent_bits(io_tree, page_start, page_end, 0, &cached_state); |
e6dcd2dc CM |
7693 | set_page_extent_mapped(page); |
7694 | ||
eb84ae03 CM |
7695 | /* |
7696 | * we can't set the delalloc bits if there are pending ordered | |
7697 | * extents. Drop our locks and wait for them to finish | |
7698 | */ | |
e6dcd2dc CM |
7699 | ordered = btrfs_lookup_ordered_extent(inode, page_start); |
7700 | if (ordered) { | |
2ac55d41 JB |
7701 | unlock_extent_cached(io_tree, page_start, page_end, |
7702 | &cached_state, GFP_NOFS); | |
e6dcd2dc | 7703 | unlock_page(page); |
eb84ae03 | 7704 | btrfs_start_ordered_extent(inode, ordered, 1); |
e6dcd2dc CM |
7705 | btrfs_put_ordered_extent(ordered); |
7706 | goto again; | |
7707 | } | |
7708 | ||
fbf19087 JB |
7709 | /* |
7710 | * XXX - page_mkwrite gets called every time the page is dirtied, even | |
7711 | * if it was already dirty, so for space accounting reasons we need to | |
7712 | * clear any delalloc bits for the range we are fixing to save. There | |
7713 | * is probably a better way to do this, but for now keep consistent with | |
7714 | * prepare_pages in the normal write path. | |
7715 | */ | |
2ac55d41 | 7716 | clear_extent_bit(&BTRFS_I(inode)->io_tree, page_start, page_end, |
9e8a4a8b LB |
7717 | EXTENT_DIRTY | EXTENT_DELALLOC | |
7718 | EXTENT_DO_ACCOUNTING | EXTENT_DEFRAG, | |
2ac55d41 | 7719 | 0, 0, &cached_state, GFP_NOFS); |
fbf19087 | 7720 | |
2ac55d41 JB |
7721 | ret = btrfs_set_extent_delalloc(inode, page_start, page_end, |
7722 | &cached_state); | |
9ed74f2d | 7723 | if (ret) { |
2ac55d41 JB |
7724 | unlock_extent_cached(io_tree, page_start, page_end, |
7725 | &cached_state, GFP_NOFS); | |
9ed74f2d JB |
7726 | ret = VM_FAULT_SIGBUS; |
7727 | goto out_unlock; | |
7728 | } | |
e6dcd2dc | 7729 | ret = 0; |
9ebefb18 CM |
7730 | |
7731 | /* page is wholly or partially inside EOF */ | |
a52d9a80 | 7732 | if (page_start + PAGE_CACHE_SIZE > size) |
e6dcd2dc | 7733 | zero_start = size & ~PAGE_CACHE_MASK; |
9ebefb18 | 7734 | else |
e6dcd2dc | 7735 | zero_start = PAGE_CACHE_SIZE; |
9ebefb18 | 7736 | |
e6dcd2dc CM |
7737 | if (zero_start != PAGE_CACHE_SIZE) { |
7738 | kaddr = kmap(page); | |
7739 | memset(kaddr + zero_start, 0, PAGE_CACHE_SIZE - zero_start); | |
7740 | flush_dcache_page(page); | |
7741 | kunmap(page); | |
7742 | } | |
247e743c | 7743 | ClearPageChecked(page); |
e6dcd2dc | 7744 | set_page_dirty(page); |
50a9b214 | 7745 | SetPageUptodate(page); |
5a3f23d5 | 7746 | |
257c62e1 CM |
7747 | BTRFS_I(inode)->last_trans = root->fs_info->generation; |
7748 | BTRFS_I(inode)->last_sub_trans = BTRFS_I(inode)->root->log_transid; | |
46d8bc34 | 7749 | BTRFS_I(inode)->last_log_commit = BTRFS_I(inode)->root->last_log_commit; |
257c62e1 | 7750 | |
2ac55d41 | 7751 | unlock_extent_cached(io_tree, page_start, page_end, &cached_state, GFP_NOFS); |
9ebefb18 CM |
7752 | |
7753 | out_unlock: | |
b2b5ef5c JK |
7754 | if (!ret) { |
7755 | sb_end_pagefault(inode->i_sb); | |
50a9b214 | 7756 | return VM_FAULT_LOCKED; |
b2b5ef5c | 7757 | } |
9ebefb18 | 7758 | unlock_page(page); |
1832a6d5 | 7759 | out: |
ec39e180 | 7760 | btrfs_delalloc_release_space(inode, PAGE_CACHE_SIZE); |
9998eb70 | 7761 | out_noreserve: |
b2b5ef5c | 7762 | sb_end_pagefault(inode->i_sb); |
9ebefb18 CM |
7763 | return ret; |
7764 | } | |
7765 | ||
a41ad394 | 7766 | static int btrfs_truncate(struct inode *inode) |
39279cc3 CM |
7767 | { |
7768 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
fcb80c2a | 7769 | struct btrfs_block_rsv *rsv; |
a71754fc | 7770 | int ret = 0; |
3893e33b | 7771 | int err = 0; |
39279cc3 | 7772 | struct btrfs_trans_handle *trans; |
dbe674a9 | 7773 | u64 mask = root->sectorsize - 1; |
07127184 | 7774 | u64 min_size = btrfs_calc_trunc_metadata_size(root, 1); |
39279cc3 | 7775 | |
0ef8b726 JB |
7776 | ret = btrfs_wait_ordered_range(inode, inode->i_size & (~mask), |
7777 | (u64)-1); | |
7778 | if (ret) | |
7779 | return ret; | |
39279cc3 | 7780 | |
fcb80c2a JB |
7781 | /* |
7782 | * Yes ladies and gentelment, this is indeed ugly. The fact is we have | |
7783 | * 3 things going on here | |
7784 | * | |
7785 | * 1) We need to reserve space for our orphan item and the space to | |
7786 | * delete our orphan item. Lord knows we don't want to have a dangling | |
7787 | * orphan item because we didn't reserve space to remove it. | |
7788 | * | |
7789 | * 2) We need to reserve space to update our inode. | |
7790 | * | |
7791 | * 3) We need to have something to cache all the space that is going to | |
7792 | * be free'd up by the truncate operation, but also have some slack | |
7793 | * space reserved in case it uses space during the truncate (thank you | |
7794 | * very much snapshotting). | |
7795 | * | |
7796 | * And we need these to all be seperate. The fact is we can use alot of | |
7797 | * space doing the truncate, and we have no earthly idea how much space | |
7798 | * we will use, so we need the truncate reservation to be seperate so it | |
7799 | * doesn't end up using space reserved for updating the inode or | |
7800 | * removing the orphan item. We also need to be able to stop the | |
7801 | * transaction and start a new one, which means we need to be able to | |
7802 | * update the inode several times, and we have no idea of knowing how | |
7803 | * many times that will be, so we can't just reserve 1 item for the | |
7804 | * entirety of the opration, so that has to be done seperately as well. | |
7805 | * Then there is the orphan item, which does indeed need to be held on | |
7806 | * to for the whole operation, and we need nobody to touch this reserved | |
7807 | * space except the orphan code. | |
7808 | * | |
7809 | * So that leaves us with | |
7810 | * | |
7811 | * 1) root->orphan_block_rsv - for the orphan deletion. | |
7812 | * 2) rsv - for the truncate reservation, which we will steal from the | |
7813 | * transaction reservation. | |
7814 | * 3) fs_info->trans_block_rsv - this will have 1 items worth left for | |
7815 | * updating the inode. | |
7816 | */ | |
66d8f3dd | 7817 | rsv = btrfs_alloc_block_rsv(root, BTRFS_BLOCK_RSV_TEMP); |
fcb80c2a JB |
7818 | if (!rsv) |
7819 | return -ENOMEM; | |
4a338542 | 7820 | rsv->size = min_size; |
ca7e70f5 | 7821 | rsv->failfast = 1; |
f0cd846e | 7822 | |
907cbceb | 7823 | /* |
07127184 | 7824 | * 1 for the truncate slack space |
907cbceb JB |
7825 | * 1 for updating the inode. |
7826 | */ | |
f3fe820c | 7827 | trans = btrfs_start_transaction(root, 2); |
fcb80c2a JB |
7828 | if (IS_ERR(trans)) { |
7829 | err = PTR_ERR(trans); | |
7830 | goto out; | |
7831 | } | |
f0cd846e | 7832 | |
907cbceb JB |
7833 | /* Migrate the slack space for the truncate to our reserve */ |
7834 | ret = btrfs_block_rsv_migrate(&root->fs_info->trans_block_rsv, rsv, | |
7835 | min_size); | |
fcb80c2a | 7836 | BUG_ON(ret); |
f0cd846e | 7837 | |
5a3f23d5 CM |
7838 | /* |
7839 | * setattr is responsible for setting the ordered_data_close flag, | |
7840 | * but that is only tested during the last file release. That | |
7841 | * could happen well after the next commit, leaving a great big | |
7842 | * window where new writes may get lost if someone chooses to write | |
7843 | * to this file after truncating to zero | |
7844 | * | |
7845 | * The inode doesn't have any dirty data here, and so if we commit | |
7846 | * this is a noop. If someone immediately starts writing to the inode | |
7847 | * it is very likely we'll catch some of their writes in this | |
7848 | * transaction, and the commit will find this file on the ordered | |
7849 | * data list with good things to send down. | |
7850 | * | |
7851 | * This is a best effort solution, there is still a window where | |
7852 | * using truncate to replace the contents of the file will | |
7853 | * end up with a zero length file after a crash. | |
7854 | */ | |
72ac3c0d JB |
7855 | if (inode->i_size == 0 && test_bit(BTRFS_INODE_ORDERED_DATA_CLOSE, |
7856 | &BTRFS_I(inode)->runtime_flags)) | |
5a3f23d5 CM |
7857 | btrfs_add_ordered_operation(trans, root, inode); |
7858 | ||
5dc562c5 JB |
7859 | /* |
7860 | * So if we truncate and then write and fsync we normally would just | |
7861 | * write the extents that changed, which is a problem if we need to | |
7862 | * first truncate that entire inode. So set this flag so we write out | |
7863 | * all of the extents in the inode to the sync log so we're completely | |
7864 | * safe. | |
7865 | */ | |
7866 | set_bit(BTRFS_INODE_NEEDS_FULL_SYNC, &BTRFS_I(inode)->runtime_flags); | |
ca7e70f5 | 7867 | trans->block_rsv = rsv; |
907cbceb | 7868 | |
8082510e YZ |
7869 | while (1) { |
7870 | ret = btrfs_truncate_inode_items(trans, root, inode, | |
7871 | inode->i_size, | |
7872 | BTRFS_EXTENT_DATA_KEY); | |
ca7e70f5 | 7873 | if (ret != -ENOSPC) { |
3893e33b | 7874 | err = ret; |
8082510e | 7875 | break; |
3893e33b | 7876 | } |
39279cc3 | 7877 | |
fcb80c2a | 7878 | trans->block_rsv = &root->fs_info->trans_block_rsv; |
8082510e | 7879 | ret = btrfs_update_inode(trans, root, inode); |
3893e33b JB |
7880 | if (ret) { |
7881 | err = ret; | |
7882 | break; | |
7883 | } | |
ca7e70f5 | 7884 | |
8082510e | 7885 | btrfs_end_transaction(trans, root); |
b53d3f5d | 7886 | btrfs_btree_balance_dirty(root); |
ca7e70f5 JB |
7887 | |
7888 | trans = btrfs_start_transaction(root, 2); | |
7889 | if (IS_ERR(trans)) { | |
7890 | ret = err = PTR_ERR(trans); | |
7891 | trans = NULL; | |
7892 | break; | |
7893 | } | |
7894 | ||
7895 | ret = btrfs_block_rsv_migrate(&root->fs_info->trans_block_rsv, | |
7896 | rsv, min_size); | |
7897 | BUG_ON(ret); /* shouldn't happen */ | |
7898 | trans->block_rsv = rsv; | |
8082510e YZ |
7899 | } |
7900 | ||
7901 | if (ret == 0 && inode->i_nlink > 0) { | |
fcb80c2a | 7902 | trans->block_rsv = root->orphan_block_rsv; |
8082510e | 7903 | ret = btrfs_orphan_del(trans, inode); |
3893e33b JB |
7904 | if (ret) |
7905 | err = ret; | |
8082510e YZ |
7906 | } |
7907 | ||
917c16b2 CM |
7908 | if (trans) { |
7909 | trans->block_rsv = &root->fs_info->trans_block_rsv; | |
7910 | ret = btrfs_update_inode(trans, root, inode); | |
7911 | if (ret && !err) | |
7912 | err = ret; | |
7b128766 | 7913 | |
7ad85bb7 | 7914 | ret = btrfs_end_transaction(trans, root); |
b53d3f5d | 7915 | btrfs_btree_balance_dirty(root); |
917c16b2 | 7916 | } |
fcb80c2a JB |
7917 | |
7918 | out: | |
7919 | btrfs_free_block_rsv(root, rsv); | |
7920 | ||
3893e33b JB |
7921 | if (ret && !err) |
7922 | err = ret; | |
a41ad394 | 7923 | |
3893e33b | 7924 | return err; |
39279cc3 CM |
7925 | } |
7926 | ||
d352ac68 CM |
7927 | /* |
7928 | * create a new subvolume directory/inode (helper for the ioctl). | |
7929 | */ | |
d2fb3437 | 7930 | int btrfs_create_subvol_root(struct btrfs_trans_handle *trans, |
63541927 FDBM |
7931 | struct btrfs_root *new_root, |
7932 | struct btrfs_root *parent_root, | |
7933 | u64 new_dirid) | |
39279cc3 | 7934 | { |
39279cc3 | 7935 | struct inode *inode; |
76dda93c | 7936 | int err; |
00e4e6b3 | 7937 | u64 index = 0; |
39279cc3 | 7938 | |
12fc9d09 FA |
7939 | inode = btrfs_new_inode(trans, new_root, NULL, "..", 2, |
7940 | new_dirid, new_dirid, | |
7941 | S_IFDIR | (~current_umask() & S_IRWXUGO), | |
7942 | &index); | |
54aa1f4d | 7943 | if (IS_ERR(inode)) |
f46b5a66 | 7944 | return PTR_ERR(inode); |
39279cc3 CM |
7945 | inode->i_op = &btrfs_dir_inode_operations; |
7946 | inode->i_fop = &btrfs_dir_file_operations; | |
7947 | ||
bfe86848 | 7948 | set_nlink(inode, 1); |
dbe674a9 | 7949 | btrfs_i_size_write(inode, 0); |
3b96362c | 7950 | |
63541927 FDBM |
7951 | err = btrfs_subvol_inherit_props(trans, new_root, parent_root); |
7952 | if (err) | |
7953 | btrfs_err(new_root->fs_info, | |
7954 | "error inheriting subvolume %llu properties: %d\n", | |
7955 | new_root->root_key.objectid, err); | |
7956 | ||
76dda93c | 7957 | err = btrfs_update_inode(trans, new_root, inode); |
cb8e7090 | 7958 | |
76dda93c | 7959 | iput(inode); |
ce598979 | 7960 | return err; |
39279cc3 CM |
7961 | } |
7962 | ||
39279cc3 CM |
7963 | struct inode *btrfs_alloc_inode(struct super_block *sb) |
7964 | { | |
7965 | struct btrfs_inode *ei; | |
2ead6ae7 | 7966 | struct inode *inode; |
39279cc3 CM |
7967 | |
7968 | ei = kmem_cache_alloc(btrfs_inode_cachep, GFP_NOFS); | |
7969 | if (!ei) | |
7970 | return NULL; | |
2ead6ae7 YZ |
7971 | |
7972 | ei->root = NULL; | |
2ead6ae7 | 7973 | ei->generation = 0; |
15ee9bc7 | 7974 | ei->last_trans = 0; |
257c62e1 | 7975 | ei->last_sub_trans = 0; |
e02119d5 | 7976 | ei->logged_trans = 0; |
2ead6ae7 | 7977 | ei->delalloc_bytes = 0; |
2ead6ae7 YZ |
7978 | ei->disk_i_size = 0; |
7979 | ei->flags = 0; | |
7709cde3 | 7980 | ei->csum_bytes = 0; |
2ead6ae7 | 7981 | ei->index_cnt = (u64)-1; |
67de1176 | 7982 | ei->dir_index = 0; |
2ead6ae7 | 7983 | ei->last_unlink_trans = 0; |
46d8bc34 | 7984 | ei->last_log_commit = 0; |
2ead6ae7 | 7985 | |
9e0baf60 JB |
7986 | spin_lock_init(&ei->lock); |
7987 | ei->outstanding_extents = 0; | |
7988 | ei->reserved_extents = 0; | |
2ead6ae7 | 7989 | |
72ac3c0d | 7990 | ei->runtime_flags = 0; |
261507a0 | 7991 | ei->force_compress = BTRFS_COMPRESS_NONE; |
2ead6ae7 | 7992 | |
16cdcec7 MX |
7993 | ei->delayed_node = NULL; |
7994 | ||
2ead6ae7 | 7995 | inode = &ei->vfs_inode; |
a8067e02 | 7996 | extent_map_tree_init(&ei->extent_tree); |
f993c883 DS |
7997 | extent_io_tree_init(&ei->io_tree, &inode->i_data); |
7998 | extent_io_tree_init(&ei->io_failure_tree, &inode->i_data); | |
0b32f4bb JB |
7999 | ei->io_tree.track_uptodate = 1; |
8000 | ei->io_failure_tree.track_uptodate = 1; | |
b812ce28 | 8001 | atomic_set(&ei->sync_writers, 0); |
2ead6ae7 | 8002 | mutex_init(&ei->log_mutex); |
f248679e | 8003 | mutex_init(&ei->delalloc_mutex); |
e6dcd2dc | 8004 | btrfs_ordered_inode_tree_init(&ei->ordered_tree); |
2ead6ae7 | 8005 | INIT_LIST_HEAD(&ei->delalloc_inodes); |
5a3f23d5 | 8006 | INIT_LIST_HEAD(&ei->ordered_operations); |
2ead6ae7 YZ |
8007 | RB_CLEAR_NODE(&ei->rb_node); |
8008 | ||
8009 | return inode; | |
39279cc3 CM |
8010 | } |
8011 | ||
aaedb55b JB |
8012 | #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS |
8013 | void btrfs_test_destroy_inode(struct inode *inode) | |
8014 | { | |
8015 | btrfs_drop_extent_cache(inode, 0, (u64)-1, 0); | |
8016 | kmem_cache_free(btrfs_inode_cachep, BTRFS_I(inode)); | |
8017 | } | |
8018 | #endif | |
8019 | ||
fa0d7e3d NP |
8020 | static void btrfs_i_callback(struct rcu_head *head) |
8021 | { | |
8022 | struct inode *inode = container_of(head, struct inode, i_rcu); | |
fa0d7e3d NP |
8023 | kmem_cache_free(btrfs_inode_cachep, BTRFS_I(inode)); |
8024 | } | |
8025 | ||
39279cc3 CM |
8026 | void btrfs_destroy_inode(struct inode *inode) |
8027 | { | |
e6dcd2dc | 8028 | struct btrfs_ordered_extent *ordered; |
5a3f23d5 CM |
8029 | struct btrfs_root *root = BTRFS_I(inode)->root; |
8030 | ||
b3d9b7a3 | 8031 | WARN_ON(!hlist_empty(&inode->i_dentry)); |
39279cc3 | 8032 | WARN_ON(inode->i_data.nrpages); |
9e0baf60 JB |
8033 | WARN_ON(BTRFS_I(inode)->outstanding_extents); |
8034 | WARN_ON(BTRFS_I(inode)->reserved_extents); | |
7709cde3 JB |
8035 | WARN_ON(BTRFS_I(inode)->delalloc_bytes); |
8036 | WARN_ON(BTRFS_I(inode)->csum_bytes); | |
39279cc3 | 8037 | |
a6dbd429 JB |
8038 | /* |
8039 | * This can happen where we create an inode, but somebody else also | |
8040 | * created the same inode and we need to destroy the one we already | |
8041 | * created. | |
8042 | */ | |
8043 | if (!root) | |
8044 | goto free; | |
8045 | ||
5a3f23d5 CM |
8046 | /* |
8047 | * Make sure we're properly removed from the ordered operation | |
8048 | * lists. | |
8049 | */ | |
8050 | smp_mb(); | |
8051 | if (!list_empty(&BTRFS_I(inode)->ordered_operations)) { | |
199c2a9c | 8052 | spin_lock(&root->fs_info->ordered_root_lock); |
5a3f23d5 | 8053 | list_del_init(&BTRFS_I(inode)->ordered_operations); |
199c2a9c | 8054 | spin_unlock(&root->fs_info->ordered_root_lock); |
5a3f23d5 CM |
8055 | } |
8056 | ||
8a35d95f JB |
8057 | if (test_bit(BTRFS_INODE_HAS_ORPHAN_ITEM, |
8058 | &BTRFS_I(inode)->runtime_flags)) { | |
c2cf52eb | 8059 | btrfs_info(root->fs_info, "inode %llu still on the orphan list", |
c1c9ff7c | 8060 | btrfs_ino(inode)); |
8a35d95f | 8061 | atomic_dec(&root->orphan_inodes); |
7b128766 | 8062 | } |
7b128766 | 8063 | |
d397712b | 8064 | while (1) { |
e6dcd2dc CM |
8065 | ordered = btrfs_lookup_first_ordered_extent(inode, (u64)-1); |
8066 | if (!ordered) | |
8067 | break; | |
8068 | else { | |
c2cf52eb | 8069 | btrfs_err(root->fs_info, "found ordered extent %llu %llu on inode cleanup", |
c1c9ff7c | 8070 | ordered->file_offset, ordered->len); |
e6dcd2dc CM |
8071 | btrfs_remove_ordered_extent(inode, ordered); |
8072 | btrfs_put_ordered_extent(ordered); | |
8073 | btrfs_put_ordered_extent(ordered); | |
8074 | } | |
8075 | } | |
5d4f98a2 | 8076 | inode_tree_del(inode); |
5b21f2ed | 8077 | btrfs_drop_extent_cache(inode, 0, (u64)-1, 0); |
a6dbd429 | 8078 | free: |
fa0d7e3d | 8079 | call_rcu(&inode->i_rcu, btrfs_i_callback); |
39279cc3 CM |
8080 | } |
8081 | ||
45321ac5 | 8082 | int btrfs_drop_inode(struct inode *inode) |
76dda93c YZ |
8083 | { |
8084 | struct btrfs_root *root = BTRFS_I(inode)->root; | |
45321ac5 | 8085 | |
6379ef9f NA |
8086 | if (root == NULL) |
8087 | return 1; | |
8088 | ||
fa6ac876 | 8089 | /* the snap/subvol tree is on deleting */ |
69e9c6c6 | 8090 | if (btrfs_root_refs(&root->root_item) == 0) |
45321ac5 | 8091 | return 1; |
76dda93c | 8092 | else |
45321ac5 | 8093 | return generic_drop_inode(inode); |
76dda93c YZ |
8094 | } |
8095 | ||
0ee0fda0 | 8096 | static void init_once(void *foo) |
39279cc3 CM |
8097 | { |
8098 | struct btrfs_inode *ei = (struct btrfs_inode *) foo; | |
8099 | ||
8100 | inode_init_once(&ei->vfs_inode); | |
8101 | } | |
8102 | ||
8103 | void btrfs_destroy_cachep(void) | |
8104 | { | |
8c0a8537 KS |
8105 | /* |
8106 | * Make sure all delayed rcu free inodes are flushed before we | |
8107 | * destroy cache. | |
8108 | */ | |
8109 | rcu_barrier(); | |
39279cc3 CM |
8110 | if (btrfs_inode_cachep) |
8111 | kmem_cache_destroy(btrfs_inode_cachep); | |
8112 | if (btrfs_trans_handle_cachep) | |
8113 | kmem_cache_destroy(btrfs_trans_handle_cachep); | |
8114 | if (btrfs_transaction_cachep) | |
8115 | kmem_cache_destroy(btrfs_transaction_cachep); | |
39279cc3 CM |
8116 | if (btrfs_path_cachep) |
8117 | kmem_cache_destroy(btrfs_path_cachep); | |
dc89e982 JB |
8118 | if (btrfs_free_space_cachep) |
8119 | kmem_cache_destroy(btrfs_free_space_cachep); | |
8ccf6f19 MX |
8120 | if (btrfs_delalloc_work_cachep) |
8121 | kmem_cache_destroy(btrfs_delalloc_work_cachep); | |
39279cc3 CM |
8122 | } |
8123 | ||
8124 | int btrfs_init_cachep(void) | |
8125 | { | |
837e1972 | 8126 | btrfs_inode_cachep = kmem_cache_create("btrfs_inode", |
9601e3f6 CH |
8127 | sizeof(struct btrfs_inode), 0, |
8128 | SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, init_once); | |
39279cc3 CM |
8129 | if (!btrfs_inode_cachep) |
8130 | goto fail; | |
9601e3f6 | 8131 | |
837e1972 | 8132 | btrfs_trans_handle_cachep = kmem_cache_create("btrfs_trans_handle", |
9601e3f6 CH |
8133 | sizeof(struct btrfs_trans_handle), 0, |
8134 | SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL); | |
39279cc3 CM |
8135 | if (!btrfs_trans_handle_cachep) |
8136 | goto fail; | |
9601e3f6 | 8137 | |
837e1972 | 8138 | btrfs_transaction_cachep = kmem_cache_create("btrfs_transaction", |
9601e3f6 CH |
8139 | sizeof(struct btrfs_transaction), 0, |
8140 | SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL); | |
39279cc3 CM |
8141 | if (!btrfs_transaction_cachep) |
8142 | goto fail; | |
9601e3f6 | 8143 | |
837e1972 | 8144 | btrfs_path_cachep = kmem_cache_create("btrfs_path", |
9601e3f6 CH |
8145 | sizeof(struct btrfs_path), 0, |
8146 | SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL); | |
39279cc3 CM |
8147 | if (!btrfs_path_cachep) |
8148 | goto fail; | |
9601e3f6 | 8149 | |
837e1972 | 8150 | btrfs_free_space_cachep = kmem_cache_create("btrfs_free_space", |
dc89e982 JB |
8151 | sizeof(struct btrfs_free_space), 0, |
8152 | SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, NULL); | |
8153 | if (!btrfs_free_space_cachep) | |
8154 | goto fail; | |
8155 | ||
8ccf6f19 MX |
8156 | btrfs_delalloc_work_cachep = kmem_cache_create("btrfs_delalloc_work", |
8157 | sizeof(struct btrfs_delalloc_work), 0, | |
8158 | SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, | |
8159 | NULL); | |
8160 | if (!btrfs_delalloc_work_cachep) | |
8161 | goto fail; | |
8162 | ||
39279cc3 CM |
8163 | return 0; |
8164 | fail: | |
8165 | btrfs_destroy_cachep(); | |
8166 | return -ENOMEM; | |
8167 | } | |
8168 | ||
8169 | static int btrfs_getattr(struct vfsmount *mnt, | |
8170 | struct dentry *dentry, struct kstat *stat) | |
8171 | { | |
df0af1a5 | 8172 | u64 delalloc_bytes; |
39279cc3 | 8173 | struct inode *inode = dentry->d_inode; |
fadc0d8b DS |
8174 | u32 blocksize = inode->i_sb->s_blocksize; |
8175 | ||
39279cc3 | 8176 | generic_fillattr(inode, stat); |
0ee5dc67 | 8177 | stat->dev = BTRFS_I(inode)->root->anon_dev; |
d6667462 | 8178 | stat->blksize = PAGE_CACHE_SIZE; |
df0af1a5 MX |
8179 | |
8180 | spin_lock(&BTRFS_I(inode)->lock); | |
8181 | delalloc_bytes = BTRFS_I(inode)->delalloc_bytes; | |
8182 | spin_unlock(&BTRFS_I(inode)->lock); | |
fadc0d8b | 8183 | stat->blocks = (ALIGN(inode_get_bytes(inode), blocksize) + |
df0af1a5 | 8184 | ALIGN(delalloc_bytes, blocksize)) >> 9; |
39279cc3 CM |
8185 | return 0; |
8186 | } | |
8187 | ||
d397712b CM |
8188 | static int btrfs_rename(struct inode *old_dir, struct dentry *old_dentry, |
8189 | struct inode *new_dir, struct dentry *new_dentry) | |
39279cc3 CM |
8190 | { |
8191 | struct btrfs_trans_handle *trans; | |
8192 | struct btrfs_root *root = BTRFS_I(old_dir)->root; | |
4df27c4d | 8193 | struct btrfs_root *dest = BTRFS_I(new_dir)->root; |
39279cc3 CM |
8194 | struct inode *new_inode = new_dentry->d_inode; |
8195 | struct inode *old_inode = old_dentry->d_inode; | |
8196 | struct timespec ctime = CURRENT_TIME; | |
00e4e6b3 | 8197 | u64 index = 0; |
4df27c4d | 8198 | u64 root_objectid; |
39279cc3 | 8199 | int ret; |
33345d01 | 8200 | u64 old_ino = btrfs_ino(old_inode); |
39279cc3 | 8201 | |
33345d01 | 8202 | if (btrfs_ino(new_dir) == BTRFS_EMPTY_SUBVOL_DIR_OBJECTID) |
f679a840 YZ |
8203 | return -EPERM; |
8204 | ||
4df27c4d | 8205 | /* we only allow rename subvolume link between subvolumes */ |
33345d01 | 8206 | if (old_ino != BTRFS_FIRST_FREE_OBJECTID && root != dest) |
3394e160 CM |
8207 | return -EXDEV; |
8208 | ||
33345d01 LZ |
8209 | if (old_ino == BTRFS_EMPTY_SUBVOL_DIR_OBJECTID || |
8210 | (new_inode && btrfs_ino(new_inode) == BTRFS_FIRST_FREE_OBJECTID)) | |
39279cc3 | 8211 | return -ENOTEMPTY; |
5f39d397 | 8212 | |
4df27c4d YZ |
8213 | if (S_ISDIR(old_inode->i_mode) && new_inode && |
8214 | new_inode->i_size > BTRFS_EMPTY_DIR_SIZE) | |
8215 | return -ENOTEMPTY; | |
9c52057c CM |
8216 | |
8217 | ||
8218 | /* check for collisions, even if the name isn't there */ | |
4871c158 | 8219 | ret = btrfs_check_dir_item_collision(dest, new_dir->i_ino, |
9c52057c CM |
8220 | new_dentry->d_name.name, |
8221 | new_dentry->d_name.len); | |
8222 | ||
8223 | if (ret) { | |
8224 | if (ret == -EEXIST) { | |
8225 | /* we shouldn't get | |
8226 | * eexist without a new_inode */ | |
fae7f21c | 8227 | if (WARN_ON(!new_inode)) { |
9c52057c CM |
8228 | return ret; |
8229 | } | |
8230 | } else { | |
8231 | /* maybe -EOVERFLOW */ | |
8232 | return ret; | |
8233 | } | |
8234 | } | |
8235 | ret = 0; | |
8236 | ||
5a3f23d5 CM |
8237 | /* |
8238 | * we're using rename to replace one file with another. | |
8239 | * and the replacement file is large. Start IO on it now so | |
8240 | * we don't add too much work to the end of the transaction | |
8241 | */ | |
4baf8c92 | 8242 | if (new_inode && S_ISREG(old_inode->i_mode) && new_inode->i_size && |
5a3f23d5 CM |
8243 | old_inode->i_size > BTRFS_ORDERED_OPERATIONS_FLUSH_LIMIT) |
8244 | filemap_flush(old_inode->i_mapping); | |
8245 | ||
76dda93c | 8246 | /* close the racy window with snapshot create/destroy ioctl */ |
33345d01 | 8247 | if (old_ino == BTRFS_FIRST_FREE_OBJECTID) |
76dda93c | 8248 | down_read(&root->fs_info->subvol_sem); |
a22285a6 YZ |
8249 | /* |
8250 | * We want to reserve the absolute worst case amount of items. So if | |
8251 | * both inodes are subvols and we need to unlink them then that would | |
8252 | * require 4 item modifications, but if they are both normal inodes it | |
8253 | * would require 5 item modifications, so we'll assume their normal | |
8254 | * inodes. So 5 * 2 is 10, plus 1 for the new link, so 11 total items | |
8255 | * should cover the worst case number of items we'll modify. | |
8256 | */ | |
6e137ed3 | 8257 | trans = btrfs_start_transaction(root, 11); |
b44c59a8 JL |
8258 | if (IS_ERR(trans)) { |
8259 | ret = PTR_ERR(trans); | |
8260 | goto out_notrans; | |
8261 | } | |
76dda93c | 8262 | |
4df27c4d YZ |
8263 | if (dest != root) |
8264 | btrfs_record_root_in_trans(trans, dest); | |
5f39d397 | 8265 | |
a5719521 YZ |
8266 | ret = btrfs_set_inode_index(new_dir, &index); |
8267 | if (ret) | |
8268 | goto out_fail; | |
5a3f23d5 | 8269 | |
67de1176 | 8270 | BTRFS_I(old_inode)->dir_index = 0ULL; |
33345d01 | 8271 | if (unlikely(old_ino == BTRFS_FIRST_FREE_OBJECTID)) { |
4df27c4d YZ |
8272 | /* force full log commit if subvolume involved. */ |
8273 | root->fs_info->last_trans_log_full_commit = trans->transid; | |
8274 | } else { | |
a5719521 YZ |
8275 | ret = btrfs_insert_inode_ref(trans, dest, |
8276 | new_dentry->d_name.name, | |
8277 | new_dentry->d_name.len, | |
33345d01 LZ |
8278 | old_ino, |
8279 | btrfs_ino(new_dir), index); | |
a5719521 YZ |
8280 | if (ret) |
8281 | goto out_fail; | |
4df27c4d YZ |
8282 | /* |
8283 | * this is an ugly little race, but the rename is required | |
8284 | * to make sure that if we crash, the inode is either at the | |
8285 | * old name or the new one. pinning the log transaction lets | |
8286 | * us make sure we don't allow a log commit to come in after | |
8287 | * we unlink the name but before we add the new name back in. | |
8288 | */ | |
8289 | btrfs_pin_log_trans(root); | |
8290 | } | |
5a3f23d5 CM |
8291 | /* |
8292 | * make sure the inode gets flushed if it is replacing | |
8293 | * something. | |
8294 | */ | |
33345d01 | 8295 | if (new_inode && new_inode->i_size && S_ISREG(old_inode->i_mode)) |
5a3f23d5 | 8296 | btrfs_add_ordered_operation(trans, root, old_inode); |
5a3f23d5 | 8297 | |
0c4d2d95 JB |
8298 | inode_inc_iversion(old_dir); |
8299 | inode_inc_iversion(new_dir); | |
8300 | inode_inc_iversion(old_inode); | |
39279cc3 CM |
8301 | old_dir->i_ctime = old_dir->i_mtime = ctime; |
8302 | new_dir->i_ctime = new_dir->i_mtime = ctime; | |
8303 | old_inode->i_ctime = ctime; | |
5f39d397 | 8304 | |
12fcfd22 CM |
8305 | if (old_dentry->d_parent != new_dentry->d_parent) |
8306 | btrfs_record_unlink_dir(trans, old_dir, old_inode, 1); | |
8307 | ||
33345d01 | 8308 | if (unlikely(old_ino == BTRFS_FIRST_FREE_OBJECTID)) { |
4df27c4d YZ |
8309 | root_objectid = BTRFS_I(old_inode)->root->root_key.objectid; |
8310 | ret = btrfs_unlink_subvol(trans, root, old_dir, root_objectid, | |
8311 | old_dentry->d_name.name, | |
8312 | old_dentry->d_name.len); | |
8313 | } else { | |
92986796 AV |
8314 | ret = __btrfs_unlink_inode(trans, root, old_dir, |
8315 | old_dentry->d_inode, | |
8316 | old_dentry->d_name.name, | |
8317 | old_dentry->d_name.len); | |
8318 | if (!ret) | |
8319 | ret = btrfs_update_inode(trans, root, old_inode); | |
4df27c4d | 8320 | } |
79787eaa JM |
8321 | if (ret) { |
8322 | btrfs_abort_transaction(trans, root, ret); | |
8323 | goto out_fail; | |
8324 | } | |
39279cc3 CM |
8325 | |
8326 | if (new_inode) { | |
0c4d2d95 | 8327 | inode_inc_iversion(new_inode); |
39279cc3 | 8328 | new_inode->i_ctime = CURRENT_TIME; |
33345d01 | 8329 | if (unlikely(btrfs_ino(new_inode) == |
4df27c4d YZ |
8330 | BTRFS_EMPTY_SUBVOL_DIR_OBJECTID)) { |
8331 | root_objectid = BTRFS_I(new_inode)->location.objectid; | |
8332 | ret = btrfs_unlink_subvol(trans, dest, new_dir, | |
8333 | root_objectid, | |
8334 | new_dentry->d_name.name, | |
8335 | new_dentry->d_name.len); | |
8336 | BUG_ON(new_inode->i_nlink == 0); | |
8337 | } else { | |
8338 | ret = btrfs_unlink_inode(trans, dest, new_dir, | |
8339 | new_dentry->d_inode, | |
8340 | new_dentry->d_name.name, | |
8341 | new_dentry->d_name.len); | |
8342 | } | |
4ef31a45 | 8343 | if (!ret && new_inode->i_nlink == 0) |
e02119d5 | 8344 | ret = btrfs_orphan_add(trans, new_dentry->d_inode); |
79787eaa JM |
8345 | if (ret) { |
8346 | btrfs_abort_transaction(trans, root, ret); | |
8347 | goto out_fail; | |
8348 | } | |
39279cc3 | 8349 | } |
aec7477b | 8350 | |
4df27c4d YZ |
8351 | ret = btrfs_add_link(trans, new_dir, old_inode, |
8352 | new_dentry->d_name.name, | |
a5719521 | 8353 | new_dentry->d_name.len, 0, index); |
79787eaa JM |
8354 | if (ret) { |
8355 | btrfs_abort_transaction(trans, root, ret); | |
8356 | goto out_fail; | |
8357 | } | |
39279cc3 | 8358 | |
67de1176 MX |
8359 | if (old_inode->i_nlink == 1) |
8360 | BTRFS_I(old_inode)->dir_index = index; | |
8361 | ||
33345d01 | 8362 | if (old_ino != BTRFS_FIRST_FREE_OBJECTID) { |
10d9f309 | 8363 | struct dentry *parent = new_dentry->d_parent; |
6a912213 | 8364 | btrfs_log_new_name(trans, old_inode, old_dir, parent); |
4df27c4d YZ |
8365 | btrfs_end_log_trans(root); |
8366 | } | |
39279cc3 | 8367 | out_fail: |
7ad85bb7 | 8368 | btrfs_end_transaction(trans, root); |
b44c59a8 | 8369 | out_notrans: |
33345d01 | 8370 | if (old_ino == BTRFS_FIRST_FREE_OBJECTID) |
76dda93c | 8371 | up_read(&root->fs_info->subvol_sem); |
9ed74f2d | 8372 | |
39279cc3 CM |
8373 | return ret; |
8374 | } | |
8375 | ||
8ccf6f19 MX |
8376 | static void btrfs_run_delalloc_work(struct btrfs_work *work) |
8377 | { | |
8378 | struct btrfs_delalloc_work *delalloc_work; | |
9f23e289 | 8379 | struct inode *inode; |
8ccf6f19 MX |
8380 | |
8381 | delalloc_work = container_of(work, struct btrfs_delalloc_work, | |
8382 | work); | |
9f23e289 JB |
8383 | inode = delalloc_work->inode; |
8384 | if (delalloc_work->wait) { | |
8385 | btrfs_wait_ordered_range(inode, 0, (u64)-1); | |
8386 | } else { | |
8387 | filemap_flush(inode->i_mapping); | |
8388 | if (test_bit(BTRFS_INODE_HAS_ASYNC_EXTENT, | |
8389 | &BTRFS_I(inode)->runtime_flags)) | |
8390 | filemap_flush(inode->i_mapping); | |
8391 | } | |
8ccf6f19 MX |
8392 | |
8393 | if (delalloc_work->delay_iput) | |
9f23e289 | 8394 | btrfs_add_delayed_iput(inode); |
8ccf6f19 | 8395 | else |
9f23e289 | 8396 | iput(inode); |
8ccf6f19 MX |
8397 | complete(&delalloc_work->completion); |
8398 | } | |
8399 | ||
8400 | struct btrfs_delalloc_work *btrfs_alloc_delalloc_work(struct inode *inode, | |
8401 | int wait, int delay_iput) | |
8402 | { | |
8403 | struct btrfs_delalloc_work *work; | |
8404 | ||
8405 | work = kmem_cache_zalloc(btrfs_delalloc_work_cachep, GFP_NOFS); | |
8406 | if (!work) | |
8407 | return NULL; | |
8408 | ||
8409 | init_completion(&work->completion); | |
8410 | INIT_LIST_HEAD(&work->list); | |
8411 | work->inode = inode; | |
8412 | work->wait = wait; | |
8413 | work->delay_iput = delay_iput; | |
8414 | work->work.func = btrfs_run_delalloc_work; | |
8415 | ||
8416 | return work; | |
8417 | } | |
8418 | ||
8419 | void btrfs_wait_and_free_delalloc_work(struct btrfs_delalloc_work *work) | |
8420 | { | |
8421 | wait_for_completion(&work->completion); | |
8422 | kmem_cache_free(btrfs_delalloc_work_cachep, work); | |
8423 | } | |
8424 | ||
d352ac68 CM |
8425 | /* |
8426 | * some fairly slow code that needs optimization. This walks the list | |
8427 | * of all the inodes with pending delalloc and forces them to disk. | |
8428 | */ | |
eb73c1b7 | 8429 | static int __start_delalloc_inodes(struct btrfs_root *root, int delay_iput) |
ea8c2819 | 8430 | { |
ea8c2819 | 8431 | struct btrfs_inode *binode; |
5b21f2ed | 8432 | struct inode *inode; |
8ccf6f19 MX |
8433 | struct btrfs_delalloc_work *work, *next; |
8434 | struct list_head works; | |
1eafa6c7 | 8435 | struct list_head splice; |
8ccf6f19 | 8436 | int ret = 0; |
ea8c2819 | 8437 | |
8ccf6f19 | 8438 | INIT_LIST_HEAD(&works); |
1eafa6c7 | 8439 | INIT_LIST_HEAD(&splice); |
63607cc8 | 8440 | |
eb73c1b7 MX |
8441 | spin_lock(&root->delalloc_lock); |
8442 | list_splice_init(&root->delalloc_inodes, &splice); | |
1eafa6c7 MX |
8443 | while (!list_empty(&splice)) { |
8444 | binode = list_entry(splice.next, struct btrfs_inode, | |
ea8c2819 | 8445 | delalloc_inodes); |
1eafa6c7 | 8446 | |
eb73c1b7 MX |
8447 | list_move_tail(&binode->delalloc_inodes, |
8448 | &root->delalloc_inodes); | |
5b21f2ed | 8449 | inode = igrab(&binode->vfs_inode); |
df0af1a5 | 8450 | if (!inode) { |
eb73c1b7 | 8451 | cond_resched_lock(&root->delalloc_lock); |
1eafa6c7 | 8452 | continue; |
df0af1a5 | 8453 | } |
eb73c1b7 | 8454 | spin_unlock(&root->delalloc_lock); |
1eafa6c7 MX |
8455 | |
8456 | work = btrfs_alloc_delalloc_work(inode, 0, delay_iput); | |
8457 | if (unlikely(!work)) { | |
f4ab9ea7 JB |
8458 | if (delay_iput) |
8459 | btrfs_add_delayed_iput(inode); | |
8460 | else | |
8461 | iput(inode); | |
1eafa6c7 MX |
8462 | ret = -ENOMEM; |
8463 | goto out; | |
5b21f2ed | 8464 | } |
1eafa6c7 MX |
8465 | list_add_tail(&work->list, &works); |
8466 | btrfs_queue_worker(&root->fs_info->flush_workers, | |
8467 | &work->work); | |
8468 | ||
5b21f2ed | 8469 | cond_resched(); |
eb73c1b7 | 8470 | spin_lock(&root->delalloc_lock); |
ea8c2819 | 8471 | } |
eb73c1b7 | 8472 | spin_unlock(&root->delalloc_lock); |
8c8bee1d | 8473 | |
1eafa6c7 MX |
8474 | list_for_each_entry_safe(work, next, &works, list) { |
8475 | list_del_init(&work->list); | |
8476 | btrfs_wait_and_free_delalloc_work(work); | |
8477 | } | |
eb73c1b7 MX |
8478 | return 0; |
8479 | out: | |
8480 | list_for_each_entry_safe(work, next, &works, list) { | |
8481 | list_del_init(&work->list); | |
8482 | btrfs_wait_and_free_delalloc_work(work); | |
8483 | } | |
8484 | ||
8485 | if (!list_empty_careful(&splice)) { | |
8486 | spin_lock(&root->delalloc_lock); | |
8487 | list_splice_tail(&splice, &root->delalloc_inodes); | |
8488 | spin_unlock(&root->delalloc_lock); | |
8489 | } | |
8490 | return ret; | |
8491 | } | |
1eafa6c7 | 8492 | |
eb73c1b7 MX |
8493 | int btrfs_start_delalloc_inodes(struct btrfs_root *root, int delay_iput) |
8494 | { | |
8495 | int ret; | |
1eafa6c7 | 8496 | |
2c21b4d7 | 8497 | if (test_bit(BTRFS_FS_STATE_ERROR, &root->fs_info->fs_state)) |
eb73c1b7 MX |
8498 | return -EROFS; |
8499 | ||
8500 | ret = __start_delalloc_inodes(root, delay_iput); | |
8501 | /* | |
8502 | * the filemap_flush will queue IO into the worker threads, but | |
8c8bee1d CM |
8503 | * we have to make sure the IO is actually started and that |
8504 | * ordered extents get created before we return | |
8505 | */ | |
8506 | atomic_inc(&root->fs_info->async_submit_draining); | |
d397712b | 8507 | while (atomic_read(&root->fs_info->nr_async_submits) || |
771ed689 | 8508 | atomic_read(&root->fs_info->async_delalloc_pages)) { |
8c8bee1d | 8509 | wait_event(root->fs_info->async_submit_wait, |
771ed689 CM |
8510 | (atomic_read(&root->fs_info->nr_async_submits) == 0 && |
8511 | atomic_read(&root->fs_info->async_delalloc_pages) == 0)); | |
8c8bee1d CM |
8512 | } |
8513 | atomic_dec(&root->fs_info->async_submit_draining); | |
eb73c1b7 MX |
8514 | return ret; |
8515 | } | |
8516 | ||
91aef86f | 8517 | int btrfs_start_delalloc_roots(struct btrfs_fs_info *fs_info, int delay_iput) |
eb73c1b7 MX |
8518 | { |
8519 | struct btrfs_root *root; | |
8520 | struct list_head splice; | |
8521 | int ret; | |
8522 | ||
2c21b4d7 | 8523 | if (test_bit(BTRFS_FS_STATE_ERROR, &fs_info->fs_state)) |
eb73c1b7 MX |
8524 | return -EROFS; |
8525 | ||
8526 | INIT_LIST_HEAD(&splice); | |
8527 | ||
8528 | spin_lock(&fs_info->delalloc_root_lock); | |
8529 | list_splice_init(&fs_info->delalloc_roots, &splice); | |
8530 | while (!list_empty(&splice)) { | |
8531 | root = list_first_entry(&splice, struct btrfs_root, | |
8532 | delalloc_root); | |
8533 | root = btrfs_grab_fs_root(root); | |
8534 | BUG_ON(!root); | |
8535 | list_move_tail(&root->delalloc_root, | |
8536 | &fs_info->delalloc_roots); | |
8537 | spin_unlock(&fs_info->delalloc_root_lock); | |
8538 | ||
8539 | ret = __start_delalloc_inodes(root, delay_iput); | |
8540 | btrfs_put_fs_root(root); | |
8541 | if (ret) | |
8542 | goto out; | |
8543 | ||
8544 | spin_lock(&fs_info->delalloc_root_lock); | |
8ccf6f19 | 8545 | } |
eb73c1b7 | 8546 | spin_unlock(&fs_info->delalloc_root_lock); |
1eafa6c7 | 8547 | |
eb73c1b7 MX |
8548 | atomic_inc(&fs_info->async_submit_draining); |
8549 | while (atomic_read(&fs_info->nr_async_submits) || | |
8550 | atomic_read(&fs_info->async_delalloc_pages)) { | |
8551 | wait_event(fs_info->async_submit_wait, | |
8552 | (atomic_read(&fs_info->nr_async_submits) == 0 && | |
8553 | atomic_read(&fs_info->async_delalloc_pages) == 0)); | |
8554 | } | |
8555 | atomic_dec(&fs_info->async_submit_draining); | |
8556 | return 0; | |
8557 | out: | |
1eafa6c7 | 8558 | if (!list_empty_careful(&splice)) { |
eb73c1b7 MX |
8559 | spin_lock(&fs_info->delalloc_root_lock); |
8560 | list_splice_tail(&splice, &fs_info->delalloc_roots); | |
8561 | spin_unlock(&fs_info->delalloc_root_lock); | |
1eafa6c7 | 8562 | } |
8ccf6f19 | 8563 | return ret; |
ea8c2819 CM |
8564 | } |
8565 | ||
39279cc3 CM |
8566 | static int btrfs_symlink(struct inode *dir, struct dentry *dentry, |
8567 | const char *symname) | |
8568 | { | |
8569 | struct btrfs_trans_handle *trans; | |
8570 | struct btrfs_root *root = BTRFS_I(dir)->root; | |
8571 | struct btrfs_path *path; | |
8572 | struct btrfs_key key; | |
1832a6d5 | 8573 | struct inode *inode = NULL; |
39279cc3 CM |
8574 | int err; |
8575 | int drop_inode = 0; | |
8576 | u64 objectid; | |
67871254 | 8577 | u64 index = 0; |
39279cc3 CM |
8578 | int name_len; |
8579 | int datasize; | |
5f39d397 | 8580 | unsigned long ptr; |
39279cc3 | 8581 | struct btrfs_file_extent_item *ei; |
5f39d397 | 8582 | struct extent_buffer *leaf; |
39279cc3 | 8583 | |
f06becc4 | 8584 | name_len = strlen(symname); |
39279cc3 CM |
8585 | if (name_len > BTRFS_MAX_INLINE_DATA_SIZE(root)) |
8586 | return -ENAMETOOLONG; | |
1832a6d5 | 8587 | |
9ed74f2d JB |
8588 | /* |
8589 | * 2 items for inode item and ref | |
8590 | * 2 items for dir items | |
8591 | * 1 item for xattr if selinux is on | |
8592 | */ | |
a22285a6 YZ |
8593 | trans = btrfs_start_transaction(root, 5); |
8594 | if (IS_ERR(trans)) | |
8595 | return PTR_ERR(trans); | |
1832a6d5 | 8596 | |
581bb050 LZ |
8597 | err = btrfs_find_free_ino(root, &objectid); |
8598 | if (err) | |
8599 | goto out_unlock; | |
8600 | ||
aec7477b | 8601 | inode = btrfs_new_inode(trans, root, dir, dentry->d_name.name, |
33345d01 | 8602 | dentry->d_name.len, btrfs_ino(dir), objectid, |
d82a6f1d | 8603 | S_IFLNK|S_IRWXUGO, &index); |
7cf96da3 TI |
8604 | if (IS_ERR(inode)) { |
8605 | err = PTR_ERR(inode); | |
39279cc3 | 8606 | goto out_unlock; |
7cf96da3 | 8607 | } |
39279cc3 | 8608 | |
2a7dba39 | 8609 | err = btrfs_init_inode_security(trans, inode, dir, &dentry->d_name); |
33268eaf JB |
8610 | if (err) { |
8611 | drop_inode = 1; | |
8612 | goto out_unlock; | |
8613 | } | |
8614 | ||
ad19db71 CS |
8615 | /* |
8616 | * If the active LSM wants to access the inode during | |
8617 | * d_instantiate it needs these. Smack checks to see | |
8618 | * if the filesystem supports xattrs by looking at the | |
8619 | * ops vector. | |
8620 | */ | |
8621 | inode->i_fop = &btrfs_file_operations; | |
8622 | inode->i_op = &btrfs_file_inode_operations; | |
8623 | ||
a1b075d2 | 8624 | err = btrfs_add_nondir(trans, dir, dentry, inode, 0, index); |
39279cc3 CM |
8625 | if (err) |
8626 | drop_inode = 1; | |
8627 | else { | |
8628 | inode->i_mapping->a_ops = &btrfs_aops; | |
04160088 | 8629 | inode->i_mapping->backing_dev_info = &root->fs_info->bdi; |
d1310b2e | 8630 | BTRFS_I(inode)->io_tree.ops = &btrfs_extent_io_ops; |
39279cc3 | 8631 | } |
39279cc3 CM |
8632 | if (drop_inode) |
8633 | goto out_unlock; | |
8634 | ||
8635 | path = btrfs_alloc_path(); | |
d8926bb3 MF |
8636 | if (!path) { |
8637 | err = -ENOMEM; | |
8638 | drop_inode = 1; | |
8639 | goto out_unlock; | |
8640 | } | |
33345d01 | 8641 | key.objectid = btrfs_ino(inode); |
39279cc3 | 8642 | key.offset = 0; |
39279cc3 CM |
8643 | btrfs_set_key_type(&key, BTRFS_EXTENT_DATA_KEY); |
8644 | datasize = btrfs_file_extent_calc_inline_size(name_len); | |
8645 | err = btrfs_insert_empty_item(trans, root, path, &key, | |
8646 | datasize); | |
54aa1f4d CM |
8647 | if (err) { |
8648 | drop_inode = 1; | |
b0839166 | 8649 | btrfs_free_path(path); |
54aa1f4d CM |
8650 | goto out_unlock; |
8651 | } | |
5f39d397 CM |
8652 | leaf = path->nodes[0]; |
8653 | ei = btrfs_item_ptr(leaf, path->slots[0], | |
8654 | struct btrfs_file_extent_item); | |
8655 | btrfs_set_file_extent_generation(leaf, ei, trans->transid); | |
8656 | btrfs_set_file_extent_type(leaf, ei, | |
39279cc3 | 8657 | BTRFS_FILE_EXTENT_INLINE); |
c8b97818 CM |
8658 | btrfs_set_file_extent_encryption(leaf, ei, 0); |
8659 | btrfs_set_file_extent_compression(leaf, ei, 0); | |
8660 | btrfs_set_file_extent_other_encoding(leaf, ei, 0); | |
8661 | btrfs_set_file_extent_ram_bytes(leaf, ei, name_len); | |
8662 | ||
39279cc3 | 8663 | ptr = btrfs_file_extent_inline_start(ei); |
5f39d397 CM |
8664 | write_extent_buffer(leaf, symname, ptr, name_len); |
8665 | btrfs_mark_buffer_dirty(leaf); | |
39279cc3 | 8666 | btrfs_free_path(path); |
5f39d397 | 8667 | |
39279cc3 CM |
8668 | inode->i_op = &btrfs_symlink_inode_operations; |
8669 | inode->i_mapping->a_ops = &btrfs_symlink_aops; | |
04160088 | 8670 | inode->i_mapping->backing_dev_info = &root->fs_info->bdi; |
d899e052 | 8671 | inode_set_bytes(inode, name_len); |
f06becc4 | 8672 | btrfs_i_size_write(inode, name_len); |
54aa1f4d CM |
8673 | err = btrfs_update_inode(trans, root, inode); |
8674 | if (err) | |
8675 | drop_inode = 1; | |
39279cc3 CM |
8676 | |
8677 | out_unlock: | |
08c422c2 AV |
8678 | if (!err) |
8679 | d_instantiate(dentry, inode); | |
7ad85bb7 | 8680 | btrfs_end_transaction(trans, root); |
39279cc3 CM |
8681 | if (drop_inode) { |
8682 | inode_dec_link_count(inode); | |
8683 | iput(inode); | |
8684 | } | |
b53d3f5d | 8685 | btrfs_btree_balance_dirty(root); |
39279cc3 CM |
8686 | return err; |
8687 | } | |
16432985 | 8688 | |
0af3d00b JB |
8689 | static int __btrfs_prealloc_file_range(struct inode *inode, int mode, |
8690 | u64 start, u64 num_bytes, u64 min_size, | |
8691 | loff_t actual_len, u64 *alloc_hint, | |
8692 | struct btrfs_trans_handle *trans) | |
d899e052 | 8693 | { |
5dc562c5 JB |
8694 | struct extent_map_tree *em_tree = &BTRFS_I(inode)->extent_tree; |
8695 | struct extent_map *em; | |
d899e052 YZ |
8696 | struct btrfs_root *root = BTRFS_I(inode)->root; |
8697 | struct btrfs_key ins; | |
d899e052 | 8698 | u64 cur_offset = start; |
55a61d1d | 8699 | u64 i_size; |
154ea289 | 8700 | u64 cur_bytes; |
d899e052 | 8701 | int ret = 0; |
0af3d00b | 8702 | bool own_trans = true; |
d899e052 | 8703 | |
0af3d00b JB |
8704 | if (trans) |
8705 | own_trans = false; | |
d899e052 | 8706 | while (num_bytes > 0) { |
0af3d00b JB |
8707 | if (own_trans) { |
8708 | trans = btrfs_start_transaction(root, 3); | |
8709 | if (IS_ERR(trans)) { | |
8710 | ret = PTR_ERR(trans); | |
8711 | break; | |
8712 | } | |
5a303d5d YZ |
8713 | } |
8714 | ||
154ea289 CM |
8715 | cur_bytes = min(num_bytes, 256ULL * 1024 * 1024); |
8716 | cur_bytes = max(cur_bytes, min_size); | |
00361589 JB |
8717 | ret = btrfs_reserve_extent(root, cur_bytes, min_size, 0, |
8718 | *alloc_hint, &ins, 1); | |
5a303d5d | 8719 | if (ret) { |
0af3d00b JB |
8720 | if (own_trans) |
8721 | btrfs_end_transaction(trans, root); | |
a22285a6 | 8722 | break; |
d899e052 | 8723 | } |
5a303d5d | 8724 | |
d899e052 YZ |
8725 | ret = insert_reserved_file_extent(trans, inode, |
8726 | cur_offset, ins.objectid, | |
8727 | ins.offset, ins.offset, | |
920bbbfb | 8728 | ins.offset, 0, 0, 0, |
d899e052 | 8729 | BTRFS_FILE_EXTENT_PREALLOC); |
79787eaa | 8730 | if (ret) { |
857cc2fc JB |
8731 | btrfs_free_reserved_extent(root, ins.objectid, |
8732 | ins.offset); | |
79787eaa JM |
8733 | btrfs_abort_transaction(trans, root, ret); |
8734 | if (own_trans) | |
8735 | btrfs_end_transaction(trans, root); | |
8736 | break; | |
8737 | } | |
a1ed835e CM |
8738 | btrfs_drop_extent_cache(inode, cur_offset, |
8739 | cur_offset + ins.offset -1, 0); | |
5a303d5d | 8740 | |
5dc562c5 JB |
8741 | em = alloc_extent_map(); |
8742 | if (!em) { | |
8743 | set_bit(BTRFS_INODE_NEEDS_FULL_SYNC, | |
8744 | &BTRFS_I(inode)->runtime_flags); | |
8745 | goto next; | |
8746 | } | |
8747 | ||
8748 | em->start = cur_offset; | |
8749 | em->orig_start = cur_offset; | |
8750 | em->len = ins.offset; | |
8751 | em->block_start = ins.objectid; | |
8752 | em->block_len = ins.offset; | |
b4939680 | 8753 | em->orig_block_len = ins.offset; |
cc95bef6 | 8754 | em->ram_bytes = ins.offset; |
5dc562c5 JB |
8755 | em->bdev = root->fs_info->fs_devices->latest_bdev; |
8756 | set_bit(EXTENT_FLAG_PREALLOC, &em->flags); | |
8757 | em->generation = trans->transid; | |
8758 | ||
8759 | while (1) { | |
8760 | write_lock(&em_tree->lock); | |
09a2a8f9 | 8761 | ret = add_extent_mapping(em_tree, em, 1); |
5dc562c5 JB |
8762 | write_unlock(&em_tree->lock); |
8763 | if (ret != -EEXIST) | |
8764 | break; | |
8765 | btrfs_drop_extent_cache(inode, cur_offset, | |
8766 | cur_offset + ins.offset - 1, | |
8767 | 0); | |
8768 | } | |
8769 | free_extent_map(em); | |
8770 | next: | |
d899e052 YZ |
8771 | num_bytes -= ins.offset; |
8772 | cur_offset += ins.offset; | |
efa56464 | 8773 | *alloc_hint = ins.objectid + ins.offset; |
5a303d5d | 8774 | |
0c4d2d95 | 8775 | inode_inc_iversion(inode); |
d899e052 | 8776 | inode->i_ctime = CURRENT_TIME; |
6cbff00f | 8777 | BTRFS_I(inode)->flags |= BTRFS_INODE_PREALLOC; |
d899e052 | 8778 | if (!(mode & FALLOC_FL_KEEP_SIZE) && |
efa56464 YZ |
8779 | (actual_len > inode->i_size) && |
8780 | (cur_offset > inode->i_size)) { | |
d1ea6a61 | 8781 | if (cur_offset > actual_len) |
55a61d1d | 8782 | i_size = actual_len; |
d1ea6a61 | 8783 | else |
55a61d1d JB |
8784 | i_size = cur_offset; |
8785 | i_size_write(inode, i_size); | |
8786 | btrfs_ordered_update_i_size(inode, i_size, NULL); | |
5a303d5d YZ |
8787 | } |
8788 | ||
d899e052 | 8789 | ret = btrfs_update_inode(trans, root, inode); |
79787eaa JM |
8790 | |
8791 | if (ret) { | |
8792 | btrfs_abort_transaction(trans, root, ret); | |
8793 | if (own_trans) | |
8794 | btrfs_end_transaction(trans, root); | |
8795 | break; | |
8796 | } | |
d899e052 | 8797 | |
0af3d00b JB |
8798 | if (own_trans) |
8799 | btrfs_end_transaction(trans, root); | |
5a303d5d | 8800 | } |
d899e052 YZ |
8801 | return ret; |
8802 | } | |
8803 | ||
0af3d00b JB |
8804 | int btrfs_prealloc_file_range(struct inode *inode, int mode, |
8805 | u64 start, u64 num_bytes, u64 min_size, | |
8806 | loff_t actual_len, u64 *alloc_hint) | |
8807 | { | |
8808 | return __btrfs_prealloc_file_range(inode, mode, start, num_bytes, | |
8809 | min_size, actual_len, alloc_hint, | |
8810 | NULL); | |
8811 | } | |
8812 | ||
8813 | int btrfs_prealloc_file_range_trans(struct inode *inode, | |
8814 | struct btrfs_trans_handle *trans, int mode, | |
8815 | u64 start, u64 num_bytes, u64 min_size, | |
8816 | loff_t actual_len, u64 *alloc_hint) | |
8817 | { | |
8818 | return __btrfs_prealloc_file_range(inode, mode, start, num_bytes, | |
8819 | min_size, actual_len, alloc_hint, trans); | |
8820 | } | |
8821 | ||
e6dcd2dc CM |
8822 | static int btrfs_set_page_dirty(struct page *page) |
8823 | { | |
e6dcd2dc CM |
8824 | return __set_page_dirty_nobuffers(page); |
8825 | } | |
8826 | ||
10556cb2 | 8827 | static int btrfs_permission(struct inode *inode, int mask) |
fdebe2bd | 8828 | { |
b83cc969 | 8829 | struct btrfs_root *root = BTRFS_I(inode)->root; |
cb6db4e5 | 8830 | umode_t mode = inode->i_mode; |
b83cc969 | 8831 | |
cb6db4e5 JM |
8832 | if (mask & MAY_WRITE && |
8833 | (S_ISREG(mode) || S_ISDIR(mode) || S_ISLNK(mode))) { | |
8834 | if (btrfs_root_readonly(root)) | |
8835 | return -EROFS; | |
8836 | if (BTRFS_I(inode)->flags & BTRFS_INODE_READONLY) | |
8837 | return -EACCES; | |
8838 | } | |
2830ba7f | 8839 | return generic_permission(inode, mask); |
fdebe2bd | 8840 | } |
39279cc3 | 8841 | |
6e1d5dcc | 8842 | static const struct inode_operations btrfs_dir_inode_operations = { |
3394e160 | 8843 | .getattr = btrfs_getattr, |
39279cc3 CM |
8844 | .lookup = btrfs_lookup, |
8845 | .create = btrfs_create, | |
8846 | .unlink = btrfs_unlink, | |
8847 | .link = btrfs_link, | |
8848 | .mkdir = btrfs_mkdir, | |
8849 | .rmdir = btrfs_rmdir, | |
8850 | .rename = btrfs_rename, | |
8851 | .symlink = btrfs_symlink, | |
8852 | .setattr = btrfs_setattr, | |
618e21d5 | 8853 | .mknod = btrfs_mknod, |
95819c05 CH |
8854 | .setxattr = btrfs_setxattr, |
8855 | .getxattr = btrfs_getxattr, | |
5103e947 | 8856 | .listxattr = btrfs_listxattr, |
95819c05 | 8857 | .removexattr = btrfs_removexattr, |
fdebe2bd | 8858 | .permission = btrfs_permission, |
4e34e719 | 8859 | .get_acl = btrfs_get_acl, |
93fd63c2 | 8860 | .update_time = btrfs_update_time, |
39279cc3 | 8861 | }; |
6e1d5dcc | 8862 | static const struct inode_operations btrfs_dir_ro_inode_operations = { |
39279cc3 | 8863 | .lookup = btrfs_lookup, |
fdebe2bd | 8864 | .permission = btrfs_permission, |
4e34e719 | 8865 | .get_acl = btrfs_get_acl, |
93fd63c2 | 8866 | .update_time = btrfs_update_time, |
39279cc3 | 8867 | }; |
76dda93c | 8868 | |
828c0950 | 8869 | static const struct file_operations btrfs_dir_file_operations = { |
39279cc3 CM |
8870 | .llseek = generic_file_llseek, |
8871 | .read = generic_read_dir, | |
9cdda8d3 | 8872 | .iterate = btrfs_real_readdir, |
34287aa3 | 8873 | .unlocked_ioctl = btrfs_ioctl, |
39279cc3 | 8874 | #ifdef CONFIG_COMPAT |
34287aa3 | 8875 | .compat_ioctl = btrfs_ioctl, |
39279cc3 | 8876 | #endif |
6bf13c0c | 8877 | .release = btrfs_release_file, |
e02119d5 | 8878 | .fsync = btrfs_sync_file, |
39279cc3 CM |
8879 | }; |
8880 | ||
d1310b2e | 8881 | static struct extent_io_ops btrfs_extent_io_ops = { |
07157aac | 8882 | .fill_delalloc = run_delalloc_range, |
065631f6 | 8883 | .submit_bio_hook = btrfs_submit_bio_hook, |
239b14b3 | 8884 | .merge_bio_hook = btrfs_merge_bio_hook, |
07157aac | 8885 | .readpage_end_io_hook = btrfs_readpage_end_io_hook, |
e6dcd2dc | 8886 | .writepage_end_io_hook = btrfs_writepage_end_io_hook, |
247e743c | 8887 | .writepage_start_hook = btrfs_writepage_start_hook, |
b0c68f8b CM |
8888 | .set_bit_hook = btrfs_set_bit_hook, |
8889 | .clear_bit_hook = btrfs_clear_bit_hook, | |
9ed74f2d JB |
8890 | .merge_extent_hook = btrfs_merge_extent_hook, |
8891 | .split_extent_hook = btrfs_split_extent_hook, | |
07157aac CM |
8892 | }; |
8893 | ||
35054394 CM |
8894 | /* |
8895 | * btrfs doesn't support the bmap operation because swapfiles | |
8896 | * use bmap to make a mapping of extents in the file. They assume | |
8897 | * these extents won't change over the life of the file and they | |
8898 | * use the bmap result to do IO directly to the drive. | |
8899 | * | |
8900 | * the btrfs bmap call would return logical addresses that aren't | |
8901 | * suitable for IO and they also will change frequently as COW | |
8902 | * operations happen. So, swapfile + btrfs == corruption. | |
8903 | * | |
8904 | * For now we're avoiding this by dropping bmap. | |
8905 | */ | |
7f09410b | 8906 | static const struct address_space_operations btrfs_aops = { |
39279cc3 CM |
8907 | .readpage = btrfs_readpage, |
8908 | .writepage = btrfs_writepage, | |
b293f02e | 8909 | .writepages = btrfs_writepages, |
3ab2fb5a | 8910 | .readpages = btrfs_readpages, |
16432985 | 8911 | .direct_IO = btrfs_direct_IO, |
a52d9a80 CM |
8912 | .invalidatepage = btrfs_invalidatepage, |
8913 | .releasepage = btrfs_releasepage, | |
e6dcd2dc | 8914 | .set_page_dirty = btrfs_set_page_dirty, |
465fdd97 | 8915 | .error_remove_page = generic_error_remove_page, |
39279cc3 CM |
8916 | }; |
8917 | ||
7f09410b | 8918 | static const struct address_space_operations btrfs_symlink_aops = { |
39279cc3 CM |
8919 | .readpage = btrfs_readpage, |
8920 | .writepage = btrfs_writepage, | |
2bf5a725 CM |
8921 | .invalidatepage = btrfs_invalidatepage, |
8922 | .releasepage = btrfs_releasepage, | |
39279cc3 CM |
8923 | }; |
8924 | ||
6e1d5dcc | 8925 | static const struct inode_operations btrfs_file_inode_operations = { |
39279cc3 CM |
8926 | .getattr = btrfs_getattr, |
8927 | .setattr = btrfs_setattr, | |
95819c05 CH |
8928 | .setxattr = btrfs_setxattr, |
8929 | .getxattr = btrfs_getxattr, | |
5103e947 | 8930 | .listxattr = btrfs_listxattr, |
95819c05 | 8931 | .removexattr = btrfs_removexattr, |
fdebe2bd | 8932 | .permission = btrfs_permission, |
1506fcc8 | 8933 | .fiemap = btrfs_fiemap, |
4e34e719 | 8934 | .get_acl = btrfs_get_acl, |
e41f941a | 8935 | .update_time = btrfs_update_time, |
39279cc3 | 8936 | }; |
6e1d5dcc | 8937 | static const struct inode_operations btrfs_special_inode_operations = { |
618e21d5 JB |
8938 | .getattr = btrfs_getattr, |
8939 | .setattr = btrfs_setattr, | |
fdebe2bd | 8940 | .permission = btrfs_permission, |
95819c05 CH |
8941 | .setxattr = btrfs_setxattr, |
8942 | .getxattr = btrfs_getxattr, | |
33268eaf | 8943 | .listxattr = btrfs_listxattr, |
95819c05 | 8944 | .removexattr = btrfs_removexattr, |
4e34e719 | 8945 | .get_acl = btrfs_get_acl, |
e41f941a | 8946 | .update_time = btrfs_update_time, |
618e21d5 | 8947 | }; |
6e1d5dcc | 8948 | static const struct inode_operations btrfs_symlink_inode_operations = { |
39279cc3 CM |
8949 | .readlink = generic_readlink, |
8950 | .follow_link = page_follow_link_light, | |
8951 | .put_link = page_put_link, | |
f209561a | 8952 | .getattr = btrfs_getattr, |
22c44fe6 | 8953 | .setattr = btrfs_setattr, |
fdebe2bd | 8954 | .permission = btrfs_permission, |
0279b4cd JO |
8955 | .setxattr = btrfs_setxattr, |
8956 | .getxattr = btrfs_getxattr, | |
8957 | .listxattr = btrfs_listxattr, | |
8958 | .removexattr = btrfs_removexattr, | |
4e34e719 | 8959 | .get_acl = btrfs_get_acl, |
e41f941a | 8960 | .update_time = btrfs_update_time, |
39279cc3 | 8961 | }; |
76dda93c | 8962 | |
82d339d9 | 8963 | const struct dentry_operations btrfs_dentry_operations = { |
76dda93c | 8964 | .d_delete = btrfs_dentry_delete, |
b4aff1f8 | 8965 | .d_release = btrfs_dentry_release, |
76dda93c | 8966 | }; |