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Chris Masonc8b97812008-10-29 14:49:59 -04001/*
2 * Copyright (C) 2008 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
19#include <linux/kernel.h>
20#include <linux/bio.h>
21#include <linux/buffer_head.h>
22#include <linux/file.h>
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>
Chris Masonc8b97812008-10-29 14:49:59 -040029#include <linux/backing-dev.h>
30#include <linux/mpage.h>
31#include <linux/swap.h>
32#include <linux/writeback.h>
33#include <linux/bit_spinlock.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090034#include <linux/slab.h>
Chris Masonc8b97812008-10-29 14:49:59 -040035#include "ctree.h"
36#include "disk-io.h"
37#include "transaction.h"
38#include "btrfs_inode.h"
39#include "volumes.h"
40#include "ordered-data.h"
Chris Masonc8b97812008-10-29 14:49:59 -040041#include "compression.h"
42#include "extent_io.h"
43#include "extent_map.h"
44
45struct compressed_bio {
46 /* number of bios pending for this compressed extent */
47 atomic_t pending_bios;
48
49 /* the pages with the compressed data on them */
50 struct page **compressed_pages;
51
52 /* inode that owns this data */
53 struct inode *inode;
54
55 /* starting offset in the inode for our pages */
56 u64 start;
57
58 /* number of bytes in the inode we're working on */
59 unsigned long len;
60
61 /* number of bytes on disk */
62 unsigned long compressed_len;
63
Li Zefan261507a02010-12-17 14:21:50 +080064 /* the compression algorithm for this bio */
65 int compress_type;
66
Chris Masonc8b97812008-10-29 14:49:59 -040067 /* number of compressed pages in the array */
68 unsigned long nr_pages;
69
70 /* IO errors */
71 int errors;
Chris Masond20f7042008-12-08 16:58:54 -050072 int mirror_num;
Chris Masonc8b97812008-10-29 14:49:59 -040073
74 /* for reads, this is the bio we are copying the data into */
75 struct bio *orig_bio;
Chris Masond20f7042008-12-08 16:58:54 -050076
77 /*
78 * the start of a variable length array of checksums only
79 * used by reads
80 */
81 u32 sums;
Chris Masonc8b97812008-10-29 14:49:59 -040082};
83
Eric Sandeen48a3b632013-04-25 20:41:01 +000084static int btrfs_decompress_biovec(int type, struct page **pages_in,
85 u64 disk_start, struct bio_vec *bvec,
86 int vcnt, size_t srclen);
87
Chris Masond20f7042008-12-08 16:58:54 -050088static inline int compressed_bio_size(struct btrfs_root *root,
89 unsigned long disk_size)
90{
David Sterba6c417612011-04-13 15:41:04 +020091 u16 csum_size = btrfs_super_csum_size(root->fs_info->super_copy);
92
Chris Masond20f7042008-12-08 16:58:54 -050093 return sizeof(struct compressed_bio) +
David Sterbaed6078f2014-06-05 01:59:57 +020094 (DIV_ROUND_UP(disk_size, root->sectorsize)) * csum_size;
Chris Masond20f7042008-12-08 16:58:54 -050095}
96
Chris Masonc8b97812008-10-29 14:49:59 -040097static struct bio *compressed_bio_alloc(struct block_device *bdev,
98 u64 first_byte, gfp_t gfp_flags)
99{
Kent Overstreetb54ffb72015-05-19 14:31:01 +0200100 return btrfs_bio_alloc(bdev, first_byte >> 9, BIO_MAX_PAGES, gfp_flags);
Chris Masonc8b97812008-10-29 14:49:59 -0400101}
102
Chris Masond20f7042008-12-08 16:58:54 -0500103static int check_compressed_csum(struct inode *inode,
104 struct compressed_bio *cb,
105 u64 disk_start)
106{
107 int ret;
Chris Masond20f7042008-12-08 16:58:54 -0500108 struct page *page;
109 unsigned long i;
110 char *kaddr;
111 u32 csum;
112 u32 *cb_sum = &cb->sums;
113
Christoph Hellwig6cbff002009-04-17 10:37:41 +0200114 if (BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM)
Chris Masond20f7042008-12-08 16:58:54 -0500115 return 0;
116
117 for (i = 0; i < cb->nr_pages; i++) {
118 page = cb->compressed_pages[i];
119 csum = ~(u32)0;
120
Cong Wang7ac687d2011-11-25 23:14:28 +0800121 kaddr = kmap_atomic(page);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300122 csum = btrfs_csum_data(kaddr, csum, PAGE_SIZE);
Chris Masond20f7042008-12-08 16:58:54 -0500123 btrfs_csum_final(csum, (char *)&csum);
Cong Wang7ac687d2011-11-25 23:14:28 +0800124 kunmap_atomic(kaddr);
Chris Masond20f7042008-12-08 16:58:54 -0500125
126 if (csum != *cb_sum) {
Frank Holtonefe120a2013-12-20 11:37:06 -0500127 btrfs_info(BTRFS_I(inode)->root->fs_info,
128 "csum failed ino %llu extent %llu csum %u wanted %u mirror %d",
129 btrfs_ino(inode), disk_start, csum, *cb_sum,
130 cb->mirror_num);
Chris Masond20f7042008-12-08 16:58:54 -0500131 ret = -EIO;
132 goto fail;
133 }
134 cb_sum++;
135
136 }
137 ret = 0;
138fail:
139 return ret;
140}
141
Chris Masonc8b97812008-10-29 14:49:59 -0400142/* when we finish reading compressed pages from the disk, we
143 * decompress them and then run the bio end_io routines on the
144 * decompressed pages (in the inode address space).
145 *
146 * This allows the checksumming and other IO error handling routines
147 * to work normally
148 *
149 * The compressed pages are freed here, and it must be run
150 * in process context
151 */
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200152static void end_compressed_bio_read(struct bio *bio)
Chris Masonc8b97812008-10-29 14:49:59 -0400153{
Chris Masonc8b97812008-10-29 14:49:59 -0400154 struct compressed_bio *cb = bio->bi_private;
155 struct inode *inode;
156 struct page *page;
157 unsigned long index;
158 int ret;
159
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200160 if (bio->bi_error)
Chris Masonc8b97812008-10-29 14:49:59 -0400161 cb->errors = 1;
162
163 /* if there are more bios still pending for this compressed
164 * extent, just exit
165 */
166 if (!atomic_dec_and_test(&cb->pending_bios))
167 goto out;
168
Chris Masond20f7042008-12-08 16:58:54 -0500169 inode = cb->inode;
Kent Overstreet4f024f32013-10-11 15:44:27 -0700170 ret = check_compressed_csum(inode, cb,
171 (u64)bio->bi_iter.bi_sector << 9);
Chris Masond20f7042008-12-08 16:58:54 -0500172 if (ret)
173 goto csum_failed;
174
Chris Masonc8b97812008-10-29 14:49:59 -0400175 /* ok, we're the last bio for this extent, lets start
176 * the decompression.
177 */
Li Zefan261507a02010-12-17 14:21:50 +0800178 ret = btrfs_decompress_biovec(cb->compress_type,
179 cb->compressed_pages,
180 cb->start,
181 cb->orig_bio->bi_io_vec,
182 cb->orig_bio->bi_vcnt,
183 cb->compressed_len);
Chris Masond20f7042008-12-08 16:58:54 -0500184csum_failed:
Chris Masonc8b97812008-10-29 14:49:59 -0400185 if (ret)
186 cb->errors = 1;
187
188 /* release the compressed pages */
189 index = 0;
190 for (index = 0; index < cb->nr_pages; index++) {
191 page = cb->compressed_pages[index];
192 page->mapping = NULL;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300193 put_page(page);
Chris Masonc8b97812008-10-29 14:49:59 -0400194 }
195
196 /* do io completion on the original bio */
Chris Mason771ed682008-11-06 22:02:51 -0500197 if (cb->errors) {
Chris Masonc8b97812008-10-29 14:49:59 -0400198 bio_io_error(cb->orig_bio);
Chris Masond20f7042008-12-08 16:58:54 -0500199 } else {
Kent Overstreet2c30c712013-11-07 12:20:26 -0800200 int i;
201 struct bio_vec *bvec;
Chris Masond20f7042008-12-08 16:58:54 -0500202
203 /*
204 * we have verified the checksum already, set page
205 * checked so the end_io handlers know about it
206 */
Kent Overstreet2c30c712013-11-07 12:20:26 -0800207 bio_for_each_segment_all(bvec, cb->orig_bio, i)
Chris Masond20f7042008-12-08 16:58:54 -0500208 SetPageChecked(bvec->bv_page);
Kent Overstreet2c30c712013-11-07 12:20:26 -0800209
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200210 bio_endio(cb->orig_bio);
Chris Masond20f7042008-12-08 16:58:54 -0500211 }
Chris Masonc8b97812008-10-29 14:49:59 -0400212
213 /* finally free the cb struct */
214 kfree(cb->compressed_pages);
215 kfree(cb);
216out:
217 bio_put(bio);
218}
219
220/*
221 * Clear the writeback bits on all of the file
222 * pages for a compressed write
223 */
Filipe Manana7bdcefc2014-10-07 01:48:26 +0100224static noinline void end_compressed_writeback(struct inode *inode,
225 const struct compressed_bio *cb)
Chris Masonc8b97812008-10-29 14:49:59 -0400226{
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300227 unsigned long index = cb->start >> PAGE_SHIFT;
228 unsigned long end_index = (cb->start + cb->len - 1) >> PAGE_SHIFT;
Chris Masonc8b97812008-10-29 14:49:59 -0400229 struct page *pages[16];
230 unsigned long nr_pages = end_index - index + 1;
231 int i;
232 int ret;
233
Filipe Manana7bdcefc2014-10-07 01:48:26 +0100234 if (cb->errors)
235 mapping_set_error(inode->i_mapping, -EIO);
236
Chris Masond3977122009-01-05 21:25:51 -0500237 while (nr_pages > 0) {
Chris Masonc8b97812008-10-29 14:49:59 -0400238 ret = find_get_pages_contig(inode->i_mapping, index,
Chris Mason5b050f02008-11-11 09:34:41 -0500239 min_t(unsigned long,
240 nr_pages, ARRAY_SIZE(pages)), pages);
Chris Masonc8b97812008-10-29 14:49:59 -0400241 if (ret == 0) {
242 nr_pages -= 1;
243 index += 1;
244 continue;
245 }
246 for (i = 0; i < ret; i++) {
Filipe Manana7bdcefc2014-10-07 01:48:26 +0100247 if (cb->errors)
248 SetPageError(pages[i]);
Chris Masonc8b97812008-10-29 14:49:59 -0400249 end_page_writeback(pages[i]);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300250 put_page(pages[i]);
Chris Masonc8b97812008-10-29 14:49:59 -0400251 }
252 nr_pages -= ret;
253 index += ret;
254 }
255 /* the inode may be gone now */
Chris Masonc8b97812008-10-29 14:49:59 -0400256}
257
258/*
259 * do the cleanup once all the compressed pages hit the disk.
260 * This will clear writeback on the file pages and free the compressed
261 * pages.
262 *
263 * This also calls the writeback end hooks for the file pages so that
264 * metadata and checksums can be updated in the file.
265 */
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200266static void end_compressed_bio_write(struct bio *bio)
Chris Masonc8b97812008-10-29 14:49:59 -0400267{
268 struct extent_io_tree *tree;
269 struct compressed_bio *cb = bio->bi_private;
270 struct inode *inode;
271 struct page *page;
272 unsigned long index;
273
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200274 if (bio->bi_error)
Chris Masonc8b97812008-10-29 14:49:59 -0400275 cb->errors = 1;
276
277 /* if there are more bios still pending for this compressed
278 * extent, just exit
279 */
280 if (!atomic_dec_and_test(&cb->pending_bios))
281 goto out;
282
283 /* ok, we're the last bio for this extent, step one is to
284 * call back into the FS and do all the end_io operations
285 */
286 inode = cb->inode;
287 tree = &BTRFS_I(inode)->io_tree;
Chris Mason70b99e62008-10-31 12:46:39 -0400288 cb->compressed_pages[0]->mapping = cb->inode->i_mapping;
Chris Masonc8b97812008-10-29 14:49:59 -0400289 tree->ops->writepage_end_io_hook(cb->compressed_pages[0],
290 cb->start,
291 cb->start + cb->len - 1,
Filipe Manana7bdcefc2014-10-07 01:48:26 +0100292 NULL,
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200293 bio->bi_error ? 0 : 1);
Chris Mason70b99e62008-10-31 12:46:39 -0400294 cb->compressed_pages[0]->mapping = NULL;
Chris Masonc8b97812008-10-29 14:49:59 -0400295
Filipe Manana7bdcefc2014-10-07 01:48:26 +0100296 end_compressed_writeback(inode, cb);
Chris Masonc8b97812008-10-29 14:49:59 -0400297 /* note, our inode could be gone now */
298
299 /*
300 * release the compressed pages, these came from alloc_page and
301 * are not attached to the inode at all
302 */
303 index = 0;
304 for (index = 0; index < cb->nr_pages; index++) {
305 page = cb->compressed_pages[index];
306 page->mapping = NULL;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300307 put_page(page);
Chris Masonc8b97812008-10-29 14:49:59 -0400308 }
309
310 /* finally free the cb struct */
311 kfree(cb->compressed_pages);
312 kfree(cb);
313out:
314 bio_put(bio);
315}
316
317/*
318 * worker function to build and submit bios for previously compressed pages.
319 * The corresponding pages in the inode should be marked for writeback
320 * and the compressed pages should have a reference on them for dropping
321 * when the IO is complete.
322 *
323 * This also checksums the file bytes and gets things ready for
324 * the end io hooks.
325 */
326int btrfs_submit_compressed_write(struct inode *inode, u64 start,
327 unsigned long len, u64 disk_start,
328 unsigned long compressed_len,
329 struct page **compressed_pages,
330 unsigned long nr_pages)
331{
332 struct bio *bio = NULL;
333 struct btrfs_root *root = BTRFS_I(inode)->root;
334 struct compressed_bio *cb;
335 unsigned long bytes_left;
336 struct extent_io_tree *io_tree = &BTRFS_I(inode)->io_tree;
David Sterba306e16c2011-04-19 14:29:38 +0200337 int pg_index = 0;
Chris Masonc8b97812008-10-29 14:49:59 -0400338 struct page *page;
339 u64 first_byte = disk_start;
340 struct block_device *bdev;
341 int ret;
Li Zefane55179b2011-07-14 03:16:47 +0000342 int skip_sum = BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM;
Chris Masonc8b97812008-10-29 14:49:59 -0400343
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300344 WARN_ON(start & ((u64)PAGE_SIZE - 1));
Chris Masond20f7042008-12-08 16:58:54 -0500345 cb = kmalloc(compressed_bio_size(root, compressed_len), GFP_NOFS);
Yoshinori Sanodac97e512011-02-15 12:01:42 +0000346 if (!cb)
347 return -ENOMEM;
Chris Masonc8b97812008-10-29 14:49:59 -0400348 atomic_set(&cb->pending_bios, 0);
349 cb->errors = 0;
350 cb->inode = inode;
351 cb->start = start;
352 cb->len = len;
Chris Masond20f7042008-12-08 16:58:54 -0500353 cb->mirror_num = 0;
Chris Masonc8b97812008-10-29 14:49:59 -0400354 cb->compressed_pages = compressed_pages;
355 cb->compressed_len = compressed_len;
356 cb->orig_bio = NULL;
357 cb->nr_pages = nr_pages;
358
359 bdev = BTRFS_I(inode)->root->fs_info->fs_devices->latest_bdev;
360
Chris Masonc8b97812008-10-29 14:49:59 -0400361 bio = compressed_bio_alloc(bdev, first_byte, GFP_NOFS);
Dulshani Gunawardhana67871252013-10-31 10:33:04 +0530362 if (!bio) {
Yoshinori Sanodac97e512011-02-15 12:01:42 +0000363 kfree(cb);
364 return -ENOMEM;
365 }
Mike Christie37226b22016-06-05 14:31:52 -0500366 bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
Chris Masonc8b97812008-10-29 14:49:59 -0400367 bio->bi_private = cb;
368 bio->bi_end_io = end_compressed_bio_write;
369 atomic_inc(&cb->pending_bios);
370
371 /* create and submit bios for the compressed pages */
372 bytes_left = compressed_len;
David Sterba306e16c2011-04-19 14:29:38 +0200373 for (pg_index = 0; pg_index < cb->nr_pages; pg_index++) {
374 page = compressed_pages[pg_index];
Chris Masonc8b97812008-10-29 14:49:59 -0400375 page->mapping = inode->i_mapping;
Kent Overstreet4f024f32013-10-11 15:44:27 -0700376 if (bio->bi_iter.bi_size)
Mike Christie81a75f62016-06-05 14:31:54 -0500377 ret = io_tree->ops->merge_bio_hook(page, 0,
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300378 PAGE_SIZE,
Chris Masonc8b97812008-10-29 14:49:59 -0400379 bio, 0);
380 else
381 ret = 0;
382
Chris Mason70b99e62008-10-31 12:46:39 -0400383 page->mapping = NULL;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300384 if (ret || bio_add_page(bio, page, PAGE_SIZE, 0) <
385 PAGE_SIZE) {
Chris Masonc8b97812008-10-29 14:49:59 -0400386 bio_get(bio);
387
Chris Masonaf09abf2008-11-07 12:35:44 -0500388 /*
389 * inc the count before we submit the bio so
390 * we know the end IO handler won't happen before
391 * we inc the count. Otherwise, the cb might get
392 * freed before we're done setting it up
393 */
394 atomic_inc(&cb->pending_bios);
David Sterbabfebd8b2014-07-30 00:25:45 +0200395 ret = btrfs_bio_wq_end_io(root->fs_info, bio,
396 BTRFS_WQ_ENDIO_DATA);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100397 BUG_ON(ret); /* -ENOMEM */
Chris Masonc8b97812008-10-29 14:49:59 -0400398
Li Zefane55179b2011-07-14 03:16:47 +0000399 if (!skip_sum) {
400 ret = btrfs_csum_one_bio(root, inode, bio,
401 start, 1);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100402 BUG_ON(ret); /* -ENOMEM */
Li Zefane55179b2011-07-14 03:16:47 +0000403 }
Chris Masond20f7042008-12-08 16:58:54 -0500404
Mike Christie81a75f62016-06-05 14:31:54 -0500405 ret = btrfs_map_bio(root, bio, 0, 1);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100406 BUG_ON(ret); /* -ENOMEM */
Chris Masonc8b97812008-10-29 14:49:59 -0400407
408 bio_put(bio);
409
410 bio = compressed_bio_alloc(bdev, first_byte, GFP_NOFS);
Tsutomu Itohe627ee72012-04-12 16:03:56 -0400411 BUG_ON(!bio);
Mike Christie37226b22016-06-05 14:31:52 -0500412 bio_set_op_attrs(bio, REQ_OP_WRITE, 0);
Chris Masonc8b97812008-10-29 14:49:59 -0400413 bio->bi_private = cb;
414 bio->bi_end_io = end_compressed_bio_write;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300415 bio_add_page(bio, page, PAGE_SIZE, 0);
Chris Masonc8b97812008-10-29 14:49:59 -0400416 }
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300417 if (bytes_left < PAGE_SIZE) {
Frank Holtonefe120a2013-12-20 11:37:06 -0500418 btrfs_info(BTRFS_I(inode)->root->fs_info,
419 "bytes left %lu compress len %lu nr %lu",
Chris Masoncfbc2462008-10-30 13:22:14 -0400420 bytes_left, cb->compressed_len, cb->nr_pages);
421 }
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300422 bytes_left -= PAGE_SIZE;
423 first_byte += PAGE_SIZE;
Chris Mason771ed682008-11-06 22:02:51 -0500424 cond_resched();
Chris Masonc8b97812008-10-29 14:49:59 -0400425 }
426 bio_get(bio);
427
David Sterbabfebd8b2014-07-30 00:25:45 +0200428 ret = btrfs_bio_wq_end_io(root->fs_info, bio, BTRFS_WQ_ENDIO_DATA);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100429 BUG_ON(ret); /* -ENOMEM */
Chris Masonc8b97812008-10-29 14:49:59 -0400430
Li Zefane55179b2011-07-14 03:16:47 +0000431 if (!skip_sum) {
432 ret = btrfs_csum_one_bio(root, inode, bio, start, 1);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100433 BUG_ON(ret); /* -ENOMEM */
Li Zefane55179b2011-07-14 03:16:47 +0000434 }
Chris Masond20f7042008-12-08 16:58:54 -0500435
Mike Christie81a75f62016-06-05 14:31:54 -0500436 ret = btrfs_map_bio(root, bio, 0, 1);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100437 BUG_ON(ret); /* -ENOMEM */
Chris Masonc8b97812008-10-29 14:49:59 -0400438
439 bio_put(bio);
440 return 0;
441}
442
Chris Mason771ed682008-11-06 22:02:51 -0500443static noinline int add_ra_bio_pages(struct inode *inode,
444 u64 compressed_end,
445 struct compressed_bio *cb)
446{
447 unsigned long end_index;
David Sterba306e16c2011-04-19 14:29:38 +0200448 unsigned long pg_index;
Chris Mason771ed682008-11-06 22:02:51 -0500449 u64 last_offset;
450 u64 isize = i_size_read(inode);
451 int ret;
452 struct page *page;
453 unsigned long nr_pages = 0;
454 struct extent_map *em;
455 struct address_space *mapping = inode->i_mapping;
Chris Mason771ed682008-11-06 22:02:51 -0500456 struct extent_map_tree *em_tree;
457 struct extent_io_tree *tree;
458 u64 end;
459 int misses = 0;
460
461 page = cb->orig_bio->bi_io_vec[cb->orig_bio->bi_vcnt - 1].bv_page;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300462 last_offset = (page_offset(page) + PAGE_SIZE);
Chris Mason771ed682008-11-06 22:02:51 -0500463 em_tree = &BTRFS_I(inode)->extent_tree;
464 tree = &BTRFS_I(inode)->io_tree;
465
466 if (isize == 0)
467 return 0;
468
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300469 end_index = (i_size_read(inode) - 1) >> PAGE_SHIFT;
Chris Mason771ed682008-11-06 22:02:51 -0500470
Chris Masond3977122009-01-05 21:25:51 -0500471 while (last_offset < compressed_end) {
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300472 pg_index = last_offset >> PAGE_SHIFT;
Chris Mason771ed682008-11-06 22:02:51 -0500473
David Sterba306e16c2011-04-19 14:29:38 +0200474 if (pg_index > end_index)
Chris Mason771ed682008-11-06 22:02:51 -0500475 break;
476
477 rcu_read_lock();
David Sterba306e16c2011-04-19 14:29:38 +0200478 page = radix_tree_lookup(&mapping->page_tree, pg_index);
Chris Mason771ed682008-11-06 22:02:51 -0500479 rcu_read_unlock();
Johannes Weiner0cd61442014-04-03 14:47:46 -0700480 if (page && !radix_tree_exceptional_entry(page)) {
Chris Mason771ed682008-11-06 22:02:51 -0500481 misses++;
482 if (misses > 4)
483 break;
484 goto next;
485 }
486
Michal Hockoc62d2552015-11-06 16:28:49 -0800487 page = __page_cache_alloc(mapping_gfp_constraint(mapping,
488 ~__GFP_FS));
Chris Mason771ed682008-11-06 22:02:51 -0500489 if (!page)
490 break;
491
Michal Hockoc62d2552015-11-06 16:28:49 -0800492 if (add_to_page_cache_lru(page, mapping, pg_index, GFP_NOFS)) {
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300493 put_page(page);
Chris Mason771ed682008-11-06 22:02:51 -0500494 goto next;
495 }
496
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300497 end = last_offset + PAGE_SIZE - 1;
Chris Mason771ed682008-11-06 22:02:51 -0500498 /*
499 * at this point, we have a locked page in the page cache
500 * for these bytes in the file. But, we have to make
501 * sure they map to this compressed extent on disk.
502 */
503 set_page_extent_mapped(page);
Jeff Mahoneyd0082372012-03-01 14:57:19 +0100504 lock_extent(tree, last_offset, end);
Chris Mason890871b2009-09-02 16:24:52 -0400505 read_lock(&em_tree->lock);
Chris Mason771ed682008-11-06 22:02:51 -0500506 em = lookup_extent_mapping(em_tree, last_offset,
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300507 PAGE_SIZE);
Chris Mason890871b2009-09-02 16:24:52 -0400508 read_unlock(&em_tree->lock);
Chris Mason771ed682008-11-06 22:02:51 -0500509
510 if (!em || last_offset < em->start ||
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300511 (last_offset + PAGE_SIZE > extent_map_end(em)) ||
Kent Overstreet4f024f32013-10-11 15:44:27 -0700512 (em->block_start >> 9) != cb->orig_bio->bi_iter.bi_sector) {
Chris Mason771ed682008-11-06 22:02:51 -0500513 free_extent_map(em);
Jeff Mahoneyd0082372012-03-01 14:57:19 +0100514 unlock_extent(tree, last_offset, end);
Chris Mason771ed682008-11-06 22:02:51 -0500515 unlock_page(page);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300516 put_page(page);
Chris Mason771ed682008-11-06 22:02:51 -0500517 break;
518 }
519 free_extent_map(em);
520
521 if (page->index == end_index) {
522 char *userpage;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300523 size_t zero_offset = isize & (PAGE_SIZE - 1);
Chris Mason771ed682008-11-06 22:02:51 -0500524
525 if (zero_offset) {
526 int zeros;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300527 zeros = PAGE_SIZE - zero_offset;
Cong Wang7ac687d2011-11-25 23:14:28 +0800528 userpage = kmap_atomic(page);
Chris Mason771ed682008-11-06 22:02:51 -0500529 memset(userpage + zero_offset, 0, zeros);
530 flush_dcache_page(page);
Cong Wang7ac687d2011-11-25 23:14:28 +0800531 kunmap_atomic(userpage);
Chris Mason771ed682008-11-06 22:02:51 -0500532 }
533 }
534
535 ret = bio_add_page(cb->orig_bio, page,
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300536 PAGE_SIZE, 0);
Chris Mason771ed682008-11-06 22:02:51 -0500537
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300538 if (ret == PAGE_SIZE) {
Chris Mason771ed682008-11-06 22:02:51 -0500539 nr_pages++;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300540 put_page(page);
Chris Mason771ed682008-11-06 22:02:51 -0500541 } else {
Jeff Mahoneyd0082372012-03-01 14:57:19 +0100542 unlock_extent(tree, last_offset, end);
Chris Mason771ed682008-11-06 22:02:51 -0500543 unlock_page(page);
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300544 put_page(page);
Chris Mason771ed682008-11-06 22:02:51 -0500545 break;
546 }
547next:
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300548 last_offset += PAGE_SIZE;
Chris Mason771ed682008-11-06 22:02:51 -0500549 }
Chris Mason771ed682008-11-06 22:02:51 -0500550 return 0;
551}
552
Chris Masonc8b97812008-10-29 14:49:59 -0400553/*
554 * for a compressed read, the bio we get passed has all the inode pages
555 * in it. We don't actually do IO on those pages but allocate new ones
556 * to hold the compressed pages on disk.
557 *
Kent Overstreet4f024f32013-10-11 15:44:27 -0700558 * bio->bi_iter.bi_sector points to the compressed extent on disk
Chris Masonc8b97812008-10-29 14:49:59 -0400559 * bio->bi_io_vec points to all of the inode pages
560 * bio->bi_vcnt is a count of pages
561 *
562 * After the compressed pages are read, we copy the bytes into the
563 * bio we were passed and then call the bio end_io calls
564 */
565int btrfs_submit_compressed_read(struct inode *inode, struct bio *bio,
566 int mirror_num, unsigned long bio_flags)
567{
568 struct extent_io_tree *tree;
569 struct extent_map_tree *em_tree;
570 struct compressed_bio *cb;
571 struct btrfs_root *root = BTRFS_I(inode)->root;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300572 unsigned long uncompressed_len = bio->bi_vcnt * PAGE_SIZE;
Chris Masonc8b97812008-10-29 14:49:59 -0400573 unsigned long compressed_len;
574 unsigned long nr_pages;
David Sterba306e16c2011-04-19 14:29:38 +0200575 unsigned long pg_index;
Chris Masonc8b97812008-10-29 14:49:59 -0400576 struct page *page;
577 struct block_device *bdev;
578 struct bio *comp_bio;
Kent Overstreet4f024f32013-10-11 15:44:27 -0700579 u64 cur_disk_byte = (u64)bio->bi_iter.bi_sector << 9;
Chris Masone04ca622008-11-10 11:44:58 -0500580 u64 em_len;
581 u64 em_start;
Chris Masonc8b97812008-10-29 14:49:59 -0400582 struct extent_map *em;
liubo6b82ce82011-01-26 06:21:39 +0000583 int ret = -ENOMEM;
Josef Bacik15e30042012-10-05 13:39:50 -0400584 int faili = 0;
Chris Masond20f7042008-12-08 16:58:54 -0500585 u32 *sums;
Chris Masonc8b97812008-10-29 14:49:59 -0400586
587 tree = &BTRFS_I(inode)->io_tree;
588 em_tree = &BTRFS_I(inode)->extent_tree;
589
590 /* we need the actual starting offset of this extent in the file */
Chris Mason890871b2009-09-02 16:24:52 -0400591 read_lock(&em_tree->lock);
Chris Masonc8b97812008-10-29 14:49:59 -0400592 em = lookup_extent_mapping(em_tree,
593 page_offset(bio->bi_io_vec->bv_page),
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300594 PAGE_SIZE);
Chris Mason890871b2009-09-02 16:24:52 -0400595 read_unlock(&em_tree->lock);
Tsutomu Itoh285190d2012-02-16 16:23:58 +0900596 if (!em)
597 return -EIO;
Chris Masonc8b97812008-10-29 14:49:59 -0400598
Chris Masond20f7042008-12-08 16:58:54 -0500599 compressed_len = em->block_len;
600 cb = kmalloc(compressed_bio_size(root, compressed_len), GFP_NOFS);
liubo6b82ce82011-01-26 06:21:39 +0000601 if (!cb)
602 goto out;
603
Chris Masonc8b97812008-10-29 14:49:59 -0400604 atomic_set(&cb->pending_bios, 0);
605 cb->errors = 0;
606 cb->inode = inode;
Chris Masond20f7042008-12-08 16:58:54 -0500607 cb->mirror_num = mirror_num;
608 sums = &cb->sums;
Chris Masonc8b97812008-10-29 14:49:59 -0400609
Yan Zhengff5b7ee2008-11-10 07:34:43 -0500610 cb->start = em->orig_start;
Chris Masone04ca622008-11-10 11:44:58 -0500611 em_len = em->len;
612 em_start = em->start;
Chris Masond20f7042008-12-08 16:58:54 -0500613
Chris Masonc8b97812008-10-29 14:49:59 -0400614 free_extent_map(em);
Chris Masone04ca622008-11-10 11:44:58 -0500615 em = NULL;
Chris Masonc8b97812008-10-29 14:49:59 -0400616
617 cb->len = uncompressed_len;
618 cb->compressed_len = compressed_len;
Li Zefan261507a02010-12-17 14:21:50 +0800619 cb->compress_type = extent_compress_type(bio_flags);
Chris Masonc8b97812008-10-29 14:49:59 -0400620 cb->orig_bio = bio;
621
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300622 nr_pages = DIV_ROUND_UP(compressed_len, PAGE_SIZE);
David Sterba31e818f2015-02-20 18:00:26 +0100623 cb->compressed_pages = kcalloc(nr_pages, sizeof(struct page *),
Chris Masonc8b97812008-10-29 14:49:59 -0400624 GFP_NOFS);
liubo6b82ce82011-01-26 06:21:39 +0000625 if (!cb->compressed_pages)
626 goto fail1;
627
Chris Masonc8b97812008-10-29 14:49:59 -0400628 bdev = BTRFS_I(inode)->root->fs_info->fs_devices->latest_bdev;
629
David Sterba306e16c2011-04-19 14:29:38 +0200630 for (pg_index = 0; pg_index < nr_pages; pg_index++) {
631 cb->compressed_pages[pg_index] = alloc_page(GFP_NOFS |
Chris Masonc8b97812008-10-29 14:49:59 -0400632 __GFP_HIGHMEM);
Josef Bacik15e30042012-10-05 13:39:50 -0400633 if (!cb->compressed_pages[pg_index]) {
634 faili = pg_index - 1;
635 ret = -ENOMEM;
liubo6b82ce82011-01-26 06:21:39 +0000636 goto fail2;
Josef Bacik15e30042012-10-05 13:39:50 -0400637 }
Chris Masonc8b97812008-10-29 14:49:59 -0400638 }
Josef Bacik15e30042012-10-05 13:39:50 -0400639 faili = nr_pages - 1;
Chris Masonc8b97812008-10-29 14:49:59 -0400640 cb->nr_pages = nr_pages;
641
Filipe Manana7f042a82016-01-27 19:17:20 +0000642 add_ra_bio_pages(inode, em_start + em_len, cb);
Chris Mason771ed682008-11-06 22:02:51 -0500643
Chris Mason771ed682008-11-06 22:02:51 -0500644 /* include any pages we added in add_ra-bio_pages */
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300645 uncompressed_len = bio->bi_vcnt * PAGE_SIZE;
Chris Mason771ed682008-11-06 22:02:51 -0500646 cb->len = uncompressed_len;
647
Chris Masonc8b97812008-10-29 14:49:59 -0400648 comp_bio = compressed_bio_alloc(bdev, cur_disk_byte, GFP_NOFS);
liubo6b82ce82011-01-26 06:21:39 +0000649 if (!comp_bio)
650 goto fail2;
Mike Christie37226b22016-06-05 14:31:52 -0500651 bio_set_op_attrs (comp_bio, REQ_OP_READ, 0);
Chris Masonc8b97812008-10-29 14:49:59 -0400652 comp_bio->bi_private = cb;
653 comp_bio->bi_end_io = end_compressed_bio_read;
654 atomic_inc(&cb->pending_bios);
655
David Sterba306e16c2011-04-19 14:29:38 +0200656 for (pg_index = 0; pg_index < nr_pages; pg_index++) {
657 page = cb->compressed_pages[pg_index];
Chris Masonc8b97812008-10-29 14:49:59 -0400658 page->mapping = inode->i_mapping;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300659 page->index = em_start >> PAGE_SHIFT;
Chris Masond20f7042008-12-08 16:58:54 -0500660
Kent Overstreet4f024f32013-10-11 15:44:27 -0700661 if (comp_bio->bi_iter.bi_size)
Mike Christie81a75f62016-06-05 14:31:54 -0500662 ret = tree->ops->merge_bio_hook(page, 0,
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300663 PAGE_SIZE,
Chris Masonc8b97812008-10-29 14:49:59 -0400664 comp_bio, 0);
665 else
666 ret = 0;
667
Chris Mason70b99e62008-10-31 12:46:39 -0400668 page->mapping = NULL;
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300669 if (ret || bio_add_page(comp_bio, page, PAGE_SIZE, 0) <
670 PAGE_SIZE) {
Chris Masonc8b97812008-10-29 14:49:59 -0400671 bio_get(comp_bio);
672
David Sterbabfebd8b2014-07-30 00:25:45 +0200673 ret = btrfs_bio_wq_end_io(root->fs_info, comp_bio,
674 BTRFS_WQ_ENDIO_DATA);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100675 BUG_ON(ret); /* -ENOMEM */
Chris Masonc8b97812008-10-29 14:49:59 -0400676
Chris Masonaf09abf2008-11-07 12:35:44 -0500677 /*
678 * inc the count before we submit the bio so
679 * we know the end IO handler won't happen before
680 * we inc the count. Otherwise, the cb might get
681 * freed before we're done setting it up
682 */
683 atomic_inc(&cb->pending_bios);
684
Christoph Hellwig6cbff002009-04-17 10:37:41 +0200685 if (!(BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM)) {
Tsutomu Itohc2db1072011-03-01 06:48:31 +0000686 ret = btrfs_lookup_bio_sums(root, inode,
687 comp_bio, sums);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100688 BUG_ON(ret); /* -ENOMEM */
Chris Masond20f7042008-12-08 16:58:54 -0500689 }
David Sterbaed6078f2014-06-05 01:59:57 +0200690 sums += DIV_ROUND_UP(comp_bio->bi_iter.bi_size,
691 root->sectorsize);
Chris Masond20f7042008-12-08 16:58:54 -0500692
Mike Christie81a75f62016-06-05 14:31:54 -0500693 ret = btrfs_map_bio(root, comp_bio, mirror_num, 0);
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200694 if (ret) {
695 bio->bi_error = ret;
696 bio_endio(comp_bio);
697 }
Chris Masonc8b97812008-10-29 14:49:59 -0400698
699 bio_put(comp_bio);
700
701 comp_bio = compressed_bio_alloc(bdev, cur_disk_byte,
702 GFP_NOFS);
Tsutomu Itohe627ee72012-04-12 16:03:56 -0400703 BUG_ON(!comp_bio);
Mike Christie37226b22016-06-05 14:31:52 -0500704 bio_set_op_attrs(comp_bio, REQ_OP_READ, 0);
Chris Mason771ed682008-11-06 22:02:51 -0500705 comp_bio->bi_private = cb;
706 comp_bio->bi_end_io = end_compressed_bio_read;
707
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300708 bio_add_page(comp_bio, page, PAGE_SIZE, 0);
Chris Masonc8b97812008-10-29 14:49:59 -0400709 }
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300710 cur_disk_byte += PAGE_SIZE;
Chris Masonc8b97812008-10-29 14:49:59 -0400711 }
712 bio_get(comp_bio);
713
David Sterbabfebd8b2014-07-30 00:25:45 +0200714 ret = btrfs_bio_wq_end_io(root->fs_info, comp_bio,
715 BTRFS_WQ_ENDIO_DATA);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100716 BUG_ON(ret); /* -ENOMEM */
Chris Masonc8b97812008-10-29 14:49:59 -0400717
Tsutomu Itohc2db1072011-03-01 06:48:31 +0000718 if (!(BTRFS_I(inode)->flags & BTRFS_INODE_NODATASUM)) {
719 ret = btrfs_lookup_bio_sums(root, inode, comp_bio, sums);
Jeff Mahoney79787ea2012-03-12 16:03:00 +0100720 BUG_ON(ret); /* -ENOMEM */
Tsutomu Itohc2db1072011-03-01 06:48:31 +0000721 }
Chris Masond20f7042008-12-08 16:58:54 -0500722
Mike Christie81a75f62016-06-05 14:31:54 -0500723 ret = btrfs_map_bio(root, comp_bio, mirror_num, 0);
Christoph Hellwig4246a0b2015-07-20 15:29:37 +0200724 if (ret) {
725 bio->bi_error = ret;
726 bio_endio(comp_bio);
727 }
Chris Masonc8b97812008-10-29 14:49:59 -0400728
729 bio_put(comp_bio);
730 return 0;
liubo6b82ce82011-01-26 06:21:39 +0000731
732fail2:
Josef Bacik15e30042012-10-05 13:39:50 -0400733 while (faili >= 0) {
734 __free_page(cb->compressed_pages[faili]);
735 faili--;
736 }
liubo6b82ce82011-01-26 06:21:39 +0000737
738 kfree(cb->compressed_pages);
739fail1:
740 kfree(cb);
741out:
742 free_extent_map(em);
743 return ret;
Chris Masonc8b97812008-10-29 14:49:59 -0400744}
Li Zefan261507a02010-12-17 14:21:50 +0800745
Byongho Leed9187642015-10-14 14:05:24 +0900746static struct {
747 struct list_head idle_ws;
748 spinlock_t ws_lock;
David Sterba6ac10a62016-04-27 02:15:15 +0200749 /* Number of free workspaces */
750 int free_ws;
751 /* Total number of allocated workspaces */
752 atomic_t total_ws;
753 /* Waiters for a free workspace */
Byongho Leed9187642015-10-14 14:05:24 +0900754 wait_queue_head_t ws_wait;
755} btrfs_comp_ws[BTRFS_COMPRESS_TYPES];
Li Zefan261507a02010-12-17 14:21:50 +0800756
David Sterbae8c9f182015-01-02 18:23:10 +0100757static const struct btrfs_compress_op * const btrfs_compress_op[] = {
Li Zefan261507a02010-12-17 14:21:50 +0800758 &btrfs_zlib_compress,
Li Zefana6fa6fa2010-10-25 15:12:26 +0800759 &btrfs_lzo_compress,
Li Zefan261507a02010-12-17 14:21:50 +0800760};
761
Jeff Mahoney143bede2012-03-01 14:56:26 +0100762void __init btrfs_init_compress(void)
Li Zefan261507a02010-12-17 14:21:50 +0800763{
764 int i;
765
766 for (i = 0; i < BTRFS_COMPRESS_TYPES; i++) {
David Sterbaf77dd0d2016-04-27 02:55:15 +0200767 struct list_head *workspace;
768
Byongho Leed9187642015-10-14 14:05:24 +0900769 INIT_LIST_HEAD(&btrfs_comp_ws[i].idle_ws);
770 spin_lock_init(&btrfs_comp_ws[i].ws_lock);
David Sterba6ac10a62016-04-27 02:15:15 +0200771 atomic_set(&btrfs_comp_ws[i].total_ws, 0);
Byongho Leed9187642015-10-14 14:05:24 +0900772 init_waitqueue_head(&btrfs_comp_ws[i].ws_wait);
David Sterbaf77dd0d2016-04-27 02:55:15 +0200773
774 /*
775 * Preallocate one workspace for each compression type so
776 * we can guarantee forward progress in the worst case
777 */
778 workspace = btrfs_compress_op[i]->alloc_workspace();
779 if (IS_ERR(workspace)) {
780 printk(KERN_WARNING
781 "BTRFS: cannot preallocate compression workspace, will try later");
782 } else {
783 atomic_set(&btrfs_comp_ws[i].total_ws, 1);
784 btrfs_comp_ws[i].free_ws = 1;
785 list_add(workspace, &btrfs_comp_ws[i].idle_ws);
786 }
Li Zefan261507a02010-12-17 14:21:50 +0800787 }
Li Zefan261507a02010-12-17 14:21:50 +0800788}
789
790/*
David Sterbae721e492016-04-27 02:41:17 +0200791 * This finds an available workspace or allocates a new one.
792 * If it's not possible to allocate a new one, waits until there's one.
793 * Preallocation makes a forward progress guarantees and we do not return
794 * errors.
Li Zefan261507a02010-12-17 14:21:50 +0800795 */
796static struct list_head *find_workspace(int type)
797{
798 struct list_head *workspace;
799 int cpus = num_online_cpus();
800 int idx = type - 1;
801
Byongho Leed9187642015-10-14 14:05:24 +0900802 struct list_head *idle_ws = &btrfs_comp_ws[idx].idle_ws;
803 spinlock_t *ws_lock = &btrfs_comp_ws[idx].ws_lock;
David Sterba6ac10a62016-04-27 02:15:15 +0200804 atomic_t *total_ws = &btrfs_comp_ws[idx].total_ws;
Byongho Leed9187642015-10-14 14:05:24 +0900805 wait_queue_head_t *ws_wait = &btrfs_comp_ws[idx].ws_wait;
David Sterba6ac10a62016-04-27 02:15:15 +0200806 int *free_ws = &btrfs_comp_ws[idx].free_ws;
Li Zefan261507a02010-12-17 14:21:50 +0800807again:
Byongho Leed9187642015-10-14 14:05:24 +0900808 spin_lock(ws_lock);
809 if (!list_empty(idle_ws)) {
810 workspace = idle_ws->next;
Li Zefan261507a02010-12-17 14:21:50 +0800811 list_del(workspace);
David Sterba6ac10a62016-04-27 02:15:15 +0200812 (*free_ws)--;
Byongho Leed9187642015-10-14 14:05:24 +0900813 spin_unlock(ws_lock);
Li Zefan261507a02010-12-17 14:21:50 +0800814 return workspace;
815
816 }
David Sterba6ac10a62016-04-27 02:15:15 +0200817 if (atomic_read(total_ws) > cpus) {
Li Zefan261507a02010-12-17 14:21:50 +0800818 DEFINE_WAIT(wait);
819
Byongho Leed9187642015-10-14 14:05:24 +0900820 spin_unlock(ws_lock);
821 prepare_to_wait(ws_wait, &wait, TASK_UNINTERRUPTIBLE);
David Sterba6ac10a62016-04-27 02:15:15 +0200822 if (atomic_read(total_ws) > cpus && !*free_ws)
Li Zefan261507a02010-12-17 14:21:50 +0800823 schedule();
Byongho Leed9187642015-10-14 14:05:24 +0900824 finish_wait(ws_wait, &wait);
Li Zefan261507a02010-12-17 14:21:50 +0800825 goto again;
826 }
David Sterba6ac10a62016-04-27 02:15:15 +0200827 atomic_inc(total_ws);
Byongho Leed9187642015-10-14 14:05:24 +0900828 spin_unlock(ws_lock);
Li Zefan261507a02010-12-17 14:21:50 +0800829
830 workspace = btrfs_compress_op[idx]->alloc_workspace();
831 if (IS_ERR(workspace)) {
David Sterba6ac10a62016-04-27 02:15:15 +0200832 atomic_dec(total_ws);
Byongho Leed9187642015-10-14 14:05:24 +0900833 wake_up(ws_wait);
David Sterbae721e492016-04-27 02:41:17 +0200834
835 /*
836 * Do not return the error but go back to waiting. There's a
837 * workspace preallocated for each type and the compression
838 * time is bounded so we get to a workspace eventually. This
839 * makes our caller's life easier.
David Sterba523567162016-04-27 03:07:39 +0200840 *
841 * To prevent silent and low-probability deadlocks (when the
842 * initial preallocation fails), check if there are any
843 * workspaces at all.
David Sterbae721e492016-04-27 02:41:17 +0200844 */
David Sterba523567162016-04-27 03:07:39 +0200845 if (atomic_read(total_ws) == 0) {
846 static DEFINE_RATELIMIT_STATE(_rs,
847 /* once per minute */ 60 * HZ,
848 /* no burst */ 1);
849
850 if (__ratelimit(&_rs)) {
851 printk(KERN_WARNING
852 "no compression workspaces, low memory, retrying");
853 }
854 }
David Sterbae721e492016-04-27 02:41:17 +0200855 goto again;
Li Zefan261507a02010-12-17 14:21:50 +0800856 }
857 return workspace;
858}
859
860/*
861 * put a workspace struct back on the list or free it if we have enough
862 * idle ones sitting around
863 */
864static void free_workspace(int type, struct list_head *workspace)
865{
866 int idx = type - 1;
Byongho Leed9187642015-10-14 14:05:24 +0900867 struct list_head *idle_ws = &btrfs_comp_ws[idx].idle_ws;
868 spinlock_t *ws_lock = &btrfs_comp_ws[idx].ws_lock;
David Sterba6ac10a62016-04-27 02:15:15 +0200869 atomic_t *total_ws = &btrfs_comp_ws[idx].total_ws;
Byongho Leed9187642015-10-14 14:05:24 +0900870 wait_queue_head_t *ws_wait = &btrfs_comp_ws[idx].ws_wait;
David Sterba6ac10a62016-04-27 02:15:15 +0200871 int *free_ws = &btrfs_comp_ws[idx].free_ws;
Li Zefan261507a02010-12-17 14:21:50 +0800872
Byongho Leed9187642015-10-14 14:05:24 +0900873 spin_lock(ws_lock);
David Sterba6ac10a62016-04-27 02:15:15 +0200874 if (*free_ws < num_online_cpus()) {
Byongho Leed9187642015-10-14 14:05:24 +0900875 list_add(workspace, idle_ws);
David Sterba6ac10a62016-04-27 02:15:15 +0200876 (*free_ws)++;
Byongho Leed9187642015-10-14 14:05:24 +0900877 spin_unlock(ws_lock);
Li Zefan261507a02010-12-17 14:21:50 +0800878 goto wake;
879 }
Byongho Leed9187642015-10-14 14:05:24 +0900880 spin_unlock(ws_lock);
Li Zefan261507a02010-12-17 14:21:50 +0800881
882 btrfs_compress_op[idx]->free_workspace(workspace);
David Sterba6ac10a62016-04-27 02:15:15 +0200883 atomic_dec(total_ws);
Li Zefan261507a02010-12-17 14:21:50 +0800884wake:
David Sterbaa83342a2015-02-16 19:36:47 +0100885 /*
886 * Make sure counter is updated before we wake up waiters.
887 */
Josef Bacik66657b32012-08-01 15:36:24 -0400888 smp_mb();
Byongho Leed9187642015-10-14 14:05:24 +0900889 if (waitqueue_active(ws_wait))
890 wake_up(ws_wait);
Li Zefan261507a02010-12-17 14:21:50 +0800891}
892
893/*
894 * cleanup function for module exit
895 */
896static void free_workspaces(void)
897{
898 struct list_head *workspace;
899 int i;
900
901 for (i = 0; i < BTRFS_COMPRESS_TYPES; i++) {
Byongho Leed9187642015-10-14 14:05:24 +0900902 while (!list_empty(&btrfs_comp_ws[i].idle_ws)) {
903 workspace = btrfs_comp_ws[i].idle_ws.next;
Li Zefan261507a02010-12-17 14:21:50 +0800904 list_del(workspace);
905 btrfs_compress_op[i]->free_workspace(workspace);
David Sterba6ac10a62016-04-27 02:15:15 +0200906 atomic_dec(&btrfs_comp_ws[i].total_ws);
Li Zefan261507a02010-12-17 14:21:50 +0800907 }
908 }
909}
910
911/*
912 * given an address space and start/len, compress the bytes.
913 *
914 * pages are allocated to hold the compressed result and stored
915 * in 'pages'
916 *
917 * out_pages is used to return the number of pages allocated. There
918 * may be pages allocated even if we return an error
919 *
920 * total_in is used to return the number of bytes actually read. It
921 * may be smaller then len if we had to exit early because we
922 * ran out of room in the pages array or because we cross the
923 * max_out threshold.
924 *
925 * total_out is used to return the total number of compressed bytes
926 *
927 * max_out tells us the max number of bytes that we're allowed to
928 * stuff into pages
929 */
930int btrfs_compress_pages(int type, struct address_space *mapping,
931 u64 start, unsigned long len,
932 struct page **pages,
933 unsigned long nr_dest_pages,
934 unsigned long *out_pages,
935 unsigned long *total_in,
936 unsigned long *total_out,
937 unsigned long max_out)
938{
939 struct list_head *workspace;
940 int ret;
941
942 workspace = find_workspace(type);
Li Zefan261507a02010-12-17 14:21:50 +0800943
944 ret = btrfs_compress_op[type-1]->compress_pages(workspace, mapping,
945 start, len, pages,
946 nr_dest_pages, out_pages,
947 total_in, total_out,
948 max_out);
949 free_workspace(type, workspace);
950 return ret;
951}
952
953/*
954 * pages_in is an array of pages with compressed data.
955 *
956 * disk_start is the starting logical offset of this array in the file
957 *
958 * bvec is a bio_vec of pages from the file that we want to decompress into
959 *
960 * vcnt is the count of pages in the biovec
961 *
962 * srclen is the number of bytes in pages_in
963 *
964 * The basic idea is that we have a bio that was created by readpages.
965 * The pages in the bio are for the uncompressed data, and they may not
966 * be contiguous. They all correspond to the range of bytes covered by
967 * the compressed extent.
968 */
Eric Sandeen48a3b632013-04-25 20:41:01 +0000969static int btrfs_decompress_biovec(int type, struct page **pages_in,
970 u64 disk_start, struct bio_vec *bvec,
971 int vcnt, size_t srclen)
Li Zefan261507a02010-12-17 14:21:50 +0800972{
973 struct list_head *workspace;
974 int ret;
975
976 workspace = find_workspace(type);
Li Zefan261507a02010-12-17 14:21:50 +0800977
978 ret = btrfs_compress_op[type-1]->decompress_biovec(workspace, pages_in,
979 disk_start,
980 bvec, vcnt, srclen);
981 free_workspace(type, workspace);
982 return ret;
983}
984
985/*
986 * a less complex decompression routine. Our compressed data fits in a
987 * single page, and we want to read a single page out of it.
988 * start_byte tells us the offset into the compressed data we're interested in
989 */
990int btrfs_decompress(int type, unsigned char *data_in, struct page *dest_page,
991 unsigned long start_byte, size_t srclen, size_t destlen)
992{
993 struct list_head *workspace;
994 int ret;
995
996 workspace = find_workspace(type);
Li Zefan261507a02010-12-17 14:21:50 +0800997
998 ret = btrfs_compress_op[type-1]->decompress(workspace, data_in,
999 dest_page, start_byte,
1000 srclen, destlen);
1001
1002 free_workspace(type, workspace);
1003 return ret;
1004}
1005
Alexey Charkov8e4eef72011-02-02 21:15:35 +00001006void btrfs_exit_compress(void)
Li Zefan261507a02010-12-17 14:21:50 +08001007{
1008 free_workspaces();
1009}
Li Zefan3a39c182010-11-08 15:22:19 +08001010
1011/*
1012 * Copy uncompressed data from working buffer to pages.
1013 *
1014 * buf_start is the byte offset we're of the start of our workspace buffer.
1015 *
1016 * total_out is the last byte of the buffer
1017 */
1018int btrfs_decompress_buf2page(char *buf, unsigned long buf_start,
1019 unsigned long total_out, u64 disk_start,
1020 struct bio_vec *bvec, int vcnt,
David Sterba306e16c2011-04-19 14:29:38 +02001021 unsigned long *pg_index,
Li Zefan3a39c182010-11-08 15:22:19 +08001022 unsigned long *pg_offset)
1023{
1024 unsigned long buf_offset;
1025 unsigned long current_buf_start;
1026 unsigned long start_byte;
1027 unsigned long working_bytes = total_out - buf_start;
1028 unsigned long bytes;
1029 char *kaddr;
David Sterba306e16c2011-04-19 14:29:38 +02001030 struct page *page_out = bvec[*pg_index].bv_page;
Li Zefan3a39c182010-11-08 15:22:19 +08001031
1032 /*
1033 * start byte is the first byte of the page we're currently
1034 * copying into relative to the start of the compressed data.
1035 */
1036 start_byte = page_offset(page_out) - disk_start;
1037
1038 /* we haven't yet hit data corresponding to this page */
1039 if (total_out <= start_byte)
1040 return 1;
1041
1042 /*
1043 * the start of the data we care about is offset into
1044 * the middle of our working buffer
1045 */
1046 if (total_out > start_byte && buf_start < start_byte) {
1047 buf_offset = start_byte - buf_start;
1048 working_bytes -= buf_offset;
1049 } else {
1050 buf_offset = 0;
1051 }
1052 current_buf_start = buf_start;
1053
1054 /* copy bytes from the working buffer into the pages */
1055 while (working_bytes > 0) {
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03001056 bytes = min(PAGE_SIZE - *pg_offset,
1057 PAGE_SIZE - buf_offset);
Li Zefan3a39c182010-11-08 15:22:19 +08001058 bytes = min(bytes, working_bytes);
Cong Wang7ac687d2011-11-25 23:14:28 +08001059 kaddr = kmap_atomic(page_out);
Li Zefan3a39c182010-11-08 15:22:19 +08001060 memcpy(kaddr + *pg_offset, buf + buf_offset, bytes);
Cong Wang7ac687d2011-11-25 23:14:28 +08001061 kunmap_atomic(kaddr);
Li Zefan3a39c182010-11-08 15:22:19 +08001062 flush_dcache_page(page_out);
1063
1064 *pg_offset += bytes;
1065 buf_offset += bytes;
1066 working_bytes -= bytes;
1067 current_buf_start += bytes;
1068
1069 /* check if we need to pick another page */
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +03001070 if (*pg_offset == PAGE_SIZE) {
David Sterba306e16c2011-04-19 14:29:38 +02001071 (*pg_index)++;
1072 if (*pg_index >= vcnt)
Li Zefan3a39c182010-11-08 15:22:19 +08001073 return 0;
1074
David Sterba306e16c2011-04-19 14:29:38 +02001075 page_out = bvec[*pg_index].bv_page;
Li Zefan3a39c182010-11-08 15:22:19 +08001076 *pg_offset = 0;
1077 start_byte = page_offset(page_out) - disk_start;
1078
1079 /*
1080 * make sure our new page is covered by this
1081 * working buffer
1082 */
1083 if (total_out <= start_byte)
1084 return 1;
1085
1086 /*
1087 * the next page in the biovec might not be adjacent
1088 * to the last page, but it might still be found
1089 * inside this working buffer. bump our offset pointer
1090 */
1091 if (total_out > start_byte &&
1092 current_buf_start < start_byte) {
1093 buf_offset = start_byte - buf_start;
1094 working_bytes = total_out - start_byte;
1095 current_buf_start = buf_start + buf_offset;
1096 }
1097 }
1098 }
1099
1100 return 1;
1101}
Chris Mason2f19cad2014-11-30 08:56:33 -05001102
1103/*
1104 * When uncompressing data, we need to make sure and zero any parts of
1105 * the biovec that were not filled in by the decompression code. pg_index
1106 * and pg_offset indicate the last page and the last offset of that page
1107 * that have been filled in. This will zero everything remaining in the
1108 * biovec.
1109 */
1110void btrfs_clear_biovec_end(struct bio_vec *bvec, int vcnt,
1111 unsigned long pg_index,
1112 unsigned long pg_offset)
1113{
1114 while (pg_index < vcnt) {
1115 struct page *page = bvec[pg_index].bv_page;
1116 unsigned long off = bvec[pg_index].bv_offset;
1117 unsigned long len = bvec[pg_index].bv_len;
1118
1119 if (pg_offset < off)
1120 pg_offset = off;
1121 if (pg_offset < off + len) {
1122 unsigned long bytes = off + len - pg_offset;
1123 char *kaddr;
1124
1125 kaddr = kmap_atomic(page);
1126 memset(kaddr + pg_offset, 0, bytes);
1127 kunmap_atomic(kaddr);
1128 }
1129 pg_index++;
1130 pg_offset = 0;
1131 }
1132}