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v5.4
  1// SPDX-License-Identifier: GPL-2.0
  2/*
  3 * Copyright (C) 2008 Oracle.  All rights reserved.
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  4 */
  5
  6#include <linux/kernel.h>
  7#include <linux/slab.h>
  8#include <linux/mm.h>
  9#include <linux/init.h>
 10#include <linux/err.h>
 11#include <linux/sched.h>
 12#include <linux/pagemap.h>
 13#include <linux/bio.h>
 14#include <linux/lzo.h>
 15#include <linux/refcount.h>
 16#include "compression.h"
 17
 18#define LZO_LEN	4
 19
 20/*
 21 * Btrfs LZO compression format
 22 *
 23 * Regular and inlined LZO compressed data extents consist of:
 24 *
 25 * 1.  Header
 26 *     Fixed size. LZO_LEN (4) bytes long, LE32.
 27 *     Records the total size (including the header) of compressed data.
 28 *
 29 * 2.  Segment(s)
 30 *     Variable size. Each segment includes one segment header, followed by data
 31 *     payload.
 32 *     One regular LZO compressed extent can have one or more segments.
 33 *     For inlined LZO compressed extent, only one segment is allowed.
 34 *     One segment represents at most one page of uncompressed data.
 35 *
 36 * 2.1 Segment header
 37 *     Fixed size. LZO_LEN (4) bytes long, LE32.
 38 *     Records the total size of the segment (not including the header).
 39 *     Segment header never crosses page boundary, thus it's possible to
 40 *     have at most 3 padding zeros at the end of the page.
 41 *
 42 * 2.2 Data Payload
 43 *     Variable size. Size up limit should be lzo1x_worst_compress(PAGE_SIZE)
 44 *     which is 4419 for a 4KiB page.
 45 *
 46 * Example:
 47 * Page 1:
 48 *          0     0x2   0x4   0x6   0x8   0xa   0xc   0xe     0x10
 49 * 0x0000   |  Header   | SegHdr 01 | Data payload 01 ...     |
 50 * ...
 51 * 0x0ff0   | SegHdr  N | Data payload  N     ...          |00|
 52 *                                                          ^^ padding zeros
 53 * Page 2:
 54 * 0x1000   | SegHdr N+1| Data payload N+1 ...                |
 55 */
 56
 57struct workspace {
 58	void *mem;
 59	void *buf;	/* where decompressed data goes */
 60	void *cbuf;	/* where compressed data goes */
 61	struct list_head list;
 62};
 63
 64static struct workspace_manager wsm;
 65
 66static void lzo_init_workspace_manager(void)
 67{
 68	btrfs_init_workspace_manager(&wsm, &btrfs_lzo_compress);
 69}
 70
 71static void lzo_cleanup_workspace_manager(void)
 72{
 73	btrfs_cleanup_workspace_manager(&wsm);
 74}
 75
 76static struct list_head *lzo_get_workspace(unsigned int level)
 77{
 78	return btrfs_get_workspace(&wsm, level);
 79}
 80
 81static void lzo_put_workspace(struct list_head *ws)
 82{
 83	btrfs_put_workspace(&wsm, ws);
 84}
 85
 86static void lzo_free_workspace(struct list_head *ws)
 87{
 88	struct workspace *workspace = list_entry(ws, struct workspace, list);
 89
 90	kvfree(workspace->buf);
 91	kvfree(workspace->cbuf);
 92	kvfree(workspace->mem);
 93	kfree(workspace);
 94}
 95
 96static struct list_head *lzo_alloc_workspace(unsigned int level)
 97{
 98	struct workspace *workspace;
 99
100	workspace = kzalloc(sizeof(*workspace), GFP_KERNEL);
101	if (!workspace)
102		return ERR_PTR(-ENOMEM);
103
104	workspace->mem = kvmalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
105	workspace->buf = kvmalloc(lzo1x_worst_compress(PAGE_SIZE), GFP_KERNEL);
106	workspace->cbuf = kvmalloc(lzo1x_worst_compress(PAGE_SIZE), GFP_KERNEL);
107	if (!workspace->mem || !workspace->buf || !workspace->cbuf)
108		goto fail;
109
110	INIT_LIST_HEAD(&workspace->list);
111
112	return &workspace->list;
113fail:
114	lzo_free_workspace(&workspace->list);
115	return ERR_PTR(-ENOMEM);
116}
117
118static inline void write_compress_length(char *buf, size_t len)
119{
120	__le32 dlen;
121
122	dlen = cpu_to_le32(len);
123	memcpy(buf, &dlen, LZO_LEN);
124}
125
126static inline size_t read_compress_length(const char *buf)
127{
128	__le32 dlen;
129
130	memcpy(&dlen, buf, LZO_LEN);
131	return le32_to_cpu(dlen);
132}
133
134static int lzo_compress_pages(struct list_head *ws,
135			      struct address_space *mapping,
136			      u64 start,
137			      struct page **pages,
 
138			      unsigned long *out_pages,
139			      unsigned long *total_in,
140			      unsigned long *total_out)
 
141{
142	struct workspace *workspace = list_entry(ws, struct workspace, list);
143	int ret = 0;
144	char *data_in;
145	char *cpage_out;
146	int nr_pages = 0;
147	struct page *in_page = NULL;
148	struct page *out_page = NULL;
149	unsigned long bytes_left;
150	unsigned long len = *total_out;
151	unsigned long nr_dest_pages = *out_pages;
152	const unsigned long max_out = nr_dest_pages * PAGE_SIZE;
153	size_t in_len;
154	size_t out_len;
155	char *buf;
156	unsigned long tot_in = 0;
157	unsigned long tot_out = 0;
158	unsigned long pg_bytes_left;
159	unsigned long out_offset;
160	unsigned long bytes;
161
162	*out_pages = 0;
163	*total_out = 0;
164	*total_in = 0;
165
166	in_page = find_get_page(mapping, start >> PAGE_SHIFT);
167	data_in = kmap(in_page);
168
169	/*
170	 * store the size of all chunks of compressed data in
171	 * the first 4 bytes
172	 */
173	out_page = alloc_page(GFP_NOFS | __GFP_HIGHMEM);
174	if (out_page == NULL) {
175		ret = -ENOMEM;
176		goto out;
177	}
178	cpage_out = kmap(out_page);
179	out_offset = LZO_LEN;
180	tot_out = LZO_LEN;
181	pages[0] = out_page;
182	nr_pages = 1;
183	pg_bytes_left = PAGE_SIZE - LZO_LEN;
184
185	/* compress at most one page of data each time */
186	in_len = min(len, PAGE_SIZE);
187	while (tot_in < len) {
188		ret = lzo1x_1_compress(data_in, in_len, workspace->cbuf,
189				       &out_len, workspace->mem);
190		if (ret != LZO_E_OK) {
191			pr_debug("BTRFS: lzo in loop returned %d\n",
192			       ret);
193			ret = -EIO;
194			goto out;
195		}
196
197		/* store the size of this chunk of compressed data */
198		write_compress_length(cpage_out + out_offset, out_len);
199		tot_out += LZO_LEN;
200		out_offset += LZO_LEN;
201		pg_bytes_left -= LZO_LEN;
202
203		tot_in += in_len;
204		tot_out += out_len;
205
206		/* copy bytes from the working buffer into the pages */
207		buf = workspace->cbuf;
208		while (out_len) {
209			bytes = min_t(unsigned long, pg_bytes_left, out_len);
210
211			memcpy(cpage_out + out_offset, buf, bytes);
212
213			out_len -= bytes;
214			pg_bytes_left -= bytes;
215			buf += bytes;
216			out_offset += bytes;
217
218			/*
219			 * we need another page for writing out.
220			 *
221			 * Note if there's less than 4 bytes left, we just
222			 * skip to a new page.
223			 */
224			if ((out_len == 0 && pg_bytes_left < LZO_LEN) ||
225			    pg_bytes_left == 0) {
226				if (pg_bytes_left) {
227					memset(cpage_out + out_offset, 0,
228					       pg_bytes_left);
229					tot_out += pg_bytes_left;
230				}
231
232				/* we're done, don't allocate new page */
233				if (out_len == 0 && tot_in >= len)
234					break;
235
236				kunmap(out_page);
237				if (nr_pages == nr_dest_pages) {
238					out_page = NULL;
239					ret = -E2BIG;
240					goto out;
241				}
242
243				out_page = alloc_page(GFP_NOFS | __GFP_HIGHMEM);
244				if (out_page == NULL) {
245					ret = -ENOMEM;
246					goto out;
247				}
248				cpage_out = kmap(out_page);
249				pages[nr_pages++] = out_page;
250
251				pg_bytes_left = PAGE_SIZE;
252				out_offset = 0;
253			}
254		}
255
256		/* we're making it bigger, give up */
257		if (tot_in > 8192 && tot_in < tot_out) {
258			ret = -E2BIG;
259			goto out;
260		}
261
262		/* we're all done */
263		if (tot_in >= len)
264			break;
265
266		if (tot_out > max_out)
267			break;
268
269		bytes_left = len - tot_in;
270		kunmap(in_page);
271		put_page(in_page);
272
273		start += PAGE_SIZE;
274		in_page = find_get_page(mapping, start >> PAGE_SHIFT);
275		data_in = kmap(in_page);
276		in_len = min(bytes_left, PAGE_SIZE);
277	}
278
279	if (tot_out >= tot_in) {
280		ret = -E2BIG;
281		goto out;
282	}
283
284	/* store the size of all chunks of compressed data */
285	cpage_out = kmap(pages[0]);
286	write_compress_length(cpage_out, tot_out);
287
288	kunmap(pages[0]);
289
290	ret = 0;
291	*total_out = tot_out;
292	*total_in = tot_in;
293out:
294	*out_pages = nr_pages;
295	if (out_page)
296		kunmap(out_page);
297
298	if (in_page) {
299		kunmap(in_page);
300		put_page(in_page);
301	}
302
303	return ret;
304}
305
306static int lzo_decompress_bio(struct list_head *ws, struct compressed_bio *cb)
 
 
 
 
 
307{
308	struct workspace *workspace = list_entry(ws, struct workspace, list);
309	int ret = 0, ret2;
310	char *data_in;
311	unsigned long page_in_index = 0;
312	size_t srclen = cb->compressed_len;
313	unsigned long total_pages_in = DIV_ROUND_UP(srclen, PAGE_SIZE);
 
314	unsigned long buf_start;
315	unsigned long buf_offset = 0;
316	unsigned long bytes;
317	unsigned long working_bytes;
 
 
318	size_t in_len;
319	size_t out_len;
320	const size_t max_segment_len = lzo1x_worst_compress(PAGE_SIZE);
321	unsigned long in_offset;
322	unsigned long in_page_bytes_left;
323	unsigned long tot_in;
324	unsigned long tot_out;
325	unsigned long tot_len;
326	char *buf;
327	bool may_late_unmap, need_unmap;
328	struct page **pages_in = cb->compressed_pages;
329	u64 disk_start = cb->start;
330	struct bio *orig_bio = cb->orig_bio;
331
332	data_in = kmap(pages_in[0]);
333	tot_len = read_compress_length(data_in);
334	/*
335	 * Compressed data header check.
336	 *
337	 * The real compressed size can't exceed the maximum extent length, and
338	 * all pages should be used (whole unused page with just the segment
339	 * header is not possible).  If this happens it means the compressed
340	 * extent is corrupted.
341	 */
342	if (tot_len > min_t(size_t, BTRFS_MAX_COMPRESSED, srclen) ||
343	    tot_len < srclen - PAGE_SIZE) {
344		ret = -EUCLEAN;
345		goto done;
346	}
347
348	tot_in = LZO_LEN;
349	in_offset = LZO_LEN;
350	in_page_bytes_left = PAGE_SIZE - LZO_LEN;
 
351
352	tot_out = 0;
 
353
354	while (tot_in < tot_len) {
355		in_len = read_compress_length(data_in + in_offset);
356		in_page_bytes_left -= LZO_LEN;
357		in_offset += LZO_LEN;
358		tot_in += LZO_LEN;
359
360		/*
361		 * Segment header check.
362		 *
363		 * The segment length must not exceed the maximum LZO
364		 * compression size, nor the total compressed size.
365		 */
366		if (in_len > max_segment_len || tot_in + in_len > tot_len) {
367			ret = -EUCLEAN;
368			goto done;
369		}
370
371		tot_in += in_len;
372		working_bytes = in_len;
373		may_late_unmap = need_unmap = false;
374
375		/* fast path: avoid using the working buffer */
376		if (in_page_bytes_left >= in_len) {
377			buf = data_in + in_offset;
378			bytes = in_len;
379			may_late_unmap = true;
380			goto cont;
381		}
382
383		/* copy bytes from the pages into the working buffer */
384		buf = workspace->cbuf;
385		buf_offset = 0;
386		while (working_bytes) {
387			bytes = min(working_bytes, in_page_bytes_left);
388
389			memcpy(buf + buf_offset, data_in + in_offset, bytes);
390			buf_offset += bytes;
391cont:
392			working_bytes -= bytes;
393			in_page_bytes_left -= bytes;
394			in_offset += bytes;
395
396			/* check if we need to pick another page */
397			if ((working_bytes == 0 && in_page_bytes_left < LZO_LEN)
398			    || in_page_bytes_left == 0) {
399				tot_in += in_page_bytes_left;
400
401				if (working_bytes == 0 && tot_in >= tot_len)
402					break;
403
404				if (page_in_index + 1 >= total_pages_in) {
405					ret = -EIO;
406					goto done;
407				}
408
409				if (may_late_unmap)
410					need_unmap = true;
411				else
412					kunmap(pages_in[page_in_index]);
413
414				data_in = kmap(pages_in[++page_in_index]);
415
416				in_page_bytes_left = PAGE_SIZE;
417				in_offset = 0;
418			}
419		}
420
421		out_len = max_segment_len;
422		ret = lzo1x_decompress_safe(buf, in_len, workspace->buf,
423					    &out_len);
424		if (need_unmap)
425			kunmap(pages_in[page_in_index - 1]);
426		if (ret != LZO_E_OK) {
427			pr_warn("BTRFS: decompress failed\n");
428			ret = -EIO;
429			break;
430		}
431
432		buf_start = tot_out;
433		tot_out += out_len;
434
435		ret2 = btrfs_decompress_buf2page(workspace->buf, buf_start,
436						 tot_out, disk_start, orig_bio);
 
 
437		if (ret2 == 0)
438			break;
439	}
440done:
441	kunmap(pages_in[page_in_index]);
442	if (!ret)
443		zero_fill_bio(orig_bio);
444	return ret;
445}
446
447static int lzo_decompress(struct list_head *ws, unsigned char *data_in,
448			  struct page *dest_page,
449			  unsigned long start_byte,
450			  size_t srclen, size_t destlen)
451{
452	struct workspace *workspace = list_entry(ws, struct workspace, list);
453	size_t in_len;
454	size_t out_len;
455	size_t max_segment_len = lzo1x_worst_compress(PAGE_SIZE);
456	int ret = 0;
457	char *kaddr;
458	unsigned long bytes;
459
460	if (srclen < LZO_LEN || srclen > max_segment_len + LZO_LEN * 2)
461		return -EUCLEAN;
462
463	in_len = read_compress_length(data_in);
464	if (in_len != srclen)
465		return -EUCLEAN;
466	data_in += LZO_LEN;
467
468	in_len = read_compress_length(data_in);
469	if (in_len != srclen - LZO_LEN * 2) {
470		ret = -EUCLEAN;
471		goto out;
472	}
473	data_in += LZO_LEN;
474
475	out_len = PAGE_SIZE;
476	ret = lzo1x_decompress_safe(data_in, in_len, workspace->buf, &out_len);
477	if (ret != LZO_E_OK) {
478		pr_warn("BTRFS: decompress failed!\n");
479		ret = -EIO;
480		goto out;
481	}
482
483	if (out_len < start_byte) {
484		ret = -EIO;
485		goto out;
486	}
487
488	/*
489	 * the caller is already checking against PAGE_SIZE, but lets
490	 * move this check closer to the memcpy/memset
491	 */
492	destlen = min_t(unsigned long, destlen, PAGE_SIZE);
493	bytes = min_t(unsigned long, destlen, out_len - start_byte);
494
495	kaddr = kmap_atomic(dest_page);
496	memcpy(kaddr, workspace->buf + start_byte, bytes);
497
498	/*
499	 * btrfs_getblock is doing a zero on the tail of the page too,
500	 * but this will cover anything missing from the decompressed
501	 * data.
502	 */
503	if (bytes < destlen)
504		memset(kaddr+bytes, 0, destlen-bytes);
505	kunmap_atomic(kaddr);
506out:
507	return ret;
508}
509
510const struct btrfs_compress_op btrfs_lzo_compress = {
511	.init_workspace_manager	= lzo_init_workspace_manager,
512	.cleanup_workspace_manager = lzo_cleanup_workspace_manager,
513	.get_workspace		= lzo_get_workspace,
514	.put_workspace		= lzo_put_workspace,
515	.alloc_workspace	= lzo_alloc_workspace,
516	.free_workspace		= lzo_free_workspace,
517	.compress_pages		= lzo_compress_pages,
518	.decompress_bio		= lzo_decompress_bio,
519	.decompress		= lzo_decompress,
520	.max_level		= 1,
521	.default_level		= 1,
522};
v3.1
 
  1/*
  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/slab.h>
 21#include <linux/vmalloc.h>
 22#include <linux/init.h>
 23#include <linux/err.h>
 24#include <linux/sched.h>
 25#include <linux/pagemap.h>
 26#include <linux/bio.h>
 27#include <linux/lzo.h>
 
 28#include "compression.h"
 29
 30#define LZO_LEN	4
 31
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 32struct workspace {
 33	void *mem;
 34	void *buf;	/* where compressed data goes */
 35	void *cbuf;	/* where decompressed data goes */
 36	struct list_head list;
 37};
 38
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 39static void lzo_free_workspace(struct list_head *ws)
 40{
 41	struct workspace *workspace = list_entry(ws, struct workspace, list);
 42
 43	vfree(workspace->buf);
 44	vfree(workspace->cbuf);
 45	vfree(workspace->mem);
 46	kfree(workspace);
 47}
 48
 49static struct list_head *lzo_alloc_workspace(void)
 50{
 51	struct workspace *workspace;
 52
 53	workspace = kzalloc(sizeof(*workspace), GFP_NOFS);
 54	if (!workspace)
 55		return ERR_PTR(-ENOMEM);
 56
 57	workspace->mem = vmalloc(LZO1X_MEM_COMPRESS);
 58	workspace->buf = vmalloc(lzo1x_worst_compress(PAGE_CACHE_SIZE));
 59	workspace->cbuf = vmalloc(lzo1x_worst_compress(PAGE_CACHE_SIZE));
 60	if (!workspace->mem || !workspace->buf || !workspace->cbuf)
 61		goto fail;
 62
 63	INIT_LIST_HEAD(&workspace->list);
 64
 65	return &workspace->list;
 66fail:
 67	lzo_free_workspace(&workspace->list);
 68	return ERR_PTR(-ENOMEM);
 69}
 70
 71static inline void write_compress_length(char *buf, size_t len)
 72{
 73	__le32 dlen;
 74
 75	dlen = cpu_to_le32(len);
 76	memcpy(buf, &dlen, LZO_LEN);
 77}
 78
 79static inline size_t read_compress_length(char *buf)
 80{
 81	__le32 dlen;
 82
 83	memcpy(&dlen, buf, LZO_LEN);
 84	return le32_to_cpu(dlen);
 85}
 86
 87static int lzo_compress_pages(struct list_head *ws,
 88			      struct address_space *mapping,
 89			      u64 start, unsigned long len,
 90			      struct page **pages,
 91			      unsigned long nr_dest_pages,
 92			      unsigned long *out_pages,
 93			      unsigned long *total_in,
 94			      unsigned long *total_out,
 95			      unsigned long max_out)
 96{
 97	struct workspace *workspace = list_entry(ws, struct workspace, list);
 98	int ret = 0;
 99	char *data_in;
100	char *cpage_out;
101	int nr_pages = 0;
102	struct page *in_page = NULL;
103	struct page *out_page = NULL;
104	unsigned long bytes_left;
105
 
 
106	size_t in_len;
107	size_t out_len;
108	char *buf;
109	unsigned long tot_in = 0;
110	unsigned long tot_out = 0;
111	unsigned long pg_bytes_left;
112	unsigned long out_offset;
113	unsigned long bytes;
114
115	*out_pages = 0;
116	*total_out = 0;
117	*total_in = 0;
118
119	in_page = find_get_page(mapping, start >> PAGE_CACHE_SHIFT);
120	data_in = kmap(in_page);
121
122	/*
123	 * store the size of all chunks of compressed data in
124	 * the first 4 bytes
125	 */
126	out_page = alloc_page(GFP_NOFS | __GFP_HIGHMEM);
127	if (out_page == NULL) {
128		ret = -ENOMEM;
129		goto out;
130	}
131	cpage_out = kmap(out_page);
132	out_offset = LZO_LEN;
133	tot_out = LZO_LEN;
134	pages[0] = out_page;
135	nr_pages = 1;
136	pg_bytes_left = PAGE_CACHE_SIZE - LZO_LEN;
137
138	/* compress at most one page of data each time */
139	in_len = min(len, PAGE_CACHE_SIZE);
140	while (tot_in < len) {
141		ret = lzo1x_1_compress(data_in, in_len, workspace->cbuf,
142				       &out_len, workspace->mem);
143		if (ret != LZO_E_OK) {
144			printk(KERN_DEBUG "btrfs deflate in loop returned %d\n",
145			       ret);
146			ret = -1;
147			goto out;
148		}
149
150		/* store the size of this chunk of compressed data */
151		write_compress_length(cpage_out + out_offset, out_len);
152		tot_out += LZO_LEN;
153		out_offset += LZO_LEN;
154		pg_bytes_left -= LZO_LEN;
155
156		tot_in += in_len;
157		tot_out += out_len;
158
159		/* copy bytes from the working buffer into the pages */
160		buf = workspace->cbuf;
161		while (out_len) {
162			bytes = min_t(unsigned long, pg_bytes_left, out_len);
163
164			memcpy(cpage_out + out_offset, buf, bytes);
165
166			out_len -= bytes;
167			pg_bytes_left -= bytes;
168			buf += bytes;
169			out_offset += bytes;
170
171			/*
172			 * we need another page for writing out.
173			 *
174			 * Note if there's less than 4 bytes left, we just
175			 * skip to a new page.
176			 */
177			if ((out_len == 0 && pg_bytes_left < LZO_LEN) ||
178			    pg_bytes_left == 0) {
179				if (pg_bytes_left) {
180					memset(cpage_out + out_offset, 0,
181					       pg_bytes_left);
182					tot_out += pg_bytes_left;
183				}
184
185				/* we're done, don't allocate new page */
186				if (out_len == 0 && tot_in >= len)
187					break;
188
189				kunmap(out_page);
190				if (nr_pages == nr_dest_pages) {
191					out_page = NULL;
192					ret = -1;
193					goto out;
194				}
195
196				out_page = alloc_page(GFP_NOFS | __GFP_HIGHMEM);
197				if (out_page == NULL) {
198					ret = -ENOMEM;
199					goto out;
200				}
201				cpage_out = kmap(out_page);
202				pages[nr_pages++] = out_page;
203
204				pg_bytes_left = PAGE_CACHE_SIZE;
205				out_offset = 0;
206			}
207		}
208
209		/* we're making it bigger, give up */
210		if (tot_in > 8192 && tot_in < tot_out)
 
211			goto out;
 
212
213		/* we're all done */
214		if (tot_in >= len)
215			break;
216
217		if (tot_out > max_out)
218			break;
219
220		bytes_left = len - tot_in;
221		kunmap(in_page);
222		page_cache_release(in_page);
223
224		start += PAGE_CACHE_SIZE;
225		in_page = find_get_page(mapping, start >> PAGE_CACHE_SHIFT);
226		data_in = kmap(in_page);
227		in_len = min(bytes_left, PAGE_CACHE_SIZE);
228	}
229
230	if (tot_out > tot_in)
 
231		goto out;
 
232
233	/* store the size of all chunks of compressed data */
234	cpage_out = kmap(pages[0]);
235	write_compress_length(cpage_out, tot_out);
236
237	kunmap(pages[0]);
238
239	ret = 0;
240	*total_out = tot_out;
241	*total_in = tot_in;
242out:
243	*out_pages = nr_pages;
244	if (out_page)
245		kunmap(out_page);
246
247	if (in_page) {
248		kunmap(in_page);
249		page_cache_release(in_page);
250	}
251
252	return ret;
253}
254
255static int lzo_decompress_biovec(struct list_head *ws,
256				 struct page **pages_in,
257				 u64 disk_start,
258				 struct bio_vec *bvec,
259				 int vcnt,
260				 size_t srclen)
261{
262	struct workspace *workspace = list_entry(ws, struct workspace, list);
263	int ret = 0, ret2;
264	char *data_in;
265	unsigned long page_in_index = 0;
266	unsigned long page_out_index = 0;
267	unsigned long total_pages_in = (srclen + PAGE_CACHE_SIZE - 1) /
268					PAGE_CACHE_SIZE;
269	unsigned long buf_start;
270	unsigned long buf_offset = 0;
271	unsigned long bytes;
272	unsigned long working_bytes;
273	unsigned long pg_offset;
274
275	size_t in_len;
276	size_t out_len;
 
277	unsigned long in_offset;
278	unsigned long in_page_bytes_left;
279	unsigned long tot_in;
280	unsigned long tot_out;
281	unsigned long tot_len;
282	char *buf;
283	bool may_late_unmap, need_unmap;
 
 
 
284
285	data_in = kmap(pages_in[0]);
286	tot_len = read_compress_length(data_in);
 
 
 
 
 
 
 
 
 
 
 
 
 
287
288	tot_in = LZO_LEN;
289	in_offset = LZO_LEN;
290	tot_len = min_t(size_t, srclen, tot_len);
291	in_page_bytes_left = PAGE_CACHE_SIZE - LZO_LEN;
292
293	tot_out = 0;
294	pg_offset = 0;
295
296	while (tot_in < tot_len) {
297		in_len = read_compress_length(data_in + in_offset);
298		in_page_bytes_left -= LZO_LEN;
299		in_offset += LZO_LEN;
300		tot_in += LZO_LEN;
301
 
 
 
 
 
 
 
 
 
 
 
302		tot_in += in_len;
303		working_bytes = in_len;
304		may_late_unmap = need_unmap = false;
305
306		/* fast path: avoid using the working buffer */
307		if (in_page_bytes_left >= in_len) {
308			buf = data_in + in_offset;
309			bytes = in_len;
310			may_late_unmap = true;
311			goto cont;
312		}
313
314		/* copy bytes from the pages into the working buffer */
315		buf = workspace->cbuf;
316		buf_offset = 0;
317		while (working_bytes) {
318			bytes = min(working_bytes, in_page_bytes_left);
319
320			memcpy(buf + buf_offset, data_in + in_offset, bytes);
321			buf_offset += bytes;
322cont:
323			working_bytes -= bytes;
324			in_page_bytes_left -= bytes;
325			in_offset += bytes;
326
327			/* check if we need to pick another page */
328			if ((working_bytes == 0 && in_page_bytes_left < LZO_LEN)
329			    || in_page_bytes_left == 0) {
330				tot_in += in_page_bytes_left;
331
332				if (working_bytes == 0 && tot_in >= tot_len)
333					break;
334
335				if (page_in_index + 1 >= total_pages_in) {
336					ret = -1;
337					goto done;
338				}
339
340				if (may_late_unmap)
341					need_unmap = true;
342				else
343					kunmap(pages_in[page_in_index]);
344
345				data_in = kmap(pages_in[++page_in_index]);
346
347				in_page_bytes_left = PAGE_CACHE_SIZE;
348				in_offset = 0;
349			}
350		}
351
352		out_len = lzo1x_worst_compress(PAGE_CACHE_SIZE);
353		ret = lzo1x_decompress_safe(buf, in_len, workspace->buf,
354					    &out_len);
355		if (need_unmap)
356			kunmap(pages_in[page_in_index - 1]);
357		if (ret != LZO_E_OK) {
358			printk(KERN_WARNING "btrfs decompress failed\n");
359			ret = -1;
360			break;
361		}
362
363		buf_start = tot_out;
364		tot_out += out_len;
365
366		ret2 = btrfs_decompress_buf2page(workspace->buf, buf_start,
367						 tot_out, disk_start,
368						 bvec, vcnt,
369						 &page_out_index, &pg_offset);
370		if (ret2 == 0)
371			break;
372	}
373done:
374	kunmap(pages_in[page_in_index]);
 
 
375	return ret;
376}
377
378static int lzo_decompress(struct list_head *ws, unsigned char *data_in,
379			  struct page *dest_page,
380			  unsigned long start_byte,
381			  size_t srclen, size_t destlen)
382{
383	struct workspace *workspace = list_entry(ws, struct workspace, list);
384	size_t in_len;
385	size_t out_len;
386	size_t tot_len;
387	int ret = 0;
388	char *kaddr;
389	unsigned long bytes;
390
391	BUG_ON(srclen < LZO_LEN);
 
392
393	tot_len = read_compress_length(data_in);
 
 
394	data_in += LZO_LEN;
395
396	in_len = read_compress_length(data_in);
 
 
 
 
397	data_in += LZO_LEN;
398
399	out_len = PAGE_CACHE_SIZE;
400	ret = lzo1x_decompress_safe(data_in, in_len, workspace->buf, &out_len);
401	if (ret != LZO_E_OK) {
402		printk(KERN_WARNING "btrfs decompress failed!\n");
403		ret = -1;
404		goto out;
405	}
406
407	if (out_len < start_byte) {
408		ret = -1;
409		goto out;
410	}
411
 
 
 
 
 
412	bytes = min_t(unsigned long, destlen, out_len - start_byte);
413
414	kaddr = kmap_atomic(dest_page, KM_USER0);
415	memcpy(kaddr, workspace->buf + start_byte, bytes);
416	kunmap_atomic(kaddr, KM_USER0);
 
 
 
 
 
 
 
 
417out:
418	return ret;
419}
420
421struct btrfs_compress_op btrfs_lzo_compress = {
 
 
 
 
422	.alloc_workspace	= lzo_alloc_workspace,
423	.free_workspace		= lzo_free_workspace,
424	.compress_pages		= lzo_compress_pages,
425	.decompress_biovec	= lzo_decompress_biovec,
426	.decompress		= lzo_decompress,
 
 
427};