xref: /openbmc/linux/fs/btrfs/tree-checker.c (revision 52042d8e82ff50d40e76a275ac0b97aa663328b0)
1c1d7c514SDavid Sterba // SPDX-License-Identifier: GPL-2.0
2557ea5ddSQu Wenruo /*
3557ea5ddSQu Wenruo  * Copyright (C) Qu Wenruo 2017.  All rights reserved.
4557ea5ddSQu Wenruo  */
5557ea5ddSQu Wenruo 
6557ea5ddSQu Wenruo /*
7557ea5ddSQu Wenruo  * The module is used to catch unexpected/corrupted tree block data.
8557ea5ddSQu Wenruo  * Such behavior can be caused either by a fuzzed image or bugs.
9557ea5ddSQu Wenruo  *
10557ea5ddSQu Wenruo  * The objective is to do leaf/node validation checks when tree block is read
11557ea5ddSQu Wenruo  * from disk, and check *every* possible member, so other code won't
12557ea5ddSQu Wenruo  * need to checking them again.
13557ea5ddSQu Wenruo  *
14557ea5ddSQu Wenruo  * Due to the potential and unwanted damage, every checker needs to be
15557ea5ddSQu Wenruo  * carefully reviewed otherwise so it does not prevent mount of valid images.
16557ea5ddSQu Wenruo  */
17557ea5ddSQu Wenruo 
18557ea5ddSQu Wenruo #include "ctree.h"
19557ea5ddSQu Wenruo #include "tree-checker.h"
20557ea5ddSQu Wenruo #include "disk-io.h"
21557ea5ddSQu Wenruo #include "compression.h"
22fce466eaSQu Wenruo #include "volumes.h"
23557ea5ddSQu Wenruo 
24bba4f298SQu Wenruo /*
25bba4f298SQu Wenruo  * Error message should follow the following format:
26bba4f298SQu Wenruo  * corrupt <type>: <identifier>, <reason>[, <bad_value>]
27bba4f298SQu Wenruo  *
28bba4f298SQu Wenruo  * @type:	leaf or node
29bba4f298SQu Wenruo  * @identifier:	the necessary info to locate the leaf/node.
30*52042d8eSAndrea Gelmini  * 		It's recommended to decode key.objecitd/offset if it's
31bba4f298SQu Wenruo  * 		meaningful.
32bba4f298SQu Wenruo  * @reason:	describe the error
33*52042d8eSAndrea Gelmini  * @bad_value:	optional, it's recommended to output bad value and its
34bba4f298SQu Wenruo  *		expected value (range).
35bba4f298SQu Wenruo  *
36bba4f298SQu Wenruo  * Since comma is used to separate the components, only space is allowed
37bba4f298SQu Wenruo  * inside each component.
38bba4f298SQu Wenruo  */
39bba4f298SQu Wenruo 
40bba4f298SQu Wenruo /*
41bba4f298SQu Wenruo  * Append generic "corrupt leaf/node root=%llu block=%llu slot=%d: " to @fmt.
42bba4f298SQu Wenruo  * Allows callers to customize the output.
43bba4f298SQu Wenruo  */
44bba4f298SQu Wenruo __printf(4, 5)
45e67c718bSDavid Sterba __cold
462f659546SQu Wenruo static void generic_err(const struct btrfs_fs_info *fs_info,
47bba4f298SQu Wenruo 			const struct extent_buffer *eb, int slot,
48bba4f298SQu Wenruo 			const char *fmt, ...)
49bba4f298SQu Wenruo {
50bba4f298SQu Wenruo 	struct va_format vaf;
51bba4f298SQu Wenruo 	va_list args;
52bba4f298SQu Wenruo 
53bba4f298SQu Wenruo 	va_start(args, fmt);
54bba4f298SQu Wenruo 
55bba4f298SQu Wenruo 	vaf.fmt = fmt;
56bba4f298SQu Wenruo 	vaf.va = &args;
57bba4f298SQu Wenruo 
582f659546SQu Wenruo 	btrfs_crit(fs_info,
59bba4f298SQu Wenruo 		"corrupt %s: root=%llu block=%llu slot=%d, %pV",
60bba4f298SQu Wenruo 		btrfs_header_level(eb) == 0 ? "leaf" : "node",
612f659546SQu Wenruo 		btrfs_header_owner(eb), btrfs_header_bytenr(eb), slot, &vaf);
62bba4f298SQu Wenruo 	va_end(args);
63bba4f298SQu Wenruo }
64bba4f298SQu Wenruo 
658806d718SQu Wenruo /*
668806d718SQu Wenruo  * Customized reporter for extent data item, since its key objectid and
678806d718SQu Wenruo  * offset has its own meaning.
688806d718SQu Wenruo  */
698806d718SQu Wenruo __printf(4, 5)
70e67c718bSDavid Sterba __cold
712f659546SQu Wenruo static void file_extent_err(const struct btrfs_fs_info *fs_info,
728806d718SQu Wenruo 			    const struct extent_buffer *eb, int slot,
738806d718SQu Wenruo 			    const char *fmt, ...)
748806d718SQu Wenruo {
758806d718SQu Wenruo 	struct btrfs_key key;
768806d718SQu Wenruo 	struct va_format vaf;
778806d718SQu Wenruo 	va_list args;
788806d718SQu Wenruo 
798806d718SQu Wenruo 	btrfs_item_key_to_cpu(eb, &key, slot);
808806d718SQu Wenruo 	va_start(args, fmt);
818806d718SQu Wenruo 
828806d718SQu Wenruo 	vaf.fmt = fmt;
838806d718SQu Wenruo 	vaf.va = &args;
848806d718SQu Wenruo 
852f659546SQu Wenruo 	btrfs_crit(fs_info,
868806d718SQu Wenruo 	"corrupt %s: root=%llu block=%llu slot=%d ino=%llu file_offset=%llu, %pV",
872f659546SQu Wenruo 		btrfs_header_level(eb) == 0 ? "leaf" : "node",
882f659546SQu Wenruo 		btrfs_header_owner(eb), btrfs_header_bytenr(eb), slot,
892f659546SQu Wenruo 		key.objectid, key.offset, &vaf);
908806d718SQu Wenruo 	va_end(args);
918806d718SQu Wenruo }
928806d718SQu Wenruo 
938806d718SQu Wenruo /*
948806d718SQu Wenruo  * Return 0 if the btrfs_file_extent_##name is aligned to @alignment
958806d718SQu Wenruo  * Else return 1
968806d718SQu Wenruo  */
972f659546SQu Wenruo #define CHECK_FE_ALIGNED(fs_info, leaf, slot, fi, name, alignment)	      \
988806d718SQu Wenruo ({									      \
998806d718SQu Wenruo 	if (!IS_ALIGNED(btrfs_file_extent_##name((leaf), (fi)), (alignment))) \
1002f659546SQu Wenruo 		file_extent_err((fs_info), (leaf), (slot),		      \
1018806d718SQu Wenruo 	"invalid %s for file extent, have %llu, should be aligned to %u",     \
1028806d718SQu Wenruo 			(#name), btrfs_file_extent_##name((leaf), (fi)),      \
1038806d718SQu Wenruo 			(alignment));					      \
1048806d718SQu Wenruo 	(!IS_ALIGNED(btrfs_file_extent_##name((leaf), (fi)), (alignment)));   \
1058806d718SQu Wenruo })
1068806d718SQu Wenruo 
1072f659546SQu Wenruo static int check_extent_data_item(struct btrfs_fs_info *fs_info,
108557ea5ddSQu Wenruo 				  struct extent_buffer *leaf,
109557ea5ddSQu Wenruo 				  struct btrfs_key *key, int slot)
110557ea5ddSQu Wenruo {
111557ea5ddSQu Wenruo 	struct btrfs_file_extent_item *fi;
1122f659546SQu Wenruo 	u32 sectorsize = fs_info->sectorsize;
113557ea5ddSQu Wenruo 	u32 item_size = btrfs_item_size_nr(leaf, slot);
114557ea5ddSQu Wenruo 
115557ea5ddSQu Wenruo 	if (!IS_ALIGNED(key->offset, sectorsize)) {
1162f659546SQu Wenruo 		file_extent_err(fs_info, leaf, slot,
1178806d718SQu Wenruo "unaligned file_offset for file extent, have %llu should be aligned to %u",
1188806d718SQu Wenruo 			key->offset, sectorsize);
119557ea5ddSQu Wenruo 		return -EUCLEAN;
120557ea5ddSQu Wenruo 	}
121557ea5ddSQu Wenruo 
122557ea5ddSQu Wenruo 	fi = btrfs_item_ptr(leaf, slot, struct btrfs_file_extent_item);
123557ea5ddSQu Wenruo 
124557ea5ddSQu Wenruo 	if (btrfs_file_extent_type(leaf, fi) > BTRFS_FILE_EXTENT_TYPES) {
1252f659546SQu Wenruo 		file_extent_err(fs_info, leaf, slot,
1268806d718SQu Wenruo 		"invalid type for file extent, have %u expect range [0, %u]",
1278806d718SQu Wenruo 			btrfs_file_extent_type(leaf, fi),
1288806d718SQu Wenruo 			BTRFS_FILE_EXTENT_TYPES);
129557ea5ddSQu Wenruo 		return -EUCLEAN;
130557ea5ddSQu Wenruo 	}
131557ea5ddSQu Wenruo 
132557ea5ddSQu Wenruo 	/*
133*52042d8eSAndrea Gelmini 	 * Support for new compression/encryption must introduce incompat flag,
134557ea5ddSQu Wenruo 	 * and must be caught in open_ctree().
135557ea5ddSQu Wenruo 	 */
136557ea5ddSQu Wenruo 	if (btrfs_file_extent_compression(leaf, fi) > BTRFS_COMPRESS_TYPES) {
1372f659546SQu Wenruo 		file_extent_err(fs_info, leaf, slot,
1388806d718SQu Wenruo 	"invalid compression for file extent, have %u expect range [0, %u]",
1398806d718SQu Wenruo 			btrfs_file_extent_compression(leaf, fi),
1408806d718SQu Wenruo 			BTRFS_COMPRESS_TYPES);
141557ea5ddSQu Wenruo 		return -EUCLEAN;
142557ea5ddSQu Wenruo 	}
143557ea5ddSQu Wenruo 	if (btrfs_file_extent_encryption(leaf, fi)) {
1442f659546SQu Wenruo 		file_extent_err(fs_info, leaf, slot,
1458806d718SQu Wenruo 			"invalid encryption for file extent, have %u expect 0",
1468806d718SQu Wenruo 			btrfs_file_extent_encryption(leaf, fi));
147557ea5ddSQu Wenruo 		return -EUCLEAN;
148557ea5ddSQu Wenruo 	}
149557ea5ddSQu Wenruo 	if (btrfs_file_extent_type(leaf, fi) == BTRFS_FILE_EXTENT_INLINE) {
150557ea5ddSQu Wenruo 		/* Inline extent must have 0 as key offset */
151557ea5ddSQu Wenruo 		if (key->offset) {
1522f659546SQu Wenruo 			file_extent_err(fs_info, leaf, slot,
1538806d718SQu Wenruo 		"invalid file_offset for inline file extent, have %llu expect 0",
1548806d718SQu Wenruo 				key->offset);
155557ea5ddSQu Wenruo 			return -EUCLEAN;
156557ea5ddSQu Wenruo 		}
157557ea5ddSQu Wenruo 
158557ea5ddSQu Wenruo 		/* Compressed inline extent has no on-disk size, skip it */
159557ea5ddSQu Wenruo 		if (btrfs_file_extent_compression(leaf, fi) !=
160557ea5ddSQu Wenruo 		    BTRFS_COMPRESS_NONE)
161557ea5ddSQu Wenruo 			return 0;
162557ea5ddSQu Wenruo 
163557ea5ddSQu Wenruo 		/* Uncompressed inline extent size must match item size */
164557ea5ddSQu Wenruo 		if (item_size != BTRFS_FILE_EXTENT_INLINE_DATA_START +
165557ea5ddSQu Wenruo 		    btrfs_file_extent_ram_bytes(leaf, fi)) {
1662f659546SQu Wenruo 			file_extent_err(fs_info, leaf, slot,
1678806d718SQu Wenruo 	"invalid ram_bytes for uncompressed inline extent, have %u expect %llu",
1688806d718SQu Wenruo 				item_size, BTRFS_FILE_EXTENT_INLINE_DATA_START +
1698806d718SQu Wenruo 				btrfs_file_extent_ram_bytes(leaf, fi));
170557ea5ddSQu Wenruo 			return -EUCLEAN;
171557ea5ddSQu Wenruo 		}
172557ea5ddSQu Wenruo 		return 0;
173557ea5ddSQu Wenruo 	}
174557ea5ddSQu Wenruo 
175557ea5ddSQu Wenruo 	/* Regular or preallocated extent has fixed item size */
176557ea5ddSQu Wenruo 	if (item_size != sizeof(*fi)) {
1772f659546SQu Wenruo 		file_extent_err(fs_info, leaf, slot,
178709a95c3SArnd Bergmann 	"invalid item size for reg/prealloc file extent, have %u expect %zu",
1798806d718SQu Wenruo 			item_size, sizeof(*fi));
180557ea5ddSQu Wenruo 		return -EUCLEAN;
181557ea5ddSQu Wenruo 	}
1822f659546SQu Wenruo 	if (CHECK_FE_ALIGNED(fs_info, leaf, slot, fi, ram_bytes, sectorsize) ||
1832f659546SQu Wenruo 	    CHECK_FE_ALIGNED(fs_info, leaf, slot, fi, disk_bytenr, sectorsize) ||
1842f659546SQu Wenruo 	    CHECK_FE_ALIGNED(fs_info, leaf, slot, fi, disk_num_bytes, sectorsize) ||
1852f659546SQu Wenruo 	    CHECK_FE_ALIGNED(fs_info, leaf, slot, fi, offset, sectorsize) ||
1862f659546SQu Wenruo 	    CHECK_FE_ALIGNED(fs_info, leaf, slot, fi, num_bytes, sectorsize))
187557ea5ddSQu Wenruo 		return -EUCLEAN;
188557ea5ddSQu Wenruo 	return 0;
189557ea5ddSQu Wenruo }
190557ea5ddSQu Wenruo 
1912f659546SQu Wenruo static int check_csum_item(struct btrfs_fs_info *fs_info,
1922f659546SQu Wenruo 			   struct extent_buffer *leaf, struct btrfs_key *key,
1932f659546SQu Wenruo 			   int slot)
194557ea5ddSQu Wenruo {
1952f659546SQu Wenruo 	u32 sectorsize = fs_info->sectorsize;
1962f659546SQu Wenruo 	u32 csumsize = btrfs_super_csum_size(fs_info->super_copy);
197557ea5ddSQu Wenruo 
198557ea5ddSQu Wenruo 	if (key->objectid != BTRFS_EXTENT_CSUM_OBJECTID) {
1992f659546SQu Wenruo 		generic_err(fs_info, leaf, slot,
200d508c5f0SQu Wenruo 		"invalid key objectid for csum item, have %llu expect %llu",
201d508c5f0SQu Wenruo 			key->objectid, BTRFS_EXTENT_CSUM_OBJECTID);
202557ea5ddSQu Wenruo 		return -EUCLEAN;
203557ea5ddSQu Wenruo 	}
204557ea5ddSQu Wenruo 	if (!IS_ALIGNED(key->offset, sectorsize)) {
2052f659546SQu Wenruo 		generic_err(fs_info, leaf, slot,
206d508c5f0SQu Wenruo 	"unaligned key offset for csum item, have %llu should be aligned to %u",
207d508c5f0SQu Wenruo 			key->offset, sectorsize);
208557ea5ddSQu Wenruo 		return -EUCLEAN;
209557ea5ddSQu Wenruo 	}
210557ea5ddSQu Wenruo 	if (!IS_ALIGNED(btrfs_item_size_nr(leaf, slot), csumsize)) {
2112f659546SQu Wenruo 		generic_err(fs_info, leaf, slot,
212d508c5f0SQu Wenruo 	"unaligned item size for csum item, have %u should be aligned to %u",
213d508c5f0SQu Wenruo 			btrfs_item_size_nr(leaf, slot), csumsize);
214557ea5ddSQu Wenruo 		return -EUCLEAN;
215557ea5ddSQu Wenruo 	}
216557ea5ddSQu Wenruo 	return 0;
217557ea5ddSQu Wenruo }
218557ea5ddSQu Wenruo 
219557ea5ddSQu Wenruo /*
220ad7b0368SQu Wenruo  * Customized reported for dir_item, only important new info is key->objectid,
221ad7b0368SQu Wenruo  * which represents inode number
222ad7b0368SQu Wenruo  */
223ad7b0368SQu Wenruo __printf(4, 5)
224e67c718bSDavid Sterba __cold
2252f659546SQu Wenruo static void dir_item_err(const struct btrfs_fs_info *fs_info,
226ad7b0368SQu Wenruo 			 const struct extent_buffer *eb, int slot,
227ad7b0368SQu Wenruo 			 const char *fmt, ...)
228ad7b0368SQu Wenruo {
229ad7b0368SQu Wenruo 	struct btrfs_key key;
230ad7b0368SQu Wenruo 	struct va_format vaf;
231ad7b0368SQu Wenruo 	va_list args;
232ad7b0368SQu Wenruo 
233ad7b0368SQu Wenruo 	btrfs_item_key_to_cpu(eb, &key, slot);
234ad7b0368SQu Wenruo 	va_start(args, fmt);
235ad7b0368SQu Wenruo 
236ad7b0368SQu Wenruo 	vaf.fmt = fmt;
237ad7b0368SQu Wenruo 	vaf.va = &args;
238ad7b0368SQu Wenruo 
2392f659546SQu Wenruo 	btrfs_crit(fs_info,
240ad7b0368SQu Wenruo 	"corrupt %s: root=%llu block=%llu slot=%d ino=%llu, %pV",
2412f659546SQu Wenruo 		btrfs_header_level(eb) == 0 ? "leaf" : "node",
2422f659546SQu Wenruo 		btrfs_header_owner(eb), btrfs_header_bytenr(eb), slot,
2432f659546SQu Wenruo 		key.objectid, &vaf);
244ad7b0368SQu Wenruo 	va_end(args);
245ad7b0368SQu Wenruo }
246ad7b0368SQu Wenruo 
2472f659546SQu Wenruo static int check_dir_item(struct btrfs_fs_info *fs_info,
248ad7b0368SQu Wenruo 			  struct extent_buffer *leaf,
249ad7b0368SQu Wenruo 			  struct btrfs_key *key, int slot)
250ad7b0368SQu Wenruo {
251ad7b0368SQu Wenruo 	struct btrfs_dir_item *di;
252ad7b0368SQu Wenruo 	u32 item_size = btrfs_item_size_nr(leaf, slot);
253ad7b0368SQu Wenruo 	u32 cur = 0;
254ad7b0368SQu Wenruo 
255ad7b0368SQu Wenruo 	di = btrfs_item_ptr(leaf, slot, struct btrfs_dir_item);
256ad7b0368SQu Wenruo 	while (cur < item_size) {
257ad7b0368SQu Wenruo 		u32 name_len;
258ad7b0368SQu Wenruo 		u32 data_len;
259ad7b0368SQu Wenruo 		u32 max_name_len;
260ad7b0368SQu Wenruo 		u32 total_size;
261ad7b0368SQu Wenruo 		u32 name_hash;
262ad7b0368SQu Wenruo 		u8 dir_type;
263ad7b0368SQu Wenruo 
264ad7b0368SQu Wenruo 		/* header itself should not cross item boundary */
265ad7b0368SQu Wenruo 		if (cur + sizeof(*di) > item_size) {
2662f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
2677cfad652SArnd Bergmann 		"dir item header crosses item boundary, have %zu boundary %u",
268ad7b0368SQu Wenruo 				cur + sizeof(*di), item_size);
269ad7b0368SQu Wenruo 			return -EUCLEAN;
270ad7b0368SQu Wenruo 		}
271ad7b0368SQu Wenruo 
272ad7b0368SQu Wenruo 		/* dir type check */
273ad7b0368SQu Wenruo 		dir_type = btrfs_dir_type(leaf, di);
274ad7b0368SQu Wenruo 		if (dir_type >= BTRFS_FT_MAX) {
2752f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
276ad7b0368SQu Wenruo 			"invalid dir item type, have %u expect [0, %u)",
277ad7b0368SQu Wenruo 				dir_type, BTRFS_FT_MAX);
278ad7b0368SQu Wenruo 			return -EUCLEAN;
279ad7b0368SQu Wenruo 		}
280ad7b0368SQu Wenruo 
281ad7b0368SQu Wenruo 		if (key->type == BTRFS_XATTR_ITEM_KEY &&
282ad7b0368SQu Wenruo 		    dir_type != BTRFS_FT_XATTR) {
2832f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
284ad7b0368SQu Wenruo 		"invalid dir item type for XATTR key, have %u expect %u",
285ad7b0368SQu Wenruo 				dir_type, BTRFS_FT_XATTR);
286ad7b0368SQu Wenruo 			return -EUCLEAN;
287ad7b0368SQu Wenruo 		}
288ad7b0368SQu Wenruo 		if (dir_type == BTRFS_FT_XATTR &&
289ad7b0368SQu Wenruo 		    key->type != BTRFS_XATTR_ITEM_KEY) {
2902f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
291ad7b0368SQu Wenruo 			"xattr dir type found for non-XATTR key");
292ad7b0368SQu Wenruo 			return -EUCLEAN;
293ad7b0368SQu Wenruo 		}
294ad7b0368SQu Wenruo 		if (dir_type == BTRFS_FT_XATTR)
295ad7b0368SQu Wenruo 			max_name_len = XATTR_NAME_MAX;
296ad7b0368SQu Wenruo 		else
297ad7b0368SQu Wenruo 			max_name_len = BTRFS_NAME_LEN;
298ad7b0368SQu Wenruo 
299ad7b0368SQu Wenruo 		/* Name/data length check */
300ad7b0368SQu Wenruo 		name_len = btrfs_dir_name_len(leaf, di);
301ad7b0368SQu Wenruo 		data_len = btrfs_dir_data_len(leaf, di);
302ad7b0368SQu Wenruo 		if (name_len > max_name_len) {
3032f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
304ad7b0368SQu Wenruo 			"dir item name len too long, have %u max %u",
305ad7b0368SQu Wenruo 				name_len, max_name_len);
306ad7b0368SQu Wenruo 			return -EUCLEAN;
307ad7b0368SQu Wenruo 		}
3082f659546SQu Wenruo 		if (name_len + data_len > BTRFS_MAX_XATTR_SIZE(fs_info)) {
3092f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
310ad7b0368SQu Wenruo 			"dir item name and data len too long, have %u max %u",
311ad7b0368SQu Wenruo 				name_len + data_len,
3122f659546SQu Wenruo 				BTRFS_MAX_XATTR_SIZE(fs_info));
313ad7b0368SQu Wenruo 			return -EUCLEAN;
314ad7b0368SQu Wenruo 		}
315ad7b0368SQu Wenruo 
316ad7b0368SQu Wenruo 		if (data_len && dir_type != BTRFS_FT_XATTR) {
3172f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
318ad7b0368SQu Wenruo 			"dir item with invalid data len, have %u expect 0",
319ad7b0368SQu Wenruo 				data_len);
320ad7b0368SQu Wenruo 			return -EUCLEAN;
321ad7b0368SQu Wenruo 		}
322ad7b0368SQu Wenruo 
323ad7b0368SQu Wenruo 		total_size = sizeof(*di) + name_len + data_len;
324ad7b0368SQu Wenruo 
325ad7b0368SQu Wenruo 		/* header and name/data should not cross item boundary */
326ad7b0368SQu Wenruo 		if (cur + total_size > item_size) {
3272f659546SQu Wenruo 			dir_item_err(fs_info, leaf, slot,
328ad7b0368SQu Wenruo 		"dir item data crosses item boundary, have %u boundary %u",
329ad7b0368SQu Wenruo 				cur + total_size, item_size);
330ad7b0368SQu Wenruo 			return -EUCLEAN;
331ad7b0368SQu Wenruo 		}
332ad7b0368SQu Wenruo 
333ad7b0368SQu Wenruo 		/*
334ad7b0368SQu Wenruo 		 * Special check for XATTR/DIR_ITEM, as key->offset is name
335ad7b0368SQu Wenruo 		 * hash, should match its name
336ad7b0368SQu Wenruo 		 */
337ad7b0368SQu Wenruo 		if (key->type == BTRFS_DIR_ITEM_KEY ||
338ad7b0368SQu Wenruo 		    key->type == BTRFS_XATTR_ITEM_KEY) {
339e2683fc9SDavid Sterba 			char namebuf[max(BTRFS_NAME_LEN, XATTR_NAME_MAX)];
340e2683fc9SDavid Sterba 
341ad7b0368SQu Wenruo 			read_extent_buffer(leaf, namebuf,
342ad7b0368SQu Wenruo 					(unsigned long)(di + 1), name_len);
343ad7b0368SQu Wenruo 			name_hash = btrfs_name_hash(namebuf, name_len);
344ad7b0368SQu Wenruo 			if (key->offset != name_hash) {
3452f659546SQu Wenruo 				dir_item_err(fs_info, leaf, slot,
346ad7b0368SQu Wenruo 		"name hash mismatch with key, have 0x%016x expect 0x%016llx",
347ad7b0368SQu Wenruo 					name_hash, key->offset);
348ad7b0368SQu Wenruo 				return -EUCLEAN;
349ad7b0368SQu Wenruo 			}
350ad7b0368SQu Wenruo 		}
351ad7b0368SQu Wenruo 		cur += total_size;
352ad7b0368SQu Wenruo 		di = (struct btrfs_dir_item *)((void *)di + total_size);
353ad7b0368SQu Wenruo 	}
354ad7b0368SQu Wenruo 	return 0;
355ad7b0368SQu Wenruo }
356ad7b0368SQu Wenruo 
357fce466eaSQu Wenruo __printf(4, 5)
358fce466eaSQu Wenruo __cold
359fce466eaSQu Wenruo static void block_group_err(const struct btrfs_fs_info *fs_info,
360fce466eaSQu Wenruo 			    const struct extent_buffer *eb, int slot,
361fce466eaSQu Wenruo 			    const char *fmt, ...)
362fce466eaSQu Wenruo {
363fce466eaSQu Wenruo 	struct btrfs_key key;
364fce466eaSQu Wenruo 	struct va_format vaf;
365fce466eaSQu Wenruo 	va_list args;
366fce466eaSQu Wenruo 
367fce466eaSQu Wenruo 	btrfs_item_key_to_cpu(eb, &key, slot);
368fce466eaSQu Wenruo 	va_start(args, fmt);
369fce466eaSQu Wenruo 
370fce466eaSQu Wenruo 	vaf.fmt = fmt;
371fce466eaSQu Wenruo 	vaf.va = &args;
372fce466eaSQu Wenruo 
373fce466eaSQu Wenruo 	btrfs_crit(fs_info,
374fce466eaSQu Wenruo 	"corrupt %s: root=%llu block=%llu slot=%d bg_start=%llu bg_len=%llu, %pV",
375fce466eaSQu Wenruo 		btrfs_header_level(eb) == 0 ? "leaf" : "node",
376fce466eaSQu Wenruo 		btrfs_header_owner(eb), btrfs_header_bytenr(eb), slot,
377fce466eaSQu Wenruo 		key.objectid, key.offset, &vaf);
378fce466eaSQu Wenruo 	va_end(args);
379fce466eaSQu Wenruo }
380fce466eaSQu Wenruo 
381fce466eaSQu Wenruo static int check_block_group_item(struct btrfs_fs_info *fs_info,
382fce466eaSQu Wenruo 				  struct extent_buffer *leaf,
383fce466eaSQu Wenruo 				  struct btrfs_key *key, int slot)
384fce466eaSQu Wenruo {
385fce466eaSQu Wenruo 	struct btrfs_block_group_item bgi;
386fce466eaSQu Wenruo 	u32 item_size = btrfs_item_size_nr(leaf, slot);
387fce466eaSQu Wenruo 	u64 flags;
388fce466eaSQu Wenruo 	u64 type;
389fce466eaSQu Wenruo 
390fce466eaSQu Wenruo 	/*
391fce466eaSQu Wenruo 	 * Here we don't really care about alignment since extent allocator can
39210950929SQu Wenruo 	 * handle it.  We care more about the size.
393fce466eaSQu Wenruo 	 */
39410950929SQu Wenruo 	if (key->offset == 0) {
395fce466eaSQu Wenruo 		block_group_err(fs_info, leaf, slot,
39610950929SQu Wenruo 				"invalid block group size 0");
397fce466eaSQu Wenruo 		return -EUCLEAN;
398fce466eaSQu Wenruo 	}
399fce466eaSQu Wenruo 
400fce466eaSQu Wenruo 	if (item_size != sizeof(bgi)) {
401fce466eaSQu Wenruo 		block_group_err(fs_info, leaf, slot,
402fce466eaSQu Wenruo 			"invalid item size, have %u expect %zu",
403fce466eaSQu Wenruo 				item_size, sizeof(bgi));
404fce466eaSQu Wenruo 		return -EUCLEAN;
405fce466eaSQu Wenruo 	}
406fce466eaSQu Wenruo 
407fce466eaSQu Wenruo 	read_extent_buffer(leaf, &bgi, btrfs_item_ptr_offset(leaf, slot),
408fce466eaSQu Wenruo 			   sizeof(bgi));
409fce466eaSQu Wenruo 	if (btrfs_block_group_chunk_objectid(&bgi) !=
410fce466eaSQu Wenruo 	    BTRFS_FIRST_CHUNK_TREE_OBJECTID) {
411fce466eaSQu Wenruo 		block_group_err(fs_info, leaf, slot,
412fce466eaSQu Wenruo 		"invalid block group chunk objectid, have %llu expect %llu",
413fce466eaSQu Wenruo 				btrfs_block_group_chunk_objectid(&bgi),
414fce466eaSQu Wenruo 				BTRFS_FIRST_CHUNK_TREE_OBJECTID);
415fce466eaSQu Wenruo 		return -EUCLEAN;
416fce466eaSQu Wenruo 	}
417fce466eaSQu Wenruo 
418fce466eaSQu Wenruo 	if (btrfs_block_group_used(&bgi) > key->offset) {
419fce466eaSQu Wenruo 		block_group_err(fs_info, leaf, slot,
420fce466eaSQu Wenruo 			"invalid block group used, have %llu expect [0, %llu)",
421fce466eaSQu Wenruo 				btrfs_block_group_used(&bgi), key->offset);
422fce466eaSQu Wenruo 		return -EUCLEAN;
423fce466eaSQu Wenruo 	}
424fce466eaSQu Wenruo 
425fce466eaSQu Wenruo 	flags = btrfs_block_group_flags(&bgi);
426fce466eaSQu Wenruo 	if (hweight64(flags & BTRFS_BLOCK_GROUP_PROFILE_MASK) > 1) {
427fce466eaSQu Wenruo 		block_group_err(fs_info, leaf, slot,
428fce466eaSQu Wenruo "invalid profile flags, have 0x%llx (%lu bits set) expect no more than 1 bit set",
429fce466eaSQu Wenruo 			flags & BTRFS_BLOCK_GROUP_PROFILE_MASK,
430fce466eaSQu Wenruo 			hweight64(flags & BTRFS_BLOCK_GROUP_PROFILE_MASK));
431fce466eaSQu Wenruo 		return -EUCLEAN;
432fce466eaSQu Wenruo 	}
433fce466eaSQu Wenruo 
434fce466eaSQu Wenruo 	type = flags & BTRFS_BLOCK_GROUP_TYPE_MASK;
435fce466eaSQu Wenruo 	if (type != BTRFS_BLOCK_GROUP_DATA &&
436fce466eaSQu Wenruo 	    type != BTRFS_BLOCK_GROUP_METADATA &&
437fce466eaSQu Wenruo 	    type != BTRFS_BLOCK_GROUP_SYSTEM &&
438fce466eaSQu Wenruo 	    type != (BTRFS_BLOCK_GROUP_METADATA |
439fce466eaSQu Wenruo 			   BTRFS_BLOCK_GROUP_DATA)) {
440fce466eaSQu Wenruo 		block_group_err(fs_info, leaf, slot,
441761333f2SShaokun Zhang "invalid type, have 0x%llx (%lu bits set) expect either 0x%llx, 0x%llx, 0x%llx or 0x%llx",
442fce466eaSQu Wenruo 			type, hweight64(type),
443fce466eaSQu Wenruo 			BTRFS_BLOCK_GROUP_DATA, BTRFS_BLOCK_GROUP_METADATA,
444fce466eaSQu Wenruo 			BTRFS_BLOCK_GROUP_SYSTEM,
445fce466eaSQu Wenruo 			BTRFS_BLOCK_GROUP_METADATA | BTRFS_BLOCK_GROUP_DATA);
446fce466eaSQu Wenruo 		return -EUCLEAN;
447fce466eaSQu Wenruo 	}
448fce466eaSQu Wenruo 	return 0;
449fce466eaSQu Wenruo }
450fce466eaSQu Wenruo 
451ad7b0368SQu Wenruo /*
452557ea5ddSQu Wenruo  * Common point to switch the item-specific validation.
453557ea5ddSQu Wenruo  */
4542f659546SQu Wenruo static int check_leaf_item(struct btrfs_fs_info *fs_info,
455557ea5ddSQu Wenruo 			   struct extent_buffer *leaf,
456557ea5ddSQu Wenruo 			   struct btrfs_key *key, int slot)
457557ea5ddSQu Wenruo {
458557ea5ddSQu Wenruo 	int ret = 0;
459557ea5ddSQu Wenruo 
460557ea5ddSQu Wenruo 	switch (key->type) {
461557ea5ddSQu Wenruo 	case BTRFS_EXTENT_DATA_KEY:
4622f659546SQu Wenruo 		ret = check_extent_data_item(fs_info, leaf, key, slot);
463557ea5ddSQu Wenruo 		break;
464557ea5ddSQu Wenruo 	case BTRFS_EXTENT_CSUM_KEY:
4652f659546SQu Wenruo 		ret = check_csum_item(fs_info, leaf, key, slot);
466557ea5ddSQu Wenruo 		break;
467ad7b0368SQu Wenruo 	case BTRFS_DIR_ITEM_KEY:
468ad7b0368SQu Wenruo 	case BTRFS_DIR_INDEX_KEY:
469ad7b0368SQu Wenruo 	case BTRFS_XATTR_ITEM_KEY:
4702f659546SQu Wenruo 		ret = check_dir_item(fs_info, leaf, key, slot);
471ad7b0368SQu Wenruo 		break;
472fce466eaSQu Wenruo 	case BTRFS_BLOCK_GROUP_ITEM_KEY:
473fce466eaSQu Wenruo 		ret = check_block_group_item(fs_info, leaf, key, slot);
474fce466eaSQu Wenruo 		break;
475557ea5ddSQu Wenruo 	}
476557ea5ddSQu Wenruo 	return ret;
477557ea5ddSQu Wenruo }
478557ea5ddSQu Wenruo 
4792f659546SQu Wenruo static int check_leaf(struct btrfs_fs_info *fs_info, struct extent_buffer *leaf,
48069fc6cbbSQu Wenruo 		      bool check_item_data)
481557ea5ddSQu Wenruo {
482557ea5ddSQu Wenruo 	/* No valid key type is 0, so all key should be larger than this key */
483557ea5ddSQu Wenruo 	struct btrfs_key prev_key = {0, 0, 0};
484557ea5ddSQu Wenruo 	struct btrfs_key key;
485557ea5ddSQu Wenruo 	u32 nritems = btrfs_header_nritems(leaf);
486557ea5ddSQu Wenruo 	int slot;
487557ea5ddSQu Wenruo 
488f556faa4SQu Wenruo 	if (btrfs_header_level(leaf) != 0) {
489f556faa4SQu Wenruo 		generic_err(fs_info, leaf, 0,
490f556faa4SQu Wenruo 			"invalid level for leaf, have %d expect 0",
491f556faa4SQu Wenruo 			btrfs_header_level(leaf));
492f556faa4SQu Wenruo 		return -EUCLEAN;
493f556faa4SQu Wenruo 	}
494f556faa4SQu Wenruo 
495557ea5ddSQu Wenruo 	/*
496557ea5ddSQu Wenruo 	 * Extent buffers from a relocation tree have a owner field that
497557ea5ddSQu Wenruo 	 * corresponds to the subvolume tree they are based on. So just from an
498557ea5ddSQu Wenruo 	 * extent buffer alone we can not find out what is the id of the
499557ea5ddSQu Wenruo 	 * corresponding subvolume tree, so we can not figure out if the extent
500557ea5ddSQu Wenruo 	 * buffer corresponds to the root of the relocation tree or not. So
501557ea5ddSQu Wenruo 	 * skip this check for relocation trees.
502557ea5ddSQu Wenruo 	 */
503557ea5ddSQu Wenruo 	if (nritems == 0 && !btrfs_header_flag(leaf, BTRFS_HEADER_FLAG_RELOC)) {
504ba480dd4SQu Wenruo 		u64 owner = btrfs_header_owner(leaf);
505557ea5ddSQu Wenruo 		struct btrfs_root *check_root;
506557ea5ddSQu Wenruo 
507ba480dd4SQu Wenruo 		/* These trees must never be empty */
508ba480dd4SQu Wenruo 		if (owner == BTRFS_ROOT_TREE_OBJECTID ||
509ba480dd4SQu Wenruo 		    owner == BTRFS_CHUNK_TREE_OBJECTID ||
510ba480dd4SQu Wenruo 		    owner == BTRFS_EXTENT_TREE_OBJECTID ||
511ba480dd4SQu Wenruo 		    owner == BTRFS_DEV_TREE_OBJECTID ||
512ba480dd4SQu Wenruo 		    owner == BTRFS_FS_TREE_OBJECTID ||
513ba480dd4SQu Wenruo 		    owner == BTRFS_DATA_RELOC_TREE_OBJECTID) {
514ba480dd4SQu Wenruo 			generic_err(fs_info, leaf, 0,
515ba480dd4SQu Wenruo 			"invalid root, root %llu must never be empty",
516ba480dd4SQu Wenruo 				    owner);
517ba480dd4SQu Wenruo 			return -EUCLEAN;
518ba480dd4SQu Wenruo 		}
519ba480dd4SQu Wenruo 		key.objectid = owner;
520557ea5ddSQu Wenruo 		key.type = BTRFS_ROOT_ITEM_KEY;
521557ea5ddSQu Wenruo 		key.offset = (u64)-1;
522557ea5ddSQu Wenruo 
523557ea5ddSQu Wenruo 		check_root = btrfs_get_fs_root(fs_info, &key, false);
524557ea5ddSQu Wenruo 		/*
525557ea5ddSQu Wenruo 		 * The only reason we also check NULL here is that during
526557ea5ddSQu Wenruo 		 * open_ctree() some roots has not yet been set up.
527557ea5ddSQu Wenruo 		 */
528557ea5ddSQu Wenruo 		if (!IS_ERR_OR_NULL(check_root)) {
529557ea5ddSQu Wenruo 			struct extent_buffer *eb;
530557ea5ddSQu Wenruo 
531557ea5ddSQu Wenruo 			eb = btrfs_root_node(check_root);
532557ea5ddSQu Wenruo 			/* if leaf is the root, then it's fine */
533557ea5ddSQu Wenruo 			if (leaf != eb) {
5342f659546SQu Wenruo 				generic_err(fs_info, leaf, 0,
535478d01b3SQu Wenruo 		"invalid nritems, have %u should not be 0 for non-root leaf",
536478d01b3SQu Wenruo 					nritems);
537557ea5ddSQu Wenruo 				free_extent_buffer(eb);
538557ea5ddSQu Wenruo 				return -EUCLEAN;
539557ea5ddSQu Wenruo 			}
540557ea5ddSQu Wenruo 			free_extent_buffer(eb);
541557ea5ddSQu Wenruo 		}
542557ea5ddSQu Wenruo 		return 0;
543557ea5ddSQu Wenruo 	}
544557ea5ddSQu Wenruo 
545557ea5ddSQu Wenruo 	if (nritems == 0)
546557ea5ddSQu Wenruo 		return 0;
547557ea5ddSQu Wenruo 
548557ea5ddSQu Wenruo 	/*
549557ea5ddSQu Wenruo 	 * Check the following things to make sure this is a good leaf, and
550557ea5ddSQu Wenruo 	 * leaf users won't need to bother with similar sanity checks:
551557ea5ddSQu Wenruo 	 *
552557ea5ddSQu Wenruo 	 * 1) key ordering
553557ea5ddSQu Wenruo 	 * 2) item offset and size
554557ea5ddSQu Wenruo 	 *    No overlap, no hole, all inside the leaf.
555557ea5ddSQu Wenruo 	 * 3) item content
556557ea5ddSQu Wenruo 	 *    If possible, do comprehensive sanity check.
557557ea5ddSQu Wenruo 	 *    NOTE: All checks must only rely on the item data itself.
558557ea5ddSQu Wenruo 	 */
559557ea5ddSQu Wenruo 	for (slot = 0; slot < nritems; slot++) {
560557ea5ddSQu Wenruo 		u32 item_end_expected;
561557ea5ddSQu Wenruo 		int ret;
562557ea5ddSQu Wenruo 
563557ea5ddSQu Wenruo 		btrfs_item_key_to_cpu(leaf, &key, slot);
564557ea5ddSQu Wenruo 
565557ea5ddSQu Wenruo 		/* Make sure the keys are in the right order */
566557ea5ddSQu Wenruo 		if (btrfs_comp_cpu_keys(&prev_key, &key) >= 0) {
5672f659546SQu Wenruo 			generic_err(fs_info, leaf, slot,
568478d01b3SQu Wenruo 	"bad key order, prev (%llu %u %llu) current (%llu %u %llu)",
569478d01b3SQu Wenruo 				prev_key.objectid, prev_key.type,
570478d01b3SQu Wenruo 				prev_key.offset, key.objectid, key.type,
571478d01b3SQu Wenruo 				key.offset);
572557ea5ddSQu Wenruo 			return -EUCLEAN;
573557ea5ddSQu Wenruo 		}
574557ea5ddSQu Wenruo 
575557ea5ddSQu Wenruo 		/*
576557ea5ddSQu Wenruo 		 * Make sure the offset and ends are right, remember that the
577557ea5ddSQu Wenruo 		 * item data starts at the end of the leaf and grows towards the
578557ea5ddSQu Wenruo 		 * front.
579557ea5ddSQu Wenruo 		 */
580557ea5ddSQu Wenruo 		if (slot == 0)
581557ea5ddSQu Wenruo 			item_end_expected = BTRFS_LEAF_DATA_SIZE(fs_info);
582557ea5ddSQu Wenruo 		else
583557ea5ddSQu Wenruo 			item_end_expected = btrfs_item_offset_nr(leaf,
584557ea5ddSQu Wenruo 								 slot - 1);
585557ea5ddSQu Wenruo 		if (btrfs_item_end_nr(leaf, slot) != item_end_expected) {
5862f659546SQu Wenruo 			generic_err(fs_info, leaf, slot,
587478d01b3SQu Wenruo 				"unexpected item end, have %u expect %u",
588478d01b3SQu Wenruo 				btrfs_item_end_nr(leaf, slot),
589478d01b3SQu Wenruo 				item_end_expected);
590557ea5ddSQu Wenruo 			return -EUCLEAN;
591557ea5ddSQu Wenruo 		}
592557ea5ddSQu Wenruo 
593557ea5ddSQu Wenruo 		/*
594557ea5ddSQu Wenruo 		 * Check to make sure that we don't point outside of the leaf,
595557ea5ddSQu Wenruo 		 * just in case all the items are consistent to each other, but
596557ea5ddSQu Wenruo 		 * all point outside of the leaf.
597557ea5ddSQu Wenruo 		 */
598557ea5ddSQu Wenruo 		if (btrfs_item_end_nr(leaf, slot) >
599557ea5ddSQu Wenruo 		    BTRFS_LEAF_DATA_SIZE(fs_info)) {
6002f659546SQu Wenruo 			generic_err(fs_info, leaf, slot,
601478d01b3SQu Wenruo 			"slot end outside of leaf, have %u expect range [0, %u]",
602478d01b3SQu Wenruo 				btrfs_item_end_nr(leaf, slot),
603478d01b3SQu Wenruo 				BTRFS_LEAF_DATA_SIZE(fs_info));
604557ea5ddSQu Wenruo 			return -EUCLEAN;
605557ea5ddSQu Wenruo 		}
606557ea5ddSQu Wenruo 
607557ea5ddSQu Wenruo 		/* Also check if the item pointer overlaps with btrfs item. */
608557ea5ddSQu Wenruo 		if (btrfs_item_nr_offset(slot) + sizeof(struct btrfs_item) >
609557ea5ddSQu Wenruo 		    btrfs_item_ptr_offset(leaf, slot)) {
6102f659546SQu Wenruo 			generic_err(fs_info, leaf, slot,
611478d01b3SQu Wenruo 		"slot overlaps with its data, item end %lu data start %lu",
612478d01b3SQu Wenruo 				btrfs_item_nr_offset(slot) +
613478d01b3SQu Wenruo 				sizeof(struct btrfs_item),
614478d01b3SQu Wenruo 				btrfs_item_ptr_offset(leaf, slot));
615557ea5ddSQu Wenruo 			return -EUCLEAN;
616557ea5ddSQu Wenruo 		}
617557ea5ddSQu Wenruo 
61869fc6cbbSQu Wenruo 		if (check_item_data) {
61969fc6cbbSQu Wenruo 			/*
62069fc6cbbSQu Wenruo 			 * Check if the item size and content meet other
62169fc6cbbSQu Wenruo 			 * criteria
62269fc6cbbSQu Wenruo 			 */
6232f659546SQu Wenruo 			ret = check_leaf_item(fs_info, leaf, &key, slot);
624557ea5ddSQu Wenruo 			if (ret < 0)
625557ea5ddSQu Wenruo 				return ret;
62669fc6cbbSQu Wenruo 		}
627557ea5ddSQu Wenruo 
628557ea5ddSQu Wenruo 		prev_key.objectid = key.objectid;
629557ea5ddSQu Wenruo 		prev_key.type = key.type;
630557ea5ddSQu Wenruo 		prev_key.offset = key.offset;
631557ea5ddSQu Wenruo 	}
632557ea5ddSQu Wenruo 
633557ea5ddSQu Wenruo 	return 0;
634557ea5ddSQu Wenruo }
635557ea5ddSQu Wenruo 
6362f659546SQu Wenruo int btrfs_check_leaf_full(struct btrfs_fs_info *fs_info,
63769fc6cbbSQu Wenruo 			  struct extent_buffer *leaf)
63869fc6cbbSQu Wenruo {
6392f659546SQu Wenruo 	return check_leaf(fs_info, leaf, true);
64069fc6cbbSQu Wenruo }
64169fc6cbbSQu Wenruo 
6422f659546SQu Wenruo int btrfs_check_leaf_relaxed(struct btrfs_fs_info *fs_info,
6432f659546SQu Wenruo 			     struct extent_buffer *leaf)
6442f659546SQu Wenruo {
6452f659546SQu Wenruo 	return check_leaf(fs_info, leaf, false);
6462f659546SQu Wenruo }
6472f659546SQu Wenruo 
6482f659546SQu Wenruo int btrfs_check_node(struct btrfs_fs_info *fs_info, struct extent_buffer *node)
649557ea5ddSQu Wenruo {
650557ea5ddSQu Wenruo 	unsigned long nr = btrfs_header_nritems(node);
651557ea5ddSQu Wenruo 	struct btrfs_key key, next_key;
652557ea5ddSQu Wenruo 	int slot;
653f556faa4SQu Wenruo 	int level = btrfs_header_level(node);
654557ea5ddSQu Wenruo 	u64 bytenr;
655557ea5ddSQu Wenruo 	int ret = 0;
656557ea5ddSQu Wenruo 
657f556faa4SQu Wenruo 	if (level <= 0 || level >= BTRFS_MAX_LEVEL) {
658f556faa4SQu Wenruo 		generic_err(fs_info, node, 0,
659f556faa4SQu Wenruo 			"invalid level for node, have %d expect [1, %d]",
660f556faa4SQu Wenruo 			level, BTRFS_MAX_LEVEL - 1);
661f556faa4SQu Wenruo 		return -EUCLEAN;
662f556faa4SQu Wenruo 	}
6632f659546SQu Wenruo 	if (nr == 0 || nr > BTRFS_NODEPTRS_PER_BLOCK(fs_info)) {
6642f659546SQu Wenruo 		btrfs_crit(fs_info,
665bba4f298SQu Wenruo "corrupt node: root=%llu block=%llu, nritems too %s, have %lu expect range [1,%u]",
6662f659546SQu Wenruo 			   btrfs_header_owner(node), node->start,
667bba4f298SQu Wenruo 			   nr == 0 ? "small" : "large", nr,
6682f659546SQu Wenruo 			   BTRFS_NODEPTRS_PER_BLOCK(fs_info));
669bba4f298SQu Wenruo 		return -EUCLEAN;
670557ea5ddSQu Wenruo 	}
671557ea5ddSQu Wenruo 
672557ea5ddSQu Wenruo 	for (slot = 0; slot < nr - 1; slot++) {
673557ea5ddSQu Wenruo 		bytenr = btrfs_node_blockptr(node, slot);
674557ea5ddSQu Wenruo 		btrfs_node_key_to_cpu(node, &key, slot);
675557ea5ddSQu Wenruo 		btrfs_node_key_to_cpu(node, &next_key, slot + 1);
676557ea5ddSQu Wenruo 
677557ea5ddSQu Wenruo 		if (!bytenr) {
6782f659546SQu Wenruo 			generic_err(fs_info, node, slot,
679bba4f298SQu Wenruo 				"invalid NULL node pointer");
680bba4f298SQu Wenruo 			ret = -EUCLEAN;
681bba4f298SQu Wenruo 			goto out;
682bba4f298SQu Wenruo 		}
6832f659546SQu Wenruo 		if (!IS_ALIGNED(bytenr, fs_info->sectorsize)) {
6842f659546SQu Wenruo 			generic_err(fs_info, node, slot,
685bba4f298SQu Wenruo 			"unaligned pointer, have %llu should be aligned to %u",
6862f659546SQu Wenruo 				bytenr, fs_info->sectorsize);
687bba4f298SQu Wenruo 			ret = -EUCLEAN;
688557ea5ddSQu Wenruo 			goto out;
689557ea5ddSQu Wenruo 		}
690557ea5ddSQu Wenruo 
691557ea5ddSQu Wenruo 		if (btrfs_comp_cpu_keys(&key, &next_key) >= 0) {
6922f659546SQu Wenruo 			generic_err(fs_info, node, slot,
693bba4f298SQu Wenruo 	"bad key order, current (%llu %u %llu) next (%llu %u %llu)",
694bba4f298SQu Wenruo 				key.objectid, key.type, key.offset,
695bba4f298SQu Wenruo 				next_key.objectid, next_key.type,
696bba4f298SQu Wenruo 				next_key.offset);
697bba4f298SQu Wenruo 			ret = -EUCLEAN;
698557ea5ddSQu Wenruo 			goto out;
699557ea5ddSQu Wenruo 		}
700557ea5ddSQu Wenruo 	}
701557ea5ddSQu Wenruo out:
702557ea5ddSQu Wenruo 	return ret;
703557ea5ddSQu Wenruo }
704