2 * QEMU Enhanced Disk Format Consistency Check
4 * Copyright IBM, Corp. 2010
7 * Stefan Hajnoczi <stefanha@linux.vnet.ibm.com>
9 * This work is licensed under the terms of the GNU LGPL, version 2 or later.
10 * See the COPYING.LIB file in the top-level directory.
18 BdrvCheckResult
*result
;
19 bool fix
; /* whether to fix invalid offsets */
22 uint32_t *used_clusters
; /* referenced cluster bitmap */
27 static bool qed_test_bit(uint32_t *bitmap
, uint64_t n
) {
28 return !!(bitmap
[n
/ 32] & (1 << (n
% 32)));
31 static void qed_set_bit(uint32_t *bitmap
, uint64_t n
) {
32 bitmap
[n
/ 32] |= 1 << (n
% 32);
36 * Set bitmap bits for clusters
38 * @check: Check structure
39 * @offset: Starting offset in bytes
40 * @n: Number of clusters
42 static bool qed_set_used_clusters(QEDCheck
*check
, uint64_t offset
,
45 uint64_t cluster
= qed_bytes_to_clusters(check
->s
, offset
);
46 unsigned int corruptions
= 0;
49 /* Clusters should only be referenced once */
50 if (qed_test_bit(check
->used_clusters
, cluster
)) {
54 qed_set_bit(check
->used_clusters
, cluster
);
58 check
->result
->corruptions
+= corruptions
;
59 return corruptions
== 0;
65 * @ret: Number of invalid cluster offsets
67 static unsigned int qed_check_l2_table(QEDCheck
*check
, QEDTable
*table
)
69 BDRVQEDState
*s
= check
->s
;
70 unsigned int i
, num_invalid
= 0;
72 for (i
= 0; i
< s
->table_nelems
; i
++) {
73 uint64_t offset
= table
->offsets
[i
];
79 /* Detect invalid cluster offset */
80 if (!qed_check_cluster_offset(s
, offset
)) {
82 table
->offsets
[i
] = 0;
84 check
->result
->corruptions
++;
91 qed_set_used_clusters(check
, offset
, 1);
98 * Descend tables and check each cluster is referenced once only
100 static int qed_check_l1_table(QEDCheck
*check
, QEDTable
*table
)
102 BDRVQEDState
*s
= check
->s
;
103 unsigned int i
, num_invalid_l1
= 0;
104 int ret
, last_error
= 0;
106 /* Mark L1 table clusters used */
107 qed_set_used_clusters(check
, s
->header
.l1_table_offset
,
108 s
->header
.table_size
);
110 for (i
= 0; i
< s
->table_nelems
; i
++) {
111 unsigned int num_invalid_l2
;
112 uint64_t offset
= table
->offsets
[i
];
118 /* Detect invalid L2 offset */
119 if (!qed_check_table_offset(s
, offset
)) {
120 /* Clear invalid offset */
122 table
->offsets
[i
] = 0;
124 check
->result
->corruptions
++;
131 if (!qed_set_used_clusters(check
, offset
, s
->header
.table_size
)) {
132 continue; /* skip an invalid table */
135 ret
= qed_read_l2_table_sync(s
, &check
->request
, offset
);
137 check
->result
->check_errors
++;
142 num_invalid_l2
= qed_check_l2_table(check
,
143 check
->request
.l2_table
->table
);
145 /* Write out fixed L2 table */
146 if (num_invalid_l2
> 0 && check
->fix
) {
147 ret
= qed_write_l2_table_sync(s
, &check
->request
, 0,
148 s
->table_nelems
, false);
150 check
->result
->check_errors
++;
157 /* Drop reference to final table */
158 qed_unref_l2_cache_entry(check
->request
.l2_table
);
159 check
->request
.l2_table
= NULL
;
161 /* Write out fixed L1 table */
162 if (num_invalid_l1
> 0 && check
->fix
) {
163 ret
= qed_write_l1_table_sync(s
, 0, s
->table_nelems
);
165 check
->result
->check_errors
++;
174 * Check for unreferenced (leaked) clusters
176 static void qed_check_for_leaks(QEDCheck
*check
)
178 BDRVQEDState
*s
= check
->s
;
181 for (i
= s
->header
.header_size
; i
< check
->nclusters
; i
++) {
182 if (!qed_test_bit(check
->used_clusters
, i
)) {
183 check
->result
->leaks
++;
188 int qed_check(BDRVQEDState
*s
, BdrvCheckResult
*result
, bool fix
)
193 .nclusters
= qed_bytes_to_clusters(s
, s
->file_size
),
194 .request
= { .l2_table
= NULL
},
199 check
.used_clusters
= qemu_mallocz(((check
.nclusters
+ 31) / 32) *
200 sizeof(check
.used_clusters
[0]));
202 ret
= qed_check_l1_table(&check
, s
->l1_table
);
204 /* Only check for leaks if entire image was scanned successfully */
205 qed_check_for_leaks(&check
);
208 qemu_free(check
.used_clusters
);