@@ -314,7 +314,7 @@ BdrvDirtyBitmap *bdrv_reclaim_dirty_bitmap_locked(BlockDriverState *bs,
return NULL;
}
- if (!hbitmap_merge(parent->bitmap, successor->bitmap)) {
+ if (!hbitmap_merge(parent->bitmap, successor->bitmap, parent->bitmap)) {
error_setg(errp, "Merging of parent and successor bitmap failed");
return NULL;
}
@@ -791,8 +791,10 @@ int64_t bdrv_dirty_bitmap_next_zero(BdrvDirtyBitmap *bitmap, uint64_t offset)
}
void bdrv_merge_dirty_bitmap(BdrvDirtyBitmap *dest, const BdrvDirtyBitmap *src,
- Error **errp)
+ HBitmap **backup, Error **errp)
{
+ bool ret;
+
/* only bitmaps from one bds are supported */
assert(dest->mutex == src->mutex);
@@ -810,11 +812,20 @@ void bdrv_merge_dirty_bitmap(BdrvDirtyBitmap *dest, const BdrvDirtyBitmap *src,
goto out;
}
- if (!hbitmap_merge(dest->bitmap, src->bitmap)) {
+ if (!hbitmap_can_merge(dest->bitmap, src->bitmap)) {
error_setg(errp, "Bitmaps are incompatible and can't be merged");
goto out;
}
+ if (backup) {
+ *backup = dest->bitmap;
+ dest->bitmap = hbitmap_alloc(dest->size, hbitmap_granularity(*backup));
+ ret = hbitmap_merge(*backup, src->bitmap, dest->bitmap);
+ } else {
+ ret = hbitmap_merge(dest->bitmap, src->bitmap, dest->bitmap);
+ }
+ assert(ret);
+
out:
qemu_mutex_unlock(dest->mutex);
}
@@ -2968,7 +2968,7 @@ void qmp_x_block_dirty_bitmap_merge(const char *node, const char *dst_name,
return;
}
- bdrv_merge_dirty_bitmap(dst, src, errp);
+ bdrv_merge_dirty_bitmap(dst, src, NULL, errp);
}
BlockDirtyBitmapSha256 *qmp_x_debug_block_dirty_bitmap_sha256(const char *node,
@@ -71,7 +71,7 @@ void bdrv_dirty_bitmap_set_persistance(BdrvDirtyBitmap *bitmap,
bool persistent);
void bdrv_dirty_bitmap_set_qmp_locked(BdrvDirtyBitmap *bitmap, bool qmp_locked);
void bdrv_merge_dirty_bitmap(BdrvDirtyBitmap *dest, const BdrvDirtyBitmap *src,
- Error **errp);
+ HBitmap **backup, Error **errp);
/* Functions that require manual locking. */
void bdrv_dirty_bitmap_lock(BdrvDirtyBitmap *bitmap);
@@ -73,16 +73,23 @@ void hbitmap_truncate(HBitmap *hb, uint64_t size);
/**
* hbitmap_merge:
- * @a: The bitmap to store the result in.
- * @b: The bitmap to merge into @a.
- * @return true if the merge was successful,
- * false if it was not attempted.
- *
- * Merge two bitmaps together.
- * A := A (BITOR) B.
- * B is left unmodified.
+ *
+ * Store result of merging @a and @b into @result.
+ * @result is allowed to be equal to @a or @b.
+ *
+ * Return true if the merge was successful,
+ * false if it was not attempted.
+ */
+bool hbitmap_merge(const HBitmap *a, const HBitmap *b, HBitmap *result);
+
+/**
+ * hbitmap_can_merge:
+ *
+ * hbitmap_can_merge(a, b) && hbitmap_can_merge(a, result) is sufficient and
+ * necessary for hbitmap_merge will not fail.
+ *
*/
-bool hbitmap_merge(HBitmap *a, const HBitmap *b);
+bool hbitmap_can_merge(const HBitmap *a, const HBitmap *b);
/**
* hbitmap_empty:
@@ -723,6 +723,10 @@ void hbitmap_truncate(HBitmap *hb, uint64_t size)
}
}
+bool hbitmap_can_merge(const HBitmap *a, const HBitmap *b)
+{
+ return (a->size == b->size) && (a->granularity == b->granularity);
+}
/**
* Given HBitmaps A and B, let A := A (BITOR) B.
@@ -731,14 +735,15 @@ void hbitmap_truncate(HBitmap *hb, uint64_t size)
* @return true if the merge was successful,
* false if it was not attempted.
*/
-bool hbitmap_merge(HBitmap *a, const HBitmap *b)
+bool hbitmap_merge(const HBitmap *a, const HBitmap *b, HBitmap *result)
{
int i;
uint64_t j;
- if ((a->size != b->size) || (a->granularity != b->granularity)) {
+ if (!hbitmap_can_merge(a, b) || !hbitmap_can_merge(a, result)) {
return false;
}
+ assert(hbitmap_can_merge(b, result));
if (hbitmap_count(b) == 0) {
return true;
@@ -750,7 +755,7 @@ bool hbitmap_merge(HBitmap *a, const HBitmap *b)
*/
for (i = HBITMAP_LEVELS - 1; i >= 0; i--) {
for (j = 0; j < a->sizes[i]; j++) {
- a->levels[i][j] |= b->levels[i][j];
+ result->levels[i][j] = a->levels[i][j] | b->levels[i][j];
}
}