qemu-img: find the image end offset during check

This patch adds the support for reporting the image end offset (in
bytes). This is particularly useful after a conversion (or a rebase)
where the destination is a block device in order to find the first
unused byte at the end of the image.

Signed-off-by: Federico Simoncelli <fsimonce@redhat.com>
Signed-off-by: Kevin Wolf <kwolf@redhat.com>
This commit is contained in:
Federico Simoncelli 2013-01-28 06:59:46 -05:00 committed by Kevin Wolf
parent 5cbb082837
commit c6bb9ad198
8 changed files with 24 additions and 10 deletions

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@ -1112,7 +1112,7 @@ int qcow2_check_refcounts(BlockDriverState *bs, BdrvCheckResult *res,
BdrvCheckMode fix) BdrvCheckMode fix)
{ {
BDRVQcowState *s = bs->opaque; BDRVQcowState *s = bs->opaque;
int64_t size, i; int64_t size, i, highest_cluster;
int nb_clusters, refcount1, refcount2; int nb_clusters, refcount1, refcount2;
QCowSnapshot *sn; QCowSnapshot *sn;
uint16_t *refcount_table; uint16_t *refcount_table;
@ -1183,7 +1183,7 @@ int qcow2_check_refcounts(BlockDriverState *bs, BdrvCheckResult *res,
} }
/* compare ref counts */ /* compare ref counts */
for(i = 0; i < nb_clusters; i++) { for (i = 0, highest_cluster = 0; i < nb_clusters; i++) {
refcount1 = get_refcount(bs, i); refcount1 = get_refcount(bs, i);
if (refcount1 < 0) { if (refcount1 < 0) {
fprintf(stderr, "Can't get refcount for cluster %" PRId64 ": %s\n", fprintf(stderr, "Can't get refcount for cluster %" PRId64 ": %s\n",
@ -1193,6 +1193,11 @@ int qcow2_check_refcounts(BlockDriverState *bs, BdrvCheckResult *res,
} }
refcount2 = refcount_table[i]; refcount2 = refcount_table[i];
if (refcount1 > 0 || refcount2 > 0) {
highest_cluster = i;
}
if (refcount1 != refcount2) { if (refcount1 != refcount2) {
/* Check if we're allowed to fix the mismatch */ /* Check if we're allowed to fix the mismatch */
@ -1227,6 +1232,7 @@ int qcow2_check_refcounts(BlockDriverState *bs, BdrvCheckResult *res,
} }
} }
res->image_end_offset = (highest_cluster + 1) * s->cluster_size;
ret = 0; ret = 0;
fail: fail:

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@ -213,6 +213,7 @@ typedef struct BdrvCheckResult {
int check_errors; int check_errors;
int corruptions_fixed; int corruptions_fixed;
int leaks_fixed; int leaks_fixed;
int64_t image_end_offset;
BlockFragInfo bfi; BlockFragInfo bfi;
} BdrvCheckResult; } BdrvCheckResult;

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@ -475,6 +475,10 @@ static int img_check(int argc, char **argv)
result.bfi.fragmented_clusters * 100.0 / result.bfi.allocated_clusters); result.bfi.fragmented_clusters * 100.0 / result.bfi.allocated_clusters);
} }
if (result.image_end_offset > 0) {
printf("Image end offset: %" PRId64 "\n", result.image_end_offset);
}
bdrv_delete(bs); bdrv_delete(bs);
if (ret < 0 || result.check_errors) { if (ret < 0 || result.check_errors) {

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@ -102,7 +102,7 @@ if [ "$event" == "l2_load" ]; then
$QEMU_IO -c "read $vmstate 0 128k " $BLKDBG_TEST_IMG | _filter_qemu_io $QEMU_IO -c "read $vmstate 0 128k " $BLKDBG_TEST_IMG | _filter_qemu_io
fi fi
$QEMU_IMG check $TEST_IMG 2>&1 | grep -v "refcount=1 reference=0" _check_test_img 2>&1 | grep -v "refcount=1 reference=0"
done done
done done
@ -147,7 +147,7 @@ echo
echo "Event: $event; errno: $errno; imm: $imm; once: $once; write $vmstate" echo "Event: $event; errno: $errno; imm: $imm; once: $once; write $vmstate"
$QEMU_IO -c "write $vmstate 0 64M" $BLKDBG_TEST_IMG | _filter_qemu_io $QEMU_IO -c "write $vmstate 0 64M" $BLKDBG_TEST_IMG | _filter_qemu_io
$QEMU_IMG check $TEST_IMG 2>&1 | grep -v "refcount=1 reference=0" _check_test_img 2>&1 | grep -v "refcount=1 reference=0"
done done
done done
@ -186,7 +186,7 @@ echo
echo "Event: $event; errno: $errno; imm: $imm; once: $once" echo "Event: $event; errno: $errno; imm: $imm; once: $once"
$QEMU_IO -c "write -b 0 64k" $BLKDBG_TEST_IMG | _filter_qemu_io $QEMU_IO -c "write -b 0 64k" $BLKDBG_TEST_IMG | _filter_qemu_io
$QEMU_IMG check $TEST_IMG 2>&1 | grep -v "refcount=1 reference=0" _check_test_img 2>&1 | grep -v "refcount=1 reference=0"
done done
done done

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@ -59,7 +59,8 @@ _make_test_img 64M
echo echo
echo === Repair image === echo === Repair image ===
echo echo
$QEMU_IMG check -r all $TEST_IMG _check_test_img -r all
./qcow2.py $TEST_IMG dump-header ./qcow2.py $TEST_IMG dump-header
# success, all done # success, all done

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@ -86,7 +86,7 @@ $QEMU_IO -r -c "read -P 0x5a 0 512" $TEST_IMG | _filter_qemu_io
echo echo
echo "== Repairing the image file must succeed ==" echo "== Repairing the image file must succeed =="
$QEMU_IMG check -r all $TEST_IMG _check_test_img -r all
# The dirty bit must not be set # The dirty bit must not be set
./qcow2.py $TEST_IMG dump-header | grep incompatible_features ./qcow2.py $TEST_IMG dump-header | grep incompatible_features

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@ -1,4 +1,5 @@
No errors were found on the image. No errors were found on the image.
Image end offset: 4296447488
. .
---------------------------------------------------------------------- ----------------------------------------------------------------------
Ran 1 tests Ran 1 tests

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@ -161,9 +161,10 @@ _cleanup_test_img()
_check_test_img() _check_test_img()
{ {
$QEMU_IMG check -f $IMGFMT $TEST_IMG 2>&1 | \ $QEMU_IMG check "$@" -f $IMGFMT $TEST_IMG 2>&1 | \
grep -v "fragmented$" | \ sed -e "/fragmented$/d" \
sed -e 's/qemu-img\: This image format does not support checks/No errors were found on the image./' -e 's/qemu-img: This image format does not support checks/No errors were found on the image./' \
-e '/Image end offset: [0-9]\+/d'
} }
_img_info() _img_info()