提交 0c1fd2f4 编写于 作者: P Peter Maydell

Merge remote-tracking branch 'remotes/kevin/tags/for-upstream' into staging

Block layer patches:

- file-posix: Handle `EINVAL` fallocate return value
- qemu-img convert -n: Keep qcow2 v2 target sparse

# gpg: Signature made Tue 21 Jul 2020 16:45:28 BST
# gpg:                using RSA key DC3DEB159A9AF95D3D7456FE7F09B272C88F2FD6
# gpg:                issuer "kwolf@redhat.com"
# gpg: Good signature from "Kevin Wolf <kwolf@redhat.com>" [full]
# Primary key fingerprint: DC3D EB15 9A9A F95D 3D74  56FE 7F09 B272 C88F 2FD6

* remotes/kevin/tags/for-upstream:
  iotests: Test sparseness for qemu-img convert -n
  qcow2: Implement v2 zero writes with discard if possible
  file-posix: Handle `EINVAL` fallocate return value
Signed-off-by: NPeter Maydell <peter.maydell@linaro.org>
......@@ -1698,7 +1698,11 @@ static int handle_aiocb_write_zeroes_unmap(void *opaque)
#ifdef CONFIG_FALLOCATE_PUNCH_HOLE
int ret = do_fallocate(s->fd, FALLOC_FL_PUNCH_HOLE | FALLOC_FL_KEEP_SIZE,
aiocb->aio_offset, aiocb->aio_nbytes);
if (ret != -ENOTSUP) {
switch (ret) {
case -ENOTSUP:
case -EINVAL:
break;
default:
return ret;
}
#endif
......
......@@ -1797,8 +1797,15 @@ int qcow2_cluster_zeroize(BlockDriverState *bs, uint64_t offset,
assert(QEMU_IS_ALIGNED(end_offset, s->cluster_size) ||
end_offset >= bs->total_sectors << BDRV_SECTOR_BITS);
/* The zero flag is only supported by version 3 and newer */
/*
* The zero flag is only supported by version 3 and newer. However, if we
* have no backing file, we can resort to discard in version 2.
*/
if (s->qcow_version < 3) {
if (!bs->backing) {
return qcow2_cluster_discard(bs, offset, bytes,
QCOW2_DISCARD_REQUEST, false);
}
return -ENOTSUP;
}
......
......@@ -281,6 +281,36 @@ $QEMU_IMG convert -O $IMGFMT -n "$TEST_IMG" "$TEST_IMG".orig
$QEMU_IMG compare "$TEST_IMG" "$TEST_IMG".orig
echo
echo '=== -n to an empty image ==='
echo
TEST_IMG="$TEST_IMG".orig _make_test_img 64M
# Convert with -n, which should not result in a fully allocated image, not even
# with compat=0.10 (because the target doesn't have a backing file)
for compat in "1.1" "0.10"; do
IMGOPTS="compat=$compat" _make_test_img 64M
$QEMU_IMG convert -O $IMGFMT -n "$TEST_IMG".orig "$TEST_IMG"
$QEMU_IMG map --output=json "$TEST_IMG"
done
echo
echo '=== -n to an empty image with a backing file ==='
echo
TEST_IMG="$TEST_IMG".orig _make_test_img 64M
TEST_IMG="$TEST_IMG".base _make_test_img 64M
# Convert with -n, which should still not result in a fully allocated image for
# compat=1.1 (because it can use zero clusters), but it should be fully
# allocated with compat=0.10
for compat in "1.1" "0.10"; do
IMGOPTS="compat=$compat" _make_test_img -b "$TEST_IMG".base -F $IMGFMT 64M
$QEMU_IMG convert -O $IMGFMT -n "$TEST_IMG".orig "$TEST_IMG"
$QEMU_IMG map --output=json "$TEST_IMG"
done
echo
echo '=== -n -B to an image without a backing file ==='
echo
......
......@@ -229,6 +229,23 @@ wrote 65536/65536 bytes at offset 0
64 KiB, X ops; XX:XX:XX.X (XXX YYY/sec and XXX ops/sec)
Images are identical.
=== -n to an empty image ===
Formatting 'TEST_DIR/t.IMGFMT.orig', fmt=IMGFMT size=67108864
Formatting 'TEST_DIR/t.IMGFMT', fmt=IMGFMT size=67108864
[{ "start": 0, "length": 67108864, "depth": 0, "zero": true, "data": false}]
Formatting 'TEST_DIR/t.IMGFMT', fmt=IMGFMT size=67108864
[{ "start": 0, "length": 67108864, "depth": 0, "zero": true, "data": false}]
=== -n to an empty image with a backing file ===
Formatting 'TEST_DIR/t.IMGFMT.orig', fmt=IMGFMT size=67108864
Formatting 'TEST_DIR/t.IMGFMT.base', fmt=IMGFMT size=67108864
Formatting 'TEST_DIR/t.IMGFMT', fmt=IMGFMT size=67108864 backing_file=TEST_DIR/t.IMGFMT.base backing_fmt=IMGFMT
[{ "start": 0, "length": 67108864, "depth": 0, "zero": true, "data": false}]
Formatting 'TEST_DIR/t.IMGFMT', fmt=IMGFMT size=67108864 backing_file=TEST_DIR/t.IMGFMT.base backing_fmt=IMGFMT
[{ "start": 0, "length": 67108864, "depth": 0, "zero": false, "data": true, "offset": 327680}]
=== -n -B to an image without a backing file ===
Formatting 'TEST_DIR/t.IMGFMT.base', fmt=IMGFMT size=67108864
......
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