xref: /openbmc/qemu/tests/qemu-iotests/244 (revision 2ec7e8a9)
1f3d07ce8SThomas Huth#!/usr/bin/env bash
29dd003a9SVladimir Sementsov-Ogievskiy# group: rw auto quick
376b90e23SKevin Wolf#
476b90e23SKevin Wolf# Test qcow2 with external data files
576b90e23SKevin Wolf#
676b90e23SKevin Wolf# Copyright (C) 2019 Red Hat, Inc.
776b90e23SKevin Wolf#
876b90e23SKevin Wolf# This program is free software; you can redistribute it and/or modify
976b90e23SKevin Wolf# it under the terms of the GNU General Public License as published by
1076b90e23SKevin Wolf# the Free Software Foundation; either version 2 of the License, or
1176b90e23SKevin Wolf# (at your option) any later version.
1276b90e23SKevin Wolf#
1376b90e23SKevin Wolf# This program is distributed in the hope that it will be useful,
1476b90e23SKevin Wolf# but WITHOUT ANY WARRANTY; without even the implied warranty of
1576b90e23SKevin Wolf# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1676b90e23SKevin Wolf# GNU General Public License for more details.
1776b90e23SKevin Wolf#
1876b90e23SKevin Wolf# You should have received a copy of the GNU General Public License
1976b90e23SKevin Wolf# along with this program.  If not, see <http://www.gnu.org/licenses/>.
2076b90e23SKevin Wolf#
2176b90e23SKevin Wolf
2276b90e23SKevin Wolf# creator
2376b90e23SKevin Wolfowner=kwolf@redhat.com
2476b90e23SKevin Wolf
2576b90e23SKevin Wolfseq=$(basename $0)
2676b90e23SKevin Wolfecho "QA output created by $seq"
2776b90e23SKevin Wolf
2876b90e23SKevin Wolfstatus=1	# failure is the default!
2976b90e23SKevin Wolf
3076b90e23SKevin Wolf_cleanup()
3176b90e23SKevin Wolf{
3276b90e23SKevin Wolf    _cleanup_test_img
33f91ecbd7SMax Reitz    _rm_test_img "$TEST_IMG.data"
34f91ecbd7SMax Reitz    _rm_test_img "$TEST_IMG.src"
3576b90e23SKevin Wolf}
3676b90e23SKevin Wolftrap "_cleanup; exit \$status" 0 1 2 3 15
3776b90e23SKevin Wolf
3876b90e23SKevin Wolf# get standard environment, filters and checks
3976b90e23SKevin Wolf. ./common.rc
4076b90e23SKevin Wolf. ./common.filter
41*2ec7e8a9SMax Reitz. ./common.qemu
4276b90e23SKevin Wolf
4376b90e23SKevin Wolf_supported_fmt qcow2
4476b90e23SKevin Wolf_supported_proto file
4576b90e23SKevin Wolf_supported_os Linux
463be2024aSMax Reitz# External data files do not work with compat=0.10, and because we use
473be2024aSMax Reitz# our own external data file, we cannot let the user specify one
483be2024aSMax Reitz_unsupported_imgopts 'compat=0.10' data_file
4976b90e23SKevin Wolf
5076b90e23SKevin Wolfecho
5176b90e23SKevin Wolfecho "=== Create and open image with external data file ==="
5276b90e23SKevin Wolfecho
5376b90e23SKevin Wolf
5476b90e23SKevin Wolfecho "With data file name in the image:"
55407fb56aSMax Reitz_make_test_img -o "data_file=$TEST_IMG.data" 64M
5676b90e23SKevin Wolf_check_test_img
5776b90e23SKevin Wolf
5876b90e23SKevin Wolf$QEMU_IO -c "open $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
5976b90e23SKevin Wolf$QEMU_IO -c "open -odata-file.filename=$TEST_IMG.data $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
6076b90e23SKevin Wolf$QEMU_IO -c "open -odata-file.filename=inexistent $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
6176b90e23SKevin Wolf
6276b90e23SKevin Wolfecho
6376b90e23SKevin Wolfecho "Data file required, but without data file name in the image:"
6476b90e23SKevin Wolf$QEMU_IMG amend -odata_file= $TEST_IMG
6576b90e23SKevin Wolf
6676b90e23SKevin Wolf$QEMU_IO -c "open $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
6776b90e23SKevin Wolf$QEMU_IO -c "open -odata-file.filename=$TEST_IMG.data $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
6876b90e23SKevin Wolf$QEMU_IO -c "open -odata-file.filename=inexistent $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
6976b90e23SKevin Wolf
7076b90e23SKevin Wolfecho
7176b90e23SKevin Wolfecho "Setting data-file for an image with internal data:"
7276b90e23SKevin Wolf_make_test_img 64M
7376b90e23SKevin Wolf
7476b90e23SKevin Wolf$QEMU_IO -c "open -odata-file.filename=$TEST_IMG.data $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
7576b90e23SKevin Wolf$QEMU_IO -c "open -odata-file.filename=inexistent $TEST_IMG" -c "read -P 0 0 64k" 2>&1 | _filter_qemu_io | _filter_testdir
7676b90e23SKevin Wolf
7776b90e23SKevin Wolfecho
7876b90e23SKevin Wolfecho "=== Conflicting features ==="
7976b90e23SKevin Wolfecho
8076b90e23SKevin Wolf
8176b90e23SKevin Wolfecho "Convert to compressed target with data file:"
8276b90e23SKevin WolfTEST_IMG="$TEST_IMG.src" _make_test_img 64M
8376b90e23SKevin Wolf
8476b90e23SKevin Wolf$QEMU_IO -c 'write -P 0x11 0 1M' \
8576b90e23SKevin Wolf         -f $IMGFMT "$TEST_IMG.src" |
8676b90e23SKevin Wolf         _filter_qemu_io
8776b90e23SKevin Wolf
8876b90e23SKevin Wolf$QEMU_IMG convert -f $IMGFMT -O $IMGFMT -c -odata_file="$TEST_IMG.data" \
8976b90e23SKevin Wolf    "$TEST_IMG.src" "$TEST_IMG"
9076b90e23SKevin Wolf
9176b90e23SKevin Wolfecho
9276b90e23SKevin Wolfecho "Convert uncompressed, then write compressed data manually:"
9376b90e23SKevin Wolf$QEMU_IMG convert -f $IMGFMT -O $IMGFMT -odata_file="$TEST_IMG.data" \
9476b90e23SKevin Wolf    "$TEST_IMG.src" "$TEST_IMG"
9576b90e23SKevin Wolf$QEMU_IMG compare "$TEST_IMG.src" "$TEST_IMG"
9676b90e23SKevin Wolf
9776b90e23SKevin Wolf$QEMU_IO -c 'write -c -P 0x22 0 1M' \
9876b90e23SKevin Wolf         -f $IMGFMT "$TEST_IMG" |
9976b90e23SKevin Wolf         _filter_qemu_io
10076b90e23SKevin Wolf_check_test_img
10176b90e23SKevin Wolf
10276b90e23SKevin Wolfecho
10376b90e23SKevin Wolfecho "Take an internal snapshot:"
10476b90e23SKevin Wolf
10576b90e23SKevin Wolf$QEMU_IMG snapshot -c test "$TEST_IMG"
10676b90e23SKevin Wolf_check_test_img
10776b90e23SKevin Wolf
10876b90e23SKevin Wolfecho
10976b90e23SKevin Wolfecho "=== Standalone image with external data file (efficient) ==="
11076b90e23SKevin Wolfecho
11176b90e23SKevin Wolf
112407fb56aSMax Reitz_make_test_img -o "data_file=$TEST_IMG.data" 64M
11376b90e23SKevin Wolf
11476b90e23SKevin Wolfecho -n "qcow2 file size before I/O: "
11576b90e23SKevin Wolfdu -b $TEST_IMG | cut -f1
11676b90e23SKevin Wolf
11776b90e23SKevin Wolf# Create image with the following layout
11876b90e23SKevin Wolf# 0-1 MB: Unallocated
11976b90e23SKevin Wolf# 1-2 MB: Written (pattern 0x11)
12076b90e23SKevin Wolf# 2-3 MB: Discarded
12176b90e23SKevin Wolf# 3-4 MB: Zero write over discarded space
12276b90e23SKevin Wolf# 4-5 MB: Zero write over written space
12376b90e23SKevin Wolf# 5-6 MB: Zero write over unallocated space
12476b90e23SKevin Wolf
12576b90e23SKevin Wolfecho
12676b90e23SKevin Wolf$QEMU_IO -c 'write -P 0x11 1M 4M' \
12776b90e23SKevin Wolf         -c 'discard 2M 2M' \
12876b90e23SKevin Wolf         -c 'write -z 3M 3M' \
12976b90e23SKevin Wolf         -f $IMGFMT "$TEST_IMG" |
13076b90e23SKevin Wolf         _filter_qemu_io
13176b90e23SKevin Wolf_check_test_img
13276b90e23SKevin Wolf
13376b90e23SKevin Wolfecho
13476b90e23SKevin Wolf$QEMU_IMG map --output=json "$TEST_IMG"
13576b90e23SKevin Wolf
13676b90e23SKevin Wolfecho
13776b90e23SKevin Wolf$QEMU_IO -c 'read -P 0 0 1M' \
13876b90e23SKevin Wolf         -c 'read -P 0x11 1M 1M' \
13976b90e23SKevin Wolf         -c 'read -P 0 2M 4M' \
14076b90e23SKevin Wolf         -f $IMGFMT "$TEST_IMG" |
14176b90e23SKevin Wolf         _filter_qemu_io
14276b90e23SKevin Wolf
14376b90e23SKevin Wolf# Zero clusters are only marked as such in the qcow2 metadata, but contain
14476b90e23SKevin Wolf# stale data in the external data file
14576b90e23SKevin Wolfecho
14676b90e23SKevin Wolf$QEMU_IO -c 'read -P 0 0 1M' \
14776b90e23SKevin Wolf         -c 'read -P 0x11 1M 1M' \
14876b90e23SKevin Wolf         -c 'read -P 0x11 4M 1M' \
14976b90e23SKevin Wolf         -c 'read -P 0 5M 1M' \
15076b90e23SKevin Wolf         -f raw "$TEST_IMG.data" |
15176b90e23SKevin Wolf         _filter_qemu_io
15276b90e23SKevin Wolf
15376b90e23SKevin Wolf
15476b90e23SKevin Wolfecho -n "qcow2 file size after I/O: "
15576b90e23SKevin Wolfdu -b $TEST_IMG | cut -f1
15676b90e23SKevin Wolf
15776b90e23SKevin Wolfecho
15876b90e23SKevin Wolfecho "=== Standalone image with external data file (valid raw) ==="
15976b90e23SKevin Wolfecho
16076b90e23SKevin Wolf
161407fb56aSMax Reitz_make_test_img -o "data_file=$TEST_IMG.data,data_file_raw=on" 64M
16276b90e23SKevin Wolf
16376b90e23SKevin Wolfecho -n "qcow2 file size before I/O: "
16476b90e23SKevin Wolfdu -b $TEST_IMG | cut -f1
16576b90e23SKevin Wolf
16676b90e23SKevin Wolfecho
16776b90e23SKevin Wolf$QEMU_IO -c 'write -P 0x11 1M 4M' \
16876b90e23SKevin Wolf         -c 'discard 2M 2M' \
16976b90e23SKevin Wolf         -c 'write -z 3M 3M' \
17076b90e23SKevin Wolf         -f $IMGFMT "$TEST_IMG" |
17176b90e23SKevin Wolf         _filter_qemu_io
17276b90e23SKevin Wolf_check_test_img
17376b90e23SKevin Wolf
17476b90e23SKevin Wolfecho
17576b90e23SKevin Wolf$QEMU_IMG map --output=json "$TEST_IMG"
17676b90e23SKevin Wolf
17776b90e23SKevin Wolfecho
17876b90e23SKevin Wolf$QEMU_IO -c 'read -P 0 0 1M' \
17976b90e23SKevin Wolf         -c 'read -P 0x11 1M 1M' \
18076b90e23SKevin Wolf         -c 'read -P 0 2M 4M' \
18176b90e23SKevin Wolf         -f $IMGFMT "$TEST_IMG" |
18276b90e23SKevin Wolf         _filter_qemu_io
18376b90e23SKevin Wolf
1843fb61087SPaolo Bonzini# Discarded clusters are only marked as such in the qcow2 metadata, but
1853fb61087SPaolo Bonzini# they can contain stale data in the external data file.  Instead, zero
1863fb61087SPaolo Bonzini# clusters must be zeroed in the external data file too.
18776b90e23SKevin Wolfecho
1883fb61087SPaolo Bonzini$QEMU_IO -c 'read -P 0 0 1M' \
1893fb61087SPaolo Bonzini         -c 'read -P 0x11 1M 1M' \
1903fb61087SPaolo Bonzini         -c 'read -P 0 3M 3M' \
1913fb61087SPaolo Bonzini         -f raw "$TEST_IMG".data |
1923fb61087SPaolo Bonzini         _filter_qemu_io
19376b90e23SKevin Wolf
19476b90e23SKevin Wolfecho -n "qcow2 file size after I/O: "
19576b90e23SKevin Wolfdu -b $TEST_IMG | cut -f1
19676b90e23SKevin Wolf
19776b90e23SKevin Wolfecho
19876b90e23SKevin Wolfecho "=== bdrv_co_block_status test for file and offset=0 ==="
19976b90e23SKevin Wolfecho
20076b90e23SKevin Wolf
201407fb56aSMax Reitz_make_test_img -o "data_file=$TEST_IMG.data" 64M
20276b90e23SKevin Wolf
20376b90e23SKevin Wolf$QEMU_IO -c 'write -P 0x11 0 1M' -f $IMGFMT "$TEST_IMG" | _filter_qemu_io
20476b90e23SKevin Wolf$QEMU_IO -c 'read -P 0x11 0 1M' -f $IMGFMT "$TEST_IMG" | _filter_qemu_io
20576b90e23SKevin Wolf$QEMU_IMG map --output=human "$TEST_IMG" | _filter_testdir
20676b90e23SKevin Wolf$QEMU_IMG map --output=json "$TEST_IMG"
20776b90e23SKevin Wolf
208a0cf8dafSKevin Wolfecho
209a0cf8dafSKevin Wolfecho "=== Copy offloading ==="
210a0cf8dafSKevin Wolfecho
211a0cf8dafSKevin Wolf
212a0cf8dafSKevin Wolf# Make use of copy offloading if the test host can provide it
213a0cf8dafSKevin Wolf_make_test_img -o "data_file=$TEST_IMG.data" 64M
214a0cf8dafSKevin Wolf$QEMU_IMG convert -f $IMGFMT -O $IMGFMT -n -C "$TEST_IMG.src" "$TEST_IMG"
215a0cf8dafSKevin Wolf$QEMU_IMG compare -f $IMGFMT -F $IMGFMT "$TEST_IMG.src" "$TEST_IMG"
216a0cf8dafSKevin Wolf
217a0cf8dafSKevin Wolf# blkdebug doesn't support copy offloading, so this tests the error path
218a0cf8dafSKevin Wolf$QEMU_IMG amend -f $IMGFMT -o "data_file=blkdebug::$TEST_IMG.data" "$TEST_IMG"
219a0cf8dafSKevin Wolf$QEMU_IMG convert -f $IMGFMT -O $IMGFMT -n -C "$TEST_IMG.src" "$TEST_IMG"
220a0cf8dafSKevin Wolf$QEMU_IMG compare -f $IMGFMT -F $IMGFMT "$TEST_IMG.src" "$TEST_IMG"
221a0cf8dafSKevin Wolf
222c365625bSMax Reitzecho
223c365625bSMax Reitzecho "=== Flushing should flush the data file ==="
224c365625bSMax Reitzecho
225c365625bSMax Reitz
226c365625bSMax Reitz# We are going to flush a qcow2 file with a blkdebug node inserted
227c365625bSMax Reitz# between the qcow2 node and its data file node.  The blkdebug node
228c365625bSMax Reitz# will return an error for all flushes and so we if the data file is
229c365625bSMax Reitz# flushed, we will see qemu-io return an error.
230c365625bSMax Reitz
231c365625bSMax Reitz# We need to write something or the flush will not do anything; we
232c365625bSMax Reitz# also need -t writeback so the write is not done as a FUA write
233c365625bSMax Reitz# (which would then fail thanks to the implicit flush)
234c365625bSMax Reitz$QEMU_IO -c 'write 0 512' -c flush \
235c365625bSMax Reitz    -t writeback \
236c365625bSMax Reitz    "json:{
237c365625bSMax Reitz         'driver': 'qcow2',
238c365625bSMax Reitz         'file': {
239c365625bSMax Reitz             'driver': 'file',
240c365625bSMax Reitz             'filename': '$TEST_IMG'
241c365625bSMax Reitz         },
242c365625bSMax Reitz         'data-file': {
243c365625bSMax Reitz             'driver': 'blkdebug',
244c365625bSMax Reitz             'inject-error': [{
245c365625bSMax Reitz                 'event': 'none',
246c365625bSMax Reitz                 'iotype': 'flush'
247c365625bSMax Reitz             }],
248c365625bSMax Reitz             'image': {
249c365625bSMax Reitz                 'driver': 'file',
250c365625bSMax Reitz                 'filename': '$TEST_IMG.data'
251c365625bSMax Reitz             }
252c365625bSMax Reitz         }
253c365625bSMax Reitz     }" \
254c365625bSMax Reitz    | _filter_qemu_io
255c365625bSMax Reitz
256c365625bSMax Reitzresult=${PIPESTATUS[0]}
257c365625bSMax Reitzecho
258c365625bSMax Reitz
259c365625bSMax Reitzcase $result in
260c365625bSMax Reitz    0)
261c365625bSMax Reitz        echo "ERROR: qemu-io succeeded, so the data file was not flushed"
262c365625bSMax Reitz        ;;
263c365625bSMax Reitz    1)
264c365625bSMax Reitz        echo "Success: qemu-io failed, so the data file was flushed"
265c365625bSMax Reitz        ;;
266c365625bSMax Reitz    *)
267c365625bSMax Reitz        echo "ERROR: qemu-io returned unknown exit code $result"
268c365625bSMax Reitz        ;;
269c365625bSMax Reitzesac
270c365625bSMax Reitz
271*2ec7e8a9SMax Reitzecho
272*2ec7e8a9SMax Reitzecho '=== Preallocation with data-file-raw ==='
273*2ec7e8a9SMax Reitz
274*2ec7e8a9SMax Reitzecho
275*2ec7e8a9SMax Reitzecho '--- Using a non-zeroed data file ---'
276*2ec7e8a9SMax Reitz
277*2ec7e8a9SMax Reitz# Using data-file-raw must enforce at least metadata preallocation so
278*2ec7e8a9SMax Reitz# that it does not matter whether one reads the raw file or the qcow2
279*2ec7e8a9SMax Reitz# file
280*2ec7e8a9SMax Reitz
281*2ec7e8a9SMax Reitz# Pre-create the data file, write some data.  Real-world use cases for
282*2ec7e8a9SMax Reitz# this are adding a qcow2 metadata file to a block device (i.e., using
283*2ec7e8a9SMax Reitz# the device as the data file) or adding qcow2 features to pre-existing
284*2ec7e8a9SMax Reitz# raw images (e.g. because the user now wants persistent dirty bitmaps).
285*2ec7e8a9SMax Reitztruncate -s 1M "$TEST_IMG.data"
286*2ec7e8a9SMax Reitz$QEMU_IO -f raw -c 'write -P 42 0 1M' "$TEST_IMG.data" | _filter_qemu_io
287*2ec7e8a9SMax Reitz
288*2ec7e8a9SMax Reitz# We cannot use qemu-img to create the qcow2 image, because it would
289*2ec7e8a9SMax Reitz# clear the data file.  Use the blockdev-create job instead, which will
290*2ec7e8a9SMax Reitz# only format the qcow2 image file.
291*2ec7e8a9SMax Reitztouch "$TEST_IMG"
292*2ec7e8a9SMax Reitz_launch_qemu \
293*2ec7e8a9SMax Reitz    -blockdev file,node-name=data,filename="$TEST_IMG.data" \
294*2ec7e8a9SMax Reitz    -blockdev file,node-name=meta,filename="$TEST_IMG"
295*2ec7e8a9SMax Reitz
296*2ec7e8a9SMax Reitz_send_qemu_cmd $QEMU_HANDLE '{ "execute": "qmp_capabilities" }' 'return'
297*2ec7e8a9SMax Reitz
298*2ec7e8a9SMax Reitz_send_qemu_cmd $QEMU_HANDLE \
299*2ec7e8a9SMax Reitz    '{ "execute": "blockdev-create",
300*2ec7e8a9SMax Reitz       "arguments": {
301*2ec7e8a9SMax Reitz           "job-id": "create",
302*2ec7e8a9SMax Reitz           "options": {
303*2ec7e8a9SMax Reitz               "driver": "qcow2",
304*2ec7e8a9SMax Reitz               "size": '"$((1 * 1024 * 1024))"',
305*2ec7e8a9SMax Reitz               "file": "meta",
306*2ec7e8a9SMax Reitz               "data-file": "data",
307*2ec7e8a9SMax Reitz               "data-file-raw": true
308*2ec7e8a9SMax Reitz           } } }' \
309*2ec7e8a9SMax Reitz    '"status": "concluded"'
310*2ec7e8a9SMax Reitz
311*2ec7e8a9SMax Reitz_send_qemu_cmd $QEMU_HANDLE \
312*2ec7e8a9SMax Reitz    '{ "execute": "job-dismiss", "arguments": { "id": "create" } }' \
313*2ec7e8a9SMax Reitz    'return'
314*2ec7e8a9SMax Reitz
315*2ec7e8a9SMax Reitz_cleanup_qemu
316*2ec7e8a9SMax Reitz
317*2ec7e8a9SMax Reitzecho
318*2ec7e8a9SMax Reitzecho 'Comparing pattern:'
319*2ec7e8a9SMax Reitz
320*2ec7e8a9SMax Reitz# Reading from either the qcow2 file or the data file should return
321*2ec7e8a9SMax Reitz# the same result:
322*2ec7e8a9SMax Reitz$QEMU_IO -f raw -c 'read -P 42 0 1M' "$TEST_IMG.data" | _filter_qemu_io
323*2ec7e8a9SMax Reitz$QEMU_IO -f $IMGFMT -c 'read -P 42 0 1M' "$TEST_IMG" | _filter_qemu_io
324*2ec7e8a9SMax Reitz
325*2ec7e8a9SMax Reitz# For good measure
326*2ec7e8a9SMax Reitz$QEMU_IMG compare -f raw "$TEST_IMG.data" "$TEST_IMG"
327*2ec7e8a9SMax Reitz
328*2ec7e8a9SMax Reitzecho
329*2ec7e8a9SMax Reitzecho '--- Truncation (growing) ---'
330*2ec7e8a9SMax Reitz
331*2ec7e8a9SMax Reitz# Append some new data to the raw file, then resize the qcow2 image
332*2ec7e8a9SMax Reitz# accordingly and see whether the new data is visible.  Technically
333*2ec7e8a9SMax Reitz# that is not allowed, but it is reasonable behavior, so test it.
334*2ec7e8a9SMax Reitztruncate -s 2M "$TEST_IMG.data"
335*2ec7e8a9SMax Reitz$QEMU_IO -f raw -c 'write -P 84 1M 1M' "$TEST_IMG.data" | _filter_qemu_io
336*2ec7e8a9SMax Reitz
337*2ec7e8a9SMax Reitz$QEMU_IMG resize "$TEST_IMG" 2M
338*2ec7e8a9SMax Reitz
339*2ec7e8a9SMax Reitzecho
340*2ec7e8a9SMax Reitzecho 'Comparing pattern:'
341*2ec7e8a9SMax Reitz
342*2ec7e8a9SMax Reitz$QEMU_IO -f raw -c 'read -P 42 0 1M' -c 'read -P 84 1M 1M' "$TEST_IMG.data" \
343*2ec7e8a9SMax Reitz    | _filter_qemu_io
344*2ec7e8a9SMax Reitz$QEMU_IO -f $IMGFMT -c 'read -P 42 0 1M' -c 'read -P 84 1M 1M' "$TEST_IMG" \
345*2ec7e8a9SMax Reitz    | _filter_qemu_io
346*2ec7e8a9SMax Reitz
347*2ec7e8a9SMax Reitz$QEMU_IMG compare -f raw "$TEST_IMG.data" "$TEST_IMG"
348*2ec7e8a9SMax Reitz
349*2ec7e8a9SMax Reitzecho
350*2ec7e8a9SMax Reitzecho '--- Giving a backing file at runtime ---'
351*2ec7e8a9SMax Reitz
352*2ec7e8a9SMax Reitz# qcow2 files with data-file-raw cannot have backing files given by
353*2ec7e8a9SMax Reitz# their image header, but qemu will allow you to set a backing node at
354*2ec7e8a9SMax Reitz# runtime -- it should not have any effect, though (because reading
355*2ec7e8a9SMax Reitz# from the qcow2 node should return the same data as reading from the
356*2ec7e8a9SMax Reitz# raw node).
357*2ec7e8a9SMax Reitz
358*2ec7e8a9SMax Reitz_make_test_img -o "data_file=$TEST_IMG.data,data_file_raw=on" 1M
359*2ec7e8a9SMax ReitzTEST_IMG="$TEST_IMG.base" _make_test_img 1M
360*2ec7e8a9SMax Reitz
361*2ec7e8a9SMax Reitz# Write something that is not zero into the base image
362*2ec7e8a9SMax Reitz$QEMU_IO -c 'write -P 42 0 1M' "$TEST_IMG.base" | _filter_qemu_io
363*2ec7e8a9SMax Reitz
364*2ec7e8a9SMax Reitzecho
365*2ec7e8a9SMax Reitzecho 'Comparing qcow2 image and raw data file:'
366*2ec7e8a9SMax Reitz
367*2ec7e8a9SMax Reitz# $TEST_IMG and $TEST_IMG.data must show the same data at all times;
368*2ec7e8a9SMax Reitz# that is, the qcow2 node must not fall through to the backing image
369*2ec7e8a9SMax Reitz# at any point
370*2ec7e8a9SMax Reitz$QEMU_IMG compare --image-opts \
371*2ec7e8a9SMax Reitz    "driver=raw,file.filename=$TEST_IMG.data"  \
372*2ec7e8a9SMax Reitz    "file.filename=$TEST_IMG,backing.file.filename=$TEST_IMG.base"
373*2ec7e8a9SMax Reitz
37476b90e23SKevin Wolf# success, all done
37576b90e23SKevin Wolfecho "*** done"
37676b90e23SKevin Wolfrm -f $seq.full
37776b90e23SKevin Wolfstatus=0
378