target-ppc: Rework storage of VPA registration state
[qemu/opensuse.git] / tests / qemu-iotests / 037
blobc11460b92f17c1c14473bf18430976645fd629e6
1 #!/bin/bash
3 # Test COW from backing files
5 # Copyright (C) 2012 Red Hat, Inc.
7 # This program is free software; you can redistribute it and/or modify
8 # it under the terms of the GNU General Public License as published by
9 # the Free Software Foundation; either version 2 of the License, or
10 # (at your option) any later version.
12 # This program is distributed in the hope that it will be useful,
13 # but WITHOUT ANY WARRANTY; without even the implied warranty of
14 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 # GNU General Public License for more details.
17 # You should have received a copy of the GNU General Public License
18 # along with this program. If not, see <http://www.gnu.org/licenses/>.
21 # creator
22 owner=kwolf@redhat.com
24 seq=`basename $0`
25 echo "QA output created by $seq"
27 here=`pwd`
28 tmp=/tmp/$$
29 status=1 # failure is the default!
31 _cleanup()
33 _cleanup_test_img
35 trap "_cleanup; exit \$status" 0 1 2 3 15
37 # get standard environment, filters and checks
38 . ./common.rc
39 . ./common.filter
41 _supported_fmt qcow qcow2 vmdk qed
42 _supported_proto generic
43 _supported_os Linux
45 CLUSTER_SIZE=4k
46 size=128M
48 echo
49 echo "== creating backing file for COW tests =="
51 _make_test_img $size
53 function backing_io()
55 local offset=$1
56 local sectors=$2
57 local op=$3
58 local pattern=0
59 local cur_sec=0
61 for i in $(seq 0 $((sectors - 1))); do
62 cur_sec=$((offset / 512 + i))
63 pattern=$(( ( (cur_sec % 256) + (cur_sec / 256)) % 256 ))
65 echo "$op -P $pattern $((cur_sec * 512)) 512"
66 done
69 backing_io 0 256 write | $QEMU_IO $TEST_IMG | _filter_qemu_io
71 mv $TEST_IMG $TEST_IMG.base
73 _make_test_img -b $TEST_IMG.base 6G
75 echo
76 echo "== COW in a single cluster =="
77 $QEMU_IO -c "write -P 0x77 0 2k" $TEST_IMG | _filter_qemu_io
78 $QEMU_IO -c "write -P 0x88 6k 2k" $TEST_IMG | _filter_qemu_io
79 $QEMU_IO -c "write -P 0x99 9k 2k" $TEST_IMG | _filter_qemu_io
81 $QEMU_IO -c "read -P 0x77 0 2k" $TEST_IMG | _filter_qemu_io
82 backing_io $((2 * 1024)) 8 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
83 $QEMU_IO -c "read -P 0x88 6k 2k" $TEST_IMG | _filter_qemu_io
84 backing_io $((8 * 1024)) 2 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
85 $QEMU_IO -c "read -P 0x99 9k 2k" $TEST_IMG | _filter_qemu_io
86 backing_io $((11 * 1024)) 2 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
88 echo
89 echo "== COW in two-cluster allocations =="
90 $QEMU_IO -c "write -P 0x77 16k 6k" $TEST_IMG | _filter_qemu_io
91 $QEMU_IO -c "write -P 0x88 26k 6k" $TEST_IMG | _filter_qemu_io
92 $QEMU_IO -c "write -P 0x99 33k 5k" $TEST_IMG | _filter_qemu_io
94 $QEMU_IO -c "read -P 0x77 16k 6k" $TEST_IMG | _filter_qemu_io
95 backing_io $((22 * 1024)) 8 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
96 $QEMU_IO -c "read -P 0x88 26k 6k" $TEST_IMG | _filter_qemu_io
97 backing_io $((32 * 1024)) 2 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
98 $QEMU_IO -c "read -P 0x99 33k 5k" $TEST_IMG | _filter_qemu_io
99 backing_io $((38 * 1024)) 4 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
101 echo
102 echo "== COW in multi-cluster allocations =="
103 $QEMU_IO -c "write -P 0x77 48k 15k" $TEST_IMG | _filter_qemu_io
104 $QEMU_IO -c "write -P 0x88 66k 14k" $TEST_IMG | _filter_qemu_io
105 $QEMU_IO -c "write -P 0x99 83k 15k" $TEST_IMG | _filter_qemu_io
107 $QEMU_IO -c "read -P 0x77 48k 15k" $TEST_IMG | _filter_qemu_io
108 backing_io $((63 * 1024)) 6 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
109 $QEMU_IO -c "read -P 0x88 66k 14k" $TEST_IMG | _filter_qemu_io
110 backing_io $((80 * 1024)) 6 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
111 $QEMU_IO -c "read -P 0x99 83k 15k" $TEST_IMG | _filter_qemu_io
112 backing_io $((98 * 1024)) 4 read | $QEMU_IO $TEST_IMG | _filter_qemu_io
114 _check_test_img
116 # success, all done
117 echo "*** done"
118 rm -f $seq.full
119 status=0