Merge remote-tracking branch 'remotes/maxreitz/tags/pull-block-2019-07-15' into staging
[qemu/ar7.git] / tests / qemu-iotests / 046
blob543355c64f47eff4a5b1f74b9a4079ae15a96ebb
1 #!/usr/bin/env bash
3 # Test concurrent cluster allocations
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 status=1 # failure is the default!
29 _cleanup()
31 _cleanup_test_img
33 trap "_cleanup; exit \$status" 0 1 2 3 15
35 # get standard environment, filters and checks
36 . ./common.rc
37 . ./common.filter
39 _supported_fmt qcow2
40 _supported_proto file
42 CLUSTER_SIZE=64k
43 size=128M
45 echo
46 echo "== creating backing file for COW tests =="
48 _make_test_img $size
50 backing_io()
52 local offset=$1
53 local sectors=$2
54 local op=$3
55 local pattern=0
56 local cur_sec=0
58 for i in $(seq 0 $((sectors - 1))); do
59 cur_sec=$((offset / 65536 + i))
60 pattern=$(( ( (cur_sec % 128) + (cur_sec / 128)) % 128 ))
62 echo "$op -P $pattern $((cur_sec * 64))k 64k"
63 done
66 backing_io 0 32 write | $QEMU_IO "$TEST_IMG" | _filter_qemu_io
68 mv "$TEST_IMG" "$TEST_IMG.base"
70 _make_test_img -b "$TEST_IMG.base" 6G
72 echo
73 echo "== Some concurrent requests touching the same cluster =="
75 overlay_io()
77 # Allocate middle of cluster 1, then write to somewhere before and after it
78 cat <<EOF
79 break write_aio A
80 aio_write -P 10 0x18000 0x2000
81 wait_break A
83 aio_write -P 11 0x12000 0x2000
84 aio_write -P 12 0x1c000 0x2000
86 resume A
87 aio_flush
88 EOF
90 # Sequential write case: Alloc middle of cluster 2, then write overlapping
91 # to next cluster
92 cat <<EOF
93 break write_aio A
94 aio_write -P 20 0x28000 0x2000
95 wait_break A
96 aio_write -P 21 0x2a000 0x10000
97 resume A
98 aio_flush
99 EOF
101 # The same with a gap between both requests
102 cat <<EOF
103 break write_aio A
104 aio_write -P 40 0x48000 0x2000
105 wait_break A
106 aio_write -P 41 0x4c000 0x10000
107 resume A
108 aio_flush
111 # Sequential write, but the next cluster is already allocated
112 cat <<EOF
113 write -P 70 0x76000 0x8000
114 aio_flush
115 break write_aio A
116 aio_write -P 60 0x66000 0x2000
117 wait_break A
118 aio_write -P 61 0x6a000 0xe000
119 resume A
120 aio_flush
123 # Sequential write, but the next cluster is already allocated
124 # and phyiscally in the right position
125 cat <<EOF
126 write -P 89 0x80000 0x1000
127 write -P 90 0x96000 0x8000
128 aio_flush
129 discard 0x80000 0x10000
130 aio_flush
131 break write_aio A
132 aio_write -P 80 0x86000 0x2000
133 wait_break A
134 aio_write -P 81 0x8a000 0xe000
135 resume A
136 aio_flush
139 # Sequential write, and the next cluster is compressed
140 cat <<EOF
141 write -P 109 0xa0000 0x1000
142 write -c -P 110 0xb0000 0x10000
143 aio_flush
144 discard 0xa0000 0x10000
145 aio_flush
146 break write_aio A
147 aio_write -P 100 0xa6000 0x2000
148 wait_break A
149 aio_write -P 101 0xaa000 0xe000
150 resume A
151 aio_flush
154 # Reverse sequential write
155 cat <<EOF
156 break write_aio A
157 aio_write -P 121 0xdc000 0x2000
158 wait_break A
159 aio_write -P 120 0xc4000 0x18000
160 resume A
161 aio_flush
164 # Reverse sequential write with a gap
165 cat <<EOF
166 break write_aio A
167 aio_write -P 141 0xfc000 0x2000
168 wait_break A
169 aio_write -P 140 0xe4000 0x14000
170 resume A
171 aio_flush
174 # Allocate an area in the middle and then overwrite with a larger request
175 cat <<EOF
176 break write_aio A
177 aio_write -P 161 0x10c000 0x8000
178 wait_break A
179 aio_write -P 160 0x104000 0x18000
180 resume A
181 aio_flush
185 overlay_io | $QEMU_IO blkdebug::"$TEST_IMG" | _filter_qemu_io |\
186 sed -e 's/bytes at offset [0-9]*/bytes at offset XXX/g'
188 echo
189 echo "== Verify image content =="
191 verify_io()
193 if ($QEMU_IMG info -U -f "$IMGFMT" "$TEST_IMG" | grep "compat: 0.10" > /dev/null); then
194 # For v2 images, discarded clusters are read from the backing file
195 # Keep the variable empty so that the backing file value can be used as
196 # the default below
197 discarded=
198 else
199 # Discarded clusters are zeroed for v3 or later
200 discarded=0
203 echo read -P 0 0 0x10000
205 echo read -P 1 0x10000 0x2000
206 echo read -P 11 0x12000 0x2000
207 echo read -P 1 0x14000 0x4000
208 echo read -P 10 0x18000 0x2000
209 echo read -P 1 0x1a000 0x2000
210 echo read -P 12 0x1c000 0x2000
211 echo read -P 1 0x1e000 0x2000
213 echo read -P 2 0x20000 0x8000
214 echo read -P 20 0x28000 0x2000
215 echo read -P 21 0x2a000 0x10000
216 echo read -P 3 0x3a000 0x6000
218 echo read -P 4 0x40000 0x8000
219 echo read -P 40 0x48000 0x2000
220 echo read -P 4 0x4a000 0x2000
221 echo read -P 41 0x4c000 0x10000
222 echo read -P 5 0x5c000 0x4000
224 echo read -P 6 0x60000 0x6000
225 echo read -P 60 0x66000 0x2000
226 echo read -P 6 0x68000 0x2000
227 echo read -P 61 0x6a000 0xe000
228 echo read -P 70 0x78000 0x6000
229 echo read -P 7 0x7e000 0x2000
231 echo read -P ${discarded:-8} 0x80000 0x6000
232 echo read -P 80 0x86000 0x2000
233 echo read -P ${discarded:-8} 0x88000 0x2000
234 echo read -P 81 0x8a000 0xe000
235 echo read -P 90 0x98000 0x6000
236 echo read -P 9 0x9e000 0x2000
238 echo read -P ${discarded:-10} 0xa0000 0x6000
239 echo read -P 100 0xa6000 0x2000
240 echo read -P ${discarded:-10} 0xa8000 0x2000
241 echo read -P 101 0xaa000 0xe000
242 echo read -P 110 0xb8000 0x8000
244 echo read -P 12 0xc0000 0x4000
245 echo read -P 120 0xc4000 0x18000
246 echo read -P 121 0xdc000 0x2000
247 echo read -P 13 0xde000 0x2000
249 echo read -P 14 0xe0000 0x4000
250 echo read -P 140 0xe4000 0x14000
251 echo read -P 15 0xf8000 0x4000
252 echo read -P 141 0xfc000 0x2000
253 echo read -P 15 0xfe000 0x2000
255 echo read -P 16 0x100000 0x4000
256 echo read -P 160 0x104000 0x8000
257 # Undefined content for 0x10c000 0x8000
258 echo read -P 160 0x114000 0x8000
259 echo read -P 17 0x11c000 0x4000
262 verify_io | $QEMU_IO "$TEST_IMG" | _filter_qemu_io
264 _check_test_img
266 # success, all done
267 echo "*** done"
268 rm -f $seq.full
269 status=0