target/arm: Handle SVE registers when using clear_vec_high
[qemu/ar7.git] / tests / qemu-iotests / 060
blob6c7407f499fae5f89f44e7e26f1f6b8cc44e7612
1 #!/bin/bash
3 # Test case for image corruption (overlapping data structures) in qcow2
5 # Copyright (C) 2013 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=mreitz@redhat.com
24 seq="$(basename $0)"
25 echo "QA output created by $seq"
27 here="$PWD"
28 status=1 # failure is the default!
30 _cleanup()
32 _cleanup_test_img
34 trap "_cleanup; exit \$status" 0 1 2 3 15
36 # get standard environment, filters and checks
37 . ./common.rc
38 . ./common.filter
40 # This tests qocw2-specific low-level functionality
41 _supported_fmt qcow2
42 _supported_proto file
43 _supported_os Linux
45 rt_offset=65536 # 0x10000 (XXX: just an assumption)
46 rb_offset=131072 # 0x20000 (XXX: just an assumption)
47 l1_offset=196608 # 0x30000 (XXX: just an assumption)
48 l2_offset=262144 # 0x40000 (XXX: just an assumption)
49 l2_offset_after_snapshot=524288 # 0x80000 (XXX: just an assumption)
51 IMGOPTS="compat=1.1"
53 OPEN_RW="open -o overlap-check=all $TEST_IMG"
54 # Overlap checks are done before write operations only, therefore opening an
55 # image read-only makes the overlap-check option irrelevant
56 OPEN_RO="open -r $TEST_IMG"
58 echo
59 echo "=== Testing L2 reference into L1 ==="
60 echo
61 _make_test_img 64M
62 # Link first L1 entry (first L2 table) onto itself
63 # (Note the MSb in the L1 entry is set, ensuring the refcount is one - else any
64 # later write will result in a COW operation, effectively ruining this attempt
65 # on image corruption)
66 poke_file "$TEST_IMG" "$l1_offset" "\x80\x00\x00\x00\x00\x03\x00\x00"
67 _check_test_img
69 # The corrupt bit should not be set anyway
70 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
72 # Try to write something, thereby forcing the corrupt bit to be set
73 $QEMU_IO -c "$OPEN_RW" -c "write -P 0x2a 0 512" | _filter_qemu_io
75 # The corrupt bit must now be set
76 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
78 # This information should be available through qemu-img info
79 _img_info --format-specific
81 # Try to open the image R/W (which should fail)
82 $QEMU_IO -c "$OPEN_RW" -c "read 0 512" 2>&1 | _filter_qemu_io \
83 | _filter_testdir \
84 | _filter_imgfmt
86 # Try to open it RO (which should succeed)
87 $QEMU_IO -c "$OPEN_RO" -c "read 0 512" | _filter_qemu_io
89 # We could now try to fix the image, but this would probably fail (how should an
90 # L2 table linked onto the L1 table be fixed?)
92 echo
93 echo "=== Testing cluster data reference into refcount block ==="
94 echo
95 _make_test_img 64M
96 # Allocate L2 table
97 truncate -s "$(($l2_offset+65536))" "$TEST_IMG"
98 poke_file "$TEST_IMG" "$l1_offset" "\x80\x00\x00\x00\x00\x04\x00\x00"
99 # Mark cluster as used
100 poke_file "$TEST_IMG" "$(($rb_offset+8))" "\x00\x01"
101 # Redirect new data cluster onto refcount block
102 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x02\x00\x00"
103 _check_test_img
104 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
105 $QEMU_IO -c "$OPEN_RW" -c "write -P 0x2a 0 512" | _filter_qemu_io
106 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
108 # Try to fix it
109 _check_test_img -r all
111 # The corrupt bit should be cleared
112 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
114 # Look if it's really really fixed
115 $QEMU_IO -c "$OPEN_RW" -c "write -P 0x2a 0 512" | _filter_qemu_io
116 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
118 echo
119 echo "=== Testing cluster data reference into inactive L2 table ==="
120 echo
121 _make_test_img 64M
122 $QEMU_IO -c "$OPEN_RW" -c "write -P 1 0 512" | _filter_qemu_io
123 $QEMU_IMG snapshot -c foo "$TEST_IMG"
124 $QEMU_IO -c "$OPEN_RW" -c "write -P 2 0 512" | _filter_qemu_io
125 # The inactive L2 table remains at its old offset
126 poke_file "$TEST_IMG" "$l2_offset_after_snapshot" \
127 "\x80\x00\x00\x00\x00\x04\x00\x00"
128 _check_test_img
129 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
130 $QEMU_IO -c "$OPEN_RW" -c "write -P 3 0 512" | _filter_qemu_io
131 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
132 _check_test_img -r all
133 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
134 $QEMU_IO -c "$OPEN_RW" -c "write -P 4 0 512" | _filter_qemu_io
135 $PYTHON qcow2.py "$TEST_IMG" dump-header | grep incompatible_features
137 # Check data
138 $QEMU_IO -c "$OPEN_RO" -c "read -P 4 0 512" | _filter_qemu_io
139 $QEMU_IMG snapshot -a foo "$TEST_IMG"
140 _check_test_img
141 $QEMU_IO -c "$OPEN_RO" -c "read -P 1 0 512" | _filter_qemu_io
143 echo
144 echo "=== Testing overlap while COW is in flight ==="
145 echo
146 # compat=0.10 is required in order to make the following discard actually
147 # unallocate the sector rather than make it a zero sector - we want COW, after
148 # all.
149 IMGOPTS='compat=0.10' _make_test_img 1G
150 # Write two clusters, the second one enforces creation of an L2 table after
151 # the first data cluster.
152 $QEMU_IO -c 'write 0k 64k' -c 'write 512M 64k' "$TEST_IMG" | _filter_qemu_io
153 # Discard the first cluster. This cluster will soon enough be reallocated and
154 # used for COW.
155 $QEMU_IO -c 'discard 0k 64k' "$TEST_IMG" | _filter_qemu_io
156 # Now, corrupt the image by marking the second L2 table cluster as free.
157 poke_file "$TEST_IMG" '131084' "\x00\x00" # 0x2000c
158 # Start a write operation requiring COW on the image stopping it right before
159 # doing the read; then, trigger the corruption prevention by writing anything to
160 # any unallocated cluster, leading to an attempt to overwrite the second L2
161 # table. Finally, resume the COW write and see it fail (but not crash).
162 echo "open -o file.driver=blkdebug $TEST_IMG
163 break cow_read 0
164 aio_write 0k 1k
165 wait_break 0
166 write 64k 64k
167 resume 0" | $QEMU_IO | _filter_qemu_io
169 echo
170 echo "=== Testing unallocated image header ==="
171 echo
172 _make_test_img 64M
173 # Create L1/L2
174 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
175 poke_file "$TEST_IMG" "$rb_offset" "\x00\x00"
176 $QEMU_IO -c "write 64k 64k" "$TEST_IMG" | _filter_qemu_io
178 echo
179 echo "=== Testing unaligned L1 entry ==="
180 echo
181 _make_test_img 64M
182 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
183 # This will be masked with ~(512 - 1) = ~0x1ff, so whether the lower 9 bits are
184 # aligned or not does not matter
185 poke_file "$TEST_IMG" "$l1_offset" "\x80\x00\x00\x00\x00\x04\x2a\x00"
186 $QEMU_IO -c "read 0 64k" "$TEST_IMG" | _filter_qemu_io
188 # Test how well zero cluster expansion can cope with this
189 _make_test_img 64M
190 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
191 poke_file "$TEST_IMG" "$l1_offset" "\x80\x00\x00\x00\x00\x04\x2a\x00"
192 $QEMU_IMG amend -o compat=0.10 "$TEST_IMG"
194 echo
195 echo "=== Testing unaligned L2 entry ==="
196 echo
197 _make_test_img 64M
198 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
199 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x05\x2a\x00"
200 $QEMU_IO -c "read 0 64k" "$TEST_IMG" | _filter_qemu_io
202 echo
203 echo "=== Testing unaligned pre-allocated zero cluster ==="
204 echo
205 _make_test_img 64M
206 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
207 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x05\x2a\x01"
208 # zero cluster expansion
209 $QEMU_IMG amend -o compat=0.10 "$TEST_IMG"
211 echo
212 echo "=== Testing unaligned reftable entry ==="
213 echo
214 _make_test_img 64M
215 poke_file "$TEST_IMG" "$rt_offset" "\x00\x00\x00\x00\x00\x02\x2a\x00"
216 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
218 echo
219 echo "=== Testing non-fatal corruption on freeing ==="
220 echo
221 _make_test_img 64M
222 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
223 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x05\x2a\x00"
224 $QEMU_IO -c "discard 0 64k" "$TEST_IMG" | _filter_qemu_io
226 echo
227 echo "=== Testing read-only corruption report ==="
228 echo
229 _make_test_img 64M
230 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
231 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x05\x2a\x00"
232 # Should only emit a single error message
233 $QEMU_IO -c "$OPEN_RO" -c "read 0 64k" -c "read 0 64k" | _filter_qemu_io
235 echo
236 echo "=== Testing non-fatal and then fatal corruption report ==="
237 echo
238 _make_test_img 64M
239 $QEMU_IO -c "write 0 128k" "$TEST_IMG" | _filter_qemu_io
240 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x05\x2a\x00"
241 poke_file "$TEST_IMG" "$(($l2_offset+8))" "\x80\x00\x00\x00\x00\x06\x2a\x00"
242 # Should emit two error messages
243 $QEMU_IO -c "discard 0 64k" -c "read 64k 64k" "$TEST_IMG" | _filter_qemu_io
245 echo
246 echo "=== Testing empty refcount table ==="
247 echo
248 _make_test_img 64M
249 poke_file "$TEST_IMG" "$rt_offset" "\x00\x00\x00\x00\x00\x00\x00\x00"
250 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
251 # Repair the image
252 _check_test_img -r all
254 echo
255 echo "=== Testing empty refcount table with valid L1 and L2 tables ==="
256 echo
257 _make_test_img 64M
258 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
259 poke_file "$TEST_IMG" "$rt_offset" "\x00\x00\x00\x00\x00\x00\x00\x00"
260 # Since the first data cluster is already allocated this triggers an
261 # allocation with an explicit offset (using qcow2_alloc_clusters_at())
262 # causing a refcount block to be allocated at offset 0
263 $QEMU_IO -c "write 0 128k" "$TEST_IMG" | _filter_qemu_io
264 # Repair the image
265 _check_test_img -r all
267 echo
268 echo "=== Testing empty refcount block ==="
269 echo
270 _make_test_img 64M
271 poke_file "$TEST_IMG" "$rb_offset" "\x00\x00\x00\x00\x00\x00\x00\x00"
272 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
273 # Repair the image
274 _check_test_img -r all
276 echo
277 echo "=== Testing empty refcount block with compressed write ==="
278 echo
279 _make_test_img 64M
280 $QEMU_IO -c "write 64k 64k" "$TEST_IMG" | _filter_qemu_io
281 poke_file "$TEST_IMG" "$rb_offset" "\x00\x00\x00\x00\x00\x00\x00\x00"
282 # The previous write already allocated an L2 table, so now this new
283 # write will try to allocate a compressed data cluster at offset 0.
284 $QEMU_IO -c "write -c 0k 64k" "$TEST_IMG" | _filter_qemu_io
285 # Repair the image
286 _check_test_img -r all
288 echo
289 echo "=== Testing zero refcount table size ==="
290 echo
291 _make_test_img 64M
292 poke_file "$TEST_IMG" "56" "\x00\x00\x00\x00"
293 $QEMU_IO -c "write 0 64k" "$TEST_IMG" 2>&1 | _filter_testdir | _filter_imgfmt
294 # Repair the image
295 _check_test_img -r all
297 echo
298 echo "=== Testing incorrect refcount table offset ==="
299 echo
300 _make_test_img 64M
301 poke_file "$TEST_IMG" "48" "\x00\x00\x00\x00\x00\x00\x00\x00"
302 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
304 echo
305 echo "=== Testing dirty corrupt image ==="
306 echo
308 _make_test_img 64M
310 # Let the refblock appear unaligned
311 poke_file "$TEST_IMG" "$rt_offset" "\x00\x00\x00\x00\xff\xff\x2a\x00"
312 # Mark the image dirty, thus forcing an automatic check when opening it
313 poke_file "$TEST_IMG" 72 "\x00\x00\x00\x00\x00\x00\x00\x01"
314 # Open the image (qemu should refuse to do so)
315 $QEMU_IO -c close "$TEST_IMG" 2>&1 | _filter_testdir | _filter_imgfmt
317 echo '--- Repairing ---'
319 # The actual repair should have happened (because of the dirty bit),
320 # but some cleanup may have failed (like freeing the old reftable)
321 # because the image was already marked corrupt by that point
322 _check_test_img -r all
324 echo
325 echo "=== Writing to an unaligned preallocated zero cluster ==="
326 echo
328 _make_test_img 64M
330 # Allocate the L2 table
331 $QEMU_IO -c "write 0 64k" -c "discard 0 64k" "$TEST_IMG" | _filter_qemu_io
332 # Pretend there is a preallocated zero cluster somewhere inside the
333 # image header
334 poke_file "$TEST_IMG" "$l2_offset" "\x80\x00\x00\x00\x00\x00\x2a\x01"
335 # Let's write to it!
336 $QEMU_IO -c "write 0 64k" "$TEST_IMG" | _filter_qemu_io
338 echo '--- Repairing ---'
339 _check_test_img -r all
341 echo
342 echo '=== Discarding with an unaligned refblock ==='
343 echo
345 _make_test_img 64M
347 $QEMU_IO -c "write 0 128k" "$TEST_IMG" | _filter_qemu_io
348 # Make our refblock unaligned
349 poke_file "$TEST_IMG" "$(($rt_offset))" "\x00\x00\x00\x00\x00\x00\x2a\x00"
350 # Now try to discard something that will be submitted as two requests
351 # (main part + tail)
352 $QEMU_IO -c "discard 0 65537" "$TEST_IMG"
354 echo '--- Repairing ---'
355 # Fails the first repair because the corruption prevents the check
356 # function from double-checking
357 # (Using -q for the first invocation, because otherwise the
358 # double-check error message appears above the summary for some
359 # reason -- so let's just hide the summary)
360 _check_test_img -q -r all
361 _check_test_img -r all
363 echo
364 echo "=== Discarding an out-of-bounds refblock ==="
365 echo
367 _make_test_img 64M
369 # Pretend there's a refblock really up high
370 poke_file "$TEST_IMG" "$(($rt_offset+8))" "\x00\xff\xff\xff\x00\x00\x00\x00"
371 # Let's try to shrink the qcow2 image so that the block driver tries
372 # to discard that refblock (and see what happens!)
373 $QEMU_IMG resize --shrink "$TEST_IMG" 32M
375 echo '--- Checking and retrying ---'
376 # Image should not be resized
377 _img_info | grep 'virtual size'
378 # But it should pass this check, because the "partial" resize has
379 # already overwritten refblocks past the end
380 _check_test_img -r all
381 # So let's try again
382 $QEMU_IMG resize --shrink "$TEST_IMG" 32M
383 _img_info | grep 'virtual size'
385 echo
386 echo "=== Discarding a non-covered in-bounds refblock ==="
387 echo
389 IMGOPTS='refcount_bits=1' _make_test_img 64M
391 # Pretend there's a refblock somewhere where there is no refblock to
392 # cover it (but the covering refblock has a valid index in the
393 # reftable)
394 # Every refblock covers 65536 * 8 * 65536 = 32 GB, so we have to point
395 # to 0x10_0000_0000 (64G) to point to the third refblock
396 poke_file "$TEST_IMG" "$(($rt_offset+8))" "\x00\x00\x00\x10\x00\x00\x00\x00"
397 $QEMU_IMG resize --shrink "$TEST_IMG" 32M
399 echo '--- Checking and retrying ---'
400 # Image should not be resized
401 _img_info | grep 'virtual size'
402 # But it should pass this check, because the "partial" resize has
403 # already overwritten refblocks past the end
404 _check_test_img -r all
405 # So let's try again
406 $QEMU_IMG resize --shrink "$TEST_IMG" 32M
407 _img_info | grep 'virtual size'
409 echo
410 echo "=== Discarding a refblock covered by an unaligned refblock ==="
411 echo
413 IMGOPTS='refcount_bits=1' _make_test_img 64M
415 # Same as above
416 poke_file "$TEST_IMG" "$(($rt_offset+8))" "\x00\x00\x00\x10\x00\x00\x00\x00"
417 # But now we actually "create" an unaligned third refblock
418 poke_file "$TEST_IMG" "$(($rt_offset+16))" "\x00\x00\x00\x00\x00\x00\x02\x00"
419 $QEMU_IMG resize --shrink "$TEST_IMG" 32M
421 echo '--- Repairing ---'
422 # Fails the first repair because the corruption prevents the check
423 # function from double-checking
424 # (Using -q for the first invocation, because otherwise the
425 # double-check error message appears above the summary for some
426 # reason -- so let's just hide the summary)
427 _check_test_img -q -r all
428 _check_test_img -r all
430 echo
431 echo "=== Testing the QEMU shutdown with a corrupted image ==="
432 echo
433 _make_test_img 64M
434 poke_file "$TEST_IMG" "$rt_offset" "\x00\x00\x00\x00\x00\x00\x00\x00"
435 echo "{'execute': 'qmp_capabilities'}
436 {'execute': 'human-monitor-command',
437 'arguments': {'command-line': 'qemu-io drive \"write 0 512\"'}}
438 {'execute': 'quit'}" \
439 | $QEMU -qmp stdio -nographic -nodefaults \
440 -drive if=none,node-name=drive,file="$TEST_IMG",driver=qcow2 \
441 | _filter_qmp | _filter_qemu_io
443 # success, all done
444 echo "*** done"
445 rm -f $seq.full
446 status=0