2019-03-07 15:58:38 +01:00
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#!/usr/bin/env bash
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2014-10-22 14:09:43 +02:00
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#
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# Test case for repairing qcow2 images which cannot be repaired using
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# the on-disk refcount structures
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#
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# Copyright (C) 2014 Red Hat, Inc.
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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# creator
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owner=mreitz@redhat.com
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seq="$(basename $0)"
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echo "QA output created by $seq"
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status=1 # failure is the default!
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_cleanup()
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{
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_cleanup_test_img
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}
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trap "_cleanup; exit \$status" 0 1 2 3 15
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# get standard environment, filters and checks
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. ./common.rc
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. ./common.filter
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2019-11-07 17:36:47 +01:00
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# This tests qcow2-specific low-level functionality
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2014-10-22 14:09:43 +02:00
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_supported_fmt qcow2
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_supported_proto file
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_supported_os Linux
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2019-11-07 17:37:07 +01:00
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# This test directly modifies a refblock so it relies on refcount_bits being 16;
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# and the low-level modification it performs are not tuned for external data
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# files
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_unsupported_imgopts 'refcount_bits=\([^1]\|.\([^6]\|$\)\)' data_file
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2014-10-22 14:09:43 +02:00
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echo
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echo '=== Repairing an image without any refcount table ==='
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echo
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_make_test_img 64M
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# just write some data
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$QEMU_IO -c 'write -P 42 0 64k' "$TEST_IMG" | _filter_qemu_io
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# refcount_table_offset
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poke_file "$TEST_IMG" $((0x30)) "\x00\x00\x00\x00\x00\x00\x00\x00"
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# refcount_table_clusters
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poke_file "$TEST_IMG" $((0x38)) "\x00\x00\x00\x00"
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_check_test_img -r all
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$QEMU_IO -c 'read -P 42 0 64k' "$TEST_IMG" | _filter_qemu_io
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echo
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echo '=== Repairing unreferenced data cluster in new refblock area ==='
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echo
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2019-11-07 17:36:57 +01:00
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_make_test_img -o 'cluster_size=512' 64M
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2014-10-22 14:09:43 +02:00
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# Allocate the first 128 kB in the image (first refblock)
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$QEMU_IO -c 'write 0 0x1b200' "$TEST_IMG" | _filter_qemu_io
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# should be 131072 == 0x20000
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stat -c '%s' "$TEST_IMG"
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# Enter a cluster at 128 kB (0x20000)
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# XXX: This should be the first free entry in the last L2 table, but we cannot
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# be certain
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poke_file "$TEST_IMG" $((0x1ccc8)) "\x80\x00\x00\x00\x00\x02\x00\x00"
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# Fill the cluster
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truncate -s $((0x20200)) "$TEST_IMG"
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$QEMU_IO -c "open -o driver=raw $TEST_IMG" -c 'write -P 42 128k 512' \
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| _filter_qemu_io
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# The data should now appear at this guest offset
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$QEMU_IO -c 'read -P 42 0x1b200 512' "$TEST_IMG" | _filter_qemu_io
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# This cluster is unallocated; fix it
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_check_test_img -r all
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# This repair operation must have allocated a new refblock; and that refblock
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# should not overlap with the unallocated data cluster. If it does, the data
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# will be damaged, so check it.
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$QEMU_IO -c 'read -P 42 0x1b200 512' "$TEST_IMG" | _filter_qemu_io
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echo
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echo '=== Repairing refblock beyond the image end ==='
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echo
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echo
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echo '--- Otherwise clean ---'
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echo
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_make_test_img 64M
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# Normally, qemu doesn't create empty refblocks, so we just have to do it by
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# hand
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# XXX: This should be the entry for the second refblock
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poke_file "$TEST_IMG" $((0x10008)) "\x00\x00\x00\x00\x00\x10\x00\x00"
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# Mark that refblock as used
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# XXX: This should be the 17th entry (cluster 16) of the first
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# refblock
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poke_file "$TEST_IMG" $((0x20020)) "\x00\x01"
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_check_test_img -r all
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echo
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echo '--- Refblock is unallocated ---'
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echo
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_make_test_img 64M
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poke_file "$TEST_IMG" $((0x10008)) "\x00\x00\x00\x00\x00\x10\x00\x00"
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_check_test_img -r all
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echo
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echo '--- Signed overflow after the refblock ---'
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echo
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_make_test_img 64M
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poke_file "$TEST_IMG" $((0x10008)) "\x7f\xff\xff\xff\xff\xff\x00\x00"
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_check_test_img -r all
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echo
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echo '--- Unsigned overflow after the refblock ---'
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echo
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_make_test_img 64M
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poke_file "$TEST_IMG" $((0x10008)) "\xff\xff\xff\xff\xff\xff\x00\x00"
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_check_test_img -r all
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# success, all done
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echo '*** done'
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rm -f $seq.full
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status=0
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