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#!/bin/sh
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# Copyright (C) 2009 Red Hat, Inc. All rights reserved.
#
# This copyrighted material is made available to anyone wishing to use,
# modify, copy, or redistribute it subject to the terms and conditions
# of the GNU General Public License v.2.
#
# You should have received a copy of the GNU General Public License
# along with this program; if not, write to the Free Software Foundation,
# Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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. lib/inittest
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# skip this test if mdadm or sfdisk (or others) aren't available
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which mdadm || skip
which sfdisk || skip
which perl || skip
which awk || skip
which cut || skip
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test -f /proc/mdstat && grep -q raid0 /proc/mdstat || \
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modprobe raid0 || skip
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aux lvmconf 'devices/md_component_detection = 1'
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aux extend_filter_LVMTEST
aux extend_filter "a|/dev/md.*|"
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aux prepare_devs 2
# Have MD use a non-standard name to avoid colliding with an existing MD device
# - mdadm >= 3.0 requires that non-standard device names be in /dev/md/
# - newer mdadm _completely_ defers to udev to create the associated device node
mdadm_maj = $( mdadm --version 2>& 1 | perl -pi -e 's|.* v(\d+).*|\1|' )
[ $mdadm_maj -ge 3 ] && \
mddev = /dev/md/md_lvm_test0 || \
mddev = /dev/md_lvm_test0
cleanup_md( ) {
# sleeps offer hack to defeat: 'md: md127 still in use'
# see: https://bugzilla.redhat.com/show_bug.cgi?id=509908#c25
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aux udev_wait
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mdadm --stop " $mddev " || true
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aux udev_wait
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if [ -b " $mddev " ] ; then
# mdadm doesn't always cleanup the device node
sleep 2
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rm -f " $mddev "
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fi
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}
cleanup_md_and_teardown( ) {
cleanup_md
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aux teardown
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}
# create 2 disk MD raid0 array (stripe_width=128K)
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test -b " $mddev " && skip
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mdadm --create --metadata= 1.0 " $mddev " --auto= md --level 0 --raid-devices= 2 --chunk 64 " $dev1 " " $dev2 "
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trap 'cleanup_md_and_teardown' EXIT # cleanup this MD device at the end of the test
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test -b " $mddev " || skip
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cp -LR " $mddev " " $DM_DEV_DIR " # so that LVM/DM can see the device
lvmdev = " $DM_DEV_DIR /md_lvm_test0 "
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# Test alignment of PV on MD without any MD-aware or topology-aware detection
# - should treat $mddev just like any other block device
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pv_align = "1.00m"
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pvcreate --metadatasize 128k \
--config 'devices {md_chunk_alignment=0 data_alignment_detection=0 data_alignment_offset_detection=0}' \
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" $lvmdev "
check pv_field " $lvmdev " pe_start $pv_align
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# Test md_chunk_alignment independent of topology-aware detection
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pv_align = "1.00m"
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pvcreate --metadatasize 128k \
--config 'devices {data_alignment_detection=0 data_alignment_offset_detection=0}' \
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" $lvmdev "
check pv_field " $lvmdev " pe_start $pv_align
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# Test newer topology-aware alignment detection
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# - first added to 2.6.31 but not "reliable" until 2.6.33
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if kernel_at_least 2 6 33 ; then
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pv_align = "1.00m"
# optimal_io_size=131072, minimum_io_size=65536
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pvcreate --metadatasize 128k \
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--config 'devices { md_chunk_alignment=0 }' " $lvmdev "
check pv_field " $lvmdev " pe_start $pv_align
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fi
# partition MD array directly, depends on blkext in Linux >= 2.6.28
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if kernel_at_least 2 6 28 ; then
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# create one partition
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sfdisk " $mddev " <<EOF
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,,83
EOF
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pvscan
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# make sure partition on MD is _not_ removed
# - tests partition -> parent lookup via sysfs paths
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not pvcreate --metadatasize 128k " $lvmdev "
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# verify alignment_offset is accounted for in pe_start
# - topology infrastructure is available in Linux >= 2.6.31
# - also tests partition -> parent lookup via sysfs paths
# Oh joy: need to lookup /sys/block/md127 rather than /sys/block/md_lvm_test0
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mddev_maj_min = $( ls -lL " $mddev " | awk '{ print $5 $6 }' | perl -pi -e 's|,|:|' )
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mddev_p_sysfs_name = $( echo /sys/dev/block/${ mddev_maj_min } /*p1)
base_mddev_p = ` basename $mddev_p_sysfs_name `
mddev_p = /dev/${ base_mddev_p }
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# in case the system is running without devtmpfs /dev
# wait here for created device node on tmpfs
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aux udev_wait " $mddev_p "
test -b " $mddev_p " || skip
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cp -LR " $mddev_p " " $DM_DEV_DIR "
lvmdev_p = " $DM_DEV_DIR / $base_mddev_p "
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# Checking for 'alignment_offset' in sysfs implies Linux >= 2.6.31
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# but reliable alignment_offset support requires kernel.org Linux >= 2.6.33
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sysfs_alignment_offset = /sys/dev/block/${ mddev_maj_min } /${ base_mddev_p } /alignment_offset
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[ -f $sysfs_alignment_offset ] && kernel_at_least 2 6 33 && \
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alignment_offset = ` cat $sysfs_alignment_offset ` || \
alignment_offset = 0
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if [ $alignment_offset -gt 0 ] ; then
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# default alignment is 1M, add alignment_offset
pv_align = $(( 1048576 + $alignment_offset )) B
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pvcreate --metadatasize 128k " $lvmdev_p "
check pv_field " $lvmdev_p " pe_start $pv_align --units b
pvremove " $lvmdev_p "
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fi
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fi
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# Test newer topology-aware alignment detection w/ --dataalignment override
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if kernel_at_least 2 6 33 ; then
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cleanup_md
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pvcreate -f " $dev1 "
pvcreate -f " $dev2 "
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# create 2 disk MD raid0 array (stripe_width=2M)
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test -b " $mddev " && skip
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mdadm --create --metadata= 1.0 " $mddev " --auto= md --level 0 --raid-devices= 2 --chunk 1024 " $dev1 " " $dev2 "
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test -b " $mddev " || skip
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# optimal_io_size=2097152, minimum_io_size=1048576
pv_align = "2.00m"
pvcreate --metadatasize 128k \
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--config 'devices { md_chunk_alignment=0 }' " $lvmdev "
pvscan # Something is seriously broken.
check pv_field " $lvmdev " pe_start $pv_align
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# now verify pe_start alignment override using --dataalignment
pv_align = "192.00k"
pvcreate --dataalignment 64k --metadatasize 128k \
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--config 'devices { md_chunk_alignment=0 }' " $lvmdev "
check pv_field " $lvmdev " pe_start $pv_align
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fi