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Look not only for whole 64byte sequence,
but seek also 32byte, 16byte and 8byte parts of the
key.
Currently to pass memcpy ZMM problems add possible
workaround in the form of GLIBC_TUNABLES setting.
Avoid using 'lvs' from 'get' shell - as that would wait until
whole group of processes is finished.
TODO: rethink what would be the point of starting 'dmeventd' with lvs.
It seems to break some rules.
Detect also presence of 'vdoformat' tool.
Fallback to 'kvdo' modprobe only when dm-vdo fails
(removed ugly error message from log)
Also add extra check for scsi model being present
so the test can wait a bit if 'scsi_debug' takes longer time.
No need for 'aux' within aux.
Let's move proc into include/configure.h so this define can
be easily used across the source base.
Configure defines it - but ATM we do not provide any configure
option to change it - there should be no need to ever change it.
Handle the case, where we 'kill -9' running dmeventd,
and restarting 'dmeventd -R' manages to still contact this
'zombie' damone and manages to get list of monitored devices
out of this and eventually 'run' new and in this case
unexpected instance of dmeventd.
Some test do expect event_activation to be set.
So add explicit configuring of this setting in tests,
but also add new default which kind of does it globally
as it's expected default (yet our testing rpms might
be create with disabled event_activation)
By adding this to each test individually - it's now easy
to locate such tests...
Occasionally this test fails as soemtimes UUID actually
may constain LV[d] string causing it to grep mismatch
UUID and LV name and eventually fail test for wrong reason.
As a simple workaround print the LV name first and
check the name is followed by a space character.
Parse timestamps included in kernel kmsg line and add current system
time to the messsage as well - this makes it easier to look over,
when chasing some messages in journal after some time...
Reduce #lv and intervals.
We are trying to ensure that the daemon stops while it's busy processing
its internal queues. Decrease the number of LVs and intervals to allow
this test to complete in less time.
Here we actually need to slowdown only $dev2 - since repair operation
is only reading data from this device and compares it with origin $dev1,
and if they match there is no write...