An allocator of integers that allows for changing the range.
Previously allocated numbers are not lost, and can be
released later even if they have fallen outside of the range.
Signed-off-by: Michael Adam <obnox@redhat.com>
Automatic merge from submit-queue
Add `clusterid`, an optional parameter to storageclass.
At present, admin doesn't have the privilege to chose the
trusted storage pool from which persistent gluster volume
has to be provided.
This patch introduce a new storage class parameter which allows
the admin to specify storage pool/cluster if required.
Signed-off-by: Humble Chirammal <hchiramm@redhat.com>
trusted storage pool from which persistent gluster volume
has to be provided.
This patch introduce a new storage class parameter which allows
the admin to specify storage pool/cluster if required.
Signed-off-by: Humble Chirammal <hchiramm@redhat.com>
Automatic merge from submit-queue
Make a consistent name ( GlusterFS instead of Gluster) in variables a…
Signed-off-by: Humble Chirammal hchiramm@redhat.com
Automatic merge from submit-queue
Remove stale volumes if endpoint/svc creation fails.
Remove stale volumes if endpoint/svc creation fails.
Signed-off-by: Humble Chirammal hchiramm@redhat.com
Don't store Gluster SotrageClass parameters in annotations, it's insecure.
Instead, expect that there is the StorageClass available at the time
when it's needed by Gluster deleter.
Gluster provisioner is interested in pvc.Namespace and I don't want to add
at as a new field in VolumeOptions - it would contain almost whole PVC.
Let's pass direct reference to PVC instead and let the provisioner to pick
information it is interested in.
At present, provisioner creates Distribute Volume and this patch
change the default volume type to Distribute-Replica(3) volume.
Signed-off-by: Humble Chirammal <hchiramm@redhat.com>
Automatic merge from submit-queue
Add volume reconstruct/cleanup logic in kubelet volume manager
Currently kubelet volume management works on the concept of desired
and actual world of states. The volume manager periodically compares the
two worlds and perform volume mount/unmount and/or attach/detach
operations. When kubelet restarts, the cache of those two worlds are
gone. Although desired world can be recovered through apiserver, actual
world can not be recovered which may cause some volumes cannot be cleaned
up if their information is deleted by apiserver. This change adds the
reconstruction of the actual world by reading the pod directories from
disk. The reconstructed volume information is added to both desired
world and actual world if it cannot be found in either world. The rest
logic would be as same as before, desired world populator may clean up
the volume entry if it is no longer in apiserver, and then volume
manager should invoke unmount to clean it up.
Fixes https://github.com/kubernetes/kubernetes/issues/27653
Currently kubelet volume management works on the concept of desired
and actual world of states. The volume manager periodically compares the
two worlds and perform volume mount/unmount and/or attach/detach
operations. When kubelet restarts, the cache of those two worlds are
gone. Although desired world can be recovered through apiserver, actual
world can not be recovered which may cause some volumes cannot be cleaned
up if their information is deleted by apiserver. This change adds the
reconstruction of the actual world by reading the pod directories from
disk. The reconstructed volume information is added to both desired
world and actual world if it cannot be found in either world. The rest
logic would be as same as before, desired world populator may clean up
the volume entry if it is no longer in apiserver, and then volume
manager should invoke unmount to clean it up.
Fake clientset no longer needs to be prepopulated with records: keeping
them in leads to the name conflict on creates. Also, since fake
clientset now respects namespaces, we need to correctly populate them.
This commit adds a new volume manager in kubelet that synchronizes
volume mount/unmount (and attach/detach, if attach/detach controller
is not enabled).
This eliminates the race conditions between the pod creation loop
and the orphaned volumes loops. It also removes the unmount/detach
from the `syncPod()` path so volume clean up never blocks the
`syncPod` loop.