The cluster info is important context for the cluster controller to
create the cluster, and all the fields must be properly set.
A test cluster name was being set temporarily, resulting in
mons incorrectly getting the wrong cluster CR name. There is no
known issue from the temporary value, it was just exposed by
https://github.com/rook/rook/pull/8678 setting the value to a label.
Now the functions are more clearly named so only unit and
integration tests should be using the test value for the cluster
name where it is not important.
Signed-off-by: Travis Nielsen <tnielsen@redhat.com>
This commit is a large refactor on how the operator starts, stops and
how it starts various sub-components such as the ceph-csi driver. It
also refines the way we cancel orchestrations. We don't use breakpoints
anymore but send our self a SIGUP to reload our controller runtime
manager.
The reload will happen under different circonstances like:
* a new adminission controller secret is created/deleted/changed
* a CephCluster CR is edited
As mentioned earlier, the csi driver now has its own controller, just
like flex. It reacts to change in the operator config map for particular
ROOK_CSI_ fields.
A second new controller for the operator's general config has been
created, it manages:
* the logging level
* the ceph CLI command timeout
* the discovery daemon
The operator reacts much more rapidly to cancellation events by stopping
the manager's context and reloading it.
Signed-off-by: Sébastien Han <seb@redhat.com>
Both `ExecuteCommandWithOutputFileTimeout()` and
`ExecuteCommandWithOutputFile()` generate unnecessary system calls by
creating/reading/removing files where the stream output of the command
can simply be used. So sticking with `ExecuteCommandWithOutput()` and
`ExecuteCommandWithCombinedOutput()` for reading outputs is sufficient.
Closes: https://github.com/rook/rook/issues/8343
Signed-off-by: Sébastien Han <seb@redhat.com>
Similarly to block volume replication, Ceph is capable of replicating the
content of a Ceph Filesystem from one cluster to another.
For this, during the 1.6 cycle, we introduced a new CRD called
CephFilesystemMirror which effectively deploys a cephfs-mirror daemon.
However, configuring peers to enable replication between two clusters
had to be done manually.
Also various bug fix made it in Ceph eventually and the minimum required
version for this to work is to run on Ceph Pacific 16.2.5 at least.
So the automatic configuration of Ceph Filesystem peers is now possible.
By editing the CephFilesystem CRD, you can now turn on mirroring:
```yaml
mirroring:
enabled: false
# list of Kubernetes Secrets containing the peer token
# for more details see: https://docs.ceph.com/en/latest/dev/cephfs-mirroring/#bootstrap-peers
peers:
secretNames:
- secondary-cluster-peer
```
Also, the mirroring status is displayed in the CR status:
```
status:
info:
fsMirrorBootstrapPeerSecretName: fs-peer-token-myfs
mirroringStatus:
daemonsStatus:
- daemon_id: 4186
filesystems:
- filesystem_id: 2
name: myfs
lastChecked: "2021-07-01T14:16:29Z"
phase: Ready
snapshotScheduleStatus:
lastChecked: "2021-07-01T14:16:29Z"
snapshotSchedules:
- fs: myfs
path: /
rel_path: /
retention: {}
schedule: 24h
```
Closes: https://github.com/rook/rook/issues/7063
Signed-off-by: Sébastien Han <seb@redhat.com>
If the cluster is external we want to periodically rehydrate the mgr
endpoint. This handles the scenarion where the active manager changes,
so we need to update the endpoint with the new IP address.
The create-external-cluster-resources.py script now requires an extra
permission to query the manager service so Rook can discover the active
one and its IP.
Testing:
```
[leseb@tarox~/go/src/github.com/rook/rook][external-active-mgr-change] minikube kubectl -- exec -n rook-ceph deploy/rook-ceph-tools -ti -- ceph mgr stat
{
"epoch": 37,
"available": true,
"active_name": "b",
"num_standby": 1
}
[leseb@tarox~/go/src/github.com/rook/rook][external-active-mgr-change] kubectl -n rook-ceph-external get ep
NAME ENDPOINTS AGE
rook-ceph-mgr-external 172.17.0.12:9283 3m10s
[leseb@tarox~/go/src/github.com/rook/rook][external-active-mgr-change] k scale --replicas=0 deployment rook-ceph-mgr-b
deployment.apps/rook-ceph-mgr-b scaled
[leseb@tarox~/go/src/github.com/rook/rook][external-active-mgr-change] minikube kubectl -- exec -n rook-ceph deploy/rook-ceph-tools -ti -- ceph mgr stat
{
"epoch": 40,
"available": true,
"active_name": "a",
"num_standby": 0
}
[leseb@tarox~/go/src/github.com/rook/rook][external-active-mgr-change] kubectl -n rook-ceph-external get ep
NAME ENDPOINTS AGE
rook-ceph-mgr-external 172.17.0.13:9283 3m55s
```
Signed-off-by: Sébastien Han <seb@redhat.com>
With Pacific comes the support for dualstack where ceph daemons can
listen on both ipv4 and ipv6 stacks.
A new field in the network spec has been added: `dualStack`
Signed-off-by: Sébastien Han <seb@redhat.com>
The operator will now allow the resource limits to be applied below the
recommended minimums. In small clusters, even the recommended minimums
may not be necessary. A warning is still printed to the operator log,
but we allow the configuration to continue.
Signed-off-by: Travis Nielsen <tnielsen@redhat.com>
When the cluster is loaded and we restart an OSD, it will need some time
to respond to socket calls, basically more to be ready.
Increasing the initialDelaySeconds of the liveness probe fixes that
issue. For OSD, it waits for 45 sec, where other daemons 10 sec.
Closes: https://github.com/rook/rook/issues/5492
Signed-off-by: Sébastien Han <seb@redhat.com>
This type was a string already and was just making us doing string()
calls all the time to it's not worth it.
Signed-off-by: Sébastien Han <seb@redhat.com>
Now Kubernetes will perform liveness checks on mon, mds and osd daemons.
The command will:
* call the socket (check for existence)
* execute a command and check the return code (success if 0)
This handles the case where the daemon is stuck locally and
unresponsive. It's unlikely but not impossible.
These checks bring more robustness to the implementation.
rbd-mirror and nfs have been leftover for the following reason. The
rbd-mirror socket name is different from other daemons (could be fixed
though): /run/ceph/ceph-client.rbd-mirror.a.1.94362516231272.asok also,
the command to call would need to be changed from "status" to "rbd
mirror status" so we can keep this for a later.
The nfs ganesha has no socket only a PID file which doesn't mean much.
No PID means the process does not run so Kubernetes will already handle
this and the pod will crash loop.
Signed-off-by: Sébastien Han <seb@redhat.com>
Now, the CephBlockPool CRD is managed with the controller-runtime.
So the watcher is outside of the main controller reconciliation loop of
CephCluster which brings numerous benefit such as:
* having its own reconciliation loop
* won't block anything from the main CephCluster controller loop
* fast than waiting for CephCluster loop to completion
Partially close: https://github.com/rook/rook/issues/1981
Signed-off-by: Sébastien Han <seb@redhat.com>