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256 lines
7.8 KiB
Markdown
256 lines
7.8 KiB
Markdown
# Deploying NFS in Constellation using Rook
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This document describes how to deploy NFS in Constellation using Rook.
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## Create a Cluster
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The cluster needs at least 3 worker nodes, default machines are powerful enough.
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```bash
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constellation create
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```
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## Deploy CSI Driver
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> **_NOTE:_** For additional integrity protection, use our [Constellation CSI drivers](https://docs.edgeless.systems/constellation/workflows/storage) with integrity protection enabled. With this option there is no need to enable encryption on Cephs side in the step [Deploy Rook](#deploy-rook).
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We need block storage form somewhere. We will use the official Azure CSI for that. We need to create the azure config secret again with the expected fields. Replace "XXX" with the corresponding value from the secret `azureconfig`.
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```bash
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kubectl create secret generic -n kube-system --from-literal=cloud-config='{"cloud":"AzurePublicCloud","useInstanceMetadata":true,"vmType":"vmss","tenantId":"XXX","subscriptionId":"XXX","resourceGroup":"XXX","location":"XXX"}' azure-config
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helm repo add azuredisk-csi-driver https://raw.githubusercontent.com/kubernetes-sigs/azuredisk-csi-driver/master/charts
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helm repo update azuredisk-csi-driver
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helm install azuredisk-csi-driver azuredisk-csi-driver/azuredisk-csi-driver --namespace kube-system --set linux.distro=fedora --set controller.cloudConfigSecretName=azure-config --set node.cloudConfigSecretName=azure-config
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```
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## Deploy the StorageClass
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```yaml
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apiVersion: storage.k8s.io/v1
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kind: StorageClass
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metadata:
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name: managed-premium
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provisioner: disk.csi.azure.com
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parameters:
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skuName: Premium_LRS
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cachingmode: ReadOnly
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kind: Managed
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volumeBindingMode: WaitForFirstConsumer
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```
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## Deploy Rook
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```bash
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git clone https://github.com/rook/rook.git
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cd rook/deploy/examples
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kubectl apply -f common.yaml -f crds.yaml -f operator.yaml
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kubectl rollout status -n rook-ceph deployment/rook-ceph-operator
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```
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Apply the following changes to `cluster-on-pvc.yaml`:
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```diff
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euler@work:~/projects/rook/deploy/examples$ git diff cluster-on-pvc.yaml
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diff --git a/deploy/examples/cluster-on-pvc.yaml b/deploy/examples/cluster-on-pvc.yaml
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index ee4976be2..b5cf294cb 100644
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--- a/deploy/examples/cluster-on-pvc.yaml
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+++ b/deploy/examples/cluster-on-pvc.yaml
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@@ -16,7 +16,7 @@ spec:
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mon:
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# Set the number of mons to be started. Generally recommended to be 3.
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# For highest availability, an odd number of mons should be specified.
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- count: 3
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+ count: 1
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# The mons should be on unique nodes. For production, at least 3 nodes are recommended for this reason.
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# Mons should only be allowed on the same node for test environments where data loss is acceptable.
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allowMultiplePerNode: false
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@@ -28,7 +28,7 @@ spec:
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# size appropriate for monitor data will be used.
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volumeClaimTemplate:
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spec:
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- storageClassName: gp2
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+ storageClassName: managed-premium
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resources:
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requests:
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storage: 10Gi
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@@ -59,13 +59,13 @@ spec:
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# Certain storage class in the Cloud are slow
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# Rook can configure the OSD running on PVC to accommodate that by tuning some of the Ceph internal
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# Currently, "gp2" has been identified as such
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- tuneDeviceClass: true
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+ tuneDeviceClass: false
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# Certain storage class in the Cloud are fast
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# Rook can configure the OSD running on PVC to accommodate that by tuning some of the Ceph internal
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# Currently, "managed-premium" has been identified as such
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- tuneFastDeviceClass: false
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+ tuneFastDeviceClass: true
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# whether to encrypt the deviceSet or not
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- encrypted: false
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+ encrypted: true
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# Since the OSDs could end up on any node, an effort needs to be made to spread the OSDs
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# across nodes as much as possible. Unfortunately the pod anti-affinity breaks down
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# as soon as you have more than one OSD per node. The topology spread constraints will
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@@ -100,7 +100,7 @@ spec:
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topologySpreadConstraints:
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- maxSkew: 1
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# IMPORTANT: If you don't have zone labels, change this to another key such as kubernetes.io/hostname
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- topologyKey: topology.kubernetes.io/zone
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+ topologyKey: kubernetes.io/hostname
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whenUnsatisfiable: DoNotSchedule
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labelSelector:
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matchExpressions:
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@@ -127,7 +127,7 @@ spec:
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requests:
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storage: 10Gi
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# IMPORTANT: Change the storage class depending on your environment
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- storageClassName: gp2
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+ storageClassName: managed-premium
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volumeMode: Block
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accessModes:
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- ReadWriteOnce
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```
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Now apply the yaml:
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```bash
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kubectl apply -f cluster-on-pvc.yaml
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```
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Verify the health of the ceph cluster:
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```bash
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$ kubectl apply -f toolbox.yaml
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$ kubectl -n rook-ceph exec -it deploy/rook-ceph-tools -- ceph status
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cluster:
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id: 7c220b31-29f7-4f17-a291-3ef39a9553b3
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health: HEALTH_OK
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services:
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mon: 3 daemons, quorum a,b,c (age 2m)
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mgr: a(active, since 72s)
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osd: 3 osds: 3 up (since 61s), 3 in (since 81s)
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data:
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pools: 1 pools, 1 pgs
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objects: 2 objects, 449 KiB
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usage: 62 MiB used, 30 GiB / 30 GiB avail
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pgs: 1 active+clean
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```
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Deploy the filesystem:
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```bash
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$ kubectl apply -f filesystem.yaml
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$ kubectl -n rook-ceph exec -it deploy/rook-ceph-tools -- ceph status
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cluster:
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id: 7c220b31-29f7-4f17-a291-3ef39a9553b3
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health: HEALTH_OK
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services:
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mon: 3 daemons, quorum a,b,c (age 3m)
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mgr: a(active, since 2m)
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mds: 1/1 daemons up, 1 hot standby
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osd: 3 osds: 3 up (since 2m), 3 in (since 2m)
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data:
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volumes: 1/1 healthy
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pools: 3 pools, 34 pgs
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objects: 24 objects, 451 KiB
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usage: 63 MiB used, 30 GiB / 30 GiB avail
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pgs: 34 active+clean
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io:
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client: 853 B/s rd, 1 op/s rd, 0 op/s wr
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progress:
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```
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Deploy the StorageClass:
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```bash
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kubectl apply -f csi/cephfs/storageclass.yaml
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```
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Rescale the monitor count to 3:
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```bash
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kubectl -n rook-ceph patch cephcluster rook-ceph --type merge -p '{"spec":{"mon":{"count":3}}}'
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```
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## Use the NFS
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The following deployment will create a PVC based on NFS and mount it into 3 pods.
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```yaml
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apiVersion: v1
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kind: PersistentVolumeClaim
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metadata:
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name: nfs
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spec:
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accessModes:
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- ReadWriteMany
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resources:
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requests:
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storage: 5Gi
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storageClassName: rook-cephfs
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---
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# from https://github.com/Azure/kubernetes-volume-drivers/tree/master/nfs
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apiVersion: apps/v1
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kind: StatefulSet
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metadata:
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name: statefulset-nfs
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labels:
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app: nginx
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spec:
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serviceName: statefulset-nfs
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replicas: 3
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template:
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metadata:
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labels:
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app: nginx
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spec:
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containers:
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- name: statefulset-nfs
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image: nginx
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command:
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- "/bin/sh"
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- "-c"
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- "sleep 9999999"
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volumeMounts:
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- name: persistent-storage
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mountPath: /mnt/nfs
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volumes:
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- name: persistent-storage
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persistentVolumeClaim:
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claimName: nfs
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readOnly: false
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updateStrategy:
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type: RollingUpdate
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selector:
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matchLabels:
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app: nginx
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```
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## Verify Ceph OSD encryption
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To verify that Ceph created an encrypted device, [log into a node](https://kubernetes.io/docs/tasks/debug/debug-application/debug-running-pod/#ephemeral-container) via `kubectl debug`.
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```bash
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$ ls /dev/mapper/
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control root set1-data-1flnzz-block-dmcrypt state state_dif
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$ cryptsetup status /dev/mapper/set1-data-1flnzz-block-dmcrypt
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/dev/mapper/set1-data-1flnzz-block-dmcrypt is active and is in use.
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type: LUKS2
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cipher: aes-xts-plain64
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keysize: 512 bits
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key location: dm-crypt
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device: /dev/sdc
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sector size: 512
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offset: 32768 sectors
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size: 20938752 sectors
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mode: read/write
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flags: discards
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```
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