799eaf4229
* GC now supports non-core resources * Add two examples about how to analysis audits of kube-apiserver (#4264) * Deprecate system:nodes binding * [1.8] StatefulSet `initialized` annotation is now ignored. * inits the kubeadm upgrade docs addresses kubernetes/kubernetes.github.io/issues/4689 * adds kubeadm upgrade cmd to ToC addresses kubernetes/kubernetes.github.io/issues/4689 * add workload placement docs * ScaleIO - document udpate for 1.8 * Add documentation on storageClass.mountOptions and PV.mountOptions (#5254) * Add documentation on storageClass.mountOptions and PV.mountOptions * convert notes into callouts * Add docs for CustomResource validation add info about supported fields * advanced audit beta features (#5300) * Update job workload doc with backoff failure policy (#5319) Add to the Jobs documentation how to use the new backoffLimit field that limit the number of Pod failure before considering the Job as failed. * Documented additional AWS Service annotations (#4864) * Add device plugin doc under concepts/cluster-administration. (#5261) * Add device plugin doc under concepts/cluster-administration. * Update device-plugins.md * Update device-plugins.md Add meta description. Fix typo. Change bare metal deployment to manual deployment. * Update device-plugins.md Fix typo again. * Update page.version. (#5341) * Add documentation on storageClass.reclaimPolicy (#5171) * [Advanced audit] use new herf for audit-api (#5349) This tag contains all the changes in v1beta1 version. Update it now. * Added documentation around creating the InitializerConfiguration for the persistent volume label controller in the cloud-controller-manager (#5255) * Documentation for kubectl plugins (#5294) * Documentation for kubectl plugins * Update kubectl-plugins.md * Update kubectl-plugins.md * Updated CPU manager docs to match implementation. (#5332) * Noted limitation of alpha static cpumanager. * Updated CPU manager docs to match implementation. - Removed references to CPU pressure node condition and evictions. - Added note about new --cpu-manager-reconcile-period flag. - Added note about node allocatable requirements for static policy. - Noted limitation of alpha static cpumanager. * Move cpu-manager task link to rsc mgmt section. * init containers annotation removed in 1.8 (#5390) * Add documentation for TaintNodesByCondition (#5352) * Add documentation for TaintNodesByCondition * Update nodes.md * Update taint-and-toleration.md * Update daemonset.md * Update nodes.md * Update taint-and-toleration.md * Update daemonset.md * Fix deployments (#5421) * Document extended resources and OIR deprecation. (#5399) * Document extended resources and OIR deprecation. * Updated extended resources doc per reviews. * reverts extra spacing in _data/tasks.yml * addresses `kubeadm upgrade` review comments Feedback from @chenopis, @luxas, and @steveperry-53 addressed with this commit * HugePages documentation (#5419) * Update cpu-management-policies.md (#5407) Fixed the bad link. Modified "cpu" to "CPU". Added more 'yaml' as supplement. * Update RBAC docs for v1 (#5445) * Add user docs for pod priority and preemption (#5328) * Add user docs for pod priority and preemption * Update pod-priority-preemption.md * More updates * Update docs/admin/kubeadm.md for 1.8 (#5440) - Made a couple of minor wording changes (not strictly 1.8 related). - Did some reformatting (not strictly 1.8 related). - Updated references to the default token TTL (was infinite, now 24 hours). - Documented the new `--discovery-token-ca-cert-hash` and `--discovery-token-unsafe-skip-ca-verification` flags for `kubeadm join`. - Added references to the new `--discovery-token-ca-cert-hash` flag in all the default examples. - Added a new _Security model_ section that describes the security tradeoffs of the various discovery modes. - Documented the new `--groups` flag for `kubeadm token create`. - Added a note of caution under _Automating kubeadm_ that references the _Security model_ section. - Updated the component version table to drop 1.6 and add 1.8. - Update `_data/reference.yml` to try to get the sidebar fixed up and more consistent with `kubefed`. * Update StatefulSet Basics for 1.8 release (#5398) * addresses `kubeadm upgrade` review comments 2nd iteration review comments by @luxas * adds kubelet upgrade section to kubeadm upgrade * Fix a bulleted list on docs/admin/kubeadm.md. (#5458) I updated this doc yesterday and I was absolutely sure I fixed this, but I just saw that this commit got lost somehow. This was introduced recently in https://github.com/kubernetes/kubernetes.github.io/pull/5440. * Clarify the API to check for device plugins * Moving Flexvolume to separate out-of-tree section * addresses `kubeadm upgrade` review comments CC: @luxas * fixes kubeadm upgrade index * Update Stackdriver Logging documentation (#5495) * Re-update WordPress and MySQL PV doc to use apps/v1beta2 APIs (#5526) * Update statefulset concepts doc to use apps/v1beta2 APIs (#5420) * add document on kubectl's behavior regarding initializers (#5505) * Update docs/admin/kubeadm.md to cover self-hosting in 1.8. (#5497) This is a new beta feature in 1.8. * Update kubectl patch doc to use apps/v1beta2 APIs (#5422) * [1.8] Update "Run Applications" tasks to apps/v1beta2. (#5525) * Update replicated stateful application task for 1.8. * Update single instance stateful app task for 1.8. * Update stateless app task for 1.8. * Update kubectl patch task for 1.8. * fix the link of persistent storage (#5515) * update the admission-controllers.md index.md what-is-kubernetes.md link * fix the link of persistent storage * Add quota support for local ephemeral storage (#5493) * Add quota support for local ephemeral storage update the doc to this alpha feature * Update resource-quotas.md * Updated Deployments concepts doc (#5491) * Updated Deployments concepts doc * Addressed comments * Addressed more comments * Modify allocatable storage to ephemeral-storage (#5490) Update the doc to use ephemeral-storage instead of storage * Revamped concepts doc for ReplicaSet (#5463) * Revamped concepts doc for ReplicaSet * Minor changes to call out specific versions for selector defaulting and immutability * Addressed doc review comments * Remove petset documentations (#5395) * Update docs to use batch/v1beta1 cronjobs (#5475) * add federation job doc (#5485) * add federation job doc * Update job.md Edits for clarity and consistency * Update job.md Fixed a typo * update DaemonSet concept for 1.8 release (#5397) * update DaemonSet concept for 1.8 release * Update daemonset.md Fix typo. than -> then * Update bootstrap tokens doc for 1.8. (#5479) * Update bootstrap tokens doc for 1.8. This has some changes I missed when I was updating the main kubeadm documention: - Bootstrap tokens are now beta, not alpha (https://github.com/kubernetes/features/issues/130) - The apiserver flag to enable the authenticator changedin 1.8 (https://github.com/kubernetes/kubernetes/pull/51198) - Added `auth-extra-groups` documentaion (https://github.com/kubernetes/kubernetes/pull/50933) - Updated the _Token Management with `kubeadm`_ section to link to the main kubeadm docs, since it was just duplicated information. * Update bootstrap-tokens.md * Updated the Cassandra tutorial to use apps/v1beta2 (#5548) * add docs for AllowPrivilegeEscalation (#5448) Signed-off-by: Jess Frazelle <acidburn@microsoft.com> * Add local ephemeral storage alpha feature in managing compute resource (#5522) * Add local ephemeral storage alpha feature in managing compute resource Since 1.8, we add the local ephemeral storage alpha feature as one resource type to manage. Add this feature into the doc. * Update manage-compute-resources-container.md * Update manage-compute-resources-container.md * Update manage-compute-resources-container.md * Update manage-compute-resources-container.md * Update manage-compute-resources-container.md * Update manage-compute-resources-container.md * Added documentation for Metrics Server (#5560) * authorization: improve authorization debugging docs (#5549) * Document mount propagation (#5544) * Update /docs/setup/independent/create-cluster-kubeadm.md for 1.8. (#5524) This introduction needed a couple of small tweaks to cover the `--discovery-token-ca-cert-hash` flag added in https://github.com/kubernetes/kubernetes/pull/49520 and some version bumps. * Add task doc for alpha dynamic kubelet configuration (#5523) * Fix input/output of selfsubjectaccess review (#5593) * Add docs for implementing resize (#5528) * Add docs for implementing resize * Update admission-controllers.md * Added link to PVC section * minor typo fixes * Update NetworkPolicy concept guide with egress and CIDR changes (#5529) * update zookeeper tutorial for 1.8 release * add doc for hostpath type (#5503) * Federated Hpa feature doc (#5487) * Federated Hpa feature doc * Federated Hpa feature doc review fixes * Update hpa.md * Update hpa.md * update cloud controller manager docs for v1.8 * Update cronjob with defaults information (#5556) * Kubernetes 1.8 reference docs (#5632) * Kubernetes 1.8 reference docs * Kubectl reference docs for 1.8 * Update side bar with 1.8 kubectl and api ref docs links * remove petset.md * update on state of HostAlias in 1.8 with hostNetwork Pod support (#5644) * Fix cron job deletion section (#5655) * update imported docs (#5656) * Add documentation for certificate rotation. (#5639) * Link to using kubeadm page * fix the command output fix the command output * fix typo in api/resources reference: "Worloads" * Add documentation for certificate rotation. * Create TOC entry for cloud controller manager. (#5662) * Updates for new versions of API types * Followup 5655: fix link to garbage collection (#5666) * Temporarily redirect resources-reference to api-reference. (#5668) * Update config for 1.8 release. (#5661) * Update config for 1.8 release. * Address reviewer comments. * Switch references in HPA docs from alpha to beta (#5671) The HPA docs still referenced the alpha version. This switches them to talk about v2beta1, which is the appropriate version for Kubernetes 1.8 * Deprecate openstack heat (#5670) * Fix typo in pod preset conflict example Move container port definition to the correct line. * Highlight openstack-heat provider deprecation The openstack-heat provider for kube-up is being deprecated and will be removed in a future release. * Temporarily fix broken links by redirecting. (#5672) * Fix broken links. (#5675) * Fix render of code block (#5674) * Fix broken links. (#5677) * Add a small note about auto-bootstrapped CSR ClusterRoles (#5660) * Update kubeadm install doc for v1.8 (#5676) * add draft workloads api content for 1.8 (#5650) * add draft workloads api content for 1.8 * edits per review, add tables, for 1.8 workloads api doc * fix typo * Minor fixes to kubeadm 1.8 upgrade guide. (#5678) - The kubelet upgrade instructions should be done on every host, not just worker nodes. - We should just upgrade all packages, instead of calling out kubelet specifically. This will also upgrade kubectl, kubeadm, and kubernetes-cni, if installed. - Draining nodes should also ignore daemonsets, and master errors can be ignored. - Make sure that the new kubeadm download is chmoded correctly. - Add a step to run `kubeadm version` to verify after downloading. - Manually approve new kubelet CSRs if rotation is enabled (known issue). * Release 1.8 (#5680) * Fix versions for 1.8 API ref docs * Updates for 1.8 kubectl reference docs * Kubeadm /docs/admin/kubeadm.md cleanup, editing. (#5681) * Update docs/admin/kubeadm.md (mostly 1.8 related). This is Fabrizio's work, which I'm committing along with my edits (in a commit on top of this). * A few of my own edits to clarify and clean up some Markdown.
1042 lines
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1042 lines
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Markdown
---
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approvers:
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- enisoc
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- erictune
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- foxish
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- janetkuo
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- kow3ns
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- smarterclayton
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title: StatefulSet Basics
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---
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{% capture overview %}
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This tutorial provides an introduction to managing applications with
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[StatefulSets](/docs/concepts/abstractions/controllers/statefulsets/). It
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demonstrates how to create, delete, scale, and update the Pods of StatefulSets.
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{% endcapture %}
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{% capture prerequisites %}
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Before you begin this tutorial, you should familiarize yourself with the
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following Kubernetes concepts.
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* [Pods](/docs/user-guide/pods/single-container/)
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* [Cluster DNS](/docs/concepts/services-networking/dns-pod-service/)
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* [Headless Services](/docs/concepts/services-networking/service/#headless-services)
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* [PersistentVolumes](/docs/concepts/storage/persistent-volumes/)
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* [PersistentVolume Provisioning](https://github.com/kubernetes/examples/tree/{{page.githubbranch}}/staging/persistent-volume-provisioning/)
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* [StatefulSets](/docs/concepts/abstractions/controllers/statefulsets/)
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* [kubectl CLI](/docs/user-guide/kubectl)
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This tutorial assumes that your cluster is configured to dynamically provision
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PersistentVolumes. If your cluster is not configured to do so, you
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will have to manually provision two 1 GiB volumes prior to starting this
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tutorial.
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{% endcapture %}
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{% capture objectives %}
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StatefulSets are intended to be used with stateful applications and distributed
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systems. However, the administration of stateful applications and
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distributed systems on Kubernetes is a broad, complex topic. In order to
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demonstrate the basic features of a StatefulSet, and not to conflate the former
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topic with the latter, you will deploy a simple web application using a StatefulSet.
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After this tutorial, you will be familiar with the following.
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* How to create a StatefulSet
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* How a StatefulSet manages its Pods
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* How to delete a StatefulSet
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* How to scale a StatefulSet
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* How to update a StatefulSet's Pods
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{% endcapture %}
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{% capture lessoncontent %}
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## Creating a StatefulSet
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Begin by creating a StatefulSet using the example below. It is similar to the
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example presented in the
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[StatefulSets](/docs/concepts/abstractions/controllers/statefulsets/) concept.
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It creates a [Headless Service](/docs/concepts/services-networking/service/#headless-services),
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`nginx`, to publish the IP addresses of Pods in the StatefulSet, `web`.
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{% include code.html language="yaml" file="web.yaml" ghlink="/docs/tutorials/stateful-application/web.yaml" %}
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Download the example above, and save it to a file named `web.yaml`
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You will need to use two terminal windows. In the first terminal, use
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[`kubectl get`](/docs/user-guide/kubectl/{{page.version}}/#get) to watch the creation
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of the StatefulSet's Pods.
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```shell
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kubectl get pods -w -l app=nginx
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```
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In the second terminal, use
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[`kubectl create`](/docs/user-guide/kubectl/{{page.version}}/#create) to create the
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Headless Service and StatefulSet defined in `web.yaml`.
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```shell
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kubectl create -f web.yaml
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service "nginx" created
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statefulset "web" created
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```
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The command above creates two Pods, each running an
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[NGINX](https://www.nginx.com) webserver. Get the `nginx` Service and the
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`web` StatefulSet to verify that they were created successfully.
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```shell
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kubectl get service nginx
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NAME CLUSTER-IP EXTERNAL-IP PORT(S) AGE
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nginx None <none> 80/TCP 12s
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kubectl get statefulset web
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NAME DESIRED CURRENT AGE
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web 2 1 20s
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```
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### Ordered Pod Creation
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For a StatefulSet with N replicas, when Pods are being deployed, they are
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created sequentially, in order from {0..N-1}. Examine the output of the
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`kubectl get` command in the first terminal. Eventually, the output will
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look like the example below.
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```shell
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kubectl get pods -w -l app=nginx
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NAME READY STATUS RESTARTS AGE
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web-0 0/1 Pending 0 0s
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web-0 0/1 Pending 0 0s
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web-0 0/1 ContainerCreating 0 0s
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web-0 1/1 Running 0 19s
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web-1 0/1 Pending 0 0s
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web-1 0/1 Pending 0 0s
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web-1 0/1 ContainerCreating 0 0s
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web-1 1/1 Running 0 18s
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```
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Notice that the `web-1` Pod is not launched until the `web-0` Pod is
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[Running and Ready](/docs/user-guide/pod-states).
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## Pods in a StatefulSet
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Pods in a StatefulSet have a unique ordinal index and a stable network identity.
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### Examining the Pod's Ordinal Index
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Get the StatefulSet's Pods.
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```shell
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kubectl get pods -l app=nginx
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NAME READY STATUS RESTARTS AGE
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web-0 1/1 Running 0 1m
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web-1 1/1 Running 0 1m
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```
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As mentioned in the [StatefulSets](/docs/concepts/abstractions/controllers/statefulsets/)
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concept, the Pods in a StatefulSet have a sticky, unique identity. This identity
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is based on a unique ordinal index that is assigned to each Pod by the
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StatefulSet controller. The Pods' names take the form
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`<statefulset name>-<ordinal index>`. Since the `web` StatefulSet has two
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replicas, it creates two Pods, `web-0` and `web-1`.
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### Using Stable Network Identities
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Each Pod has a stable hostname based on its ordinal index. Use
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[`kubectl exec`](/docs/user-guide/kubectl/{{page.version}}/#exec) to execute the
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`hostname` command in each Pod.
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```shell
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for i in 0 1; do kubectl exec web-$i -- sh -c 'hostname'; done
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web-0
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web-1
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```
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Use [`kubectl run`](/docs/user-guide/kubectl/{{page.version}}/#run) to execute
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a container that provides the `nslookup` command from the `dnsutils` package.
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Using `nslookup` on the Pods' hostnames, you can examine their in-cluster DNS
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addresses.
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```shell
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kubectl run -i --tty --image busybox dns-test --restart=Never --rm /bin/sh
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nslookup web-0.nginx
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Server: 10.0.0.10
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Address 1: 10.0.0.10 kube-dns.kube-system.svc.cluster.local
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Name: web-0.nginx
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Address 1: 10.244.1.6
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nslookup web-1.nginx
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Server: 10.0.0.10
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Address 1: 10.0.0.10 kube-dns.kube-system.svc.cluster.local
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Name: web-1.nginx
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Address 1: 10.244.2.6
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```
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The CNAME of the headless service points to SRV records (one for each Pod that
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is Running and Ready). The SRV records point to A record entries that
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contain the Pods' IP addresses.
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In one terminal, watch the StatefulSet's Pods.
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```shell
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kubectl get pod -w -l app=nginx
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```
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In a second terminal, use
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[`kubectl delete`](/docs/user-guide/kubectl/{{page.version}}/#delete) to delete all
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the Pods in the StatefulSet.
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```shell
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kubectl delete pod -l app=nginx
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pod "web-0" deleted
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pod "web-1" deleted
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```
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Wait for the StatefulSet to restart them, and for both Pods to transition to
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Running and Ready.
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```shell
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kubectl get pod -w -l app=nginx
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NAME READY STATUS RESTARTS AGE
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web-0 0/1 ContainerCreating 0 0s
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NAME READY STATUS RESTARTS AGE
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web-0 1/1 Running 0 2s
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web-1 0/1 Pending 0 0s
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web-1 0/1 Pending 0 0s
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web-1 0/1 ContainerCreating 0 0s
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web-1 1/1 Running 0 34s
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```
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Use `kubectl exec` and `kubectl run` to view the Pods hostnames and in-cluster
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DNS entries.
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```shell
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for i in 0 1; do kubectl exec web-$i -- sh -c 'hostname'; done
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web-0
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web-1
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kubectl run -i --tty --image busybox dns-test --restart=Never --rm /bin/sh
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nslookup web-0.nginx
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Server: 10.0.0.10
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Address 1: 10.0.0.10 kube-dns.kube-system.svc.cluster.local
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Name: web-0.nginx
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Address 1: 10.244.1.7
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nslookup web-1.nginx
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Server: 10.0.0.10
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Address 1: 10.0.0.10 kube-dns.kube-system.svc.cluster.local
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Name: web-1.nginx
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Address 1: 10.244.2.8
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```
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The Pods' ordinals, hostnames, SRV records, and A record names have not changed,
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but the IP addresses associated with the Pods may have changed. In the cluster
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used for this tutorial, they have. This is why it is important not to configure
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other applications to connect to Pods in a StatefulSet by IP address.
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|
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If you need to find and connect to the active members of a StatefulSet, you
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should query the CNAME of the Headless Service
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(`nginx.default.svc.cluster.local`). The SRV records associated with the
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CNAME will contain only the Pods in the StatefulSet that are Running and
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Ready.
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If your application already implements connection logic that tests for
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liveness and readiness, you can use the SRV records of the Pods (
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`web-0.nginx.default.svc.cluster.local`,
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`web-1.nginx.default.svc.cluster.local`), as they are stable, and your
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application will be able to discover the Pods' addresses when they transition
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to Running and Ready.
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### Writing to Stable Storage
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Get the PersistentVolumeClaims for `web-0` and `web-1`.
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```shell
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kubectl get pvc -l app=nginx
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NAME STATUS VOLUME CAPACITY ACCESSMODES AGE
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www-web-0 Bound pvc-15c268c7-b507-11e6-932f-42010a800002 1Gi RWO 48s
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www-web-1 Bound pvc-15c79307-b507-11e6-932f-42010a800002 1Gi RWO 48s
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```
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The StatefulSet controller created two PersistentVolumeClaims that are
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bound to two [PersistentVolumes](/docs/concepts/storage/persistent-volumes/). As the cluster used in this tutorial is configured to dynamically provision
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PersistentVolumes, the PersistentVolumes were created and bound automatically.
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The NGINX webservers, by default, will serve an index file at
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`/usr/share/nginx/html/index.html`. The `volumeMounts` field in the
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StatefulSets `spec` ensures that the `/usr/share/nginx/html` directory is
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backed by a PersistentVolume.
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Write the Pods' hostnames to their `index.html` files and verify that the NGINX
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webservers serve the hostnames.
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```shell
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for i in 0 1; do kubectl exec web-$i -- sh -c 'echo $(hostname) > /usr/share/nginx/html/index.html'; done
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for i in 0 1; do kubectl exec -it web-$i -- curl localhost; done
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web-0
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web-1
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```
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Note, if you instead see 403 Forbidden responses for the above curl command,
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you will need to fix the permissions of the directory mounted by the `volumeMounts`
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(due to a [bug when using hostPath volumes](https://github.com/kubernetes/kubernetes/issues/2630)) with:
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```shell
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for i in 0 1; do kubectl exec web-$i -- chmod 755 /usr/share/nginx/html; done
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```
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before retrying the curl command above.
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In one terminal, watch the StatefulSet's Pods.
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```shell
|
|
kubectl get pod -w -l app=nginx
|
|
```
|
|
|
|
In a second terminal, delete all of the StatefulSet's Pods.
|
|
|
|
```shell
|
|
kubectl delete pod -l app=nginx
|
|
pod "web-0" deleted
|
|
pod "web-1" deleted
|
|
```
|
|
Examine the output of the `kubectl get` command in the first terminal, and wait
|
|
for all of the Pods to transition to Running and Ready.
|
|
|
|
```shell
|
|
kubectl get pod -w -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 0/1 ContainerCreating 0 0s
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 2s
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 ContainerCreating 0 0s
|
|
web-1 1/1 Running 0 34s
|
|
```
|
|
|
|
Verify the web servers continue to serve their hostnames.
|
|
|
|
```
|
|
for i in 0 1; do kubectl exec -it web-$i -- curl localhost; done
|
|
web-0
|
|
web-1
|
|
```
|
|
|
|
Even though `web-0` and `web-1` were rescheduled, they continue to serve their
|
|
hostnames because the PersistentVolumes associated with their
|
|
PersistentVolumeClaims are remounted to their `volumeMounts`. No matter what
|
|
node `web-0`and `web-1` are scheduled on, their PersistentVolumes will be
|
|
mounted to the appropriate mount points.
|
|
|
|
## Scaling a StatefulSet
|
|
Scaling a StatefulSet refers to increasing or decreasing the number of replicas.
|
|
This is accomplished by updating the `replicas` field. You can use either
|
|
[`kubectl scale`](/docs/user-guide/kubectl/{{page.version}}/#scale) or
|
|
[`kubectl patch`](/docs/user-guide/kubectl/{{page.version}}/#patch) to scale a StatefulSet.
|
|
|
|
### Scaling Up
|
|
|
|
In one terminal window, watch the Pods in the StatefulSet.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
```
|
|
|
|
In another terminal window, use `kubectl scale` to scale the number of replicas
|
|
to 5.
|
|
|
|
```shell
|
|
kubectl scale sts web --replicas=5
|
|
statefulset "web" scaled
|
|
```
|
|
|
|
Examine the output of the `kubectl get` command in the first terminal, and wait
|
|
for the three additional Pods to transition to Running and Ready.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 2h
|
|
web-1 1/1 Running 0 2h
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-2 0/1 Pending 0 0s
|
|
web-2 0/1 Pending 0 0s
|
|
web-2 0/1 ContainerCreating 0 0s
|
|
web-2 1/1 Running 0 19s
|
|
web-3 0/1 Pending 0 0s
|
|
web-3 0/1 Pending 0 0s
|
|
web-3 0/1 ContainerCreating 0 0s
|
|
web-3 1/1 Running 0 18s
|
|
web-4 0/1 Pending 0 0s
|
|
web-4 0/1 Pending 0 0s
|
|
web-4 0/1 ContainerCreating 0 0s
|
|
web-4 1/1 Running 0 19s
|
|
```
|
|
|
|
The StatefulSet controller scaled the number of replicas. As with
|
|
[StatefulSet creation](#ordered-pod-creation), the StatefulSet controller
|
|
created each Pod sequentially with respect to its ordinal index, and it
|
|
waited for each Pod's predecessor to be Running and Ready before launching the
|
|
subsequent Pod.
|
|
|
|
### Scaling Down
|
|
|
|
In one terminal, watch the StatefulSet's Pods.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
```
|
|
|
|
In another terminal, use `kubectl patch` to scale the StatefulSet back down to
|
|
three replicas.
|
|
|
|
```shell
|
|
kubectl patch sts web -p '{"spec":{"replicas":3}}'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
Wait for `web-4` and `web-3` to transition to Terminating.
|
|
|
|
```
|
|
kubectl get pods -w -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 3h
|
|
web-1 1/1 Running 0 3h
|
|
web-2 1/1 Running 0 55s
|
|
web-3 1/1 Running 0 36s
|
|
web-4 0/1 ContainerCreating 0 18s
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-4 1/1 Running 0 19s
|
|
web-4 1/1 Terminating 0 24s
|
|
web-4 1/1 Terminating 0 24s
|
|
web-3 1/1 Terminating 0 42s
|
|
web-3 1/1 Terminating 0 42s
|
|
```
|
|
|
|
### Ordered Pod Termination
|
|
|
|
The controller deleted one Pod at a time, in reverse order with respect to its
|
|
ordinal index, and it waited for each to be completely shutdown before
|
|
deleting the next.
|
|
|
|
Get the StatefulSet's PersistentVolumeClaims.
|
|
|
|
```shell
|
|
kubectl get pvc -l app=nginx
|
|
NAME STATUS VOLUME CAPACITY ACCESSMODES AGE
|
|
www-web-0 Bound pvc-15c268c7-b507-11e6-932f-42010a800002 1Gi RWO 13h
|
|
www-web-1 Bound pvc-15c79307-b507-11e6-932f-42010a800002 1Gi RWO 13h
|
|
www-web-2 Bound pvc-e1125b27-b508-11e6-932f-42010a800002 1Gi RWO 13h
|
|
www-web-3 Bound pvc-e1176df6-b508-11e6-932f-42010a800002 1Gi RWO 13h
|
|
www-web-4 Bound pvc-e11bb5f8-b508-11e6-932f-42010a800002 1Gi RWO 13h
|
|
|
|
```
|
|
|
|
There are still five PersistentVolumeClaims and five PersistentVolumes.
|
|
When exploring a Pod's [stable storage](#writing-to-stable-storage), we saw that the PersistentVolumes mounted to the Pods of a StatefulSet are not deleted whenthe StatefulSet's Pods are deleted. This is still true when Pod deletion is caused by scaling the StatefulSet down.
|
|
|
|
## Updating StatefulSets
|
|
|
|
In Kubernetes 1.7 and later, the StatefulSet controller supports automated updates. The
|
|
strategy used is determined by the `spec.updateStrategy` field of the
|
|
StatefulSet API Object. This feature can be used to upgrade the container
|
|
images, resource requests and/or limits, labels, and annotations of the Pods in a
|
|
StatefulSet. There are two valid update strategies, `RollingUpdate` and
|
|
`OnDelete`.
|
|
|
|
### Rolling Update
|
|
|
|
The `RollingUpdate` update strategy will update all Pods in a StatefulSet, in
|
|
reverse ordinal order, while respecting the StatefulSet guarantees.
|
|
|
|
Patch the `web` StatefulSet to apply the `RollingUpdate` update strategy.
|
|
|
|
```shell
|
|
kubectl patch statefulset web -p '{"spec":{"updateStrategy":{"type":"RollingUpdate"}}}'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
In one terminal window, patch the `web` StatefulSet to change the container
|
|
image again.
|
|
|
|
```shell
|
|
kubectl patch statefulset web --type='json' -p='[{"op": "replace", "path": "/spec/template/spec/containers/0/image", "value":"gcr.io/google_containers/nginx-slim:0.8"}]'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
In another terminal, watch the Pods in the StatefulSet.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 7m
|
|
web-1 1/1 Running 0 7m
|
|
web-2 1/1 Running 0 8m
|
|
web-2 1/1 Terminating 0 8m
|
|
web-2 1/1 Terminating 0 8m
|
|
web-2 0/1 Terminating 0 8m
|
|
web-2 0/1 Terminating 0 8m
|
|
web-2 0/1 Terminating 0 8m
|
|
web-2 0/1 Terminating 0 8m
|
|
web-2 0/1 Pending 0 0s
|
|
web-2 0/1 Pending 0 0s
|
|
web-2 0/1 ContainerCreating 0 0s
|
|
web-2 1/1 Running 0 19s
|
|
web-1 1/1 Terminating 0 8m
|
|
web-1 0/1 Terminating 0 8m
|
|
web-1 0/1 Terminating 0 8m
|
|
web-1 0/1 Terminating 0 8m
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 ContainerCreating 0 0s
|
|
web-1 1/1 Running 0 6s
|
|
web-0 1/1 Terminating 0 7m
|
|
web-0 1/1 Terminating 0 7m
|
|
web-0 0/1 Terminating 0 7m
|
|
web-0 0/1 Terminating 0 7m
|
|
web-0 0/1 Terminating 0 7m
|
|
web-0 0/1 Terminating 0 7m
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 ContainerCreating 0 0s
|
|
web-0 1/1 Running 0 10s
|
|
```
|
|
|
|
The Pods in the StatefulSet are updated in reverse ordinal order. The
|
|
StatefulSet controller terminates each Pod, and waits for it to transition to Running and
|
|
Ready prior to updating the next Pod. Note that, even though the StatefulSet
|
|
controller will not proceed to update the next Pod until its ordinal successor
|
|
is Running and Ready, it will restore any Pod that fails during the update to
|
|
its current version. Pods that have already received the update will be
|
|
restored to the updated version, and Pods that have not yet received the
|
|
update will be restored to the previous version. In this way, the controller
|
|
attempts to continue to keep the application healthy and the update consistent
|
|
in the presence of intermittent failures.
|
|
|
|
Get the Pods to view their container images.
|
|
|
|
```shell{% raw %}
|
|
for p in 0 1 2; do kubectl get po web-$p --template '{{range $i, $c := .spec.containers}}{{$c.image}}{{end}}'; echo; done
|
|
gcr.io/google_containers/nginx-slim:0.8
|
|
gcr.io/google_containers/nginx-slim:0.8
|
|
gcr.io/google_containers/nginx-slim:0.8
|
|
{% endraw %}
|
|
```
|
|
|
|
All the Pods in the StatefulSet are now running the previous container image.
|
|
|
|
**Tip** You can also use `kubectl rollout status sts/<name>` to view
|
|
the status of a rolling update.
|
|
|
|
#### Staging an Update
|
|
You can stage an update to a StatefulSet by using the `partition` parameter of
|
|
the `RollingUpdate` update strategy. A staged update will keep all of the Pods
|
|
in the StatefulSet at the current version while allowing mutations to the
|
|
StatefulSet's `.spec.template`.
|
|
|
|
Patch the `web` StatefulSet to add a partition to the `updateStrategy` field.
|
|
|
|
```shell
|
|
kubectl patch statefulset web -p '{"spec":{"updateStrategy":{"type":"RollingUpdate","rollingUpdate":{"partition":3}}}}'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
Patch the StatefulSet again to change the container's image.
|
|
|
|
```shell
|
|
kubectl patch statefulset web --type='json' -p='[{"op": "replace", "path": "/spec/template/spec/containers/0/image", "value":"gcr.io/google_containers/nginx-slim:0.7"}]'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
Delete a Pod in the StatefulSet.
|
|
|
|
```shell
|
|
kubectl delete po web-2
|
|
pod "web-2" deleted
|
|
```
|
|
|
|
Wait for the Pod to be Running and Ready.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 4m
|
|
web-1 1/1 Running 0 4m
|
|
web-2 0/1 ContainerCreating 0 11s
|
|
web-2 1/1 Running 0 18s
|
|
```
|
|
|
|
Get the Pod's container.
|
|
|
|
```shell{% raw %}
|
|
kubectl get po web-2 --template '{{range $i, $c := .spec.containers}}{{$c.image}}{{end}}'
|
|
gcr.io/google_containers/nginx-slim:0.8
|
|
{% endraw %}
|
|
```
|
|
|
|
Notice that, even though the update strategy is `RollingUpdate` the StatefulSet
|
|
controller restored the Pod with its original container. This is because the
|
|
ordinal of the Pod is less than the `partition` specified by the
|
|
`updateStrategy`.
|
|
|
|
#### Rolling Out a Canary
|
|
You can roll out a canary to test a modification by decrementing the `partition`
|
|
you specified [above](#staging-an-update).
|
|
|
|
Patch the StatefulSet to decrement the partition.
|
|
|
|
```shell
|
|
kubectl patch statefulset web -p '{"spec":{"updateStrategy":{"type":"RollingUpdate","rollingUpdate":{"partition":2}}}}'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
Wait for `web-2` to be Running and Ready.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 4m
|
|
web-1 1/1 Running 0 4m
|
|
web-2 0/1 ContainerCreating 0 11s
|
|
web-2 1/1 Running 0 18s
|
|
```
|
|
|
|
Get the Pod's container.
|
|
|
|
```shell{% raw %}
|
|
kubectl get po web-2 --template '{{range $i, $c := .spec.containers}}{{$c.image}}{{end}}'
|
|
gcr.io/google_containers/nginx-slim:0.7
|
|
{% endraw %}
|
|
```
|
|
|
|
When you changed the `partition`, the StatefulSet controller automatically
|
|
updated the `web-2` Pod because the Pod's ordinal was less than or equal to
|
|
the `partition`.
|
|
|
|
Delete the `web-1` Pod.
|
|
|
|
```shell
|
|
kubectl delete po web-1
|
|
pod "web-1" deleted
|
|
```
|
|
|
|
Wait for the `web-1` Pod to be Running and Ready.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 6m
|
|
web-1 0/1 Terminating 0 6m
|
|
web-2 1/1 Running 0 2m
|
|
web-1 0/1 Terminating 0 6m
|
|
web-1 0/1 Terminating 0 6m
|
|
web-1 0/1 Terminating 0 6m
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 ContainerCreating 0 0s
|
|
web-1 1/1 Running 0 18s
|
|
```
|
|
|
|
Get the `web-1` Pods container.
|
|
|
|
```shell{% raw %}
|
|
kubectl get po web-1 --template '{{range $i, $c := .spec.containers}}{{$c.image}}{{end}}'
|
|
gcr.io/google_containers/nginx-slim:0.8
|
|
{% endraw %}
|
|
```
|
|
`web-1` was restored to its original configuration because the Pod's ordinal
|
|
was less than the partition. When a partition is specified, all Pods with an
|
|
ordinal that is greater than or equal to the partition will be updated when the
|
|
StatefulSet's `.spec.template` is updated. If a Pod that has an ordinal less
|
|
than the partition is deleted or otherwise terminated, it will be restored to
|
|
its original configuration.
|
|
|
|
#### Phased Roll Outs
|
|
You can perform a phased roll out (e.g. a linear, geometric, or exponential
|
|
roll out) using a partitioned rolling update in a similar manner to how you
|
|
rolled out a [canary](#rolling-out-a-canary). To perform a phased roll out, set
|
|
the `partition` to the ordinal at which you want the controller to pause the
|
|
update.
|
|
|
|
The partition is currently set to `2`. Set the partition to `0`.
|
|
|
|
```shell
|
|
kubectl patch statefulset web -p '{"spec":{"updateStrategy":{"type":"RollingUpdate","rollingUpdate":{"partition":0}}}}'
|
|
statefulset "web" patched
|
|
```
|
|
|
|
Wait for all of the Pods in the StatefulSet to become Running and Ready.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 3m
|
|
web-1 0/1 ContainerCreating 0 11s
|
|
web-2 1/1 Running 0 2m
|
|
web-1 1/1 Running 0 18s
|
|
web-0 1/1 Terminating 0 3m
|
|
web-0 1/1 Terminating 0 3m
|
|
web-0 0/1 Terminating 0 3m
|
|
web-0 0/1 Terminating 0 3m
|
|
web-0 0/1 Terminating 0 3m
|
|
web-0 0/1 Terminating 0 3m
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 ContainerCreating 0 0s
|
|
web-0 1/1 Running 0 3s
|
|
```
|
|
|
|
Get the Pod's containers.
|
|
|
|
```shell{% raw %}
|
|
for p in 0 1 2; do kubectl get po web-$p --template '{{range $i, $c := .spec.containers}}{{$c.image}}{{end}}'; echo; done
|
|
gcr.io/google_containers/nginx-slim:0.7
|
|
gcr.io/google_containers/nginx-slim:0.7
|
|
gcr.io/google_containers/nginx-slim:0.7
|
|
{% endraw %}
|
|
```
|
|
|
|
By moving the `partition` to `0`, you allowed the StatefulSet controller to
|
|
continue the update process.
|
|
|
|
### On Delete
|
|
|
|
The `OnDelete` update strategy implements the legacy (1.6 and prior) behavior,
|
|
When you select this update strategy, the StatefulSet controller will not
|
|
automatically update Pods when a modification is made to the StatefulSet's
|
|
`.spec.template` field. This strategy can be selected by setting the
|
|
`.spec.template.updateStrategy.type` to `OnDelete`.
|
|
|
|
|
|
## Deleting StatefulSets
|
|
|
|
StatefulSet supports both Non-Cascading and Cascading deletion. In a
|
|
Non-Cascading Delete, the StatefulSet's Pods are not deleted when the StatefulSet is deleted. In a Cascading Delete, both the StatefulSet and its Pods are
|
|
deleted.
|
|
|
|
### Non-Cascading Delete
|
|
|
|
In one terminal window, watch the Pods in the StatefulSet.
|
|
|
|
```
|
|
kubectl get pods -w -l app=nginx
|
|
```
|
|
|
|
Use [`kubectl delete`](/docs/user-guide/kubectl/{{page.version}}/#delete) to delete the
|
|
StatefulSet. Make sure to supply the `--cascade=false` parameter to the
|
|
command. This parameter tells Kubernetes to only delete the StatefulSet, and to
|
|
not delete any of its Pods.
|
|
|
|
```shell
|
|
kubectl delete statefulset web --cascade=false
|
|
statefulset "web" deleted
|
|
```
|
|
|
|
Get the Pods to examine their status.
|
|
|
|
```shell
|
|
kubectl get pods -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 6m
|
|
web-1 1/1 Running 0 7m
|
|
web-2 1/1 Running 0 5m
|
|
```
|
|
|
|
Even though `web` has been deleted, all of the Pods are still Running and Ready.
|
|
Delete `web-0`.
|
|
|
|
```shell
|
|
kubectl delete pod web-0
|
|
pod "web-0" deleted
|
|
```
|
|
|
|
Get the StatefulSet's Pods.
|
|
|
|
```shell
|
|
kubectl get pods -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-1 1/1 Running 0 10m
|
|
web-2 1/1 Running 0 7m
|
|
```
|
|
|
|
As the `web` StatefulSet has been deleted, `web-0` has not been relaunched.
|
|
|
|
In one terminal, watch the StatefulSet's Pods.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
```
|
|
|
|
In a second terminal, recreate the StatefulSet. Note that, unless
|
|
you deleted the `nginx` Service ( which you should not have ), you will see
|
|
an error indicating that the Service already exists.
|
|
|
|
```shell
|
|
kubectl create -f web.yaml
|
|
statefulset "web" created
|
|
Error from server (AlreadyExists): error when creating "web.yaml": services "nginx" already exists
|
|
```
|
|
|
|
Ignore the error. It only indicates that an attempt was made to create the nginx
|
|
Headless Service even though that Service already exists.
|
|
|
|
Examine the output of the `kubectl get` command running in the first terminal.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-1 1/1 Running 0 16m
|
|
web-2 1/1 Running 0 2m
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 ContainerCreating 0 0s
|
|
web-0 1/1 Running 0 18s
|
|
web-2 1/1 Terminating 0 3m
|
|
web-2 0/1 Terminating 0 3m
|
|
web-2 0/1 Terminating 0 3m
|
|
web-2 0/1 Terminating 0 3m
|
|
```
|
|
|
|
When the `web` StatefulSet was recreated, it first relaunched `web-0`.
|
|
Since `web-1` was already Running and Ready, when `web-0` transitioned to
|
|
Running and Ready, it simply adopted this Pod. Since you recreated the StatefulSet
|
|
with `replicas` equal to 2, once `web-0` had been recreated, and once
|
|
`web-1` had been determined to already be Running and Ready, `web-2` was
|
|
terminated.
|
|
|
|
Let's take another look at the contents of the `index.html` file served by the
|
|
Pods' webservers.
|
|
|
|
```shell
|
|
for i in 0 1; do kubectl exec -it web-$i -- curl localhost; done
|
|
web-0
|
|
web-1
|
|
```
|
|
|
|
Even though you deleted both the StatefulSet and the `web-0` Pod, it still
|
|
serves the hostname originally entered into its `index.html` file. This is
|
|
because the StatefulSet never deletes the PersistentVolumes associated with a
|
|
Pod. When you recreated the StatefulSet and it relaunched `web-0`, its original
|
|
PersistentVolume was remounted.
|
|
|
|
### Cascading Delete
|
|
|
|
In one terminal window, watch the Pods in the StatefulSet.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
```
|
|
|
|
In another terminal, delete the StatefulSet again. This time, omit the
|
|
`--cascade=false` parameter.
|
|
|
|
```shell
|
|
kubectl delete statefulset web
|
|
statefulset "web" deleted
|
|
```
|
|
Examine the output of the `kubectl get` command running in the first terminal,
|
|
and wait for all of the Pods to transition to Terminating.
|
|
|
|
```shell
|
|
kubectl get pods -w -l app=nginx
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Running 0 11m
|
|
web-1 1/1 Running 0 27m
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 1/1 Terminating 0 12m
|
|
web-1 1/1 Terminating 0 29m
|
|
web-0 0/1 Terminating 0 12m
|
|
web-0 0/1 Terminating 0 12m
|
|
web-0 0/1 Terminating 0 12m
|
|
web-1 0/1 Terminating 0 29m
|
|
web-1 0/1 Terminating 0 29m
|
|
web-1 0/1 Terminating 0 29m
|
|
|
|
```
|
|
|
|
As you saw in the [Scaling Down](#scaling-down) section, the Pods
|
|
are terminated one at a time, with respect to the reverse order of their ordinal
|
|
indices. Before terminating a Pod, the StatefulSet controller waits for
|
|
the Pod's successor to be completely terminated.
|
|
|
|
Note that, while a cascading delete will delete the StatefulSet and its Pods,
|
|
it will not delete the Headless Service associated with the StatefulSet. You
|
|
must delete the `nginx` Service manually.
|
|
|
|
```shell
|
|
kubectl delete service nginx
|
|
service "nginx" deleted
|
|
```
|
|
|
|
Recreate the StatefulSet and Headless Service one more time.
|
|
|
|
```shell
|
|
kubectl create -f web.yaml
|
|
service "nginx" created
|
|
statefulset "web" created
|
|
```
|
|
|
|
When all of the StatefulSet's Pods transition to Running and Ready, retrieve
|
|
the contents of their `index.html` files.
|
|
|
|
```shell
|
|
for i in 0 1; do kubectl exec -it web-$i -- curl localhost; done
|
|
web-0
|
|
web-1
|
|
```
|
|
|
|
Even though you completely deleted the StatefulSet, and all of its Pods, the
|
|
Pods are recreated with their PersistentVolumes mounted, and `web-0` and
|
|
`web-1` will still serve their hostnames.
|
|
|
|
Finally delete the `web` StatefulSet and the `nginx` service.
|
|
|
|
```shell
|
|
kubectl delete service nginx
|
|
service "nginx" deleted
|
|
|
|
kubectl delete statefulset web
|
|
statefulset "web" deleted
|
|
```
|
|
|
|
## Pod Management Policy
|
|
|
|
For some distributed systems, the StatefulSet ordering guarantees are
|
|
unnecessary and/or undesirable. These systems require only uniqueness and
|
|
identity. To address this, in Kubernetes 1.7, we introduced
|
|
`.spec.podManagementPolicy` to the StatefulSet API Object.
|
|
|
|
### OrderedReady Pod Management
|
|
|
|
`OrderedReady` pod management is the default for StatefulSets. It tells the
|
|
StatefulSet controller to respect the ordering guarantees demonstrated
|
|
above.
|
|
|
|
### Parallel Pod Management
|
|
|
|
`Parallel` pod management tells the StatefulSet controller to launch or
|
|
terminate all Pods in parallel, and not to wait for Pods to become Running
|
|
and Ready or completely terminated prior to launching or terminating another
|
|
Pod.
|
|
|
|
{% include code.html language="yaml" file="webp.yaml" ghlink="/docs/tutorials/stateful-application/webp.yaml" %}
|
|
|
|
Download the example above, and save it to a file named `webp.yaml`
|
|
|
|
This manifest is identical to the one you downloaded above except that the `.spec.podManagementPolicy`
|
|
of the `web` StatefulSet is set to `Parallel`.
|
|
|
|
In one terminal, watch the Pods in the StatefulSet.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
```
|
|
|
|
In another terminal, create the StatefulSet and Service in the manifest.
|
|
|
|
```shell
|
|
kubectl create -f webp.yaml
|
|
service "nginx" created
|
|
statefulset "web" created
|
|
```
|
|
|
|
Examine the output of the `kubectl get` command that you executed in the first terminal.
|
|
|
|
```shell
|
|
kubectl get po -l app=nginx -w
|
|
NAME READY STATUS RESTARTS AGE
|
|
web-0 0/1 Pending 0 0s
|
|
web-0 0/1 Pending 0 0s
|
|
web-1 0/1 Pending 0 0s
|
|
web-1 0/1 Pending 0 0s
|
|
web-0 0/1 ContainerCreating 0 0s
|
|
web-1 0/1 ContainerCreating 0 0s
|
|
web-0 1/1 Running 0 10s
|
|
web-1 1/1 Running 0 10s
|
|
```
|
|
|
|
The StatefulSet controller launched both `web-0` and `web-1` at the same time.
|
|
|
|
Keep the second terminal open, and, in another terminal window scale the
|
|
StatefulSet.
|
|
|
|
```shell
|
|
kubectl scale statefulset/web --replicas=4
|
|
statefulset "web" scaled
|
|
```
|
|
|
|
Examine the output of the terminal where the `kubectl get` command is running.
|
|
|
|
```shell
|
|
web-3 0/1 Pending 0 0s
|
|
web-3 0/1 Pending 0 0s
|
|
web-3 0/1 Pending 0 7s
|
|
web-3 0/1 ContainerCreating 0 7s
|
|
web-2 1/1 Running 0 10s
|
|
web-3 1/1 Running 0 26s
|
|
```
|
|
|
|
|
|
The StatefulSet controller launched two new Pods, and it did not wait for
|
|
the first to become Running and Ready prior to launching the second.
|
|
|
|
Keep this terminal open, and in another terminal delete the `web` StatefulSet.
|
|
|
|
```shell
|
|
kubectl delete sts web
|
|
```
|
|
|
|
Again, examine the output of the `kubectl get` command running in the other terminal.
|
|
|
|
```shell
|
|
web-3 1/1 Terminating 0 9m
|
|
web-2 1/1 Terminating 0 9m
|
|
web-3 1/1 Terminating 0 9m
|
|
web-2 1/1 Terminating 0 9m
|
|
web-1 1/1 Terminating 0 44m
|
|
web-0 1/1 Terminating 0 44m
|
|
web-0 0/1 Terminating 0 44m
|
|
web-3 0/1 Terminating 0 9m
|
|
web-2 0/1 Terminating 0 9m
|
|
web-1 0/1 Terminating 0 44m
|
|
web-0 0/1 Terminating 0 44m
|
|
web-2 0/1 Terminating 0 9m
|
|
web-2 0/1 Terminating 0 9m
|
|
web-2 0/1 Terminating 0 9m
|
|
web-1 0/1 Terminating 0 44m
|
|
web-1 0/1 Terminating 0 44m
|
|
web-1 0/1 Terminating 0 44m
|
|
web-0 0/1 Terminating 0 44m
|
|
web-0 0/1 Terminating 0 44m
|
|
web-0 0/1 Terminating 0 44m
|
|
web-3 0/1 Terminating 0 9m
|
|
web-3 0/1 Terminating 0 9m
|
|
web-3 0/1 Terminating 0 9m
|
|
```
|
|
|
|
The StatefulSet controller deletes all Pods concurrently, it does not wait for
|
|
a Pod's ordinal successor to terminate prior to deleting that Pod.
|
|
|
|
Close the terminal where the `kubectl get` command is running and delete the `nginx`
|
|
Service.
|
|
|
|
```shell
|
|
kubectl delete svc nginx
|
|
```
|
|
{% endcapture %}
|
|
|
|
{% capture cleanup %}
|
|
You will need to delete the persistent storage media for the PersistentVolumes
|
|
used in this tutorial. Follow the necessary steps, based on your environment,
|
|
storage configuration, and provisioning method, to ensure that all storage is
|
|
reclaimed.
|
|
{% endcapture %}
|
|
|
|
{% include templates/tutorial.md %}
|