312 lines
8.8 KiB
Markdown
312 lines
8.8 KiB
Markdown
# Use Flux to support Helm chart propagation
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[Flux](https://fluxcd.io/) is most useful when used as a deployment tool at the end of a Continuous Delivery Pipeline. Flux will make sure that your new container images and config changes are propagated to the cluster. With Flux, Karmada can easily realize the ability to distribute applications packaged by Helm across clusters. Not only that, with Karmada's OverridePolicy, users can customize applications for specific clusters and manage cross-cluster applications on the unified Karmada Control Plane.
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## Start up Karmada clusters
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To start up Karmada, you can refer to [here](https://github.com/karmada-io/karmada/blob/master/docs/installation/installation.md).
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If you just want to try Karmada, we recommend building a development environment by ```hack/local-up-karmada.sh```.
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```sh
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git clone https://github.com/karmada-io/karmada
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cd karmada
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hack/local-up-karmada.sh
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```
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After that, you will start a Kubernetes cluster by kind to run the Karmada Control Plane and create member clusters managed by Karmada.
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```sh
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kubectl get clusters --kubeconfig ~/.kube/karmada.config
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```
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You can use the command above to check registered clusters, and you will get similar output as follows:
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```
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NAME VERSION MODE READY AGE
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member1 v1.23.4 Push True 7m38s
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member2 v1.23.4 Push True 7m35s
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member3 v1.23.4 Pull True 7m27s
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```
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## Start up Flux
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In the Karmada Control Plane, you need to install Flux CRDs but do not need controllers to reconcile them. They are treated as resource templates, not specific resource instances.
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Based on the work API [here](https://github.com/kubernetes-sigs/work-api), they will be encapsulated as a work object delivered to member clusters and reconciled by Flux controllers in member clusters, finally.
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```sh
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kubectl apply -k github.com/fluxcd/flux2/manifests/crds?ref=main --kubeconfig ~/.kube/karmada.config
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```
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For testing purposes, we'll install Flux on member clusters without storing its manifests in a Git repository:
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```sh
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flux install --kubeconfig ~/.kube/members.config --context member1
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flux install --kubeconfig ~/.kube/members.config --context member2
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```
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Tips:
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1. If you want to manage Helm releases across your fleet of clusters, Flux must be installed on each cluster.
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2. If the Flux toolkit controllers are successfully installed, you should see the following Pods:
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```
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$ kubectl get pod -n flux-system
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NAME READY STATUS RESTARTS AGE
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helm-controller-55896d6ccf-dlf8b 1/1 Running 0 15d
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kustomize-controller-76795877c9-mbrsk 1/1 Running 0 15d
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notification-controller-7ccfbfbb98-lpgjl 1/1 Running 0 15d
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source-controller-6b8d9cb5cc-7dbcb 1/1 Running 0 15d
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```
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## Helm release propagation
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If you want to propagate Helm releases for your apps to member clusters, you can refer to the guide below.
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1. Define a Flux `HelmRepository` and a `HelmRelease` manifest in the Karmada Control Plane. They will serve as resource templates.
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```yaml
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apiVersion: source.toolkit.fluxcd.io/v1beta2
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kind: HelmRepository
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metadata:
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name: podinfo
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spec:
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interval: 1m
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url: https://stefanprodan.github.io/podinfo
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---
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apiVersion: helm.toolkit.fluxcd.io/v2beta1
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kind: HelmRelease
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metadata:
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name: podinfo
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spec:
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interval: 5m
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chart:
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spec:
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chart: podinfo
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version: 5.0.3
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sourceRef:
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kind: HelmRepository
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name: podinfo
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```
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2. Define a Karmada `PropagationPolicy` that will propagate them to member clusters:
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```yaml
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apiVersion: policy.karmada.io/v1alpha1
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kind: PropagationPolicy
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metadata:
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name: helm-repo
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spec:
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resourceSelectors:
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- apiVersion: source.toolkit.fluxcd.io/v1beta2
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kind: HelmRepository
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name: podinfo
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placement:
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clusterAffinity:
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clusterNames:
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- member1
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- member2
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---
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apiVersion: policy.karmada.io/v1alpha1
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kind: PropagationPolicy
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metadata:
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name: helm-release
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spec:
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resourceSelectors:
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- apiVersion: helm.toolkit.fluxcd.io/v2beta1
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kind: HelmRelease
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name: podinfo
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placement:
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clusterAffinity:
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clusterNames:
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- member1
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- member2
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```
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The above configuration is for propagating the Flux objects to member1 and member2 clusters.
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3. Apply those manifests to the Karmada-apiserver:
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```sh
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kubectl apply -f ../helm/ --kubeconfig ~/.kube/karmada.config
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```
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The output is similar to:
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```
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helmrelease.helm.toolkit.fluxcd.io/podinfo created
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helmrepository.source.toolkit.fluxcd.io/podinfo created
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propagationpolicy.policy.karmada.io/helm-release created
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propagationpolicy.policy.karmada.io/helm-repo created
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```
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4. Switch to the distributed cluster and verify:
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```sh
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helm --kubeconfig ~/.kube/members.config --kube-context member1 list
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```
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The output is similar to:
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```
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NAME NAMESPACE REVISION UPDATED STATUS CHART APP VERSION
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podinfo default 1 2022-05-27 01:44:35.24229175 +0000 UTC deployed podinfo-5.0.3 5.0.3
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```
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Based on Karmada's propagation policy, you can schedule Helm releases to your desired cluster flexibly, just like Kubernetes schedules Pods to the desired node.
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## Customize the Helm release for specific clusters
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The example above shows how to propogate the same Helm release to multiple clusters in Karmada. Besides, you can use Karmada's OverridePolicy to customize applications for specific clusters.
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For example, if you just want to change replicas in member1, you can refer to the overridePolicy below.
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1. Define a Karmada `OverridePolicy`:
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```yaml
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apiVersion: policy.karmada.io/v1alpha1
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kind: OverridePolicy
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metadata:
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name: example-override
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namespace: default
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spec:
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resourceSelectors:
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- apiVersion: helm.toolkit.fluxcd.io/v2beta1
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kind: HelmRelease
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name: podinfo
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overrideRules:
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- targetCluster:
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clusterNames:
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- member1
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overriders:
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plaintext:
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- path: "/spec/values"
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operator: add
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value:
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replicaCount: 2
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```
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2. Apply the manifest to the Karmada-apiserver:
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```sh
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kubectl apply -f example-override.yaml --kubeconfig ~/.kube/karmada.config
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```
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The output is similar to:
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```
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overridepolicy.policy.karmada.io/example-override configured
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```
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3. After applying the above policy in the Karmada Control Plane, you will find that replicas in member1 have changed to 2, but those in member2 keep the same.
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```sh
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kubectl --kubeconfig ~/.kube/members.config --context member1 get po
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```
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The output is similar to:
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```
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NAME READY STATUS RESTARTS AGE
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podinfo-68979685bc-6wz6s 1/1 Running 0 6m28s
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podinfo-68979685bc-dz9f6 1/1 Running 0 7m42s
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```
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## Kustomize propagation
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Kustomize propagation is basically the same as helm chart propagation above. You can refer to the guide below.
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1. Define a Flux `GitRepository` and a `Kustomization` manifest in the Karmada Control Plane:
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```yaml
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apiVersion: source.toolkit.fluxcd.io/v1beta2
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kind: GitRepository
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metadata:
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name: podinfo
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spec:
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interval: 1m
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url: https://github.com/stefanprodan/podinfo
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ref:
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branch: master
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---
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apiVersion: kustomize.toolkit.fluxcd.io/v1beta2
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kind: Kustomization
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metadata:
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name: podinfo-dev
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spec:
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interval: 5m
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path: "./deploy/overlays/dev/"
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prune: true
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sourceRef:
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kind: GitRepository
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name: podinfo
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validation: client
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timeout: 80s
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```
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2. Define a Karmada `PropagationPolicy` that will propagate them to member clusters:
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```yaml
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apiVersion: policy.karmada.io/v1alpha1
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kind: PropagationPolicy
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metadata:
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name: kust-release
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spec:
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resourceSelectors:
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- apiVersion: kustomize.toolkit.fluxcd.io/v1beta2
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kind: Kustomization
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name: podinfo-dev
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placement:
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clusterAffinity:
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clusterNames:
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- member1
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- member2
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---
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apiVersion: policy.karmada.io/v1alpha1
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kind: PropagationPolicy
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metadata:
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name: kust-git
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spec:
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resourceSelectors:
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- apiVersion: source.toolkit.fluxcd.io/v1beta2
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kind: GitRepository
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name: podinfo
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placement:
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clusterAffinity:
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clusterNames:
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- member1
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- member2
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```
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3. Apply those YAMLs to the karmada-apiserver:
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```sh
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kubectl apply -f kust/ --kubeconfig ~/.kube/karmada.config
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```
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The output is similar to:
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```
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gitrepository.source.toolkit.fluxcd.io/podinfo created
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kustomization.kustomize.toolkit.fluxcd.io/podinfo-dev created
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propagationpolicy.policy.karmada.io/kust-git created
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propagationpolicy.policy.karmada.io/kust-release created
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```
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4. Switch to the distributed cluster and verify:
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```sh
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kubectl --kubeconfig ~/.kube/members.config --context member1 get pod -n dev
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```
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The output is similar to:
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```
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NAME READY STATUS RESTARTS AGE
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backend-69c7655cb-rbtrq 1/1 Running 0 15s
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cache-bdff5c8dc-mmnbm 1/1 Running 0 15s
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frontend-7f98bf6f85-dw4vq 1/1 Running 0 15s
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```
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## Reference
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- https://fluxcd.io
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- https://github.com/fluxcd |