446 lines
12 KiB
Markdown
446 lines
12 KiB
Markdown
---
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title: 你好,Minikube
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content_type: tutorial
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weight: 5
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menu:
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main:
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title: "Get Started"
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weight: 10
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post: >
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<p>准备好动手操作了么?构建一个简单的 Kubernetes 集群来运行示例应用。</p>
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card:
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name: tutorials
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weight: 10
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---
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<!--
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title: Hello Minikube
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content_type: tutorial
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weight: 5
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menu:
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main:
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title: "Get Started"
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weight: 10
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post: >
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<p>Ready to get your hands dirty? Build a simple Kubernetes cluster that runs a sample app.</p>
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card:
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name: tutorials
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weight: 10
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-->
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<!-- overview -->
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<!--
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This tutorial shows you how to run a sample app
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on Kubernetes using [Minikube](/docs/setup/learning-environment/minikube) and Katacoda.
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Katacoda provides a free, in-browser Kubernetes environment.
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-->
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本教程向你展示如何使用 [Minikube](/zh/docs/setup/learning-environment/minikube) 和 Katacoda
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在 Kubernetes 上运行一个应用示例。Katacoda 提供免费的浏览器内 Kubernetes 环境。
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<!--
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You can also follow this tutorial if you've installed [Minikube locally](/docs/tasks/tools/install-minikube/).
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-->
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{{< note >}}
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如果你已在本地安装 [Minikube](https://minikube.sigs.k8s.io/docs/start/),也可以按照本教程操作。
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{{< /note >}}
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## {{% heading "objectives" %}}
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<!--
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* Deploy a sample application to Minikube.
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* Run the app.
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* View application logs.
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-->
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* 将一个示例应用部署到 Minikube。
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* 运行应用程序。
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* 查看应用日志
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## {{% heading "prerequisites" %}}
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<!--
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This tutorial provides a container image that uses NGINX to echo back all the requests.
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-->
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本教程提供了容器镜像,使用 NGINX 来对所有请求做出回应:
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<!-- lessoncontent -->
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<!--
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## Create a Minikube cluster
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1. Click **Launch Terminal**
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-->
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## 创建 Minikube 集群
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1. 点击 **启动终端**
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{{< kat-button >}}
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<!-- If you installed Minikube locally, run `minikube start`.-->
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{{< note >}}
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如果你在本地安装了 Minikube,运行 `minikube start`。
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{{< /note >}}
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<!--
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2. Open the Kubernetes dashboard in a browser:
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-->
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2. 在浏览器中打开 Kubernetes 仪表板(Dashboard):
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```shell
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minikube dashboard
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```
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<!--
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3. Katacoda environment only: At the top of the terminal pane, click the plus sign, and then click **Select port to view on Host 1**.
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4. Katacoda environment only: Type `30000`, and then click **Display Port**.
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-->
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3. 仅限 Katacoda 环境:在终端窗口的顶部,单击加号,然后单击 **选择要在主机 1 上查看的端口**。
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4. 仅限 Katacoda 环境:输入“30000”,然后单击 **显示端口**。
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<!--
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## Create a Deployment
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A Kubernetes [*Pod*](/docs/concepts/workloads/pods/pod/) is a group of one or more Containers,
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tied together for the purposes of administration and networking. The Pod in this
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tutorial has only one Container. A Kubernetes
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[*Deployment*](/docs/concepts/workloads/controllers/deployment/) checks on the health of your
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Pod and restarts the Pod's Container if it terminates. Deployments are the
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recommended way to manage the creation and scaling of Pods.
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-->
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## 创建 Deployment
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Kubernetes [*Pod*](/zh/docs/concepts/workloads/pods/pod/) 是由一个或多个
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为了管理和联网而绑定在一起的容器构成的组。 本教程中的 Pod 只有一个容器。
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Kubernetes [*Deployment*](/zh/docs/concepts/workloads/controllers/deployment/)
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检查 Pod 的健康状况,并在 Pod 中的容器终止的情况下重新启动新的容器。
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Deployment 是管理 Pod 创建和扩展的推荐方法。
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<!--
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1. Use the `kubectl create` command to create a Deployment that manages a Pod. The
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Pod runs a Container based on the provided Docker image.
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-->
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1. 使用 `kubectl create` 命令创建管理 Pod 的 Deployment。该 Pod 根据提供的 Docker
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镜像运行 Container。
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```shell
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kubectl create deployment hello-node --image=k8s.gcr.io/echoserver:1.4
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```
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<!--
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2. View the Deployment:
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-->
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2. 查看 Deployment:
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```shell
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kubectl get deployments
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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NAME READY UP-TO-DATE AVAILABLE AGE
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hello-node 1/1 1 1 1m
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```
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<!--
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3. View the Pod:
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-->
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3. 查看 Pod:
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```shell
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kubectl get pods
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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NAME READY STATUS RESTARTS AGE
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hello-node-5f76cf6ccf-br9b5 1/1 Running 0 1m
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```
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<!--
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4. View cluster events:
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-->
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4. 查看集群事件:
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```shell
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kubectl get events
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```
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<!--
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5. View the `kubectl` configuration:
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-->
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5. 查看 `kubectl` 配置:
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```shell
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kubectl config view
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```
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<!--
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For more information about `kubectl`commands, see the
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[kubectl overview](/docs/user-guide/kubectl-overview/).
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-->
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{{< note >}}
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有关 kubectl 命令的更多信息,请参阅 [kubectl 概述](/zh/docs/user-guide/kubectl-overview/)。
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{{< /note >}}
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<!--
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## Create a Service
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By default, the Pod is only accessible by its internal IP address within the
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Kubernetes cluster. To make the `hello-node` Container accessible from outside the
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Kubernetes virtual network, you have to expose the Pod as a
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Kubernetes [*Service*](/docs/concepts/services-networking/service/).
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-->
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## 创建 Service
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默认情况下,Pod 只能通过 Kubernetes 集群中的内部 IP 地址访问。
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要使得 `hello-node` 容器可以从 Kubernetes 虚拟网络的外部访问,你必须将 Pod
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暴露为 Kubernetes [*Service*](/zh/docs/concepts/services-networking/service/)。
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<!--
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1. Expose the Pod to the public internet using the `kubectl expose` command:
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-->
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1. 使用 `kubectl expose` 命令将 Pod 暴露给公网:
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```shell
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kubectl expose deployment hello-node --type=LoadBalancer --port=8080
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```
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<!--
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The `-type=LoadBalancer` flag indicates that you want to expose your Service
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outside of the cluster.
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-->
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这里的 `--type=LoadBalancer` 标志表明你希望将你的 Service 暴露到集群外部。
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<!--
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2. View the Service you just created:
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-->
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2. 查看你刚刚创建的 Service:
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```shell
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kubectl get services
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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NAME TYPE CLUSTER-IP EXTERNAL-IP PORT(S) AGE
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hello-node LoadBalancer 10.108.144.78 <pending> 8080:30369/TCP 21s
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kubernetes ClusterIP 10.96.0.1 <none> 443/TCP 23m
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```
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<!--
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On cloud providers that support load balancers,
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an external IP address would be provisioned to access the Service. On Minikube,
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the `LoadBalancer` type makes the Service accessible through the `minikube service`
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command.
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-->
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对于支持负载均衡器的云服务平台而言,平台将提供一个外部 IP 来访问该服务。
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在 Minikube 上,`LoadBalancer` 使得服务可以通过命令 `minikube service` 访问。
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<!--
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3. Run the following command:
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-->
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3. 运行下面的命令:
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```shell
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minikube service hello-node
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```
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<!--
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4. Katacoda environment only: Click the plus sign, and then click **Select port to view on Host 1**.
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-->
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4. 仅限 Katacoda 环境:单击加号,然后单击 **选择要在主机 1 上查看的端口**。
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<!--
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5. Katacoda environment only: Note the 5 digit port number displayed opposite to `8080` in services output. This port number is randomly generated and it can be different for you. Type your number in the port number text box, then click Display Port. Using the example from earlier, you would type `30369`.
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This opens up a browser window that serves your app and shows the app's response.
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-->
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5. 仅限 Katacoda 环境:请注意在 service 输出中与 `8080` 对应的长度为 5 位的端口号。
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此端口号是随机生成的,可能与你的不同。
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在端口号文本框中输入你自己的端口号,然后单击显示端口。
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对应于上面的例子,需要输入 `30369`。
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这将打开一个浏览器窗口,为你的应用程序提供服务并显示应用的响应。
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<!--
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## Enable addons
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Minikube has a set of built-in {{< glossary_tooltip text="addons" term_id="addons" >}} that can be enabled, disabled and opened in the local Kubernetes environment.
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1. List the currently supported addons:
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-->
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## 启用插件
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Minikube 有一组内置的 {{< glossary_tooltip text="插件" term_id="addons" >}},
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可以在本地 Kubernetes 环境中启用、禁用和打开。
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1. 列出当前支持的插件:
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```shell
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minikube addons list
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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addon-manager: enabled
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dashboard: enabled
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default-storageclass: enabled
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efk: disabled
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freshpod: disabled
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gvisor: disabled
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helm-tiller: disabled
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ingress: disabled
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ingress-dns: disabled
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logviewer: disabled
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metrics-server: disabled
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nvidia-driver-installer: disabled
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nvidia-gpu-device-plugin: disabled
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registry: disabled
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registry-creds: disabled
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storage-provisioner: enabled
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storage-provisioner-gluster: disabled
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```
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<!--
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2. Enable an addon, for example, `metrics-server`:
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-->
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2. 启用插件,例如 `metrics-server`:
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```shell
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minikube addons enable metrics-server
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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metrics-server was successfully enabled
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```
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<!--
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3. View the Pod and Service you just created:
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-->
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3. 查看刚才创建的 Pod 和 Service:
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```shell
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kubectl get pod,svc -n kube-system
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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NAME READY STATUS RESTARTS AGE
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pod/coredns-5644d7b6d9-mh9ll 1/1 Running 0 34m
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pod/coredns-5644d7b6d9-pqd2t 1/1 Running 0 34m
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pod/metrics-server-67fb648c5 1/1 Running 0 26s
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pod/etcd-minikube 1/1 Running 0 34m
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pod/influxdb-grafana-b29w8 2/2 Running 0 26s
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pod/kube-addon-manager-minikube 1/1 Running 0 34m
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pod/kube-apiserver-minikube 1/1 Running 0 34m
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pod/kube-controller-manager-minikube 1/1 Running 0 34m
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pod/kube-proxy-rnlps 1/1 Running 0 34m
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pod/kube-scheduler-minikube 1/1 Running 0 34m
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pod/storage-provisioner 1/1 Running 0 34m
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NAME TYPE CLUSTER-IP EXTERNAL-IP PORT(S) AGE
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service/metrics-server ClusterIP 10.96.241.45 <none> 80/TCP 26s
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service/kube-dns ClusterIP 10.96.0.10 <none> 53/UDP,53/TCP 34m
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service/monitoring-grafana NodePort 10.99.24.54 <none> 80:30002/TCP 26s
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service/monitoring-influxdb ClusterIP 10.111.169.94 <none> 8083/TCP,8086/TCP 26s
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```
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<!--
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4. Disable `metrics-server`:
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-->
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4. 禁用 `metrics-server`:
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```shell
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minikube addons disable metrics-server
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```
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<!--
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The output is similar to:
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-->
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输出结果类似于这样:
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```
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metrics-server was successfully disabled
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```
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<!--
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## Clean up
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Now you can clean up the resources you created in your cluster:
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-->
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## 清理
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现在可以清理你在集群中创建的资源:
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```shell
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kubectl delete service hello-node
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kubectl delete deployment hello-node
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```
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<!--
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Optionally, stop the Minikube virtual machine (VM):
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-->
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可选地,停止 Minikube 虚拟机(VM):
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```shell
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minikube stop
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```
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<!--
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Optionally, delete the Minikube VM:
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-->
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可选地,删除 Minikube 虚拟机(VM):
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```shell
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minikube delete
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```
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|
||
## {{% heading "whatsnext" %}}
|
||
|
||
<!--
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* Learn more about [Deployment objects](/docs/concepts/workloads/controllers/deployment/).
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* Learn more about [Deploying applications](/docs/tasks/run-application/run-stateless-application-deployment/).
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* Learn more about [Service objects](/docs/concepts/services-networking/service/).
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-->
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* 进一步了解 [Deployment 对象](/zh/docs/concepts/workloads/controllers/deployment/)。
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* 进一步了解[部署应用](/zh/docs/tasks/run-application/run-stateless-application-deployment/)。
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* 进一步了解 [Service 对象](/zh/docs/concepts/services-networking/service/)。
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|