861 lines
34 KiB
Markdown
861 lines
34 KiB
Markdown
---
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title: Ingress
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content_type: concept
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weight: 40
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---
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<!--
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title: Ingress
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content_type: concept
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weight: 40
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-->
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<!-- overview -->
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{{< feature-state for_k8s_version="v1.1" state="beta" >}}
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{{< glossary_definition term_id="ingress" length="all" >}}
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<!-- body -->
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<!--
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## Terminology
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-->
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## 术语
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<!--
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For clarity, this guide defines the following terms:
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-->
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为了表达更加清晰,本指南定义了以下术语:
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<!--
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* Node: A worker machine in Kubernetes, part of a cluster.
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* Cluster: A set of Nodes that run containerized applications managed by Kubernetes. For this example, and in most common Kubernetes deployments, nodes in the cluster are not part of the public internet.
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* Edge router: A router that enforces the firewall policy for your cluster. This could be a gateway managed by a cloud provider or a physical piece of hardware.
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* Cluster network: A set of links, logical or physical, that facilitate communication within a cluster according to the Kubernetes [networking model](/docs/concepts/cluster-administration/networking/).
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* Service: A Kubernetes {{< glossary_tooltip term_id="service" >}} that identifies a set of Pods using {{< glossary_tooltip text="label" term_id="label" >}} selectors. Unless mentioned otherwise, Services are assumed to have virtual IPs only routable within the cluster network.
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-->
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* 节点(Node): Kubernetes 集群中其中一台工作机器,是集群的一部分。
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* 集群(Cluster): 一组运行由 Kubernetes 管理的容器化应用程序的节点。
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在此示例和在大多数常见的 Kubernetes 部署环境中,集群中的节点都不在公共网络中。
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* 边缘路由器(Edge router): 在集群中强制执行防火墙策略的路由器(router)。可以是由云提供商管理的网关,也可以是物理硬件。
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* 集群网络(Cluster network): 一组逻辑的或物理的连接,根据 Kubernetes
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[网络模型](/zh/docs/concepts/cluster-administration/networking/) 在集群内实现通信。
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* 服务(Service):Kubernetes {{< glossary_tooltip text="服务" term_id="service" >}}使用
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{{< glossary_tooltip text="标签" term_id="label" >}} 选择算符(selectors)标识的一组 Pod。
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除非另有说明,否则假定服务只具有在集群网络中可路由的虚拟 IP。
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<!--
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## What is Ingress?
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-->
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## Ingress 是什么?
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<!--
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[Ingress](/docs/reference/generated/kubernetes-api/{{< param "version" >}}/#ingress-v1beta1-networking-k8s-io) exposes HTTP and HTTPS routes from outside the cluster to
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{{< link text="services" url="/docs/concepts/services-networking/service/" >}} within the cluster.
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Traffic routing is controlled by rules defined on the Ingress resource.
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-->
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[Ingress](/docs/reference/generated/kubernetes-api/{{< param "version" >}}/#ingress-v1beta1-networking-k8s-io)
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公开了从集群外部到集群内[服务](/zh/docs/concepts/services-networking/service/)的 HTTP 和 HTTPS 路由。
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流量路由由 Ingress 资源上定义的规则控制。
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```none
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internet
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[ Ingress ]
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--|-----|--
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[ Services ]
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```
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<!--
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An Ingress may be configured to give Services externally-reachable URLs, load balance traffic, terminate SSL / TLS, and offer name based virtual hosting. An [Ingress controller](/docs/concepts/services-networking/ingress-controllers) is responsible for fulfilling the Ingress, usually with a load balancer, though it may also configure your edge router or additional frontends to help handle the traffic.
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-->
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可以将 Ingress 配置为服务提供外部可访问的 URL、负载均衡流量、终止 SSL/TLS,以及提供基于名称的虚拟主机等能力。
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[Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers)
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通常负责通过负载均衡器来实现 Ingress,尽管它也可以配置边缘路由器或其他前端来帮助处理流量。
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<!--
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An Ingress does not expose arbitrary ports or protocols. Exposing services other than HTTP and HTTPS to the internet typically
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uses a service of type [Service.Type=NodePort](/docs/concepts/services-networking/service/#nodeport) or
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[Service.Type=LoadBalancer](/docs/concepts/services-networking/service/#loadbalancer).
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-->
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Ingress 不会公开任意端口或协议。
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将 HTTP 和 HTTPS 以外的服务公开到 Internet 时,通常使用
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[Service.Type=NodePort](/zh/docs/concepts/services-networking/service/#nodeport)
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或 [Service.Type=LoadBalancer](/zh/docs/concepts/services-networking/service/#loadbalancer)
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类型的服务。
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<!--
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## Prerequisites
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You must have an [ingress controller](/docs/concepts/services-networking/ingress-controllers) to satisfy an Ingress. Only creating an Ingress resource has no effect.
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-->
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## 环境准备
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你必须具有 [Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers) 才能满足 Ingress 的要求。
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仅创建 Ingress 资源本身没有任何效果。
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<!--
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You may need to deploy an Ingress controller such as [ingress-nginx](https://kubernetes.github.io/ingress-nginx/deploy/). You can choose from a number of
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[Ingress controllers](/docs/concepts/services-networking/ingress-controllers).
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-->
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你可能需要部署 Ingress 控制器,例如 [ingress-nginx](https://kubernetes.github.io/ingress-nginx/deploy/)。
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你可以从许多 [Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers) 中进行选择。
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<!--
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Ideally, all Ingress controllers should fit the reference specification. In reality, the various Ingress
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controllers operate slightly differently.
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-->
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理想情况下,所有 Ingress 控制器都应符合参考规范。但实际上,不同的 Ingress 控制器操作略有不同。
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<!--
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Make sure you review your Ingress controller's documentation to understand the caveats of choosing it.
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-->
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{{< note >}}
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确保您查看了 Ingress 控制器的文档,以了解选择它的注意事项。
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{{< /note >}}
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<!--
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## The Ingress Resource
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A minimal Ingress resource example:
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-->
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## Ingress 资源
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一个最小的 Ingress 资源示例:
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```yaml
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apiVersion: networking.k8s.io/v1beta1
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kind: Ingress
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metadata:
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name: test-ingress
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annotations:
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nginx.ingress.kubernetes.io/rewrite-target: /
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spec:
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rules:
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- http:
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paths:
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- path: /testpath
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pathType: Prefix
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backend:
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serviceName: test
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servicePort: 80
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```
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<!--
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As with all other Kubernetes resources, an Ingress needs `apiVersion`, `kind`, and `metadata` fields.
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The name of an Ingress object must be a valid
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[DNS subdomain name](/docs/concepts/overview/working-with-objects/names#dns-subdomain-names).
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For general information about working with config files, see [deploying applications](/docs/tasks/run-application/run-stateless-application-deployment/), [configuring containers](/docs/tasks/configure-pod-container/configure-pod-configmap/), [managing resources](/docs/concepts/cluster-administration/manage-deployment/).
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Ingress frequently uses annotations to configure some options depending on the Ingress controller, an example of which
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is the [rewrite-target annotation](https://github.com/kubernetes/ingress-nginx/blob/master/docs/examples/rewrite/README.md).
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Different [Ingress controller](/docs/concepts/services-networking/ingress-controllers) support different annotations. Review the documentation for
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your choice of Ingress controller to learn which annotations are supported.
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-->
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与所有其他 Kubernetes 资源一样,Ingress 需要使用 `apiVersion`、`kind` 和 `metadata` 字段。
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Ingress 对象的命名必须是合法的 [DNS 子域名名称](/zh/docs/concepts/overview/working-with-objects/names#dns-subdomain-names)。
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有关使用配置文件的一般信息,请参见[部署应用](/zh/docs/tasks/run-application/run-stateless-application-deployment/)、
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[配置容器](/zh/docs/tasks/configure-pod-container/configure-pod-configmap/)、
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[管理资源](/zh/docs/concepts/cluster-administration/manage-deployment/)。
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Ingress 经常使用注解(annotations)来配置一些选项,具体取决于 Ingress 控制器,例如
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[重写目标注解](https://github.com/kubernetes/ingress-nginx/blob/master/docs/examples/rewrite/README.md)。
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不同的 [Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers)
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支持不同的注解。查看文档以供您选择 Ingress 控制器,以了解支持哪些注解。
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<!--
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The Ingress [spec](https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status)
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has all the information needed to configure a load balancer or proxy server. Most importantly, it
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contains a list of rules matched against all incoming requests. Ingress resource only supports rules
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for directing HTTP traffic.
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-->
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Ingress [规约](https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status)
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提供了配置负载均衡器或者代理服务器所需的所有信息。
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最重要的是,其中包含与所有传入请求匹配的规则列表。
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Ingress 资源仅支持用于转发 HTTP 流量的规则。
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<!--
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### Ingress rules
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-->
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### Ingress 规则 {#ingress-rules}
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<!--
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Each HTTP rule contains the following information:
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-->
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每个 HTTP 规则都包含以下信息:
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<!--
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* An optional host. In this example, no host is specified, so the rule applies to all inbound
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HTTP traffic through the IP address specified. If a host is provided (for example,
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foo.bar.com), the rules apply to that host.
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* A list of paths (for example, `/testpath`), each of which has an associated backend defined with a `serviceName`
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and `servicePort`. Both the host and path must match the content of an incoming request before the
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load balancer directs traffic to the referenced Service.
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* A backend is a combination of Service and port names as described in the
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[Service doc](/docs/concepts/services-networking/service/). HTTP (and HTTPS) requests to the
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Ingress that matches the host and path of the rule are sent to the listed backend.
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-->
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* 可选主机。在此示例中,未指定主机,因此该规则适用于通过指定 IP 地址的所有入站 HTTP 通信。
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如果提供了主机(例如 foo.bar.com),则规则适用于该主机。
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* 路径列表(例如,`/testpath`),每个路径都有一个由 `serviceName` 和 `servicePort` 定义的关联后端。
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在负载均衡器将流量定向到引用的服务之前,主机和路径都必须匹配传入请求的内容。
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* 后端是 [Service 文档](/zh/docs/concepts/services-networking/service/)中所述的服务和端口名称的组合。
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与规则的主机和路径匹配的对 Ingress 的 HTTP(和 HTTPS )请求将发送到列出的后端。
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<!--
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A default backend is often configured in an Ingress controller to service any requests that do not
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match a path in the spec.
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-->
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通常在 Ingress 控制器中会配置默认后端,以服务任何不符合规范中路径的请求。
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<!--
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### Default Backend
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An Ingress with no rules sends all traffic to a single default backend. The default
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backend is typically a configuration option of the [Ingress controller](/docs/concepts/services-networking/ingress-controllers) and is not specified in your Ingress resources.
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-->
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### 默认后端
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没有规则的 Ingress 将所有流量发送到同一个默认后端。
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默认后端通常是 [Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers)
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的配置选项,并且未在 Ingress 资源中指定。
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<!--
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If none of the hosts or paths match the HTTP request in the Ingress objects, the traffic is
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routed to your default backend.
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-->
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如果主机或路径都没有与 Ingress 对象中的 HTTP 请求匹配,则流量将路由到默认后端。
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<!--
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### Path Types
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Each path in an Ingress has a corresponding path type. There are three supported
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path types:
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-->
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### 路径类型 {#path-types}
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Ingress 中的每个路径都有对应的路径类型。当前支持的路径类型有三种:
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<!--
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* _`ImplementationSpecific`_ (default): With this path type, matching is up to
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the IngressClass. Implementations can treat this as a separate `pathType` or
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treat it identically to `Prefix` or `Exact` path types.
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* _`Exact`_: Matches the URL path exactly and with case sensitivity.
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* _`Prefix`_: Matches based on a URL path prefix split by `/`. Matching is case
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sensitive and done on a path element by element basis. A path element refers
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to the list of labels in the path split by the `/` separator. A request is a
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match for path _p_ if every _p_ is an element-wise prefix of _p_ of the
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request path.
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If the last element of the path is a substring of the
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last element in request path, it is not a match (for example:
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`/foo/bar` matches`/foo/bar/baz`, but does not match `/foo/barbaz`).
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-->
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* _`ImplementationSpecific`_ (默认):对于这种类型,匹配取决于 IngressClass。
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具体实现可以将其作为单独的 `pathType` 处理或者与 `Prefix` 或 `Exact` 类型作相同处理。
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* _`Exact`_:精确匹配 URL 路径,且对大小写敏感。
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* _`Prefix`_:基于以 `/` 分隔的 URL 路径前缀匹配。匹配对大小写敏感,并且对路径中的元素逐个完成。
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路径元素指的是由 `/` 分隔符分隔的路径中的标签列表。
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如果每个 _p_ 都是请求路径 _p_ 的元素前缀,则请求与路径 _p_ 匹配。
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{{< note >}}
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如果路径的最后一个元素是请求路径中最后一个元素的子字符串,则不会匹配
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(例如:`/foo/bar` 匹配 `/foo/bar/baz`, 但不匹配 `/foo/barbaz`)。
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{{< /note >}}
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<!--
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#### Multiple Matches
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In some cases, multiple paths within an Ingress will match a request. In those
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cases precedence will be given first to the longest matching path. If two paths
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are still equally matched, precedence will be given to paths with an exact path
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type over prefix path type.
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-->
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#### 多重匹配 {#multiple-matches}
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在某些情况下,Ingress 中的多条路径会匹配同一个请求。
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这种情况下最长的匹配路径优先。
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如果仍然有两条同等的匹配路径,则精确路径类型优先于前缀路径类型。
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<!--
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## Ingress Class
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Ingresses can be implemented by different controllers, often with different
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configuration. Each Ingress should specify a class, a reference to an
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IngressClass resource that contains additional configuration including the name
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of the controller that should implement the class.
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-->
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## Ingress 类 {#ingress-class}
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Ingress 可以由不同的控制器实现,通常使用不同的配置。
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每个 Ingress 应当指定一个类,也就是一个对 IngressClass 资源的引用。
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IngressClass 资源包含额外的配置,其中包括应当实现该类的控制器名称。
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```yaml
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apiVersion: networking.k8s.io/v1beta1
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kind: IngressClass
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metadata:
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name: external-lb
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spec:
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controller: example.com/ingress-controller
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parameters:
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apiGroup: k8s.example.com/v1alpha
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kind: IngressParameters
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name: external-lb
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```
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<!--
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IngressClass resources contain an optional parameters field. This can be used to
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reference additional configuration for this class.
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-->
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IngressClass 资源包含一个可选的参数字段,可用于为该类引用额外配置。
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<!--
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### Deprecated Annotation
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Before the IngressClass resource and `ingressClassName` field were added in
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Kubernetes 1.18, Ingress classes were specified with a
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`kubernetes.io/ingress.class` annotation on the Ingress. This annotation was
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never formally defined, but was widely supported by Ingress controllers.
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-->
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### 废弃的注解
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在 Kubernetes 1.18 版本引入 IngressClass 资源和 `ingressClassName` 字段之前,
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Ingress 类是通过 Ingress 中的一个 `kubernetes.io/ingress.class` 注解来指定的。
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这个注解从未被正式定义过,但是得到了 Ingress 控制器的广泛支持。
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<!--
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The newer `ingressClassName` field on Ingresses is a replacement for that
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annotation, but is not a direct equivalent. While the annotation was generally
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used to reference the name of the Ingress controller that should implement the
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Ingress, the field is a reference to an IngressClass resource that contains
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additional Ingress configuration, including the name of the Ingress controller.
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-->
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Ingress 中新的 `ingressClassName` 字段是该注解的替代品,但并非完全等价。
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该注解通常用于引用实现该 Ingress 的控制器的名称,
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而这个新的字段则是对一个包含额外 Ingress 配置的 IngressClass 资源的引用,
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包括 Ingress 控制器的名称。
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<!--
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### Default Ingress Class
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You can mark a particular IngressClass as default for your cluster. Setting the
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`ingressclass.kubernetes.io/is-default-class` annotation to `true` on an
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IngressClass resource will ensure that new Ingresses without an
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`ingressClassName` field specified will be assigned this default IngressClass.
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-->
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### 默认 Ingress 类 {#default-ingress-class}
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您可以将一个特定的 IngressClass 标记为集群默认选项。
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将一个 IngressClass 资源的 `ingressclass.kubernetes.io/is-default-class` 注解设置为
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`true` 将确保新的未指定 `ingressClassName` 字段的 Ingress 能够分配为这个默认的
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IngressClass.
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<!--
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If you have more than one IngressClass marked as the default for your cluster,
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the admission controller prevents creating new Ingress objects that don't have
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an `ingressClassName` specified. You can resolve this by ensuring that at most 1
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IngressClasess are marked as default in your cluster.
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-->
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{{< caution >}}
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如果集群中有多个 IngressClass 被标记为默认,准入控制器将阻止创建新的未指定 `ingressClassName`
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的 Ingress 对象。
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解决这个问题只需确保集群中最多只能有一个 IngressClass 被标记为默认。
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{{< /caution >}}
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<!--
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## Types of Ingress
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### Single Service Ingress
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There are existing Kubernetes concepts that allow you to expose a single Service
|
||
(see [alternatives](#alternatives)). You can also do this with an Ingress by specifying a
|
||
*default backend* with no rules.
|
||
-->
|
||
## Ingress 类型 {#types-of-ingress}
|
||
|
||
### 单服务 Ingress {#single-service-ingress}
|
||
|
||
现有的 Kubernetes 概念允许您暴露单个 Service (查看[替代方案](#alternatives))。
|
||
你也可以通过指定无规则的 *默认后端* 来对 Ingress 进行此操作。
|
||
|
||
{{< codenew file="service/networking/ingress.yaml" >}}
|
||
|
||
<!--
|
||
If you create it using `kubectl apply -f` you should be able to view the state
|
||
of the Ingress you just added:
|
||
-->
|
||
如果使用 `kubectl apply -f` 创建它,则应该能够查看刚刚添加的 Ingress 的状态:
|
||
|
||
```shell
|
||
kubectl get ingress test-ingress
|
||
```
|
||
|
||
```
|
||
NAME HOSTS ADDRESS PORTS AGE
|
||
test-ingress * 203.0.113.123 80 59s
|
||
```
|
||
|
||
<!--
|
||
Where `203.0.113.123` is the IP allocated by the Ingress controller to satisfy
|
||
this Ingress.
|
||
-->
|
||
其中 `203.0.113.123` 是由 Ingress 控制器分配以满足该 Ingress 的 IP。
|
||
|
||
<!--
|
||
Ingress controllers and load balancers may take a minute or two to allocate an IP address.
|
||
Until that time, you often see the address listed as `<pending>`.
|
||
-->
|
||
{{< note >}}
|
||
入口控制器和负载平衡器可能需要一两分钟才能分配 IP 地址。在此之前,您通常会看到地址字段的值被设定为
|
||
`<pending>`。
|
||
{{< /note >}}
|
||
|
||
<!--
|
||
### Simple fanout
|
||
|
||
A fanout configuration routes traffic from a single IP address to more than one Service,
|
||
based on the HTTP URI being requested. An Ingress allows you to keep the number of load balancers
|
||
down to a minimum. For example, a setup like:
|
||
-->
|
||
### 简单分列
|
||
|
||
一个分列配置根据请求的 HTTP URI 将流量从单个 IP 地址路由到多个服务。
|
||
Ingress 允许您将负载均衡器的数量降至最低。例如,这样的设置:
|
||
|
||
```none
|
||
foo.bar.com -> 178.91.123.132 -> / foo service1:4200
|
||
/ bar service2:8080
|
||
```
|
||
|
||
<!--
|
||
would require an Ingress such as:
|
||
-->
|
||
将需要一个如下所示的 Ingress:
|
||
|
||
```yaml
|
||
apiVersion: networking.k8s.io/v1beta1
|
||
kind: Ingress
|
||
metadata:
|
||
name: simple-fanout-example
|
||
annotations:
|
||
nginx.ingress.kubernetes.io/rewrite-target: /
|
||
spec:
|
||
rules:
|
||
- host: foo.bar.com
|
||
http:
|
||
paths:
|
||
- path: /foo
|
||
backend:
|
||
serviceName: service1
|
||
servicePort: 4200
|
||
- path: /bar
|
||
backend:
|
||
serviceName: service2
|
||
servicePort: 8080
|
||
```
|
||
|
||
<!--
|
||
When you create the Ingress with `kubectl apply -f`:
|
||
-->
|
||
当你使用 `kubectl apply -f` 创建 Ingress 时:
|
||
|
||
```shell
|
||
kubectl describe ingress simple-fanout-example
|
||
```
|
||
|
||
```
|
||
Name: simple-fanout-example
|
||
Namespace: default
|
||
Address: 178.91.123.132
|
||
Default backend: default-http-backend:80 (10.8.2.3:8080)
|
||
Rules:
|
||
Host Path Backends
|
||
---- ---- --------
|
||
foo.bar.com
|
||
/foo service1:4200 (10.8.0.90:4200)
|
||
/bar service2:8080 (10.8.0.91:8080)
|
||
Annotations:
|
||
nginx.ingress.kubernetes.io/rewrite-target: /
|
||
Events:
|
||
Type Reason Age From Message
|
||
---- ------ ---- ---- -------
|
||
Normal ADD 22s loadbalancer-controller default/test
|
||
```
|
||
|
||
<!--
|
||
The Ingress controller provisions an implementation-specific load balancer
|
||
that satisfies the Ingress, as long as the Services (`service1`, `service2`) exist.
|
||
When it has done so, you can see the address of the load balancer at the
|
||
Address field.
|
||
-->
|
||
Ingress 控制器将提供实现特定的负载均衡器来满足 Ingress,只要 Service (`service1`,`service2`) 存在。
|
||
当它这样做了,你会在地址字段看到负载均衡器的地址。
|
||
|
||
<!--
|
||
Depending on the [Ingress controller](/docs/concepts/services-networking/ingress-controllers)
|
||
you are using, you may need to create a default-http-backend
|
||
[Service](/docs/concepts/services-networking/service/).
|
||
-->
|
||
{{< note >}}
|
||
取决于你使用的 [Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers),
|
||
你可能需要创建默认 HTTP 后端[服务](/zh/docs/concepts/services-networking/service/)。
|
||
{{< /note >}}
|
||
|
||
<!--
|
||
### Name based virtual hosting
|
||
|
||
Name-based virtual hosts support routing HTTP traffic to multiple host names at the same IP address.
|
||
-->
|
||
### 基于名称的虚拟托管
|
||
|
||
基于名称的虚拟主机支持将针对多个主机名的 HTTP 流量路由到同一 IP 地址上。
|
||
|
||
```none
|
||
foo.bar.com --| |-> foo.bar.com service1:80
|
||
| 178.91.123.132 |
|
||
bar.foo.com --| |-> bar.foo.com service2:80
|
||
```
|
||
|
||
<!--
|
||
The following Ingress tells the backing load balancer to route requests based on
|
||
the [Host header](https://tools.ietf.org/html/rfc7230#section-5.4).
|
||
-->
|
||
以下 Ingress 让后台负载均衡器基于[host 头部字段](https://tools.ietf.org/html/rfc7230#section-5.4)
|
||
来路由请求。
|
||
|
||
```yaml
|
||
apiVersion: networking.k8s.io/v1beta1
|
||
kind: Ingress
|
||
metadata:
|
||
name: name-virtual-host-ingress
|
||
spec:
|
||
rules:
|
||
- host: foo.bar.com
|
||
http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service1
|
||
servicePort: 80
|
||
- host: bar.foo.com
|
||
http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service2
|
||
servicePort: 80
|
||
```
|
||
|
||
<!--
|
||
If you create an Ingress resource without any hosts defined in the rules, then any
|
||
web traffic to the IP address of your Ingress controller can be matched without a name based
|
||
virtual host being required.
|
||
-->
|
||
如果您创建的 Ingress 资源没有规则中定义的任何主机,则可以匹配指向 Ingress 控制器 IP 地址
|
||
的任何网络流量,而无需基于名称的虚拟主机。
|
||
|
||
<!--
|
||
For example, the following Ingress resource will route traffic
|
||
requested for `first.bar.com` to `service1`, `second.foo.com` to `service2`, and any traffic
|
||
to the IP address without a hostname defined in request (that is, without a request header being
|
||
presented) to `service3`.
|
||
-->
|
||
例如,以下 Ingress 资源会将 `first.bar.com` 请求的流量路由到 `service1`,
|
||
将 `second.foo.com` 请求的流量路由到 `service2`,
|
||
而没有在请求中定义主机名的 IP 地址的流量路由(即,不提供请求标头)到 `service3`。
|
||
|
||
```yaml
|
||
apiVersion: networking.k8s.io/v1beta1
|
||
kind: Ingress
|
||
metadata:
|
||
name: name-virtual-host-ingress
|
||
spec:
|
||
rules:
|
||
- host: first.bar.com
|
||
http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service1
|
||
servicePort: 80
|
||
- host: second.foo.com
|
||
http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service2
|
||
servicePort: 80
|
||
- http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service3
|
||
servicePort: 80
|
||
```
|
||
|
||
<!--
|
||
### TLS
|
||
|
||
You can secure an Ingress by specifying a {{< glossary_tooltip term_id="secret" >}}
|
||
that contains a TLS private key and certificate. Currently the Ingress only
|
||
supports a single TLS port, 443, and assumes TLS termination. If the TLS
|
||
configuration section in an Ingress specifies different hosts, they are
|
||
multiplexed on the same port according to the hostname specified through the
|
||
SNI TLS extension (provided the Ingress controller supports SNI). The TLS secret
|
||
must contain keys named `tls.crt` and `tls.key` that contain the certificate
|
||
and private key to use for TLS. For example:
|
||
-->
|
||
### TLS
|
||
|
||
你可以通过设定包含 TLS 私钥和证书的{{< glossary_tooltip text="Secret" term_id="secret" >}}
|
||
来保护 Ingress。
|
||
目前,Ingress 只支持单个 TLS 端口 443,并假定 TLS 终止。
|
||
|
||
如果 Ingress 中的 TLS 配置部分指定了不同的主机,那么它们将根据通过 SNI TLS 扩展指定的主机名
|
||
(如果 Ingress 控制器支持 SNI)在同一端口上进行复用。
|
||
TLS Secret 必须包含名为 `tls.crt` 和 `tls.key` 的键名。
|
||
这些数据包含用于 TLS 的证书和私钥。例如:
|
||
|
||
```yaml
|
||
apiVersion: v1
|
||
kind: Secret
|
||
metadata:
|
||
name: testsecret-tls
|
||
namespace: default
|
||
data:
|
||
tls.crt: base64 encoded cert
|
||
tls.key: base64 encoded key
|
||
type: kubernetes.io/tls
|
||
```
|
||
|
||
<!--
|
||
Referencing this secret in an Ingress tells the Ingress controller to
|
||
secure the channel from the client to the load balancer using TLS. You need to make
|
||
sure the TLS secret you created came from a certificate that contains a Common
|
||
Name (CN), also known as a Fully Qualified Domain Name (FQDN) for `sslexample.foo.com`.
|
||
-->
|
||
在 Ingress 中引用此 Secret 将会告诉 Ingress 控制器使用 TLS 加密从客户端到负载均衡器的通道。
|
||
你需要确保创建的 TLS Secret 来自包含 `sslexample.foo.com` 的公用名称(CN)的证书。
|
||
这里的公共名称也被称为全限定域名(FQDN)。
|
||
|
||
```yaml
|
||
apiVersion: networking.k8s.io/v1beta1
|
||
kind: Ingress
|
||
metadata:
|
||
name: tls-example-ingress
|
||
spec:
|
||
tls:
|
||
- hosts:
|
||
- sslexample.foo.com
|
||
secretName: testsecret-tls
|
||
rules:
|
||
- host: sslexample.foo.com
|
||
http:
|
||
paths:
|
||
- path: /
|
||
backend:
|
||
serviceName: service1
|
||
servicePort: 80
|
||
```
|
||
|
||
<!--
|
||
There is a gap between TLS features supported by various Ingress
|
||
controllers. Please refer to documentation on
|
||
[nginx](https://kubernetes.github.io/ingress-nginx/user-guide/tls/),
|
||
[GCE](https://git.k8s.io/ingress-gce/README.md#frontend-https), or any other
|
||
platform specific Ingress controller to understand how TLS works in your environment.
|
||
-->
|
||
{{< note >}}
|
||
各种 Ingress 控制器所支持的 TLS 功能之间存在差异。请参阅有关
|
||
[nginx](https://kubernetes.github.io/ingress-nginx/user-guide/tls/)、
|
||
[GCE](https://git.k8s.io/ingress-gce/README.md#frontend-https)
|
||
或者任何其他平台特定的 Ingress 控制器的文档,以了解 TLS 如何在你的环境中工作。
|
||
{{< /note >}}
|
||
|
||
<!--
|
||
### Loadbalancing
|
||
|
||
An Ingress controller is bootstrapped with some load balancing policy settings
|
||
that it applies to all Ingress, such as the load balancing algorithm, backend
|
||
weight scheme, and others. More advanced load balancing concepts
|
||
(e.g. persistent sessions, dynamic weights) are not yet exposed through the
|
||
Ingress. You can instead get these features through the load balancer used for
|
||
a Service.
|
||
-->
|
||
### 负载均衡
|
||
|
||
Ingress 控制器启动引导时使用一些适用于所有 Ingress 的负载均衡策略设置,
|
||
例如负载均衡算法、后端权重方案和其他等。
|
||
更高级的负载均衡概念(例如持久会话、动态权重)尚未通过 Ingress 公开。
|
||
你可以通过用于服务的负载均衡器来获取这些功能。
|
||
|
||
<!--
|
||
It's also worth noting that even though health checks are not exposed directly
|
||
through the Ingress, there exist parallel concepts in Kubernetes such as
|
||
[readiness probes](/docs/tasks/configure-pod-container/configure-liveness-readiness-startup-probes/)
|
||
that allow you to achieve the same end result. Please review the controller
|
||
specific documentation to see how they handle health checks (
|
||
[nginx](https://git.k8s.io/ingress-nginx/README.md),
|
||
[GCE](https://git.k8s.io/ingress-gce/README.md#health-checks)).
|
||
-->
|
||
值得注意的是,即使健康检查不是通过 Ingress 直接暴露的,在 Kubernetes
|
||
中存在并行概念,比如[就绪检查](/zh/docs/tasks/configure-pod-container/configure-liveness-readiness-startup-probes/)
|
||
允许你实现相同的目的。
|
||
请检查特定控制器的说明文档,以了解它们是怎样处理健康检查的 (
|
||
[nginx](https://git.k8s.io/ingress-nginx/README.md),
|
||
[GCE](https://git.k8s.io/ingress-gce/README.md#health-checks))。
|
||
|
||
<!--
|
||
## Updating an Ingress
|
||
|
||
To update an existing Ingress to add a new Host, you can update it by editing the resource:
|
||
-->
|
||
## 更新 Ingress
|
||
|
||
要更新现有的 Ingress 以添加新的 Host,可以通过编辑资源来对其进行更新:
|
||
|
||
```shell
|
||
kubectl describe ingress test
|
||
```
|
||
|
||
```
|
||
Name: test
|
||
Namespace: default
|
||
Address: 178.91.123.132
|
||
Default backend: default-http-backend:80 (10.8.2.3:8080)
|
||
Rules:
|
||
Host Path Backends
|
||
---- ---- --------
|
||
foo.bar.com
|
||
/foo service1:80 (10.8.0.90:80)
|
||
Annotations:
|
||
nginx.ingress.kubernetes.io/rewrite-target: /
|
||
Events:
|
||
Type Reason Age From Message
|
||
---- ------ ---- ---- -------
|
||
Normal ADD 35s loadbalancer-controller default/test
|
||
```
|
||
|
||
```shell
|
||
kubectl edit ingress test
|
||
```
|
||
|
||
<!--
|
||
This pops up an editor with the existing configuration in YAML format.
|
||
Modify it to include the new Host:
|
||
-->
|
||
这一命令将打开编辑器,允许你以 YAML 格式编辑现有配置。
|
||
修改它来增加新的主机:
|
||
|
||
```yaml
|
||
spec:
|
||
rules:
|
||
- host: foo.bar.com
|
||
http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service1
|
||
servicePort: 80
|
||
path: /foo
|
||
- host: bar.baz.com
|
||
http:
|
||
paths:
|
||
- backend:
|
||
serviceName: service2
|
||
servicePort: 80
|
||
path: /foo
|
||
..
|
||
```
|
||
|
||
<!--
|
||
After you save your changes, kubectl updates the resource in the API server, which tells the
|
||
Ingress controller to reconfigure the load balancer.
|
||
-->
|
||
保存更改后,kubectl 将更新 API 服务器中的资源,该资源将告诉 Ingress 控制器重新配置负载均衡器。
|
||
|
||
<!--
|
||
Verify this:
|
||
-->
|
||
验证:
|
||
|
||
```shell
|
||
kubectl describe ingress test
|
||
```
|
||
|
||
```
|
||
Name: test
|
||
Namespace: default
|
||
Address: 178.91.123.132
|
||
Default backend: default-http-backend:80 (10.8.2.3:8080)
|
||
Rules:
|
||
Host Path Backends
|
||
---- ---- --------
|
||
foo.bar.com
|
||
/foo service1:80 (10.8.0.90:80)
|
||
bar.baz.com
|
||
/foo service2:80 (10.8.0.91:80)
|
||
Annotations:
|
||
nginx.ingress.kubernetes.io/rewrite-target: /
|
||
Events:
|
||
Type Reason Age From Message
|
||
---- ------ ---- ---- -------
|
||
Normal ADD 45s loadbalancer-controller default/test
|
||
```
|
||
|
||
|
||
<!--
|
||
You can achieve the same outcome by invoking `kubectl replace -f` on a modified Ingress YAML file.
|
||
-->
|
||
你也可以通过 `kubectl replace -f` 命令调用修改后的 Ingress yaml 文件来获得同样的结果。
|
||
|
||
<!--
|
||
## Failing across availability zones
|
||
|
||
Techniques for spreading traffic across failure domains differs between cloud providers.
|
||
Please check the documentation of the relevant [Ingress controller](/docs/concepts/services-networking/ingress-controllers) for details. You can also refer to the [federation documentation](https://github.com/kubernetes-sigs/federation-v2)
|
||
for details on deploying Ingress in a federated cluster.
|
||
-->
|
||
## 跨可用区失败 {#failing-across-availability-zones}
|
||
|
||
不同的云厂商使用不同的技术来实现跨故障域的流量分布。详情请查阅相关 Ingress 控制器的文档。
|
||
请查看相关[ Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers) 的文档以了解详细信息。
|
||
你还可以参考[联邦文档](https://github.com/kubernetes-sigs/federation-v2),以获取有关在联合集群中部署 Ingress 的详细信息。
|
||
|
||
<!--
|
||
## Future Work
|
||
|
||
Track [SIG Network](https://github.com/kubernetes/community/tree/master/sig-network)
|
||
for more details on the evolution of Ingress and related resources. You may also track the
|
||
[Ingress repository](https://github.com/kubernetes/ingress/tree/master) for more details on the
|
||
evolution of various Ingress controllers.
|
||
-->
|
||
## 未来工作
|
||
跟踪 [SIG Network](https://github.com/kubernetes/community/tree/master/sig-network)
|
||
的活动以获得有关 Ingress 和相关资源演变的更多细节。
|
||
你还可以跟踪 [Ingress 仓库](https://github.com/kubernetes/ingress/tree/master)
|
||
以获取有关各种 Ingress 控制器的更多细节。
|
||
|
||
<!--
|
||
## Alternatives
|
||
|
||
You can expose a Service in multiple ways that don't directly involve the Ingress resource:
|
||
-->
|
||
## 替代方案 {#alternatives}
|
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不直接使用 Ingress 资源,也有多种方法暴露 Service:
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<!--
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||
* Use [Service.Type=LoadBalancer](/docs/concepts/services-networking/service/#loadbalancer)
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* Use [Service.Type=NodePort](/docs/concepts/services-networking/service/#nodeport)
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-->
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* 使用 [Service.Type=LoadBalancer](/docs/concepts/services-networking/service/#loadbalancer)
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* 使用 [Service.Type=NodePort](/docs/concepts/services-networking/service/#nodeport)
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## {{% heading "whatsnext" %}}
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||
<!--
|
||
* Learn about the [Ingress API](/docs/reference/generated/kubernetes-api/{{< param "version" >}}/#ingress-v1beta1-networking-k8s-io)
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* Learn about [Ingress Controllers](/docs/concepts/services-networking/ingress-controllers/)
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* [Set up Ingress on Minikube with the NGINX Controller](/docs/tasks/access-application-cluster/ingress-minikube)
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||
-->
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||
* 进一步了解 [Ingress API](/docs/reference/generated/kubernetes-api/{{< param "version" >}}/#ingress-v1beta1-networking-k8s-io)
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* 进一步了解 [Ingress 控制器](/zh/docs/concepts/services-networking/ingress-controllers/)
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* [使用 NGINX 控制器在 Minikube 上安装 Ingress](/zh/docs/tasks/access-application-cluster/ingress-minikube)
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||
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