Improve DNS documentation (#6479)
This commit is contained in:
@@ -0,0 +1,14 @@
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apiVersion: v1
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kind: Pod
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metadata:
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name: busybox
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namespace: default
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spec:
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containers:
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- name: busybox
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image: busybox
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command:
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- sleep
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- "3600"
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imagePullPolicy: IfNotPresent
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restartPolicy: Always
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@@ -2,12 +2,12 @@
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approvers:
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- bowei
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- zihongz
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title: Configure private DNS zones and upstream nameservers in Kubernetes
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title: Configure DNS Service
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---
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{% capture overview %}
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This page shows how to add custom private DNS zones (stub domains) and upstream
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nameservers.
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This page provides hints on configuring DNS Pod and guidance on customizing the
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DNS resolution process and diagnosing DNS problems.
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{% endcapture %}
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{% capture prerequisites %}
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@@ -18,6 +18,45 @@ nameservers.
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{% capture steps %}
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## Introduction
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Starting from Kubernetes v1.3, DNS is a built-in service launched automatically
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using the addon manager
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[cluster add-on](http://releases.k8s.io/{{page.githubbranch}}/cluster/addons/README.md).
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The running Kubernetes DNS pod holds 3 containers:
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- "`kubedns`": The `kubedns` process watches the Kubernetes master for changes
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in Services and Endpoints, and maintains in-memory lookup structures to serve
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DNS requests.
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- "`dnsmasq`": The `dnsmasq` container adds DNS caching to improve performance.
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- "`healthz`": The `healthz` container provides a single health check endpoint
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while performing dual healthchecks (for `dnsmasq` and `kubedns`).
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The DNS pod is exposed as a Kubernetes Service with a static IP. Once assigned
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the kubelet passes DNS configured using the `--cluster-dns=<dns-service-ip>`
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flag to each container.
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DNS names also need domains. The local domain is configurable in the kubelet
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using the flag `--cluster-domain=<default-local-domain>`.
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The Kubernetes cluster DNS server is based off the
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[SkyDNS](https://github.com/skynetservices/skydns) library. It supports forward
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lookups (A records), service lookups (SRV records) and reverse IP address
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lookups (PTR records).
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## Inheriting DNS from the node
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When running a pod, kubelet will prepend the cluster DNS server and search
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paths to the node's own DNS settings. If the node is able to resolve DNS names
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specific to the larger environment, pods should be able to, also.
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See [Known issues](#known-issues) below for a caveat.
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If you don't want this, or if you want a different DNS config for pods, you can
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use the kubelet's `--resolv-conf` flag. Setting it to "" means that pods will
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not inherit DNS. Setting it to a valid file path means that kubelet will use
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this file instead of `/etc/resolv.conf` for DNS inheritance.
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## Configure stub-domain and upstream DNS servers
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Cluster administrators can specify custom stub domains and upstream nameservers
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@@ -43,7 +82,8 @@ As specified, DNS requests with the “.acme.local” suffix
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are forwarded to a DNS listening at 1.2.3.4. Google Public DNS
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serves the upstream queries.
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The table below describes how queries with certain domain names would map to their destination DNS servers:
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The table below describes how queries with certain domain names would map to
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their destination DNS servers:
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| Domain name | Server answering the query |
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| ----------- | -------------------------- |
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@@ -58,36 +98,37 @@ details about the configuration option format.
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{% capture discussion %}
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## Understanding name resolution in Kubernetes
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### Impacts on Pods
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DNS policies can be set on a per-pod basis. Currently Kubernetes supports two pod-specific DNS policies: “Default” and “ClusterFirst”. These policies are specified with the `dnsPolicy` flag.
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Custom upstream nameservers and stub domains won't impact Pods that have their
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`dnsPolicy` set to "`Default`" or "`None`".
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*NOTE: "Default" is not the default DNS policy. If `dnsPolicy` is not
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explicitly specified, then “ClusterFirst” is used.*
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If a Pod's `dnsPolicy` is set to "`ClusterFirst`", its name resolution is
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handled differently, depending on whether stub-domain and upstream DNS servers
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are configured.
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### "Default" DNS Policy
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**Without custom configurations**: Any query that does not match the configured
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cluster domain suffix, such as "www.kubernetes.io", is forwarded to the upstream
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nameserver inherited from the node.
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If `dnsPolicy` is set to “Default”, then the name resolution configuration is
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inherited from the node that the pods run on. Custom upstream nameservers and stub domains cannot be used in conjunction with this policy.
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### "ClusterFirst" DNS Policy
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If the `dnsPolicy` is set to "ClusterFirst", name resolution is handled differently, *depending on whether stub-domain and upstream DNS servers are configured*.
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**Without custom configurations**: Any query that does not match the configured cluster domain suffix, such as "www.kubernetes.io", is forwarded to the upstream nameserver inherited from the node.
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**With custom configurations**: If stub domains and upstream DNS servers are configured (as in the [previous example](#configuring-stub-domain-and-upstream-dns-servers)), DNS queries will be
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routed according to the following flow:
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**With custom configurations**: If stub domains and upstream DNS servers are
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configured (as in the [previous example](#configuring-stub-domain-and-upstream-dns-servers)),
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DNS queries will be routed according to the following flow:
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1. The query is first sent to the DNS caching layer in kube-dns.
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1. From the caching layer, the suffix of the request is examined and then forwarded to the appropriate DNS, based on the following cases:
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1. From the caching layer, the suffix of the request is examined and then
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forwarded to the appropriate DNS, based on the following cases:
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* *Names with the cluster suffix* (e.g.".cluster.local"): The request is sent to kube-dns.
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* *Names with the cluster suffix* (e.g.".cluster.local"):
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The request is sent to kube-dns.
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* *Names with the stub domain suffix* (e.g. ".acme.local"): The request is sent to the configured custom DNS resolver (e.g. listening at 1.2.3.4).
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* *Names with the stub domain suffix* (e.g. ".acme.local"):
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The request is sent to the configured custom DNS resolver (e.g. listening at 1.2.3.4).
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* *Names without a matching suffix* (e.g."widget.com"): The request is forwarded to the upstream DNS (e.g. Google public DNS servers at 8.8.8.8 and 8.8.4.4).
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* *Names without a matching suffix* (e.g."widget.com"):
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The request is forwarded to the upstream DNS
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(e.g. Google public DNS servers at 8.8.8.8 and 8.8.4.4).
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@@ -100,9 +141,9 @@ Options for the kube-dns `kube-system:kube-dns` ConfigMap:
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| `stubDomains` (optional) | A JSON map using a DNS suffix key (e.g. “acme.local”) and a value consisting of a JSON array of DNS IPs. | The target nameserver may itself be a Kubernetes service. For instance, you can run your own copy of dnsmasq to export custom DNS names into the ClusterDNS namespace. |
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| `upstreamNameservers` (optional) | A JSON array of DNS IPs. | Note: If specified, then the values specified replace the nameservers taken by default from the node’s `/etc/resolv.conf`. Limits: a maximum of three upstream nameservers can be specified. |
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## Additional examples
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### Examples
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### Example: Stub domain
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#### Example: Stub domain
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In this example, the user has a Consul DNS service discovery system that they wish to
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integrate with kube-dns. The consul domain server is located at 10.150.0.1, and
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@@ -124,7 +165,7 @@ Note that the cluster administrator did not wish to override the node’s
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upstream nameservers, so they did not specify the optional
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`upstreamNameservers` field.
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### Example: Upstream nameserver
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#### Example: Upstream nameserver
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In this example the cluster administrator wants to explicitly force all
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non-cluster DNS lookups to go through their own nameserver at 172.16.0.1.
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@@ -142,6 +183,183 @@ data:
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[“172.16.0.1”]
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```
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## Debugging DNS resolution
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### Create a simple Pod to use as a test environment
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Create a file named busybox.yaml with the following contents:
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{% include code.html language="yaml" file="busybox.yaml" ghlink="/docs/tasks/administer-cluster/busybox.yaml" %}
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Then create a pod using this file and verify its status:
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```shell
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$ kubectl create -f busybox.yaml
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pod "busybox" created
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$ kubectl get pods busybox
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NAME READY STATUS RESTARTS AGE
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busybox 1/1 Running 0 <some-time>
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```
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Once that pod is running, you can exec `nslookup` in that environment.
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If you see something like the following, DNS is working correctly.
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```shell
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$ kubectl exec -ti busybox -- nslookup kubernetes.default
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Server: 10.0.0.10
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Address 1: 10.0.0.10
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Name: kubernetes.default
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Address 1: 10.0.0.1
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```
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If the `nslookup` command fails, check the following:
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### Check the local DNS configuration first
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Take a look inside the resolv.conf file.
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(See [Inheriting DNS from the node](#inheriting-dns-from-the-node) and
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[Known issues](#known-issues) below for more information)
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```shell
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$ kubectl exec busybox cat /etc/resolv.conf
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```
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Verify that the search path and name server are set up like the following
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(note that search path may vary for different cloud providers):
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```
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search default.svc.cluster.local svc.cluster.local cluster.local google.internal c.gce_project_id.internal
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nameserver 10.0.0.10
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options ndots:5
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```
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Errors such as the following indicate a problem with the kube-dns add-on or
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associated Services:
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```
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$ kubectl exec -ti busybox -- nslookup kubernetes.default
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Server: 10.0.0.10
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Address 1: 10.0.0.10
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nslookup: can't resolve 'kubernetes.default'
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```
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or
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```
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$ kubectl exec -ti busybox -- nslookup kubernetes.default
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Server: 10.0.0.10
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Address 1: 10.0.0.10 kube-dns.kube-system.svc.cluster.local
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nslookup: can't resolve 'kubernetes.default'
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```
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### Check if the DNS pod is running
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Use the `kubectl get pods` command to verify that the DNS pod is running.
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```shell
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$ kubectl get pods --namespace=kube-system -l k8s-app=kube-dns
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NAME READY STATUS RESTARTS AGE
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...
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kube-dns-v19-ezo1y 3/3 Running 0 1h
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...
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```
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If you see that no pod is running or that the pod has failed/completed, the DNS
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add-on may not be deployed by default in your current environment and you will
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have to deploy it manually.
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### Check for Errors in the DNS pod
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Use `kubectl logs` command to see logs for the DNS daemons.
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```shell
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$ kubectl logs --namespace=kube-system $(kubectl get pods --namespace=kube-system -l k8s-app=kube-dns -o name) -c kubedns
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$ kubectl logs --namespace=kube-system $(kubectl get pods --namespace=kube-system -l k8s-app=kube-dns -o name) -c dnsmasq
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$ kubectl logs --namespace=kube-system $(kubectl get pods --namespace=kube-system -l k8s-app=kube-dns -o name) -c sidecar
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```
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See if there is any suspicious log. Letter '`W`', '`E`', '`F`' at the beginning
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represent Warning, Error and Failure. Please search for entries that have these
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as the logging level and use
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[kubernetes issues](https://github.com/kubernetes/kubernetes/issues)
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to report unexpected errors.
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### Is DNS service up?
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Verify that the DNS service is up by using the `kubectl get service` command.
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```shell
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$ kubectl get svc --namespace=kube-system
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NAME CLUSTER-IP EXTERNAL-IP PORT(S) AGE
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...
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kube-dns 10.0.0.10 <none> 53/UDP,53/TCP 1h
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...
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```
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If you have created the service or in the case it should be created by default
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but it does not appear, see
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[debugging services](/docs/tasks/debug-application-cluster/debug-service/) for
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more information.
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### Are DNS endpoints exposed?
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You can verify that DNS endpoints are exposed by using the `kubectl get endpoints`
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command.
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```shell
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$ kubectl get ep kube-dns --namespace=kube-system
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NAME ENDPOINTS AGE
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kube-dns 10.180.3.17:53,10.180.3.17:53 1h
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```
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If you do not see the endpoints, see endpoints section in the
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[debugging services](/docs/tasks/debug-application-cluster/debug-service/) documentation.
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For additional Kubernetes DNS examples, see the
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[cluster-dns examples](https://github.com/kubernetes/examples/tree/master/staging/cluster-dns)
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in the Kubernetes GitHub repository.
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## Known issues
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Kubernetes installs do not configure the nodes' resolv.conf files to use the
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cluster DNS by default, because that process is inherently distro-specific.
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This should probably be implemented eventually.
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Linux's libc is impossibly stuck ([see this bug from
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2005](https://bugzilla.redhat.com/show_bug.cgi?id=168253)) with limits of just
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3 DNS `nameserver` records and 6 DNS `search` records. Kubernetes needs to
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consume 1 `nameserver` record and 3 `search` records. This means that if a
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local installation already uses 3 `nameserver`s or uses more than 3 `search`es,
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some of those settings will be lost. As a partial workaround, the node can run
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`dnsmasq` which will provide more `nameserver` entries, but not more `search`
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entries. You can also use kubelet's `--resolv-conf` flag.
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If you are using Alpine version 3.3 or earlier as your base image, DNS may not
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work properly owing to a known issue with Alpine.
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Check [here](https://github.com/kubernetes/kubernetes/issues/30215)
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for more information.
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## Kubernetes Federation (Multiple Zone support)
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Release 1.3 introduced Cluster Federation support for multi-site Kubernetes
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installations. This required some minor (backward-compatible) changes to the
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way the Kubernetes cluster DNS server processes DNS queries, to facilitate
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the lookup of federated services (which span multiple Kubernetes clusters).
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See the [Cluster Federation Administrators' Guide](/docs/concepts/cluster-administration/federation/)
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for more details on Cluster Federation and multi-site support.
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## References
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- [DNS for Services and Pods](/docs/concepts/services-networking/dns-pod-service/)
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- [Docs for the DNS cluster addon](http://releases.k8s.io/{{page.githubbranch}}/cluster/addons/dns/README.md)
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## What's next
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- [Autoscaling the DNS Service in a Cluster](/docs/tasks/administer-cluster/dns-horizontal-autoscaling/).
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{% endcapture %}
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{% include templates/task.md %}
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