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plugin on CoreDNS: DNS and Service Discovery

kubernetes log proxyproto rewrite forward clouddns errors grpc_server https https3 template docker auto geoip multisocket nomad dnstap import view ready etcd header loadbalance bind grpc file prometheus quic timeouts kubeforward JSON gslb autopath dnssec root tls fanout k8s_cache bufsize k8s_external reload gathersrv meship meshname multicluster acl cache recursor health trace tsig k8s_event redis route53 dns64 transfer finalize kubenodes ebpf rrl secondary mysql warnlist loop minimal sign azure git local any cancel debug erratic metadata nsid pprof alternate k8s_dns_chaos records k8s_gateway hosts netbox mdns wgsd alias chaos whoami lighthouse ens idetcd gravwell amazondns redisc unbound on dump pdsql ipin demo example
kubernetai
2018-03-05 · via plugin on CoreDNS: DNS and Service Discovery

Description

Kubernetai (koo-ber-NET-eye) is the plural form of Kubernetes. In a nutshell, Kubernetai is an external plugin for CoreDNS that holds multiple kubernetes plugin configurations. It allows one CoreDNS server to connect to more than one Kubernetes server at a time.

With kubernetai, you can define multiple kubernetes blocks in your Corefile. All options are exactly the same as the built in kubernetes plugin, you just name them kubernetai instead of kubernetes.

Syntax

Identical to kubernetes.

Examples

For example, the following Corefile will connect to three different Kubernetes clusters.

. {
    errors
    log
    kubernetai cluster.local {
      endpoint http://192.168.99.100
    }
    kubernetai assemblage.local {
      endpoint http://192.168.99.101
    }
    kubernetai conglomeration.local {
      endpoint http://192.168.99.102
    }
}

fallthrough

Fallthrough in kubernetai will fall-through to the next kubernetai stanza (in the order they are in the Corefile), or to the next plugin (if it’s the last kubernetai stanza).

Here is an example Corefile that makes two connections to a single minikube instance. Because both servers are actually the same server, they both have the same zone, which means that queries for cluster.local will always first get processed by the first stanza. The fallthrough in the first stanza allows processing to go to the next stanza if the service is not found.

. {
    errors
    log
    kubernetai cluster.local {
      endpoint http://192.168.99.100:8080
      namespaces default
      fallthrough
    }
    kubernetai cluster.local {
      endpoint http://192.168.99.100:8080
    }
}

The first kubernetai stanza exposes only the default namespace. When we query for a service in the default namespace, the kubernetes instance in the first stanza answers. When we query for a service in any other namespace, the first stanza falls through to the second, and the second connection answers.