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< img src = "http://kubernetes.io/img/warning.png" alt = "WARNING"
width="25" height="25">
< img src = "http://kubernetes.io/img/warning.png" alt = "WARNING"
width="25" height="25">
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< h2 > PLEASE NOTE: This document applies to the HEAD of the source tree< / h2 >
If you are using a released version of Kubernetes, you should
refer to the docs that go with that version.
< strong >
The latest 1.0.x release of this document can be found
[here ](http://releases.k8s.io/release-1.0/docs/getting-started-guides/docker-multinode/worker.md ).
Documentation for other releases can be found at
[releases.k8s.io ](http://releases.k8s.io ).
< / strong >
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## Adding a Kubernetes worker node via Docker.
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These instructions are very similar to the master set-up above, but they are duplicated for clarity.
You need to repeat these instructions for each node you want to join the cluster.
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We will assume that the IP address of this node is `${NODE_IP}` and you have the IP address of the master in `${MASTER_IP}` that you created in the [master instructions ](master.md ). We'll need to run several versioned Kubernetes components, so we'll assume that the version we want
to run is `${K8S_VERSION}` , which should hold a value such as "1.0.7".
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For each worker node, there are three steps:
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* [Set up `flanneld` on the worker node ](#set-up-flanneld-on-the-worker-node )
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* [Start Kubernetes on the worker node ](#start-kubernetes-on-the-worker-node )
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* [Add the worker to the cluster ](#add-the-node-to-the-cluster )
### Set up Flanneld on the worker node
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As before, the Flannel daemon is going to provide network connectivity.
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_Note_:
There is a [bug ](https://github.com/docker/docker/issues/14106 ) in Docker 1.7.0 that prevents this from working correctly.
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Please install Docker 1.6.2 or Docker 1.7.1 or Docker 1.8.3.
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#### Set up a bootstrap docker
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As previously, we need a second instance of the Docker daemon running to bootstrap the flannel networking.
Run:
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```sh
sudo sh -c 'docker -d -H unix:///var/run/docker-bootstrap.sock -p /var/run/docker-bootstrap.pid --iptables=false --ip-masq=false --bridge=none --graph=/var/lib/docker-bootstrap 2> /var/log/docker-bootstrap.log 1> /dev/null & '
```
_Important Note_:
If you are running this on a long running system, rather than experimenting, you should run the bootstrap Docker instance under something like SysV init, upstart or systemd so that it is restarted
across reboots and failures.
#### Bring down Docker
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To re-configure Docker to use flannel, we need to take docker down, run flannel and then restart Docker.
Turning down Docker is system dependent, it may be:
```sh
sudo /etc/init.d/docker stop
```
or
```sh
sudo systemctl stop docker
```
or it may be something else.
#### Run flannel
Now run flanneld itself, this call is slightly different from the above, since we point it at the etcd instance on the master.
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```sh
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sudo docker -H unix:///var/run/docker-bootstrap.sock run -d --net=host --privileged -v /dev/net:/dev/net quay.io/coreos/flannel:0.5.3 /opt/bin/flanneld --etcd-endpoints=http://${MASTER_IP}:4001
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```
The previous command should have printed a really long hash, copy this hash.
Now get the subnet settings from flannel:
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```sh
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sudo docker -H unix:///var/run/docker-bootstrap.sock exec < really-long-hash-from-above-here > cat /run/flannel/subnet.env
```
#### Edit the docker configuration
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You now need to edit the docker configuration to activate new flags. Again, this is system specific.
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This may be in `/etc/default/docker` or `/etc/systemd/service/docker.service` or it may be elsewhere.
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Regardless, you need to add the following to the docker command line:
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```sh
--bip=${FLANNEL_SUBNET} --mtu=${FLANNEL_MTU}
```
#### Remove the existing Docker bridge
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Docker creates a bridge named `docker0` by default. You need to remove this:
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```sh
sudo /sbin/ifconfig docker0 down
sudo brctl delbr docker0
```
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You may need to install the `bridge-utils` package for the `brctl` binary.
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#### Restart Docker
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Again this is system dependent, it may be:
```sh
sudo /etc/init.d/docker start
```
it may be:
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```sh
systemctl start docker
```
### Start Kubernetes on the worker node
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#### Run the kubelet
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Again this is similar to the above, but the `--api-servers` now points to the master we set up in the beginning.
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```sh
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sudo docker run \
--volume=/:/rootfs:ro \
--volume=/sys:/sys:ro \
--volume=/dev:/dev \
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--volume=/var/lib/docker/:/var/lib/docker:rw \
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--volume=/var/lib/kubelet/:/var/lib/kubelet:rw \
--volume=/var/run:/var/run:rw \
--net=host \
--privileged=true \
--pid=host \
-d \
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gcr.io/google_containers/hyperkube:v${K8S_VERSION} /hyperkube kubelet --api-servers=http://${MASTER_IP}:8080 --v=2 --address=0.0.0.0 --enable-server --hostname-override=$(hostname -i) --cluster-dns=10.0.0.10 --cluster-domain=cluster.local
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```
#### Run the service proxy
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The service proxy provides load-balancing between groups of containers defined by Kubernetes `Services`
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```sh
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sudo docker run -d --net=host --privileged gcr.io/google_containers/hyperkube:v${K8S_VERSION} /hyperkube proxy --master=http://${MASTER_IP}:8080 --v=2
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```
### Next steps
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Move on to [testing your cluster ](testing.md ) or [add another node ](#adding-a-kubernetes-worker-node-via-docker )
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[]()
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