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# Bootstrapping the Kubernetes Worker Nodes
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In this lab you will bootstrap three Kubernetes worker nodes. The following components will be installed on each node: [runc ](https://github.com/opencontainers/runc ), [container networking plugins ](https://github.com/containernetworking/cni ), [containerd ](https://github.com/containerd/containerd ), [kubelet ](https://kubernetes.io/docs/admin/kubelet ), and [kube-proxy ](https://kubernetes.io/docs/concepts/cluster-administration/proxies ).
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## Prerequisites
The commands in this lab must be run on each worker instance: `worker-0` , `worker-1` , and `worker-2` . Login to each worker instance using the `gcloud` command. Example:
```
gcloud compute ssh worker-0
```
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### Running commands in parallel with tmux
[tmux ](https://github.com/tmux/tmux/wiki ) can be used to run commands on multiple compute instances at the same time. See the [Running commands in parallel with tmux ](01-prerequisites.md#running-commands-in-parallel-with-tmux ) section in the Prerequisites lab.
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## Provisioning a Kubernetes Worker Node
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Install the OS dependencies:
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```
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{
sudo apt-get update
sudo apt-get -y install socat conntrack ipset
}
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```
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> The socat binary enables support for the `kubectl port-forward` command.
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### Disable Swap
By default the kubelet will fail to start if [swap ](https://help.ubuntu.com/community/SwapFaq ) is enabled. It is [recommended ](https://github.com/kubernetes/kubernetes/issues/7294 ) that swap be disabled to ensure Kubernetes can provide proper resource allocation and quality of service.
Verify if swap is enabled:
```
sudo swapon --show
```
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If output is empty then swap is not enabled. If swap is enabled run the following command to disable swap immediately:
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```
sudo swapoff -a
```
> To ensure swap remains off after reboot consult your Linux distro documentation.
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### Download and Install Worker Binaries
```
wget -q --show-progress --https-only --timestamping \
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https://github.com/kubernetes-sigs/cri-tools/releases/download/v1.18.0/crictl-v1.18.0-linux-amd64.tar.gz \
https://github.com/opencontainers/runc/releases/download/v1.0.0-rc91/runc.amd64 \
https://github.com/containernetworking/plugins/releases/download/v0.8.6/cni-plugins-linux-amd64-v0.8.6.tgz \
https://github.com/containerd/containerd/releases/download/v1.3.6/containerd-1.3.6-linux-amd64.tar.gz \
https://storage.googleapis.com/kubernetes-release/release/v1.18.6/bin/linux/amd64/kubectl \
https://storage.googleapis.com/kubernetes-release/release/v1.18.6/bin/linux/amd64/kube-proxy \
https://storage.googleapis.com/kubernetes-release/release/v1.18.6/bin/linux/amd64/kubelet
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```
Create the installation directories:
```
sudo mkdir -p \
/etc/cni/net.d \
/opt/cni/bin \
/var/lib/kubelet \
/var/lib/kube-proxy \
/var/lib/kubernetes \
/var/run/kubernetes
```
Install the worker binaries:
```
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{
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mkdir containerd
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tar -xvf crictl-v1.18.0-linux-amd64.tar.gz
tar -xvf containerd-1.3.6-linux-amd64.tar.gz -C containerd
sudo tar -xvf cni-plugins-linux-amd64-v0.8.6.tgz -C /opt/cni/bin/
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sudo mv runc.amd64 runc
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chmod +x crictl kubectl kube-proxy kubelet runc
sudo mv crictl kubectl kube-proxy kubelet runc /usr/local/bin/
sudo mv containerd/bin/* /bin/
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}
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```
### Configure CNI Networking
Retrieve the Pod CIDR range for the current compute instance:
```
POD_CIDR=$(curl -s -H "Metadata-Flavor: Google" \
http://metadata.google.internal/computeMetadata/v1/instance/attributes/pod-cidr)
```
Create the `bridge` network configuration file:
```
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cat < < EOF | sudo tee / etc / cni / net . d / 10-bridge . conf
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{
"cniVersion": "0.3.1",
"name": "bridge",
"type": "bridge",
"bridge": "cnio0",
"isGateway": true,
"ipMasq": true,
"ipam": {
"type": "host-local",
"ranges": [
[{"subnet": "${POD_CIDR}"}]
],
"routes": [{"dst": "0.0.0.0/0"}]
}
}
EOF
```
Create the `loopback` network configuration file:
```
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cat < < EOF | sudo tee / etc / cni / net . d / 99-loopback . conf
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{
"cniVersion": "0.3.1",
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"name": "lo",
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"type": "loopback"
}
EOF
```
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### Configure containerd
Create the `containerd` configuration file:
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```
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sudo mkdir -p /etc/containerd/
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```
```
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cat < < EOF | sudo tee / etc / containerd / config . toml
[plugins]
[plugins.cri.containerd]
snapshotter = "overlayfs"
[plugins.cri.containerd.default_runtime]
runtime_type = "io.containerd.runtime.v1.linux"
runtime_engine = "/usr/local/bin/runc"
runtime_root = ""
EOF
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```
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Create the `containerd.service` systemd unit file:
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```
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cat < < EOF | sudo tee / etc / systemd / system / containerd . service
[Unit]
Description=containerd container runtime
Documentation=https://containerd.io
After=network.target
[Service]
ExecStartPre=/sbin/modprobe overlay
ExecStart=/bin/containerd
Restart=always
RestartSec=5
Delegate=yes
KillMode=process
OOMScoreAdjust=-999
LimitNOFILE=1048576
LimitNPROC=infinity
LimitCORE=infinity
[Install]
WantedBy=multi-user.target
EOF
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```
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### Configure the Kubelet
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```
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{
sudo mv ${HOSTNAME}-key.pem ${HOSTNAME}.pem /var/lib/kubelet/
sudo mv ${HOSTNAME}.kubeconfig /var/lib/kubelet/kubeconfig
sudo mv ca.pem /var/lib/kubernetes/
}
```
Create the `kubelet-config.yaml` configuration file:
```
cat < < EOF | sudo tee / var / lib / kubelet / kubelet-config . yaml
kind: KubeletConfiguration
apiVersion: kubelet.config.k8s.io/v1beta1
authentication:
anonymous:
enabled: false
webhook:
enabled: true
x509:
clientCAFile: "/var/lib/kubernetes/ca.pem"
authorization:
mode: Webhook
clusterDomain: "cluster.local"
clusterDNS:
- "10.32.0.10"
podCIDR: "${POD_CIDR}"
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resolvConf: "/run/systemd/resolve/resolv.conf"
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runtimeRequestTimeout: "15m"
tlsCertFile: "/var/lib/kubelet/${HOSTNAME}.pem"
tlsPrivateKeyFile: "/var/lib/kubelet/${HOSTNAME}-key.pem"
EOF
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```
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> The `resolvConf` configuration is used to avoid loops when using CoreDNS for service discovery on systems running `systemd-resolved`.
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Create the `kubelet.service` systemd unit file:
```
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cat < < EOF | sudo tee / etc / systemd / system / kubelet . service
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[Unit]
Description=Kubernetes Kubelet
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Documentation=https://github.com/kubernetes/kubernetes
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After=containerd.service
Requires=containerd.service
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[Service]
ExecStart=/usr/local/bin/kubelet \\
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--config=/var/lib/kubelet/kubelet-config.yaml \\
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--container-runtime=remote \\
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--container-runtime-endpoint=unix:///var/run/containerd/containerd.sock \\
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--image-pull-progress-deadline=2m \\
--kubeconfig=/var/lib/kubelet/kubeconfig \\
--network-plugin=cni \\
--register-node=true \\
--v=2
Restart=on-failure
RestartSec=5
[Install]
WantedBy=multi-user.target
EOF
```
### Configure the Kubernetes Proxy
```
sudo mv kube-proxy.kubeconfig /var/lib/kube-proxy/kubeconfig
```
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Create the `kube-proxy-config.yaml` configuration file:
```
cat < < EOF | sudo tee / var / lib / kube-proxy / kube-proxy-config . yaml
kind: KubeProxyConfiguration
apiVersion: kubeproxy.config.k8s.io/v1alpha1
clientConnection:
kubeconfig: "/var/lib/kube-proxy/kubeconfig"
mode: "iptables"
clusterCIDR: "10.200.0.0/16"
EOF
```
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Create the `kube-proxy.service` systemd unit file:
```
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cat < < EOF | sudo tee / etc / systemd / system / kube-proxy . service
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[Unit]
Description=Kubernetes Kube Proxy
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Documentation=https://github.com/kubernetes/kubernetes
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[Service]
ExecStart=/usr/local/bin/kube-proxy \\
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--config=/var/lib/kube-proxy/kube-proxy-config.yaml
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Restart=on-failure
RestartSec=5
[Install]
WantedBy=multi-user.target
EOF
```
### Start the Worker Services
```
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{
sudo systemctl daemon-reload
sudo systemctl enable containerd kubelet kube-proxy
sudo systemctl start containerd kubelet kube-proxy
}
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```
> Remember to run the above commands on each worker node: `worker-0`, `worker-1`, and `worker-2`.
## Verification
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> The compute instances created in this tutorial will not have permission to complete this section. Run the following commands from the same machine used to create the compute instances.
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List the registered Kubernetes nodes:
```
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gcloud compute ssh controller-0 \
--command "kubectl get nodes --kubeconfig admin.kubeconfig"
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```
> output
```
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NAME STATUS ROLES AGE VERSION
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worker-0 Ready < none > 24s v1.18.6
worker-1 Ready < none > 24s v1.18.6
worker-2 Ready < none > 24s v1.18.6
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```
Next: [Configuring kubectl for Remote Access ](10-configuring-kubectl.md )