Skip to content

mauricioklein/kind-experiment

Folders and files

NameName
Last commit message
Last commit date

Latest commit

 

History

2 Commits
 
 
 
 

Repository files navigation

KinD (K8s in Docker)

Setup

# Create a KeyPair on AWS
$ aws ec2 create-key-pair --key-name 'kindkey' --query 'KeyMaterial' --output text > ./kind-key.pem

# Set the correct permissions for the SSH key
$ chmod 400 ./kind-key.pem

# Create an EC2 instance with the dependencies pre-installed.
# (depending on the number of nodes you're gonna create, you might need 
#  to provision a more powerful instance, which will cost you more as well. 
#  In this case, set the 'InstanceType' parameter below)
aws cloudformation create-stack \
  --stack-name kind \
  --template-body file://ec2.yaml \
  --parameters \
    ParameterKey=InstanceType,ParameterValue=t2.micro \
    ParameterKey=KeyName,ParameterValue=kindkey

# Break for a coffee!
# Go there, you deserve (and CloudFormation needs time to provision the instance)

# Get the public IP of the instance
$ aws cloudformation describe-stacks \
  --stack-name kind \
  --query 'Stacks[0].Outputs[0].OutputValue'

# Access the instance
$ ssh -i ./kind-key.pem ec2-user@[instance public ip]

Experiment 1: single node cluster

# Create a simple cluster (1 master, without taints)
$ kind create cluster

# Load the Kubeconfig generated by Kind
$ export KUBECONFIG="$(kind get kubeconfig-path --name='kind')"

# List the nodes in the cluster
$ kubectl get nodes -o wide

# List running Docker containers (acting as K8s nodes)
$ docker ps

# Get Master node external IP
MASTERIP=$(k get node -l node-role.kubernetes.io/master -o jsonpath={.items[*].status.addresses[?\(@.type==\"InternalIP\"\)].address})

# Schedule a pod in the cluster + NodePort service
$ kubectl run nginx --image nginx --port 80 --labels "app=nginx" --restart=Never
$ kubectl create service nodeport nginx --tcp 80 --node-port 30080

# Access the pod
$ curl $MASTERIP:30080

# Cleanup
$ kubectl delete all -l app=nginx
$ kind delete cluster

Experiment 2: multi node cluster

# Create a multi node cluster (1 master + 2 workers)
$ cat > kind-config.yaml <<EOF
apiVersion: kind.sigs.k8s.io/v1alpha3
nodes:
- role: control-plane
- role: worker
- role: worker
EOF

$ kind create cluster --config kind-config.yaml

# Load the Kubeconfig generated by Kind
$ export KUBECONFIG="$(kind get kubeconfig-path --name='kind')"

# List the nodes in the cluster
# (take note of the master node INTERNAL-IP)
$ kubectl get nodes -o wide

# List running Docker containers (acting as K8s nodes)
$ docker ps

# Get Master node external IP
MASTERIP=$(k get node -l node-role.kubernetes.io/master -o jsonpath={.items[*].status.addresses[?\(@.type==\"InternalIP\"\)].address})

# Schedule a deployment with 4 nginx pods + NodePort service
$ kubectl run nginx --image nginx --port 80 --labels "app=nginx" --replicas 4
$ kubectl create service nodeport nginx --tcp 80 --node-port 30080

# Check that pods are distributed across nodes
$ kubectl get po -l app=nginx -o wide

# Access the pod
$ curl $MASTERIP:30080

# Cleanup
$ kubectl delete all -l app=nginx
$ kind delete cluster

Cleanup

# Delete the instance
$ aws cloudformation delete-stack --stack-name kind

# Delete the KeyPair
$ aws ec2 delete-key-pair --key-name 'kindkey'
$ rm -f ./kind-key.pem

About

An experiment with Kind (K8s in Docker)

Topics

Resources

Stars

Watchers

Forks

Releases

No releases published

Packages

No packages published