8.1 KiB
Amazon EKS + DocumentDB (Terraform)
Terraform stack that creates a basic Kubernetes cluster (EKS) and a managed MongoDB-compatible database (Amazon DocumentDB) on AWS, wired together so Kerberos Hub can be installed on it straight away.
It is primarily meant as a reproducible test environment for the DocumentDB
support in the hub helm chart,
in particular the mongodb.tls.* values that mount the Amazon RDS certificate
authority bundle. It is deliberately small and cheap, not a hardened production
landing zone.
What it creates
flowchart LR
subgraph VPC["VPC (10.20.0.0/16)"]
subgraph Public["Public subnets"]
NAT[NAT gateway]
LB[Load balancers]
end
subgraph Private["Private subnets"]
NODES[EKS managed node group]
DOCDB[(DocumentDB cluster<br/>TLS enforced)]
end
end
EKSCP[EKS control plane] --- NODES
NODES -- "27017 / TLS" --> DOCDB
NODES --> NAT
| Component | Details |
|---|---|
| VPC | Public + private subnets across 3 availability zones, internet gateway, NAT gateway |
| EKS | Managed control plane, one managed node group, coredns, kube-proxy, vpc-cni, eks-pod-identity-agent and aws-ebs-csi-driver add-ons (IRSA role included) |
| DocumentDB | Cluster + instances in the private subnets, encryption at rest (KMS) and in transit (tls=enabled), subnet group, cluster parameter group |
| Security | A dedicated security group that only allows port 27017 from the EKS worker node security group (plus any extra CIDRs you pass in) |
Important
DocumentDB has no public endpoint. It can only be reached from inside the VPC, which is why the workloads that talk to it must run on this cluster (or you must tunnel through a bastion host / VPN).
Warning
This stack costs money while it exists (EKS control plane, NAT gateway, EC2 nodes, DocumentDB instances and storage). Run
terraform destroywhen you are done.
Prerequisites
- Terraform >= 1.5
- AWS CLI v2, authenticated with permissions to create VPC, EKS, IAM and DocumentDB resources
kubectlandhelm
Usage
cd deployment/modules/amazon-eks-documentdb
cp terraform.tfvars.example terraform.tfvars
$EDITOR terraform.tfvars
terraform init
terraform plan
terraform apply
Creating the cluster and the database takes a while (EKS and DocumentDB are both slow to provision).
State is kept locally by default. For anything shared, add a backend, for example:
terraform {
backend "s3" {
bucket = "my-terraform-state"
key = "kerberos-hub/eks-documentdb.tfstate"
region = "eu-west-1"
}
}
Connect kubectl
$(terraform output -raw update_kubeconfig_command)
kubectl get nodes
Installing Kerberos Hub against DocumentDB
1. Create the certificate authority secret
DocumentDB presents a certificate signed by the Amazon RDS certificate authority, so every client needs the bundle:
kubectl create namespace kerberos-hub
curl -O https://truststore.pki.rds.amazonaws.com/global/global-bundle.pem
kubectl create secret generic mongodb-ca \
--from-file=global-bundle.pem \
-n kerberos-hub
2. Generate the values
terraform output -raw hub_values_snippet > hub-documentdb-values.yaml
Which produces something like:
mongodb:
flavor: "documentdb"
retryWrites: "false"
uri: "mongodb://kerberos:...@kerberos-hub-docdb.cluster-xxxx.eu-west-1.docdb.amazonaws.com:27017/?replicaSet=rs0&readPreference=secondaryPreferred&retryWrites=false"
adminDatabase: "admin"
authenticationMechanism: "SCRAM-SHA-1"
tls:
enabled: true
existingSecret: "mongodb-ca"
caFileName: "global-bundle.pem"
mountPath: "/certs"
The chart mounts the bundle into every workload that talks to MongoDB, appends
tls=true&tlsCAFile=/certs/global-bundle.pem to the URI, and exposes
MONGODB_TLS, MONGODB_TLS_CA_FILE and MONGODB_TLS_INSECURE_SKIP_VERIFY
through the mongodb-config ConfigMap.
Note
With DocumentDB you must configure the database through
mongodb.uri, not throughmongodb.host/mongodb.username/mongodb.password, so that the TLS parameters end up in the connection string that every service uses.
3. Install the chart
helm repo add kerberos https://charts.kerberos.io
helm install hub kerberos/hub \
-n kerberos-hub \
-f your-hub-values.yaml \
-f hub-documentdb-values.yaml
The hub_values_snippet output contains credentials, so treat the generated
file as a secret and do not commit it.
4. Verify
kubectl logs -n kerberos-hub deploy/hub-api | head -50
kubectl exec -n kerberos-hub deploy/hub-api -- ls -l /certs
A one-off connectivity check from inside the cluster:
kubectl run mongosh --rm -it --restart=Never -n kerberos-hub \
--image=mongodb/mongodb-community-server:7.0-ubi8 \
--overrides='{"spec":{"volumes":[{"name":"ca","secret":{"secretName":"mongodb-ca"}}],"containers":[{"name":"mongosh","image":"mongodb/mongodb-community-server:7.0-ubi8","stdin":true,"tty":true,"command":["mongosh"],"args":["'"$(terraform output -raw mongodb_uri)"'&tls=true&tlsCAFile=/certs/global-bundle.pem"],"volumeMounts":[{"name":"ca","mountPath":"/certs"}]}]}}'
Persistent volumes
The EBS CSI driver is installed, but EKS ships gp2 as the default storage
class. To use gp3 instead:
kubectl patch storageclass gp2 -p '{"metadata":{"annotations":{"storageclass.kubernetes.io/is-default-class":"false"}}}'
kubectl apply -f - <<'EOF'
apiVersion: storage.k8s.io/v1
kind: StorageClass
metadata:
name: gp3
annotations:
storageclass.kubernetes.io/is-default-class: "true"
provisioner: ebs.csi.aws.com
volumeBindingMode: WaitForFirstConsumer
allowVolumeExpansion: true
parameters:
type: gp3
EOF
Tear down
# Remove the release first so its load balancers and volumes are cleaned up.
helm uninstall hub -n kerberos-hub
terraform destroy
Inputs
The defaults are tuned for a small test stack. See variables.tf for the full list; the ones you are most likely to change:
| Variable | Default | Description |
|---|---|---|
name |
kerberos-hub |
Name prefix for every resource |
region |
eu-west-1 |
AWS region |
vpc_cidr |
10.20.0.0/16 |
VPC CIDR block |
single_nat_gateway |
true |
One shared NAT gateway (cheaper, not highly available) |
kubernetes_version |
1.31 |
EKS control plane version |
cluster_endpoint_public_access_cidrs |
["0.0.0.0/0"] |
Who may reach the Kubernetes API, narrow this down |
node_instance_types |
["t3.large"] |
Worker node instance types |
node_desired_size |
2 |
Number of worker nodes |
docdb_instance_class |
db.t3.medium |
DocumentDB instance class |
docdb_instance_count |
1 |
Number of DocumentDB instances |
docdb_username |
kerberos |
Master username |
docdb_password |
generated | Master password, generated when unset |
docdb_tls |
true |
Enforce TLS on the cluster |
docdb_allowed_cidrs |
[] |
Extra CIDRs allowed on port 27017 |
Outputs
| Output | Description |
|---|---|
cluster_name, cluster_endpoint |
EKS cluster identity |
update_kubeconfig_command |
Ready to run aws eks update-kubeconfig ... |
vpc_id, private_subnet_ids |
Networking identifiers |
docdb_endpoint, docdb_reader_endpoint, docdb_port |
DocumentDB connection details |
docdb_username, docdb_password |
Master credentials (password is sensitive) |
mongodb_uri |
Connection string for mongodb.uri (sensitive) |
hub_values_snippet |
Ready to paste helm values including the TLS block (sensitive) |
Related
../amazon-documentdb— using DocumentDB as the Kerberos Hub metadata store../../overlays/documentdb— Kustomize overlay that deploys Kerberos Hub against DocumentDB../../README.k8s-managed.md— installing on managed Kubernetes