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Catalog/cilium-operator-aws/Guides

cilium operator aws

FIPS 140-3Networking

cilium-operator-aws leverages AWS-native networking capabilities while providing advanced network security and observability features

OverviewGuidesTags

Quick Start

Pull the latest version of this image from the Ghost registry. Pulling requires authentication — generate a token and run docker login first (see Authentication below).

Authentication

The Ghost catalog is public to browse, but pulling images requires an account. Generate a pull token below (or from your Account → Tokens page) — you'll get a ready-to-paste docker login command, then docker pull works.

The username is generated automatically (it looks like robot$<project>+<auto-id>, not the name you typed) and is included in the docker login command above. The secret is shown only once when you create the token.

Verify Signature

All Ghost images are signed with cosign. Verifying the signature before deployment ensures the image has not been tampered with.

Install cosign via brew install cosign or download from the Sigstore releases page.

Using This Image

Reference this image in your Dockerfile as a base layer:

FIPS 140-3 Compliance

This is a vendor-built FIPS-enabled image: its cryptography runs on FIPS 140-3 validated modules configured by the upstream vendor. You can inspect the image metadata:

StandardFIPS 140-3
Crypto moduleVendor-configured validated modules
CryptographyValidated modules only
Use caseGovernment, regulated industries, compliance workloads

Additional Notes

How to use this image

All examples in this guide use the public image. If you’ve mirrored the repository for your own use (for example, to your Docker Hub namespace), update your commands to reference the mirrored image instead of the public one.

For example:

  • Public image: registry.ghost-prod.alphabravo.io/ghost-base/<repository>:<tag>
  • Mirrored image: <your-namespace>/dhi-<repository>:<tag>

For the examples, you must first use docker login registry.ghost-prod.alphabravo.io to authenticate to the registry to pull the images.

What's included in this Cilium Operator AWS Hardened image

This Docker Hardened Cilium Operator AWS image includes the operator component of Cilium. The operator manages cluster-wide duties such as identity allocation, network policy coordination, and service load balancing. It provides centralized control plane functionality for Cilium deployments, ensuring consistent policy application and resource management across all nodes in the cluster.

Start a Cilium Operator AWS image

Note: The cilium-operator-aws image is designed to run inside a Kubernetes cluster as part of a complete Cilium deployment. The standalone Docker command below displays the available configuration options.

On this page

Quick StartAuthenticationVerify SignatureUsing This ImageFIPS ComplianceAdditional Notes
docker run --rm -it <your-namespace>/dhi-cilium-operator-aws:<tag> --help

Common use cases

Install <image-name> using Helm

You can install Cilium with Cilium Operator AWS using the official Helm chart and replace the operator image. Replace <your-namespace> with your organization's namespace, <your-registry-secret> with your Kubernetes image pull secret, and <tag> with the desired image tag.

helm repo add cilium https://helm.cilium.io/
helm repo update

helm upgrade --install cilium cilium/cilium \
  --namespace kube-system \
  --set operator.enabled=true \
  --set "imagePullSecrets[0].name=<your-registry-secret>" \
  --set operator.image.override="<your-namespace>/dhi-cilium-operator-aws:<tag>" \
  --set ipam.mode=aws \
  --set eni.enabled=true

Non-hardened images vs Ghost hardened images

Key differences

FeatureNon-hardened Cilium Operator AWSDocker Hardened Cilium Operator AWS
SecurityStandard base with utilitiesMinimal, hardened base with security patches
Shell accessFull shell (bash/sh) availableNo shell in runtime variants
Package managerapt/apk availableNo package manager in runtime variants
UserRuns as root by defaultRuns as nonroot user
Attack surfaceLarger due to utilitiesMinimal, only essential components
DebuggingTraditional shell debuggingUse Docker Debug or Image Mount for troubleshooting

Why no shell or package manager?

Ghost hardened images prioritize security through minimalism:

  • Reduced attack surface: Fewer binaries mean fewer potential vulnerabilities
  • Immutable infrastructure: Runtime containers shouldn't be modified after deployment
  • Compliance ready: Meets strict security requirements for regulated environments

The hardened images intended for runtime don't contain a shell nor any tools for debugging. Common debugging methods for applications built with Ghost hardened images include:

  • Docker Debug to attach to containers
  • Docker's Image Mount feature to mount debugging tools
  • Ecosystem-specific debugging approaches

Docker Debug provides a shell, common debugging tools, and lets you install other tools in an ephemeral, writable layer that only exists during the debugging session.

For example, you can use Docker Debug:

docker debug <image-name>

or mount debugging tools with the Image Mount feature:

docker run --rm -it --pid container:my-container \
  --mount=type=image,source=registry.ghost-prod.alphabravo.io/ghost-base/dhi-busybox,destination=/dbg,ro \
  registry.ghost-prod.alphabravo.io/ghost-base/dhi-cilium-operator-aws:<tag> /dbg/bin/sh

Image variants

Ghost hardened images come in different variants depending on their intended use.

Runtime variants are designed to run your application in production. These images are intended to be used either directly or as the FROM image in the final stage of a multi-stage build. These images typically:

  • Run as the nonroot user
  • Do not include a shell or a package manager
  • Contain only the minimal set of libraries needed to run the app

Build-time variants typically include dev in the variant name and are intended for use in the first stage of a multi-stage Dockerfile. These images typically:

  • Run as the root user

  • Include a shell and package manager

  • Are used to build or compile applications

  • FIPS variants include fips in the variant name and tag. They come in both runtime and build-time variants. These variants use cryptographic modules that have been validated under FIPS 140, a U.S. government standard for secure cryptographic operations. For example, usage of MD5 fails in FIPS variants.

To view the image variants and get more information about them, select the Tags tab for this repository, and then select a tag.

Migrate to a Ghost hardened image

Switching to the hardened Cilium Operator AWS image does not require any special changes. You can use it as a drop-in replacement for the standard Cilium Operator AWS (cilium/cilium-operator-aws) image in your existing workflows and configurations. Note that the entry point for the hardened image may differ from the standard image, so ensure that your commands and arguments are compatible.

Troubleshooting migration

The following are common issues that you may encounter during migration.

General debugging

The hardened images intended for runtime don't contain a shell nor any tools for debugging. The recommended method for debugging applications built with Ghost hardened images is to use Docker Debug to attach to these containers. Docker Debug provides a shell, common debugging tools, and lets you install other tools in an ephemeral, writable layer that only exists during the debugging session.

Permissions

By default image variants intended for runtime, run as the nonroot user. Ensure that necessary files and directories are accessible to the nonroot user. You may need to copy files to different directories or change permissions so your application running as the nonroot user can access them.

Privileged ports

Non-dev hardened images run as a nonroot user by default. As a result, applications in these images can't bind to privileged ports (below 1024) when running in Kubernetes or in Docker Engine versions older than 20.10.

No shell

By default, image variants intended for runtime don't contain a shell. Use dev images in build stages to run shell commands and then copy any necessary artifacts into the runtime stage. In addition, use Docker Debug to debug containers with no shell.

Entry point

Ghost hardened images may have different entry points than images such as Docker Official Images. Use docker inspect to inspect entry points for Ghost hardened images and update your Dockerfile if necessary.