dhi.io/open-cluster-management-placement
A Kubernetes controller that makes placement decisions for workloads across managed clusters based on Placement APIs.
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:
dhi.io/<repository>:<tag><your-namespace>/dhi-<repository>:<tag>For the examples, you must first use docker login dhi.io to authenticate to the registry to pull the images.
This Docker Hardened open-cluster-management-placement image includes:
placement binary built from the official Open Cluster Management releases/placement symlink to the binary at /usr/local/bin/placement[/placement, controller], matching the OCM cluster-manager operator argv patternThe Placement controller is a Kubernetes controller and requires a running Kubernetes cluster with the Open Cluster Management hub installed. It cannot be run standalone outside of a Kubernetes environment.
The Placement controller is deployed by the OCM cluster-manager operator using container args such as
["/placement", "controller", ...]. This image uses the same argv-style default command (no separate entrypoint), so it
is compatible with the operator without patching deployments.
Set placementImagePullSpec on the ClusterManager CR (or the cluster-manager Helm chart image overrides) to your DHI
image reference.
kubectl get pods -n open-cluster-management-hub -l app=cluster-manager-placement-controller
docker run --rm dhi.io/open-cluster-management-placement:<tag> /placement --version
The Placement controller is configured via command-line flags. Use the controller subcommand to start the controller:
docker run --rm dhi.io/open-cluster-management-placement:<tag> /placement controller --help
For production deployments, use the Open Cluster Management operator to manage the Placement controller lifecycle. Refer to the Open Cluster Management documentation for details.
| Feature | Non-hardened (quay.io/open-cluster-management/placement) | Docker Hardened (dhi/open-cluster-management-placement) |
|---|---|---|
| Base image | Red Hat UBI Minimal | Debian 13 hardened base |
| User | UID 10001 | Nonroot user (UID 65532) |
| Binary location | /placement | /placement (symlink to /usr/local/bin/placement) |
| Shell/utilities | Included | Not included (minimal attack surface) |
| CVE compliance | Standard patching | Near-zero CVEs with proactive remediation |
| Provenance | Not signed | Signed with complete SBOM/VEX |
Docker Hardened Images prioritize security through minimalism. Runtime images don't contain a shell or package manager to reduce attack surface. For debugging, use Docker Debug to attach to containers with ephemeral debugging tools.
Docker 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:
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:
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 migrate your application to a Docker Hardened Image, you must update your Dockerfile. At minimum, you must update the base image in your existing Dockerfile to a Docker Hardened Image. This and a few other common changes are listed in the following table of migration notes:
| Item | Migration note |
|---|---|
| Base image | Replace your base images in your Dockerfile with a Docker Hardened Image. |
| Package management | Non-dev images, intended for runtime, don't contain package managers. Use package managers only in images with a dev tag. |
| Non-root user | By default, non-dev images, intended for runtime, run as the nonroot user. Ensure that necessary files and directories are accessible to the nonroot user. |
| Multi-stage build | Utilize images with a dev tag for build stages and non-dev images for runtime. For binary executables, use a static image for runtime. |
| TLS certificates | Docker Hardened Images contain standard TLS certificates by default. There is no need to install TLS certificates. |
| 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. |
| Entry point | Docker Hardened Images may have different entry points than images such as Docker Official Images. Inspect entry points for Docker Hardened Images and update your Dockerfile if necessary. |
| No shell | By default, non-dev images, intended for runtime, don't contain a shell. Use dev images in build stages to run shell commands and then copy artifacts to the runtime stage. |
The following steps outline the general migration process.
Find hardened images for your app.
A hardened image may have several variants. Inspect the image tags and find the image variant that meets your needs.
Update the base image in your Dockerfile.
Update the base image in your application's Dockerfile to the hardened image you found in the previous step. For framework images, this is typically going to be an image tagged as dev because it has the tools needed to install packages and dependencies.
For multi-stage Dockerfiles, update the runtime image in your Dockerfile.
To ensure that your final image is as minimal as possible, you should use a multi-stage build. All stages in your Dockerfile should use a hardened image. While intermediary stages will typically use images tagged as dev, your final runtime stage should use a non-dev image variant.
Install additional packages
Docker Hardened Images contain minimal packages in order to reduce the potential attack surface. You may need to install additional packages in your Dockerfile. Inspect the image variants to identify which packages are already installed.
Only images tagged as dev typically have package managers. You should use a multi-stage Dockerfile to install the packages. Install the packages in the build stage that uses a dev image. Then, if needed, copy any necessary artifacts to the runtime stage that uses a non-dev image.
For Alpine-based images, you can use apk to install packages. For Debian-based images, you can use apt-get to install packages.
The hardened images intended for runtime don't contain a shell nor any tools for debugging. The recommended method for debugging applications built with Docker 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.
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.
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.
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.
Docker Hardened Images may have different entry points than images such as Docker Official Images. Use docker inspect
to inspect entry points for Docker Hardened Images and update your Dockerfile if necessary.