Migrate from MinIO to Silo
Migrating from MinIO to Silo is an in-place binary replacement, not a data migration. Nothing is exported or re-imported. In a container deployment the only required change is the image name. For RPM/DEB installations, see Native Package Migration.
What changes
In order of importance:
- Container image:
minio/minio,quay.io/minio/minio, andpgsty/minioare all replaced bydocker.io/pgsty/silo. - Package, systemd service, and server executable:
minio→silo. - Upstream services: the in-place updater and MinIO-operated callhome/SUBNET are disabled; upgrades go through packages, images, or your orchestrator.
- Default OS service account:
silo— fresh installations only; migrations keep running as the existing data owner. - Branding: banners, Console appearance, log wording, and product links say Silo.
What stays
- Object data and the
.minio.sysmetadata directory — the on-disk format is unchanged and remains interoperable with MinIO in both directions. - Buckets, versions, users, access keys, policies, lifecycle rules, replication state, encryption metadata.
- S3 API, SigV4 signing, SDKs,
mc/mcli, presigned URL behavior. - Endpoint hostname, API port
9000, Console port, volume mounts. MINIO_*environment variables and existing server options./minio/*routes,x-minio-*headers,minio_*metrics.
There is no data-conversion step. If your MinIO build is years old, validate the version distance itself in staging; it is a large software upgrade, not a format change.
Docker migration
Whichever image you run today, replace it with:
Tags: immutable RELEASE.YYYY-MM-DDTHH-MM-SSZ (pin these), rolling latest, and the -distroless variants below. The old pgsty/minio repository stays published, frozen at its final tag.
In Compose, change only the image line:
The entrypoint translates the legacy first argument, so an inherited command: minio server /data keeps working. A hard-coded entrypoint: /usr/bin/minio must change to /usr/bin/silo. Existing mc ready local healthchecks keep working; the native replacement is test: ["CMD", "silo", "healthcheck", "ready"] (reference). Do not run docker compose down -v — -v deletes the data volume.
Distroless variant
pgsty/silo:<RELEASE-tag>-distroless ships the silo binary only: no shell, no mc, no curl. It has a built-in HEALTHCHECK (the native probe) and works under any --user:
The same deployment as a Compose file:
depends_on: condition: service_healthy works against it with no healthcheck: block. The volume format is the same as the classic image and MinIO — the variants are interchangeable over the same data. TLS certificates mount at /tmp/.silo/certs. If command-line flags move the listen address, point the built-in probe with MINIO_HEALTHCHECK_URL. There is no shell inside; debug with docker debug / kubectl debug.
Kubernetes
Kubelet probes are httpGet requests in the pod spec; Docker HEALTHCHECK is ignored, so both image variants are probed identically and existing probe configs keep working. For Helm releases, keep the release identity with nameOverride/fullnameOverride and compare helm template output before applying (details).
Rollback
The disk format is unchanged and works with both servers: set image: back to the recorded MinIO tag and docker compose up -d. The same volume stays attached, and data written by Silo remains readable by MinIO.
One cluster, one binary
Distributed nodes verify each other’s binary at bootstrap. A node started among peers running a different binary does not fail — it waits indefinitely in activating, logging:
This applies to any pair of different binaries: MinIO next to Silo, and one Silo version next to another. So do not migrate — or later upgrade — a cluster node by node. Switch all nodes in one pass: stop the old binary everywhere, start the new one everywhere (in Compose: change the image for all nodes in one edit, docker compose up -d once). Single-node deployments are unaffected. The same applies to rollback. Rolling restarts of the same binary work normally; gate them with silo healthcheck --maintenance cluster (exit 0 = safe to stop this node).
Verification
Then download a known object and compare its checksum, exercise one application through its existing SDK, restart the service once, and re-check.