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How to harden an ArangoDB container (and is arangodb:3.12 safe for untrusted workloads?)

Short answer: a stock docker run arangodb:3.12 is not a boundary you should trust around untrusted code or an untrusted network. Graded on IronClaw's seven-dimension containment scale, the default configuration scores 48 of 100, grade D (porous). Higher is safer. Four runtime flags take the same image to 100 of 100, grade A. This guide shows the exact gaps and the exact fixes, straight from the scan data.

Every number here comes from a read-only docker inspect of arangodb:3.12, the same data behind its isolation scorecard. No workload is executed. How scoring works →

Where the default configuration leaks

ironctl scan grades seven independent containment boundaries. On a default docker run arangodb:3.12, four of them fail or warn:

Dimension Verdict Score What the scan found
Non-root user (uid != 0) ❌ FAIL 0/15 runs as root (uid 0); a container escape starts with host-uid 0
Dropped capabilities ❌ FAIL 4/20 default capability set retained (CAP_NET_RAW, CAP_MKNOD, and more)
Seccomp profile ✅ PASS 15/15 seccomp profile active
Network isolation / egress ⚠️ WARN 4/15 network=bridge: outbound egress is possible
Read-only root filesystem ❌ FAIL 0/10 root filesystem is writable
No docker.sock exposure ✅ PASS 15/15 no control socket mounted
No shared host namespaces ✅ PASS 10/10 no host PID/IPC/network sharing

For a multi-model database that holds your graphs, documents, and key-value data in one place, the two that should worry you most are egress and root. An ArangoDB process that can reach the network is a process that can exfiltrate every collection the moment it is compromised (a poisoned AQL query, a Foxx service CVE). And a root process that escapes the container escapes as root on the host.

Harden it: the exact --fix remediation

ironctl scan my-arangodb --fix prints one remediation per failed dimension, then a single copy-pasteable hardened run. For arangodb:3.12:

  • --cap-drop=ALL (Dropped capabilities, +16): drop every Linux capability; add back only what the workload provably needs. ArangoDB needs none of the defaults.
  • --user 65532:65532 (Non-root user, +15): pin a non-root uid so an escape does not begin as host uid 0. Point the data directory at a volume this uid owns.
  • --network=none (Network isolation, +11): if the database is only reached by services on a private user-defined network, cut host egress entirely; otherwise attach a single internal network with no default route, not bridge.
  • --read-only --tmpfs /tmp (Read-only rootfs, +10): make the root filesystem read-only and mount /var/lib/arangodb3 as an explicit writable volume. Removes the persistence surface.

Before and after

# Before: 48/100, grade D
docker run -d --name arangodb -e ARANGO_ROOT_PASSWORD=changeme arangodb:3.12

# After: 100/100, grade A
docker run -d --name arangodb-hardened \
  --user 65532:65532 \
  --cap-drop=ALL \
  --security-opt=no-new-privileges \
  --read-only --tmpfs /tmp \
  -v arangodb-data:/var/lib/arangodb3 \
  --network=none \
  -e ARANGO_ROOT_PASSWORD=changeme \
  arangodb:3.12

Rescan and the same seven dimensions all pass: ironctl scan arangodb-hardened reports 100/100 grade A. That is a 52-point swing from four one-line flags, no image rebuild.

If ArangoDB is clustered (Coordinators and DB-Servers talk to Agents over the network) or serves remote clients, keep the data node hardened but hold the network dimension at a WARN with a scoped internal network instead of --network=none. That is an honest 89/100, grade B ceiling: the last 11 points pay for cutting a connection the cluster needs.

Verify it on your own database

The grade above is the default image. Your deployment is what matters. Scan it in ten seconds:

# install (Homebrew)
brew install ironsecco/ironclaw/ironclaw

# grade your running container, then print the fixes
ironctl scan my-arangodb
ironctl scan my-arangodb --fix

ironctl scan also reads a docker-compose.yml service or a Kubernetes manifest, so you can grade the ArangoDB in your stack, not just a bare docker run.

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