celld

August 14, 2026 · View on GitHub

Self-hosted, distributed Durable Objects.

celld is an open-source daemon that runs Cloudflare Workers and Durable Objects on your own machines. Each object is its own SQLite database. celld addresses an object by name and replicates it to a bucket that you own. The bucket can be S3-compatible or Google Cloud Storage. The nodes coordinate through that bucket alone, with no control plane and no consensus. Because every object is its own small database, applications shard by construction — the contention and blast-radius failures of one shared database are designed out, not managed. A cell that no node holds is inactive, and an inactive cell costs nearly nothing. Learn more at celld.dev or read the documentation.

How it works

Every celld node embeds V8 and executes Wrangler bundles. The fleet shares one bucket, which contains deployments, cell state, and small ownership records. The bucket can be S3-compatible or Google Cloud Storage. Object-storage compare-and-swap ensures that exactly one node owns a cell at a time, without a membership protocol, failure detector, or consensus service.

celld continuously replicates each cell's SQLite database to the bucket. When a cell moves, or when an inactive cell activates, its new owner restores that database and resumes execution. The bucket is the durable source of truth; nodes are replaceable.

Install

The installer downloads the celld binary (provenance is verifiable with gh attestation verify):

curl -fsSL https://celld.dev/install.sh | sh

Put ~/.local/bin on your PATH if the installer asks you to.

Worker projects deployed with celld deploy need esbuild on PATH; asset-only projects do not.

The installer keeps each release under ~/.local/lib/celld/releases and points one symlink at the current one. To remove celld, delete the symlink and the releases:

rm `which celld` && rm -rf ~/.local/lib/celld

Container

The release image contains the celld binary and is published for Linux x86-64 and ARM64:

docker run --rm ghcr.io/denoland/celld --version

Persist the runtime's local state and pass the standard AWS credential environment through:

docker volume create celld-state
docker run --rm --network host \
  -e AWS_ACCESS_KEY_ID \
  -e AWS_SECRET_ACCESS_KEY \
  -e AWS_SESSION_TOKEN \
  -e CELLD_WATCH=/var/lib/celld/state \
  -v celld-state:/var/lib/celld \
  ghcr.io/denoland/celld \
  --bucket s3://my-cells-bucket \
  --endpoint https://ACCOUNT.r2.cloudflarestorage.com \
  --region auto \
  --listen 0.0.0.0:8080 \
  --internal-listen 10.0.0.12:8081 \
  --advertise node-a.internal:8081

Drop --endpoint and --region for AWS S3. Expose port 8080 through the load balancer, and keep port 8081 on the private network.

Run it

celld uses the standard AWS credential chain. Deploy to an S3-compatible bucket, then start celld against the same bucket:

celld deploy . \
  --bucket s3://my-cells-bucket

celld \
  --bucket s3://my-cells-bucket \
  --listen 0.0.0.0:8080 \
  --internal-listen 10.0.0.12:8081 \
  --advertise 10.0.0.12:8081

Use --endpoint for another S3-compatible service and --region when it cannot be inferred. A gs:// bucket selects Google Cloud Storage. celld then uses the Cloud Storage XML API with generation preconditions. Authentication uses Application Default Credentials. celld rejects an S3 --endpoint for a gs:// bucket, and it ignores the storage region:

celld deploy . --bucket gs://my-cells-bucket
celld --bucket gs://my-cells-bucket --listen 0.0.0.0:8080 \
  --internal-listen 10.0.0.12:8081 --advertise 10.0.0.12:8081

A fleet runs one application, and every node loads its latest successfully committed deployment from deploy/current.json. Run celld --help for the complete command line. Deployment objects use the documented types in crates/celld/protocol.rs. celld deploy invokes esbuild from PATH for Worker code, accepts the supported Wrangler config subset—including co-deployed or asset-only static assets—and writes those objects directly. Every node discovers owners and peers from bucket leases; there is no account or join service.

Peer HTTP and the operator API use the internal listener. Put every advertised address on a trusted private network or an encrypted overlay such as WireGuard or Tailscale. Do not publish the internal port. celld rejects a literal public IP unless you supply --unsafe-public-advertise. An explicit advertised address requires an explicit internal-listener address. celld cannot verify a hostname or a translated port, so you must route the advertised address to the internal listener. The first current node creates fleet/peer-auth.json in the bucket. All peer requests are protocol-versioned, body-bound, HMAC-authenticated, clock-bounded, and replay-protected with that fleet secret. Treat access to the bucket and its credentials as fleet administrator access.

Operate a fleet

celld diagnose enumerates every node lease by default, then performs a signed direct probe of each live peer:

celld diagnose --bucket s3://my-cells-bucket

The report keeps checking after an individual failure and distinguishes expired records, malformed or unsafe advertise addresses, unreachable peers, and incompatible protocols. It also prints each node's coarse resident-cell, WebSocket, RSS, CPU, file-descriptor, pressure, and shedding sample. Pass one or more --peer NODE_ID options to restrict the check.

Set a hard resident-cell limit on each loaded node:

CELLD_MAX_RESIDENT_CELLS=1000 \
celld --bucket s3://my-cells-bucket --listen 0.0.0.0:8080 \
  --internal-listen 10.0.0.12:8081 --advertise node-a.internal:8081

celld enables a memory threshold at 80% of the available memory by default. Set CELLD_MAX_RSS_MB to change the threshold, or set it to 0 to disable memory pressure shedding. celld measures the memory that the cells hold, and not the resident set size of the process. The two differ, because the memory allocator keeps some freed pages instead of returning them to the operating system. Shedding a cell cannot return those pages, so a threshold on the resident set size holds a node in pressure after the node gives every cell back. The /state route reports both numbers.

celld also applies an absolute cap to the resident set size of the process. The cap is 95% of the available memory. It protects the node when the allocator holds memory that shedding cannot return, because the operating system stops a process that uses more memory than the machine has. The node logs a warning when this cap applies.

The cap is a share of the machine, and celld does not derive it from the threshold. A CELLD_MAX_RSS_MB at or above 95% of the available memory therefore reaches the cap. The cap is then the effective limit. The node decides on its resident set size, and celld reports this at startup. CELLD_MAX_RSS_MB=0 disables the threshold and the cap together. When celld cannot read the size of the available memory, it applies a cap of 125% of an explicit threshold.

Under pressure, celld durably replicates and fences the least-recently used idle cells. It then publishes the cells as unowned without resetting their epochs. Those cells become inactive, and celld refuses to reacquire new unowned cells.

Each limit releases separately. The threshold releases when the memory in use falls to 80% of the threshold. The cap releases when the resident set size falls to 80% of the cap. A crossing of one limit therefore does not hold the node against the other.

A spare receives no assignment. It acquires a released cell through the same bucket protocol when normal traffic reaches it. celld does not shed a cell with active work or a live host WebSocket.

Contributions

Pull requests are disabled. Coding agents make it too easy to send a large, low-context change that costs maintainers more time than it saves. Thoughtful contributions are welcome; please understand the code, keep the patch focused, and respect the review time you are asking for.

Send a git format-patch attachment to ry@deno.com.

Contributor License Agreement: By emailing a patch, you certify that you have the right to submit it and assign to Deno Land Inc. all rights in the patch that you can assign. Where a right cannot be assigned, you grant Deno Land Inc. a perpetual, irrevocable, worldwide, royalty-free, transferable, sublicensable license to use, modify, combine, relicense, redistribute, or publish the patch, in whole or in part, with or without attribution.

License

Apache-2.0

See the limitations and security pages before operating a public fleet.