- Rust 66.9%
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- TypeScript 4.2%
- CSS 3.5%
- Other 1.7%
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Cert auth answers a role, so nothing in the swarm can authenticate to the store until some role exists. Creating the first one therefore cannot itself use a certificate — the credential has to come from outside that cycle, and an operator places it. `deploy.bao.bootstrapTokenFile` names that token. A one-shot unit inside the store's container reads it and writes the `swarm-controller` policy; `local-defaults.nix` supplies the path (never the file) on an all-local deploy, since co-location makes only the location derivable. `bao operator init` stays an operator action in every shape. The unit runs in the container rather than on the host because writing the first grant is a store-side operation: it reaches the store locally and needs no client certificate. Gating it on the store being here is therefore not the co-location assumption glue-matrix-bao-token.nix warns about — a reader has to work from anywhere, the first write never does. Policy only, deliberately: a cert-auth role binds a certificate and the controller has no bao identity yet — it holds no leaf and contains no bao code at all. The two certificates that do exist are both wrong to bind. `clientCertFile` is the store host's own reader leaf rather than the controller's, and the CA that signed it also signs every other reader's, so binding that would let any reader authenticate as the controller. Whoever gives the controller an identity writes the role. The grants are scoped to `hive-*`. Without the prefix the controller could rewrite the policy that constrains it. Two things the module-eval arms pin: the unit renders inside the container with the token path in both its script and its ConditionPathExists, and a host that names a token while running no store gets neither the unit nor the host-side directory. The capabilities were derived with `bao write -output-policy` rather than written from memory, and the setup.md commands were run against a real binary for shape before being written down. Refs #3726. |
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| .forgejo/workflows | ||
| branding | ||
| claude-plugins | ||
| docs | ||
| frontend | ||
| hive-agent | ||
| hive-agent-mcp | ||
| hive-agent-sock | ||
| hive-bash-mcp | ||
| hive-c0re | ||
| hive-core-agent-sock | ||
| hive-forge | ||
| hive-forge-notify | ||
| hive-host-sock | ||
| hive-jobq | ||
| hive-jobq-metrics | ||
| hive-jobq-wire | ||
| hive-matrix-mcp | ||
| hive-metric | ||
| hive-priv | ||
| hive-priv-sock | ||
| hive-screen-mcp | ||
| hive-sh4re | ||
| hive-sock-client | ||
| hive-types | ||
| hivectl | ||
| nix | ||
| scripts | ||
| swagger-ui-theme | ||
| swarm-authelia-bridge | ||
| swarm-authelia-bridge-sock | ||
| swarm-controller | ||
| swarm-nats-auth | ||
| swarm-queue-client | ||
| swarm-secret-client | ||
| swarmctl | ||
| .gitignore | ||
| .mailmap | ||
| .prettierignore | ||
| .prettierrc | ||
| .vale.ini | ||
| Cargo.lock | ||
| Cargo.toml | ||
| CLAUDE.md | ||
| clippy.toml | ||
| flake.lock | ||
| flake.nix | ||
| README.md | ||
hyperhive
a swarm of claude-code agents, each in its own nspawn cage, gossiping over unix sockets. config changes flow as git commits, the operator approves them in a browser, every deploy is a tag. cyberpunk-themed dashboard included. 💜⚡
Claude code is great in one window, exponentielle across many — but only if you can keep the agents from stepping on each other, give them durable identity, and stop them from eating production. hyperhive is the substrate.
- identity = unix socket
- communication = sqlite-backed broker (
send/recv/remind) - config = git (manager proposes, operator approves, deploys land as tagged commits)
- blast radius = container
every hive (NixOS host, runs hive-c0re.service)
│
├── operator
│ ├── browser → :80 (hive-gateway) dashboard + per-agent UIs
│ │ /agent/<name>/ → per-agent unix socket
│ └── CLI → /run/hyperhive/host.sock admin protocol
│
├── hive-c0re (Rust daemon: lifecycle / broker / approvals /
│ auto-update / dashboard / sockets)
│
├── hive-gateway (optional) nginx — proxies :80 → c0re dashboard + per-agent sockets
│
└── agent containers
├── h-ruth manager (privileged MCP surface, approval gating)
└── h-<name> sub-agent (claude + MCP tools + per-agent web UI + unix socket)
one host per swarm (optional — connects hives; can be any hive, including
one that's also running the tree above)
│
├── hive-forge Forgejo — swarm-wide singleton, per-agent accounts + config mirror
├── hive-matrix tuwunel — swarm-wide singleton, Matrix homeserver + per-agent accounts
├── swarm-controller cross-hive state: hive directory, agent roster, jobs
├── swarm-ui swarm-wide SPA, served straight off the gateway (no own container)
├── swarm-authelia SSO — one login gates swarm-ui + Grafana + more
├── swarm-nats message queue (JetStream KV: hive-status, …)
├── swarm-otel telemetry collector, sole holder of the upstream credential
├── swarm-victoriametrics metrics store
├── swarm-victorialogs log store
└── swarm-grafana dashboards over the metrics/log stores, own OIDC login
→ website · → docs · → options reference
Depth lives in docs/ (rendered at
hyperhive.darkest.space/docs/) —
start at docs/README.md and pick the page matching
your task rather than reading front to back.
Quick start
Minimal flake.nix for a host that runs hive-c0re:
{
inputs = {
nixpkgs.url = "github:NixOS/nixpkgs/nixos-26.05";
hyperhive.url = "git+https://forge.darkest.space/hyperhive/hyperhive";
# Pin hyperhive to your own nixpkgs instead of the one it ships with
# (see "Overriding nixpkgs" below) — recommended for most hosts:
hyperhive.inputs.nixpkgs.follows = "nixpkgs";
};
outputs = { nixpkgs, hyperhive, ... }: {
nixosConfigurations.my-host = nixpkgs.lib.nixosSystem {
system = "x86_64-linux";
modules = [
hyperhive.nixosModules.default # hive-c0re + hive-forge + hive-gateway in one import
({ ... }: {
services.hyperhive.enable = true;
# services.hyperhive.c0re.operatorPronouns = "they/them"; # default: "she/her"
# ... rest of your host config
system.stateVersion = "25.11";
})
];
};
};
}
hive-c0re opens its admin socket + dashboard, auto-creates the
manager container, and auto-rebuilds any container whose hyperhive
rev goes stale. claude-code is unfree — hyperhive scopes the
whitelist to itself, nothing for the operator to set.
Overriding nixpkgs
hyperhive pins its own nixpkgs so it builds standalone in CI. Add
hyperhive.inputs.nixpkgs.follows = "nixpkgs" (as in the quick-start above)
to build it against your host's nixpkgs instead — one less nixpkgs
evaluation, no version drift from the rest of your system. Standard flake
follows pattern; works as long as your channel is reasonably close to the
nixos-26.05 hyperhive develops against. Drop it again if a much
older/newer channel hits breakage hyperhive's CI doesn't catch.
For the full list of host and agent NixOS options see the options reference.
Operator CLI
hivectl is the operator-facing host CLI for ad-hoc administration that
doesn't go through the broker (built alongside hive-c0re when the host
module is enabled):
sudo hivectl forge create-user mara # provisions a forge user
sudo hivectl forge create-user mara --password 'hunter2' # … with a fixed password
sudo hivectl matrix create-user mara # provisions a matrix user
sudo hivectl matrix create-user mara --password-stdin # … reading one line from stdin
For a name that's a managed agent, hivectl persists the resulting token
to that agent's state dir, the same as the boot sweep does. For a
non-agent name (e.g. the operator's own forge/matrix account), it prints
the token to stdout and writes nothing.
Build / deploy
nix develop -c cargo check
nix flake check # rust + nix + toml fmt + clippy
# deploy from a host config that imports hyperhive.nixosModules.default
nix flake update --update-input hyperhive
sudo nixos-rebuild switch --flake .#<host>