Leave the agent working. Keep production authority bounded.
emisar gives MCP-capable agents a catalog of declared infrastructure actions instead of a shell. Policy decides what runs, what waits for a person, and what is denied. A small outbound-only runner checks the action again on the host before it executes anything.
Start with the public pack catalog, let emisar suggest the packs that match a host, and add your own actions without adding another MCP server to every client.
You need an emisar account, a Linux host with
systemd and sudo, and outbound HTTPS access to emisar.dev:443. You do not
open an inbound port on the host.
-
In the dashboard, choose Connect a runner. Copy the generated command; it contains a fresh, single-use enrollment key.
-
Run it on the host:
curl -sSL https://emisar.dev/install.sh \ | sudo EMISAR_ENROLLMENT_KEY=emkey-enroll-... EMISAR_URL=https://emisar.dev bashThe installer verifies the release checksum, creates the service, installs host-matched starter packs, and starts the runner.
-
Confirm the runner is online in the dashboard, then dispatch
linux.uptimewith a reason. You are done when the output appears and the run is present in the audit trail. -
Open LLM agents and connect your client. Remote MCP clients use OAuth; local stdio clients can use the
emisar-mcpbridge and its browser approval flow.
The complete walkthrough, including expected output and troubleshooting, is at
emisar.dev/docs/quickstart. An agent can
perform and certify the setup with the public
install-emisar skill.
AI client
| MCP: discover actions, request one with typed arguments
v
emisar control plane
| authenticate, scope, apply policy, wait for approval when required
v
outbound-only runner
| verify pack hash, validate arguments, enforce local limits
v
declared host command
stream redacted output, journal the attempt, update fleet audit
The action pack is the contract. It fixes the executable, argv shape, argument schema, risk, timeout, output limits, redaction, and side-effect description. The model selects from that contract; it does not invent a command line for the runner to execute.
Adding a pack adds capabilities behind the same MCP surface. Operators do not need to deploy another tool server or reconfigure every agent when the catalog changes.
- No inbound runner listener. The runner dials the control plane over a TLS websocket.
- Declared actions only. Cloud input is limited to typed, schema-bounded arguments. The runner rejects unknown actions and arguments.
- Content-addressed packs. The control plane pins the trusted pack hash; the runner recomputes it from disk before execution. New or changed custom packs wait for trust.
- Policy before side effects. Runner scope, risk policy, action overrides, standing grants, and conditional approval are evaluated before dispatch.
- Host-side enforcement. The runner clamps execution options to the pack's limits, runs the declared binary and argv, and redacts output before it leaves the host.
- Two records. The control-plane audit includes denied and pending requests; every runner also writes its execution attempts and local refusals to a hash-chained JSONL journal.
- Optional client-attested dispatch. A runner can require an Ed25519 intent signed by the MCP client, so the control plane cannot originate or widen a permitted call.
Read the exact guarantees, limitations, and threat model in
.agent/kb/specs/security-model.md.
- It is not a sandbox or process isolator. We recommend using one, such as coop.
- It is not a generic
execute(command)tool or a replacement for SSH. - It does not replace OS least privilege, change management, or configuration management.
- It does not make a permitted destructive action harmless. The safety boundary is only as strong as the actions, pack trust, policy, runner configuration, and host permissions in use.
The staging-only shell pack is the explicit break-glass exception to the
declared-action model. It is critical-risk, default-denied, never suggested,
and should not be installed on production runners.
| Goal | Start here |
|---|---|
| Install, upgrade, harden, or diagnose a host | runner/README.md |
| Connect Claude, ChatGPT, Cursor, Codex, or another MCP client | Connect an LLM |
| Inspect or develop the stdio bridge | mcp/README.md |
| Browse, install, or author action packs | packs/README.md |
| Let an agent install emisar, connect a client, or author a pack | skills/README.md |
| Review architecture and trust boundaries | .agent/kb/architecture.md |
| Review protocol contracts | .agent/kb/specs/wire-protocol.md and .agent/kb/specs/mcp-api.md |
| Contribute to the control plane | portal/README.md |
| Review the production GCP infrastructure | infra/README.md |
portal/ Elixir/Phoenix control plane, operator console, website, and MCP API
runner/ Go host runner and operator CLI
mcp/ Go stdio-to-HTTP MCP bridge
packs/ Versioned action-pack catalog
skills/ Standalone customer skills for coding agents
infra/ Production Terraform for emisar on Google Cloud
run Root contributor command for development, tests, gates, and operations
dev/ Development Compose topologies, images, configs, and fixtures
tools/ Go implementations behind the contributor command and CI
dist/ Tracked distribution packages plus ignored generated build output
.agent/kb/ Repository architecture, specifications, runbooks, and rules
Each top-level project has its own AGENTS.md with its architecture, security
rules, and verification gate. Run ./run help for the complete contributor
command surface.
The fast loop runs Phoenix directly on the host and keeps only PostgreSQL and Keycloak in the workspace-isolated Coop dependency stack:
./run setup # first run: tools, sidecars, deps, browser, migrations
./run certs trust # macOS: trust this workspace's Keycloak CA for localhost
./run seed # explicit, idempotent demo data
./run serve # live reload at the URL printed by Coop./run urls prints this workspace's distinct Portal, metrics, Postgres, and
Keycloak URLs. Coop forks inherit the same setup but receive different ports and
volumes. Seeds are never applied by setup, serve, or reset unless explicitly
requested.
The root docker-compose.yml remains the slower packaged topology with the
release Portal image, seeded demo data, three runners, MCP, and signing. Start it
with ./run smoke; it serves http://localhost:4010. See
portal/README.md and dev/README.md.
This repository is dual-licensed:
runner/,mcp/, andpacks/are open source under the Apache License 2.0. You can inspect, build, package, and operate the on-host components independently.- Everything else, including
portal/, is source-available under the Business Source License 1.1. Non-production use is free. Production use is permitted only as needed to operate the Apache-licensed components or the hosted service under the Additional Use Grant; other production use requires a commercial license. Each version converts to Apache 2.0 on its Change Date.
See contributing, security,
and the CLA. For commercial licensing, contact
licensing@emisar.dev.