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Extensions
Extensions add capabilities to nanobot without modifying the agent loop. A package can declare tools, commands, hooks, skills, channels, providers, MCP servers, or WebUI surfaces in one governable manifest. Extension API v1 executes native Python tools, commands, and hooks plus the compatible Pi and OpenClaw surfaces listed below; other contribution kinds are catalog metadata until their owning nanobot subsystem provides an activation adapter.
Use this page to install and manage extensions. To publish one, read Extension Authoring. For the internal design, read Extension System.
Install Safely
The WebUI Extensions page and the nanobot extensions commands use the same
local extension store. The safe lifecycle is:
- Find or install a package.
- Inspect its source, runtime, dependencies, requested permissions, and diagnostics.
- Grant only the permissions you understand.
- Mark the package trusted.
- Enable it.
Installation does not grant trust. An installed package remains visible but inactive until it is enabled, trusted, has all requested permissions, and passes integrity and dependency checks.
WebUI
Open Extensions in the sidebar:
- Installed manages packages in
~/.nanobot/extensions/. - Discover searches npm packages marked for nanobot, Pi, or OpenClaw.
- Built in shows native nanobot capabilities projected into the same catalog. Built-in entries are informational and are not uninstallable.
Select an entry to see its contributions, dependencies, permission reasons, source, compatibility notices, and activation errors. Trust and permission controls are intentionally separate.
CLI
# Search all supported npm ecosystems
nanobot extensions search "memory"
# Search one compatibility ecosystem
nanobot extensions search "review" --ecosystem pi
# Install without trusting the package
nanobot extensions install @scope/package
# Inspect before activation
nanobot extensions inspect pi.scope.package
# Grant exactly the requested host permissions
nanobot extensions permissions pi.scope.package network.http workspace.read
# Trust and enable
nanobot extensions trust pi.scope.package
nanobot extensions enable pi.scope.package
Install from Git or a local directory when the package is not published:
nanobot extensions install https://github.com/acme/nanobot-tool.git --kind git
nanobot extensions install ./my-extension --kind local
Local-directory installation is available only to local WebUI requests. Remote browser clients cannot ask the gateway to read an arbitrary server path.
Sources and Scopes
Extensions can come from three scopes:
| Scope | Typical source | Behavior |
|---|---|---|
| Built in | nanobot package | Trusted by construction; shown for ownership and diagnostics |
| User | ~/.nanobot/extensions/ |
Installed and governed through the WebUI or CLI |
| Workspace | <workspace>/.nanobot/extensions/ |
Project-local code; controlled by workspace trust policy |
When the same extension ID exists in multiple scopes, the nearest eligible copy wins: workspace over user, user over built in. An untrusted, disabled, denied, or invalid copy does not hide a usable lower-scope copy. A contribution cannot silently replace another extension's contribution. Disable one owner before activating the other; extension API v1 does not let packages replace core or third-party registrations.
Pi and OpenClaw Packages
nanobot reads native Pi and OpenClaw package metadata and runs supported JavaScript or TypeScript entries in a Node.js sidecar. Compatibility is not all-or-nothing:
- Adapted packages always request
runtime.node, making process-level code execution explicit before trust and activation. - Tools, slash commands, and supported lifecycle observation hooks can run.
- Provider-like registrations and several host-specific capabilities may be cataloged but not executable.
- Terminal UI, session-tree, renderer, shortcut, and model-control APIs do not have equivalent nanobot host surfaces.
- Every degraded or unsupported registration appears in diagnostics.
Check the compatibility matrix before depending on a package. A package appearing in search results means its metadata is recognizable, not that every upstream API is implemented.
Trust and Permissions
An extension is executable code. Review it with the same care as a Python or npm dependency.
- Enabled says the extension may activate.
- Trusted says you approve executing its code.
- Granted permissions record the exact capabilities you reviewed and approved.
- Dependencies must themselves be active before activation.
Permissions are consent and activation gates, not runtime capability
enforcement or an operating-system sandbox. Direct extension code may access
anything available to its process. A trusted native Python extension executes
inside nanobot. A Pi or OpenClaw extension executes in a separate Node.js
process, which improves failure isolation but is not a strong security
boundary. Their generated manifests therefore request runtime.node; granting
it acknowledges this execution model but does not confine the process. Use
containers or another OS sandbox for untrusted third-party code.
nanobot records a package content hash at installation. If files change later, the package cannot activate, even if configuration marks it trusted; reinstall it so the new contents can be reviewed.
npm installation uses lifecycle scripts disabled. This prevents package
preinstall and postinstall scripts from running during installation, but the
extension entry itself will run after you explicitly trust and enable it.
Configuration
Most users should manage installed packages in the WebUI or CLI. Advanced
deployments can also define extension policy in ~/.nanobot/config.json:
{
"extensions": {
"enabled": true,
"paths": ["/opt/nanobot/extensions"],
"allow": [],
"deny": ["acme.blocked"],
"workspaceTrust": "ask",
"entries": {
"acme.review": {
"enabled": true,
"trusted": true,
"permissions": ["workspace.read"],
"config": {
"mode": "strict"
}
}
}
}
}
Config entries do not rewrite the installation registry. See
Configuration for exact fields. Actions from
the Extensions WebUI or CLI reload the extension host. Direct edits to advanced
extensions config fields are applied on the next process start.
Diagnose an Inactive Extension
Start with:
nanobot extensions list
nanobot extensions inspect <extension-id>
Common causes:
| State or diagnostic | What to do |
|---|---|
| Untrusted | Review the package, then use trust |
| Requested permission pending | Grant the exact requested permission set |
| Disabled | Use enable or remove it from extensions.deny |
| Integrity mismatch | Reinstall and review the changed package |
| Missing dependency | Install and activate the named package, executable, environment variable, or extension |
| Contribution conflict | Disable one owner before activating the other |
| Compatibility notice | Read which upstream API was translated, degraded, or unsupported |
| Activation failed | Check the package entry, runtime dependency, and gateway logs |
Policy changes reload the active extension host. A broken extension becomes a diagnostic and does not prevent unrelated extensions from being discovered.
Remove an Extension
nanobot extensions disable <extension-id>
nanobot extensions uninstall <extension-id>
Uninstall removes the user-scope package and its local policy record. It does not remove a built-in capability or a separately configured workspace copy.