
Build MCPB
OfficialFreePackage a local MCP server with its runtime.
Free · Opens the source repo
What Build MCPB does
The Build MCPB skill allows developers to create a bundled local MCP server that includes its runtime, enabling users to run the server without needing to have Node or Python installed on their machines. This is particularly useful for applications that need to interact with the local filesystem, desktop applications, or OS-level APIs. By distributing an MCPB file, developers can ensure that their local server is easily installable and operational, simplifying the deployment process for end users.
An MCPB bundle contains a zip archive that includes essential files such as the manifest.json, which defines the server's identity and configuration, and the server code itself. The server operates as a standard stdio MCP server, meaning that developers can leverage familiar patterns while also enjoying the benefits of packaging. The skill is designed for those who need to distribute local servers that require direct access to local resources, making it an ideal choice for applications that are not solely reliant on cloud APIs.
The skill also emphasizes security considerations, as the MCPB does not enforce permissions at the manifest level. Developers are responsible for validating paths and ensuring that their applications follow best practices to avoid security vulnerabilities. This means that while the skill provides a straightforward way to package and distribute local servers, it also requires developers to take an active role in implementing security measures.
In summary, Build MCPB is a valuable tool for developers who need to create and distribute local MCP servers that can operate independently of the user's existing toolchain. Its focus on bundling and ease of installation makes it a practical choice for applications that require local execution and interaction with the user's environment.
When to use it
Use this skill when you need to package a local MCP server that interacts with the user's local environment and does not require them to have Node or Python set up.
When not to use it
Avoid using this skill for servers that primarily interact with cloud APIs, as a remote server would be more appropriate in those cases.
What you can build with it
Local File Management Tool
Develop a tool that allows users to read and manage files directly from their local filesystem without needing additional installations.
Desktop Application Integration
Create a server that interacts with a desktop application, enabling local data processing and interaction.
Custom Local API Server
Package an API server that provides local services and interacts with other applications on the user's machine.
How to install Build MCPB
View source1. Install with the skills CLI
npx skills add anthropics/claude-plugins-official/build-mcpb --agent claude-code2. Or install it manually
Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.
Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs
Inside SKILL.md
Written by anthropicsBuild an MCPB (Bundled Local MCP Server)
MCPB is a local MCP server packaged with its runtime. The user installs one file; it runs without needing Node, Python, or any toolchain on their machine. It's the sanctioned way to distribute local MCP servers.
MCPB is the secondary distribution path. Anthropic recommends remote MCP servers for directory listing — see https://claude.com/docs/connectors/building/what-to-build.
Use MCPB when the server must run on the user's machine — reading local files, driving a desktop app, talking to localhost services, OS-level APIs. If your server only hits cloud APIs, you almost certainly want a remote HTTP server instead (see build-mcp-server). Don't pay the MCPB packaging tax for something that could be a URL.
What an MCPB bundle contains
my-server.mcpb (zip archive)
├── manifest.json ← identity, entry point, config schema, compatibility
├── server/ ← your MCP server code
│ ├── index.js
│ └── node_modules/ ← bundled dependencies (or vendored)
└── icon.png
The host reads manifest.json, launches server.mcp_config.command as a stdio MCP server, and pipes messages. From your code's perspective it's identical to a local stdio server — the only difference is packaging.
Manifest
{
"$schema": "https://raw.githubusercontent.com/anthropics/mcpb/main/schemas/mcpb-manifest-v0.4.schema.json",
"manifest_version": "0.4",
"name": "local-files",
"version": "0.1.0",
"description": "Read, search, and watch files on the local filesystem.",
"author": { "name": "Your Name" },
"server": {
"type": "node",
"entry_point": "server/index.js",
"mcp_config": {
"command": "node",
"args": ["${__dirname}/server/index.js"],
"env": {
"ROOT_DIR": "${user_config.rootDir}"
}
}
},
"user_config": {
"rootDir": {
"type": "directory",
"title": "Root directory",
"description": "Directory to expose. Defaults to ~/Documents.",
"default": "${HOME}/Documents",
"required": true
}
},
"compatibility": {
"claude_desktop": ">=1.0.0",
"platforms": ["darwin", "win32", "linux"]
}
}
server.type — node, python, or binary. Informational; the actual launch comes from mcp_config.
server.mcp_config — the literal command/args/env to spawn. Use ${__dirname} for bundle-relative paths and ${user_config.<key>} to substitute install-time config. There's no auto-prefix — the env var names your server reads are exactly what you put in env.
user_config — install-time settings surfaced in the host's UI. type: "directory" renders a native folder picker. sensitive: true stores in OS keychain. See references/manifest-schema.md for all fields.
Server code: same as local stdio
The server itself is a standard stdio MCP server. Nothing MCPB-specific in the tool logic.
import { McpServer } from "@modelcontextprotocol/sdk/server/mcp.js";
import { StdioServerTransport } from "@modelcontextprotocol/sdk/server/stdio.js";
import { z } from "zod";
import { readFile, readdir } from "node:fs/promises";
import { join } from "node:path";
import { homedir } from "node:os";
// ROOT_DIR comes from what you put in manifest's server.mcp_config.env — no auto-prefix
const ROOT = (process.env.ROOT_DIR ?? join(homedir(), "Documents"));
const server = new McpServer({ name: "local-files", version: "0.1.0" });
server.registerTool(
"list_files",
{
description: "List files in a directory under the configured root.",
inputSchema: { path: z.string().default(".") },
annotations: { readOnlyHint: true },
},
async ({ path }) => {
const entries = await readdir(join(ROOT, path), { withFileTypes: true });
const list = entries.map(e => ({ name: e.name, dir: e.isDirectory() }));
return { content: [{ type: "text", text: JSON.stringify(list, null, 2) }] };
},
);
server.registerTool(
"read_file",
{
description: "Read a file's contents. Path is relative to the configured root.",
inputSchema: { path: z.string() },
annotations: { readOnlyHint: true },
},
async ({ path }) => {
const text = await readFile(join(ROOT, path), "utf8");
return { content: [{ type: "text", text }] };
},
);
const transport = new StdioServerTransport();
await server.connect(transport);
Sandboxing is entirely your job. There is no manifest-level sandbox — the process runs with full user privileges. Validate paths, refuse to escape ROOT, allowlist spawns. See references/local-security.md.
Before hardcoding ROOT from a config env var, check if the host supports roots/list — the spec-native way to get user-approved directories. See references/local-security.md for the pattern.
Build pipeline
Node
npm install
npx esbuild src/index.ts --bundle --platform=node --outfile=server/index.js
# or: copy node_modules wholesale if native deps resist bundling
npx @anthropic-ai/mcpb pack
mcpb pack zips the directory and validates manifest.json against the schema.
Python
pip install -t server/vendor -r requirements.txt
npx @anthropic-ai/mcpb pack
Vendor dependencies into a subdirectory and prepend it to sys.path in your entry script. Native extensions (numpy, etc.) must be built for each target platform — avoid native deps if you can.
MCPB has no sandbox — security is on you
Unlike mobile app stores, MCPB does NOT enforce permissions. The manifest has no permissions block — the server runs with full user privileges. references/local-security.md is mandatory reading, not optional. Every path must be validated, every spawn must be allowlisted, because nothing stops you at the platform level.
If you came here expecting filesystem/network scoping from the manifest: it doesn't exist. Build it yourself in tool handlers.
If your server's only job is hitting a cloud API, stop — that's a remote server wearing an MCPB costume. The user gains nothing from running it locally, and you're taking on local-security burden for no reason.
MCPB + UI widgets
MCPB servers can serve UI resources exactly like remote MCP apps — the widget mechanism is transport-agnostic. A local file picker that browses the actual disk, a dialog that controls a native app, etc.
Widget authoring is covered in the build-mcp-app skill; it works the same here. The only difference is where the server runs.
Testing
# Interactive manifest creation (first time)
npx @anthropic-ai/mcpb init
# Run the server directly over stdio, poke it with the inspector
npx @modelcontextprotocol/inspector node server/index.js
# Validate manifest against schema, then pack
npx @anthropic-ai/mcpb validate
npx @anthropic-ai/mcpb pack
# Sign for distribution
npx @anthropic-ai/mcpb sign dist/local-files.mcpb
# Install: drag the .mcpb file onto Claude Desktop
Test on a machine without your dev toolchain before shipping. "Works on my machine" failures in MCPB almost always trace to a dependency that wasn't actually bundled.
Reference files
references/manifest-schema.md— fullmanifest.jsonfield referencereferences/local-security.md— path traversal, sandboxing, least privilege
Frequently asked questions about Build MCPB
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