
pyghidra-mcp v0.2.5
MCP server bridging Ghidra's reverse engineering capabilities to LLM agents. Provides decompilation, cross-references, symbol search, and program editing via headless or GUI mode for automated binary analysis.
PyGhidra-MCP - Ghidra Model Context Protocol Server
Overview
pyghidra-mcp is a command-line Model Context Protocol (MCP) server that brings the full analytical power of Ghidra, a robust software reverse engineering (SRE) suite, into the world of intelligent agents and LLM-based tooling.
It bridges Ghidra’s ProgramAPI and FlatProgramAPI to Python using pyghidra and jpype, then exposes that functionality via the Model Context Protocol.
MCP is a unified interface that allows language models, development tools (like VS Code), and autonomous agents to access structured context, invoke tooling, and collaborate intelligently. Think of MCP as the bridge between powerful analysis tools and the LLM ecosystem.
With pyghidra-mcp, Ghidra becomes an intelligent backend—ready to respond to context-rich queries, automate deep reverse engineering tasks, and integrate into AI-assisted workflows.
pyghidra-mcp now supports two operating modes:
headlessmode for CLI-driven analysis and automation--guimode, which launches Ghidra throughpyghidra-mcpand shares live program state with the running GUI
[!NOTE] This beta project is under active development. We would love your feedback, bug reports, feature requests, and code.
Yet another Ghidra MCP?
Yes, the original ghidra-mcp is fantastic. But pyghidra-mcp takes a different approach:
- 🐍 Headless-first, GUI-capable – Run entirely via CLI for streamlined automation, or launch Ghidra with
--guiwhen you want live GUI navigation and edits. - 🔁 Designed for automation – Ideal for integrating with LLMs, CI pipelines, and tooling that needs repeatable behavior.
- ✅ CI/CD friendly – Built with robust unit and integration tests for both client and server sessions.
- 🚀 Quick startup – Asynchronous startup allows the server to start handling requests while binaries are still being analyzed in the background. Supports fast command-line launching with minimal setup.
- 📦 Project-wide analysis – Enables concurrent reverse engineering of all binaries in a Ghidra project
- 🤖 Agent-ready – Built for intelligent agent-driven workflows and large-scale reverse engineering automation.
- 🔍 Semantic code search – Uses vector embeddings (via ChromaDB) to enable fast, fuzzy lookup across decompiled functions, comments, and symbols—perfect for pseudo-C exploration and agent-driven triage.
This project provides a Python-first experience optimized for local development, headless environments, and testable workflows.
Setup Diagrams
How the Pieces Connect
flowchart LR
subgraph Clients["Clients"]
Agent["MCP host / agent"]
Cli["pyghidra-mcp-cli"]
User["Ghidra user"]
end
subgraph Process["pyghidra-mcp process"]
Transport["stdio or streamable-http"]
Tools["MCP tools"]
Context["PyGhidra context"]
end
Project["Ghidra project<br/>.gpr / .rep"]
Artifacts["MCP artifacts<br/>ChromaDB + GZF cache"]
Gui["Ghidra GUI / CodeBrowser<br/>only with --gui"]
Agent -->|"stdio or HTTP"| Transport
Cli -->|"HTTP only"| Transport
Transport --> Tools
Tools --> Context
Context --> Project
Context --> Artifacts
Context -.-> Gui
User -.-> Gui
Gui -.-> Project
Choosing a Mode
flowchart TD
Start["What do you need?"]
Start --> Headless["Agent or automation only"]
Start --> GuiNeed["Live Ghidra GUI control"]
Start --> Terminal["Interactive terminal client"]
Headless --> Stdio["pyghidra-mcp -t stdio<br/>or -t streamable-http"]
GuiNeed --> GuiMode["pyghidra-mcp --gui<br/>--transport streamable-http<br/>--project-path project.gpr"]
Terminal --> HttpServer["Start pyghidra-mcp<br/>--transport streamable-http"]
HttpServer --> CliMode["Run pyghidra-mcp-cli commands"]
- Headless MCP: use
stdiofor local MCP hosts, orstreamable-httpwhen several clients need the same long-running Ghidra project. - GUI mode:
pyghidra-mcplaunches Ghidra, opens the project, and exposes extra tools that steer the CodeBrowser in the same JVM. - CLI client:
pyghidra-mcp-cliis an HTTP client. Start astreamable-httpserver first, then issue terminal commands against that running server.
Detailed architecture and tool surface
flowchart TD
subgraph Clients
Agent["LLM / MCP host"]
Cli["pyghidra-mcp-cli"]
Automation["scripts and CI"]
end
subgraph Transports
Stdio["stdio"]
Http["streamable-http"]
Sse["sse legacy"]
end
subgraph Server["pyghidra-mcp server"]
FastMcp["FastMCP tool server"]
Context["PyGhidra context"]
Indexing["background analysis and Chroma indexing"]
subgraph Tools["MCP tools"]
Analysis["decompile, xrefs, bytes, callgraph"]
Search["symbols, strings, code"]
ProjectOps["import, delete, metadata, list binaries"]
Edits["rename function, rename variable, set type, set prototype, set comment"]
GuiOnly["GUI only: open program, goto, list open programs, set current program"]
end
end
subgraph GhidraRuntime["Ghidra runtime"]
PyGhidra["pyghidra"]
Jpype["JPype shared JVM"]
Project["Ghidra project"]
Programs["program databases"]
CodeBrowser["Ghidra GUI / CodeBrowser"]
end
Agent --> Stdio
Agent --> Http
Automation --> Stdio
Automation --> Http
Automation --> Sse
Cli --> Http
Stdio --> FastMcp
Http --> FastMcp
Sse --> FastMcp
FastMcp --> Context
Context --> PyGhidra
PyGhidra --> Jpype
Jpype --> Project
Project --> Programs
Context --> Indexing
Indexing --> Search
FastMcp --> Tools
Tools --> Context
GuiOnly -.-> CodeBrowser
Context -.-> CodeBrowser