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rea: Reverse engineer anything with agents, from app behavior down to native binaries.

rea: Reverse engineer anything with agents, from app behavior down to native binaries.

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REA: Reverse Engineer Anything

One MCP for reverse engineering across binaries, applications, and runtime behavior.

See a feature you like. Understand how it works, down to the binary level.

npm version CI MCP tool catalog Node.js 22+ skills.sh MIT license Discord

morluto%2Frea | Trendshift

Website · Guides · Showcases

Quick start · How REA works · What you can analyze · Showcases · FAQ · Documentation

npx rea-agents setup


REA launching its analysis bridge inside Hopper while inspecting a native binary
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See a feature in an app that you want in your own product? Ask your agent to investigate it with REA. It can inspect the app without its source code, explain how the feature works, show the evidence, and build a version for your project.

REA connects your agent to tools for inspecting native binaries, JavaScript and Electron apps, .NET assemblies, and websites. You can also use the same tools from your terminal. Analysis runs locally, and results include the evidence and limitations behind each conclusion.

Setup registers REA with your agent and installs matching workflow instructions. Native analysis can use an existing Hopper or Ghidra installation; setup can optionally install Hopper with approval. Static JavaScript analysis needs neither engine.

Visit the REA website for setup instructions, illustrated guides, and real case studies.

Quick start

Set up your agent

With Node.js and npm installed, run:

npx rea-agents setup

Choose your agents, review the proposed changes, and approve them. Setup adds REA’s MCP server and matching workflow instructions, with backups of existing configuration. Restart your agent afterward.

Setup supports Claude Code, Codex, Cursor, Gemini CLI and other agents. See installation and setup for provider configuration and manual MCP registration.

Ask your agent

Understand how search works in the Notes app, show me the evidence, and build a
similar feature for my project.

Replace Notes with your target app and the feature you want to understand.

Use the terminal

Inspect an extracted JavaScript/Electron app directory or ASAR:

npx -y rea-agents@latest analyze-javascript-application /absolute/path/to/app --json

The result includes modules, imports, Electron boundaries and their evidence. Replace the path with your target, such as "D:/apps/example" on Windows.

To install the rea command for regular use:

npm install --global rea-agents
rea --help

For native analysis, configure a provider first. See the CLI and Evidence guide for native commands, provider selection, snapshots and scripting.

Update REA

REA changes quickly, and new releases include frequent bug fixes. Keep your installation up to date.

For an npm-installed CLI:

rea update

To refresh your agent registrations and skill, run the setup command printed by the update.

If you use npx, update your agent setup with:

npx rea-agents@latest setup

Review the setup changes and restart your agent. For one-off CLI commands, use npx rea-agents@latest followed by the command.

How REA works

Your agent calls REA through MCP to inspect the target and trace relevant code. REA returns findings with their evidence. The agent uses them to ask follow-up questions, explain the behavior, or write and test an implementation. CLI commands use the same workflows.

REA investigation flow: your agent asks about a local target, REA inspects and traces it using analysis tools, and the agent uses the returned code, references and unknowns to explain, implement and test.

Open the full-size figure.

What you can analyze

REA requires Node.js 22.x (>=22.19), 24.x (>=24.11), or 26+, plus npm. Additional tools and host support depend on the target:

TargetWhat REA returnsRequirements and guide
Native binariesPseudocode, assembly, strings, symbols, calls and referencesHopper, Ghidra or IDA; native analysis
Offline ELF layoutSections, segments, original symbols/relocations and static mitigation candidatesCaller-supplied pwntools on Linux x64; binary diagnostics
EVM bytecodeDispatch selectors, byte offsets, inferred arguments and mutabilityLocal raw/hex carrier; offline EVM guide
Recorded Linux crashesRaw notes, every recorded thread’s registers/signals and optional mapping candidatesCaller-supplied pwntools; optional GDB/pwndbg; recorded crashes
JavaScript / ElectronModules, imports, source maps, routes, IPC and native add-on relationshipsNode.js and npm; application analysis
WebsitesPage structure, scripts, network observations and requested screenshotsA Chrome-family browser; browser analysis
Saved network capturesRequests, responses, exposed payloads and source locationsHAR; mitmdump on Linux for native mitmproxy captures; capture guide
.NET assembliesMetadata, CIL instructions, declared native dependencies and build comparisonsStatic inspection; managed-code guide
Android APKsManifest declarations, classes, decompiled methods and referencesHeadless JADX and a full JDK on Linux/macOS; Android guide
FirmwareRegions, extraction results and native-analysis handoffsBinwalk / Unblob on Linux; firmware guide
Packages and resourcesFile inventories, digests, plists, Apple bundle anatomy and extracted resourcesArtifact and JavaScript guide, Apple applications
Process behaviorTerminal output, interactions, exit and filesystem observations, and run comparisonsLinux/macOS with a native PTY; process capture

Static JavaScript and .NET inspection read the supplied files without running the application. Runtime capture runs or interacts with the selected target using your user permissions; each runtime guide describes its effects.

Native formats and host support vary by provider. See Hopper and Ghidra setup, the IDA guide, and experimental Windows Ghidra support. Ghidra also supports 16-bit DOS analysis. For provider selection, see the CLI guide. Check release availability for features added since the latest npm release.

Showcases

DX-Ball: reconstruct a sound-pan calculation

Follow a sound call into its position-to-pan helper, inspect the instructions, and turn incomplete pseudocode into C. The reconstruction passes 3,205 original-x86 cases and reproduces all 63 compiled function bytes.

Read the case study · Reconstruction repository

Notion: trace the Electron clipboard bridge

Find the renderer’s clipboard API, follow it through preload and IPC into the main process, and inspect the rich clipboard format.

Read the case study

TH04: recover a DOS bullet-ring calculation

Inspect the original PC-98 game’s 16-bit instructions, recover the fixed and aimed angle calculations, and compare the reconstructed C++ with the historical compiler output.

Read the case study · Reconstruction repository

If you’ve used REA on something interesting, we’d love to see it. Share your case in an issue or a pull request, including the target, your question, how REA helped, and what you found.

FAQ

Which agents can use REA?

Any agent that supports local MCP servers. Setup configures the supported agents; other clients can use manual MCP registration.

Do I need Hopper, Ghidra or IDA?

Deep native analysis uses one of them. Static JavaScript and .NET inspection work without a native analysis engine. Setup can install Hopper after approval; Ghidra and IDA use your existing installations. See provider setup.

Do I need to start Hopper first?

REA starts Hopper when an operation needs it. On macOS, a first-run dialog may ask you to choose demo mode or activate your license. See Hopper startup and troubleshooting.

What does installing the skill from skills.sh do?

The skill supplies investigation instructions for your agent. Use rea setup to register REA’s MCP server and install the matching instructions, then restart your agent. See skill-only installation.

What code does REA return?

Native analysis returns pseudocode and assembly. JavaScript/Electron analysis recovers modules and their relationships. Your agent uses these findings to write and test an implementation; the showcases give worked examples.

Does REA upload my app?

REA analyzes targets locally. Your agent receives the tool results, and its model provider has its own data policy.

What should I do if I hit a bug?

Update first; a recent release may already fix it.

For an npm-installed CLI:

rea update

For agent setup through npx:

npx rea-agents@latest setup

If you’re using an agent, complete the setup refresh and restart it. Retry the same task. If the problem persists, open an issue with your REA version, target type, steps to reproduce and error output.

Documentation

Start with the website’s worked guides. For exact options, prerequisites and result contracts:

Report vulnerabilities through SECURITY.md.

Contributing

We’d love your help with REA! Open an issue to report a bug or suggest a feature, or send a pull request to improve the code or docs.

See CONTRIBUTING.md for development setup and checks, testing for verification lanes, and the architecture map for the project structure.

Website · npm · skills.sh · Issues · Security

License

MIT

Star history

REA GitHub star history

Disclaimer

REA provides tools for lawful reverse-engineering research, analysis, and reconstruction. You are responsible for obtaining any required authorization and complying with applicable laws. The project does not endorse illegal or unauthorized use.