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GitHub - multiplayer-app/multiplayer: The open-source debugging agent for developers. We connect your favorite coding agent to prod to fix application bugs automatically. Run us locally and eliminate PR slop.
argoeris · 2026-06-18 · via Show HN

Multiplayer

License Visit Multiplayer

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The open-source debugging agent for developers. We connect your favorite coding agent to prod to fix application bugs automatically. Run us locally and eliminate PR slop.

Website · Docs · CLI

Multiplayer CLI agent preview

What is Multiplayer?

The Multiplayer debugging agent connects your favorite coding agent directly to production to fix application bugs automatically.

Multiplayer runs securely and locally alongside tools like Claude Code (GA), Codex (private beta), and Copilot (private beta). Only when it detects an error or exception anywhere in your stack it sends runtime session data to your coding agent, managing the whole process from bug identified to bug fixed: data gathering, intelligent triage and issue deduplication, coding agent prompting, PR creation and user notification.

The session data fed to the coding agents is full-stack, auto-correlated, and unsampled. It also includes data observability tools miss such as request/response content and headers from all components in your system.

This repository contains the self-hostable agent: the web app, backend services, data pipelines, storage integrations, and shared libraries that power Multiplayer.

Highlights

  • Plug and play with your own agent: we run locally right next to your favorite coding agent so you can fix application bugs in production.
  • Better data for coding agents and humans: APMs heavily sample and miss critical content. We capture and correlate deep, unsampled data across your entire system (frontend to backend), giving your agent the complete runtime picture.
  • Intelligent issue triage and deduplication: we filter for high-priority bugs and group identical errors locally. You get one high-quality, merge-ready fix for critical issues, instead of an avalanche of duplicate PRs for the same bug.
  • Multiplayer CLI: Use the terminal UI to work through sessions, inspect context, ask an agent to debug, and turn fixes into branches or pull requests.
  • Open SDK ecosystem: Capture sessions from JavaScript, React Native, Go, .NET, Python, Ruby, and Java applications.
  • Self-hostable stack: Run the platform locally with Docker Compose, PM2, Turborepo, MongoDB, RabbitMQ, Redis, Kafka, ClickHouse, MinIO, OpenSearch, and OpenTelemetry.

Multiplayer CLI

The Multiplayer CLI brings the debugging workflow into the terminal. It is designed for agent-assisted investigation: connect a session, inspect the collected evidence, reason over code and runtime context, and produce a concrete fix.

Multiplayer debugging agent demo

Use the CLI when you want to:

  • hand an AI agent the exact session and code context for a bug;
  • investigate issues without switching between the dashboard, terminal, and browser tools;
  • create a branch or pull request from the debugging flow;
  • keep the full debugging trace attached to the fix.

See the multiplayer-cli repository for installation and usage instructions.

Multiplayer web dashboard

The Multiplayer web dashboard gives teams a shared debugging workspace for debugging sessions. Engineers can review the conversation between the Multiplayer debugging agent and their coding agent and dive into the specific session data (full-stack session recordings) and how the issues were identified and grouped (issues).

Multiplayer session dashboard

Use the web dashboard when you want to:

  • review the debugging sessions across all Multiplayer debugging agents in your team;
  • resume or edit a debugging session to update a bug fix and generate a new PR;
  • review the issues identified in your platform;
  • review the data gathered per bug identified and replay the user journey, inspect events and requests;
  • annotate session recordings and keep notes tied to the exact runtime evidence that produced the issue.

What's in this repo?

  • clients/multiplayer-web-app - the Multiplayer web application.
  • services/* - backend services for API, auth, git integrations, collaboration, notifications, assets, versioning, and radar/debugging workflows.
  • libs/* - shared platform libraries for auth, models, storage, messaging, telemetry, logging, MCP, and service utilities.
  • scripts/* - local development, infrastructure, migrations, seed data, and PM2 orchestration.
  • docs/img/* - README and product preview assets.

Requirements

For Docker Compose deployment (recommended): only Docker and Docker Compose are required.

For local development with PM2: Node.js, pnpm, PM2, and bunyan are also required.

Running with Docker Compose (Recommended)

docker/docker-compose.prod.yml starts the full platform using prebuilt images from Docker Hub — all infrastructure (MongoDB, RabbitMQ, Redis, Kafka, ClickHouse, MinIO, OpenSearch, OpenTelemetry collector) plus all application services (API, auth, radar, git, collaboration, assets, notifications, version, nginx).

1. Configure environment

Copy the example env file into the docker/ directory, where the compose file expects it:

cp .env.example docker/.env

Edit docker/.env and fill in any required credentials. Email integrations can be left blank unless you need them.

2. Start the platform

docker compose -f docker/docker-compose.prod.yml up -d

All services use health checks and will come up in dependency order.

Stopping

# Stop containers
docker compose -f docker/docker-compose.prod.yml down

Local Development

1. Install dependencies

2. Configure environment

Review .env before starting the platform. Most local defaults are defined in pm2.config.yml; external provider credentials such as email providers are only needed when testing those integrations.

3. Start infrastructure

Start just the infrastructure dependencies with the dev compose file:

docker compose -f docker/docker-compose.dev.yml up -d

4. Start the platform

This starts Docker Compose, builds the platform libraries and services, runs migrations, seeds required roles, and launches the web app and backend services with PM2.

Open http://localhost when startup completes.

PM2 commands

  • pm2 stop all - stop all services.
  • pm2 restart {{SERVICE_NAME}} - restart one service, for example pm2 restart auth.
  • pm2 restart all - restart all services.
  • pm2 delete all - remove all services from PM2.
  • pm2 logs {{SERVICE_NAME}} - view logs for one service.
  • pm2 logs {{SERVICE_NAME}} --raw | bunyan - view formatted logs for one service.

Useful Commands

pnpm build
pnpm lint
pnpm stop:pm2
pnpm migrate:up
pnpm migrate:down
pnpm seed-roles

Related Projects

Documentation

Start with the Multiplayer docs for product concepts, SDK setup, and hosted-platform usage. Service-specific setup notes live in the README files under services/* and library-specific notes live under libs/*.

Contributing

Please read CONTRIBUTING.md for the branching strategy and commit conventions.

License

Multiplayer Platform is released under the MIT License.