cmux-team

Coordinate multi-agent development workflows across Master, Manager, Conductor, and Agent layers.

4|Updated Mar 30, 2026
One-click install
npx skills add https://github.com/tanaka-yui/yui-cc-plugins --skill cmux-team
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: cmux-team
Source: https://github.com/tanaka-yui/yui-cc-plugins/tree/main/apps/cmux-team/skills/cmux-team
Command: npx skills add https://github.com/tanaka-yui/yui-cc-plugins --skill cmux-team

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Orchestrates end-to-end multi-agent development workflows across Master, Manager, Conductor, and Agent to streamline collaboration, task coordination, and progress visibility.

Core Features & Use Cases

  • Agent spawning, monitoring, and result collection across a fixed 4-tier architecture.
  • Synchronization protocols and task-state management via file-based communication and surface prompts.
  • Use cases include scalable task orchestration for concurrent tasks and robust fault tolerance through pull-based status checks.

Quick Start

Spawn the initial manager workspace and start the daemon to begin coordinating agents.

Frequently Asked Questions about cmux-team

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I orchestrate multi-agent development workflows for concurrent tasks?

You orchestrate multi-agent development workflows by spawning agents across a fixed 4-tier architecture of Master, Manager, Conductor, and Agent layers to coordinate task assignment and monitor concurrent progress.

How does file-based communication work for task-state management in multi-agent orchestration?

File-based communication enables task-state management by using synchronization protocols and surface prompts, allowing distributed agents to share status updates and coordinate results without direct inter-process messaging.

Do I need a persistent daemon to manage multi-agent task orchestration?

Yes, multi-agent task orchestration requires a persistent daemon to run continuously, enabling spawn-based agent coordination, pull-based status checks, and robust fault tolerance across constrained environments.

What is the best way to monitor task progress across spawned agents?

The best way to monitor task progress is through pull-based status checks and surface-driven communication, which provide visibility into agent execution and ensure robust fault tolerance during result integration.

Can I use CLI commands to spawn and coordinate agents in constrained environments?

Yes, you can use a suite of CLI commands to spawn workspaces, start daemons, and coordinate agents, enabling task creation, assignment, and result integration specifically within constrained environments.

When should I not use a fixed 4-tier architecture for task management?

You should avoid a fixed 4-tier architecture for task management when your orchestration needs require highly dynamic, ad-hoc agent topologies rather than predefined Master, Manager, Conductor, and Agent role hierarchies.