- CLAUDE.md: project context for Claude Code sessions - README.md: human-facing project intro, structure, getting started - docs/tooling.md: cmux, Claude Code, Crit, and OpenSpec workflow Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
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Development Tooling
This project is built using AI-assisted, spec-driven development. Here are the main tools used in the development workflow.
cmux
Native macOS terminal for AI coding agents
- Website: https://cmux.dev
- GitHub: https://github.com/manaflow-ai/cmux
cmux is a native macOS terminal app purpose-built for running AI coding agents like Claude Code. It provides vertical tabs, split panes, and smart notifications that show which panes need attention — ideal for running multiple Claude Code sessions in parallel across different parts of the monorepo.
Key features we use:
- Split panes for Planner and Journal development side by side
- Notification badges when a Claude Code session needs input
- Native performance (Swift/AppKit, not Electron)
Claude Code
AI coding assistant (CLI)
Claude Code is the primary development tool for this project. It reads the
codebase, understands the architecture (via CLAUDE.md), and implements
features from OpenSpec tasks.
Key integrations:
CLAUDE.mdat repo root provides project context- OpenSpec slash commands (
/opsx:propose,/opsx:apply, etc.) - Crit integration for code review
Crit
Inline code review tool
Crit provides browser-based inline review for files and diffs. It's used in the development workflow for reviewing architecture plans, specs, and code changes before committing.
How we use it:
- Review architecture and design documents with inline comments
- Claude Code addresses review comments and re-opens for another round
- Iterate until the reviewer clicks "Finish Review" with no comments (approved)
Usage:
crit <file> # Review a specific file
crit # Review git diff (uncommitted or branch changes)
crit share <file> # Share a review via URL
OpenSpec
AI-native spec-driven development
- Website: https://openspec.dev
- GitHub: https://github.com/Fission-AI/OpenSpec
OpenSpec structures the development workflow around specifications. Each feature starts as a "change" with four artifacts:
- proposal.md — Why this change is needed and what capabilities it adds
- design.md — Technical decisions and architecture
- specs/ — Testable requirements with WHEN/THEN scenarios
- tasks.md — Implementation checklist
Workflow:
# Propose a new feature (generates all artifacts)
/opsx:propose "add route sharing"
# Implement tasks from a change
/opsx:apply
# Archive when done
/opsx:archive
OpenSpec files live in openspec/ at the repo root. The current active change
is openspec/changes/phase-1-mvp/.
How They Work Together
1. Plan cmux + Claude Code + Crit
Draft architecture → review with Crit → iterate
2. Specify Claude Code + OpenSpec
/opsx:propose → generates proposal, design, specs, tasks
3. Implement cmux + Claude Code + OpenSpec
/opsx:apply → Claude Code works through tasks
Run multiple sessions in cmux split panes
4. Review Crit
Review changes in browser → address comments → approve
5. Ship Claude Code
Commit, push, deploy