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Codebase Design

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Enhance your module design with shared vocabulary and principles.

by mattpocock212.7k stars on mattpocock/skills
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Updated Aug 6, 2026
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What Codebase Design does

The Codebase Design skill provides a structured approach to designing deep modules in software development. It emphasizes the importance of having a small interface that encapsulates a significant amount of behavior, thereby improving testability and maintainability. By using the specific vocabulary outlined in this skill, developers can communicate more effectively about module design, avoiding common pitfalls associated with ambiguous terms. This skill is particularly useful for teams looking to improve their code structure and interface design.

At its core, the skill encourages the use of deep modules, which are defined as having a small interface that hides complex logic within. This design principle not only simplifies the interface for callers but also concentrates knowledge and verification within the module, making it easier to manage. By adhering to the glossary provided, developers can ensure consistency in their discussions and documentation, which is crucial for collaborative projects.

The skill also includes practical guidelines for testing, emphasizing the need for interfaces that facilitate easy testing. It advises developers to accept dependencies rather than create them and to design functions that return results instead of producing side effects. These principles help in creating modules that are not only easier to use but also simpler to test, leading to higher quality code.

Overall, Codebase Design is aimed at developers and teams who want to refine their module design practices, enhance collaboration through a shared vocabulary, and ultimately produce more robust and maintainable codebases.

When to use it

Use this skill when designing or restructuring code modules to ensure clarity and maintainability.

When not to use it

This skill may not be suitable for projects that require rapid prototyping or where strict adherence to vocabulary is not feasible.

What you can build with it

Refactoring an Existing Module

When restructuring an existing module, use the principles from this skill to simplify its interface and enhance its depth.

Designing New Modules

Apply the shared vocabulary and guidelines when designing new modules to ensure they are testable and maintainable from the start.

Improving Team Collaboration

Use this skill to establish a common language around module design, improving communication and understanding within your development team.

How to install Codebase Design

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1. Install with the skills CLI

npx skills add mattpocock/skills/codebase-design --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by mattpocock

Codebase Design

Design deep modules: a lot of behaviour behind a small interface, placed at a clean seam, testable through that interface. Use this language and these principles wherever code is being designed or restructured. The aim is leverage for callers, locality for maintainers, and testability for everyone.

Glossary

Use these terms exactly — don't substitute "component," "service," "API," or "boundary." Consistent language is the whole point.

Module — anything with an interface and an implementation. Deliberately scale-agnostic: a function, class, package, or tier-spanning slice. Avoid: unit, component, service.

Interface — everything a caller must know to use the module correctly: the type signature, but also invariants, ordering constraints, error modes, required configuration, and performance characteristics. Avoid: API, signature (too narrow — they refer only to the type-level surface).

Implementation — what's inside a module, its body of code. Distinct from Adapter: a thing can be a small adapter with a large implementation (a Postgres repo) or a large adapter with a small implementation (an in-memory fake). Reach for "adapter" when the seam is the topic; "implementation" otherwise.

Depth — leverage at the interface: the amount of behaviour a caller (or test) can exercise per unit of interface they have to learn. A module is deep when a large amount of behaviour sits behind a small interface, shallow when the interface is nearly as complex as the implementation.

Seam (Michael Feathers) — a place where you can alter behaviour without editing in that place; the location at which a module's interface lives. Where to put the seam is its own design decision, distinct from what goes behind it. Avoid: boundary (overloaded with DDD's bounded context).

Adapter — a concrete thing that satisfies an interface at a seam. Describes role (what slot it fills), not substance (what's inside).

Leverage — what callers get from depth: more capability per unit of interface they learn. One implementation pays back across N call sites and M tests.

Locality — what maintainers get from depth: change, bugs, knowledge, and verification concentrate in one place rather than spreading across callers. Fix once, fixed everywhere.

Deep vs shallow

Deep module = small interface + lots of implementation:

┌─────────────────────┐
│   Small Interface   │  ← Few methods, simple params
├─────────────────────┤
│                     │
│  Deep Implementation│  ← Complex logic hidden
│                     │
└─────────────────────┘

Shallow module = large interface + little implementation (avoid):

┌─────────────────────────────────┐
│       Large Interface           │  ← Many methods, complex params
├─────────────────────────────────┤
│  Thin Implementation            │  ← Just passes through
└─────────────────────────────────┘

When designing an interface, ask:

  • Can I reduce the number of methods?
  • Can I simplify the parameters?
  • Can I hide more complexity inside?

Principles

  • Depth is a property of the interface, not the implementation. A deep module can be internally composed of small, mockable, swappable parts — they just aren't part of the interface. A module can have internal seams (private to its implementation, used by its own tests) as well as the external seam at its interface.
  • The deletion test. Imagine deleting the module. If complexity vanishes, it was a pass-through. If complexity reappears across N callers, it was earning its keep.
  • The interface is the test surface. Callers and tests cross the same seam. If you want to test past the interface, the module is probably the wrong shape.
  • One adapter means a hypothetical seam. Two adapters means a real one. Don't introduce a seam unless something actually varies across it.

Designing for testability

Good interfaces make testing natural:

  1. Accept dependencies, don't create them.

    // Testable
    function processOrder(order, paymentGateway) {}
    
    // Hard to test
    function processOrder(order) {
      const gateway = new StripeGateway();
    }
    
  2. Return results, don't produce side effects.

    // Testable
    function calculateDiscount(cart): Discount {}
    
    // Hard to test
    function applyDiscount(cart): void {
      cart.total -= discount;
    }
    
  3. Small surface area. Fewer methods = fewer tests needed. Fewer params = simpler test setup.

Relationships

  • A Module has exactly one Interface (the surface it presents to callers and tests).
  • Depth is a property of a Module, measured against its Interface.
  • A Seam is where a Module's Interface lives.
  • An Adapter sits at a Seam and satisfies the Interface.
  • Depth produces Leverage for callers and Locality for maintainers.

Rejected framings

  • Depth as ratio of implementation-lines to interface-lines (Ousterhout): rewards padding the implementation. We use depth-as-leverage instead.
  • "Interface" as the TypeScript interface keyword or a class's public methods: too narrow — interface here includes every fact a caller must know.
  • "Boundary": overloaded with DDD's bounded context. Say seam or interface.

Going deeper

  • Deepening a cluster given its dependencies — see DEEPENING.md: dependency categories, seam discipline, and replace-don't-layer testing.
  • Exploring alternative interfaces — see DESIGN-IT-TWICE.md: spin up parallel sub-agents to design the interface several radically different ways, then compare on depth, locality, and seam placement.

Frequently asked questions about Codebase Design

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