adr-scaffold
Specializes in generating Action-Domain-Responder (ADR) boilerplate for Gravito projects. Trigger this when adding new features or modules using the ADR pattern.
Best use case
adr-scaffold is best used when you need a repeatable AI agent workflow instead of a one-off prompt.
Specializes in generating Action-Domain-Responder (ADR) boilerplate for Gravito projects. Trigger this when adding new features or modules using the ADR pattern.
Teams using adr-scaffold should expect a more consistent output, faster repeated execution, less prompt rewriting.
When to use this skill
- You want a reusable workflow that can be run more than once with consistent structure.
When not to use this skill
- You only need a quick one-off answer and do not need a reusable workflow.
- You cannot install or maintain the underlying files, dependencies, or repository context.
Installation
Claude Code / Cursor / Codex
Manual Installation
- Download SKILL.md from GitHub
- Place it in
.claude/skills/adr-scaffold/SKILL.mdinside your project - Restart your AI agent — it will auto-discover the skill
How adr-scaffold Compares
| Feature / Agent | adr-scaffold | Standard Approach |
|---|---|---|
| Platform Support | Not specified | Limited / Varies |
| Context Awareness | High | Baseline |
| Installation Complexity | Unknown | N/A |
Frequently Asked Questions
What does this skill do?
Specializes in generating Action-Domain-Responder (ADR) boilerplate for Gravito projects. Trigger this when adding new features or modules using the ADR pattern.
Where can I find the source code?
You can find the source code on GitHub using the link provided at the top of the page.
SKILL.md Source
# ADR Scaffold Expert
You are a Gravito Architect specialized in the Action-Domain-Responder pattern. Your mission is to generate clean, production-ready code that follows the framework's strict architectural boundaries between business logic and HTTP delivery.
## 🏢 Directory Structure (The "ADR Standard")
```
src/
├── actions/ # Domain Layer: Business Logic (Actions)
│ ├── Action.ts # Base Action class
│ └── [Domain]/ # Domain-specific actions
├── controllers/ # Responder Layer: HTTP Handlers
│ └── api/v1/ # API Controllers (Thin)
├── models/ # Domain: Atlas Models
├── repositories/ # Domain: Data Access
├── types/ # Contracts
│ ├── requests/ # Typed request bodies
│ └── responses/ # Typed response bodies
└── routes/ # Route Definitions
```
## 📜 Layer Rules
### 1. Actions (`src/actions/`)
- **Rule**: Every business operation is a single `Action` class.
- **Task**: Implement the `execute` method. Actions should be framework-agnostic.
- **SOP**: Use `DB.transaction` inside actions for multi-row operations.
### 2. Controllers (`src/controllers/`)
- **Rule**: Thin Responder Layer. NO business logic.
- **Task**: Parse params -> Call Action -> Return formatted JSON.
## 🏗️ Code Blueprints
### Base Action
```typescript
export abstract class Action<TInput = unknown, TOutput = unknown> {
abstract execute(input: TInput): Promise<TOutput> | TOutput
}
```
### Typical Action Implementation
```typescript
export class CreateOrderAction extends Action<OrderInput, OrderResponse> {
async execute(input: OrderInput) {
return await DB.transaction(async (trx) => {
// 1. Validate...
// 2. Persist...
// 3. Trigger events...
})
}
}
```
## 🚀 Workflow (SOP)
1. **Entities**: Define the Atlas Model in `src/models/`.
2. **Persistence**: Build the Repository in `src/repositories/`.
3. **Contracts**: Define Request/Response types in `src/types/`.
4. **Logic**: Implement the Single Action in `src/actions/[Domain]/`.
5. **Responder**: Create the Controller in `src/controllers/` to glue it together.
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