typed-service-contracts

작성자: google-labs-code

Spec and Handler" 패턴을 사용하여 견고하고 타입 안전한 TypeScript 서비스를 구축하기 위한 아키텍처 표준입니다. CLI, 라이브러리 또는 복잡한...

npx skills add https://github.com/google-labs-code/design.md --skill typed-service-contracts

Typed Service Contracts (Spec & Handler Pattern)

This skill defines a Vertical Slice Architecture backed by Design by Contract (DbC) principles. It treats application logic as rigorously defined Units of Work where inputs are parsed (not just validated) and errors are treated as values (Result Pattern) rather than exceptions.

When to use this skill

  • Building CLIs or Libraries: When you need strict boundaries between user input and system logic.
  • Complex Validation: When inputs require transformation (parsing) before being useful (e.g., ensuring a string is a valid file path).
  • High-Reliability Requirements: When you cannot afford unhandled runtime exceptions and need exhaustive error handling.
  • Testing Focus: When you want to separate data validation tests from business logic tests.

Architecture Components

1. The Spec (spec.ts)

The "Contract" or "Port". It defines the What. It must contain:

  • Input Schema: A Zod schema that parses raw input into a valid DTO.
  • Output Schema: A Zod schema defining the successful data structure.
  • Error Schema: A discriminated union of specific failure modes (not generic errors).
  • Result Type: A DiscriminatedUnion of Success | Failure.
  • Interface: The capability definition (e.g., interface ConfigureSpec).

2. The Handler (handler.ts)

The "Implementation" or "Adapter". It defines the How. It must:

  • Implement the Interface defined in the Spec.
  • Be an "Impure" class that handles side effects (File System, API calls).
  • NEVER throw exceptions. It must catch internal errors and map them to the Result type.

How to use it

Step 1: Define the Contract (spec.ts)

Follow this template to define the boundaries.

import { z } from 'zod';

// 1. VALIDATION HELPERS (Reusable Refinements)
export const SafePathSchema = z.string()
  .min(1)
  .refine(p => !p.includes('..'), "No traversal allowed");

// 2. INPUT (The Command) - "Parse, don't validate"
export const MyTaskInputSchema = z.object({
  path: SafePathSchema,
  force: z.boolean().default(false),
});
export type MyTaskInput = z.infer<typeof MyTaskInputSchema>;

// 3. ERROR CODES (Exhaustive)
export const MyTaskErrorCode = z.enum([
  'FILE_NOT_FOUND',
  'PERMISSION_DENIED', 
  'UNKNOWN_ERROR'
]);

// 4. RESULT (The Monad)
export const MyTaskSuccess = z.object({
  success: z.literal(true),
  data: z.string(), // The output payload
});

export const MyTaskFailure = z.object({
  success: z.literal(false),
  error: z.object({
    code: MyTaskErrorCode,
    message: z.string(),
    suggestion: z.string().optional(),
    recoverable: z.boolean(),
  })
});

export type MyTaskResult = 
  | z.infer<typeof MyTaskSuccess> 
  | z.infer<typeof MyTaskFailure>;

// 5. INTERFACE (The Capability)
export interface MyTaskSpec {
  execute(input: MyTaskInput): Promise<MyTaskResult>;
}

Step 2: Implement the Handler (handler.ts)

Follow this template to implement the logic.

import { MyTaskSpec, MyTaskInput, MyTaskResult } from './spec.js';
import * as fs from 'fs';

export class MyTaskHandler implements MyTaskSpec {
  async execute(input: MyTaskInput): Promise<MyTaskResult> {
    try {
      // 1. Business Logic
      if (!fs.existsSync(input.path)) {
        // 2. Explicit Error Return (No Throwing)
        return {
          success: false,
          error: {
            code: 'FILE_NOT_FOUND',
            message: `Path does not exist: ${input.path}`,
            recoverable: true
          }
        };
      }

      // 3. Success Return
      return {
        success: true,
        data: 'Operation complete'
      };

    } catch (error) {
      // 4. Safety Net: Catch unknown runtime errors
      return {
        success: false,
        error: {
          code: 'UNKNOWN_ERROR',
          message: error instanceof Error ? error.message : String(error),
          recoverable: false
        }
      };
    }
  }
}

Step 3: Testing Strategy

Do not write monolithic tests. Split them into Contract Tests and Logic Tests.

A. Contract Tests (Schema)

Test the Bouncer. Ensure invalid data is rejected before it reaches the handler.

  • Focus: Edge cases, validation rules, Zod refinements.
  • Style: Data-driven (Table tests).
// spec.test.ts
import { MyTaskInputSchema } from './spec';

const invalidCases = [
  { val: '../etc/passwd', err: 'No traversal allowed' },
  { val: '', err: 'min(1)' },
];

test.each(invalidCases)('validates paths', ({ val, err }) => {
  const result = MyTaskInputSchema.safeParse({ path: val });
  expect(result.success).toBe(false);
});

B. Logic Tests (Handler)

Test the Chef. Mock external dependencies (fs, network) and assert the Result Object.

  • Focus: Business logic flow, error mapping, success states.
  • Style: Mocked unit tests or Scenario Runners.
// handler.test.ts
import { MyTaskHandler } from './handler';
import { vi } from 'vitest'; // or jest

test('returns FILE_NOT_FOUND if path missing', async () => {
  // MOCK
  vi.mocked(fs.existsSync).mockReturnValue(false);
  
  // EXECUTE
  const handler = new MyTaskHandler();
  const result = await handler.execute({ path: '/fake' });

  // ASSERT (Check the Result Object)
  expect(result.success).toBe(false);
  if (!result.success) {
    expect(result.error.code).toBe('FILE_NOT_FOUND');
  }
});

google-labs-code의 다른 스킬

remotion
google-labs-code
Stitch 앱 디자인에서 Remotion을 사용하여 부드러운 전환과 텍스트 오버레이가 포함된 전문 워크스루 비디오를 제작합니다. Stitch 프로젝트에서 화면을 가져와 확대 효과, 페이드 전환, 상황별 텍스트 오버레이와 함께 Remotion 비디오 구성으로 오케스트레이션합니다. ScreenSlide 및 WalkthroughComposition 컴포넌트를 포함한 모듈식 컴포넌트 아키텍처와 대화형 핫스팟 및 음성 해설 통합과 같은 고급 기능을 지원합니다. 화면 매니페스트를 생성하고 다운로드합니다...
official
ink
google-labs-code
Ink 터미널 렌더러로, JSON 사양을 대화형 터미널 UI로 변환합니다. @json-render/ink로 작업하거나 터미널 UI를 구축할 때 사용하세요.
official
stitch-sdk-pipeline
google-labs-code
전체 Stitch SDK 생성 파이프라인을 실행합니다. 새 도구가 추가되거나 SDK를 처음부터 끝까지 다시 생성해야 할 때 사용하세요.
official
stitch-sdk-readme
google-labs-code
Stitch SDK의 README를 생성하거나 업데이트합니다. Bookstore Test 구조를 사용하고 코드베이스에서 현재 API를 참조합니다. README가 필요할 때 사용합니다.
official
typed-service-contracts
google-labs-code
견고하고 타입 세이프한 TypeScript 서비스를 "Spec and Handler" 패턴으로 구축하기 위한 아키텍처 표준입니다. CLI, 라이브러리, 또는 복잡한 시스템을 구축할 때 사용합니다.
official
agent-dx-cli-scale
google-labs-code
A scoring scale for evaluating how well a CLI is designed for AI agents, based on the "Rewrite Your CLI for AI Agents" principles.
official
ink
google-labs-code
Ink terminal renderer for json-render that turns JSON specs into interactive terminal UIs. Use when working with @json-render/ink, building terminal UIs from…
official
stitch-sdk-bug-bash
google-labs-code
Find bugs in the Stitch SDK using a real API key. Covers standard functional edges and tricky situations.
official