소스 정보
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- miles990/claude-software-skills
- 최근 소스 활동
- 2026년 1월 8일 02:34
- 감지된 SKILL.md 언어
- 영어
- 스타
- 20
- 포크
- 5
설치 방법
기본적으로 소스를 먼저 확인하는 Prompt가 선택됩니다. 직접 명령으로 전환하거나 로컬 사본을 다운로드할 수도 있습니다.
소스 파일 검토
설치 여부를 결정하기 전에 SKILL.md와 SkillsMP에 표시된 보조 파일을 읽어 보세요.
메뉴
기본적으로 소스를 먼저 확인하는 Prompt가 선택됩니다. 직접 명령으로 전환하거나 로컬 사본을 다운로드할 수도 있습니다.
설치 여부를 결정하기 전에 SKILL.md와 SkillsMP에 표시된 보조 파일을 읽어 보세요.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
직접 명령은 검토 Prompt를 거치지 않습니다. 실행하기 전에 소스를 확인하세요.
npx skills add https://github.com/miles990/claude-software-skills --skill design-patterns명령은 한 줄로 유지됩니다. 복사하기 전에 가로로 스크롤해 전체 내용을 확인하세요.
로컬 사본을 원하시나요? SkillsMP에서 현재 제공할 수 있는 파일을 다운로드하세요.
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SOC 직업 분류 기준
SKILL.md 표시 중
| name | design-patterns |
| description | Classic and modern software design patterns |
| domain | software-design |
| version | 1.0.0 |
| tags | ["patterns","gang-of-four","creational","structural","behavioral","functional"] |
| triggers | {"keywords":{"primary":["design pattern","pattern","singleton","factory","observer","strategy"],"secondary":["creational","structural","behavioral","gof","gang of four","adapter","decorator"]},"context_boost":["oop","refactor","architecture","clean code"],"context_penalty":["database","devops","testing"],"priority":"high"} |
Reusable solutions to common software design problems. Understanding patterns helps you communicate design ideas effectively and avoid reinventing the wheel.
Purpose: Create objects without specifying exact class
// Abstract factory
interface PaymentProcessor {
process(amount: number): Promise<Result>;
}
class StripeProcessor implements PaymentProcessor { /* ... */ }
class PayPalProcessor implements PaymentProcessor { /* ... */ }
function createProcessor(type: string): PaymentProcessor {
switch (type) {
case 'stripe': return new StripeProcessor();
case 'paypal': return new PayPalProcessor();
default: throw new Error(`Unknown processor: ${type}`);
}
}
Purpose: Construct complex objects step by step
class QueryBuilder {
private query: Query = {};
select(...fields: string[]) {
this.query.fields = fields;
return this;
}
from(table: string) {
this.query.table = table;
return this;
}
where(condition: Condition) {
this.query.conditions ??= [];
this.query.conditions.push(condition);
return this;
}
build(): string {
return this.compile(this.query);
}
}
// Usage
const sql = new QueryBuilder()
.select('id', 'name')
.from('users')
.({ : { : } })
.();
Purpose: Ensure single instance (use sparingly)
// Modern approach: module-level instance
// database.ts
class Database {
private constructor() {}
private static instance: Database;
static getInstance(): Database {
if (!Database.instance) {
Database.instance = new Database();
}
return Database.instance;
}
}
// Better: Dependency injection
class UserService {
constructor(private db: Database) {}
}
Purpose: Make incompatible interfaces work together
// Legacy API returns XML
interface LegacyAPI {
getDataXML(): string;
}
// New code expects JSON
interface ModernAPI {
getData(): object;
}
class APIAdapter implements ModernAPI {
constructor(private legacy: LegacyAPI) {}
getData(): object {
const xml = this.legacy.getDataXML();
return this.parseXML(xml);
}
private parseXML(xml: string): object {
// Convert XML to object
}
}
Purpose: Add behavior without modifying original
// Base interface
interface DataSource {
read(): string;
write(data: string): void;
}
// Decorator adds encryption
class EncryptedDataSource implements DataSource {
constructor(private wrapped: DataSource) {}
read(): string {
return this.decrypt(this.wrapped.read());
}
write(data: string): void {
this.wrapped.write(this.encrypt(data));
}
}
// Decorator adds compression
class CompressedDataSource implements DataSource {
constructor(private wrapped: DataSource) {}
// Similar pattern...
}
// Compose decorators
const source = new EncryptedDataSource(
(
()
)
);
Purpose: Simplify complex subsystem
// Complex subsystems
class VideoConverter { /* ... */ }
class AudioExtractor { /* ... */ }
class BitrateCalculator { /* ... */ }
class CodecFactory { /* ... */ }
// Simple facade
class VideoExporter {
export(video: Video, format: Format): File {
const codec = CodecFactory.getCodec(format);
const bitrate = BitrateCalculator.optimal(video);
const converter = new VideoConverter(codec, bitrate);
const audio = AudioExtractor.extract(video);
return converter.convert(video, audio);
}
}
// Client only needs facade
const exporter = new VideoExporter();
const mp4 = exporter.export(video, 'mp4');
Purpose: Control access to object
// Virtual proxy for lazy loading
class ImageProxy implements Image {
private realImage: RealImage | null = null;
constructor(private filename: string) {}
display(): void {
if (!this.realImage) {
this.realImage = new RealImage(this.filename); // Expensive
}
this.realImage.display();
}
}
// Protection proxy
class SecureDocumentProxy implements Document {
constructor(
private doc: Document,
private user: User
) {}
read(): string {
if (!this.user.hasPermission('read')) {
throw new ();
}
..();
}
}
Purpose: Notify dependents of state changes
class EventEmitter<T extends Record<string, unknown>> {
private listeners = new Map<keyof T, Set<Function>>();
on<K extends keyof T>(event: K, callback: (data: T[K]) => void) {
if (!this.listeners.has(event)) {
this.listeners.set(event, new Set());
}
this.listeners.get(event)!.add(callback);
// Return unsubscribe function
return () => this.listeners.get(event)?.delete(callback);
}
emit<K extends keyof T>(event: K, data: T[K]) {
this.listeners.get(event)?.forEach(cb => cb(data));
}
}
// Usage
interface Events {
: ;
: ;
}
emitter = <>();
emitter.(, (user));
Purpose: Interchange algorithms at runtime
interface CompressionStrategy {
compress(data: Buffer): Buffer;
}
class ZipCompression implements CompressionStrategy {
compress(data: Buffer): Buffer { /* ... */ }
}
class GzipCompression implements CompressionStrategy {
compress(data: Buffer): Buffer { /* ... */ }
}
class FileCompressor {
constructor(private strategy: CompressionStrategy) {}
setStrategy(strategy: CompressionStrategy) {
this.strategy = strategy;
}
compress(file: File): Buffer {
return this.strategy.compress(file.data);
}
}
Purpose: Encapsulate actions as objects
interface Command {
execute(): void;
undo(): void;
}
class MoveCommand implements Command {
private previousPosition: Position;
constructor(
private object: GameObject,
private newPosition: Position
) {}
execute() {
this.previousPosition = this.object.position;
this.object.position = this.newPosition;
}
undo() {
this.object.position = this.previousPosition;
}
}
class CommandHistory {
private history: Command[] = [];
private current = -1;
execute(command: Command) {
command.execute();
. = ..(, . + );
..(command);
.++;
}
() {
(. >= ) {
.[.].();
.--;
}
}
() {
(. < .. - ) {
.++;
.[.].();
}
}
}
Purpose: Change behavior based on state
interface State {
handle(context: Context): void;
}
class DraftState implements State {
handle(context: Context) {
console.log('Document is draft');
// Can edit, save, submit for review
}
}
class ReviewState implements State {
handle(context: Context) {
console.log('Document under review');
// Can approve or reject
}
}
class PublishedState implements State {
handle(context: Context) {
console.log('Document is published');
// Read-only, can unpublish
}
}
class Document {
private state: State = new DraftState();
setState(state: ) {
. = state;
}
() {
..();
}
}
type Result<T, E> = { ok: true; value: T } | { ok: false; error: E };
function map<T, U, E>(
result: Result<T, E>,
fn: (value: T) => U
): Result<U, E> {
return result.ok
? { ok: true, value: fn(result.value) }
: result;
}
function flatMap<T, U, E>(
result: Result<T, E>,
fn: (value: T) => Result<U, E>
): Result<U, E> {
return result.ok ? fn(result.value) : result;
}
// Usage - compose operations safely
const result = pipe(
parseJSON(input),
flatMap(validate),
flatMap(save),
map(formatResponse)
);
type Middleware<T> = (context: T, next: () => Promise<void>) => Promise<void>;
class Pipeline<T> {
private middlewares: Middleware<T>[] = [];
use(middleware: Middleware<T>) {
this.middlewares.push(middleware);
return this;
}
async execute(context: T) {
let index = 0;
const next = async (): Promise<void> => {
if (index < this.middlewares.length) {
const middleware = this.middlewares[index++];
await middleware(context, next);
}
};
await next();
}
}
| Anti-Pattern | Problem | Solution |
|---|---|---|
| God Object | One class does everything | Split into focused classes |
| Spaghetti Code | Tangled dependencies | Apply SRP, use modules |
| Golden Hammer | Using one pattern everywhere | Choose right pattern per problem |
| Premature Optimization | Optimizing before measuring | Profile first, then optimize |
Need to create objects?
├── Complex construction → Builder
├── Family of related objects → Abstract Factory
├── Subclass decides type → Factory Method
└── Single instance → Singleton (rarely)
Need to structure objects?
├── Make incompatible interfaces work → Adapter
├── Add behavior dynamically → Decorator
├── Simplify complex system → Facade
└── Control access → Proxy
Need to manage behavior?
├── Notify on state change → Observer
├── Swap algorithms → Strategy
├── Encapsulate actions → Command
└── State-dependent behavior → State