chore(brain): ASTRA 성장 자산 동기화 — 기능 인벤토리·growth(약점프로필/학습큐)·일화기억·장기기억·회의록 원문
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id: wiki-2026-0508-code-refactoring
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title: Code Refactoring
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category: 10_Wiki/Topics
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status: verified
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canonical_id: self
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aliases: [Refactoring, Code Improvement, Fowler Refactoring]
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duplicate_of: none
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source_trust_level: A
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confidence_score: 0.95
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verification_status: applied
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tags: [refactoring, code-quality, fowler, ide, llm-refactor]
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raw_sources: []
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last_reinforced: 2026-05-10
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github_commit: pending
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tech_stack:
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language: Polyglot
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framework: IDE/AST-based-tools
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---
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# Code Refactoring
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## 매 한 줄
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> **"매 refactoring = 매 외부 동작은 그대로 두고 internal 구조만 개선하는 disciplined transformation."**. 매 Martin Fowler 1999 "Refactoring" 이 catalog 화한 70+ named transformation 이 backbone, 매 2026 현재 IDE automated refactor + LLM-assisted refactor (Claude Opus 4.7, Cursor) 가 manual rewrite 대체. 매 핵심 disciplines = small steps + green tests + commit per refactor.
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## 매 핵심
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### 매 catalog (대표)
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- **Extract Function / Method**: 매 코드 블록 → 새 function.
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- **Inline Function**: 매 trivial wrapper 제거.
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- **Rename**: 매 의미 명확한 이름.
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- **Extract Variable / Inline Variable**.
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- **Move Function / Field**: 매 right class/module 로.
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- **Replace Conditional with Polymorphism**.
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- **Replace Magic Number with Constant**.
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- **Introduce Parameter Object**.
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- **Decompose Conditional**.
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- **Extract Class / Inline Class**.
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### 매 disciplines
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- **Tests first**: 매 refactor 전 green test suite.
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- **Small steps**: 매 single refactor → run tests → commit.
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- **No mixing**: 매 behavior change 와 refactor 동시 X.
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- **Reversibility**: 매 step 별 git revert 가능.
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### 매 응용
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1. **Legacy modernization**: 매 strangler fig + extract.
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2. **Performance**: 매 inline hot function, extract slow path.
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3. **Test enabling**: 매 dependency 분리.
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4. **Onboarding**: 매 confusing code rename + decompose.
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## 💻 패턴
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### Extract Function
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```python
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# BEFORE
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def print_owing(invoice):
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print_banner()
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outstanding = sum(o.amount for o in invoice.orders)
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print(f"name: {invoice.customer}")
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print(f"amount: {outstanding}")
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# AFTER
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def print_owing(invoice):
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print_banner()
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outstanding = calculate_outstanding(invoice)
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print_details(invoice, outstanding)
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def calculate_outstanding(invoice):
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return sum(o.amount for o in invoice.orders)
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def print_details(invoice, outstanding):
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print(f"name: {invoice.customer}")
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print(f"amount: {outstanding}")
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```
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### Replace Conditional with Polymorphism
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```typescript
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// BEFORE
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function pay(employee: Employee) {
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switch (employee.type) {
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case 'engineer': return baseSalary(employee);
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case 'salesman': return baseSalary(employee) + commission(employee);
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case 'manager': return baseSalary(employee) + bonus(employee);
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}
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}
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// AFTER
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abstract class EmployeeType {
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abstract pay(e: Employee): number;
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}
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class Engineer extends EmployeeType { pay(e) { return baseSalary(e); } }
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class Salesman extends EmployeeType { pay(e) { return baseSalary(e) + commission(e); } }
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class Manager extends EmployeeType { pay(e) { return baseSalary(e) + bonus(e); } }
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```
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### Introduce Parameter Object
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```python
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# BEFORE
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def amount_invoiced(start_date, end_date, customer_id, currency, ...): ...
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# AFTER
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@dataclass
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class InvoiceQuery:
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range: DateRange
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customer_id: str
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currency: str
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def amount_invoiced(q: InvoiceQuery): ...
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```
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### Decompose Conditional
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```javascript
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// BEFORE
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if (date.before(SUMMER_START) || date.after(SUMMER_END)) {
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charge = quantity * winterRate + winterServiceCharge;
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} else {
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charge = quantity * summerRate;
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}
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// AFTER
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charge = isSummer(date) ? summerCharge(quantity) : winterCharge(quantity);
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function isSummer(d) { return !d.before(SUMMER_START) && !d.after(SUMMER_END); }
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function summerCharge(q) { return q * summerRate; }
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function winterCharge(q) { return q * winterRate + winterServiceCharge; }
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```
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### Strangler Fig (legacy migration)
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```typescript
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// route table — gradually shift endpoints to new service
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const routes = {
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'/users': process.env.NEW_USERS === 'on' ? newUsers : legacyUsers,
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'/orders': process.env.NEW_ORDERS === 'on' ? newOrders : legacyOrders,
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'/billing': legacyBilling, // not migrated yet
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};
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// flip flags one at a time, rollback by env var
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```
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### IDE-driven (IntelliJ / Roslyn)
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```bash
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# JetBrains command-line refactor (CI batch)
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idea.sh inspect $PROJECT inspectionProfile.xml output/ \
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-d $MODULE -v2
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# C# Roslyn analyzer + code fix runs in `dotnet format analyzers --verify-no-changes`
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```
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### LLM-assisted refactor (Claude Opus 4.7)
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```bash
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# 1. select scope, 2. generate diff, 3. tests must stay green
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claude refactor \
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--scope src/billing/ \
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--instruction "Extract OrderTotalCalculator class; preserve all behavior" \
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--validate "pytest tests/billing/"
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# Claude proposes diff → run tests → commit if green
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```
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### Test characterization (legacy without tests)
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```python
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# Before refactor of untested code: write golden tests first
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def test_legacy_charge_2025_invoice():
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inv = load_fixture('2025_invoice.json')
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expected = legacy.calc(inv) # capture current behavior
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assert refactored.calc(inv) == expected # equality, not "correctness"
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```
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## 매 결정 기준
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| 상황 | Refactor |
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|---|---|
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| Long function (> 30 lines) | Extract Function |
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| Same param list 5+ places | Introduce Parameter Object |
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| `switch (type)` repeated | Replace Conditional with Polymorphism |
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| Confusing name | Rename |
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| Class doing 2 things | Extract Class |
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| Legacy without tests | Characterization tests first |
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| Mass code movement | LLM batch + test-gate |
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**기본값**: small step + commit per refactor + tests green; LLM 으로 mass rename / extract 가속.
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## 🔗 Graph
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- 부모: [[Code_Quality]]
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- 변형: [[Strangler_Fig]]
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- 응용: [[Legacy_Modernization]] · [[Test_Driven_Development]]
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- Adjacent: [[Clean_Code]] · [[Design_Patterns]]
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## 🤖 LLM 활용
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**언제**: bulk rename, extract function, polymorphism conversion, parameter object 도입.
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**언제 X**: subtle concurrency / lock-free invariants — 매 manual review 필수.
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## ❌ 안티패턴
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- **Refactor + feature in same commit**: 매 review/revert 불가능.
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- **Refactor without tests**: 매 silent behavior change.
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- **Big-bang rewrite**: 매 6개월 후 production 되돌리기 불가능.
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- **Premature abstraction**: 매 1번 쓰인 패턴 인터페이스화 — YAGNI.
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- **Trust-LLM-and-skip-tests**: 매 LLM hallucinated edge case 통과시킴.
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## 🧪 검증 / 중복
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- Verified (Fowler "Refactoring" 2nd ed 2018, "Working Effectively with Legacy Code" Feathers 2004).
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- 신뢰도 A.
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## 🕓 Changelog
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| 날짜 | 변경 |
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|---|---|
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| 2026-05-08 | Phase 1 |
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| 2026-05-10 | Manual cleanup — Fowler catalog, disciplines, IDE/LLM-assisted patterns |
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