| name | backend-patterns |
| description | Backend architecture patterns, API design, database optimization, and server-side best practices for Node.js, Express, and Next.js API routes. |
| author | affaan-m |
| version | 1.0 |
Backend Development Patterns
Backend architecture patterns and best practices for scalable server-side applications.
API Design Patterns
RESTful API Structure
GET /api/markets # List resources
GET /api/markets/:id # Get single resource
POST /api/markets # Create resource
PUT /api/markets/:id # Replace resource
PATCH /api/markets/:id # Update resource
DELETE /api/markets/:id # Delete resource
GET /api/markets?status=active&sort=volume&limit=20&offset=0
Repository Pattern
interface MarketRepository {
findAll(filters?: MarketFilters): Promise<Market[]>
findById(id: string): Promise<Market | null>
create(data: CreateMarketDto): Promise<Market>
update(id: string, data: UpdateMarketDto): Promise<Market>
delete(id: string): Promise<void>
}
class SupabaseMarketRepository implements MarketRepository {
async findAll(filters?: MarketFilters): Promise<Market[]> {
let query = supabase.from('markets').select('*')
if (filters?.status) {
query = query.eq('status', filters.status)
}
(filters?.) {
query = query.(filters.)
}
{ data, error } = query
(error) (error.)
data
}
}
Service Layer Pattern
class MarketService {
constructor(private marketRepo: MarketRepository) {}
async searchMarkets(query: string, limit: number = 10): Promise<Market[]> {
const embedding = await generateEmbedding(query)
const results = await this.vectorSearch(embedding, limit)
const markets = await this.marketRepo.findByIds(results.map(r => r.id))
return markets.sort((a, b) => {
const scoreA = results.find(r => r.id === a.id)?.score || 0
const scoreB = results.find(r => r. === b.)?. ||
scoreA - scoreB
})
}
() {
}
}
Middleware Pattern
export function withAuth(handler: NextApiHandler): NextApiHandler {
return async (req, res) => {
const token = req.headers.authorization?.replace('Bearer ', '')
if (!token) {
return res.status(401).json({ error: 'Unauthorized' })
}
try {
const user = await verifyToken(token)
req.user = user
return handler(req, res)
} catch (error) {
return res.status(401).json({ error: 'Invalid token' })
}
}
}
export default withAuth(async (req, res) => {
})
Database Patterns
Query Optimization
const { data } = await supabase
.from('markets')
.select('id, name, status, volume')
.eq('status', 'active')
.order('volume', { ascending: false })
.limit(10)
const { data } = await supabase
.from('markets')
.select('*')
N+1 Query Prevention
const markets = await getMarkets()
for (const market of markets) {
market.creator = await getUser(market.creator_id)
}
const markets = await getMarkets()
const creatorIds = markets.map(m => m.creator_id)
const creators = await getUsers(creatorIds)
const creatorMap = new Map(creators.map(c => [c.id, c]))
markets.forEach(market => {
market.creator = creatorMap.get(market.creator_id)
})
Transaction Pattern
async function createMarketWithPosition(
marketData: CreateMarketDto,
positionData: CreatePositionDto
) {
const { data, error } = await supabase.rpc('create_market_with_position', {
market_data: marketData,
position_data: positionData
})
if (error) throw new Error('Transaction failed')
return data
}
CREATE OR REPLACE FUNCTION create_market_with_position(
market_data jsonb,
position_data jsonb
)
RETURNS jsonb
LANGUAGE plpgsql
AS $$
BEGIN
-- Start transaction automatically
INSERT INTO markets VALUES (market_data);
INSERT INTO positions VALUES (position_data);
RETURN jsonb_build_object('success', true);
EXCEPTION
WHEN OTHERS THEN
-- happens automatically
(, , , );
;
$$;
Caching Strategies
Redis Caching Layer
class CachedMarketRepository implements MarketRepository {
constructor(
private baseRepo: MarketRepository,
private redis: RedisClient
) {}
async findById(id: string): Promise<Market | null> {
const cached = await this.redis.get(`market:${id}`)
if (cached) {
return JSON.parse(cached)
}
const market = await this.baseRepo.findById(id)
if (market) {
await this.redis.setex(`market:${id}`, 300, JSON.stringify(market))
}
return market
}
async invalidateCache(: ): <> {
..()
}
}
Cache-Aside Pattern
async function getMarketWithCache(id: string): Promise<Market> {
const cacheKey = `market:${id}`
const cached = await redis.get(cacheKey)
if (cached) return JSON.parse(cached)
const market = await db.markets.findUnique({ where: { id } })
if (!market) throw new Error('Market not found')
await redis.setex(cacheKey, 300, JSON.stringify(market))
return market
}
Error Handling Patterns
Centralized Error Handler
class ApiError extends Error {
constructor(
public statusCode: number,
public message: string,
public isOperational = true
) {
super(message)
Object.setPrototypeOf(this, ApiError.prototype)
}
}
export function errorHandler(error: unknown, req: Request): Response {
if (error instanceof ApiError) {
return NextResponse.json({
success: false,
error: error.message
}, { status: error.statusCode })
}
if (error instanceof z.ZodError) {
return NextResponse.json({
success: false,
error: 'Validation failed',
details: error.
}, { : })
}
.(, error)
.({
: ,
:
}, { : })
}
() {
{
data = ()
.({ : , data })
} (error) {
(error, request)
}
}
Retry with Exponential Backoff
async function fetchWithRetry<T>(
fn: () => Promise<T>,
maxRetries = 3
): Promise<T> {
let lastError: Error
for (let i = 0; i < maxRetries; i++) {
try {
return await fn()
} catch (error) {
lastError = error as Error
if (i < maxRetries - 1) {
const delay = Math.pow(2, i) * 1000
await new Promise(resolve => setTimeout(resolve, delay))
}
}
}
throw lastError!
}
const data = await fetchWithRetry(() => fetchFromAPI())
Authentication & Authorization
JWT Token Validation
import jwt from 'jsonwebtoken'
interface JWTPayload {
userId: string
email: string
role: 'admin' | 'user'
}
export function verifyToken(token: string): JWTPayload {
try {
const payload = jwt.verify(token, process.env.JWT_SECRET!) as JWTPayload
return payload
} catch (error) {
throw new ApiError(401, 'Invalid token')
}
}
export async function requireAuth(request: Request) {
const token = request.headers.get('authorization')?.replace('Bearer ', '')
if (!token) {
throw new ApiError(401, 'Missing authorization token')
}
return (token)
}
() {
user = (request)
data = (user.)
.({ : , data })
}
Role-Based Access Control
type Permission = 'read' | 'write' | 'delete' | 'admin'
interface User {
id: string
role: 'admin' | 'moderator' | 'user'
}
const rolePermissions: Record<User['role'], Permission[]> = {
admin: ['read', 'write', 'delete', 'admin'],
moderator: ['read', 'write', 'delete'],
user: ['read', 'write']
}
export function hasPermission(user: User, permission: Permission): boolean {
return rolePermissions[user.role].includes(permission)
}
export function requirePermission(permission: Permission) {
return async (request: Request) => {
user = (request)
(!(user, permission)) {
(, )
}
user
}
}
= ()( (: ) => {
})
Rate Limiting
Simple In-Memory Rate Limiter
class RateLimiter {
private requests = new Map<string, number[]>()
async checkLimit(
identifier: string,
maxRequests: number,
windowMs: number
): Promise<boolean> {
const now = Date.now()
const requests = this.requests.get(identifier) || []
const recentRequests = requests.filter(time => now - time < windowMs)
if (recentRequests.length >= maxRequests) {
return false
}
recentRequests.push(now)
this.requests.set(identifier, recentRequests)
return true
}
}
const limiter = new RateLimiter()
export async function GET(request: ) {
ip = request..() ||
allowed = limiter.(ip, , )
(!allowed) {
.({
:
}, { : })
}
}
Background Jobs & Queues
Simple Queue Pattern
class JobQueue<T> {
private queue: T[] = []
private processing = false
async add(job: T): Promise<void> {
this.queue.push(job)
if (!this.processing) {
this.process()
}
}
private async process(): Promise<void> {
this.processing = true
while (this.queue.length > 0) {
const job = this.queue.shift()!
try {
await this.execute(job)
} catch (error) {
console.error('Job failed:', error)
}
}
this.processing = false
}
private async execute(job: T): <> {
}
}
{
:
}
indexQueue = <>()
() {
{ marketId } = request.()
indexQueue.({ marketId })
.({ : , : })
}
Logging & Monitoring
Structured Logging
interface LogContext {
userId?: string
requestId?: string
method?: string
path?: string
[key: string]: unknown
}
class Logger {
log(level: 'info' | 'warn' | 'error', message: string, context?: LogContext) {
const entry = {
timestamp: new Date().toISOString(),
level,
message,
...context
}
console.log(JSON.stringify(entry))
}
info(message: string, context?: LogContext) {
this.log('info', message, context)
}
warn(message: string, context?: LogContext) {
this.log('warn', message, context)
}
error() {
.(, message, {
...context,
: error.,
: error.
})
}
}
logger = ()
() {
requestId = crypto.()
logger.(, {
requestId,
: ,
:
})
{
markets = ()
.({ : , : markets })
} (error) {
logger.(, error , { requestId })
.({ : }, { : })
}
}
Remember: Backend patterns enable scalable, maintainable server-side applications. Choose patterns that fit your complexity level.