auth-implementation-patterns
This skill provides authentication and authorization implementation patterns including JWT, OAuth2, session management, and RBAC for building secure APIs and access control systems. Use it when implementing login systems, securing endpoints, adding social authentication, managing permissions, designing session strategies, debugging auth issues, or implementing role-based access controls and single sign-on features.
git clone --depth 1 https://github.com/Microck/ordinary-claude-skills /tmp/auth-implementation-patterns && cp -r /tmp/auth-implementation-patterns/skills_all/auth-implementation-patterns ~/.claude/skills/auth-implementation-patternsSKILL.md
# Authentication & Authorization Implementation Patterns
Build secure, scalable authentication and authorization systems using industry-standard patterns and modern best practices.
## When to Use This Skill
- Implementing user authentication systems
- Securing REST or GraphQL APIs
- Adding OAuth2/social login
- Implementing role-based access control (RBAC)
- Designing session management
- Migrating authentication systems
- Debugging auth issues
- Implementing SSO or multi-tenancy
## Core Concepts
### 1. Authentication vs Authorization
**Authentication (AuthN)**: Who are you?
- Verifying identity (username/password, OAuth, biometrics)
- Issuing credentials (sessions, tokens)
- Managing login/logout
**Authorization (AuthZ)**: What can you do?
- Permission checking
- Role-based access control (RBAC)
- Resource ownership validation
- Policy enforcement
### 2. Authentication Strategies
**Session-Based:**
- Server stores session state
- Session ID in cookie
- Traditional, simple, stateful
**Token-Based (JWT):**
- Stateless, self-contained
- Scales horizontally
- Can store claims
**OAuth2/OpenID Connect:**
- Delegate authentication
- Social login (Google, GitHub)
- Enterprise SSO
## JWT Authentication
### Pattern 1: JWT Implementation
```typescript
// JWT structure: header.payload.signature
import jwt from 'jsonwebtoken';
import { Request, Response, NextFunction } from 'express';
interface JWTPayload {
userId: string;
email: string;
role: string;
iat: number;
exp: number;
}
// Generate JWT
function generateTokens(userId: string, email: string, role: string) {
const accessToken = jwt.sign(
{ userId, email, role },
process.env.JWT_SECRET!,
{ expiresIn: '15m' } // Short-lived
);
const refreshToken = jwt.sign(
{ userId },
process.env.JWT_REFRESH_SECRET!,
{ expiresIn: '7d' } // Long-lived
);
return { accessToken, refreshToken };
}
// Verify JWT
function verifyToken(token: string): JWTPayload {
try {
return jwt.verify(token, process.env.JWT_SECRET!) as JWTPayload;
} catch (error) {
if (error instanceof jwt.TokenExpiredError) {
throw new Error('Token expired');
}
if (error instanceof jwt.JsonWebTokenError) {
throw new Error('Invalid token');
}
throw error;
}
}
// Middleware
function authenticate(req: Request, res: Response, next: NextFunction) {
const authHeader = req.headers.authorization;
if (!authHeader?.startsWith('Bearer ')) {
return res.status(401).json({ error: 'No token provided' });
}
const token = authHeader.substring(7);
try {
const payload = verifyToken(token);
req.user = payload; // Attach user to request
next();
} catch (error) {
return res.status(401).json({ error: 'Invalid token' });
}
}
// Usage
app.get('/api/profile', authenticate, (req, res) => {
res.json({ user: req.user });
});
```
### Pattern 2: Refresh Token Flow
```typescript
interface StoredRefreshToken {
token: string;
userId: string;
expiresAt: Date;
createdAt: Date;
}
class RefreshTokenService {
// Store refresh token in database
async storeRefreshToken(userId: string, refreshToken: string) {
const expiresAt = new Date(Date.now() + 7 * 24 * 60 * 60 * 1000);
await db.refreshTokens.create({
token: await hash(refreshToken), // Hash before storing
userId,
expiresAt,
});
}
// Refresh access token
async refreshAccessToken(refreshToken: string) {
// Verify refresh token
let payload;
try {
payload = jwt.verify(
refreshToken,
process.env.JWT_REFRESH_SECRET!
) as { userId: string };
} catch {
throw new Error('Invalid refresh token');
}
// Check if token exists in database
const storedToken = await db.refreshTokens.findOne({
where: {
token: await hash(refreshToken),
userId: payload.userId,
expiresAt: { $gt: new Date() },
},
});
if (!storedToken) {
throw new Error('Refresh token not found or expired');
}
// Get user
const user = await db.users.findById(payload.userId);
if (!user) {
throw new Error('User not found');
}
// Generate new access token
const accessToken = jwt.sign(
{ userId: user.id, email: user.email, role: user.role },
process.env.JWT_SECRET!,
{ expiresIn: '15m' }
);
return { accessToken };
}
// Revoke refresh token (logout)
async revokeRefreshToken(refreshToken: string) {
await db.refreshTokens.deleteOne({
token: await hash(refreshToken),
});
}
// Revoke all user tokens (logout all devices)
async revokeAllUserTokens(userId: string) {
await db.refreshTokens.deleteMany({ userId });
}
}
// API endpoints
app.post('/api/auth/refresh', async (req, res) => {
const { refreshToken } = req.body;
try {
const { accessToken } = await refreshTokenService
.refreshAccessToken(refreshToken);
res.json({ accessToken });
} catch (error) {
res.status(401).json({ error: 'Invalid refresh token' });
}
});
app.post('/api/auth/logout', authenticate, async (req, res) => {
const { refreshToken } = req.body;
await refreshTokenService.revokeRefreshToken(refreshToken);
res.json({ message: 'Logged out successfully' });
});
```
## Session-Based Authentication
### Pattern 1: Express Session
```typescript
import session from 'express-session';
import RedisStore from 'connect-redis';
import { createClient } from 'redis';
// Setup Redis for session storage
const redisClient = createClient({
url: process.env.REDIS_UTesting patterns for PHPUnit and Playwright E2E tests. Use when writing tests, debugging test failures, setting up test coverage, or implementing test patterns for ActivityPub features.
Cloud laboratory platform for automated protein testing and validation. Use when designing proteins and needing experimental validation including binding assays, expression testing, thermostability measurements, enzyme activity assays, or protein sequence optimization. Also use for submitting experiments via API, tracking experiment status, downloading results, optimizing protein sequences for better expression using computational tools (NetSolP, SoluProt, SolubleMPNN, ESM), or managing protein design workflows with wet-lab validation.
Add unsigned integer (uint) type support to PyTorch operators by updating AT_DISPATCH macros. Use when adding support for uint16, uint32, uint64 types to operators, kernels, or when user mentions enabling unsigned types, barebones unsigned types, or uint support.
This skill should be used when the user asks to "create an agent", "add an agent", "write a subagent", "agent frontmatter", "when to use description", "agent examples", "agent tools", "agent colors", "autonomous agent", or needs guidance on agent structure, system prompts, triggering conditions, or agent development best practices for Claude Code plugins.
Master advanced AgentDB features including QUIC synchronization, multi-database management, custom distance metrics, hybrid search, and distributed systems integration. Use when building distributed AI systems, multi-agent coordination, or advanced vector search applications.
Create and train AI learning plugins with AgentDB's 9 reinforcement learning algorithms. Includes Decision Transformer, Q-Learning, SARSA, Actor-Critic, and more. Use when building self-learning agents, implementing RL, or optimizing agent behavior through experience.
Implement persistent memory patterns for AI agents using AgentDB. Includes session memory, long-term storage, pattern learning, and context management. Use when building stateful agents, chat systems, or intelligent assistants.
Optimize AgentDB performance with quantization (4-32x memory reduction), HNSW indexing (150x faster search), caching, and batch operations. Use when optimizing memory usage, improving search speed, or scaling to millions of vectors.