Redis security guidance covering authentication (requirepass and ACL users), TLS, ACL-based least-privilege access control, restricting network exposure via bind and protected-mode, firewall rules, and disabling dangerous commands. Use when deploying Redis to production, defining ACL users for an application, configuring TLS connections, locking down a Redis instance behind a firewall, or auditing a Redis deployment for security hardening.
npx skills add https://github.com/redis/agent-skills --skill redis-security
Production hardening for Redis: authentication, ACL-based access control, and network exposure. Cover all three together — any one of them on its own leaves an exploitable gap.
Never run a production Redis without a password. Pair authentication with TLS so credentials and data aren't sent in clear text.
# redis.conf
requirepass your-strong-password
tls-port 6380
tls-cert-file /path/to/redis.crt
tls-key-file /path/to/redis.key
r = redis.Redis(
host="localhost",
port=6380,
password="your-strong-password",
ssl=True,
ssl_cert_reqs="required",
)
If you can use ACL users (next section) instead of the single requirepass, do — requirepass is effectively the legacy "default user" shortcut.
See references/auth.md.
The default user with a shared password is fine for development. For production, give each application a dedicated ACL user with only the commands and key patterns it actually needs.
# Cache-only reader
ACL SETUSER app_readonly on >password ~cache:* +get +mget +scan
# Writer that can't run dangerous ops
ACL SETUSER app_writer on >password ~* +@all -@dangerous
# Admin (use sparingly, never for application traffic)
ACL SETUSER admin on >strong-password ~* +@all
Useful command categories:
| Category | What it covers |
|---|---|
| @read | Read commands (GET, MGET, HGET, ...) |
| @write | Write commands (SET, DEL, XADD, ...) |
| @dangerous | FLUSHALL, DEBUG, KEYS, etc. |
| @admin | Administrative commands |
If app credentials leak, a tight ACL bounds the blast radius — the attacker can't FLUSHALL your DB just because they grabbed a cache reader's password.
See references/acls.md.
The most common Redis breach is a public-internet Redis with no auth. Avoid that with three layers:
# redis.conf — bind to specific interfaces, keep protected-mode on
bind 127.0.0.1 192.168.1.100
protected-mode yes
# Firewall — allow only application subnets
iptables -A INPUT -p tcp --dport 6379 -s 192.168.1.0/24 -j ACCEPT
iptables -A INPUT -p tcp --dport 6379 -j DROP
Anti-pattern: bind 0.0.0.0 + protected-mode no — exposes Redis to the whole network without protection.
Optional but recommended: rename or disable destructive commands so a compromised client can't trash the DB:
rename-command FLUSHALL ""
rename-command DEBUG ""
rename-command CONFIG ""
See references/network.md.
Build production-ready Node.js backend services with Express/Fastify, implementing middleware patterns, error handling, authentication, database integration, and API design best practices. Use when creating Node.js servers, REST APIs, GraphQL backends, or microservices architectures.
Build production-ready Node.js backend services with Express/Fastify, implementing middleware patterns, error handling, authentication, database integration, and API design best practices. Use when creating Node.js servers, REST APIs, GraphQL backends, or microservices architectures.
Use when building Laravel 10+ applications requiring Eloquent ORM, API resources, or queue systems. Invoke for Laravel models, Livewire components, Sanctum authentication, Horizon queues.
Firebase gives you a complete backend in minutes - auth, database, storage, functions, hosting. But the ease of setup hides real complexity. Security rules are your last line of defense, and they're often wrong. Firestore queries are limited, and you learn this after you've designed your data model. This skill covers Firebase Authentication, Firestore, Realtime Database, Cloud Functions, Cloud Storage, and Firebase Hosting. Key insight: Firebase is optimized for read-heavy, denormalized data. I
Build production-ready Node.js backend services with Express/Fastify, implementing middleware patterns, error handling, authentication, database integration, and API design best practices. Use when creating Node.js servers, REST APIs, GraphQL backends, or microservices architectures.
Use when building, configuring, or debugging enterprise Java applications with Spring Boot 3.x, microservices, or reactive programming. Invoke to implement WebFlux endpoints, optimize JPA queries and database performance, configure Spring Security with OAuth2/JWT, or resolve authentication issues and async processing challenges in cloud-native Spring applications.
This skill should be used when the user asks to "automate SQL injection testing," "enumerate database structure," "extract database credentials using sqlmap," "dump tables and columns from a vulnerable database," or "perform automated database penetration testing." It provides comprehensive guidance for using SQLMap to detect and exploit SQL injection vulnerabilities.
Generate a CVE catalog + Supabase impact analysis for a PostgreSQL security release. Use when reviewing a new upstream PG quarterly security release to decide what to ship and how to communicate. Inputs are the version ranges (e.g. REL_15_14..REL_15_18 + REL_17_6..REL_17_10); output is a draft catalog markdown ready to post on the breaking-change-analysis Linear ticket.
Take redis/redis-security from the repository into ~/.claude/skills for personal
use, or into .claude/skills inside a project.
The agent identifies a skill by the name field in its header. Two skills with the
same name cannot sit side by side — one of them will be ignored.