Secure by Default.
Client-Side Only Generation.
Generate hardened Content Security Policies, CORS rules, HTTP Security Headers, SSL/TLS settings, strong passwords, JWT secrets, and SSH keys. Cryptographic operations stay securely in your browser.
CSP Header Generator
Generate advanced Content-Security-Policy headers for strict XSS protection.
CORS Generator
Secure Cross-Origin Resource Sharing configs for APIs and backends.
Security Headers
Harden HTTP responses with HSTS, Referrer-Policy, COOP, and COEP.
JWT Secret Generator
Generate high-entropy keys for JSON Web Tokens securely.
Password Generator
Create cryptographically strong passwords and passphrases locally.
SSH Config Generator
Generate optimized and hardened ~/.ssh/config files and bastion setups.
SSH Key Generator
Generate secure Ed25519 or RSA local key generation commands.
SSL Config Generator
Configure secure TLS profiles, cipher suites, and encryption standards.
AI Crawler Policy Generator
Analyze robots.txt for AI bots, and generate safe allow/block policies with Cloudflare rules and llms.txt.
Enterprise Security Tooling
What is this tool?
Security configuration shouldn't be guesswork. Misconfigured CORS policies, overly permissive CSP headers, or weak TLS settings can expose your application to critical vulnerabilities.
Our Security Tools Suite provides a secure, client-side only way to generate and validate security primitives without exposing sensitive data.
Best Practices
- Zero Data Transmission: When you generate a password, JWT secret, or SSH key locally, no network requests are made. The cryptographic randomness is provided entirely by your browser's crypto.getRandomValues() API.
- Privacy Guaranteed: We do not track, log, or persist the secrets you generate.
Security Notes
- Content Security Policy (CSP): Enforce strict origin policies to eliminate Cross-Site Scripting (XSS).
- CORS Policies: Restrict API access to known, trusted origins, avoiding dangerous `*` wildcard usage on authenticated endpoints.
- HTTP Security Headers: Use HSTS to enforce HTTPS, and configure frame-options to prevent Clickjacking.
- SSL/TLS Hardening: Disable outdated protocols (TLS 1.0/1.1) and prefer forward-secrecy cipher suites like ECDHE.
How We Keep Your Configs Safe & Valid
Built-in Error Checking
Every file is checked against official rules. We catch missing fields and bad syntax. YAML indentation errors are flagged right away. Kubernetes, Terraform, and Docker specs are all covered. API versions and labels are verified too. You get valid output every time you generate.
100% Private & Local
All tools run in your browser only. Your API keys never leave your machine. We do not use any tracking scripts. No data is sent to any server. Passwords and secrets stay on your device. Crypto operations use the Web Crypto API. Your privacy is fully protected at all times.
Secure Settings by Default
Configs use safe defaults out of the box. Containers run as non-root users. Root filesystems are set to read-only. Dangerous Linux capabilities are dropped. Network policies limit pod-to-pod traffic. TLS 1.3 is enabled for web servers. Security headers are added where needed.
Ready for CI/CD & Git
Output files are ready for your Git repo. Use them with ArgoCD, Flux, or GitHub Actions. Files use clear formatting and comments. Code review is easy for your team. Indentation and key order are consistent. Test in staging before going to production. Every file is clean and well-structured.
Infrastructure as Code
Store configs in Git alongside your code. Terraform modules include typed variables. Backend configs support remote state locking. Outputs work across multiple modules. Ansible playbooks use clear task steps. Chef and Puppet configs are also supported. Every file works with version control tools.
Monitoring & Tracing
Set up Prometheus with auto-discovery rules. Create Grafana dashboards with template variables. Add alerting rules with severity labels. Use OpenTelemetry for trace collection. Forward logs to Loki or Elasticsearch. Connect to Jaeger or Tempo for tracing. Monitor metrics, logs, and traces together.
Container & Docker Safety
Dockerfiles use multi-stage builds for small images. Base images are pinned to exact versions. Dev files are excluded from final images. Health checks are added for orchestrator use. Containers switch to non-root users. Docker Compose uses named volumes and networks. Resource limits are set in deploy configs.
Multiple Output Formats
Export as YAML, JSON, HCL, or TOML. Kubernetes uses YAML with proper separators. Terraform uses HCL with correct escaping. JSON output has consistent indentation. Copy to clipboard with one click. Preview output with syntax highlighting. Line numbers help you review quickly.
Comprehensive Production Configuration Guide & Architecture Rules
ConfigGenerator helps cloud architects, SREs, platform engineers, and full-stack developers generate validated, secure, and production-ready configuration files. Below is our standard engineering methodology for managing cloud infrastructure, application deployment manifests, and automation pipelines.
Automated Schema Validation & Syntax Guarantee
Writing configuration files manually is prone to human error. A single misplaced space in YAML, an unescaped string in JSON, or invalid syntax in HCL can cause CI/CD build failures, broken deployments, or security vulnerabilities. ConfigGenerator performs strict schema validation directly in real time. We match inputs against official specification schemas for Docker, Kubernetes, HashiCorp Terraform, GitHub Actions, and OpenAPI.
Key validation checks include indentation depth enforcement, mandatory field presence, type safety for integer/boolean parameters, and key name uniqueness to prevent silent key overrides in JSON/YAML parser engines.
Client-Side Privacy & Zero Server Ingestion
Security is our foundational priority. Unlike online formatters that send your payloads to remote servers, ConfigGenerator operates 100% inside your web browser. All template compilation, AST parsing, and code formatting run locally using client-side JavaScript Web Workers.
Your database passwords, API credentials, private certificates, JWT secrets, and environment tokens are never stored, logged, or transmitted across network sockets. You can safely generate production configurations on air-gapped workstations or restricted enterprise networks.
Enterprise Hardening & Least-Privilege Security
Default configurations provided by upstream documentation are frequently optimized for local quickstarts rather than production security. ConfigGenerator injects enterprise security defaults across all generated templates.
For container configs, we enforce non-root user execution, read-only root filesystems, and strict capability drops. For cloud infrastructure, IAM policies follow strict principle-of-least-privilege permissions. Web proxy outputs default to TLS 1.3 encryption, HSTS headers, and Mozilla-recommended SSL cipher suites.
GitOps Workflow & Infrastructure as Code Integration
Modern software engineering relies on version-controlled configurations stored alongside code repositories. Generated files are clean, strictly formatted, and ready for immediate inclusion in Git repositories.
Whether deploying via ArgoCD, Flux, Terraform Cloud, or GitHub Actions workflows, our outputs adhere to standard file naming conventions and deterministic formatting to produce clean, easily readable Git diffs during pull request code reviews.
Best Practices for Managing System Configurations at Scale
1. Separate Config from Code
Store environment-specific values (database hostnames, feature flags, memory limits) separately from application binaries. Use environment variables or external ConfigMaps to allow uniform image deployment across staging and production.
2. Never Commit Plaintext Secrets
Use secret management tools like AWS Secrets Manager, HashiCorp Vault, or Sealed Secrets for Kubernetes. Never hardcode passwords or private SSH keys into static manifest files or public repositories.
3. Implement Automated Linting
Integrate linter tools like yamllint, tflint, kube-score, and Hadolint directly into your pre-commit hooks or CI build pipelines to catch policy violations and structural defects before deployment.