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A cryptographic audit systematically reviews an application's use of cryptographic primitives, protocols, and key management to identify vulnerabilities such as weak algorithms, insecure modes, hardcoded keys, insufficient entropy, and protocol misconfigurations. This skill covers building an automated crypto audit tool that scans Python and configuration files for common cryptographic weaknesses.
Scans Python apps and config files for crypto vulnerabilities: weak algorithms, ECB mode, hardcoded secrets, poor KDFs, and deprecated protocols.
Audits Python apps and configs for crypto vulnerabilities like weak algorithms (MD5/SHA-1), insecure modes (ECB), hard-coded keys, entropy issues, and TLS configs; generates reports with fixes.
Detects cryptographic failures like weak hashing (MD5/SHA1), hardcoded secrets, insecure randomness in Python, Java, Go, PHP, TypeScript code using grep patterns for whitebox pentesting.
Share bugs, ideas, or general feedback.
A cryptographic audit systematically reviews an application's use of cryptographic primitives, protocols, and key management to identify vulnerabilities such as weak algorithms, insecure modes, hardcoded keys, insufficient entropy, and protocol misconfigurations. This skill covers building an automated crypto audit tool that scans Python and configuration files for common cryptographic weaknesses.
| Category | Examples | Risk Level |
|---|---|---|
| Weak Hashing | MD5, SHA-1 for integrity/signatures | High |
| Insecure Encryption | DES, 3DES, RC4, Blowfish | High |
| Bad Cipher Mode | ECB mode for any block cipher | High |
| Insufficient Key Size | RSA < 2048, AES-128 for long-term | Medium |
| Hardcoded Secrets | Keys/passwords in source code | Critical |
| Weak KDF | Low iteration PBKDF2, plain MD5 | High |
| Poor Entropy | time-based seeds, predictable IVs | High |
| Deprecated Protocols | SSLv3, TLS 1.0, TLS 1.1 | High |