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PHP

PHP static code analysis

Unique rules to find Bugs, Vulnerabilities, Security Hotspots, and Code Smells in your PHP code

  • All rules 273
  • Vulnerability42
  • Bug51
  • Security Hotspot34
  • Code Smell146
 
Tags
    Impact
      Clean code attribute
        1. Server-side requests should not be vulnerable to traversing attacks

           Vulnerability
        2. Credentials should not be hard-coded

           Vulnerability
        3. Secret keys and salt values should be robust

           Vulnerability
        4. Applications should not create session cookies from untrusted input

           Vulnerability
        5. Reflection should not be vulnerable to injection attacks

           Vulnerability
        6. OS commands should not be vulnerable to argument injection attacks

           Vulnerability
        7. A new session should be created during user authentication

           Vulnerability
        8. Authorizations should be based on strong decisions

           Vulnerability
        9. Cipher algorithms should be robust

           Vulnerability
        10. Encryption algorithms should be used with secure mode and padding scheme

           Vulnerability
        11. Server hostnames should be verified during SSL/TLS connections

           Vulnerability
        12. Include expressions should not be vulnerable to injection attacks

           Vulnerability
        13. Dynamic code execution should not be vulnerable to injection attacks

           Vulnerability
        14. HTTP request redirections should not be open to forging attacks

           Vulnerability
        15. Logging should not be vulnerable to injection attacks

           Vulnerability
        16. Server-side requests should not be vulnerable to forging attacks

           Vulnerability
        17. Deserialization should not be vulnerable to injection attacks

           Vulnerability
        18. Endpoints should not be vulnerable to reflected cross-site scripting (XSS) attacks

           Vulnerability
        19. Server certificates should be verified during SSL/TLS connections

           Vulnerability
        20. LDAP connections should be authenticated

           Vulnerability
        21. Cryptographic keys should be robust

           Vulnerability
        22. Weak SSL/TLS protocols should not be used

           Vulnerability
        23. Database queries should not be vulnerable to injection attacks

           Vulnerability
        24. "file_uploads" should be disabled

           Vulnerability
        25. "enable_dl" should be disabled

           Vulnerability
        26. "session.use_trans_sid" should not be enabled

           Vulnerability
        27. "cgi.force_redirect" should be enabled

           Vulnerability
        28. "allow_url_fopen" and "allow_url_include" should be disabled

           Vulnerability
        29. "open_basedir" should limit file access

           Vulnerability
        30. Session-management cookies should not be persistent

           Vulnerability
        31. "sleep" should not be called

           Vulnerability
        32. XML parsers should not be vulnerable to XXE attacks

           Vulnerability
        33. Regular expressions should not be vulnerable to Denial of Service attacks

           Vulnerability
        34. Neither DES (Data Encryption Standard) nor DESede (3DES) should be used

           Vulnerability
        35. Cryptographic RSA algorithms should always incorporate OAEP (Optimal Asymmetric Encryption Padding)

           Vulnerability
        36. A secure password should be used when connecting to a database

           Vulnerability
        37. XPath expressions should not be vulnerable to injection attacks

           Vulnerability
        38. I/O function calls should not be vulnerable to path injection attacks

           Vulnerability
        39. LDAP queries should not be vulnerable to injection attacks

           Vulnerability
        40. OS commands should not be vulnerable to command injection attacks

           Vulnerability
        41. SHA-1 and Message-Digest hash algorithms should not be used in secure contexts

           Vulnerability
        42. Password hashing functions should use an unpredictable salt

           Vulnerability

        Deserialization should not be vulnerable to injection attacks

        intentionality - complete
        security
        Vulnerability
        • cwe
        • injection

        Why is this an issue?

        How can I fix it?

        More Info

        Deserialization injections occur when applications deserialize wholly or partially untrusted data without verification.

        What is the potential impact?

        In the context of a web application performing unsafe deserialization:
        After detecting the injection vector, attackers inject a carefully-crafted payload into the application.

        Below are some real-world scenarios that illustrate some impacts of an attacker exploiting the vulnerability.

        Application-specific attacks

        In this scenario, the attackers succeed in injecting an object of the expected class, but with malicious properties that affect the object’s behavior.

        If the application relies on the properties of the deserialized object, attackers can modify the data structure or content to escalate privileges or perform unwanted actions.
        In the context of an e-commerce application, this could be changing the number of products or prices.

        Full application compromise

        In the worst-case scenario, the attackers succeed in injecting an object of a completely different class than expected, triggering code execution.

        Depending on the attacker, code execution can be used with different intentions:

        • Download the internal server’s data, most likely to sell it.
        • Modify data, install malware, for instance, malware that mines cryptocurrencies.
        • Stop services or exhaust resources, for instance, with fork bombs.

        This threat is particularly insidious if the attacked organization does not maintain a Disaster Recovery Plan (DRP).

        Root privilege escalation and pivot

        In this scenario, the attacker can do everything described in the previous section. The difference is that the attacker additionally manages to elevate his privileges as an administrator and attack other servers.

        Here, the impact depends on how much the target company focuses on its Defense In Depth. For example, the entire infrastructure can be compromised through a combination of unsafe deserialization and misconfiguration:

        • Docker or Kubernetes clusters
        • cloud services
        • network firewalls and routing
        • OS access control
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          Developer Edition
          Available Since
          9.1

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