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Java

Java static code analysis

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

  • All rules 733
  • Vulnerability60
  • Bug175
  • Security Hotspot40
  • Code Smell458

  • Quick Fix 65
Filtered: 20 rules found
android
    Impact
      Clean code attribute
        1. Processing persistent unique identifiers is security-sensitive

           Security Hotspot
        2. Exposing native code through JavaScript interfaces is security-sensitive

           Security Hotspot
        3. Bluetooth should be configured to use low power

           Code Smell
        4. Motion Sensor should not use gyroscope

           Code Smell
        5. Use Fused Location to optimize battery power

           Code Smell
        6. High frame rates should not be used

           Code Smell
        7. Exact alarms should not be abused

           Code Smell
        8. Proper Sensor Resource Management

           Code Smell
        9. Components should not be vulnerable to intent redirection

           Vulnerability
        10. Enabling file access for WebViews is security-sensitive

           Security Hotspot
        11. Enabling JavaScript support for WebViews is security-sensitive

           Security Hotspot
        12. Mobile database encryption keys should not be disclosed

           Vulnerability
        13. Using biometric authentication without a cryptographic solution is security-sensitive

           Security Hotspot
        14. Authorizing non-authenticated users to use keys in the Android KeyStore is security-sensitive

           Security Hotspot
        15. Using clear-text protocols is security-sensitive

           Security Hotspot
        16. Accessing Android external storage is security-sensitive

           Security Hotspot
        17. Receiving intents is security-sensitive

           Security Hotspot
        18. Broadcasting intents is security-sensitive

           Security Hotspot
        19. Database queries should not be vulnerable to injection attacks

           Vulnerability
        20. URIs should not be hardcoded

           Code Smell

        Database queries should not be vulnerable to injection attacks

        intentionality - complete
        security
        Vulnerability
        • cwe
        • sql
        • android
        • injection

        Why is this an issue?

        How can I fix it?

        More Info

        Database injections (such as SQL injections) occur in an application when the application retrieves data from a user or a third-party service and inserts it into a database query without sanitizing it first.

        If an application contains a database query that is vulnerable to injections, it is exposed to attacks that target any database where that query is used.

        A user with malicious intent is able to modify the existing query to change its logic to a malicious one.

        After creating the malicious request, the attacker can attack the databases affected by this vulnerability without relying on any pre-requisites.

        What is the potential impact?

        In the context of a web application that is vulnerable to SQL injection:
        After discovering the injection, attackers inject data into the vulnerable field to execute malicious commands in the affected databases.

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

        Identity spoofing and data manipulation

        A malicious database query enables privilege escalation or direct data leakage from one or more databases. This threat is the most widespread impact.

        Data deletion and denial of service

        The malicious query makes it possible for the attacker to delete data in the affected databases.
        This threat is particularly insidious if the attacked organization does not maintain a disaster recovery plan (DRP).

        Chaining DB injections with other vulnerabilities

        Attackers who exploit SQL injections rely on other vulnerabilities to maximize their profits.
        Most of the time, organizations overlook some defense in depth measures because they assume attackers cannot reach certain points in the infrastructure. This misbehavior can lead to multiple attacks with great impact:

        • When secrets are stored unencrypted in databases: Secrets can be exfiltrated and lead to compromise of other components.
        • If server-side OS and/or database permissions are misconfigured, injection can lead to remote code execution (RCE).
          • See our article on this topic
          Available In:
        • SonarQube CloudDetect issues in your GitHub, Azure DevOps Services, Bitbucket Cloud, GitLab repositories
        • SonarQube ServerAnalyze code in your
          on-premise CI
          Developer Edition
          Available Since
          9.1

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