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Barracuda CudaTel Communication Server HTML-injection Vulnerabilities

Barracuda CudaTel Communication Server is prone to multiple HTML-injection vulnerabilities because it fails to sufficiently sanitize user-supplied data. Attacker-supplied HTML or JavaScript code could run in the context of the affected site, potentially allowing the attacker to steal cookie-based authentication credentials and control how the site is rendered to the user; other attacks are also possible.

Ilient SysAid Multiple Cross-Site Scripting and HTML-Injection Vulnerabilities

Ilient SysAid is prone to multiple cross-site scripting and HTML-injection vulnerabilities because it fails to properly sanitize user-supplied input. An attacker could leverage the cross-site scripting issues to execute arbitrary script code in the browser of an unsuspecting user in the context of the affected site. This may let the attacker steal cookie-based authentication credentials and launch other attacks. Attacker-supplied HTML and script code would run in the context of the affected browser, potentially allowing the attacker to steal cookie-based authentication credentials or control how the site is rendered to the user. Other attacks are also possible.

ToendaCMS Local File-Include and Cross-Site Scripting Vulnerabilities

ToendaCMS is prone to a local file-include vulnerability and a cross-site scripting vulnerability because it fails to properly sanitize user-supplied input. An attacker can exploit the local file-include vulnerability using directory-traversal strings to view and execute local files within the context of the webserver process. Information harvested may aid in further attacks. The attacker may leverage the cross-site scripting issue to execute arbitrary script code in the browser of an unsuspecting user in the context of the affected site. This may let the attacker steal cookie-based authentication credentials and launch other attacks.

LeKommerce SQL Injection Vulnerability

LeKommerce is vulnerable to an SQL injection vulnerability due to insufficient sanitization of user-supplied data before using it in an SQL query. Exploiting this vulnerability could allow an attacker to compromise the application, access or modify data, or exploit latent vulnerabilities in the underlying database. Example vulnerable URL: http://www.example.com/path/secc.php?id={sqli}

OSClass Directory Traversal and Arbitrary File Upload Vulnerabilities

OSClass is prone to a directory-traversal vulnerability and an arbitrary-file-upload vulnerability. An attacker can exploit these issues to obtain sensitive information and to upload arbitrary code and run it in the context of the webserver process. To exploit the arbitrary file upload vulnerability, an attacker can take a php file and rename it .gif, upload it as a picture for a new item, change the useragent of the browser to 'Mozilla/4.0 (compatible; MSIE 5.0', use combine.php to move itself to oc-content/uploads, use uploads/combine.php to move the malicious php file to /remote.php, and then run the uploaded php file. To exploit the directory traversal vulnerability, an attacker can change the useragent of the browser to 'Mozilla/4.0 (compatible; MSIE 5.0', move combine.php into the web root, and then run combine to download config.php.

Exponent CMS SQL-Injection Vulnerability

Exponent CMS is prone to an SQL-injection vulnerability because it fails to sufficiently sanitize user-supplied data before using it in an SQL query. Exploiting this issue could allow an attacker to compromise the application, access or modify data, or exploit latent vulnerabilities in the underlying database.

NetDecision Multiple Directory-Traversal Vulnerabilities

NetDecision is prone to multiple directory-traversal vulnerabilities because it fails to sufficiently sanitize user-supplied input. Exploiting the issues can allow an attacker to obtain sensitive information that could aid in further attacks.

Fork CMS Multiple Cross-Site Scripting and HTML-Injection Vulnerabilities

Fork CMS is prone to multiple cross-site scripting and HTML-injection vulnerabilities because it fails to properly sanitize user-supplied input. Successful exploits will allow attacker-supplied HTML and script code to run in the context of the affected browser, potentially allowing the attacker to steal cookie-based authentication credentials or control how the site is rendered to the user. Other attacks are also possible.

Joomla SQL Injection Vulnerability

Joomla! is prone to an SQL-injection vulnerability because it fails to sufficiently sanitize user-supplied data before using it in an SQL query. Exploiting this issue could allow an attacker to compromise the application, access or modify data, or exploit latent vulnerabilities in the underlying database.

11in1 CMS Multiple SQL Injection Vulnerabilities

11in1 CMS is prone to multiple SQL-injection vulnerabilities because the application fails to sufficiently sanitize user-supplied data before using it in an SQL query. Exploiting these issues could allow an attacker to compromise the application, access or modify data, or exploit latent vulnerabilities in the underlying database.

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