| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| common-user-management is a robust Spring Boot application featuring user management services designed to control user access dynamically. There is a critical security vulnerability in the application endpoint /api/v1/customer/profile-picture. This endpoint allows file uploads without proper validation or restrictions, enabling attackers to upload malicious files that can lead to Remote Code Execution (RCE). |
| An unauthenticated SQL injection vulnerability exists in Pandora FMS version 5.0 SP2 and earlier. The mobile/index.php endpoint fails to properly sanitize user input in the loginhash_data parameter, allowing attackers to extract administrator credentials or active session tokens via crafted requests. This occurs because input is directly concatenated into an SQL query without adequate validation, enabling SQL injection. After authentication is bypassed, a second vulnerability in the File Manager component permits arbitrary PHP file uploads. The file upload functionality does not enforce MIME-type or file extension restrictions, allowing authenticated users to upload web shells into a publicly accessible directory and achieve remote code execution. |
| A command injection vulnerability exists in the eScan Web Management Console version 5.5-2. The application fails to properly sanitize the 'pass' parameter when processing login requests to login.php, allowing an authenticated attacker with a valid username to inject arbitrary commands via a specially crafted password value. Successful exploitation results in remote code execution. Privilege escalation to root is possible by abusing the runasroot utility with mwconf-level privileges. |
| A filename spoofing vulnerability exists in WinRAR when opening specially crafted ZIP archives. The issue arises due to inconsistencies between the Central Directory and Local File Header entries in ZIP files. When viewed in WinRAR, the file name from the Central Directory is displayed to the user, while the file from the Local File Header is extracted and executed. An attacker can leverage this flaw to spoof filenames and trick users into executing malicious payloads under the guise of harmless files, potentially leading to remote code execution. |
| A vulnerability was found in Pagure. An argument injection in Git during retrieval of the repository history leads to remote code execution on the Pagure instance. |
| ZTE's ZXCDN product is affected by a Struts remote code execution (RCE) vulnerability. An unauthenticated attacker can remotely execute commands with non-root privileges. |
| There is a buffer overflow vulnerability in the underlying L2/L3 Management service that could lead to unauthenticated remote code execution by sending specially crafted packets destined to the PAPI (Aruba's access point management protocol) UDP port (8211). Successful exploitation of this vulnerability results in the ability to execute arbitrary code as a privileged user on the underlying operating system.
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| Deserialization of Untrusted Data vulnerability in OpenTextâ„¢ Directory Services allows Object Injection.Â
The vulnerability could lead to remote code execution, denial of service, or privilege escalation.
This issue affects Directory Services: before 24.4.16, from 25.1 before 25.1.9, from 25.2 before 25.2.9, from 25.3 before 25.3.8, from 25.4 before 25.4.5, from 26.1 before 26.1.2. |
| MailDev 2 through 2.1.0 allows Remote Code Execution via a crafted Content-ID header for an e-mail attachment, leading to lib/mailserver.js writing arbitrary code into the routes.js file. |
| TG8 Firewall contains a pre-authentication remote code execution vulnerability in the runphpcmd.php endpoint. The syscmd POST parameter is passed directly to a system command without validation and executed with root privileges. A remote, unauthenticated attacker can supply crafted values to execute arbitrary operating system commands as root, resulting in full device compromise. |
| Acer ControlCenter contains Remote Code Execution vulnerability. The program exposes a Windows Named Pipe that uses a custom protocol to invoke internal functions. However, this Named Pipe is misconfigured, allowing remote users with low privileges to interact with it and access its features. One such feature enables the execution of arbitrary programs as NT AUTHORITY/SYSTEM. By leveraging this, remote attackers can execute arbitrary code on the target system with elevated privileges. |
| Kafka UI is an Open-Source Web UI for Apache Kafka Management. Kafka UI API allows users to connect to different Kafka brokers by specifying their network address and port. As a separate feature, it also provides the ability to monitor the performance of Kafka brokers by connecting to their JMX ports. JMX is based on the RMI protocol, so it is inherently susceptible to deserialization attacks. A potential attacker can exploit this feature by connecting Kafka UI backend to its own malicious broker. This vulnerability affects the deployments where one of the following occurs: 1. dynamic.config.enabled property is set in settings. It's not enabled by default, but it's suggested to be enabled in many tutorials for Kafka UI, including its own README.md. OR 2. an attacker has access to the Kafka cluster that is being connected to Kafka UI. In this scenario the attacker can exploit this vulnerability to expand their access and execute code on Kafka UI as well. Instead of setting up a legitimate JMX port, an attacker can create an RMI listener that returns a malicious serialized object for any RMI call. In the worst case it could lead to remote code execution as Kafka UI has the required gadget chains in its classpath. This issue may lead to post-auth remote code execution. This is particularly dangerous as Kafka-UI does not have authentication enabled by default. This issue has been addressed in version 0.7.2. All users are advised to upgrade. There are no known workarounds for this vulnerability. These issues were discovered and reported by the GitHub Security lab and is also tracked as GHSL-2023-230. |
| Quantum StorNext Web GUI API before 7.2.4 allows potential Arbitrary Remote Code Execution (RCE) via upload of a file. This affects StorNext RYO before 7.2.4, StorNext Xcellis Workflow Director before 7.2.4, and ActiveScale Cold Storage. |
| An issue was discovered in Ovidentia 8.3. The file upload feature does not prevent the uploading of executable files. A user can upload a .png file containing PHP code and then rename it to have the .php extension. It will then be accessible at an images/common/ URI for remote code execution. |
| The Download Manager plugin for WordPress is vulnerable to arbitrary file deletion due to insufficient file path validation in the savePackage function in all versions up to, and including, 3.3.12. This makes it possible for authenticated attackers, with Author-level access and above, to delete arbitrary files on the server, which can easily lead to remote code execution when the right file is deleted (such as wp-config.php). |
| Traq versions 2.0 through 2.3 contain a remote code execution vulnerability in the admincp/common.php script. The flawed authorization logic fails to halt execution after a failed access check, allowing unauthenticated users to reach admin-only functionality. This can be exploited via plugins.php to inject and execute arbitrary PHP code. |
| A remote code execution vulnerability exists in multiple Netcore and Netis routers models with firmware released prior to August 2014 due to the presence of an undocumented backdoor listener on UDP port 53413. Exact version boundaries remain undocumented. An unauthenticated remote attacker can send specially crafted UDP packets to execute arbitrary commands on the affected device. This backdoor uses a hardcoded authentication mechanism and accepts shell commands post-authentication. Some device models include a non-standard implementation of the `echo` command, which may affect exploitability. |
| The Wordpress Plugin Smart Product Review plugin for WordPress is vulnerable to arbitrary file uploads due to missing file type validation in all versions up to, and including, 1.0.4. This makes it possible for unauthenticated attackers to upload arbitrary files on the affected site's server which may make remote code execution possible. |
| Command injection vulnerabilities in the underlying CLI service could lead to unauthenticated remote code execution by sending specially crafted packets destined to the PAPI (Aruba's Access Point management protocol) UDP port (8211). Successful exploitation of these vulnerabilities results in the ability to execute arbitrary code as a privileged user on the underlying operating system. |
| In DOXENSE WATCHDOC before 6.1.1.5332, Deserialization of Untrusted Data can lead to remote code execution through the .NET Remoting library in the Watchdoc administration interface. |