| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| Tesla Model S oFono Unnecessary Privileges Sandbox Escape Vulnerability. This vulnerability allows local attackers to escape the sandbox on affected Tesla Model S vehicles. An attacker must first obtain the ability to execute code within the sandbox on the target system in order to exploit this vulnerability.
The specific flaw exists within the oFono process. The process allows an attacker to modify interfaces. An attacker can leverage this vulnerability to bypass the iptables network sandbox. Was ZDI-CAN-23200. |
| Tesla Model 3 VCSEC Integer Overflow Remote Code Execution Vulnerability. This vulnerability allows network-adjacent attackers to execute arbitrary code on affected Tesla Model 3 vehicles. Authentication is not required to exploit this vulnerability.
The specific flaw exists within the VCSEC module. By manipulating the certificate response sent from the Tire Pressure Monitoring System (TPMS), an attacker can trigger an integer overflow before writing to memory. An attacker can leverage this vulnerability to execute code in the context of the VCSEC module and send arbitrary messages to the vehicle CAN bus. Was ZDI-CAN-23800. |
| Tesla Model S Iris Modem QCMAP_ConnectionManager Improper Input Validation Sandbox Escape Vulnerability. This vulnerability allows local attackers to escape the sandbox on affected affected Tesla Model S vehicles. An attacker must first obtain the ability to execute low-privileged code on the target system in order to exploit this vulnerability.
The specific flaw exists within the QCMAP_ConnectionManager component. An attacker can abuse the service to assign LAN addresses to the WWAN. An attacker can leverage this vulnerability to access network services that were only intended to be exposed to the internal LAN. Was ZDI-CAN-23199. |
| Tesla Model S Iris Modem Race Condition Firewall Bypass Vulnerability. This vulnerability allows network-adjacent attackers to bypass the firewall on the Iris modem in affected Tesla Model S vehicles. Authentication is not required to exploit this vulnerability.
The specific flaw exists within the firewall service. The issue results from a failure to obtain the xtables lock. An attacker can leverage this vulnerability to bypass firewall rules. Was ZDI-CAN-23197. |
| Tesla Model S Iris Modem ql_atfwd Command Injection Code Execution Vulnerability. This vulnerability allows local attackers to execute arbitrary code on affected Tesla Model S vehicles. An attacker must first obtain the ability to execute code on the target system in order to exploit this vulnerability.
The specific flaw exists within the ql_atfwd process. The issue results from the lack of proper validation of a user-supplied string before using it to execute a system call. An attacker can leverage this vulnerability to execute code on the target modem in the context of root. Was ZDI-CAN-23201. |
| Memory corruption when input parameter validation for number of fences is missing for fence frame IOCTL calls, |
| Memory corruption while invoking IOCTL calls to unmap the DMA buffers. |
| Information disclosure while invoking callback function of sound model driver from ADSP for every valid opcode received from sound model driver. |
| Memory corruption when IOCTL call is invoked from user-space to read board data. |
| Memory corruption when IOCTL call is invoked from user-space to write board data to WLAN driver. |
| Transient DOS can occur when the driver parses the per STA profile IE and tries to access the EXTN element ID without checking the IE length. |
| A use-after-free vulnerability was found in the QEMU LSI53C895A SCSI Host Bus Adapter emulation. This issue can lead to a crash or VM escape. |
| Centreon insertGraphTemplate SQL Injection Remote Code Execution Vulnerability. This vulnerability allows remote attackers to execute arbitrary code on affected installations of Centreon. Authentication is required to exploit this vulnerability.
The specific flaw exists within the insertGraphTemplate function. The issue results from the lack of proper validation of a user-supplied string before using it to construct SQL queries. An attacker can leverage this vulnerability to execute code in the context of the service account. Was ZDI-CAN-22339. |
| A vulnerability was discovered in Pagure server. If a malicious user were to submit a git repository with symbolic links, the server could unintentionally show incorporate and make visible content from outside the git repo. |
| A directory traversal vulnerability was discovered in Pagure server. If a malicious user submits a specially cratfted git repository they could discover secrets on the server. |
| Improper authorization in GitLab EE affecting all versions from 17.7 prior to 17.7.6, 17.8 prior to 17.8.4, 17.9 prior to 17.9.1 allow users with limited permissions to access to potentially sensitive project analytics data. |
| An issue has been discovered in GitLab CE/EE for Self-Managed and Dedicated instances affecting all versions from 17.5 prior to 17.6.5, 17.7 prior to 17.7.4, and 17.8 prior to 17.8.2. It was possible for a user added as an External to read and clone internal projects under certain circumstances." |
| An issue has been discovered in GitLab CE/EE affecting all versions starting from 10.6 prior to 16.9.7, starting from 16.10 prior to 16.10.5, and starting from 16.11 prior to 16.11.2 in which cross-site request forgery may have been possible on GitLab instances configured to use JWT as an OmniAuth provider. |
| An issue has been discovered in GitLab CE/EE affecting all versions starting from 15.5 prior to 16.9.7, starting from 16.10 prior to 16.10.5, and starting from 16.11 prior to 16.11.2. GitLab was vulnerable to Server Side Request Forgery when an attacker uses a malicious URL in the markdown image value when importing a GitHub repository. |
| com_line() in command.c in gnuplot 5.4 leads to an out-of-bounds-write from strncpy() that may lead to arbitrary code execution. |