| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| The Toshiba printers are vulnerable to a Local Privilege Escalation vulnerability. An attacker can remotely compromise any Toshiba printer. The programs can be replaced by malicious programs by any local or remote attacker. As for the affected products/models/versions, see the reference URL. |
| Traccar is an open source GPS tracking system. Versions prior to 6.0 are vulnerable to path traversal and unrestricted upload of file with dangerous type. Since the system allows registration by default, attackers can acquire ordinary user permissions by registering an account and exploit this vulnerability to upload files with the prefix `device.` under any folder. Attackers can use this vulnerability for phishing, cross-site scripting attacks, and potentially execute arbitrary commands on the server. Version 6.0 contains a patch for the issue. |
| NVIDIA Installer for NvAPP for Windows contains a vulnerability in the FrameviewSDK installation process, where an attacker with local unprivileged access could modify files in the Frameview SDK directory. A successful exploit of this vulnerability might lead to escalation of privileges. |
| Incorrect default permissions issue in PC Time Tracer prior to 5.2. If exploited, arbitrary code may be executed with SYSTEM privilege on Windows system where the product is running by a local authenticated attacker. |
| extcap/nrf_sniffer_ble.py, extcap/nrf_sniffer_ble.sh, extcap/SnifferAPI/*.py in Nordic Semiconductor nRF Sniffer for Bluetooth LE 3.0.0, 3.1.0, 4.0.0, 4.1.0, and 4.1.1 have set incorrect file permission, which allows attackers to do code execution via modified bash and python scripts. |
| Insecure permissions in kuma v2.7.0 allows attackers to access sensitive data and escalate privileges by obtaining the service account's token. |
| The Toshiba printers are vulnerable to a Local Privilege Escalation vulnerability. An attacker can remotely compromise any Toshiba printer. The programs can be replaced by malicious programs by any local or remote attacker. As for the affected products/models/versions, see the reference URL. |
| Use of entitlement "com.apple.security.cs.disable-library-validation" and lack of launch and library load constraints allows to substitute a legitimate dylib with malicious one. A local attacker with unprivileged access can execute the application with altered dynamic library successfully bypassing Transparency, Consent, and Control (TCC). Acquired resource access is limited to previously granted permissions by the user. Access to other resources beyond granted-permissions requires user interaction with a system prompt asking for permission.
This issue affects DaVinci Resolve on macOS in all versions.
Last tested version: 19.1.3 |
| A vulnerability related to registry permissions in the Intercept X for Windows updater prior to Core Agent version 2024.3.2 can lead to a local user gaining SYSTEM level privileges during a product upgrade. |
| An issue was discovered on Brother MFC-J491DW C1806180757 devices. The printer's web-interface password hash can be retrieved without authentication, because the response header of any failed login attempt returns an incomplete authorization cookie. The value of the authorization cookie is the MD5 hash of the password in hexadecimal. An attacker can easily derive the true MD5 hash from this, and use offline cracking attacks to obtain administrative access to the device. |
| An insecure permissions vulnerability was reported in Lenovo Display Control Center (LDCC) and Lenovo Accessories and Display Manager (LADM)
that could allow a local attacker to escalate privileges. |
| Local privilege escalation due to incorrect assignment of privileges of temporary files in the update mechanism of G DATA Management Server. This vulnerability allows a local, unprivileged attacker to escalate privileges on affected installations by placing a crafted ZIP archive in a globally writable directory, which gets unpacked in the context of SYSTEM and results in arbitrary file write. |
| System call entry on Cortex M (and possibly R and A, but I think not) has a race which allows very practical privilege escalation for malicious userspace processes. |
| Keyfactor Command before 12.5.0 has Incorrect Access Control: access tokens are over permissioned, aka 64099. The fixed versions are 11.5.1.1, 11.5.2.1, 11.5.3.1, 11.5.4.5, 11.5.6.1, 11.6.0, 12.2.0.1, 12.3.0.1, 12.4.0.1, 12.5.0, and 24.4.0. |
| Attackers with local access to the medical office computer can
escalate their Windows user privileges to "NT AUTHORITY\SYSTEM" by
overwriting one of two Elefant service binaries with weak permissions. The default installation directory of Elefant is "C:\Elefant1" which is
writable for all users. In addition, the Elefant installer registers two
Firebird database services which are running as “NT AUTHORITY\SYSTEM”.
Path: C:\Elefant1\Firebird_2\bin\fbserver.exe
Path: C:\Elefant1\Firebird_2\bin\fbguard.exe
Both service binaries are user writable. This means that a local
attacker can rename one of the service binaries, replace the service
executable with a new executable, and then restart the system. Once the
system has rebooted, the new service binary is executed as "NT
AUTHORITY\SYSTEM". |
| Improper handling of insufficiency privileges in the ASP could allow a privileged attacker to modify Translation Map Registers (TMRs) potentially resulting in loss of confidentiality or integrity. |
| During the AWS Client VPN client installation on Windows devices, the install process references the C:\usr\local\windows-x86_64-openssl-localbuild\ssl directory location to fetch the OpenSSL configuration file. As a result, a non-admin user could place arbitrary code in the configuration file. If an admin user starts the AWS Client VPN client installation process, that code could be executed with root-level privileges. This issue does not affect Linux or Mac devices.
We recommend users discontinue any new installations of AWS Client VPN on Windows prior to version 5.2.2. |
| A container privilege escalation flaw was found in certain AMQ Broker images. This issue stems from the /etc/passwd file being created with group-writable permissions during build time. In certain conditions, an attacker who can execute commands within an affected container, even as a non-root user, can leverage their membership in the root group to modify the /etc/passwd file. This could allow the attacker to add a new user with any arbitrary UID, including UID 0, leading to full root privileges within the container. |
| An incorrect default permissions vulnerability was reported in the MotoSignature application that could result in unauthorized access. |
| Cursor is an artificial intelligence code editor. Prior to version 0.41.0, if a user on macOS has granted Cursor access to the camera or microphone, any program that is run on the machine is able to access the camera or the microphone without explicitly being granted access, through a DyLib Injection using DYLD_INSERT_LIBRARIES environment variable. The usage of `com.apple.security.cs.allow-dyld-environment-variables` and `com.apple.security.cs.disable-library-validation` allows an external dynamic library to be injected into the application using DYLD_INSERT_LIBRARIES environment variable.
Moreover, the entitlement `com.apple.security.device.camera` allows the application to use the host camera and `com.apple.security.device.audio-input` allows the application to use the microphone. This means that untrusted code that is executed on the user's machine can access the camera or the microphone, if the user has already given permission for Cursor to do so. In version 0.41.0, the entitlements have been split by process: the main process gets the camera and microphone entitlements, but not the DyLib entitlements, whereas the extension host process gets the DyLib entitlements but not the camera or microphone entitlements. As a workaround, do not explicitly give Cursor the permission to access the camera or microphone if untrusted users can run arbitrary commands on the affected machine. |