A privacy issue was addressed with improved private data redaction for log entries. This issue is fixed in watchOS 9.5, macOS Ventura 13.4, tvOS 16.5, iOS 16.5 and iPadOS 16.5, macOS Big Sur 11.7.7, macOS Monterey 12.6.6. An app may be able to read sensitive location information
This issue was addressed with improved redaction of sensitive information. This issue is fixed in watchOS 9.5, macOS Ventura 13.4, tvOS 16.5, iOS 16.5 and iPadOS 16.5, macOS Big Sur 11.7.7, macOS Monterey 12.6.6. An app may be able to bypass Privacy preferences
This issue was addressed with improved state management. This issue is fixed in iOS 16.5 and iPadOS 16.5, macOS Ventura 13.4, watchOS 9.5, tvOS 16.5. An app firewall setting may not take effect after exiting the Settings app
An out-of-bounds read was addressed with improved input validation. This issue is fixed in watchOS 9.5, iOS 15.7.6 and iPadOS 15.7.6, macOS Ventura 13.4, Safari 16.5, tvOS 16.5, iOS 16.5 and iPadOS 16.5. Processing web content may disclose sensitive information. Apple is aware of a report that this issue may have been actively exploited.
A type confusion issue was addressed with improved checks. This issue is fixed in iOS 16.5 and iPadOS 16.5, macOS Ventura 13.4, watchOS 9.5, tvOS 16.5. An app may be able to execute arbitrary code with kernel privileges
The issue was addressed with additional permissions checks. This issue is fixed in macOS Ventura 13.4, iOS 15.7.6 and iPadOS 15.7.6, macOS Monterey 12.6.6. A sandboxed app may be able to observe system-wide network connections
An authentication issue was addressed with improved state management. This issue is fixed in AirPods Firmware Update 5E133. When your headphones are seeking a connection request to one of your previously paired devices, an attacker in Bluetooth range might be able to spoof the intended source device and gain access to your headphones.
A maliciously crafted pskernel.dll file in Autodesk AutoCAD 2023 and Maya 2022 may be used to trigger out-of-bound read write / read vulnerabilities. Exploitation of this vulnerability may lead to code execution.
NVIDIA Jetson contains a vulnerability in CBoot, where the PCIe controller is initialized without IOMMU, which may allow an attacker with physical access to the target device to read and write to arbitrary memory. A successful exploit of this vulnerability may lead to code execution, denial of service, information disclosure, and loss of integrity.
NVIDIA Jetson contains a vulnerability in CBoot, where the PCIe controller is initialized without IOMMU, which may allow an attacker with physical access to the target device to read and write to arbitrary memory. A successful exploit of this vulnerability may lead to code execution, denial of service, information disclosure, and loss of integrity.