223 matches found
CVE-2025-48507
CVE-2025-48507 concerns the unused security state of the calling processor in Arm Trusted Firmware (TF-A) , which could allow a non-secure processor to access secure memories , perform privileged cryptographic operations , and control subsystems within the SOC. Documented exposure stems from AMD-...
CVE-2025-48507
The security state of the calling processor into Trusted Firmware TF-A is not used and could potentially allow non-secure processors access to secure memories, access to crypto operations, and the ability to turn on and off subsystems within the SOC...
CVE-2025-48507
The security state of the calling processor into Trusted Firmware TF-A is not used and could potentially allow non-secure processors access to secure memories, access to crypto operations, and the ability to turn on and off subsystems within the SOC...
CVE-2025-48507
The security state of the calling processor into Trusted Firmware TF-A is not used and could potentially allow non-secure processors access to secure memories, access to crypto operations, and the ability to turn on and off subsystems within the SOC...
AMD Versal Adaptive SoC 安全漏洞
AMD Versal Adaptive SoC is a chip from UltraMicro Semiconductor AMD. A security vulnerability exists in the AMD Versal Adaptive SoC that stems from an improperly set security flag on the PSCI command, which could result in requests from a non-secure state being mistakenly recognized as coming fro...
AMD Zynq UltraScale+ 安全漏洞
AMD Zynq UltraScale+ is a multiprocessor system-on-chip from UltraMicroelectronics AMD. A security vulnerability exists in AMD Zynq UltraScale+ that originates from the unused security state of the calling processor and could result in a non-secure processor accessing secure memory or cryptograph...
PT-2025-47853
Name of the Vulnerable Software and Affected Versions Arm® Trusted Firmware TF-A affected versions not specified Description The security state of the calling processor when entering Arm® Trusted Firmware TF-A is not properly utilized. This could allow processors operating in a non-secure state t...
Updated unbound packages fix security vulnerability
Several multi-vendor cache poisoning vulnerabilities have been discovered in caching resolvers for non-DNSSEC protected data. Unbound is vulnerable for some of these cases that could lead to domain hijacking CVE-2025-11411...
Missing Use of the Secure Flag in Zynq™ UltraScale+™ SoC Trusted Firmware
Summary A researcher reported that the security state of the calling processor into Trusted Firmware TF-A is not used and could potentially allow non-secure processors access to secure memories, access to crypto operations, and the ability turn on and off subsystems within the SoC...
CVE-2025-10693
When SmartStart Inclusion fails during the onboarding of a Z-Wave PIR sensor, the sensor will join the network as a non-secure device. This vulnerability exists in Silicon Labs' Z-Wave PIR Sensor Reference design delivered as part of SiSDK v2025.6.0 and v2025.6.1...
EUVD-2025-37394
When SmartStart Inclusion fails during the onboarding of a Z-Wave PIR sensor, the sensor will join the network as a non-secure device. This vulnerability exists in Silicon Labs' Z-Wave PIR Sensor Reference design delivered as part of SiSDK v2025.6.0 and v2025.6.1...
CVE-2025-10693
When SmartStart Inclusion fails during the onboarding of a Z-Wave PIR sensor, the sensor will join the network as a non-secure device. This vulnerability exists in Silicon Labs' Z-Wave PIR Sensor Reference design delivered as part of SiSDK v2025.6.0 and v2025.6.1...
CVE-2025-10693 Silicon Labs Z-Wave PIR Sensor Joins Network as Non-Secure
When SmartStart Inclusion fails during the onboarding of a Z-Wave PIR sensor, the sensor will join the network as a non-secure device. This vulnerability exists in Silicon Labs' Z-Wave PIR Sensor Reference design delivered as part of SiSDK v2025.6.0 and v2025.6.1...
CVE-2025-10693 Silicon Labs Z-Wave PIR Sensor Joins Network as Non-Secure
When SmartStart Inclusion fails during the onboarding of a Z-Wave PIR sensor, the sensor will join the network as a non-secure device. This vulnerability exists in Silicon Labs' Z-Wave PIR Sensor Reference design delivered as part of SiSDK v2025.6.0 and v2025.6.1...
CVE-2025-10693
CVE-2025-10693 affects Silicon Labs’ Z‑Wave PIR Sensor Reference design in SiSDK v2025.6.0 and v2025.6.1. When SmartStart Inclusion fails, the PIR sensor may join the Z‑Wave network as a non‑secure device, exposing confidentiality and integrity (High) and impacting availability (Low) with a base ...
CVE-2025-10693 Silicon Labs Z-Wave PIR Sensor Joins Network as Non-Secure
When SmartStart Inclusion fails during the onboarding of a Z-Wave PIR sensor, the sensor will join the network as a non-secure device. This vulnerability exists in Silicon Labs' Z-Wave PIR Sensor Reference design delivered as part of SiSDK v2025.6.0 and v2025.6.1...
PT-2025-44667
Name of the Vulnerable Software and Affected Versions Silicon Labs Z-Wave PIR Sensor Reference design versions 2025.6.0 through 2025.6.1 Description A failure during SmartStart Inclusion when onboarding a Z-Wave PIR sensor can result in the sensor joining the network as a non-secure device. This...
EUVD-2020-3638
Malware in sbrugna...