4147 matches found
CVE-2026-25250
EAZ EazyFix 12.9 allows a Security Feature Bypass related to a "Missing Cryptographic Step" associated with "Secure Boot disable."...
CVE-2026-25250
CVE-2026-25250 is a Windows Secure Boot security feature bypass caused by a missing cryptographic step in a Microsoft-signed third-party bootloader (EAZ EazyFix 12.9 ), which completely skips signature verification when loading drivers. An authorized local attacker with high privileges can bypass...
Microsoft Windows: CVE-2026-25250: MITRE: CVE-2026-25250 Secure Boot disable Eazy Fix
EAZ EazyFix 12.9 allows a Security Feature Bypass related to a "Missing Cryptographic Step" associated with "Secure Boot disable."...
Unity Linux 20.1050a Security Update: kernel (UTSA-2026-099003)
The Unity Linux 20 host has a package installed that is affected by a vulnerability as referenced in the UTSA-2026-099003 advisory. In the Linux kernel, the following vulnerability has been resolved: xen/privcmd: restrict usage in unprivileged domU The Xen privcmd driver allows to issue arbitrary...
Automotive HSMs - Architectural Challenges and Security Implications
Automotive electronic control units ECUs increasingly depend on hardware-rooted security to protect software integrity, authenticity, and lifecycle management in the presence of remote and physical threats. Hardware Security Modules HSMs have become a key building block in automotive...
virt-firmware v26.8.1
Tools for ovmf / armvirt firmware volumes This is a small collection of tools for edk2 firmware images. They support decoding and printing the content of firmware volumes. Variable stores OVMFVARS.fd can be modified, for example to enroll secure boot certificates. virt-fw-dump Decodes and prints...
Unity Linux 20.1050e Security Update: kernel (UTSA-2026-102016)
The Unity Linux 20 host has a package installed that is affected by a vulnerability as referenced in the UTSA-2026-102016 advisory. In the Linux kernel, the following vulnerability has been resolved: xen/privcmd: restrict usage in unprivileged domU The Xen privcmd driver allows to issue arbitrary...
CVE-2026-17414 Power System Improper Input Validation
IBM PowerVM Hypervisor FW1120.00, FW1110.00 through FW1110.30, FW1060.00 through FW1060.80, and FW950.00 through FW950.H2 Power Systems Firmware is affected by a vulnerability in partition firmware during network boot. An unauthenticated attacker with access to the same network as a partition...
EUVD-2024-55729
Secure BootROM of RK3588s SoC is vulnerable to a time-of-check to time-of-use attack in case of booting from external media SPI NOR or NAND, EMMC or SD. The code reads the header of the next-stage loader twice. The header contains hashes of the executable modules and is signed with a private key,...
CVE-2026-50720
The Ingenic T31 SoC boot ROM flash-boot verification path compares only a single 32-bit word of the RSA signature output against a single 32-bit word of the SHA-256 payload digest, rather than compare the full data. This allows an attacker with physical write access to boot media to forge modifie...
CVE-2026-50719
The Ingenic T41, and probably also T32, T40, and A1 SoC boot ROMs parse and execute an attacker-controlled init table from the SPL header before checking the secure boot state and before invoking signature verification. The init table parser supports full-address 32-bit write operations, allowing...
CVE-2026-50720: Improper Verification of Cryptographic Signature
The Ingenic T31 SoC boot ROM flash-boot verification path compares only a single 32-bit word of the RSA signature output against a single 32-bit word of the SHA-256 payload digest, rather than compare the full data. This allows an attacker with physical write access to boot media to forge modifie...
CVE-2026-50720
The Ingenic T31 SoC boot ROM flash-boot verification path compares only a single 32-bit word of the RSA signature output against a single 32-bit word of the SHA-256 payload digest, rather than compare the full data. This allows an attacker with physical write access to boot media to forge modifie...
CVE-2026-50719
The Ingenic T41, and probably also T32, T40, and A1 SoC boot ROMs parse and execute an attacker-controlled init table from the SPL header before checking the secure boot state and before invoking signature verification. The init table parser supports full-address 32-bit write operations, allowing...
EUVD-2026-62480
The Ingenic T31 SoC boot ROM flash-boot verification path compares only a single 32-bit word of the RSA signature output against a single 32-bit word of the SHA-256 payload digest, rather than compare the full data. This allows an attacker with physical write access to boot media to forge modifie...
EUVD-2026-62479
The Ingenic T41, and probably also T32, T40, and A1 SoC boot ROMs parse and execute an attacker-controlled init table from the SPL header before checking the secure boot state and before invoking signature verification. The init table parser supports full-address 32-bit write operations, allowing...
CVE-2026-50720
The Ingenic T31 SoC contains a vulnerability in the boot ROM flash-boot verification path where it only compares a single 32-bit word of the RSA signature output against a single 32-bit word of the SHA-256 payload digest. This improper cryptographic verification allows an attacker with physical w...
CVE-2026-50719
The Ingenic T41 , and likely the T32, T40, and A1 SoCs, are vulnerable in their boot ROMs due to an improper handling of the SPL header init table. The boot ROM parses and executes an attacker-controlled init table before performing secure boot state checks or signature verification. Because the ...
PT-2026-78354
Name of the Vulnerable Software and Affected Versions Ingenic T41 affected versions not specified Ingenic T32 affected versions not specified Ingenic T40 affected versions not specified Ingenic A1 affected versions not specified Description Boot ROMs in certain SoC System on Chip components parse...
PT-2026-78355
Name of the Vulnerable Software and Affected Versions Ingenic T31 SoC affected versions not specified Description The boot ROM flash-boot verification path in the Ingenic T31 SoC incorrectly compares only a single 32-bit word of the RSA signature output against a single 32-bit word of the SHA-256...