惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

酷 壳 – CoolShell
酷 壳 – CoolShell
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
T
Tailwind CSS Blog
有赞技术团队
有赞技术团队
爱范儿
爱范儿
Engineering at Meta
Engineering at Meta
J
Java Code Geeks
雷峰网
雷峰网
WordPress大学
WordPress大学
L
LangChain Blog
D
DataBreaches.Net
The GitHub Blog
The GitHub Blog
博客园 - 三生石上(FineUI控件)
Microsoft Security Blog
Microsoft Security Blog
P
Proofpoint News Feed
腾讯CDC
GbyAI
GbyAI
罗磊的独立博客
Blog — PlanetScale
Blog — PlanetScale
月光博客
月光博客
F
Fortinet All Blogs
Y
Y Combinator Blog
V
V2EX
A
About on SuperTechFans

CERT Recently Published Vulnerability Notes

CERT/CC Vulnerability Note VU#280377 CERT/CC Vulnerability Note VU#369093 CERT/CC Vulnerability Note VU#212479 CERT/CC Vulnerability Note VU#369611 CERT/CC Vulnerability Note VU#687587 CERT/CC Vulnerability Note VU#859658 CERT/CC Vulnerability Note VU#943094 CERT/CC Vulnerability Note VU#889462 CERT/CC Vulnerability Note VU#456290 CERT/CC Vulnerability Note VU#308749 CERT/CC Vulnerability Note VU#728712 CERT/CC Vulnerability Note VU#756733 CERT/CC Vulnerability Note VU#874418 CERT/CC Vulnerability Note VU#431093 CERT/CC Vulnerability Note VU#614868 CERT/CC Vulnerability Note VU#987105 CERT/CC Vulnerability Note VU#487613 CERT/CC Vulnerability Note VU#243636 CERT/CC Vulnerability Note VU#281278 CERT/CC Vulnerability Note VU#790363 CERT/CC Vulnerability Note VU#293714 CERT/CC Vulnerability Note VU#305509 CERT/CC Vulnerability Note VU#141367 CERT/CC Vulnerability Note VU#492466 CERT/CC Vulnerability Note VU#847406 CERT/CC Vulnerability Note VU#360868 CERT/CC Vulnerability Note VU#762226 CERT/CC Vulnerability Note VU#885548 CERT/CC Vulnerability Note VU#326070 CERT/CC Vulnerability Note VU#529388
CERT/CC Vulnerability Note VU#718077
2026-09-08 · via CERT Recently Published Vulnerability Notes

Overview

The UEFI Shell program may expose raw memory access capabilities that, if present in platform firmware for debugging or advanced support use cases, could be abused to undermine UEFI Secure Boot protections. When the UEFI Shell is included in SPI flash, an attacker with the ability to modify UEFI boot configuration may be able to create multiple boot option entries and bypass controls intended to prevent the UEFI Shell from launching while Secure Boot is enabled. This could allow an attacker to modify the pre-boot environment and execute unauthorized software during system startup.

Description

The Unified Extensible Firmware Interface (UEFI) is a firmware specification that defines the interface between a computing platform's hardware and operating system (OS) during the early boot process before the operating system is loaded. UEFI Secure Boot helps ensure that only trusted and digitally signed software is executed during these early stages of platform initialization.

The TianoCore EDK II project provides an open-source reference implementation of the UEFI and Platform Initialization (PI) specifications. The project includes the UEFI Shell, which provides command-line utilities for debugging, diagnostics, and advanced platform management. Many OEM and Independent BIOS Vendor (IBV) firmware implementations include the UEFI Shell in SPI flash for service and support purposes. Because the shell executes in the pre-boot environment, it provides powerful commands such as dmem (display memory) and mm (memory modify) that can access physical memory. Many implementations include a boot entry for the UEFI Shell but remove or suppress it when Secure Boot is enabled to reduce the risk of misuse.

A vulnerability disclosed by Eclypsium researcher Stas Lyakhov details a technique in which an attacker with the ability to create additional UEFI boot entries can reference the UEFI Shell even when standard controls are implemented to prevent its execution. An attacker could then exploit the UEFI Shell and its startup scripting capabilities to modify the pre-boot environment, including overwriting Secure Boot-related memory values, and execute unauthorized code during the early boot process.

Impact

An attacker capable of modifying UEFI boot entries may be able to circumvent intended Secure Boot protections and execute arbitrary code before the operating system loads. Code executed during the pre-boot phase may establish persistent access, including the ability to load malicious boot components or kernel-level software that can survive both system reboots and, in some cases, reinstallation of the operating system. Such activity may also reduce the effectiveness of OS-based security controls and endpoint detection and response (EDR) solutions.

Solution

Apply a Patch

Please see the Vendor Information section for responses from vendors that have released updates addressing this issue. Updating UEFI firmware may require OEM-specific tools and deployment processes, as firmware updates are often managed separately from operating system patch management. Follow the guidance provided by your platform vendor when applying firmware updates.

Recommendations for Enterprises

Organizations should review Secure Boot configuration and platform security policies to help prevent or detect unauthorized modifications to UEFI boot entries. Changes to boot configuration should be monitored and audited where possible. Enterprises that use independent endpoint management solutions should consult their OEM vendors for guidance on integrating UEFI firmware updates into their existing firmware lifecycle and patch management processes.

Acknowledgements

Thanks to Stas Lyakhov from Eclypsium for reporting this vulnerability. This document was written by Vijay Sarvepalli.

Vendor Information

Filter by content: Additional information available

 Sort by:


Other Information

CVE IDs: CVE-2026-20293 CVE-2026-33197 CVE-2026-6485
API URL: VINCE JSON | CSAF
Date Public: 2026-09-08
Date First Published: 2026-09-08
Date Last Updated: 2026-09-08 15:05 UTC
Document Revision: 1