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

J
Java Code Geeks
Stack Overflow Blog
Stack Overflow Blog
B
Blog RSS Feed
C
Check Point Blog
D
Docker
Y
Y Combinator Blog
Recent Announcements
Recent Announcements
Google DeepMind News
Google DeepMind News
MongoDB | Blog
MongoDB | Blog
博客园_首页
Apple Machine Learning Research
Apple Machine Learning Research
量子位
有赞技术团队
有赞技术团队
IT之家
IT之家
大猫的无限游戏
大猫的无限游戏
D
DataBreaches.Net
M
MIT News - Artificial intelligence
B
Blog
阮一峰的网络日志
阮一峰的网络日志
freeCodeCamp Programming Tutorials: Python, JavaScript, Git & More
腾讯CDC
让小产品的独立变现更简单 - ezindie.com
让小产品的独立变现更简单 - ezindie.com
V
V2EX
月光博客
月光博客

Cyber Security Advisories - MS-ISAC

Multiple Vulnerabilities in Cisco Secure Email Products Could Allow for Remote Code Execution Multiple Vulnerabilities in Mikrotik Routers Could Allow for Admin Hijacking A Vulnerability in GitLab Could Allow for Disclosure of Sensitive Data Multiple Vulnerabilities in Ivanti Products Could Allow for Arbitrary Code Execution A Vulnerability in SAP Extended Passport (EPP) Processing Could Allow for Remote Code Execution Multiple Vulnerabilities in Adobe Products Could Allow for Arbitrary Code Execution Critical Patches Issued for Microsoft Products, September 8, 2026 Multiple Vulnerabilities in DellSecure Connect Gateway Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in SonicWall SMA1000 Series Appliances Could Allow for Remote Code Execution Multiple Vulnerabilities in PaperCut Products Could Allow for Remote Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Oracle Products Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in SonicWall GMS Could Allow for Remote Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution A Vulnerability in Zoom Clients Could Allow for Remote Code Execution Critical Patches Issued for Microsoft Products, August 11, 2026 Multiple Vulnerabilities in Adobe Products Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in SolarWinds Web Help Desk Could Allow for Authentication Bypass Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Adobe Products Could Allow for Arbitrary Code Execution A Vulnerability in VeloCloud Orchestrator (VCO) On-Prem Could Allow for Remote Code Execution A Vulnerability Chain in WordPress Core Could Allow for Remote Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Adobe Products Could Allow for Arbitrary Code Execution Critical Patches Issued for Microsoft Products, July 14, 2026 Multiple Vulnerabilities in Adobe Products Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution Multiple Vulnerabilities in Google Chrome Could Allow for Arbitrary Code Execution
Multiple Vulnerabilities in Mozilla Products Could Allow ...
2026-07-02 · via Cyber Security Advisories - MS-ISAC

MS-ISAC ADVISORY NUMBER:

2026-065

DATE(S) ISSUED:

07/01/2026

OVERVIEW:

Multiple vulnerabilities have been discovered in Mozilla products, the most severe of which could allow for arbitrary code execution. 

  • Mozilla Firefox is a web browser used to access the Internet.
  • Thunderbird is a free, open-source email, calendar, and chat application.

Successful exploitation of the most severe of these vulnerabilities could allow for arbitrary code execution. Depending on the privileges associated with the user an attacker could then install programs; view, change, or delete data; or create new accounts with full user rights. Users whose accounts are configured to have fewer user rights on the system could be less impacted than those who operate with administrative user rights.

THREAT INTELLIGENCE:

There are currently no reports of these vulnerabilities being exploited in the wild. 

SYSTEMS AFFECTED:

  • Firefox versions prior to 152.0.4
  • Thunderbird versions prior to 152.0.1
  • Thunderbird versions prior to 140.12.1

RISK:

Government:

Large and medium government entitiesHIGH

Small governmentMEDIUM

Businesses:

Large and medium business entitiesHIGH

Small business entitiesMEDIUM

TECHNICAL SUMMARY:

Multiple vulnerabilities have been discovered in Mozilla products, the most severe of which could allow for arbitrary code execution. Details of these vulnerabilities are as follows: 

Tactic: Initial Access (TA0001): 

Technique: Drive-by Compromise (T1189):

  • Denial-of-service via malicious LDAP address-book server. (CVE-2026-57962)
  • Chat UI manipulation by injection. (CVE-2026-57963)
  • Memory safety bugs fixed in Firefox 152.0.4. (CVE-2026-14241)

Successful exploitation of the most severe of these vulnerabilities could allow for arbitrary code execution. Depending on the privileges associated with the user an attacker could then install programs; view, change, or delete data; or create new accounts with full user rights. Users whose accounts are configured to have fewer user rights on the system could be less impacted than those who operate with administrative user rights.

RECOMMENDATIONS:

We recommend the following actions be taken:

  • Apply appropriate updates provided by Mozilla to vulnerable systems immediately after appropriate testing. (M1051: Update Software)
  • Safeguard 7.1: Establish and Maintain a Vulnerability Management Process: Establish and maintain a documented vulnerability management process for enterprise assets. Review and update documentation annually, or when significant enterprise changes occur that could impact this Safeguard.
  • Safeguard 7.4: Perform Automated Application Patch Management: Perform application updates on enterprise assets through automated patch management on a monthly, or more frequent, basis.
  • Safeguard 7.7: Remediate Detected Vulnerabilities: Remediate detected vulnerabilities in software through processes and tooling on a monthly, or more frequent, basis, based on the remediation process.
  • Safeguard 9.1: Ensure Use of Only Fully Supported Browsers and Email Clients: Ensure only fully supported browsers and email clients are allowed to execute in the enterprise, only using the latest version of browsers and email clients provided through the vendor.
  • Apply the Principle of Least Privilege to all systems and services. Run all software as a non-privileged user (one without administrative privileges) to diminish the effects of a successful attack. (M1026: Privileged Account Management)
  • Safeguard 4.7: Manage Default Accounts on Enterprise Assets and Software: Manage default accounts on enterprise assets and software, such as root, administrator, and other pre-configured vendor accounts. Example implementations can include: disabling default accounts or making them unusable.
  • Safeguard 5.4: Restrict Administrator Privileges to Dedicated Administrator Accounts: Restrict administrator privileges to dedicated administrator accounts on enterprise assets. Conduct general computing activities, such as internet browsing, email, and productivity suite use, from the user’s primary, non-privileged account.
  • Use capabilities to detect and block conditions that may lead to or be indicative of a software exploit occurring. (M1050: Exploit Protection)
  • Safeguard 10.5: Enable Anti-Exploitation Features: Enable anti-exploitation features on enterprise assets and software, where possible, such as Microsoft® Data Execution Prevention (DEP), Windows® Defender Exploit Guard (WDEG), or Apple® System Integrity Protection (SIP) and Gatekeeper™.
  • Restrict use of certain websites, block downloads/attachments, block JavaScript, restrict browser extensions, etc. (M1021: Restrict Web-Based Content)
  • Safeguard 9.2: Use DNS Filtering Services: Use DNS filtering services on all enterprise assets to block access to known malicious domains.
  • Safeguard 9.3: Maintain and Enforce Network-Based URL Filters: Enforce and update network-based URL filters to limit an enterprise asset from connecting to potentially malicious or unapproved websites. Example implementations include category-based filtering, reputation-based filtering, or through the use of block lists. Enforce filters for all enterprise assets.
  • Safeguard 9.6: Block Unnecessary File Types: Block unnecessary file types attempting to enter the enterprise’s email gateway.
  • Block execution of code on a system through application control, and/or script blocking. (M1038: Execution Prevention)
  • Safeguard 2.5: Allowlist Authorized Software: Use technical controls, such as application allowlisting, to ensure that only authorized software can execute or be accessed. Reassess bi-annually, or more frequently.
  • Safeguard 2.6: Allowlist Authorized Libraries: Use technical controls to ensure that only authorized software libraries, such as specific .dll, .ocx, .so, etc., files, are allowed to load into a system process. Block unauthorized libraries from loading into a system process. Reassess bi-annually, or more frequently.
  • Safeguard 2.7: Allowlist Authorized Scripts: Use technical controls, such as digital signatures and version control, to ensure that only authorized scripts, such as specific .ps1, .py, etc., files, are allowed to execute. Block unauthorized scripts from executing. Reassess bi-annually, or more frequently.
  • Use capabilities to prevent suspicious behavior patterns from occurring on endpoint systems. This could include suspicious process, file, API call, etc. behavior. (M1040: Behavior Prevention on Endpoint)
  • Safeguard 13.2: Deploy a Host-Based Intrusion Detection Solution: Deploy a host-based intrusion detection solution on enterprise assets, where appropriate and/or supported.
  • Safeguard 13.7: Deploy a Host-Based Intrusion Prevention Solution: Deploy a host-based intrusion prevention solution on enterprise assets, where appropriate and/or supported. Example implementations include use of an Endpoint Detection and Response (EDR) client or host-based IPS agent.
  • Inform and educate users regarding the threats posed by hypertext links contained in emails or attachments especially from un-trusted sources. Remind users not to visit un-trusted websites or follow links provided by unknown or un-trusted sources. (M1017: User Training)
  • Safeguard 14.1: Establish and Maintain a Security Awareness Program: Establish and maintain a security awareness program. The purpose of a security awareness program is to educate the enterprise’s workforce on how to interact with enterprise assets and data in a secure manner. Conduct training at hire and, at a minimum, annually. Review and update content annually, or when significant enterprise changes occur that could impact this Safeguard.
  • Safeguard 14.2: Train Workforce Members to Recognize Social Engineering Attacks: Train workforce members to recognize social engineering attacks, such as phishing, pre-texting, and tailgating.

REFERENCES:

CVE
Mozilla