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

MyScale Blog
MyScale Blog
Apple Machine Learning Research
Apple Machine Learning Research
H
Help Net Security
雷峰网
雷峰网
V
Visual Studio Blog
G
Google Developers Blog
Microsoft Azure Blog
Microsoft Azure Blog
Hugging Face - Blog
Hugging Face - Blog
爱范儿
爱范儿
IT之家
IT之家
Engineering at Meta
Engineering at Meta
Microsoft Security Blog
Microsoft Security Blog
aimingoo的专栏
aimingoo的专栏
大猫的无限游戏
大猫的无限游戏
M
MIT News - Artificial intelligence
月光博客
月光博客
A
About on SuperTechFans
B
Blog RSS Feed
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
The GitHub Blog
The GitHub Blog
N
Netflix TechBlog - Medium
J
Java Code Geeks
云风的 BLOG
云风的 BLOG
Blog — PlanetScale
Blog — PlanetScale

Cyber Security Advisories - MS-ISAC

Multiple Vulnerabilities in Oracle Products Could Allow for Arbitrary Code Execution 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 Mozilla Products Could Allow for Arbitrary Code Execution
A Vulnerability in Microsoft Exchange Server Could Allow ...
2026-05-16 · via Cyber Security Advisories - MS-ISAC

MS-ISAC ADVISORY NUMBER:

2026-050

DATE(S) ISSUED:

05/15/2026

OVERVIEW:

A vulnerability has been discovered in Microsoft Exchange Server that could allow for arbitrary code execution. Microsoft Exchange Server is an enterprise-level email and collaboration platform developed by Microsoft that runs on Windows Server. Successful exploitation could allow for arbitrary JavaScript to be executed in the browser context. The malicious code would run with the same permissions as your browser, allowing attackers to steal data, install malware, or hijack your computer.

THREAT INTELLIGENCE:

SYSTEMS AFFECTED:

  • Microsoft Exchange Server Subscription Edition RTM
  • Microsoft Exchange Server 2019 Cumulative Update 15
  • Microsoft Exchange Server 2019 Cumulative Update 14
  • Microsoft Exchange Server 2016 Cumulative Update 23

RISK:

Government:

Large and medium government entitiesHIGH

Small governmentMEDIUM

Businesses:

Large and medium business entitiesHIGH

Small business entitiesMEDIUM

TECHNICAL SUMMARY:

A vulnerability has been discovered in Microsoft Exchange Server that could allow for arbitrary code execution. Details of the vulnerability are as follows: 

Tactic: Initial Access (TA0001):

Technique: Phishing (T1566):

  • Improper neutralization of input during web page generation ('cross-site scripting') in Microsoft Exchange Server allows an unauthorized attacker to perform spoofing over a network. An attacker could exploit this issue by sending a specially crafted email to a user. If the user opens the email in Outlook Web Access and certain interaction conditions are met, arbitrary JavaScript can be executed in the browser context. 

Successful exploitation could allow for arbitrary JavaScript to be executed in the browser context. The malicious code would run with the same permissions as your browser, allowing attackers to steal data, install malware, or hijack your computer.

RECOMMENDATIONS:

We recommend the following actions be taken: 

  • Apply appropriate mitigations provided by Microsoft 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 7.2: Establish and Maintain a Remediation Process: Establish and maintain a risk-based remediation strategy documented in a remediation process, with monthly, or more frequent, reviews.
  • 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 7.5 : Perform Automated Vulnerability Scans of Internal Enterprise Assets: Perform automated vulnerability scans of internal enterprise assets on a quarterly, or more frequent, basis. Conduct both authenticated and unauthenticated scans, using a SCAP-compliant vulnerability scanning tool.
  • 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 12.1: Ensure Network Infrastructure is Up-to-Date: Ensure network infrastructure is kept up-to-date. Example implementations include running the latest stable release of software and/or using currently supported network-as-a-service (NaaS) offerings. Review software versions monthly, or more frequently, to verify software support.
  • Safeguard 18.1: Establish and Maintain a Penetration Testing Program: Establish and maintain a penetration testing program appropriate to the size, complexity, and maturity of the enterprise. Penetration testing program characteristics include scope, such as network, web application, Application Programming Interface (API), hosted services, and physical premise controls; frequency; limitations, such as acceptable hours, and excluded attack types; point of contact information; remediation, such as how findings will be routed internally; and retrospective requirements.
  • Safeguard 18.2: Perform Periodic External Penetration Tests: Perform periodic external penetration tests based on program requirements, no less than annually. External penetration testing must include enterprise and environmental reconnaissance to detect exploitable information. Penetration testing requires specialized skills and experience and must be conducted through a qualified party. The testing may be clear box or opaque box.
  • Safeguard 18.3: Remediate Penetration Test Findings: Remediate penetration test findings based on the enterprise’s policy for remediation scope and prioritization.
  • 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.
  • Use intrusion detection signatures to block traffic at network boundaries. (M1031: Network Intrusion Prevention)
  • Safeguard 13.3: Deploy a Network Intrusion Detection Solution: Deploy a network intrusion detection solution on enterprise assets, where appropriate. Example implementations include the use of a Network Intrusion Detection System (NIDS) or equivalent cloud service provider (CSP) service.
  • Safeguard 13.8: Deploy a Network Intrusion Prevention Solution: Deploy a network intrusion prevention solution, where appropriate. Example implementations include the use of a Network Intrusion Prevention System (NIPS) or equivalent CSP service.

REFERENCES:

CVE
Microsoft