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CVE-2022-37965: Windows Point-to-Point Tunneling Protocol Denial of Service Vulnerability

**According to the CVSS metric, the attack complexity is high (AC:H). What does that mean for this vulnerability?** Successful exploitation of this vulnerability requires an attacker to win a race condition.

Microsoft Security Response Center
#vulnerability#web#windows#dos#Remote Access Service Point-to-Point Tunneling Protocol#Security Vulnerability
CVE-2022-35829: Service Fabric Explorer Spoofing Vulnerability

**According to the CVSS metric, privileges required is high (PR:H). What does that mean for this vulnerability?** An attacker needs to have CreateComposeDeployment permission to exploit this vulnerability. Please refer to the **Security/ClientAccess** section of Customize Service Fabric cluster settings for more information on the permission.

CVE-2022-35770: Windows NTLM Spoofing Vulnerability

**According to the CVSS metric, user interaction is required (UI:R). What interaction would the user have to do?** The user would have to access a malicious folder or directory. Users should never open anything that they do not know or trust to be safe.

CVE-2022-34689: Windows CryptoAPI Spoofing Vulnerability

**What is the nature of the spoofing?** An attacker could manipulate an existing public x.509 certificate to spoof their identify and perform actions such as authentication or code signing as the targeted certificate.

CVE-2022-33645: Windows TCP/IP Driver Denial of Service Vulnerability

Mitigation refers to a setting, common configuration, or general best-practice, existing in a default state, that could reduce the severity of exploitation of a vulnerability. The following mitigating factors might be helpful in your situation: * Systems are not affected if IPv6 is disabled on the target machine.

CVE-2022-33635: Windows GDI+ Remote Code Execution Vulnerability

**According to the CVSS metric, user interaction is required (UI:R). What interaction would the user have to do?** Exploitation of the vulnerability requires that a user open a specially crafted file. * In an email attack scenario, an attacker could exploit the vulnerability by sending the specially crafted file to the user and convincing the user to open the file. * In a web-based attack scenario, an attacker could host a website (or leverage a compromised website that accepts or hosts user-provided content) containing a specially crafted file designed to exploit the vulnerability. An attacker would have no way to force users to visit the website. Instead, an attacker would have to convince users to click a link, typically by way of an enticement in an email or instant message, and then convince them to open the specially crafted file.

CVE-2022-33634: Windows Point-to-Point Tunneling Protocol Remote Code Execution Vulnerability

**According to the CVSS metric, the attack complexity is high (AC:H). What does that mean for this vulnerability?** Successful exploitation of this vulnerability requires an attacker to win a race condition.

CVE-2022-24504: Windows Point-to-Point Tunneling Protocol Remote Code Execution Vulnerability

**According to the CVSS metric, the attack complexity is high (AC:H). What does that mean for this vulnerability?** Successful exploitation of this vulnerability requires an attacker to win a race condition.

CVE-2022-22035: Windows Point-to-Point Tunneling Protocol Remote Code Execution Vulnerability

**According to the CVSS metric, the attack complexity is high (AC:H). What does that mean for this vulnerability?** Successful exploitation of this vulnerability requires an attacker to win a race condition.

CVE-2022-30198: Windows Point-to-Point Tunneling Protocol Remote Code Execution Vulnerability

**According to the CVSS metric, the attack complexity is high (AC:H). What does that mean for this vulnerability?** Successful exploitation of this vulnerability requires an attacker to win a race condition.