Microsoft today released updates to remedy at least 398 security vulnerabilities in its Windows operating systems and supported software, including one weakness that is already being actively exploited and two others that were publicly detailed prior to today.

Microsoft released updates on August 11, 2026, to address 398 security vulnerabilities in its Windows operating systems and associated software. This extensive patch includes fixes for one vulnerability that is actively being exploited in the wild and two others that were publicly disclosed prior to the release.
Of the 398 flaws, 42 were rated as "critical," indicating they could allow an attacker to gain remote control over a Windows computer with minimal user interaction. While substantial, this month's release did not surpass the record of over 570 security updates issued by Microsoft last month, though it is double the nearly 200 fixes released in June.
The sole zero-day vulnerability addressed is CVE-2026-68820, a privilege escalation flaw found in afd.sys, a core Windows component responsible for socket connections. Security firm Automox described this as a "step two" vulnerability, meaning an attacker would first need to gain a low-privilege foothold, perhaps through phishing, before exploiting this flaw to escalate privileges. The exploit's high attack complexity, due to race conditions, requires repeated attempts for successful execution, yet evidence suggests it is being successfully exploited.
Another privilege escalation vulnerability, CVE-2026-62832, in the Windows User Profile Service, has been flagged by Microsoft as "likely to be exploited." This flaw may be connected to the "LegacyHive" public disclosure by the researcher known as Nightmare Eclipse. The other publicly disclosed vulnerability is CVE-2026-72971, a local tampering flaw considered low-impact and unlikely to be exploited.
The increasing volume of security updates, which now frequently involve hundreds of flaws, is attributed by Microsoft to the aid of artificial intelligence in vulnerability discovery. Other major software vendors, including Adobe, Cisco, Google, Mozilla, and Oracle, are also reportedly increasing their patch volumes and frequency due to AI's effectiveness in finding security vulnerabilities.
However, the process of patching these vulnerabilities remains largely human-centric. Research by 1Password on large language models (LLMs) generating vulnerability patches found that LLMs often failed to fix the flaw or introduced new weaknesses in over half of attempts. Ed Skoudis, president of the SANS Technology Institute, noted that while AI can be an "extraordinary patching partner," it still requires skilled human oversight to test, iterate, and verify suggested fixes.
Tyler Reguly of Fortra emphasized that despite the large number of vulnerabilities patched, only one is currently known to be actively exploited. He advised security leaders to assess how their teams are managing the increased workload of testing and deploying updates, suggesting that there is no need to rush deployments and that ensuring safe updates that do not negatively impact systems is paramount. Users are also advised to back up their systems and data before applying these extensive updates, and to consider waiting a few days after "Patch Tuesday" to allow for any potential misbehaving patches to be addressed.
A weakness has been identified in Tenda CP3 27.5.57.101. This issue affects some unknown processing of the file Net/NetCheckPing.cpp. This manipulation of the argument interface_name/host causes os command injection. The attack can be initiated remotely.
A security flaw has been discovered in Tenda CP3 27.5.57.101. This vulnerability affects the function SystemAsh of the file Apis/system.c of the component Kylin. The manipulation of the argument AlarmVoiceURL results in os command injection. It is possible to launch the attack remotely.

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