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Overview

  • Gitea
  • Gitea

26 Aug 2026
Published
26 Aug 2026
Updated

CVSS v3.1
CRITICAL (9.8)
EPSS
Pending

Description

Gitea before 1.27.1 allows remote code execution via the diffpatch API through Git hook installation.

Statistics

  • 7 Posts
  • 1 Interaction

Last activity: 5 hours ago

Fediverse

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📰 CISA Warns of Actively Exploited Gitea RCE Flaw (CVE-2026-60004)

🚨 CISA KEV ALERT: A critical RCE flaw in Gitea (CVE-2026-60004, CVSS 9.8) is actively exploited. Attackers can gain RCE on self-hosted Git servers. Patch to version 1.27.1 or later NOW. #Gitea #RCE #CISA #KEV #CVE202660004

🔗 cyber.netsecops.io/articles/ci

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  • 17h ago
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⚠️ CRITICAL: Critical Gitea RCE Actively Exploited as Reported Attack Drops Miner-Like Payload

Gitea instances are under active attack for CVE-2026-60004, a critical RCE flaw (CVSS 9.8) that allows unauthenticated account creation to trigger arbitrary command execution. Attackers are deploying miner-like payloads. Any organization running Gitea with default open registration is at immediate…

threatnoir.com/focus

🤖 AI generated summary

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  • 12h ago

Bluesky

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Critical Gitea vulnerability now exploited in the wild (CVE-2026-60004) 🔗 Read more: www.helpnetsecurity.com/2026/08/26/g... #exploit #opensource #cybersecurity
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  • 19h ago
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CVE-2026-60004 enables remote code execution in Gitea via diffpatch, letting attackers run arbitrary shell commands as the Gitea OS user.
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  • 23h ago
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CISA says CVE-2026-60004 is actively exploited in Gitea, letting authenticated users run shell commands via the diffpatch API. Open registration can expose default installs. #Gitea #CISA #CodeInjection
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  • 17h ago
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CISA is warning of active exploitation efforts targeting a recently patched critical security flaw impacting Gitea. CVE-2026-60004 is a remote code execution vulnerability that allows an attacker with ordinary write access to a repository to execute arbitrary shell commands as the Gitea OS user.
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  • 9h ago
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Giteaの重大な脆弱性が実際に悪用される(CVE-2026-60004) Critical Gitea vulnerability now exploited in the wild (CVE-2026-60004) #HelpNetSecurity (Aug 26) www.helpnetsecurity.com/2026/08/26/g...
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  • 5h ago

Overview

  • Veeam
  • One

26 Aug 2026
Published
26 Aug 2026
Updated

CVSS v4.0
CRITICAL (9.3)
EPSS
Pending

KEV

Description

A vulnerability allowing an unauthenticated network attacker to coerce SMB authentication from the service account.

Statistics

  • 6 Posts
  • 6 Interactions

Last activity: 5 hours ago

Fediverse

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A critical Veeam ONE vulnerability (CVE-2026-65641, CVSS 9.3) lets an unauthenticated attacker coerce SMB authentication. Patch Veeam now.

securityonline.info/veeam-cve-

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  • 22h ago
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Kritische Veeam ONE-Schwachstelle CVE-2026-65641 (CVSS 9.3) - patchen

borncity.com/blog/2026/08/27/v

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Bluesky

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CVE-2026-65641 (CVSS 9.3): Veeam ONEの脆弱性により、認証されていない攻撃者がSMB認証を強制的に実行できる CVE-2026-65641 (CVSS 9.3): Veeam ONE Flaw Lets Unauthenticated Attacker Coerce SMB Authentication #DailyCyberSecurity (Aug 26) securityonline.info/veeam-cve-20...
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  • 5h ago

Overview

  • Zimbra
  • Collaboration

13 Aug 2026
Published
24 Aug 2026
Updated

CVSS v3.1
HIGH (8.9)
EPSS
1.51%

Description

A remote code execution vulnerability exists in Zimbra Collaboration (ZCS) before 10.1.20 when the optional zimbra-snmp package is installed and SNMP notifications are enabled. Due to improper sanitization of untrusted input during SNMP notification processing, an unauthenticated attacker can send specially crafted SMTP requests that may result in execution of arbitrary operating system commands as the Zimbra user.

Statistics

  • 3 Posts

Last activity: Last hour

Fediverse

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  • 0
  • 10h ago

Bluesky

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Unauthenticated attackers exploited CVE-2026-73570 in Zimbra SNMP monitoring to achieve remote code execution, compromising hundreds of internet-facing servers despite a patch.
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  • 19h ago
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🛑 Zimbra Plus de 270 serveurs de messagerie compromis grâce à la faille CVE-2026-73570. Une alerte à prendre au sérieux liée à cette faille permettant l'injection de commande au niveau de l'OS. Plus d'infos : - www.it-connect.fr/zimbra-cve-2... #infosec #zimbra
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  • Last hour

Overview

  • Red Hat
  • Enterprise Linux 9
  • OpenSSH

01 Jul 2024
Published
14 Jul 2026
Updated

CVSS
Pending
EPSS
99.51%

KEV

Description

A security regression (CVE-2006-5051) was discovered in OpenSSH's server (sshd). There is a race condition which can lead sshd to handle some signals in an unsafe manner. An unauthenticated, remote attacker may be able to trigger it by failing to authenticate within a set time period.

Statistics

  • 2 Posts
  • 3 Interactions

Last activity: 8 hours ago

Fediverse

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regreSSHion (CVE-2024-6387) shows ALESCo in action: we built the fix, then shared it upstream with CentOS Stream so the whole ecosystem benefits, not just us.

@benny and @neal explain. youtube.com/shorts/c8gw1pueHgg

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  • 8h ago

Bluesky

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regreSSHion (CVE-2024-6387) shows ALESCo in action: we built the fix, then shared it upstream with CentOS Stream so the whole ecosystem benefits, not just us. @bennyvasquez.bsky.social and @conan-kudo.bsky.social explain. www.youtube.com/shorts/c8gw1...
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  • 8h ago

Overview

  • NetScaler
  • ADC

30 Jun 2026
Published
27 Aug 2026
Updated

CVSS v4.0
HIGH (8.8)
EPSS
1.04%

Description

Memory overflow vulnerability NetScaler ADC and NetScaler Gateway leading to unpredictable or erroneous behavior and Denial of Service if the appliance is configured as a Gateway (SSL VPN, ICA Proxy, CVPN, RDP Proxy) or AAA virtual server

Statistics

  • 2 Posts
  • 2 Interactions

Last activity: 1 hour ago

Fediverse

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CISA adds six exploited vulnerabilities to its KEV Catalog, including a Citrix NetScaler flaw and CVE-2026-8452, with active exploitation confirmed.

securityonline.info/cisa-kev-s

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  • 4h ago

Bluesky

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CISA urges immediate remediation of CVE-2026-8452 in Citrix NetScaler due to active exploitation, including unauthenticated remote code execution and web shell deployment.
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  • 1h ago

Overview

  • Ubiquiti Inc
  • UniFi Protect Application

26 Aug 2026
Published
26 Aug 2026
Updated

CVSS v3.1
CRITICAL (10.0)
EPSS
Pending

KEV

Description

A malicious actor with access to the network could exploit an Improper Input Validation vulnerability found in UniFi Protect Application to execute a Command Injection on the host device.

Statistics

  • 2 Posts
  • 1 Interaction

Last activity: 13 hours ago

Fediverse

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Ubiquiti patched 22 UniFi flaws. Three hit CVSS 10.0, including command injection CVE-2026-77537. Update UniFi Protect, OS, and Talk now.

securityonline.info/unifi-comm

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  • 19h ago

Bluesky

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Ubiquiti patches 3 max-severity flaws in UniFi Protect, UniFi OS, and UniFi Talk, fixing auth bypass and command injection risks plus 18 more critical issues across its product line. #Ubiquiti #UniFi #CVE202677537
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  • 13h ago

Overview

  • Microsoft
  • Microsoft Malware Protection Engine

16 Jun 2026
Published
25 Aug 2026
Updated

CVSS v3.1
HIGH (7.8)
EPSS
11.36%

KEV

Description

Microsoft is aware of an elevation of privilege in the Microsoft Malware Protection Engine in Microsoft Defender publicly referred to as "RoguePlanet ".

Statistics

  • 2 Posts

Last activity: 15 hours ago

Fediverse

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📰 New 'ShieldBreak' Exploit Bypasses Microsoft Defender Patch

A new zero-day exploit, 'ShieldBreak,' bypasses Microsoft's patch for the 'RoguePlanet' Defender flaw (CVE-2026-50656). The PoC allows SYSTEM-level access on patched Windows systems. No fix is currently available. #ZeroDay #MicrosoftDefender #CyberSe...

🔗 cyber.netsecops.io/articles/sh

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  • 17h ago

Bluesky

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🛡️ Mitigación y Gestión de la Vulnerabilidad "RoguePlanet" (CVE-2026-50656) en Microsoft Defender www.newstecnicas.com/2026/07/miti...
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  • 15h ago

Overview

  • Google
  • Chrome

25 Aug 2026
Published
27 Aug 2026
Updated

CVSS
Pending
EPSS
0.35%

KEV

Description

Use after free in ANGLE in Google Chrome on on Android prior to 152.0.7977.65 allowed a remote attacker to execute arbitrary code outside the sandbox via a crafted HTML page. (Chromium security severity: Critical)

Statistics

  • 3 Posts

Last activity: 7 hours ago

Bluesky

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Chrome 152 patches 327 vulnerabilities, including 10 critical and 61 high-severity flaws. Google says 299 fixes were found internally, with researcher Goodluck earning $25,000 for CVE-2026-79282. #Chrome152 #Google #Goodluck
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  • 17h ago
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Google、Chromeの定例パッチを公開 327件のセキュリティ修正、Criticalは10件(CVE-2026-79282 他) rocket-boys.co.jp/security-mea... #セキュリティ対策Lab #security #securitynews #セキュリティ #脆弱性
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  • 7h ago

Overview

  • kubernetes
  • ingress-nginx

24 Mar 2025
Published
26 Feb 2026
Updated

CVSS v3.1
CRITICAL (9.8)
EPSS
99.52%

KEV

Description

A security issue was discovered in Kubernetes where under certain conditions, an unauthenticated attacker with access to the pod network can achieve arbitrary code execution in the context of the ingress-nginx controller. This can lead to disclosure of Secrets accessible to the controller. (Note that in the default installation, the controller can access all Secrets cluster-wide.)

Statistics

  • 1 Post
  • 7 Interactions

Last activity: 22 hours ago

Fediverse

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82% of container teams run Kubernetes in production (CNCF Annual Survey 2025). Most underestimate what happens after launch.

Cluster upgrades, observability tuning, secret management, and network policies never stop. IngressNightmare (CVE-2025-1974, CVSS 9.8) showed why: a full cluster takeover via delayed patches, affecting 40%+ of prod environments.

We broke down the four biggest Day-2 blind spots: nine.ch/en/blog/kubernetes-day

#kubernetes #devops #nine

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  • 22h ago

Overview

  • win.rar GmbH
  • WinRAR

08 Aug 2025
Published
11 Aug 2026
Updated

CVSS v4.0
HIGH (8.4)
EPSS
94.55%

Description

A path traversal vulnerability affecting the Windows version of WinRAR allows the attackers to execute arbitrary code by crafting malicious archive files. This vulnerability was exploited in the wild and was discovered by Anton Cherepanov, Peter Košinár, and Peter Strýček from ESET.

Statistics

  • 2 Posts
  • 1 Interaction

Last activity: 3 hours ago

Fediverse

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ثغرة WinRAR — CVE-2025-8088

ثغرة WinRAR — CVE-2025-8088 مقدمة في عام 2025 ظهرت ثغرة خطيرة في برنامج WinRAR، أحد أشهر برامج ضغط وفك ضغط الملفات. رقم الثغرة: CVE-2025-8088وقد أكدت CISA أنها استُغلت فعليًا في العالم الحقيقي. ما نوع الثغرة؟نوعها:Path Traversalأي تجاوز المسار.بشكل مبسط، توجد مشكلة عندما لا يتأكد البرنامج بالشكل […]

cybercases8.wordpress.com/2026

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Exploits and vulnerabilities in Q2 2026

The vulnerability landscape shifted significantly in Q2 2026. First, the number of registered CVEs reached an unprecedented level. This is driven primarily by the widespread adoption of AI, both for application development and search for security flaws. This resulted in entire new classes of vulnerabilities emerging, particularly in the Linux networking subsystem.

Second, security researchers have been publishing exploits for unpatched vulnerabilities more frequently. Publications like these can generate significant fallout, since they potentially open the door for attackers to target unprotected systems.

Statistics on registered vulnerabilities


This section provides statistical data on registered vulnerabilities. The data comes from Kaspersky’s vulnerability knowledge base, which draws on the CVE database as well as the Russian BDU database and GitHub Advisory (GHSA). As a result, the figures for previous reporting periods may differ from those published in earlier reports.

We examine the number of registered vulnerabilities for each month over the last five years. As the chart below shows, this number continues to surge, a trend reflected across all the databases we track. It’s driven primarily by the widespread adoption of AI tools: as we predicted in our previous report, these tools have played a major role in the discovery of vulnerabilities in third-party software. Meanwhile, these tools often contain security issues of their own. For example, OpenClaw, a popular AI project, ranked 12th among those with the highest number of vulnerabilities discovered and published in Q2, with over 200 CVEs registered during the reporting period. Finally, AI development tools are also contributing to the vulnerability landscape, since the quality of the code they produce can vary widely. Therefore, the rate at which new vulnerabilities are discovered will inevitably keep growing.

Total published vulnerabilities per month from 2022 through 2026 (download)

Next, we analyze the number of new critical vulnerabilities (CVSS > 9.0) over the same period.

Total critical vulnerabilities published per month from 2022 through 2026 (download)

As the chart shows, the number of published critical vulnerabilities jumped sharply in Q2. This is because using AI for vulnerability research makes it possible to analyze massive amounts of previously unexamined code, uncover new attack surfaces, and identify entire classes of vulnerabilities that have gone unnoticed for decades. In particular, AI was used to find a series of Dirty Frag vulnerabilities in the Linux kernel.

Exploitation statistics


This section presents statistics on vulnerability exploitation for Q2 2026. The data draws on open sources and our telemetry.

Windows and Linux vulnerability exploitation


Q2 2026 saw a new precedent in the publication of vulnerabilities in Windows components and exploits for these: researchers no longer waiting for CVE registration, let alone patches. A case in point: a researcher who goes by Nightmare Eclipse (also known as Chaotic Eclipse) published a list of new “named” vulnerabilities across various Windows subsystems. At the time the technical details were published, none of the vulnerabilities had been assigned a CVE identifier:

  • BlueHammer: a local privilege escalation vulnerability in Windows Defender. During signature database updates, a time-of-check to time-of-use (TOCTOU) race condition occurs, allowing an attacker to substitute the directory where temporary update files are written. The researcher published a fully functional exploit for the vulnerability.
  • RedSun: another logical vulnerability in Windows Defender with a working exploit. Suspicious and malicious files marked as “cloud” can be overwritten or restored to their original directory with elevated privileges. The exploit incorporates fragments of algorithms that make it possible to leverage various logical vulnerabilities in Windows, effectively combining a large number of popular exploitation techniques.
  • YellowKey: a vulnerability that lets the user bypass BitLocker full-disk encryption and access system data through the Windows Recovery Environment (WinRE). A fully functional exploit was also published.
  • GreenPlasma: a vulnerability that enables system object injection via the CTF loader for the Collaborative Translation Framework (CTFMON) service in Windows. The original publication included an exploit with limited functionality.
  • RougePlanet: yet another Windows Defender vulnerability that, like BlueHammer, stems from a TOCTOU issue, this time in the engine responsible for real-time system scanning. The published exploit uses the vulnerability to overwrite the system file wermgr.exe with a malicious one.
  • UnDefend: another vulnerability in the Windows Defender service. This time, the exploit causes a denial of service and blocks updates.

Even though such cases remain isolated for now, we believe they’ll grow into a full-fledged trend. Early publication of exploits gives attackers an advantage over software developers, who are left with no time to fix the issues.

Veteran vulnerabilities in Windows software also remain relevant. These are the ones our solutions most frequently detect exploits for:

  • CVE-2018-0802: a remote code execution (RCE) vulnerability in the Equation Editor component
  • CVE-2017-11882: another RCE vulnerability also affecting Equation Editor
  • CVE-2017-0199: a vulnerability in Microsoft Office and WordPad that allows an attacker to gain control over the system
  • CVE-2023-38831: a vulnerability in WinRAR that involves improper handling of objects within an archive
  • CVE-2025-6218 (formerly ZDI-CAN-27198): another WinRAR vulnerability allowing the specification of relative paths to extract files into arbitrary directories, potentially leading to malicious command execution
  • CVE-2025-8088: a vulnerability similar in exploitation method to CVE-2025-6218. The attackers used NTFS Streams to circumvent controls on the directory into which files are being unpacked

The vulnerabilities listed here can be leveraged to gain initial access to a vulnerable system and for privilege escalation. This underscores the critical importance of timely software updates.

That said, the number of Windows users who encountered exploits declined slightly in Q2, hitting an 18-month low.

Dynamics of the number of Windows users encountering exploits, Q1 2025 – Q2 2026. The number of users who encountered exploits in Q1 2025 is taken as 100% (download)

Linux also hit a rough patch in Q2 2026. Specifically, the period saw the disclosure of the Dirty Frag family of vulnerabilities, which lets an attacker reliably escalate privileges within the operating system.

All the vulnerabilities published in Q2 2026 were, in one way or another, related to the Linux caching subsystem. Here are the ones being most actively exploited:

  • CVE-2026-31431 (Copy Fail): a local privilege escalation vulnerability in the Linux kernel that lets an unprivileged user modify the page cache and gain root privileges. Especially dangerous for cloud and containerized environments
  • CVE-2026-43284, CVE-2026-43500 (Dirty Frag): a family of vulnerabilities in the Linux networking subsystem (IPsec ESP and RxRPC) that lets a local user overwrite the page cache and escalate privileges to root
  • CVE-2026-46300 (Fragnesia): a local privilege escalation vulnerability in the Linux kernel related to packet fragment handling and the page cache mechanism. It lets an unprivileged user gain root privileges and is also classified as part of the Dirty Frag family
  • CVE-2026-31635 (DirtyDecrypt): a Linux kernel vulnerability that lets a local attacker escalate privileges due to improper handling of decryption operations and page cache data modification
  • CVE-2026-43494 (PinTheft): a Linux kernel vulnerability that lets a local user gain elevated privileges due to errors in the memory page pinning mechanism
  • CVE-2026-46331 (pedit COW): a vulnerability in the Linux kernel’s traffic control subsystem (tc-pedit) that exploits a flaw in copy-on-write to modify the page cache and subsequently escalate privileges to root

The vulnerabilities described above were quickly embraced by attackers. At the same time, our solutions continue to detect exploitation attempts targeting older vulnerabilities as well:

  • CVE-2022-0847: a vulnerability known as Dirty Pipe, which enables privilege escalation and the hijacking of running applications
  • CVE-2019-13272: a vulnerability caused by improper handling of privilege inheritance, which can be exploited to achieve privilege escalation
  • CVE-2021-22555: a heap out-of-bounds write vulnerability in the Netfilter kernel subsystem
  • CVE-2023-32233: another Netfilter subsystem vulnerability that allows for Use-After-Free conditions and privilege escalation through improper processing of network requests


Dynamics of the number of Linux users encountering exploits, Q1 2025 – Q2 2026. The number of users who encountered exploits in Q1 2025 is taken as 100% (download)

In Q2 2026, the number of Linux users who encountered exploits declined slightly compared to Q1. Given that a significant share of new vulnerabilities are tied to the operating system’s caching subsystem, we recommend installing patches as quickly as possible, or disabling vulnerable kernel modules if patching isn’t an option.

Most common published exploits


The distribution of published exploits by software type in Q2 2026 includes categories that haven’t appeared in the sample for a long time. For instance, we’re once again seeing exploits targeting SharePoint. It’s worth noting that while several vulnerability write-ups for Exchange and SharePoint were published during the quarter, most turned out to be fake, AI-generated research. While the articles and exploit source code themselves look fairly polished, they describe nonexistent problems in the software or its components — often close to genuinely vulnerable mechanisms — in order to mislead researchers. This type of attack is aimed at increasing the time it takes to detect real vulnerabilities. In some cases, the description of a nonexistent vulnerability came bundled with completely unrelated malware.

Distribution of published exploits by platform, Q1 2026 (download)

Distribution of published exploits by platform, Q2 2026 (download)

Vulnerability exploitation in APT attacks


We analyzed which vulnerabilities were exploited in APT attacks during Q2 2026. The rankings provided below include data based on our telemetry, research, and open sources.

TOP 10 vulnerabilities exploited in APT attacks, Q2 2026 (download)

In Q2 2026, a trend emerged in APT attacks toward exploiting new vulnerabilities right from the moment they’re published. As before, we’re also seeing a large number of zero-day vulnerabilities. The Langflow vulnerability deserves particular attention: it’s one of the first cases of an APT group exploiting AI technology, which many organizations are only just beginning to integrate. Because most of this tech is proprietary, it has a considerable number of security blind spots. Therefore, given the growing number of AI-based automation tools, we strongly recommend going beyond the usual patching and developing secure procedures for credential use and sensitive data handling in systems that rely on agents and LLMs.

C2 frameworks


In this section, we examine the most popular C2 frameworks used by APT groups and analyze the vulnerabilities targeted by the exploits that interacted with C2 agents in APT attacks.

The chart below shows the frequency of known C2 framework usage in attacks during Q2 2026, according to open sources.

TOP 10 C2 frameworks used by APTs to compromise user systems, Q2 2026 (download)

Sliver, Havoc, AdaptixC2, and Metasploit remain the most widely used C2 frameworks. After studying open sources and analyzing samples of malicious C2 agents that contained exploits, we determined that the following vulnerabilities were utilized in APT attacks involving the C2 frameworks mentioned above:

  • CVE-2026-35273: a vulnerability in Oracle PeopleSoft PeopleTools that security vendors classify as server-side request forgery (SSRF). The details of the vulnerability have never been disclosed, although some research covers the post-exploitation steps
  • CVE-2023-46604: an insecure deserialization vulnerability in Apache ActiveMQ that allows arbitrary code execution in the context of the service process
  • CVE-2024-12356 and CVE-2026-1731: command injection vulnerabilities in BeyondTrust software that allow an attacker to send malicious commands even without system authentication
  • CVE-2023-36884: a vulnerability in the Windows Search component that allows commands to be run on the system, bypassing the mark-of-the-web (MoTW) mechanism
  • CVE-2025-53770: an insecure deserialization vulnerability in Microsoft SharePoint that allows for unauthenticated command execution on the server
  • CVE-2025-8088 and CVE-2025-6218: similar directory traversal vulnerabilities in WinRAR that allow files to be extracted from an archive to a predetermined path, potentially without the archiving utility displaying any alerts to the user

These vulnerabilities show that attackers used them for initial access and privilege escalation on vulnerable systems, setting the stage for launching a C2 agent. They include both zero-day vulnerabilities and fairly well-known security issues.

LLM/AI tool vulnerabilities


This section analyzes data published in Kaspersky’s vulnerability knowledge base. We reviewed the Q2 2026 version of the knowledge base.

As mentioned above, AI tools, plugins, and technologies have proven fairly effective at automating the search for problematic code and anomalous behavior. The high speed at which new vulnerabilities are being discovered has naturally created a need to fix them just as quickly. AI is often used for this too, which increases the volume of code being generated. However, neither code written without human involvement nor AI-generated advice is always correct.

The chart below covers registered vulnerabilities in AI tools for 2025–2026.

Number of published vulnerabilities in LLMs, AI tools, and plugins with similar functionality, 2025–2026 (download)

As the charts show, AI tools are racking up a substantial number of registered vulnerabilities, and that number keeps growing quarter over quarter. It’s also worth looking at how AI tool vulnerabilities break down by type, according to the CWE system:


TOP 6 vulnerability types in products that implement or use AI/LLM logic, 2025–2026

Interestingly, vulnerabilities of an undetermined type have ranked first in every quarter since the start of 2025. Traditionally-made software has the same issue, and it doesn’t look like the growing number of AI tools will fix it. It’s also notable that the list includes classes CWE developers themselves don’t recommend using for vulnerability classification, since they lump together a whole range of more specific types. CWE-284 is an example of this.

Looking at the most common classes, the key issues found in AI-related software can be summed up as follows:

  • Inadequate access control over critical system objects
  • Improper implementation of authentication and authorization mechanisms
  • Injections

It’s worth noting that injection-related vulnerabilities were relatively rare before AI agents took off (previously, they mostly affected web apps). Recently, though, these security issues have become relevant again.

Looking back at a year and a half of the AI boom, one conclusion stands out regarding registered vulnerabilities: AI tool developers are more focused on expanding functionality than on security. This is worth keeping in mind when using these tools. Let’s look at the projects and applications that either integrated AI tools or offered them as the core product. Below is a list of the those with the highest number of registered vulnerabilities for 2025–2026.

TOP AI/LLM-related projects by number of published vulnerabilities, 2025–2026 (download)

Notable vulnerabilities


This section highlights the most significant vulnerabilities published in Q2 2026 that have publicly available descriptions. Since the above already covers several significant vulnerabilities published during the reporting period, this section consists mainly of LLM/AI tool vulnerabilities.

CVE-2026-25253: a gatewayUrl vulnerability in OpenClaw


The issue stems from the fact that the OpenClaw user interface trusts the value of the gatewayUrl parameter passed in the URL and automatically establishes a WebSocket connection to the specified address. During this connection process, it sends an authentication token without any additional user confirmation.

The attack algorithm exploiting this vulnerability works as follows:

  1. The application obtains a critical connection address from an external source (the gatewayUrl URL parameter), which is controlled by the attacker.
  2. There is no validation before use.
  3. The client automatically initiates a connection to the address specified in the parameter, which belongs to the attacker.
  4. While connected, the application sends credentials (an access token) to the specified address.

If the attacker obtains a valid token, the consequences depend on that token’s level of access within the system. In general, this could lead to:

  • User session compromise
  • Execution of operations on the user’s behalf
  • Modification of the AI agent configuration
  • Unauthorized access to tools and resources connected to the agent
  • Under certain OpenClaw configurations, further compromise of the host running the agent

It’s worth noting that the risk of exploitation arises from a combination of several factors: the automatic connection and token transmission, the lack of address trust verification, and the high privileges granted to the local AI agent.

CVE-2026-41948: a path traversal vulnerability in the Dify AI platform


The vulnerability lets an authenticated user craft a request that enables the application to escape its permitted tenant and gain access to internal REST APIs that weren’t meant for that user. The root cause is insufficient normalization and validation of the URL path before it’s passed to the internal service.

Depending on the Dify configuration, the consequences can include:

  • Unauthorized access to internal service interfaces
  • Breach of isolation between workspaces
  • Exposure of internal service information
  • Conditions favorable to further attacks when combined with other vulnerabilities

The use of Dify in enterprise AI platforms is particularly risky, since internal services there tend to hold elevated privileges.

CVE-2026-45386: an improper access control vulnerability in Open WebUI


In Open WebUI, pin/unpin operations on messages are write operations, since they modify that message’s metadata (is_pinned, pinned_by, pinned_at). In vulnerable versions, however, before performing these actions, the API only checked for read access to the channel (a chat between a user or group and the AI) containing the message, not permission to modify its content. As a result, a user with a role limited to viewing messages could still change a message’s pinned status.

The vulnerability’s mechanism works as follows:

  1. The user initiates an action that changes the state of an object.
  2. The application treats this action as a regular read request.
  3. Only channel view permission is checked.
  4. The application performs a write without verifying the required user authorization.

This violates one of the fundamental principles of access control models — namely, that any operation that changes the state of data must be checked for the appropriate write or moderation permissions, regardless of whether the object itself is readable.

Although the vulnerability doesn’t lead to arbitrary code execution or compromise of sensitive data, it can affect data integrity and collaborative workflows. Potential consequences of exploitation include unauthorized pinning or unpinning of messages, disruption of channel moderators’ and administrators’ activities, changes to the display order of important information, and even the potential spread of false or misleading information by altering the channel containing a pinned message.

Open WebUI is widely used as an interface for interacting with local and enterprise LLMs. In these systems, pinned messages often contain important instructions, announcements, or tips for users. The ability to modify them with minimal privileges can disrupt collaborative workflows, cause confusion, and undermine trust in information published by administrators and moderators.

CVE-2026-45501: a vulnerability in Microsoft Exchange


The vulnerability stems from improper neutralization of user input when generating Exchange web pages. As a result, the browser may interpret specially crafted data as active content instead of plain text.

Although Microsoft categorizes the potential impact of exploiting this vulnerability as spoofing, flaws like this can lead to alteration of displayed content, imitation of trusted interfaces, actions on behalf of the user within an active session, and abuse of user trust.

It’s worth noting that issues like this are still relevant in modern software, given that mechanisms like Content Security Policy and various parsers were specifically created to help developers neutralize dangerous parts of user page content.

Conclusion and advice


Q2 brought the first significant results of AI automation adoption in software development and vulnerability hunting tools. This research shows that beyond traditional patch management, organizations now need real-time monitoring of systems and access controls, since infrastructure and everyday applications now contain far more AI functionality that could lead to compromise.

Accordingly, besides quickly detecting infrastructure vulnerabilities and managing security patches, modern enterprise-grade security solutions need to provide a broad range of preventive measures for tracking the overall health of systems and workstations. Kaspersky Next meets these requirements by combining proactive mechanisms with the ability to respond promptly to emerging threats.

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