✨ No need to do from scratch. Deploy a Validated Containment Architecture built for your AI platform. →Deploy a Validated Containment Architecture for your AI platform. →A Validated Containment Architecture for your AI platform. →Validated Containment Architectures are here. →Contain Threats NowExplore✨
Aviatrix Threat Research Center
Cloud breaches are accelerating — across identities, workloads, supply chains, and cloud-native services. In the Containment Era, understanding how a breach unfolds is how you architect to stop it.
The Aviatrix Threat Research Center provides security teams with:
- A structured understanding of how breaches unfold — kill chain, ATT&CK techniques, CVEs, and IOCs in a consistent format.
- What attackers exploited, and which enforcement gaps let them move.
- Where workload-level controls would have broken the attack chain — including paths that posture tools and endpoint detection don't model.

Recent Breaches, Security Incidents & Vulnerabilities
AI-Powered Threat Analysis
Agentic AI that analyzes real-world attacks — across security incidents, breaches, and exploited vulnerabilities — to produce structured, actionable intelligence.
Displaying 1585 to 1596 of 5110
RubyGems Supply Chain Attack Highlights Open-Source Security Risks
In early May 2026, RubyGems, the primary package manager for the Ruby programming language, faced a significant supply chain attack involving the upload of hundreds of malicious packages. These packages were designed to steal sensitive information such as cloud credentials and SSH keys, and to tamper with Continuous Integration (CI) pipelines. In response, RubyGems temporarily suspended new account registrations to mitigate the threat and initiated a comprehensive investigation to identify and remove the compromised packages. This incident underscores the escalating risks associated with software supply chain attacks, particularly within open-source ecosystems. The attack highlights the necessity for robust security measures in package management systems and the importance of vigilant monitoring to detect and prevent the distribution of malicious code. Organizations are urged to implement stringent dependency controls and to stay informed about emerging threats targeting development environments.
2 months ago
Kill Chain
Mini Shai-Hulud Malware Compromises TanStack npm Packages in 2026
In May 2026, the Mini Shai-Hulud malware campaign, orchestrated by the threat actor group TeamPCP, compromised hundreds of npm packages, notably within the TanStack ecosystem. The malware infiltrated developer environments and CI/CD pipelines, exfiltrating credentials and propagating itself by leveraging stolen access tokens to publish malicious package versions. This self-replicating attack underscores the vulnerabilities inherent in software supply chains and the critical need for robust security measures. The resurgence of Mini Shai-Hulud highlights an escalating trend in sophisticated supply chain attacks targeting open-source ecosystems. Organizations must prioritize securing their development pipelines, implement stringent access controls, and continuously monitor for unauthorized activities to mitigate the risks posed by such evolving threats.
2 months ago
Kill Chain
Hugging Face Tokenizer.json Vulnerability: A New AI Supply Chain Threat
In May 2026, security researchers identified a vulnerability in Hugging Face's AI models, specifically within the 'tokenizer.json' file. Attackers can manipulate this file to intercept and redirect model outputs, potentially exfiltrating sensitive data such as API parameters and credentials. This supply chain attack affects models run locally using formats like SafeTensors, ONNX, and GGUF, but does not impact models executed through Hugging Face's Inference API. The compromised 'tokenizer.json' file allows threat actors to gain visibility into every URL the model accesses, posing significant security risks. This incident underscores the growing threat of supply chain attacks targeting AI infrastructure. As organizations increasingly rely on open-source AI models, ensuring the integrity of all components, including configuration files like 'tokenizer.json', becomes critical. The attack highlights the need for robust validation mechanisms and heightened vigilance when integrating third-party AI models into production environments.
2 months ago
Kill Chain
Critical Vulnerability in Fuji Electric's Tellus Software: CVE-2026-8108
In May 2026, a critical vulnerability (CVE-2026-8108) was identified in Fuji Electric's Tellus software, version 5.0.2. This flaw allows attackers to escalate privileges from user to system level, potentially leading to denial of service, unauthorized file access, or deletion. The vulnerability arises from the installation process, which adds a driver to the kernel granting all users read and write permissions. Fuji Electric recommends installing Tellus with administrator privileges to mitigate this risk. This incident underscores the persistent challenges in securing industrial control systems, particularly in the critical manufacturing sector. Organizations must remain vigilant, ensuring software installations follow best practices and regularly updating systems to address emerging vulnerabilities.
2 months ago
Kill Chain
ABB Automation Builder Gateway Vulnerability Exposes Industrial Control Systems
In February 2026, ABB disclosed a vulnerability (CVE-2024-41975) in its Automation Builder Gateway for Windows, affecting versions prior to 2.9.0. The gateway, by default, listens on all network adapters on port 1217, allowing unauthenticated remote access. This configuration enables attackers to scan for connected Programmable Logic Controllers (PLCs). While PLC user management typically prevents unauthorized access, if disabled, attackers could potentially interact with the PLCs. ABB addressed this issue in version 2.9.0 by restricting the gateway's default access to local connections. ([cisa.gov](https://www.cisa.gov/news-events/ics-advisories/icsa-25-133-04?utm_source=openai)) This incident underscores the critical importance of secure default configurations in industrial control systems. As cyber threats targeting operational technology environments increase, organizations must ensure that default settings do not expose systems to unnecessary risks. Regularly updating software and reviewing default configurations are essential steps in mitigating such vulnerabilities.
2 months ago
Kill Chain
Critical Vulnerabilities Discovered in ABB AC500 V3 PLCs
In February 2026, ABB disclosed multiple vulnerabilities in its AC500 V3 programmable logic controllers (PLCs), specifically affecting firmware versions prior to 3.9.0. The identified vulnerabilities include CVE-2025-2595, which allows unauthenticated remote attackers to bypass user management and access visualization files; CVE-2025-41659, enabling low-privileged remote attackers to read and write certificates and keys via the CODESYS protocol; and CVE-2025-41691, permitting unauthenticated attackers to cause a denial-of-service (DoS) condition through specially crafted communication requests. These vulnerabilities pose significant risks to industrial control systems, potentially leading to unauthorized access, data manipulation, and service disruptions. The relevance of this incident is underscored by the increasing frequency of cyberattacks targeting industrial control systems, highlighting the critical need for robust security measures in operational technology environments. Organizations utilizing ABB's AC500 V3 PLCs are urged to apply the recommended firmware updates promptly to mitigate these vulnerabilities and safeguard their infrastructure against potential exploits.
2 months ago
Kill Chain
OpenAI's Daybreak: Revolutionizing Cybersecurity with AI-Powered Vulnerability Detection
In May 2026, OpenAI introduced Daybreak, a cybersecurity initiative leveraging advanced AI models and Codex Security to assist organizations in identifying and patching software vulnerabilities proactively. Daybreak integrates AI capabilities to perform secure code reviews, threat modeling, patch validation, and dependency risk analysis, aiming to enhance software resilience from the development phase. This initiative is part of OpenAI's broader effort to embed robust security measures into software design, enabling defenders to detect and remediate vulnerabilities before they can be exploited by malicious actors. The launch of Daybreak underscores a significant shift in cybersecurity strategies, emphasizing proactive defense mechanisms powered by AI. As cyber threats become more sophisticated, integrating AI-driven tools like Daybreak into the software development lifecycle is crucial for organizations to stay ahead of potential attacks and ensure the security of their digital assets.
2 months ago
Kill Chain
DARPA AIxCC Challenge 2025: Pioneering AI in Cybersecurity
In August 2025, DARPA concluded its two-year Artificial Intelligence Cyber Challenge (AIxCC), a competition aimed at developing AI-driven systems to autonomously identify and patch vulnerabilities in open-source software critical to national infrastructure. The challenge culminated at DEF CON 33, where Team Atlanta secured first place, followed by Trail of Bits and Theori. Competitors' Cyber Reasoning Systems (CRSs) analyzed over 54 million lines of code, discovering 54 synthetic vulnerabilities and patching 43, alongside identifying 18 real-world vulnerabilities, 11 of which were patched. This initiative demonstrated the potential of AI to enhance cybersecurity defenses by rapidly addressing software vulnerabilities. The success of AIxCC underscores the growing importance of integrating AI into cybersecurity strategies, especially as cyber threats targeting critical infrastructure become more sophisticated. The open-sourcing of these CRSs provides a valuable resource for organizations seeking to bolster their security posture through automated vulnerability management.
2 months ago
Kill Chain
Instructure's 2026 Data Breach: A Wake-Up Call for Educational Cybersecurity
In early May 2026, Instructure, the parent company of the Canvas learning management system, experienced a significant data breach executed by the cybercriminal group ShinyHunters. The attackers accessed 3.65 terabytes of data, affecting nearly 9,000 educational institutions and compromising personal information of approximately 275 million individuals, including names, email addresses, student ID numbers, and private messages. Although passwords and financial data were reportedly not compromised, the breach led to widespread disruptions, particularly during the critical final exam period. In response, Instructure reached an agreement with ShinyHunters to prevent the public release of the stolen data, receiving assurances of its destruction. The company has since implemented enhanced security measures and is conducting a comprehensive forensic analysis to prevent future incidents. ([apnews.com](https://apnews.com/article/3d55b9399ae87d49276f354e1c34c180?utm_source=openai)) This incident underscores the escalating threat posed by sophisticated cybercriminal groups targeting educational institutions. The breach highlights the critical need for robust cybersecurity frameworks, proactive threat detection, and comprehensive incident response plans to safeguard sensitive data and maintain operational continuity in the education sector.
2 months ago
Kill Chain
Mini Shai-Hulud Worm Targets TanStack, Mistral AI, and Others in Major Supply Chain Attack
In May 2026, the threat actor TeamPCP launched a sophisticated supply chain attack known as the Mini Shai-Hulud campaign, compromising over 170 npm and PyPI packages, including those from TanStack, Mistral AI, UiPath, OpenSearch, and Guardrails AI. The attackers injected obfuscated JavaScript files into these packages, which, upon execution, profiled the environment and deployed credential-stealing malware targeting cloud providers, cryptocurrency wallets, AI tools, messaging apps, and CI systems. The stolen data was exfiltrated to attacker-controlled domains, and the malware established persistence in development environments by integrating with IDEs like Visual Studio Code. This incident underscores the escalating threat of supply chain attacks, particularly those targeting widely used open-source packages. The use of self-propagating malware that exploits developer environments highlights the need for enhanced security measures in software development pipelines. Organizations must remain vigilant, regularly audit their dependencies, and implement robust monitoring to detect and mitigate such sophisticated attacks.
2 months ago
Kill Chain
Critical Vulnerabilities in ABB WebPro SNMP Card PowerValue Devices: Immediate Action Required
In January 2026, ABB disclosed multiple vulnerabilities in its WebPro SNMP Card PowerValue devices, including CVE-2025-4675, CVE-2025-4676, and CVE-2025-4677. These flaws encompass improper input validation, incorrect authentication algorithm implementation, and insufficient session expiration. Exploitation could allow attackers with adjacent network access to bypass authentication mechanisms, cause denial-of-service conditions, and potentially compromise the confidentiality, integrity, and availability of critical power management systems. ABB has released firmware updates to address these issues and recommends users apply them promptly. The disclosure of these vulnerabilities underscores the ongoing risks associated with industrial control systems and the importance of timely patch management. Organizations relying on ABB's WebPro SNMP Card PowerValue devices should assess their exposure and implement the recommended updates to mitigate potential threats to their operational technology environments.
2 months ago
Kill Chain
Critical Vulnerability in ABB AC500 V3 PLCs: CVE-2025-15467
In March 2026, ABB disclosed a critical vulnerability (CVE-2025-15467) in its AC500 V3 programmable logic controllers (PLCs) running firmware version 3.9.0. The flaw, a stack buffer overflow in the Cryptographic Message Syntax (CMS) parsing module, allows attackers to send specially crafted CMS messages with oversized Initialization Vectors (IVs), leading to potential denial-of-service conditions or remote code execution. This vulnerability affects critical infrastructure sectors globally, including chemical, manufacturing, energy, and water systems. ([library.e.abb.com](https://library.e.abb.com/public/3f2f68976c3c4cc89a5ab895a725244e/3ADR011536%20AC500%20V3%20-%20Stack%20buffer%20overflow%20in%20Cryptographic%20Message%20Syntax.pdf?x-sign=a8r%2F%2FVJ904MPHpN62nDT6cO8nxGbkletTE2yehKQm%2Fyz3hjiFyv3ky484JHLStaP&utm_source=openai)) The incident underscores the persistent risks in industrial control systems (ICS) due to software vulnerabilities. With ICS environments increasingly targeted by cyber threats, timely patching and robust security measures are essential to prevent exploitation and ensure operational continuity.
2 months ago
Kill Chain
Security Research & Insights
Security Research & Insights with human-led deep dives into campaigns and cloud-native TTPs

OpenAI Lost Control of Its Models. Then Anthropic Did Too. That Is Not a Coincidence.

Attackers Learned to Use AI. Now They Built Tools to Destroy It.

Living-off-the-Agent: How AI Tool Misuse Became the Insider Threat Nobody Provisioned
Market Perspectives
Market Perspectives offering expert commentary and select breach analysis from industry leaders
What Could Have Stopped the 2023 MGM Breach? A Study in the Power of Embedded Zero Trust

The Zero Trust Gap: Only 8% of US Enterprises Use Zero Trust Architectures

HITRUST CSF Compliance in the Cloud—How Aviatrix Secures Healthcare Data
How CNSF Protects Cloud Workloads
Cloud attackers don’t rely on a single exploit — they rely on paths.
Once inside, attackers move laterally between workloads, establish command-and-control through egress paths, and exfiltrate data through legitimate cloud services — often before detection tools generate an alert. These paths exist because most security architectures enforce at centralized inspection points, not at every workload. The paths that matter most are the ones that never reach a central firewall.
Aviatrix Cloud Native Security Fabric (CNSF) contains attacks by enforcing policy at every workload communication path — containing blast radius, blocking lateral movement, and cutting off egress before data leaves the environment.

With CNSF, enterprises can:
- Contain attack paths at runtime
Gain visibility into east-west and egress workload communication and apply controls that limit lateral movement, unauthorized egress, and uncontrolled trust expansion.
- Eliminate blind spots in workload-to-workload traffic
Observe traffic across VPCs/VNets, regions, and cloud providers using cloud native telemetry — including paths that posture tools and point controls don’t model.
- Secure modern and AI-driven workloads
Understand how agents, services, and workloads communicate at runtime, and enforce policy to reduce the risk of misuse, over-privileged access, or unintended data flows.
- Apply consistent Zero Trust controls without slowing teams
Enforce segmentation, egress control, and encryption centrally across clouds — without agents, application changes, or developer friction.
See Your Attack Paths. Close the Gaps with CNSF.
Blast radius starts where your enforcement stops.
Most security architectures enforce at centralized inspection points. Attackers move between workloads on paths that never reach those points — building blast radius invisibly until detection tools fire, often too late.

Your assessment delivers:
The Aviatrix Workload Attack Path Assessment (WAPA) analyzes real workload communication using cloud native telemetry to uncover attack paths already present in your environment — and shows how Cloud Native Security Fabric (CNSF) can break those paths with runtime enforcement.
The threat landscape has changed.
Has your question changed with it?
In March 2026, TeamPCP proved that detection-first architectures cannot contain attacks that move through trusted code, not around defenses. Today’s threat actors don’t break in — they log in, blend in, and expand silently. This command center tracks the evolving threat landscape and helps you measure your Blast Radius — the architectural metric that defines resilience in the Containment Era.
This command center tracks 8 active campaigns and measures your Blast Radius: what an attacker can reach once inside your environment.
Contain the Blast Radius
See the attack paths already present in your environment — and where CNSF containment controls would break them.

