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STRUCTURED THREAT INTELLIGENCE FOR THE CLOUD COMMUNITY

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.
Kill Chain Coverage
ATT&CK Mapped
Real-World IOCs
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Threat ReportsLive Intelligence

Recent Breaches, Security Incidents & Vulnerabilities

A unified view of real-world cloud threats — combining AI-powered analysis, security research, and expert perspectives through a consistent, cloud-specific framework.

AI-Powered Threat Analysis

Agentic AI that analyzes real-world attacks — across security incidents, breaches, and exploited vulnerabilities — to produce structured, actionable intelligence.

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Displaying 3301 to 3312 of 5245

Researchers Disclose Widespread Automotive and EV Vulnerabilities at Pwn2Own 2026
Impact· low
Researchers Disclose Widespread Automotive and EV Vulnerabilities at Pwn2Own 2026

In January 2026, security researchers at the Pwn2Own Automotive World competition uncovered and exploited dozens of critical vulnerabilities in modern vehicle infotainment systems and EV (electric vehicle) chargers from multiple manufacturers. By chaining flaws across network interfaces and poorly secured APIs, attackers demonstrated the ability to remotely compromise vehicle systems, extract sensitive data, and gain unauthorized control over critical vehicle functions. While these attacks were conducted in a controlled, ethical hacking contest, they highlighted the substantial risks posed by connected automotive platforms, which often lack robust segmentation and encryption for internal and external communications. This incident underscores the rapidly escalating threat landscape facing the automotive industry as vehicles integrate more digital and cloud-connected components. The research-driven breach foreshadows what real-world adversaries may attempt, making it urgent for OEMs and suppliers to adopt zero trust, comprehensive monitoring, and proactive vulnerability management.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(medium)
I
Impact(low)
Read Report
Cisco Zero-Day Flaw Sparks Mass Exploitation of Unified Communications Platforms
Impact· low
Cisco Zero-Day Flaw Sparks Mass Exploitation of Unified Communications Platforms

In early June 2026, Cisco disclosed a critical zero-day vulnerability (CVE-2026-20045) impacting its Unified Communications (UC) suite, which quickly became the target of mass automated exploitation. Threat actors leveraged the flaw to gain remote code execution, potentially allowing them to fully compromise UC servers and pivot into broader enterprise networks. The scale of the vulnerability—affecting millions of devices worldwide—prompted urgent alerts from security agencies and rapid patching actions by global organizations. Successful intrusions could enable attackers to intercept sensitive communications, exfiltrate data, and disrupt business operations. This incident is especially notable as zero-day attacks against high-availability collaboration infrastructure have surged, reflecting a broader trend in targeting business-critical communication platforms. The Cisco exploitation underscores the speed at which adversaries now weaponize new flaws, and the risks posed to organizations lacking robust patch and segmentation defenses.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(medium)
I
Impact(low)
Read Report
Sandworm’s 2025 DynoWiper Attack on Poland’s Power Grid: Lessons in Critical Infrastructure Resilience
Impact· high
Sandworm’s 2025 DynoWiper Attack on Poland’s Power Grid: Lessons in Critical Infrastructure Resilience

In late 2025, a highly targeted cyberattack attributed to the Sandworm group struck Poland's national power grid. Using custom data-wiping malware identified as DynoWiper, the attackers infiltrated critical infrastructure networks, demonstrating sophisticated knowledge of operational technology environments. The initial compromise involved lateral movement through segmented OT/IT networks, facilitated by exploitation of unprotected east-west traffic and weak segmentation controls. The subsequent deployment of DynoWiper caused destructive impacts, including service outages and loss of operational data across several regional substations, with cascading effects on grid stability and dependent sectors. Immediate containment was complicated by attacker persistence and the rapid spread of the wiper. This incident underscores the rising trend of advanced, nation-state wiper malware targeting critical infrastructure, reflecting a shift from espionage to destructive tactics. Organizations face elevated urgency to harden network segmentation, implement robust egress security, and adopt zero trust operational models in light of these evolving threats.

6 months ago

Kill Chain

IC
Initial Compromise(medium)
PE
Privilege Escalation(medium)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(low)
I
Impact(high)
Read Report
Fortinet FortiCloud Auth Bypass: Patched Firewalls Remain at Risk in 2026
Impact· medium
Fortinet FortiCloud Auth Bypass: Patched Firewalls Remain at Risk in 2026

In January 2026, Fortinet confirmed the existence of a critical authentication bypass (CVE-2025-59718) affecting its FortiCloud SSO feature, leaving fully patched devices vulnerable to compromise. Attackers exploited a patch bypass to gain administrative access, quickly creating VPN-enabled accounts and exfiltrating firewall configurations. Despite an earlier advisory, threat actors continued to exploit an unaddressed attack path, with the campaign becoming automated and impacting organizations globally. Evidence included unauthorized logins and suspect account creation, prompting urgent investigation and forensic response from network teams. This breach illustrates the growing risk posed by incomplete patches and the relentless pursuit by attackers of residual vulnerabilities, particularly in widely deployed network security products. It underscores the critical need for continuous monitoring, rapid patch validation, and limiting administrative access to sensitive management interfaces.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(high)
LM
Lateral Movement(low)
C&C
Command & Control(medium)
E
Exfiltration(high)
I
Impact(medium)
Read Report
Pwn2Own Automotive 2026: Hackers Expose Record 76 Zero-Days in Cars, Chargers & Tesla
Impact· high
Pwn2Own Automotive 2026: Hackers Expose Record 76 Zero-Days in Cars, Chargers & Tesla

Between January 21–23, 2026, the Pwn2Own Automotive competition in Tokyo saw security researchers demonstrate a record-breaking 76 zero-day vulnerabilities across in-vehicle infotainment systems (IVIs), electric vehicle chargers, and automotive operating systems, including high-profile exploits against Tesla, Alpitronic, Autel, Kenwood, and other leading manufacturers. Teams leveraged physical and remote attack vectors, with notable attacks including USB-based chaining to breach Tesla’s infotainment system. The event awarded $1,047,000 in prizes, underscoring significant risks within connected automotive infrastructure. Vendors now have 90 days to issue security patches before public disclosure. This incident highlights a concerning rise in exploitable vulnerabilities within rapidly digitalizing automotive ecosystems. As vehicles integrate more software-driven services and connected devices, adversaries and researchers alike are increasingly shifting focus toward automotive cyberattacks—driving new urgency for robust segmentation, secure update mechanisms, and continuous monitoring.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(high)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(medium)
I
Impact(high)
Read Report
CISA Confirms Active Exploitation of Enterprise Supply Chain Vulnerabilities in 2026
Impact· medium
CISA Confirms Active Exploitation of Enterprise Supply Chain Vulnerabilities in 2026

In January 2026, the Cybersecurity and Infrastructure Security Agency (CISA) confirmed active exploitation of four critical vulnerabilities in enterprise software spanning supply chain, SD-WAN orchestration, front-end tooling, and webmail platforms. Attackers capitalized on flaws such as authentication bypasses in Versa Concerto, a supply-chain compromise in the eslint-config-prettier npm package, and local file inclusion in Zimbra's Webmail UI, bypassing access controls and risking the exposure of sensitive data and credentials. The vulnerabilities affected a range of organizations using these widely distributed platforms, underscoring the risks posed by third-party and open-source dependencies in software supply chains. This incident highlights a growing trend where attackers leverage chained vulnerabilities and software supply chain weaknesses to achieve lateral movement, privilege escalation, and large-scale data exfiltration. As regulatory scrutiny increases and adversaries target both enterprise and developer ecosystems, rapid patch management and improved visibility into third-party code become urgent mandates for security leaders.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(high)
I
Impact(medium)
Read Report
Attackers Exploit GNU InetUtils Telnetd Flaw for Root Access in 2026
Impact· medium
Attackers Exploit GNU InetUtils Telnetd Flaw for Root Access in 2026

In January 2026, researchers discovered active exploitation of a critical eleven-year-old authentication bypass vulnerability (CVE-2026-24061) in the GNU InetUtils telnetd server, affecting versions 1.9.3 through 2.7. Attackers leveraged unsanitized environment variable handling to pass 'USER=-f root' via Telnet connections, trivially gaining root shell access without authentication. While identified exploitation was limited—18 unique IPs targeting 60 sessions over two days—many affected systems are legacy or embedded industrial and IoT devices, complicating patching or replacement and increasing exposure risk in Operational Technology (OT) environments. This incident highlights how long-standing vulnerabilities in rarely updated legacy software can be weaponized by both automated and hands-on attackers. The persistence of Telnet in OT, IoT, and embedded sectors, combined with publicly available exploits, underscores increased urgency for organizations to identify, mitigate, or segment such outdated services before broader exploitation occurs.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(high)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(low)
I
Impact(medium)
Read Report
Malicious AI Extensions in VSCode Marketplace Steal Developer Data, Impacting 1.5 Million Users
Impact· high
Malicious AI Extensions in VSCode Marketplace Steal Developer Data, Impacting 1.5 Million Users

In January 2026, researchers at Koi Security discovered that two AI-powered Visual Studio Code (VSCode) Marketplace extensions—ChatGPT – 中文版 and ChatMoss (CodeMoss)—were secretly exfiltrating developer files and sensitive data to China-based servers. Together, these malicious extensions had been installed 1.5 million times and collected data using real-time file monitoring, workspace file harvesting, and covert user profiling via embedded commercial analytics SDKs. The compromised extensions transmitted not only source code but potentially included API keys, configuration, and credential files without user consent, representing a major supply-chain compromise in the software development ecosystem. This incident highlights the persistent risks developers face from supply chain attacks through third-party plugins. As AI-driven code assistants surge in popularity, attackers are increasingly exploiting trusted extension marketplaces to deploy sophisticated data-stealing campaigns, raising urgent concerns for software security, compliance, and marketplace governance.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(low)
C&C
Command & Control(high)
E
Exfiltration(high)
I
Impact(high)
Read Report
AI-Generated Code Exposes New Honeypot Security Risks at Intruder (2026)
Impact· medium
AI-Generated Code Exposes New Honeypot Security Risks at Intruder (2026)

In January 2026, Intruder Security revealed an application security vulnerability in their intentionally vulnerable honeypot, stemming from AI-generated code that mishandled client-supplied IP headers. The AI-assisted system incorrectly trusted IP values in HTTP headers without enforcing a trust boundary, allowing attackers to inject payloads or spoof source IP information. This oversight, undetected by common static analysis tools, resulted in attacker-controlled inputs influencing system logic, posing potential risks for local file disclosure or server-side request forgery had the vulnerable code path been used differently. While the actual impact remained low due to the isolated nature of the honeypot, the incident highlights significant gaps in current AI-assisted development and security review processes. This event underscores the growing prevalence of AI-generated vulnerabilities and the limitations of automated security tools in identifying nuanced flaws. As enterprises increasingly rely on AI-driven coding and automation, such oversights are likely to become more common, emphasizing the need for robust validation and updated security governance.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(low)
C&C
Command & Control(low)
E
Exfiltration(low)
I
Impact(medium)
Read Report
US ATM Jackpotting 2024: Venezuelan Hackers Steal Hundreds of Thousands Using Malware
Impact· high
US ATM Jackpotting 2024: Venezuelan Hackers Steal Hundreds of Thousands Using Malware

In early 2024, federal prosecutors in South Carolina uncovered a sophisticated ATM jackpotting scheme perpetrated by two Venezuelan nationals. Employing financial malware, the attackers compromised U.S. bank ATM networks and extracted hundreds of thousands of dollars in cash. The scheme involved the unauthorized installation of malware on ATM machines, which enabled the criminals to override withdrawal limits and rapidly dispense large sums of money. Following their arrest, both individuals were convicted and will be deported after serving their sentences, highlighting significant vulnerabilities in ATM security and network segmentation. This incident reflects a growing trend in financial crime, where cybercriminals target banking infrastructure using advanced malware and physical access techniques. Regulators and banks are increasingly focused on hardening ATM systems and tightening controls to prevent similar attacks as cyber-enabled fraud remains a persistent and evolving threat.

6 months ago

Kill Chain

IC
Initial Compromise(medium)
PE
Privilege Escalation(medium)
LM
Lateral Movement(medium)
C&C
Command & Control(medium)
E
Exfiltration(high)
I
Impact(high)
Read Report
Microsoft Uncovers 2026 Multi-Stage BEC Attack Targeting Energy Sector
Impact· high
Microsoft Uncovers 2026 Multi-Stage BEC Attack Targeting Energy Sector

In January 2026, Microsoft identified a sophisticated multi-stage business email compromise (BEC) attack targeting several prominent energy sector organizations. The attackers leveraged adversary-in-the-middle (AitM) phishing tactics, abusing SharePoint file-sharing services to distribute malicious payloads and gaining user trust with legitimate-looking links. Once initial access was achieved, the threat actors established persistent access by creating malicious inbox rules, allowing them to hijack email conversations, evade user detection, and execute fraudulent transactions. The campaign underscores the evolving nature of BEC schemes and their business impact, with potential exposure of sensitive data and financial losses. This incident exemplifies a significant escalation in the complexity and persistence of phishing-driven BEC campaigns affecting critical infrastructure. As regulatory scrutiny increases and attackers continually evolve tactics, this case highlights the urgent need for modern defenses against advanced social engineering and privileged access abuse.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(low)
C&C
Command & Control(medium)
E
Exfiltration(medium)
I
Impact(high)
Read Report
Fortinet Zero-Day SSO Bypass Targets Fully Patched Firewalls in 2026
Impact· low
Fortinet Zero-Day SSO Bypass Targets Fully Patched Firewalls in 2026

In January 2026, Fortinet confirmed that attackers actively exploited a new authentication bypass vulnerability affecting FortiCloud SSO on fully patched FortiGate firewalls. Despite organizations applying the latest security updates, adversaries used an undisclosed flaw to circumvent authentication protections, gaining unauthorized administrative access to network infrastructure. The incidents were detected within 24 hours of the latest firmware deployment, leading to compromised management interfaces and potentially broad security implications for affected enterprises utilizing FortiCloud SSO for remote management and single sign-on. This breach underscores a persistent challenge in cloud-managed network security: even well-maintained, up-to-date systems may be vulnerable to zero-day exploits. The event highlights increased attacker focus on SSO and management plane weaknesses, as well as the importance of layered defenses, rapid detection, and coordinated response in modern enterprise security architecture.

6 months ago

Kill Chain

IC
Initial Compromise(high)
PE
Privilege Escalation(medium)
LM
Lateral Movement(low)
C&C
Command & Control(low)
E
Exfiltration(medium)
I
Impact(low)
Read Report

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

Jul 31, 2026

12 min read
Read More
Attackers Learned to Use AI. Now They Built Tools to Destroy It.
ai attack
Attackers Learned to Use AI. Now They Built Tools to Destroy It.
Matt Snyder
Matt Snyder

Jul 21, 2026

12 min read
Read More
Living-off-the-Agent: How AI Tool Misuse Became the Insider Threat Nobody Provisioned
ai-insider
Living-off-the-Agent: How AI Tool Misuse Became the Insider Threat Nobody Provisioned
Sachin Saurabh
Sachin Saurabh

Jul 07, 2026

14 min read
Read More

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
What Could Have Stopped the 2023 MGM Breach v4
What Could Have Stopped the 2023 MGM Breach? A Study in the Power of Embedded Zero Trust
John Qian
John Qian

Jul 31, 2025

7 min read
Read More
HITRUST CSF Compliance in the Cloud—How Aviatrix Secures Healthcare Data
HITRUST CSF Compliance in the Cloud—How Aviatrix Secures Healthcare Data
HITRUST CSF Compliance in the Cloud—How Aviatrix Secures Healthcare Data
Tom Davis
Tom Davis

Jun 25, 2025

7 min read
Read More

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.

Utilize the Network Layer

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.

The Executive Assistant That Broke the Company Why Shadow AI is the New Cloud Crisis card image

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.

Containment Era Intelligence

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.

8
Tracked Campaigns
82%
Intrusions are malware-free
CrowdStrike GTR 2026
29 min
Avg. eCrime breakout time
CrowdStrike GTR 2026
27 sec
Fastest observed breakout
CrowdStrike GTR 2026

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.

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