FalconStor has introduced Cloud Clean Room, a new platform that allows organizations to test data recovery processes without needing their own dedicated infrastructure. This solution utilizes a secure enclave approach, ensuring that recovery tests begin from a clean, known state to prevent the propagation of errors. The platform is built on FalconStor's zero trust secure enclave technology and can be integrated with other services.

FalconStor has introduced FalconStor Cloud Clean Room, a new platform designed to allow organizations to conduct validated recovery tests in a secure, on-demand environment. This solution aims to address the persistent challenge of ensuring data recoverability without the significant cost and complexity of maintaining dedicated recovery infrastructure.
The Cloud Clean Room is built upon FalconStor's patent-pending zero trust secure enclave (ZTSE) technology. It functions as a distinct infrastructure layer that can be deployed across various use cases and integrated by third-party software vendors and service providers. The platform operates within IBM Cloud, leveraging global infrastructure in IBM's PowerVS environments.
A key feature of the Cloud Clean Room is its ability to create and destroy recovery test environments as needed. Each test begins from a known, clean state, eliminating the risk of issues or malware from previous exercises carrying over. This approach ensures that organizations have verifiable proof of recovery, rather than just a completed checklist.
The problem FalconStor aims to solve is the gap between the stated priority of cyber resilience and organizations' actual confidence in their recovery speed. While many organizations prioritize cyber resilience, a significant portion lack confidence in their ability to recover quickly after a cyberattack or data loss event. Building and maintaining dedicated clean room infrastructure for testing has historically been cost-prohibitive and operationally complex.
FalconStor Cloud Clean Room addresses this by providing on-demand infrastructure, thereby removing the need for customers to maintain a constant replica and its associated expenses. The platform manages all infrastructure provisioning within the enclave, from the creation of IBM Power LPARs to their decommissioning, requiring no cloud expertise from the customer.
The first offering to integrate with the Cloud Clean Room is FalconStor Habanero, an existing solution for managed offsite backup and archive vaulting for IBM i, IBM Power, and tape environments. This integration provides customers with a complete backup-to-validated-recovery capability on IBM Cloud, specifically for IBM Power systems, without requiring customers to possess IBM Cloud expertise.
This combination allows Habanero customers to perform validated recovery tests within a secure, FalconStor-managed infrastructure environment on IBM PowerVS. FalconStor handles all underlying infrastructure provisioning and orchestration, while customers initiate and manage their recovery tests. This is particularly beneficial for IBM Power users, including those still using tape, as it offers a path to meeting cyber resilience and regulatory requirements without necessitating a complete system overhaul.
Beyond the Habanero integration, FalconStor has designed the Cloud Clean Room as a foundational infrastructure layer that can be licensed and embedded by independent software vendors (ISVs) and service providers. This allows them to offer on-demand clean room capabilities as part of their own services, such as augmenting cyber resilience, enabling on-demand infrastructure, or onboarding managed services, without having to develop the orchestration technology themselves.
FalconStor views the Cloud Clean Room as a versatile platform with potential applications beyond cyber resilience, wherever isolated, on-demand compute and storage environments are needed that can execute reliably and leave no residual risk. The solution is designed to help organizations meet regulatory requirements, including DORA, FFIEC, and PCI-DSS, by providing documented proof of recovery on demand.
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.

OpenAI has announced a $1 billion commitment to provide subsidized access to its Daybreak AI cybersecurity tools for under-resourced critical infrastructure defenders. The initiative, named Daybreak for Frontline Defenders, will offer AI models, training, and technical support over the next six months, prioritizing water and wastewater utilities, electric grid operators, and local government entities. This move aims to equip organizations with limited budgets and staff against increasingly sophisticated cyber threats.

Attackers are exploiting a new unpatched vulnerability in Magento Open Source and Adobe Commerce that lets them run malicious code on an online store's server without logging in, Dutch e-commerce security company Sansec said in an advisory published on September 5. Sansec, which discovered the flaw and named it StyleSmuggler, said attacks started on September 4. "Sansec is publishing early
In BPF instructions that load/store a value from/to a scratch memory register the register index is an unsigned 32-bit integer and must not exceed 15, but libpcap BPF interpreter does not validate the value. In particular uncommon use cases a crafted filter program can cause the interpreter to try reading and writing the OS process memory in the 16GiB starting at the current stack frame on 64-bit architectures and in the entire address space on 32-bit architectures.

Attackers are exploiting two new PaperCut flaws to steal credentials and gain privileged access in education-sector attacks across the U.S. and Europe. Attackers are exploiting two recelty disclosed PaperCut flaws, CVE-2026-81578 and CVE-2026-82078, in attacks targeting schools and other education organizations in the U.S. and Europe, as reported by TheHackerNews. Arctic Wolf researchers observed