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Oracle Brings SPARC to the Cloud

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Oracle at the weekend announced major new additions to the SPARC platform that for the first time bring the advanced security, efficiency and simplicity of SPARC to the cloud.

Built on the new SPARC S7 microprocessor, the latest additions to the SPARC platform include new cloud services, engineered systems and servers.

While the business benefits of the public cloud are increasingly clear, many organizations have yet to move enterprise workloads to the cloud due to performance, security and management concerns.

To help eliminate those concerns and enable organizations to confidently move enterprise workloads to the cloud, the new SPARC platform is designed from the ground up to economically improve on cloud computing delivery of the most critical business applications and scale-out application environments.

The latest additions to the SPARC platform are built on the revolutionary new 4.27 GHz, 8-core/64-thread SPARC S7 microprocessor with Software in Silicon features such as Silicon Secured Memory and Data Analytics Accelerators, which delivers the industry’s highest per-core efficiency and enables organizations to run applications of all sizes on the SPARC platform at commodity price points.

All existing commercial and custom applications will run on the new SPARC enterprise cloud services and solutions unchanged with significant improvements in security, efficiency and simplicity.

“We are still in the early phases of cloud computing adoption and as the market matures, organizations will increasingly move critical enterprise workloads to the cloud,” said John Fowler, executive vice president, Systems, Oracle. “To enable our customers to take advantage of this next stage of cloud computing to speed innovation, reduce costs and drive business growth, we are focused on delivering proven enterprise-grade services such as the Oracle SPARC platform in the Oracle Cloud.”      

Some of the key features of the new SPARC platform include, effortless security, which is the latest additions to the SPARC platform are designed for security and compliance and utilize Silicon Secured Memory capabilities to address malware attacks and programming errors.

Wide-key encryption ciphers and hashes enable a fully encrypted cloud with less than two percent performance overhead.

In addition, security is further enhanced through verified boot, immutable content that prevents unauthorized changes, enforced secured updates and a trusted and secure hardware and software supply chain that does not rely on intermediaries.

Another feature of the SPARC is the efficiency, taking advantage of the open APIs in the processor and integrated Data Analytics Accelerators, which deliver up to 10x greater analytics performance spanning enterprise, big data and cloud applications, the latest additions to the SPARC platform reduce latency and cost.

When compared to the x86 servers, the fully integrated S7-2 and S7-2L servers delivers up to 100 percent better per core efficiency, 1.7x better per core Java performance efficiency, 1.6x per core database OLTP performance efficiency, and 2-3x more bandwidth for high-traffic analysis and cloud apps.

Straightforward Simplicity: Taking integration a step beyond the server, the Oracle MiniCluster S7-2 Engineered System dramatically simplifies the top four most challenging aspects of enterprise computing: security and compliance; high availability; patching and administration; and performance tuning.

By eliminating the need for a standard platform or OS and reducing security and database administration time and effort, the new Engineered System enables organizations to secure systems by default by eliminating enterprise security expertise requirements, automate compliance monitoring and auditing in order to maintain the secure state of the system over time.

It also help to secure make service resiliency effortless by taking advantage of a high availability operation that is engineered in to the hardware and software, ensure the platform will always be up to date with the latest software and security enhancements through simple full stack patching, and enhance database and application performance through automatic performance tuning.

The new SPARC S7 processor-based cloud services and systems deliver commodity x86 economics and significant enterprise-class functionalities for security and analytics with Software in Silicon.

They include new Oracle Cloud Compute platform services, the Oracle MiniCluster S7-2 Engineered System and Oracle SPARC S7 servers.

These new products are designed to seamlessly integrate with existing infrastructure and include fully integrated virtualization and management for cloud.

The new Oracle SPARC Cloud service that is now part of the SPARC platform is a dedicated compute service to provide organizations with a simple, secure and efficient compute platform in the Cloud. The new service extends the complete suite of cloud services that Oracle provides to help organizations rapidly build and deploy rich applications – or extend Oracle Cloud Applications – on an enterprise-grade cloud platform.

To extend the security and performance benefits of the Oracle SuperCluster engineered systems to mid-size computing, Oracle has also introduced Oracle MiniCluster S7-2. Through full application and database compatibility with SuperCluster M7, Oracle MiniCluster enables organizations to reduce hardware and software costs at a fraction of the cost of commodity solutions.

The new Oracle Engineered System is designed to support multi-tenant application and/or database consolidation, remote office/branch office computing demands andtest/development environments.

Oracle has also introduced new additions to the SPARC server product line that extend the M7/T7 portfolio to address scale-out and cloud workloads at attractive new low price points.

The new two-socket SPARC S7 serversare available in different configuration options that are optimized for either compute or storage and IO density and include Software in Silicon offload features for malware attack prevention, no compromise encryption and data analytics acceleration.

 

 


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Kaspersky Discovers Vulnerability in Qualcomm Snapdragon Chips that can Lead to Data Loss & Device Compromise

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Kaspersky ICS CERT discovered a hardware-level vulnerability affecting Qualcomm chipsets that are widely used in a range of consumer and industrial devices, including smartphones and tablets, car components, IoT devices and more.

The vulnerability resides in the BootROM – firmware embedded at the hardware level. Attackers could potentially get access to any data stored on the device or device sensors like camera and microphone, implement complicated attack scenarios and in some circumstances get full control of the device. The results of the research were presented at Black Hat Asia 2026.

The vulnerability affects Qualcomm MDM9x07, MDM9x45, MDM9x65, MSM8909, MSM8916, MSM8952 and SDX50 series and was reported to Qualcomm in March 2025. Qualcomm formally acknowledged the vulnerability in April 2025. It has been assigned a CVE-2026-25262. Other Qualcomm-based chips may be affected as well.

Kaspersky researchers explored the Sahara protocol, a low-level communication system used when a Qualcomm chip enters Emergency Download Mode (EDL) – a special recovery mode designed for repairing or restoring smartphones or other devices. Sahara acts as the first step that allows a computer to connect to the device and load software before the operating system on the device starts.

Kaspersky demonstrated that a security flaw in this process could allow an attacker with physical access to the target device to bypass key security protections in the chip, compromise the secure boot chain and, in some cases, deploy malicious applications and backdoors to the chip’s Application Processor, thus fully compromising the entire device.

For example, in cases when the target device is a smartphone or a tablet, the attacker can potentially get access to entered user passwords, and subsequently this opens further access to multiple types of sensitive user data, such as files, contacts, location, access to the devices’ camera and microphone, etc.

A potential attacker only needs a few minutes of physical access to a device to compromise it. Therefore, if a smartphone has been sent for repair or left unattended for a short time, one can no longer be sure it is not infected. Researchers warn that the threat extends beyond end-user scenarios to include potential compromise during the supply chain phase.

“Vulnerabilities like this may allow attackers to deploy malware that is difficult to detect and remove. In practice, this could enable covert data collection or influence device behaviour over extended periods of time.

“While a reboot might seem like an effective way to remove such malware, it cannot always be relied upon: compromised systems may simulate a reboot without actually resetting. In such cases, only a complete loss of power – including battery depletion – guarantees a clean restart,” comments Sergey Anufrienko, security expert at Kaspersky ICS CERT.

Kaspersky advises organisations and individual users to exercise strict physical security control over devices including at the supply, maintenance and decommissioning phases. A reboot of the device by cutting off the power supply to the affected chip (if available) or full battery discharge may help to get rid of the malware if it was installed.


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Survey Shows Gaps in Cybersecurity Policies and Employee Commitment Leave Organisations Vulnerable

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A recent Kaspersky survey entitled “Cybersecurity in the workplace: Employee knowledge and behaviour”, showed that 39% of professionals in the Middle East, Turkiye and Africa (META) region, consider cybersecurity rules in their company to be excessive or not fully appropriate.

While 7% noted that their organisations do not have cybersecurity rules or that they are not aware of them. These results show a disconnect between corporate cybersecurity policies and employee commitment to these rules, underscoring the risks associated with shadow IT and unmanaged device usage in the workplace.

Shadow IT is defined as the use of unauthorised software, devices, or services without IT oversight, and it has evolved into a critical business risk. While often driven by employee productivity needs, it creates blind spots for IT departments.

The rise of hybrid work environments, increased reliance on cloud-based tools and the spread of AI tools have accelerated this trend. Without robust cybersecurity management and oversight, organisations face heightened exposure to ransomware attacks, data leaks, and regulatory penalties.

19% of survey respondents in the META region said there are no policies regarding the use of non-corporate devices in their company. 35% of employees admitted that they can use their own devices to access business information, provided they have some type of cybersecurity protection, even consumer-grade software.

On the positive side, 21% said they can use their own device, but these must first pass more stringent corporate IT security checks; while 25% of respondents indicated that only devices provided by the IT function can be used for work purposes.

The situation is significantly better with permissions for employees to install software on corporate devices without IT department’s approval. 50% reported that only IT specialists in their company are allowed to install software, while in 31% of organisations only top management or designated users can do so. 11% of employees can install software that is approved by the IT team. However, 8% of respondents said that all users can install any software they need without IT agreement in their organisation.

At the same time 21% of professionals surveyed acknowledged that within the past year they installed software on their work devices without IT supervision. That highlights a persistent shadow IT challenge that continues to expose organisations to security vulnerabilities, compliance risks, and data breaches.

“Shadow IT is now a mainstream operational risk. When one in five employees installs software without IT oversight, it signals a policy gap. Many organisations already have security policies in place, but employee perception must also be considered.

Organisations should move beyond restrictive controls and instead implement intelligent, user-centric cybersecurity strategies that combine strategies that integrate technology with employee awareness and responsible use,” said Toufic Derbass, Managing Director for the META region at Kaspersky.

 


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Microsoft Faces £1.7Bn Cloud Lawsuit in UK over Alleged Market Abuse

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Microsoft is facing a £1.7 billion ($2.3 billion) class action lawsuit in the United Kingdom over allegations that it abused its dominant market position in cloud computing.

Microsoft Faces £1.7bn Cloud Lawsuit in UK Over Alleged Market Abuse

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The case, filed before the Competition Appeal Tribunal, was brought by Maria Luisa Stasi on behalf of about 59,000 British businesses and organisations. It alleges that Microsoft unfairly imposed higher costs on customers running its Windows Server software on rival cloud platforms.

Stasi said the company’s practices have had a significant financial impact on both public and private sector organisations over several years.

In allowing the case to proceed, the tribunal ruled that it has a “reasonable prospect of success.” The judges noted that Microsoft is alleged to have abused its dominance in the paid server operating system market to undermine competition in the cloud services space.

If the claim succeeds, compensation for affected organisations is estimated to range between £1.7 billion and £2.1 billion.

Microsoft has rejected the allegations and confirmed it will appeal the ruling. A company spokesperson said the decision does not represent a final judgment on the claims and that it disputes the substance of the case.

The lawsuit comes as regulators in the UK and the European Union intensify scrutiny of Microsoft’s cloud business practices. UK authorities are currently assessing whether the company should be designated as having “strategic market status,” a move that would subject it to stricter competition rules.


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