Tag: Kyle Pillay

  • Feature: The rise of response-ready cybersecurity

    Feature: The rise of response-ready cybersecurity

    By Kyle Pillay

     If there’s one thing the current threat landscape has made clear, it’s that prevention and response readiness aren’t mutually exclusive – instead, you need both. Preventative controls are essential, but the uncomfortable truth is that they’re never a guarantee of protection.

    Phishing is a good example – it’s no longer clumsy or obvious but instead is more sophisticated than ever. Threat actors understand the policies and tooling that organisations use, and they know how certain rules can be relaxed to gain access. Through obfuscation and other techniques, a threat can enter an environment quite legitimately, and preventative controls alone won’t necessarily stop access.

    Data breaches are real. In fact, based on what we’re seeing in the field, they’re happening more often than many organisations would like to admit. It only takes one click – one person – and if your response capability isn’t up to speed at that point, you’re not dealing with a minor issue but a potential catastrophe. 

    From there, every preventative control you’ve invested in can become irrelevant. Your incident response capability needs to kick in immediately: isolate the threat, contain it, and cut off its oxygen supply before it can spread further through the environment.

    So, how do you balance prevention and response? The reality is that you don’t have a choice: one shouldn’t be prioritised over the other, but response is becoming increasingly critical in determining outcomes.

    The discipline of response: practise or pay the price

    Response readiness isn’t something you design once and then forget. It needs to be tested regularly. Ideally, organisations should be running simulations at least monthly, especially against critical applications. It keeps risk top of mind, particularly for people who aren’t security-focused day to day. It also exposes how teams actually respond under pressure and whether your processes are efficient enough.

    Many organisations work towards a four-hour response and resolution window. That means isolating the threat, stabilising the environment and resuming business operations within that timeframe – but you don’t get there by accident. If you don’t practise, you won’t perform when it matters. It’s the same principle as sport; training is what determines whether or not you hit the mark under pressure.

    Ransomware: a clear test of resilience

    Nowhere is the shift from prevention to response more visible than in ransomware attacks. These attacks have evolved rapidly, and they no longer fit neatly into categories like malware, worms or classic ransomware. Today, they’re often a combination of techniques, aimed at locking organisations out of their own information.

    One of the primary attack vectors is still the user, because threats are delivered in ways that appear completely legitimate. Attackers understand the limits of security tools and how far automated scanning typically goes, and they exploit trusted communication channels, sometimes even accounts of colleagues that have been compromised.

    Attackers often begin with credential harvesting. Once they gain access, ransomware may follow, but it’s rarely the first or only stage. Platforms exist that scrape publicly available information from across the internet and social media, building profiles on individuals and organisations. That includes emails, phone numbers, images and employment details. Threat actors then use this information to impersonate people convincingly, sending emails or messages that appear authentic.

    Corporate networks are generally secure, so attackers often target users on mobile devices, where controls are weaker. A seemingly innocent WhatsApp link can expose credentials when protections are absent on laptops. The moment something seems out of character, it’s critical to pause, verify and close the loop. A simple phone call can prevent compromise.

    The key lesson here: ransomware highlights why preparedness and response matter more than prevention alone. Even the most advanced preventive controls can fail, but an organisation that is resilient, well-practised and ready to respond can isolate the threat quickly, contain it, and resume normal business operations without paying the ransom.

    What resilience actually looks like

    A mature ransomware resilience strategy is built on a governance-driven, risk-based approach. It requires due diligence across the organisation, not just within IT. That includes governance checkpoints, policy reviews and alignment with recognised frameworks and standards. It’s about becoming data-centric, understanding where your data resides and ensuring that everything supporting it is secure.

    That means hardened infrastructure, closed ports, patched operating systems and effective vulnerability management to keep systems aligned with best practice and benchmark standards, but it also means something broader: a culture of resilience.

    Ultimately, mature organisations understand the importance of business continuity planning, disaster recovery, regular simulations and ongoing policy reviews. Because resilience isn’t built in a single layer, cybersecurity must put equal focus on people, processes and technology working together. Each of those elements needs equal attention if an organisation wants to build real resilience. 

    If there’s a single shift organisations need to make, it’s to stop thinking purely in terms of prevention and start thinking in terms of preparedness. There’s no way to be 100 per cent safe, but you can be ready and, in today’s environment, readiness is what determines whether an incident becomes a disruption or a full-blown crisis.

    Kyle Pillay is a Security as a Service Manager at Datacentrix

  • Feature: Why attack surface management must look both inside and out

    Feature: Why attack surface management must look both inside and out

    By Kyle Pillay

    Attack surface management (ASM) has grown exponentially in recent years, evolving into a recognised market category that equips businesses with the strategies and visibility needed to protect their digital assets. As Forrester’s Attack Surface Management Solutions Landscape, Q2 2024 notes, ASM “delivers insights on assets that ultimately support business objectives, keep the lights on, generate revenue, and delight customers.”

    At its core, ASM is the process of continuously discovering, identifying, inventorying, and assessing the exposures of an organisation’s IT asset estate; a step that is foundational to maintaining a strong security posture.

    Knowing your environment

    Essentially, ASM assists in ‘knowing your environment’, or identifying the gaps in your defences before an attacker does.

    Every threat actor or hacker starts with reconnaissance – foot printing your external-facing assets. This is why the term External Attack Surface Management (EASM) exists: it focuses on what the attacker sees. Without evaluating your environment through this external lens, you won’t know which access points are visible and exploitable, leaving you unable to proactively detect or prevent threats before they become incidents.

    First steps in protecting your attack surface

    The starting point of ASM is identifying external-facing touchpoints, such as public IPs, domains and so on. For example, you might know your primary domain (e.g. mydomain.co.za), but you also need visibility into similar domains that could be used maliciously, like mydomain.commydomain.net, mydomain.tech, mydomain.ac.za, for instance. The reason is that these can be targeted for domain squatting or cybersquatting, where attackers use similar names to mislead users and set them up for phishing attacks.

    A robust ASM solution not only identifies your current footprint but also pinpoints potentially available domains worth securing before they fall into the wrong hands. 

    And if a deceptive domain does get registered – like mydomain-tech.co.za for example – you need a clear takedown process. International domain takedowns can be complex, requiring a partner who can legally liaise with global registrars in multiple jurisdictions. With the right processes and partnerships, such domains can often be taken down within four to eight hours, helping to limit the potential damage.

    Keeping pace with today’s infrastructure

    One of the biggest challenges in ASM is keeping up with the sheer speed and sprawl of modern IT environments. While there are many tools on the market, there isn’t one capable of fully matching the pace of change. And this is despite the most competitive vendors constantly iterating, often in weekly development sprints, to keep their detection capabilities relevant. 

    In addition to speed, it’s also important to maintain perspective. So, while an organisation might have visibility from one angle, attackers don’t limit themselves to a single viewpoint. To truly defend against modern threats, you need to see your environment the way they do from the outside and understand the vulnerabilities that could be exploited from within. This is where the distinction between external and internal ASM becomes essential.

    External ASM (EASM) focuses on your publicly exposed digital footprint, but internal vulnerabilities can be just as – if not more – dangerous. Internal ASM uses network exposure activity tools to simulate real-world attack techniques, following frameworks such as MITRE ATT&CK, to identify weaknesses from the inside. These simulations check whether known attack methods can bypass security controls; if sensitive data can be exfiltrated; whether passwords are weak or compromised; and if lateral movement is possible within the network.

    Combining internal and external ASM delivers a far more accurate view of your security posture, enabling you to close gaps before they are exploited.

    Making the business case for ASM

    Cost is often a sticking point when it comes to ASM investments, but, when weighed against the reputational and financial impact of a breach – not to mention the risk of sensitive data appearing on the dark web – the case for prevention becomes clear.

    The reality is simple: if you’re not using a combination of internal and external ASM, your organisation is essentially blind to its vulnerabilities. The ability to identify, monitor, and remediate gaps before adversaries exploit them has become a business imperative.

     Kyle Pillay is a Security as a Service Manager at Datacentrix

  • Feature: Avoiding cloud security blind spots in a hybrid IT world

    Feature: Avoiding cloud security blind spots in a hybrid IT world

    By Kyle Pillay

    The acceleration of cloud adoption has brought with it new security challenges for organisations to tackle, particularly pertaining to hybrid and multi-cloud environments.

    Here, a common security misstep is the persistent confusion around who is responsible for what in the cloud. This oversight can open the door to serious vulnerabilities, especially when it comes to misconfigurations and fragmented security policies.

    Mind the gap

    One of the most significant blind spots in public cloud environments is the lack of awareness around the shared responsibility model. Many businesses assume that built-in cloud security tools mean they are fully protected. However, without proper firewall configurations, policy enforcement and additional security layers, critical gaps remain.

    The type of cloud service used, be it Infrastructure as a Service (IaaS), Platform as a Service (PaaS) or Software as a Service (SaaS), determines how security responsibilities are divided. 

    For instance, in a PaaS environment, the cloud provider secures the platform, including networking, IP address management and basic firewall protection (typically at Layer 3). However, the business itself is responsible for provisioning infrastructure, such as storage and compute resources. In addition, applications deployed on PaaS still require additional security measures, such as data encryption and identity management.

    For IaaS, the cloud provider secures infrastructure components, including physical servers, and networking, while companies are accountable for everything above the infrastructure level, including operating systems, applications and data security. No built-in security is provided for applications running on IaaS; businesses must implement their own security controls.

    SaaS offers the most secure out-of-the-box option, as the provider looks after everything from the application layer down. Thus, the customer only needs to manage data security, such as access control, encryption and data-sharing policies.

    The need for unified policies in a multi-cloud reality

    Hybrid and multi-cloud deployments are now becoming the norm, but many businesses struggle to implement a unified security strategy across these environments. 

    Fragmentation is a major concern, and it’s not uncommon to find mismatched policies between on-premises environments and cloud deployments, where organisations have failed to extend their existing security policies to the cloud. This creates inconsistencies that threat actors are quick to exploit.

    Therefore, to build a consistent security posture, businesses must apply the same principles and policies across all platforms. 

    Password complexity requirements, access control rules and firewall configurations should be standardised and synchronised. Monitoring tools and alerting systems also need to operate seamlessly across environments to ensure early detection of potential threats.

    Preventing misconfigurations through proactive management

    With cloud misconfigurations remaining one of the top threats to enterprise security, largely due to human error and weak oversight, security teams must adopt a rigorous vulnerability management approach to mitigate this risk. 

    This involves regular internal and external scans, checking for known common vulnerabilities and exposures (CVEs), and conducting exploit testing. Firewall and application-level testing are also essential, particularly for applications developed and deployed in the cloud.

    The use of Governance, Risk and Compliance (GRC) tools, in conjunction with vulnerability management platforms, provides visibility and control, helping organisations maintain a robust security posture.

    Building a safer cloud strategy

    The cloud isn’t inherently vulnerable, but assuming that it’s secure by default is a risk no organisation can afford to take. Through a proactive, well-informed approach to cloud security, which is grounded in an understanding of service responsibilities and underpinned by consistent policy enforcement, businesses can avoid the blind spots that so often lead to breaches. 

    Kyle Pillay is a Security as a Service Centre Manager at Datacentrix

  • Feature- Digging deeper: cybersecurity concerns mount in mining arena

    Feature- Digging deeper: cybersecurity concerns mount in mining arena

    By Kyle Pillay

    In today’s digital era, the internet’s evolution and technologies like the Internet of Things (IoT) have equalised the cybersecurity landscape. No industry, including the mining sector, is exempt from cyber threats such as phishing, ransomware, malware, and financial scams.

    In fact, cybersecurity has become a significant concern for global mining operations, with organisations including Alamos GoldFreeport and others all recently grappling with the aftereffects of some type of cyberattack.

    High risk, why risk?

    The digitalisation of mining organisations has expanded the attack surface for cyber threats. For instance, cyber attackers might exploit IoT vulnerabilities to manipulate machinery on assembly lines, altering programmable logic controllers (PLCs) that manage various electro-mechanical processes. Such tampering could endanger workers, halt production lines, or even threaten lives, as in cases where heating, ventilation and air conditioning (HVAC) system shutdowns occur due to attacks.

    Moreover, the theft and exposure of data where sensitive employees’ information was leaked onto the dark web, highlight the severe consequences of cyberattacks. Depending on regional regulations like South Africa’s Protection of Personal Information Act (POPIA) or the European Union’s General Data Protection Regulation (GDPR), businesses could face significant fines or even imprisonment for lacking adequate cybersecurity measures.

    OT versus IT

    Operational technology (OT) that is typically used in mines to monitor and control industrial processes is generally manufactured to have a long lifespan. However, today we’re finding that these systems, built to last 20 to 30 years and always operated in segregation, are now being increasingly targeted by cybercriminals.

    Historically, the OT environment has used the Purdue Model, a structural framework for industrial control system (ICS) security that concerns the segmentation of physical processes, sensors, supervisory controls, operations and logistics, to protect OT equipment from malware and other attacks. However, this model, developed in the 1990s, does not address some of the more modern challenges and requirements of ICS environments, such as the growing interconnectedness of OT and IT, with its broader attack surface, and the ongoing emergence of new, more sophisticated cyberthreats.

    Exploring cybersecurity options

    To enhance their defence against cyber threats, mining organisations can explore various cybersecurity solutions.

    Managing the OT stack with dedicated software can provide some protection and highlight areas for improvement through key performance indicators. Virtual patching and implementing a Web Application Firewall (WAF) can protect application layers while maintaining network segmentation, thus reducing IT risks.

    From a data protection point of view, there are several solutions and processes that could be rolled out by mining organisations to assist with the safe gathering and analysing of data from equipment out in the field. For instance, identity access and management (IAM) is key. An IAM solution would ensure that only the right people have access to devices and are able to bring data back into the environment for analysis. Multifactor authentication (MFA) is also critical here, to ensure that users are not being spoofed – where an unknown source poses as a known, trusted source – or impersonated by a cybercriminal.

    In addition,safeguarding against insider threats is another critical area to be investigated. Here, data loss prevention (DLP) is critical to circumventing threats from within the business, motivated potentially by greed or malice, or even just attributed to carelessness. DLP assists with data classification. This type of solution helps to determine data classification; identifying and helping to prevent the unsafe or inappropriate sharing, transfer or use of sensitive data. For example, DLP can determine whether a user is allowed only to upload information to a database, or if they may also email it.

    In this ongoing battle for digital resilience, Datacentrix offers comprehensive services and solutions designed to navigate the complexities of modern mining operations, helping these organisations to confront the cybersecurity challenges of today and emerge stronger, more secure and better prepared for the challenges of tomorrow.

     Kyle Pillay is the Security Operations Centre (SOC) Manager at Datacentrix