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Before yesterdaySecurity

THN Webinar: Inside the High Risk of 3rd-Party SaaS Apps

By The Hacker News
Any app that can improve business operations is quickly added to the SaaS stack. However, employees don't realize that this SaaS-to-SaaS connectivity, which typically takes place outside the view of the security team, significantly increases risk. Whether employees connect through Microsoft 365, Google Workspace, Slack, Salesforce, or any other app, security teams have no way to quantify their

TikTok Paid for Influencers to Attend the Pro-TikTok Rally in DC

By Matt Laslo
The embattled social media company brought out the checkbook to ensure at least 30 of its biggest assets—creators—were in DC to help fend off critics.

Why You Should Opt Out of Sharing Data With Your Mobile Provider

By BrianKrebs

A new breach involving data from nine million AT&T customers is a fresh reminder that your mobile provider likely collects and shares a great deal of information about where you go and what you do with your mobile device — unless and until you affirmatively opt out of this data collection. Here’s a primer on why you might want to do that, and how.

Image: Shutterstock

Telecommunications giant AT&T disclosed this month that a breach at a marketing vendor exposed certain account information for nine million customers. AT&T said the data exposed did not include sensitive information, such as credit card or Social Security numbers, or account passwords, but was limited to “Customer Proprietary Network Information” (CPNI), such as the number of lines on an account.

Certain questions may be coming to mind right now, like “What the heck is CPNI?” And, ‘If it’s so ‘customer proprietary,’ why is AT&T sharing it with marketers?” Also maybe, “What can I do about it?” Read on for answers to all three questions.

AT&T’s disclosure said the information exposed included customer first name, wireless account number, wireless phone number and email address. In addition, a small percentage of customer records also exposed the rate plan name, past due amounts, monthly payment amounts and minutes used.

CPNI refers to customer-specific “metadata” about the account and account usage, and may include:

-Called phone numbers
-Time of calls
-Length of calls
-Cost and billing of calls
-Service features
-Premium services, such as directory call assistance

According to a succinct CPNI explainer at TechTarget, CPNI is private and protected information that cannot be used for advertising or marketing directly.

“An individual’s CPNI can be shared with other telecommunications providers for network operating reasons,” wrote TechTarget’s Gavin Wright. “So, when the individual first signs up for phone service, this information is automatically shared by the phone provider to partner companies.”

Is your mobile Internet usage covered by CPNI laws? That’s less clear, as the CPNI rules were established before mobile phones and wireless Internet access were common. TechTarget’s CPNI primer explains:

“Under current U.S. law, cellphone use is only protected as CPNI when it is being used as a telephone. During this time, the company is acting as a telecommunications provider requiring CPNI rules. Internet use, websites visited, search history or apps used are not protected CPNI because the company is acting as an information services provider not subject to these laws.”

Hence, the carriers can share and sell this data because they’re not explicitly prohibited from doing so. All three major carriers say they take steps to anonymize the customer data they share, but researchers have shown it is not terribly difficult to de-anonymize supposedly anonymous web-browsing data.

“Your phone, and consequently your mobile provider, know a lot about you,” wrote Jack Morse for Mashable. “The places you go, apps you use, and the websites you visit potentially reveal all kinds of private information — e.g. religious beliefs, health conditions, travel plans, income level, and specific tastes in pornography. This should bother you.”

Happily, all of the U.S. carriers are required to offer customers ways to opt out of having data about how they use their devices shared with marketers. Here’s a look at some of the carrier-specific practices and opt-out options.

AT&T

AT&T’s policy says it shares device or “ad ID”, combined with demographics including age range, gender, and ZIP code information with third parties which explicitly include advertisers, programmers, and networks, social media networks, analytics firms, ad networks and other similar companies that are involved in creating and delivering advertisements.

AT&T said the data exposed on 9 million customers was several years old, and mostly related to device upgrade eligibility. This may sound like the data went to just one of its partners who experienced a breach, but in all likelihood it also went to hundreds of AT&T’s partners.

AT&T’s CPNI opt-out page says it shares CPNI data with several of its affiliates, including WarnerMedia, DirecTV and Cricket Wireless. Until recently, AT&T also shared CPNI data with Xandr, whose privacy policy in turn explains that it shares data with hundreds of other advertising firms. Microsoft bought Xandr from AT&T last year.

T-MOBILE

According to the Electronic Privacy Information Center (EPIC), T-Mobile seems to be the only company out of the big three to extend to all customers the rights conferred by the California Consumer Privacy Act (CCPA).

EPIC says T-Mobile customer data sold to third parties uses another unique identifier called mobile advertising IDs or “MAIDs.” T-Mobile claims that MAIDs don’t directly identify consumers, but under the CCPA MAIDs are considered “personal information” that can be connected to IP addresses, mobile apps installed or used with the device, any video or content viewing information, and device activity and attributes.

T-Mobile customers can opt out by logging into their account and navigating to the profile page, then to “Privacy and Notifications.” From there, toggle off the options for “Use my data for analytics and reporting” and “Use my data to make ads more relevant to me.”

VERIZON

Verizon’s privacy policy says it does not sell information that personally identities customers (e.g., name, telephone number or email address), but it does allow third-party advertising companies to collect information about activity on Verizon websites and in Verizon apps, through MAIDs, pixels, web beacons and social network plugins.

According to Wired.com’s tutorial, Verizon users can opt out by logging into their Verizon account through a web browser or the My Verizon mobile app. From there, select the Account tab, then click Account Settings and Privacy Settings on the web. For the mobile app, click the gear icon in the upper right corner and then Manage Privacy Settings.

On the privacy preferences page, web users can choose “Don’t use” under the Custom Experience section. On the My Verizon app, toggle any green sliders to the left.

EPIC notes that all three major carriers say resetting the consumer’s device ID and/or clearing cookies in the browser will similarly reset any opt-out preferences (i.e., the customer will need to opt out again), and that blocking cookies by default may also block the opt-out cookie from being set.

T-Mobile says its opt out is device-specific and/or browser-specific. “In most cases, your opt-out choice will apply only to the specific device or browser on which it was made. You may need to separately opt out from your other devices and browsers.”

Both AT&T and Verizon offer opt-in programs that gather and share far more information, including device location, the phone numbers you call, and which sites you visit using your mobile and/or home Internet connection. AT&T calls this their Enhanced Relevant Advertising Program; Verizon’s is called Custom Experience Plus.

In 2021, multiple media outlets reported that some Verizon customers were being automatically enrolled in Custom Experience Plus — even after those customers had already opted out of the same program under its previous name — “Verizon Selects.”

If none of the above opt out options work for you, at a minimum you should be able to opt out of CPNI sharing by calling your carrier, or by visiting one of their stores.

THE CASE FOR OPTING OUT

Why should you opt out of sharing CPNI data? For starters, some of the nation’s largest wireless carriers don’t have a great track record in terms of protecting the sensitive information that you give them solely for the purposes of becoming a customer — let alone the information they collect about your use of their services after that point.

In January 2023, T-Mobile disclosed that someone stole data on 37 million customer accounts, including customer name, billing address, email, phone number, date of birth, T-Mobile account number and plan details. In August 2021, T-Mobile acknowledged that hackers made off with the names, dates of birth, Social Security numbers and driver’s license/ID information on more than 40 million current, former or prospective customers who applied for credit with the company.

Last summer, a cybercriminal began selling the names, email addresses, phone numbers, SSNs and dates of birth on 23 million Americans. An exhaustive analysis of the data strongly suggested it all belonged to customers of one AT&T company or another. AT&T stopped short of saying the data wasn’t theirs, but said the records did not appear to have come from its systems and may be tied to a previous data incident at another company.

However frequently the carriers may alert consumers about CPNI breaches, it’s probably nowhere near often enough. Currently, the carriers are required to report a consumer CPNI breach only in cases “when a person, without authorization or exceeding authorization, has intentionally gained access to, used or disclosed CPNI.”

But that definition of breach was crafted eons ago, back when the primary way CPNI was exposed was through “pretexting,” such when the phone company’s employees are tricked into giving away protected customer data.

In January, regulators at the U.S. Federal Communications Commission (FCC) proposed amending the definition of “breach” to include things like inadvertent disclosure — such as when companies expose CPNI data on a poorly-secured server in the cloud. The FCC is accepting public comments on the matter until March 24, 2023.

While it’s true that the leak of CPNI data does not involve sensitive information like Social Security or credit card numbers, one thing AT&T’s breach notice doesn’t mention is that CPNI data — such as balances and payments made — can be abused by fraudsters to make scam emails and text messages more believable when they’re trying to impersonate AT&T and phish AT&T customers.

The other problem with letting companies share or sell your CPNI data is that the wireless carriers can change their privacy policies at any time, and you are assumed to be okay with those changes as long as you keep using their services.

For example, location data from your wireless device is most definitely CPNI, and yet until very recently all of the major carriers sold their customers’ real-time location data to third party data brokers without customer consent.

What was their punishment? In 2020, the FCC proposed fines totaling $208 million against all of the major carriers for selling their customers’ real-time location data. If that sounds like a lot of money, consider that all of the major wireless providers reported tens of billions of dollars in revenue last year (e.g., Verizon’s consumer revenue alone was more than $100 billion last year).

If the United States had federal privacy laws that were at all consumer-friendly and relevant to today’s digital economy, this kind of data collection and sharing would always be opt-in by default. In such a world, the enormously profitable wireless industry would likely be forced to offer clear financial incentives to customers who choose to share this information.

But until that day arrives, understand that the carriers can change their data collection and sharing policies when it suits them. And regardless of whether you actually read any notices about changes to their privacy policies, you will have agreed to those changes as long as you continue using their service.

Chinese Hackers Exploit Fortinet Zero-Day Flaw for Cyber Espionage Attack

By Ravie Lakshmanan
The zero-day exploitation of a now-patched medium-severity security flaw in the Fortinet FortiOS operating system has been linked to a suspected Chinese hacking group. American cybersecurity company Mandiant, which made the attribution, said the activity cluster is part of a broader campaign designed to deploy backdoors onto Fortinet and VMware solutions and maintain persistent access to victim

Iranian Hackers Target Women Involved in Human Rights and Middle East Politics

By Ravie Lakshmanan
Iranian state-sponsored actors are continuing to engage in social engineering campaigns targeting researchers by impersonating a U.S. think tank. "Notably the targets in this instance were all women who are actively involved in political affairs and human rights in the Middle East region," Secureworks Counter Threat Unit (CTU) said in a report shared with The Hacker News. The cybersecurity

New Critical Flaw in FortiOS and FortiProxy Could Give Hackers Remote Access

By Ravie Lakshmanan
Fortinet has released fixes to address 15 security flaws, including one critical vulnerability impacting FortiOS and FortiProxy that could enable a threat actor to take control of affected systems. The issue, tracked as CVE-2023-25610, is rated 9.3 out of 10 for severity and was internally discovered and reported by its security teams. "A buffer underwrite ('buffer underflow') vulnerability in

CISA Issues Warning on Active Exploitation of ZK Java Web Framework Vulnerability

By Ravie Lakshmanan
The U.S. Cybersecurity and Infrastructure Security Agency (CISA) has added a high-severity flaw affecting the ZK Framework to its Known Exploited Vulnerabilities (KEV) catalog based on evidence of active exploitation. Tracked as CVE-2022-36537 (CVSS score: 7.5), the issue impacts ZK Framework versions 9.6.1, 9.6.0.1, 9.5.1.3, 9.0.1.2, and 8.6.4.1, and allows threat actors to retrieve sensitive

Threat Actors Adopt Havoc Framework for Post-Exploitation in Targeted Attacks

By Ravie Lakshmanan
An open source command-and-control (C2) framework known as Havoc is being adopted by threat actors as an alternative to other well-known legitimate toolkits like Cobalt Strike, Sliver, and Brute Ratel. Cybersecurity firm Zscaler said it observed a new campaign in the beginning of January 2023 targeting an unnamed government organization that utilized Havoc. "While C2 frameworks are prolific, the

The Future of Network Security: Predictive Analytics and ML-Driven Solutions

By The Hacker News
As the digital age evolves and continues to shape the business landscape, corporate networks have become increasingly complex and distributed. The amount of data a company collects to detect malicious behaviour constantly increases, making it challenging to detect deceptive and unknown attack patterns and the so-called "needle in the haystack". With a growing number of cybersecurity threats,

3 Overlooked Cybersecurity Breaches

By The Hacker News
Here are three of the worst breaches, attacker tactics and techniques of 2022, and the security controls that can provide effective, enterprise security protection for them. #1: 2 RaaS Attacks in 13 Months Ransomware as a service is a type of attack in which the ransomware software and infrastructure are leased out to the attackers. These ransomware services can be purchased on the dark web from

Critical Infrastructure at Risk from New Vulnerabilities Found in Wireless IIoT Devices

By Ravie Lakshmanan
A set of 38 security vulnerabilities has been uncovered in wireless industrial internet of things (IIoT) devices from four different vendors that could pose a significant attack surface for threat actors looking to exploit operational technology (OT) environments. "Threat actors can exploit vulnerabilities in Wireless IIoT devices to gain initial access to internal OT networks," Israeli

Hackers Exploit Vulnerabilities in Sunlogin to Deploy Sliver C2 Framework

By Ravie Lakshmanan
Threat actors are leveraging known flaws in Sunlogin software to deploy the Sliver command-and-control (C2) framework for carrying out post-exploitation activities. The findings come from AhnLab Security Emergency response Center (ASEC), which found that security vulnerabilities in Sunlogin, a remote desktop program developed in China, are being abused to deploy a wide range of payloads. "Not

Cisco secures IoT, keeping security closer to networking

By Vibhuti Garg

The use of unmanaged and IoT devices in enterprises is growing exponentially, and will account for 55.7 billion connected devices by the end of 2025. A critical concern is deploying IoT devices without requisite security controls. 

While these numbers are numbing, their reality is undeniable. 90% of customers believe digitization has accelerated the importance placed upon security. The World Economic Forum now lists cybersecurity failure as a critical threat, and estimates a gap of more than 3 million security experts worldwide, hindering secure deployments at scale. Furthermore, 83% of IoT-based transactions happen over plaintext channels and not SSL, making them especially risky. 

Cisco’s solution  

Securing an IoT device can be achieved either through securing the IoT device itself, or hardening the network it accesses. Securing devices can be cumbersome, requiring complex manufacturing partnerships and increasing unit prices, thereby reducing adoption. On the other hand, securing the network is always desirable as it helps secure access, encrypt traffic, and ease management.  

Being a leader in both security and networking, Cisco continues to bring security closer to networking, providing the network with built-in security, and enabling the network to act both as sensor and as an enforcer. The convergence of security and networking leverages the network’s intelligence and visibility to enable more-informed decisions on policy and threats. 

Cisco uniquely integrates security and networking, for instance we recently integrated Cisco Secure Firewall to operate on Cisco Catalyst 9000 Series switches. Additionally, Secure Firewall can be deployed in a containerized form, on-premises and in clouds. Cisco Secure Firewall classifies traffic and protects applications while stopping exploitation of vulnerable systems. Additionally, we offer Identity Services Engine with AI Endpoint Analytics to passively identify IoT devices and apply segmentation policies. Furthermore, Cisco offers management flexibility by integrating with Cisco Defense Orchestrator and DNA Center and with existing customer tools like SIEMs and XDRs. 

Let’s look at three use cases where the addition of Secure Firewall capability on Catalyst 9000 Series switches solves real world problems: 

Use case 1: Securing the Smart Building: This solution is ideal to secure smart buildings, converging various IoT systems into a single IT-managed network infrastructure. Smart buildings lower the operational and energy costs. Smarter building systems, however, pose serious security risks as these include so many unmanaged devices such as window shades, lighting, tailored HVAC, and more. One of the methods to secure smart buildings is to control access to avoid manipulation of sensors. Such control is attained with a networking switch with enhanced firewall capability. The firewall ensures granular segmentation, directing policies for traffic generated out of IoT devices, providing access to the right users. This integration also brings security closer to endpoints, making policy orchestration simpler. 

Use Case 2: Centrally manage isolated IoT network clusters: IoT devices which communicate with each other in the same subnet typically cannot be routed, which is a challenge. By default, most IoT networks are configured in the same subnet, making it difficult to manage them centrally. Administrators are forced to physically connect to the IoT network to manage and collect telemetry. Furthermore, IoT vendors often charge hefty amounts to update IP addresses of devices. Cisco Secure Firewall, hosted on the Catalyst switch, solves this problem and not only inspects traffic from the IoT network but also translates duplicate IoT IP addresses to unique global IP addresses using NAT for centralized management of isolated IoT networks.  

Use Case 3: Securely encrypt IoT traffic passing through a shared IT network: At airports, for example, multiple vendors manage unique systems such as baggage, air quality, biometric access control, etc, which share a common network. IoT traffic is usually in plain text, making it susceptible to packet sniffing, eavesdropping, man-in-the-middle attacks, and other such exploits. The IPSec capability on Cisco Secure Firewall encrypts IoT traffic, securing data transfer and reducing risk.  

Cisco’s IoT initiatives join the once disconnected worlds of IT and IoT, unifying networking and security. For further details refer to the At-A Glance and see how and an Australian oil company, Ampol, fortified its retail IoT with Cisco Secure! 


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New High-Severity Vulnerabilities Discovered in Cisco IOx and F5 BIG-IP Products

By Ravie Lakshmanan
F5 has warned of a high-severity flaw impacting BIG-IP appliances that could lead to denial-of-service (DoS) or arbitrary code execution. The issue is rooted in the iControl Simple Object Access Protocol (SOAP) interface and affects the following versions of BIG-IP - 13.1.5 14.1.4.6 - 14.1.5 15.1.5.1 - 15.1.8 16.1.2.2 - 16.1.3, and 17.0.0 "A format string vulnerability exists in iControl SOAP

Building a secure and scalable multi-cloud environment with Cisco Secure Firewall Threat Defense on Alkira Cloud

By Anubhav Swami

In today’s security climate, NetOps and SecOps teams are witnessing increased attack surface area as applications and workloads move far beyond the boundaries of their data center. These applications/workloads move to, and reside in multi-cloud architecture, adding complexity to connectivity, visibility, and control. In the multi-cloud world, the SecOps teams use a distributed security model that is expensive, difficult to deploy, and complex to manage.

Cisco has partnered with Alkira to help secure your multi-cloud environment. Combining Alkira’s simplified cloud connection through their cloud network-as-a-service platform (SaaS-like model) with Cisco’s industry-leading security controls, we can deliver a centralized security model for multi-cloud architecture that is easy to deploy, manage, and increases visibility and control.

Cisco Secure Firewall Threat Defense Virtual provides unmatched security controls such as stateful firewalling, Snort3 IPS, URL filtering, malware defense, application visibility and control, and more. Additionally, with the purchase of Secure Firewall Threat Defense Virtual, you will receive license entitlement to Cisco SecureX, our open XDR and orchestration platform, helping you accelerate threat detection, investigation, and remediation.

Cisco Secure Firewall Management Center (FMC) is required for managing Secure Firewall Threat Defense Virtual, helping administrators enforce consistent access policies, rapidly troubleshoot security events, and view summarized reports across the deployment.

Secure Firewall Threat Defense Virtual is available on Alkira’s service marketplace through Bring-Your-Own-License (BYOL) and Pay-As-You-Go licensing options. Customers can seamlessly deploy and insert Secure Firewall in their Alkira Cloud Exchange Points (CXP).

Benefits of this integrated architecture include:

  • Simplified network and security architecture: Leverage fully automated insertion and service-chaining of Secure Firewall in a centralized security model for a streamlined network and security architecture.
  • Deeper visibility and control in multi-cloud environments: Enjoy simplified firewall insertion in a centralized security model to achieve both north-south and east-west traffic inspection capability for multi-cloud environments.
  • Unified security policy: Uniformly enforce firewall security policy across on-premises, cloud, and multi-cloud environments.
  • Greater visibility: Cloud-agnostic security controls offer deeper visibility and control across all platforms
  • Auto-scale: Cisco Secure Firewall provides a flexible architecture that can automatically scale with the network load to meet demand. The auto-scaled firewall instance receives the configuration and licenses automatically (Cisco Secure Firewall Threat Defense auto-scale coming in Q2CY23).

The Cisco Secure Firewall Threat Defense brings the following capabilities to the environment:

  • Stateful Firewall Inspection
  • Application Visibility & Control
  • Next-Generation Intrusion Prevention System (IPS)
  • URL Filtering
  • Malware Defense
  • Encrypted Traffic Visibility

Figure 1: Multi-cloud security architecture in Alkira Cloud Exchange Point with Cisco Secure Firewall

Figure 1 shows a multi-cloud environment inter-connected using Alkira Cloud Exhange Platform (CXP). In the above architecture, Cisco provides seamless insertion of security controls and enables the following use cases for firewall insertion:

  • Multicloud Security: Cisco Secure Firewall Threat Defense provides a centralized security model that enables better security controls, visibility, and network segmentation. This deployment offers north-south (N/S) and east-west (E/W) traffic inspection models.
  • Branch Security: Alkira Cloud Exchange Platform (CXP) connects branches and Cisco Secure Firewall Threat Defense protects N/S and E/W branch traffic.
  • Secure Internet Edge: Deployment of Cisco Secure Firewall inside CXP enables secure Internet edge for inbound and outbound Internet traffic.
  • Cloud DMZ: Enforce ingress firewall security policy for application traffic between remote users and Internet-facing applications deployed in the on-premises data centers or cloud environments.
  • Shared Application Services: Enforce firewall security policy for cross-segment application traffic in cases of business partner integration, mergers, acquisitions, and divestitures.

Firewall Insertion made easy

Using Alkira’s customer portal, Cisco Secure Firewall Threat Defense Virtual can be easily inserted in the traffic path within minutes. Figure 2 shows how automation & orchestration eliminates additional configuration required in the legacy insertion model.

Figure 2: Cisco Secure Firewall Threat Defense Virtual insertion

Management Options

Cisco Secure Firewall Threat Defense Virtual is managed using Cisco Secure Firewall Management Center (FMC). Customers can use on-premises FMC or build a virtual FMC instance in the cloud. Cisco and Alkira support both models of deployment.

Insertion models

Cisco Secure Firewall Threat Defense Virtual protects the following traffic flows in Alkira CXP:

  • Cloud to cloud (intra & Inter-cloud)
  • Cloud to on-premises
  • Cloud to Internet
  • On-premises to cloud
  • On-premises to Internet
  • Internet to on-premises
  • Branch to branch
  • Branch to Internet
  • Internet to branch

Alkira and Cisco’s partnership simplifies the deployment of enterprise-grade security in the cloud while enabling multi-cloud visibility and end-to-end threat defense for customers.

Additional Resources:

Cisco Secure Firewall Threat Defense

Cisco Secure Firewall Data Sheet

Cisco Secure Firewall Management Center

Alkira

Alkira Service Marketplace

Alkira blog on Cisco Secure Firewall Threat Defense


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10 Surprises of Remote Work from Security Engineers

By Mary Kate Schmermund

For Cisco engineers working on Duo, having a remote-first workplace has helped them reach life goals, connect with colleagues around the world, and be intentional communicators. We understand that working remotely can be an adjustment — that’s why we’ve compiled the 10 parts of remote work that surprised our team members most and their advice for navigating the nuances. If you’re interested in being part of a remote-first workplace, check out our open positions.

1. More perspectives make a positive impact on the product

Senior Engineering Leader David Rines has worked remotely for the past seven years. He’s found that Cisco’s approach to distributed teams has “enabled us to pick up the right talent, and not necessarily local talent. We are moving towards a global, follow the sun environment,” he said.

One of the aspects Rines appreciates most of this structure is getting “a widely varied set of perspectives and experiences that help build a more reliable, more robust product, which is why we’re here.”

Another benefit to having colleagues across the globe is the sharing of recipes, a perk Senior Site Reliability Engineer Bernard Ting particularly enjoys. Proactively communicating with colleagues virtually “helps you to form bonds with people from other teams. You can always learn something new about cultures elsewhere. I talk to people about food and so I’m always gathering recipes from people from all over the world,” Ting shared.

2. Gathering virtually inspires collaborative problem-solving

While some may fear that working remotely could lead to feelings of isolation and loneliness, a different camaraderie can flourish in the structure of our distributed teams. With colleagues across time zones, “there’s always someone there who you can reach out to help solve your problem,” Rines said.

Collaboration hours are another way Site Reliability Engineering Manager Jaya Sistla has cultivated virtual community and problem-solving. These hours are blocked off for team members to talk about what they’re working on. “The main thing is being able to ask for help so you don’t go into the rabbit hole debugging things,” Sistla said.

Ting points out that working in a distributed model allows you to really engage in virtual events and conversations. Given that the team mainly communicates through online chat, Ting has found that “forces you to see everyone as equally approachable, which has made me more comfortable reaching out to people from anywhere in the world.”

3. Intentional online socializing strengthens teams working remotely

For folks sharing an office, collaboration can happen through casual chats over coffee. When facing a challenge, you can ask your neighbor for support. While ideally virtual communication could have a similar cadence and spontaneity, the logistics of remote and distributed work require intentionality and being proactive in connecting with colleagues as people and as co-workers.

When Ting first started working remotely, he felt that every meeting needed to be formal and have a business objective. By sharing his feelings with his manager, he was reassured that “socializing is a very important part of teamwork, because if you don’t have a good relationship with your colleagues you’re not going to be able to have healthy discussions, healthy conflict or be able to critique each other when the situation arises.”

Since that conversation, Ting has been more proactive about catching up with colleagues, which can include sharing a coffee over video chat. Duo’s “coffee roulette” formalizes the process as every month, employees who opt in can be randomly paired up for a quick half-hour chat focused exclusively on socializing. Ting has found being proactive about socializing virtually helpful. “It’s made me more intentional with my time and really treasure the social experience you can get,” he said.

4. Remote management + training can be effective

Some folks may be concerned that without a manager observing their efforts and work ethic day in and day out, it may be harder to recognize accomplishments and challenges. Ting found that within his team “when you work on projects and in your one-on-ones with your managers, they’re always very intentional about learning what you’ve been doing and seeing what your progress is like on certain projects. I’ve been asked, ‘How do you think you can improve? What are some of the things you’ve been doing outside of the team work?’”

To cultivate cross-team collaboration and education, there are thoughtfully planned virtual lunch and learns. “We schedule training sessions and common meetings at times that are flexible for everyone. If it has to be repeated, we do it so people can comfortably attend rather than stretching themselves and attending at odd hours,” Sistla said.

5. Informal communication = hugely important [bonus points for individualized emojis]

For Software Engineer Nick Aspinall, an important and fun part of working remotely is keeping in touch with virtual messaging. One unique perk has been getting to create and customize emojis with team members including a few of himself in “various ridiculous states,” he said.

Connecting with colleagues on themed channels focused on personal and professional interests from coffee to pets “makes it really cool because you can meet people across different teams and still get some of the feeling of rubbing elbows that you get when you’re in the office,” Aspinall said. Participating in these virtual conversations boosts morale while also providing an endless supply of cute animal pics.

6. Conveying different information requires different formats

Given the multi-faceted nature of our work and the importance of consistent information sharing, having different communication channels and formats to communicate data with varying degrees of complexity is vital. Having information readily accessible, accurate and updated is particularly necessary in a field like cybersecurity.

Senior Software Engineer Mario Lopez finds that the variety of information sources contributes to an easeful remote working experience. For instance, for complex architecture decisions or detailing, Duo’s Wiki is the best source.

Software Engineer Hanna Fernandez has benefited from chat channels dedicated to design and engineering topics to “see what everyone’s up to and what thoughts people have,” she said. Sista pointed out these are great places to ask questions and open up dialogue to solve problems.

7. Video-on culture increases empathy and smiles

Our culture is “video-on,” meaning that it is preferred that during video meetings, as much as possible, attendees have their cameras on. Lopez loves this because “you get a bit of that personal human element.”

“We’re all people behind these screens. You definitely get some of people’s personality through text, but you get it more when you actually see them. It’s infectious when you see someone smiling. You’ve got to smile back,” he shared (while we both smiled).

8. Small talk matters

When Fernandez started at Cisco, she was advised to schedule individual meetings with everyone she would be working with on every team that she joined. That suggestion is one she’s applied even virtually.

“It’s a great strategy because I already know that my team is super talented and very smart, but this way I also get to know them as humans beyond their roles,” Fernandez said. Fernandez also finds it important to check in with co-workers and ask how they’re feeling and how their time off was. “I know a lot of people hate small talk, but it’s not just small talk. I’m genuinely interested in how my co-workers are doing.”

9. Life goals can more easily become reality

One of Ting’s biggest goals was buying his first house in the countryside outside of London. By working remotely, Ting has flexibility in his location which allowed him to achieve his goal of buying a house and settling down with his partner, while giving their dogs the space they need to be dogs.

remote

10. Take time to transition as an engineer working remotely

When transitioning from fully remote to hybrid, it’s important to recognize that there will be some shifts to get accustomed to. As the structures of remote, distributed and hybrid work evolve, it’s important to stay flexible and notice what’s possible through multiple modalities of team building. Many teams have enjoyed in-person gatherings and connecting through virtual lunches and team games when remote.

Fernandez has had multiple roles with multiple structures at Cisco. As an intern, she was fully in person and shared desk space with other interns who collaborated on full stack engineering. While working in finance IT, Fernandez was hybrid and many of her colleagues were distributed among multiple offices. The pandemic began while she was in a DevOps role, forcing her to maintain boundaries around her work time while working fully remotely. In her current role working on Duo, Fernandez is completely remote but advocates for in-person events if possible, because “humans are social creatures who want to see each other’s faces in real life once in a while.”

For Aspinall, “when we did come back to the office, there was a bit of an adjustment period where you were overstimulated from the office.” He also wanted to ensure team members who were 100% remote were fully included. Now he sees that while half his team is fully remote and the other half is hybrid, “that doesn’t stop anyone from doing anything. All of our meetings feel the same. They’re all seamless.”

If you’re interested in joining our team from wherever you are in the world, check out our open roles.

 


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Realtek Vulnerability Under Attack: Over 134 Million Attempts to Hack IoT Devices

By Ravie Lakshmanan
Researchers are warning about a spike in exploitation attempts weaponizing a now-patched critical remote code execution flaw in Realtek Jungle SDK since the start of August 2022. According to Palo Alto Networks Unit 42, the ongoing campaign is said to have recorded 134 million exploit attempts as of December 2022, with 97% of the attacks occurring in the past four months. Close to 50% of the

Researchers Uncover Connection b/w Moses Staff and Emerging Abraham's Ax Hacktivists Group

By Ravie Lakshmanan
New research has linked the operations of a politically motivated hacktivist group known as Moses Staff to another nascent threat actor named Abraham's Ax that emerged in November 2022. This is based on "several commonalities across the iconography, videography, and leak sites used by the groups, suggesting they are likely operated by the same entity," Secureworks Counter Threat Unit (CTU) said 

Roaming Mantis Spreading Mobile Malware That Hijacks Wi-Fi Routers' DNS Settings

By Ravie Lakshmanan
Threat actors associated with the Roaming Mantis attack campaign have been observed delivering an updated variant of their patent mobile malware known as Wroba to infiltrate Wi-Fi routers and undertake Domain Name System (DNS) hijacking. Kaspersky, which carried out an analysis of the malicious artifact, said the feature is designed to target specific Wi-Fi routers located in South Korea.

Iranian Government Entities Under Attack by New Wave of BackdoorDiplomacy Attacks

By Ravie Lakshmanan
The threat actor known as BackdoorDiplomacy has been linked to a new wave of attacks targeting Iranian government entities between July and late December 2022. Palo Alto Networks Unit 42, which is tracking the activity under its constellation-themed moniker Playful Taurus, said it observed the government domains attempting to connect to malware infrastructure previously identified as associated

Critical Security Vulnerabilities Discovered in Netcomm and TP-Link Routers

By Ravie Lakshmanan
Security vulnerabilities have been disclosed in Netcomm and TP-Link routers, some of which could be weaponized to achieve remote code execution. The flaws, tracked as CVE-2022-4873 and CVE-2022-4874, concern a case of stack-based buffer overflow and authentication bypass and impact Netcomm router models NF20MESH, NF20, and NL1902 running firmware versions earlier than R6B035. "The two

Cisco Issues Warning for Unpatched Vulnerabilities in EoL Business Routers

By Ravie Lakshmanan
Cisco has warned of two security vulnerabilities affecting end-of-life (EoL) Small Business RV016, RV042, RV042G, and RV082 routers that it said will not be fixed, even as it acknowledged the public availability of proof-of-concept (PoC) exploit. The issues are rooted in the router's web-based management interface, enabling a remote adversary to sidestep authentication or execute malicious

Beware: Tainted VPNs Being Used to Spread EyeSpy Surveillanceware

By Ravie Lakshmanan
Tainted VPN installers are being used to deliver a piece of surveillanceware dubbed EyeSpy as part of a malware campaign that started in May 2022. It uses "components of SecondEye – a legitimate monitoring application – to spy on users of 20Speed VPN, an Iranian-based VPN service, via trojanized installers," Bitdefender said in an analysis. A majority of the infections are said to originate in

Hackers Using CAPTCHA Bypass Tactics in Freejacking Campaign on GitHub

By Ravie Lakshmanan
A South Africa-based threat actor known as Automated Libra has been observed employing CAPTCHA bypass techniques to create GitHub accounts in a programmatic fashion as part of a freejacking campaign dubbed PURPLEURCHIN. The group "primarily targets cloud platforms offering limited-time trials of cloud resources in order to perform their crypto mining operations," Palo Alto Networks Unit 42

The FBI's Perspective on Ransomware

By The Hacker News
Ransomware: contemporary threats, how to prevent them and how the FBI can help In April 2021, Dutch supermarkets faced a food shortage. The cause wasn't a drought or a sudden surge in the demand for avocados. Rather, the reason was a ransomware attack. In the past years, companies, universities, schools, medical facilities and other organizations have been targeted by ransomware threat actors,

Synology Releases Patch for Critical RCE Vulnerability Affecting VPN Plus Servers

By Ravie Lakshmanan
Synology has released security updates to address a critical flaw impacting VPN Plus Server that could be exploited to take over affected systems. Tracked as CVE-2022-43931, the vulnerability carries a maximum severity rating of 10 on the CVSS scale and has been described as an out-of-bounds write bug in the remote desktop functionality in Synology VPN Plus Server. Successful exploitation of the

Russian Hackers Targeted Petroleum Refinery in NATO Country During Ukraine War

By Ravie Lakshmanan
The Russia-linked Gamaredon group attempted to unsuccessfully break into a large petroleum refining company within a NATO member state earlier this year amid the ongoing Russo-Ukrainian war. The attack, which took place on August 30, 2022, is just one of multiple intrusions orchestrated by the advanced persistent threat (APT) that's attributed to Russia's Federal Security Service (FSB).

Microsoft Reclassifies SPNEGO Extended Negotiation Security Vulnerability as 'Critical'

By Ravie Lakshmanan
Microsoft has revised the severity of a security vulnerability it originally patched in September 2022, upgrading it to "Critical" after it emerged that it could be exploited to achieve remote code execution. Tracked as CVE-2022-37958 (CVSS score: 8.1), the flaw was previously described as an information disclosure vulnerability in SPNEGO Extended Negotiation (NEGOEX) Security Mechanism. SPNEGO,

Cisco Secure Cloud Analytics – What’s New

By Claudio Lener

Nowadays, “cybersecurity” is the buzzword du jour, infiltrating every organization, invited or not. Furthermore, this is the case around the world, where an increasing proportion of all services now have an online presence, prompting businesses to reconsider the security of their systems. This, however, is not news to Cisco, as we anticipated it and were prepared to serve and assist clients worldwide.

Secure Cloud Analytics, part of the Cisco Threat, Detection, and Response (TD&R) portfolio, is an industry-leading tool for tackling core Network Detection and Response (NDR) use cases. These workflows focus primarily on threat detection and how security teams may recognize the most critical issues around hunting and forensic investigations to improve their mean-time-to-respond.

Over the last year, the product team worked tirelessly to strengthen the NDR offering. New telemetry sources, more advanced detections, and observations supplement the context of essential infrastructure aspects as well as usability and interoperability improvements. Additionally, the long-awaited solution Cisco Telemetry Broker is now available, providing a richer SecOps experience across the product.

MITRE ATT&CK framework alerting capabilities

As part of our innovation story on alerting capabilities, Secure Cloud Analytics now features new detections tied to the MITRE ATT&CK framework such as Worm Propagation, Suspicious User Agent, and Azure OAuth Bypass.

Additionally, various new roles and observations were added to the Secure Cloud Analytics to improve and change user alerts, that are foundational pieces of our detections. Alerts now include a direct link to AWS’ assets and their VPC, as well as direct access to Azure Security Groups, enabling further investigation capabilities through simplified workflows. In addition, the Public Cloud Providers are now included in coverage reports that provide a gap analysis to determine which accounts are covered. Alert Details offers new device information, such as host names, subnets, and role metrics that emphasize detection techniques. To better configure alerts, we are adding telemetry to gain contextual reference on their priority. Furthermore, the ingest process has grown more robust due to data from the Talos intelligence feed and ISE.

NDR: A Force Multiplier to Cisco XDR Strategy

The highly anticipated SecureX integration is now available in a single click, with no API credentials required and smooth interaction between the two platforms. Most importantly, Secure Cloud Analytics alerts may now be configured to automatically publish as incidents to the SecureX Incident Manager. The Talos Intelligence Watchlist Hits Alert is on by default due to its prominence among the many alert types.

Among other enhancements to graphs and visualizations, the Encrypted Traffic widget allows for an hourly breakdown of data. Simultaneously, the Device Report contains traffic data for a specific timestamp, which may be downloaded as a CSV. Furthermore, the Event Viewer now displays bi-directional session traffic to provide even more context to Secure Cloud Analytics flows, as well as additional columns to help with telemetry log comprehension: Cloud Account, Cloud Region, Cloud VPC, Sensor and Exporter.

New Sensor Data to Quickly Detect and Hunt Threats

On-premises sensors now provide additional telemetry on the overview page and a dedicated page where users can look further into the telemetry flowing through them in Sensor Health. To optimize the Secure Cloud Analytics deployment and improve the user experience, sensors may now be deleted from the interface.

Regarding telemetry, Cisco Telemetry Broker can now serve as a sensor in Secure Cloud Analytics, so users can identify and respond to threats faster with additional context sent to Secure Cloud Analytics. In addition, there will soon be support for other telemetry types besides IPFIX and NetFlow.

As we can see from the vast number of new additions to Secure Cloud Analytics, the product team has been working hard to understand the latest market trends, listen to the customers’ requests, and build one of the finest SaaS products in the NDR industry segment. The efforts strongly underline how Secure Cloud Analytics can solve some of the most important challenges in the NDR space around visibility, fidelity of alerts and deployment complexity by providing a cloud hosted platform that can offer insights on-premise and on cloud environments simultaneously from the same dashboard. Learn more about new features that allow Secure Cloud Analytics to detect, analyze, and respond to the most critical dangers to their company much more quickly.


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Is your firewall stuck in the 80s?

By Neville Letzerich

Modernize your firewall for greater security resilience

Cybersecurity has changed dramatically since the dawn of firewalls in the 1980s. But despite all the upheaval and innovation, they have stood the test of time. The basic concept of allowing “good” traffic to flow and blocking the bad stuff remains essential. Of course, it looks much different now than in the era of Care Bears and Cabbage Patch Kids.

Today’s workers, data, and applications are everywhere, and firewalls must be as well. There’s no longer just one finite space to defend. With the recent explosion of hybrid work and the rapid transition to multi-cloud environments, it’s imperative that firewalls evolve alongside a business — and be ready for whatever’s next.

So, can your firewall grow with you? Or is it stuck in the age of Hair Bands and He-Man?

The firewall is a critical foundation for security

The past few years have brought about a keen focus on resilience — remaining strong, yet adaptable in the face of unexpected and even unfathomable challenges. But an organization cannot persevere without security being at the forefront of any resilience strategy.

96% of executives consider security resilience highly important to their business.

Cisco Security Outcomes Report

Firewalls are a critical foundation for building powerful, resilient security infrastructure. Yet contemporary firewalls have to be and do more than one thing. Cisco Secure Firewall delivers world-class security controls wherever you need them, with unified visibility and consistent policy management and enforcement.

As a worldwide leader in networking and security, Cisco is better positioned than any other vendor to incorporate effective firewall controls into your infrastructure — anywhere your data and applications reside. According to a study conducted on behalf of Cisco by Forrester Research, Cisco Secure Firewall customers can:

  1. Reduce the risk of a breach by up to 80%
  2. Cut time needed for routine tasks by as much as 95%
  3. Achieve an ROI of 195% and a payback period of just 10 months

Cisco Secure Firewall delivers on several key aspects necessary for security resilience: visibility, flexibility, intelligence, integration, and unified controls. Together, they enable organizations to close gaps, see and detect threats faster, and adapt quickly to change.

Watch video: Cisco Secure Firewall Overview

VISIBILITY for better threat detection

With most of today’s internet traffic being encrypted, security measures can become obsolete without the ability to see into all traffic, encrypted or not. While decryption is commonplace, it is simply not feasible in many cases, and can have serious impacts on network performance. With its Encrypted Visibility Engine, Cisco Secure Firewall leverages deep packet inspection (DPI) to identify potentially malicious applications in encrypted traffic without offloading to another appliance and degrading performance.

Due to a highly distributed network and workforce, as well as constantly maturing attacks, the ability to see into every corner of your ecosystem is crucial. Cisco Secure Firewall blends multiple technologies to detect and block more threats in more places. By combining traditional firewall capabilities with URL filtering, application visibility and control, malware defense, and Snort 3 intrusion prevention, organizations gain robust protection against even the most sophisticated threats.

FLEXIBILITY for comprehensive coverage

Cisco offers a wide variety of firewalls for defending the different areas of your network — including physical, virtual, and cloud-native — as well as cloud-delivered. We can secure businesses and offices of all types and sizes, from the data center to the cloud.

Cisco Secure also provides flexible firewall management options, enabling you to deploy and operate your security architecture in a way that is tailored to the unique requirements of your NetOps, SecOps, and DevOps teams. No matter which firewall models you choose or environments you operate in (physical or virtual), you can use a single, simplified application to manage all your firewalls from one place.

THREAT INTELLIGENCE for rapidly updated defenses

The threat landscape changes every day, and our defenses must change with it. Cisco Talos is one of the largest and most trusted threat intelligence groups in the world. Its in-depth insight into global threats, and advanced research and analysis, enable us to quickly incorporate protections for new threats into our products via hourly updates. That way, Cisco customers are continuously safeguarded from both known and unknown threats.

“When the Log4j vulnerability was discovered, we were protected before we even completed our patching,” said Paul Smith, network administrator at Marian University. “As a result of automated hourly updates from Talos, Cisco Secure Firewall had an early detection signature, so it was already blocking the concerning traffic from infiltrating our network.”

INTEGRATION for centralized protection and automation

Another differentiator for Cisco Secure Firewall is that it’s part of an integrated security ecosystem. With Cisco SecureX, organizations can correlate data from multiple technologies and unleash XDR capabilities for a centralized, automated response to threats.

“At the end of the day, it’s about protecting the data, and we do that with the integration of [Cisco] Secure Endpoint, Umbrella, and Secure Firewall, which combine to protect the networks, endpoints, workstations, and servers — and all of this can be correlated easily within SecureX.”

– Elliott Bujan, IT Security Manager, Marine Credit Union

UNIFIED CONTROLS for efficacy and ease-of-management

The new Cloud-delivered Firewall Management Center leverages the cloud to facilitate agile, simplified operations for a distributed, hybrid network. It provides efficiency at scale by allowing security teams to swiftly deploy and update policies across their environment with just a few clicks, as well as take coordinated actions to prioritize, investigate, and remediate threats within a single pane of glass. And with a cloud-delivered management center, Cisco regularly updates its software behind the scenes, which reduces risk, maintains compliance, and gives your team more time to focus on other priorities.

Additionally, Cisco Secure Firewall dynamically shares policies driven by intelligence from Cisco Secure Workload, which uses microsegmentation to prevent lateral movement of attackers throughout a network. This allows security policies to be harmonized across both the network and application environments, boosting efficacy and fostering collaboration between teams.

Innovating for the future

These are just some examples of what makes up a comprehensive, modernized firewall. But Cisco is not stopping there. We continue to innovate to meet evolving business needs. For example, the new enterprise-class 3100 Series firewalls are specially designed for hybrid work, supporting more end users with high-performance remote access for increased organizational flexibility.

Additionally, Cisco Secure Firewall serves as a key component of advanced security strategies including XDR, SASE, and zero trust, helping businesses keep pace with accelerating digital transformation. According to Cisco’s most recent Security Outcomes Report, organizations with mature XDR, SASE, and zero trust implementations all boast significantly higher levels of security resilience.

Enhance your resilience with Cisco Secure Firewall

Fuel and energy retailer, Ampol, uses a variety of Cisco technologies, including Secure Firewall, to segment and safeguard its network. “Cisco was an integral part of our success during COVID-19 as we were able to serve customers without interruption in stores,” said Amir Yassa, senior project specialist at Ampol. “Deploying our retail resilience project, mostly comprised of Cisco products, enabled us to reduce our IT-related incidents by 90%, thus enabling us to serve our customers better now and into the future.”

Is your firewall keeping up with future demands, or is it still stuck in the 80s teasing its hair? If it’s the latter, we can help. Visit cisco.com/go/firewall and learn how to refresh your firewall.

 


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Researchers Detail New Attack Method to Bypass Popular Web Application Firewalls

By Ravie Lakshmanan
A new attack method can be used to circumvent web application firewalls (WAFs) of various vendors and infiltrate systems, potentially enabling attackers to gain access to sensitive business and customer information. Web application firewalls are a key line of defense to help filter, monitor, and block HTTP(S) traffic to and from a web application, and safeguard against attacks such as cross-site

Cisco Warns of High-Severity Unpatched Flaw Affecting IP Phones Firmware

By Ravie Lakshmanan
Cisco has released a new security advisory warning of a high-severity flaw affecting IP Phone 7800 and 8800 Series firmware that could be potentially exploited by an unauthenticated attacker to cause remote code execution or a denial-of-service (DoS) condition. The networking equipment major said it's working on a patch to address the vulnerability, which is tracked as CVE-2022-20968 (CVSS score

Popular HR and Payroll Company Sequoia Discloses a Data Breach

By Lily Hay Newman
The company, which works with hundreds of startups, said it detected unauthorized access to personal data, including Social Security numbers.

Researchers Disclose Critical RCE Vulnerability Affecting Quarkus Java Framework

By Ravie Lakshmanan
A critical security vulnerability has been disclosed in the Quarkus Java framework that could be potentially exploited to achieve remote code execution on affected systems. Tracked as CVE-2022-4116 (CVSS score: 9.8), the shortcoming could be trivially abused by a malicious actor without any privileges. "The vulnerability is found in the Dev UI Config Editor, which is vulnerable to drive-by

TikTok “Invisible Challenge” porn malware puts us all at risk

By Paul Ducklin
An injury to one is an injury to all. Especially if the other people are part of your social network.

Multimillion dollar CryptoRom scam sites seized, suspects arrested in US

By Paul Ducklin
Five tips to keep yourself, and your friends and family, out of the clutches of "chopping block" scammers...

cryptorom-1200

“This Connection Is Not Private” – What it Means and How to Protect Your Privacy

By McAfee

Have you ever been browsing online and clicked a link or search result that took you to a site that triggers a “your connection is not private” or “your connection is not secureerror code? If you’re not too interested in that particular result, you may simply move on to another result option. But if you’re tempted to visit the site anyway, you should be sure you understand what the warning means, what the risks are, and how to bypass the error if you need to.   

What does “this connection is not private” mean?

A “your connection is not private” error means that your browser cannot determine with certainty that a website has safe encryption protocols in place to protect your device and data. You can bump into this error on any device connected to the internet — computer, smartphone, or tablet.  

So, what exactly is going on when you see the “this connection is not private” error?  

For starters, it’s important to know that seeing the error is just a warning, and it does not mean any of your private information is compromised. A “your connection is not privateerror means the website you were trying to visit does not have an up-to-date SSL (secure sockets layer) security certificate. 

Website owners must maintain the licensing regularly to ensure the site encryption capabilities are up to date. If the website’s SSL certificate is outdated, it means the site owners have not kept their encryption licensing current, but it doesn’t necessarily mean they are up to no good. Even major websites like LinkedIn have had momentary lapses that would throw the error. LinkedIn mistakenly let their subdomain SSL certificates lapse.  

In late 2021, a significant provider of SSL certificates, Let’s Encrypt, went out of business. When their root domain officially lapsed, it created issues for many domain names and SSL certificates owned by legitimate companies. The privacy error created problems for unwitting businesses, as many of their website visitors were rightfully concerned about site security.  

While it does not always mean a website is unsafe to browse, it should not be ignored. A secure internet connection is critical to protecting yourself online. Many nefarious websites are dangerous to visit, and this SSL certificate error will protect you from walking into them unaware.   

SSL certification standards have helped make the web a safer place to transact. It helps ensure online activities like paying bills online, ordering products, connecting to online banking, or keeping your private email accounts safe and secure. Online security continues to improve with a new Transport Layer Security (TLS) standard, which promises to be the successor protocol to SSL. 

So be careful whenever visiting sites that trigger the “connection is not private” error, as those sites can potentially make your personal data less secure and make your devices vulnerable to viruses and malware 

Note: The “your connection is not private” error is Google Chrome‘s phrasing. Microsoft Edge or Mozilla Firefox users will instead see a “your connection is not secure” error as the warning message.   

How to fix the “connection is not private” error

If you feel confident that a website or page is safe, despite the warning from your web browser, there are a few things you can do to troubleshoot the error.  

  • Refresh the page. In some cases, the error is just a momentary glitch. Try reloading the page to rule out a temporary error.  
  • Close browser and reopen. Closing and reopening your web browser might also help clear a temporary glitch.  
  • If you’re on public WiFi, think twice. Hackers often exploit public WiFi because their routers are usually not as secure or well-maintained for security. Some public WiFi networks may not have an SSL connection, or they may limit your access to websites. You can safely browse more securely in public spaces if you have an antivirus software or virtual private network (VPN) solution. 
  • Use “Incognito” mode. The most used browsers (Google Chrome browser, Mac‘s Safari, Mozilla Firefox, and Microsoft Edge) offer an “Incognito mode” that lets you browse without data collecting in your history or cache. Open the site in a new incognito window and see if the error still appears.  
  • Clear the cache on your browser. While cookies make browsing the web more convenient and personalized, they also can hold on to sensitive information. Hackers will take advantage of cached data to try and get passwords, purchase information, and anything else they can exploit. Clear browsing data before going to a site with the “connection is not secure” error to help limit available data for hackers 
  • Check the computer’s date and time. If you frequently see the “connection is not private” error, you should check and ensure your computer has the accurate time and date. Your computer’s clock can sometimes have time and date stamp issues and get glitchy in multiple ways. If it’s incorrect, adjust the date and set the time to the correct settings.  
  • Check your antivirus software. If your antivirus software is sensitive, you may have to disable it momentarily to bypass the error. Antivirus software protects you, so you should be careful to remember to turn the software back on again after you’ve bypassed the error.  
  • Be sure your browsers and operating systems are up to date. You should always keep your critical software and the operating system fully updated. An outdated browser can start getting buggy and can increase the occurrence of this kind of error.  
  • Research the website. Do a quick search for the company of the website you wish to visit and make sure they are a legitimate business. You can search for reviews, Better Business Bureau ratings, or check for forums to see if others are having the same issue. Be sure you are spelling the website address correctly and that you have the correct URL for the site. Hackers can take advantage of misspellings or alternative URLs to try and snare users looking for trusted brands. 
  • If it’s not you, it’s them. If you’ve tried all the troubleshooting techniques above and you still see the error, the problem is likely coming from the site itself. If you’re willing to take your chances (after clearing your browser’s cache), you can click the option to “proceed to the domain,” though it is not recommended. You may have to choose “advanced settings” and click again to visit the site.   

Remember, you are taking your chances anytime you ignore an error. As we mentioned, you could leave yourself vulnerable to hackers after your passwords, personal information, and other risks.  

How to protect your privacy when browsing online

Your data and private information are valuable to hackers, so they will continue to find new ways to try and procure it. Here are some ways to protect yourself and your data when browsing online.  

  • Antivirus solutions are, hands down, your best line of protection against hacking. Solutions like McAfee+ Ultimate offer all the tools you need to secure your data and devices.  
  • Use strong passwords and two-factor authentication when available. 
  • Delete unused browser extensions (or phone apps) to reduce access. 
  • Always keep your operating system and browsers up-to-date. You can open system preferences and choose to update your system automatically. 
  • Use a secure VPN solution to shield your data when browsing. 
  • Use your favorite browser’s incognito mode to reduce the data connected to your devices. 
  • Remove any 3rd party apps from your social media accounts — especially if you’ve recently taken a Facebook quiz or similar (also, don’t take Facebook quizzes). 
  • Engage the highest privacy settings in each of your browsers. 
  • Always check the address bar for HTTPS before sharing credit cards or other sensitive data on a website. 
  • Share less personal and private information on social media.  

Discover how McAfee keeps you and your data safe from threats

As we continue to do more critical business online, we must also do our best to address the risks of the internet’s many conveniences.  

A comprehensive cybersecurity tool like McAfee+ Ultimate can help protect you from online scams, identity theft, and phishing attempts, and ensure you always have a secure connection. McAfee helps keep your sensitive information out of the hands of hackers and can help you keep your digital data footprints lighter with personal data cleanup.  

With McAfee’s experts on your side, you can enjoy everything the web offers with the confidence of total protection. 

The post “This Connection Is Not Private” – What it Means and How to Protect Your Privacy appeared first on McAfee Blog.

Google Wins Lawsuit Against Russians Linked to Blockchain-based Glupteba Botnet

By Ravie Lakshmanan
Google has won a lawsuit filed against two Russian nationals in connection with the operation of a botnet called Glupteba, the company said last week. The U.S. District Court for the Southern District of New York imposed monetary sanctions against the defendants and their U.S.-based legal counsel. The defendants have also been asked to pay Google's attorney fees. The defendants' move to press

Threat hunting with MITRE ATT&CK and Wazuh

By The Hacker News
Threat hunting is the process of looking for malicious activity and its artifacts in a computer system or network. Threat hunting is carried out intermittently in an environment regardless of whether or not threats have been discovered by automated security solutions. Some threat actors may stay dormant in an organization's infrastructure, extending their access while waiting for the right

Undersea Cables and Cyber Physical Risks.

By Martin Lee

Cyber security implies protecting the confidentiality, availability and integrity of computer systems and networks. Often security researchers and security teams focus on threats to software and the risks associated with authenticating and managing users. However, computing systems are built upon a tall stack of computing resources.  

Each layer within the stack is exposed to specific threats which need to be considered as part of a cyber security strategy. As the threat landscape evolves and exposure to risk changes, organizations need to review their threat exposure and consider if current mitigations are sufficient for their needs. 

The recent disruption of the Nord Stream submarine gas pipeline in the Baltic Sea by an apparent act of sabotage highlights the risks to infrastructure located beneath the waves. The telecommunications infrastructure that carries internet traffic between countries and continents is often provided by submarine cables. These cables are relatively few in number but carry vast amounts of internet and enterprise traffic, potentially from many different service providers. 

The seabed is a challenging environment for infrastructure. Sea water is corrosive, the pressure on the ocean floor can be extreme, while earthquakes, ship’s anchors and dredging provide additional risks to may result in the severing of a cable. Submarine cables are only expected to achieve a lifespan in the region of 25 years before failure.  

Repairing or replacing a submarine cable is expensive and time consuming. It may be many months before a failed cable can be repaired or replaced. In the absence of a functioning cable, internet connections must be rerouted to avoid disruption. However, this risks saturating the remaining infrastructure and adversely affecting the quality of connections.  

Organizations that require high availability international or intercontinental network connections should review their exposure to the risk of submarine cables failure. The nature of this risk will depend on how services are currently delivered.  

  1. Services may be delivered by a single service provider with a guaranteed level of service. In this case, organizations should review their provider’s contingencies in case of loss of one or more submarine cables and verify that these meet requirements.
  2. Piecemeal connections delivered by multiple providers may have been assembled to satisfy needs. Organizations should verify that this connectivity is able to support network requirements if one or more of the connections are unavailable. Organizations should seek to avoid single points of failure such as landing stations or conduits that may be shared by what otherwise appear to be independent connections.
  3. Software-defined Wide Area Networking (SD-WAN) is often used to route traffic in the most efficient manner to meet requirements. The flexibility of the approach implies that the loss of any single physical path would not lead to the loss of connectivity, but the increased flow of data within remaining paths may lead to a degradation in connection quality. Organizations should model how the loss of an undersea cable would affect their services and check if additional redundancy is necessary. 

At the time of writing there is no specific threat to undersea infrastructure. Other than attacks against terrestrial cables, no cable damage has been shown to be due to sabotage. Nevertheless, the Secretary General of NATO has stressed the importance of undersea cables to civilian society and military capability [1]. The British Chief of Defense Staff has warned how seriously intentional damage to telecommunications cables would be taken [2]. 

Physical infrastructure can not be taken for granted. Organizations would do well to review the impact of one or more submarine cables being taken out of service. Preparing response plans and contingencies in advance ensures that disruption is kept to a minimum in the event that such a scenario occurs.  

[1]. Press Conference (22 Oct 2020), NATO Secretary General Jens Stoltenberg. 

https://www.nato.int/cps/en/natohq/opinions_178946.htm?selectedLocale=en 

[2]. “Chief of Defence Staff: Russia cutting underwater cables could be ‘an act of war’” (8 Jan 2022), Forces.net. 

https://www.forces.net/news/chief-defence-staff-russia-cutting-underwater-cables-could-be-act-war 


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UN’s International Day of Tolerance is a good reminder that workforce diversity should be 365-day goal

By Shailaja Shankar

Since 1996, United Nations members have commemorated Nov. 16 as International Day of Tolerance. As a word, tolerance can mean different things to different people and cultures. The UN defines tolerance as: “respect, acceptance and appreciation of the rich diversity of our world’s cultures, our forms of expression and ways of being human.” I define it slightly differently. To me, tolerance is acceptance. Tolerance is inclusion. Tolerance is humanity. Tolerance is letting people be and live authentically as they choose.  

Being able to live authentically is key. It’s about creating an environment for everyone to fit in and feel a sense of belonging. In a way, this means obfuscating the “standard” and stop paying attention to the degrees of variation from it.  Tolerance is a step one in that process and a critical step toward a more diverse and tolerant world.  

But if this is the goal, I say we have lots of work left in promoting this within our workforce, especially in the cybersecurity industry. I wrote extensively about this in a blog last year on why diversity matters so much to create stronger cybersecurity organizations. I pointed out that cybersecurity as a technology is multi-faceted and constantly changing. So, it would make sense that a highly diverse organization would provide different perspectives and more creative solutions to these challenges. 

Cybersecurity workforce by the numbers 

Even in the face of this logical goal of creating more diverse workforces, legacy recruiting, education, and even hiring practices are holding us back as an industry. I’ll look at one workforce populations specifically, women in cybersecurity. Currently, women constitute less than 25 percent of the workforce in cybersecurity. Of course, this is inclusive of all roles in cybersecurity meaning that I think it’s fair to say that the percentage of women in technical cybersecurity roles (e.g., software and hardware engineering) would be much lower. That’s discouraging, especially when there are still more than 700,000 cybersecurity positions that remain unfilled, many of them being high-paying roles. 

Perhaps the more important question is “why?” The International Information System Security Certification Consortium (ISC2) commissioned a study to examine this issue closely and came up with some important conclusions that I’ll summarize. 

  1. Women, especially when they are girls, tend to self-select out of pursuing cybersecurity careers because they believe they have to be “much more accomplished than men in order to get equal treatment”.  
  2. Cybersecurity work itself has an image issue that may not be appealing to women with its intense war-room and cloak-and-dagger, spy-vs-spy metaphors. I have personally experienced this myself and wrote in my earlier blog about my belief that I had to act like just “one of the guys” just to fit it. Perception or not, the feelings are real, and we must acknowledge it as an issue. 
  3. Though not limited to the cybersecurity industry, it is a reality that women tend to be paid less and get promoted more slowly compared to their male counterparts. This is a contributing factor for women tending to leave the field more quickly than men. Of the three issues I’ve listed, I believe this is the most fixable. The first step of any solution is to understand that there is a problem. In other words, if the cybersecurity industry is going to be more tolerant and diverse, we have to understand what intolerance and lack of diversity looks like. 

The path towards more tolerance and diversity 

In promoting the International Day of Tolerance, Secretary-General Ban Ki-moon listed three ways we as a global society can be more tolerant: education, inclusion, and opportunities. As it happens, those are also exactly the approaches required to create more diverse workforces.  

Of the three, I believe education (the earlier the better) is key as it’s foundational to being able to take advantage of inclusion and opportunities. Yes, we must continue to invest in STEM education and encourage more girls and minorities to take part. But the harder challenge is to somehow overcome the perception issue among large parts of these populations that the STEM field is not for them.  

I believe that will require an investment in time and interaction in the form of mentoring and community outreach. For example, the Cisco Women in Technology employee resource organization that I’m proud to be the executive sponsor for, started a coding bootcamp targeting underrepresented populations. There will be many more bootcamps next year including weeklong camps in the summer. We need more of this, much more and I know there are many companies in cybersecurity who have similar aspirations and programs. 

So, on this International Day of Tolerance, I ask my fellow cybersecurity professionals to at least think of ways they can influence someone in an underrepresented population to explore a career in the STEM field including cybersecurity. Take part in local volunteer activities at a school, especially in an inner-city one, like the kind that the Cisco Networking Academy is renowned for. Join and be an active participant in one of many cybersecurity organizations and affinity groups. Become a sponsor and a mentor to a girl or a minority and help encourage them to get ready to join this exciting and lucrative industry. 

But whatever you do, get started. Author and activist Rachel Cargle spoke to us earlier this year as part of our Black History Month celebration about what it means to show up with purpose toward addressing many injustices that still exist today. There’s an incredible disconnect here between humanity and dignity and all of this stuff in the country, and that should hopefully push you to action,” she said. Indeed, as these are issues that have existed for decades, and we will not solve them in a day, a month, or even a year. But if we don’t start, I’m afraid that the diversity issues that I’ve highlighted will be much the same in the International Day of Tolerance for years to come. 


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Deep Packet Inspection vs. Metadata Analysis of Network Detection & Response (NDR) Solutions

By The Hacker News
Today, most Network Detection and Response (NDR) solutions rely on traffic mirroring and Deep Packet Inspection (DPI). Traffic mirroring is typically deployed on a single-core switch to provide a copy of the network traffic to a sensor that uses DPI to thoroughly analyze the payload. While this approach provides detailed analysis, it requires large amounts of processing power and is blind when

Re-Focusing Cyber Insurance with Security Validation

By The Hacker News
The rise in the costs of data breaches, ransomware, and other cyber attacks leads to rising cyber insurance premiums and more limited cyber insurance coverage. This cyber insurance situation increases risks for organizations struggling to find coverage or facing steep increases. Some Akin Gump Strauss Hauer & Feld LLP's law firm clients, for example, reported a three-fold increase in insurance

Cisco Secure Firewall on AWS: Build resilience at scale with stateful firewall clustering

By Anubhav Swami

Organizations embrace the public cloud for the agility, scalability, and reliability it offers when running applications. But just as organizations need these capabilities to ensure their applications operate where needed and as needed, they also require their security does the same. Organizations may introduce multiple individual firewalls into their AWS infrastructure to produce this outcome. In theory, this may be a good decision, but in practice—this could lead to asymmetric routing issues. Complex SNAT configuration can mitigate asymmetric routing issues, but this isn’t practical for sustaining public cloud operations. Organizations are looking out for their long-term cloud strategies by ruling out SNAT and are calling for a more reliable and scalable solution for connecting their applications and security for always-on protection.

To solve these challenges, Cisco created stateful firewall clustering with Secure Firewall in AWS.

 

Cisco Secure Firewall clustering overview

Firewall clustering for Secure Firewall Threat Defense Virtual provides a highly resilient and reliable architecture for securing your AWS cloud environment. This capability lets you group multiple Secure Firewall Threat Defense Virtual appliances together as a single logical device, known as a “cluster.”

A cluster provides all the conveniences of a single device (management and integration into a network) while taking advantage of the increased throughput and redundancy you would expect from deploying multiple devices individually. Cisco uses Cluster Control Link (CCL) for forwarding asymmetric traffic across devices in the cluster. Clusters can go up to 16 members, and we use VxLAN for CCL.

In this case, clustering has the following roles:

Figure 1: Cisco Secure Firewall Clustering Overview

The above diagram explains traffic flow between the client and the server with the insertion of the firewall cluster in the network. Below defines the roles of clustering and how packet flow interacts at each step.

 

Clustering roles and responsibilities 

Owner: The Owner is the node in the cluster that initially receives the connection.

    • The Owner maintains the TCP state and processes the packets. 
    • A connection has only one Owner. 
    • If the original Owner fails, the new node receives the packets, and the Director chooses a new Owner from the available nodes in the cluster.

Backup Owner: The node that stores TCP/UDP state information received from the Owner so that the connection can be seamlessly transferred to a new owner in case of failure.

Director: The Director is the node in the cluster that handles owner lookup requests from the Forwarder(s). 

    • When the Owner receives a new connection, it chooses a Director based on a hash of the source/destination IP address and ports. The Owner then sends a message to the Director to register the new connection. 
    • If packets arrive at any node other than the Owner, the node queries the Director. The Director then seeks out and defines the Owner node so that the Forwarder can redirect packets to the correct destination. 
    • A connection has only one Director. 
    • If a Director fails, the Owner chooses a new Director.

Forwarder: The Forwarder is a node in the cluster that redirects packets to the Owner. 

    • If a Forwarder receives a packet for a connection it does not own, it queries the Director to seek out the Owner 
    • Once the Owner is defined, the Forwarder establishes a flow, and redirects any future packets it receives for this connection to the defined Owner.

Fragment Owner: For fragmented packets, cluster nodes that receive a fragment determine a Fragment Owner using a hash of the fragment source IP address, destination IP address, and the packet ID. All fragments are then redirected to the Fragment Owner over Cluster Control Link.  

 

Integration with AWS Gateway Load Balancer (GWLB)

Cisco brought support for AWS Gateway Load Balancer (Figure 2). This feature enables organizations to scale their firewall presence as needed to meet demand (see details here).

Figure 2: Cisco Secure Firewall and AWS Gateway Load Balancer integration

 

Cisco Secure Firewall clustering in AWS

Building off the previous figure, organizations can take advantage of the AWS Gateway Load Balancer with Secure Firewall’s clustering capability to evenly distribute traffic at the Secure Firewall cluster. This enables organizations to maximize the benefits of clustering capabilities including increased throughput and redundancy. Figure 3 shows how positioning a Secure Firewall cluster behind the AWS Gateway Load Balancer creates a resilient architecture. Let’s take a closer look at what is going on in the diagram.

Figure 3: Cisco Secure Firewall clustering in AWS

Figure 3 shows an Internet user looking to access a workload. Before the user can access the workload, the user’s traffic is routed to Firewall Node 2 for inspection. The traffic flow for this example includes:

User -> IGW -> GWLBe -> GWLB -> Secure Firewall (2) -> GLWB -> GWLBe -> Workload

In the event of failure, the AWS Gateway Load Balancer cuts off existing connections to the failed node, making the above solution non-stateful.

Recently, AWS announced a new feature for their load balancers known as Target Failover for Existing Flows. This feature enables forwarding of existing connections to another target in the event of failure.

Cisco is an early adaptor of this feature and has combined Target Failover for Existing Flows with Secure Firewall clustering capabilities to create the industry’s first stateful cluster in AWS.

aws
Figure 4: Cisco Secure Firewall clustering rehashing existing flow to a new node

Figure 4 shows a firewall failure event and how the AWS Gateway Load Balancer uses the Target Failover for Existing Flows feature to switch the traffic flow from Firewall Node 2 to Firewall Node 3. The traffic flow for this example includes:

User -> IGW -> GWLBe -> GWLB -> Secure Firewall (3) -> GLWB -> GWLBe -> Workload

 

Conclusion

Organizations need reliable and scalable security to protect always-on applications in their AWS cloud environment. With stateful firewall clustering capabilities from Cisco, organizations can protect their applications while maintaining cloud benefits such as agility, scalability, and reliability.

Cisco Secure Firewall Threat Defense Virtual is available in the AWS marketplace, providing features like firewalling, application visibility & control, IPS, URL filtering, and malware defense. Cisco offers flexible options for firewall licensing, such as pay-as-you-go (PAYG) and bring-your-own-license (BYOL). To learn more about how Cisco Secure Firewall clustering capabilities can help protect your AWS applications, see our additional resources, check out our 30-day free trial, or speak to your Cisco sales representative.

 

Additional Resources 

Cisco Secure Firewall Clustering in the Cloud

Building a Scalable Security Architecture on AWS with Cisco Secure Firewall and AWS Gateway Load Balancer

Introducing AWS Gateway Load Balancer Target Failover for Existing Flows

Secure Firewall for Public Cloud webpage


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Several Cyber Attacks Observed Leveraging IPFS Decentralized Network

By Ravie Lakshmanan
A number of phishing campaigns are leveraging the decentralized InterPlanetary Filesystem (IPFS) network to host malware, phishing kit infrastructure, and facilitate other attacks. "Multiple malware families are currently being hosted within IPFS and retrieved during the initial stages of malware attacks," Cisco Talos researcher Edmund Brumaghin said in an analysis shared with The Hacker News.

Cisco Secure Endpoint Crushed the AV-Comparative EPR Test

By Truman Coburn

The word is out! Cisco Secure Endpoint’s effectiveness is off the charts in protecting your enterprise environment.

This is not just a baseless opinion; however, the facts are rooted in actual test results from the annual AV-Comparative EPR Test Report published in October 2022. Not only did Secure Endpoint knock it out of the park in enterprise protection; but Cisco Secure Endpoint obtained the lowest total cost of ownership (TCO) per agent at $587 over 5 years. No one else was remotely close in this area. More to come on that later.

If you are not familiar with the “AV-Comparatives Endpoint Prevention and Response Test is the most comprehensive test of EPR products ever performed. The 10 products in the test were subjected to 50 separate targeted attack scenarios, which used a variety of different techniques.”

These results are from an industry-respected third-party organization that assesses antivirus software and has just confirmed what we know and believe here at Cisco, which is our Secure Endpoint product is the industry’s best of the best.

Leader of the pack

Look for yourself at where we landed. That’s right, Cisco Secure Endpoint smashed this test, we are almost off the quadrant as one of the “Strategic Leaders”.

We ended up here for a combination of reasons, with the top being our efficacy in protecting our customers’ environments in this real-world test that emulates multi-stage attacks similar to MITRE’s ATT&CK evaluations which are conducted as part of this process (click here for an overview of MITRE ATT&CK techniques). Out of all the 50 scenarios tested, Secure Endpoint was the only product that STOPPED 100% of targeted threats toward enterprise users, which prevented further infiltration into the organization.

Lowest Total Cost of Ownership

In addition, this test not only assesses the efficacy of endpoint security products but also analyzes their cost-effectiveness. Following up on my earlier remarks about achieving the lowest cost of ownership, the graph below displays how we stacked up against other industry players in this space including several well-known vendors that chose not to display their names due to poor results.

These results provide a meaningful proof point that Cisco Secure Endpoint is perfectly positioned to secure the enterprise as well as secure the future of hybrid workers.

Enriched with built-in Extended Detection and Response (XDR) capabilities, Cisco Secure Endpoint has allowed our customers to maintain resiliency when faced with outside threats.

As we embark on securing “what’s next” by staying ahead of unforeseen cyber threats of tomorrow, Cisco Secure Endpoint integration with the complete Cisco Secure Solutions portfolio allows you to move forward with the peace of mind that if it’s connected, we can and will protect it.

Secure Endpoint live instant demo

Now that you have seen how effective Secure Endpoint is with live real-world testing, try it for yourself with one of our live instant demos. Click here to access instructions on how to download and install your demo account for a test drive.

Click here to see what analysts, customers, and third-party testing organizations have to say about Cisco Secure Endpoint Security efficacy, easy implementation and overall low total cost of ownership for their organization —and stay ahead of threats.


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Cisco Secure Workload: Policy-as-Code Is a Win-Win for Everyone

By Brijeshkumar Shah

The last few years have proved to be a catalyst for digital transformation for many of our enterprise customers. Application modernization and adopting multicloud are the foundational building blocks for digitizing business. Customers employ CI/CD (continuous integration, continuous delivery) to modernize their applications, building them on a cloud infrastructure. This evolution has given rise to new application security challenges in terms of speed, scale, as well as new and unfamiliar control points – not to mention siloed organizations and tools.

To address these security challenges, Cisco Secure Workload delivers zero trust microsegmentation in an infrastructure, location, and form factor agnostic way. It safeguards application workloads, wherever they live across the hybrid and multicloud environment. The recent release of Secure Workload 3.7 introduces “policy as code” support – delivering security at the speed of DevOps. It enables Secure Workload to be integrated with the customer’s choice of CI/CD toolchains, such as Jenkins or GitLab, and ingest the application security policy during the build phase of the application. Secure Workload then renders the policies onto the relevant workloads when the application goes live.

As the graphic below illustrates, Secure Workload ingests policies using Terraform or Ansible, which are widely adopted tools used by the DevOps team to automate infrastructure related tasks. Secure Workload integrates with the CI/CD toolchains using a YAML (.yml) manifest to ingest the policy. It then programs the same policies to the relevant enforcement point to achieve least privilege access for the newly built or upgraded application.

 

Secure Workload Policy as Code example

 

Policy as code helps customers automate policy deployment at the speed and scale of modern applications. It also simplifies collaboration between DevOps/DevSecOps and NetSec teams. The policies are written in the application language and give appropriate controls to developers to write their requirements into the application while the NetSec team ensures full compliance to the infosec policies dictated by the CISO organization.

In summary, Secure Workload removes the barriers to achieving automated application deployment across highly distributed multicloud environments, without compromising security, compliance, or user experience. The result – stronger security, faster application deployment, and more efficient collaboration.

For more information on policy as code, contact your Cisco Account Team or Partner Account Manager.


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Secure Your Hybrid Workforce Using These SOC Best Practices

By Pat Correia

Hybrid Workforce is here to stay

Just a few years ago when the topic of supporting offsite workers arose, some of the key conversation topics were related to purchase, logistics, deployment, maintenance and similar issues. The discussions back then were more like “special cases” vs. today’s environment where supporting workers offsite (now known as the hybrid workforce) has become a critical mainstream topic.

Figure 1: Security challenges in supporting the hybrid workforce

Now with the bulk of many organization’s workers off-premise, the topic of security and the ability of a security vendor to help support an organization’s hybrid workers has risen to the top of the selection criteria.  In a soon to be released Cisco endpoint survey, it’s not surprising that the ability of a security vendor to make supporting the hybrid workforce easier and more efficient was the key motivating factor when organizations choose security solutions.

Figure 2: Results from recent Cisco Survey

Best Practices complement your security tools

Today, when prospects and existing customers look at Cisco’s ability to support hybrid workers with our advanced security solution set and open platform, it’s quite clear that we can deliver on that promise. But, yes, good tools make it easier and more efficient, but the reality is that running a SOC or any security group, large or small, still takes a lot of work. Most organizations not only rely on advanced security tools but utilize a set of best practices to provide clarity of roles, efficiency of operation, and for the more prepared, have tested these best practices to prove to themselves that they are prepared for what’s next.

Give this a listen!

Knowing that not all organizations have this degree of security maturity and preparedness, we gathered a couple of subject matter experts together to discuss 5 areas of time-tested best practices that, besides the advanced tools offered by Cisco and others, can help your SOC (or small security team) yield actionable insights and guide you faster, and with more confidence, toward the outcomes you want.

In this webinar you will hear practical advice from Cisco technical marketing and a representative from our award winning Talos Threat Intelligence group, the same group who have created and are maintaining breach defense in partnership with Fortune 500 Security Operating Centers (SOC) around the globe.

Figure 3: Webinar Speakers

You can expect to hear our 5 Best Practices recommendations on the following topics;

  1. Establishing Consistency – know your roles and responsibilities without hesitation.
  2. Incident Response Plan – document it, share it and test it with your stakeholders.
  3. Threat Hunting – find out what you don’t know and minimize the threat.
  4. Retro Learning – learn from the past and be better prepared.
  5. Unifying stakeholders – don’t go it alone.

Access this On-Demand Webinar now!

Check out our webinar to find out how you can become more security resilient and be better prepared for what’s next.


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There’s no better time for zero trust

By Neville Letzerich

Security resilience requires strong, user-friendly defenses

The concept of zero trust is not a new one, and some may even argue that the term is overused. In reality, however, its criticality is growing with each passing day. Why? Because many of today’s attacks begin with the user. According to Verizon’s Data Breach Investigations Report, 82% of breaches involve the human element — whether it’s stolen credentials, phishing, misuse or error.

Additionally, today’s businesses are hyper-connected, meaning that — in addition to your employees — customers, partners and suppliers are all part of your ecosystem. Couple that with hybrid work, IoT, the move to the cloud, and more emboldened attackers, and organizational risk increases exponentially.

Adopting a zero trust model can dramatically reduce this risk by eliminating implicit trust. It has become so crucial, in fact, that several governments including the U.S., UK and Australia have released mandates and guidance for how organizations should deploy zero trust to improve national security.

However, because zero trust is more of a concept than a technology, and so many vendors use the term, organizations struggle with the best way to implement it. At Cisco, we believe you should take a holistic approach to zero trust, starting with what you have and adding on as you identify gaps in your defenses. And while layers of protection are necessary for powerful security, so is ease of use.

Strengthen security resilience with zero trust

Zero trust plays a major role in building security resilience, or the ability to withstand unpredictable threats or changes and emerge stronger. Through zero trust, the identity and security posture of users, devices and applications are continuously checked and verified to prevent network intrusions — and to also limit impact if an unauthorized entity does gain access.

Organizations with high zero trust maturity are twice as likely to achieve business resilience.
– Cisco’s Guide to Zero Trust Maturity

Eliminating trust, however, doesn’t really conjure up images of user-friendly technology. No matter how necessary they are for the business, employees are unlikely to embrace security measures that make their jobs more cumbersome and time-consuming. Instead, they want fast, consistent access to any application no matter where they are or which device they are using.

That’s why Cisco is taking a different approach to zero trust — one that removes friction for the user. For example, with Cisco Secure Access by Duo, organizations can provide those connecting to their network with several quick, easy authentication options. This way, they can put in place multi-factor authentication (MFA) that frustrates attackers, not users.

Enable seamless, secure access

Cisco Secure Access by Duo is a key pillar of zero trust security, providing industry-leading features for secure access, authentication and device monitoring. Duo is customizable, straightforward to use, and simple to set up. It enables the use of modern authentication methods including biometrics, passwordless and single sign-on (SSO) to help organizations advance zero trust without sacrificing user experience. Duo also provides the flexibility organizations need to enable secure remote access with or without a VPN connection.

During Cisco’s own roll-out of Duo to over 100,000 people, less than 1% of users contacted the help desk for assistance. On an annual basis, Duo is saving Cisco $3.4 million in employee productivity and $500,000 in IT help desk support costs. Furthermore, 86,000 potential compromises are averted by Duo each month.

Protect your hybrid work environment

La-Z-Boy, one of the world’s leading residential furniture producers, also wanted to defend its employees against cybersecurity breaches through MFA and zero trust. It needed a data security solution that worked agnostically, could grow with the company, and that was easy to roll out and implement.

“When COVID first hit and people were sent home to work remotely, we started seeing more hacking activity…” said Craig Vincent, director of IT infrastructure and operations at La-Z-Boy. “We were looking for opportunities to secure our environment with a second factor…. We knew that even post-pandemic we would need a hybrid solution.”

“It was very quick and easy to see where Duo fit into our environment quite well, and worked with any application or legacy app, while deploying quickly.” – Craig Vincent, Director of IT Infrastructure and Operations, La-Z-Boy

Today, Duo helps La-Z-Boy maintain a zero trust framework, stay compliant, and get clear visibility into what is connecting to its network and VPN. Zero trust helps La-Z-Boy secure its organization against threats such as phishing, stolen credentials and out-of-date devices that may be vulnerable to known exploits and malware.

Build a comprehensive zero trust framework

As mentioned, zero trust is a framework, not a single product or technology. For zero trust to be truly effective, it must do four things:

  1. Establish trust for users, devices and applications trying to access an environment
  2. Enforce trust-based access based on the principle of least privilege, only granting access to applications and data that users/devices explicitly need
  3. Continuously verify trust to detect any change in risk even after initial access is granted
  4. Respond to changes in trust by investigating and orchestrating response to potential incidents

Many technology companies may offer a single component of zero trust, or one aspect of protection, but Cisco’s robust networking and security expertise enables us to provide a holistic zero trust solution. Not only can we support all the steps above, but we can do so across your whole IT ecosystem.

Modern organizations are operating multi-environment ecosystems that include a mix of on-premises and cloud technologies from various vendors. Zero trust solutions should be able to protect across all this infrastructure, no matter which providers are in use. Protections should also extend from the network and cloud to users, devices, applications and data. With Cisco’s extensive security portfolio, operating on multiple clouds and platforms, zero trust controls can be embedded at every layer.

Map your path to zero trust

Depending on where you are in your security journey, embedding zero trust at every layer of your infrastructure may sound like a lofty endeavor. That’s why we meet customers where they are on their path to zero trust. Whether your first priority is to meet regulatory requirements, secure hybrid work, protect the cloud, or something else, we have the expertise to help you get started. We provide clear guidance and technologies for zero trust security mapped to established frameworks from organizations like CISA and NIST.

Much of our Cisco Secure portfolio can be used to build a successful zero trust framework, but some examples of what we offer include:

  • Frictionless, secure access for users, devices and applications through Cisco Duo
  • Flexible cloud security through Cisco Umbrella
  • Protected network connections and segmentation with the Cisco Identity Services Engine (ISE)
  • Application visibility and micro-segmentation via Cisco Secure Workload
  • Expert guidance from the Cisco Zero Trust Strategy Service

All of our technologies and services are backed by the unparalleled intelligence of Cisco Talos — so you always have up-to-date protection as you build your zero trust architecture. Additionally, our open, integrated security platform — Cisco SecureX — makes it simple to expand and scale your security controls, knowing they will work with your other technologies for more unified defenses.

Enhance security with an integrated platform

As Italy’s leading insurance company, Sara Assicurazioni requires complete visibility into its extended network, including a multi-cloud architecture and hybrid workforce. The company has adopted a comprehensive zero trust strategy through Cisco Secure.

“Our decentralized users, endpoints, and cloud-based servers and workloads contribute to a large attack surface,” says Paolo Perrucci, director of information and communications technology architectures and operations at Sara Assicurazioni. “With Cisco, we have the right level of visibility on this surface.”

“The main reason we chose Cisco is that only Cisco can offer a global security solution rather than covering one specific point…. Thanks to Cisco Secure, I’m quite confident that our security posture is now many times better because we are leveraging more scalable, state-of-the-art security solutions.” – Luigi Vassallo, COO & CTO, Sara Assicurazioni

Expand your zero trust strategy

To learn more, explore our zero trust page and sign up for one of our free zero trust workshops.

Watch video: How Cisco implemented zero trust in just five months 


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Cybercrime’s Most Wanted: Four Mobile Threats that Might Surprise You

By McAfee

It’s hard to imagine a world without cellphones. Whether it be a smartphone or a flip phone, these devices have truly shaped the late 20th century and will continue to do so for the foreseeable future. But while users have become accustomed to having almost everything they could ever want at fingertips length, cybercriminals were busy setting up shop. To trick unsuspecting users, cybercriminals have set up crafty mobile threats – some that users may not even be fully aware of. These sneaky cyberthreats include SMSishing, fake networks, malicious apps, and grayware, which have all grown in sophistication over time. This means users need to be equipped with the know-how to navigate the choppy waters that come with these smartphone-related cyberthreats. Let’s get started.

Watch out for SMSishing Hooks

If you use email, then you are probably familiar with what phishing is. And while phishing is commonly executed through email and malicious links, there is a form of phishing that specifically targets mobile devices called SMSishing. This growing threat allows cybercriminals to utilize messaging apps to send unsuspecting users a SMSishing message. These messages serve one purpose – to obtain personal information, such as logins and financial information. With that information, cybercriminals could impersonate the user to access banking records or steal their identity.

While this threat was once a rarity, it’s rise in popularity is two-fold. The first aspect being that users have been educated to distrust email messages and the second being the rise in mobile phone usage throughout the world. Although this threat shows no sign of slowing down, there are ways to avoid a cybercriminal’s SMSishing hooks. Get started with these tips:

  1. Always double-check the message’s source. If you receive a text from your bank or credit card company, call the organization directly to ensure the message is legit.
  2. Delete potential SMSishing Do not reply to or click on any links within a suspected malicious text, as that could lead to more SMSishing attempts bombarding your phone.
  3. Invest in comprehensive mobile security. Adding an extra level of security can not only help protect your device but can also notify you when a threat arises.

Public Wi-Fi Woes  

Public and free Wi-Fi is practically everywhere nowadays, with some destinations even having city-wide Wi-Fi set up. But that Wi-Fi users are connecting their mobile device to may not be the most secure, given cybercriminals can exploit weaknesses in these networks to intercept messages, login credentials, or other personal information. Beyond exploiting weaknesses, some cybercriminals take it a step further and create fake networks with generic names that trick unsuspecting users into connecting their devices. These networks are called “evil-twin” networks. For help in spotting these imposters, there are few tricks the savvy user can deploy to prevent an evil twin network from wreaking havoc on their mobile device:

  1. Look for password-protected networks. As strange as it sounds, if you purposely enter the incorrect password but are still allowed access, the network is most likely a fraud.
  2. Pay attention to page load times. If the network you are using is very slow, it is more likely a cybercriminal is using an unreliable mobile hotspot to connect your mobile device to the web.
  3. Use a virtual private network or VPN. While you’re on-the-go and using public Wi-Fi, add an extra layer of security in the event you accidentally connect to a malicious network. VPNs can encrypt your online activity and keep it away from prying eyes. 

Malicious Apps: Fake It till They Make It

Fake apps have become a rampant problem for Android and iPhone users alike. This is mainly in part due to malicious apps hiding in plain sight on legitimate sources, such as the Google Play Store and Apple’s App Store. After users download a faulty app, cybercriminals deploy malware that operates in the background of mobile devices which makes it difficult for users to realize anything is wrong. And while users think they’ve just downloaded another run-of-the-mill app, the malware is hard at work obtaining personal data.

In order to keep sensitive information out of the hands of cybercriminals, here are a few things users can look for when they need to determine whether an app is fact or fiction:

  1. Check for typos and poor grammar. Always check the app developer name, product title, and description for typos and grammatical errors. Often, malicious developers will spoof real developer IDs, even just by a single letter or number, to seem legitimate.
  2. Examine the download statistics. If you’re attempting to download a popular app, but it has a surprisingly low number of downloads, that is a good indicator that an app is most likely fake.
  3. Read the reviews. With malicious apps, user reviews are your friend. By reading a few, you can receive vital information that can help you determine whether the app is fake or not.

The Sly Operation of Grayware

With so many types of malware out in the world, it’s hard to keep track of them all. But there is one in particular that mobile device users need to be keenly aware of called grayware. As a coverall term for software or code that sits between normal and malicious, grayware comes in many forms, such as adware, spyware or madware. While adware and spyware can sometimes operate simultaneously on infected computers, madware — or adware on mobile devices — infiltrates smartphones by hiding within rogue apps. Once a mobile device is infected with madware from a malicious app, ads can infiltrate almost every aspect on a user’s phone. Madware isn’t just annoying; it also is a security and privacy risk, as some threats will try to obtain users’ data. To avoid the annoyance, as well as the cybersecurity risks of grayware, users can prepare their devices with these cautionary steps:

  1. Be sure to update your device. Grayware looks for vulnerabilities that can be exploited, so be sure to always keep your device’s software up-to-date.
  2. Beware of rogue apps. As mentioned in the previous section, fake apps are now a part of owning a smartphone. Use the tips in the above section to ensure you keep malicious apps off of your device that may contain grayware.
  3. Consider a comprehensive mobile security system. By adding an extra level of security, you can help protect your devices from threats, both old and new.

 

The post Cybercrime’s Most Wanted: Four Mobile Threats that Might Surprise You appeared first on McAfee Blog.

What’s the Meaning of VPN? VPN Defined

By McAfee

A virtual private network (VPN) is a tool that enables users to protect their privacy while using an internet connection. VPNs create an encrypted tunnel — a private link between your device and the VPN server 

Essentially, this private link or tunnel keeps external influences out and allows your data to travel in an encrypted manner, enhancing security. The network’s privacy also makes sure your Internet Protocol (IP) address and browsing history is hidden online.  

[Text Wrapping Break]VPNs use several VPN protocols like OpenVPN, IPSec/IKEv2, PPTP, SSTP, and WireGuard to protect you. In particular, McAfee® Safe Connect VPN supports the OpenVPN protocol, which is an open-source and highly secure protocol running on TCP or UDP internet protocol and used by many VPN providers globally. [Text Wrapping Break][Text Wrapping Break]Read on to know more about how VPNs work and learn to install one. 

What does a VPN do?

The best way to stay secure online is to minimize your digital footprint. A good VPN service allows you to do exactly this, acting as an additional layer of protection for your online activities 

The primary function of a VPN is encryption. Most websites and online browsers already have some form of encryption. For example, when you purchase something on Amazon, you have to enter your credit card details and address. Encryption creates a private tunnel for data transmission between your device and Amazon to make sure no one else can watch what you’re doing.  

A VPN app does the same thing with an added level of security. The data that you pass to a VPN server is anonymized before it goes to the internet. In short, your device establishes an encrypted connection with the VPN server instead of connecting directly through the internet. So, the encryption protects your data and digital footprint from anyone outside the “private tunnel” between you and the secure VPN server 

Additionally, VPNs allow you to change or hide your IP address. An IP address is a number linked to a particular computer and network. Changing your IP address can trick the servers into thinking you’re connecting from a different geographical location. This can help improve security and provide additional benefits discussed below. 

You can also use a VPN to hide your IP address. This may be helpful if you’re trying to access content from other countries (for example, Netflix may have different content in different countries) or trying to keep your internet search history away from the prying eyes of a third-party like your internet service provider or a government. 

Using a VPN can help improve your online security. Nearly every internet activity — website and social media browsing, paying bills, online shopping, data sharing, and more — can be tracked by others. [Text Wrapping Break][Text Wrapping Break]Read on to learn about who typically uses a VPN and understand whether you should consider installing one. 

Who typically uses VPNs?

Given the extra security that VPN connections provide, you can gain something from using a VPN client. So, if you’re an individual concerned about your online privacy or just want to browse online anonymously — consider using a VPN. A VPN enables you to use the internet without third parties seeing your identity or identifying you via your search history since they don’t know what you were searching about or using the internet for. 

Big tech has had a long history of tracking private data for their gains. These companies regularly bundle data into coherent profiles and sell it to third parties. Additionally, they use private data to demonstrate targeted advertisements or manipulative content that makes you more likely to purchase their products. [Text Wrapping Break][Text Wrapping Break]So, it’s worthwhile to use a VPN if you regularly shop online or bank online. A VPN gives you that additional protection that can help prevent hackers or malicious third parties from accessing your information.[Text Wrapping Break][Text Wrapping Break]VPNs are excellent mechanisms for you to protect your privacy online. And you should consider your personal context and conduct thorough research to find the best VPN for your needs. 

VPNs are particularly helpful if you travel a lot, either for business or for leisure. While traveling, it’s inevitable that you connect to random or unknown Wifi networks and it may be the case that these networks are spying on you. However, if you’re using a VPN to browse the web, these WiFi networks can’t track you or your search history. This ensures you maintain anonymity and are safe while using the internet.  

Should you use a VPN on your personal computer?

Yes, an additional layer of protection to your online activities is always good practice. A VPN allows individuals using a personal computer to stay vigilant, protect their data, and maintain anonymity while allowing them to still enjoy their online experience.  

Benefits of VPNs for personal use

VPNs provide more benefits than just serving as an additional layer for cybercriminals to pass through.  

  • Data privacy: The biggest reason to use a VPN is data privacy. Internet service providers (ISPs) regularly collect customer data and sell it to advertisers for money. Using a VPN allows you to hide your location and prevents your data from falling into the wrong hands. VPNs allow you to browse the internet in peace, knowing that no third parties are aware of your identity or can trace particular internet activity back to you.  
  • Security on public networks: Internet access through public Wi-Fi hotspots may not be the safest. User data on public networks is unprotected, making it vulnerable to bad actors who can use software to get past firewalls. With VPN encryption, you can remain safe even while using public Wi-Fi network connections 
  • Secure online transactions: Think about the number of times you log into your bank account or give out credit card information on e-commerce sites. You can never be too safe when it comes to financial information.  
  • Change your location: Some content is geo-blocked for various reasons. It could be streaming services like Netflix limiting access to their services or different countries censoring content. VPNs can hide your IP address to trick servers into believing that your location is different from where your router is physically. This can give you access to a lot more content.  

Can you set up a VPN yourself?

Depending on the VPN you’re using, it can be a straightforward process to connect a VPN to your Mac, Windows, iPhone, or Android mobile device. McAfee’s VPN works with multiple platforms and operating systems, including Microsoft Windows, macOS, Android, and iOS 

Use this guide to quickly set up a VPN with your device in a few simple steps.  

Secure your browsing with a VPN from McAfee

With McAfee +, you can minimize your digital footprint through a secure connection channel without compromising your browsing experience. Connect to public networks, make financial transactions online, and keep your personal data safe with McAfee.  

With our bank-grade AES-256 bit encryption technology and automatic protection, McAfee VPN protection can help safeguard all your online activities — allowing you to enjoy the internet the way it was meant to be enjoyed. 

Explore our full suite of cybersecurity tools included in McAfee +, including our newest service, Personal Data Cleanup. We can help find and remove your personal data on some of the riskiest data broker sites.  

The post What’s the Meaning of VPN? VPN Defined appeared first on McAfee Blog.

Why Organisations Need Both EDR and NDR for Complete Network Protection

By The Hacker News
Endpoint devices like desktops, laptops, and mobile phones enable users to connect to enterprise networks and use their resources for their day-to-day work. However, they also expand the attack surface and make the organisation vulnerable to malicious cyberattacks and data breaches. Why Modern Organisations Need EDR According to the 2020 global risk report by Ponemon Institute, smartphones,

Improve your security posture with Wazuh, a free and open source XDR

By The Hacker News
Organizations struggle to find ways to keep a good security posture. This is because it is difficult to create secure system policies and find the right tools that help achieve a good posture. In many cases, organizations work with tools that do not integrate with each other and are expensive to purchase and maintain. Security posture management is a term used to describe the process of

Researchers Detail OriginLogger RAT — Successor to Agent Tesla Malware

By Ravie Lakshmanan
Palo Alto Networks Unit 42 has detailed the inner workings of a malware called OriginLogger, which has been touted as a successor to the widely used information stealer and remote access trojan (RAT) known as Agent Tesla. A .NET based keylogger and remote access, Agent Tesla has had a long-standing presence in the threat landscape, allowing malicious actors to gain remote access to targeted

Cisco Secure 5 Best Practices Security Analysts Can Use to Secure Their Hybrid Workforce.

By Truman Coburn

The hybrid work environment has been around for years, albeit not common but it existed. I can recall my first job where I was able to split my time working in an office and working from my makeshift home office. This was many moons ago as I will call it… pre-COVID-19. 

Job seekers are certainly looking to have the flexibility of working from anywhere at any time – preferably in an environment of their choosing. Even though a hybrid workforce will provide people with the option to work from anywhere, those remote locations are sometimes in unsecured locations. Organizations must now reimagine a workforce that will need access to your internal collaboration tools along with access to your network from both on- and off-premises. 

Leading the way in a hybrid environment 

Cisco, a leader in equipping organizations with the right products for a hybrid workforce, provides the tools & services to protect your organization from bad threat actors. 

With pervasive ransomware attacks, malware attacks, and email attacks, you must be ready and have not only a security solution but also a security analyst team ready to respond when an attack happens. 

Securing access to your endpoint must be a top priority and your security analysts must be agile and have the right telemetry to provide around-the-clock monitoring and the ability to quickly respond to threats. 

Security Analyst don’t just monitor they respond to threats  

Cisco Secure Endpoint provides you with the visibility and ability to respond to threats by blocking them before they compromise your network. Combined with global, proactive threat hunting, leading-edge forensic/analytic capabilities, and reduced leading Mean Time To Detection (MTTD)/Mean Time To Resolution (MTTR) across the supply chain that no other vendor can parallel; why would you partner with any other company to secure and scale your unique hybrid workforce or workplace clients? 

Click here to listen to my fireside chat on how we at Cisco would define 5 Best Practices Security Analysts Can Use to Secure Their Hybrid Workforce:

I am joined by Cisco Talos global Senior Threat Defense and Response Analyst, William (Bill) Largent who has over 20 plus years of infosec experience, specifically in network intrusion detection, traffic analysis, and signature/rule writing. 

I will also be speaking with Eric Howard, Cisco Secure Technical Marketing Engineer Leader for the Security Platform and Response Group. Eric is a seasoned team leader in both Information Security Sales, and Product Management. He has built and led teams that apply deep technical understanding to business needs, initiatives, and strategies in both start-ups and established companies. 

This is a conversation you do not want to skip! There were a lot of gems shared by these gentlemen that will get you where you need to be as a Security Analyst. 


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U.S. Seizes Cryptocurrency Worth $30 Million Stolen by North Korean Hackers

By Ravie Lakshmanan
More than $30 million worth of cryptocurrency plundered by the North Korea-linked Lazarus Group from online video game Axie Infinity has been recovered, marking the first time digital assets stolen by the threat actor have been seized. "The seizures represent approximately 10% of the total funds stolen from Axie Infinity (accounting for price differences between time stolen and seized), and

Chinese Hackers Target Government Officials in Europe, South America, and Middle East

By Ravie Lakshmanan
A Chinese hacking group has been attributed to a new campaign aimed at infecting government officials in Europe, the Middle East, and South America with a modular malware known as PlugX. Cybersecurity firm Secureworks said it identified the intrusions in June and July 2022, once again demonstrating the adversary's continued focus on espionage against governments around the world. "PlugX is

Scale security on the fly in Microsoft Azure Cloud with Cisco Secure Firewall

By Christopher Consolo

The release of Microsoft Azure Gateway Load Balancer is great news for customers, empowering them to simply and easily add Cisco Secure Firewall capabilities to their Azure cloud infrastructure. By combining Azure Gateway Load Balancer with Cisco Secure Firewall, organizations can quickly scale their firewall presence across their Azure cloud environment, providing protection for infrastructure and applications exactly where and when they need it.

With applications and resources hyper-distributed across hybrid-multicloud environments, organizations require agile security to protect their environment at each control point. This integration empowers organizations to dynamically insert Cisco’s security controls and threat defense capabilities in their Azure environment, removing the clunkiness of provisioning and deploying firewalls, as well as the need to rearchitect the network. Organizations can now enjoy highly available threat defense on the fly, protecting their infrastructure and applications from known and unknown threats.

Securing cloud infrastructure while reducing complexity

Combining Secure Firewall with Azure Gateway Load Balancer offers a significant reduction in operational complexity when securing cloud infrastructure. Azure Gateway Load Balancer provides bump-in-the-wire functionality ensuring Internet traffic to and from an Azure VM, such as an application server, is inspected by Secure Firewall without requiring any routing changes. It also offers a single entry and exit point at the firewall and allows organizations to maintain visibility of the source IP address. Complementing these features, organizations can take advantage of our new Cloud-delivered Firewall Management Center. It enables organizations to manage their firewall presence 100% through the cloud with the same look and feel as they’ve grown accustomed to with Firewall Management Center. With Cloud-delivered Firewall Management Center, organizations will achieve faster time-to-value with simplified firewall deployment and management.

Benefits of Cisco Secure Firewall with Azure Gateway Load Balancer

  • Secure Firewall lowers cloud spend with Azure Autoscale support – Quickly and seamlessly scale virtual firewall instances up and down to meet demand.
  • De-risk projects by removing the need to re-architect – Effortlessly insert Cisco Secure Firewall in existing network architecture without changes, providing win/win outcomes across NetOps, SecOps, DevOps, and application teams.
  • Firewalling where and when you need it – Easily deploy and remove Secure Firewall and its associated security services, including IPS, application visibility and control, malware defense, and URL filtering as needed in the network path.
  • Greater visibility for your applications – Simplify enablement of your intended infrastructure by eliminating the need for source and destination NAT. No additional configuration needed.
  • Health monitoring – Ensure efficient routing with continuous health-checks that monitor your virtual firewall instances via Gateway Load Balancer.
  • Included Cisco Talos® Threat Intelligence – Protect your organization from new and emerging threats with rapid and actionable threat intelligence updated hourly from one of the world’s largest commercial threat intelligence teams, Cisco Talos.

Use-cases

Inbound

Figure 1: Inbound traffic flow to Cisco Secure Firewall with Azure Gateway Load Balancer

 

Figure 2: Inbound traffic flow to a stand-alone server

Outbound

Figure 3: Internal server is behind a public load balancer. Flow is the same as outbound flow for an inbound connection.

 

Figure 4: Outbound flow where the internal server is a stand-alone server.

Azure Gateway Load Balancer support for Cisco Secure Firewall Threat Defense Virtual is available now. To learn more about how Cisco Secure Firewall drives security resilience across your hybrid-multicloud environment, see the additional resources below and reach out to your Cisco sales representative.

Additional Resources

Microsoft Blog: Gateway Load Balancer now generally available in all regions

Azure Marketplace listing: Cisco Secure Firewall Threat Defense Virtual

Cisco Secure Firewall

Cisco Secure Firewall At-a-Glance

Cisco Secure Firewall for Public Cloud

Cloud-delivered Firewall Management Center


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Air-Gapped Devices Can Send Covert Morse Signals via Network Card LEDs

By Ravie Lakshmanan
A security researcher who has a long line of work demonstrating novel data exfiltration methods from air-gapped systems has come up with yet another technique that involves sending Morse code signals via LEDs on network interface cards (NICs). The approach, codenamed ETHERLED, comes from Dr. Mordechai Guri, the head of R&D in the Cyber Security Research Center in the Ben Gurion University of the

New Air-Gap Attack Uses MEMS Gyroscope Ultrasonic Covert Channel to Leak Data

By Ravie Lakshmanan
A novel data exfiltration technique has been found to leverage a covert ultrasonic channel to leak sensitive information from isolated, air-gapped computers to a nearby smartphone that doesn't even require a microphone to pick up the sound waves. Dubbed GAIROSCOPE, the adversarial model is the latest addition to a long list of acoustic, electromagnetic, optical, and thermal approaches devised by
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