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AI-Generated Voice Deepfakes Aren’t Scary Good—Yet

By Lily Hay Newman
The threat of scammers using voice deepfakes in their cons is real, but researchers say old-school voice-impersonation attacks are still the more pressing concern.

The World’s Real ‘Cybercrime’ Problem

By Andrew Couts, Dhruv Mehrotra
From US state laws to the international stage, definitions of “cybercrime” remain vague, broad, and increasingly entrenched in our legal systems.

A Spy Wants to Connect With You on LinkedIn

By Jennifer Conrad, Matt Burgess
Russia, North Korea, Iran, and China have been caught using fake profiles to gather information. But the platform’s tools to weed them out only go so far.

The Different Methods and Stages of Penetration Testing

By The Hacker News
The stakes could not be higher for cyber defenders. With the vast amounts of sensitive information, intellectual property, and financial data at risk, the consequences of a data breach can be devastating. According to a report released by Ponemon institute, the cost of data breaches has reached an all-time high, averaging $4.35 million in 2022. Vulnerabilities in web applications are often the

Ransomware Attacks Have Entered a ‘Heinous’ New Phase

By Lily Hay Newman
With victims refusing to pay, cybercriminal gangs are now releasing stolen photos of cancer patients and sensitive student records.

How a Catholic Group Doxed Gay Priests

By Lily Hay Newman, Dhruv Mehrotra
Plus: A data breach exposes Washington, Ring camera footage has a new problem, and the George Santos scandal slips into the world of cybercrime.

‘Pig Butchering’ Scams Are Now a $3 Billion Threat

By Lily Hay Newman
The FBI’s latest Internet Crime Report highlights the stunning rise of investment-themed crimes over the past 18 months.

Who’s Behind the NetWire Remote Access Trojan?

By BrianKrebs

A Croatian national has been arrested for allegedly operating NetWire, a Remote Access Trojan (RAT) marketed on cybercrime forums since 2012 as a stealthy way to spy on infected systems and siphon passwords. The arrest coincided with a seizure of the NetWire sales website by the U.S. Federal Bureau of Investigation (FBI). While the defendant in this case hasn’t yet been named publicly, the NetWire website has been leaking information about the likely true identity and location of its owner for the past 11 years.

Typically installed by booby-trapped Microsoft Office documents and distributed via email, NetWire is a multi-platform threat that is capable of targeting not only Microsoft Windows machines but also Android, Linux and Mac systems.

NetWire’s reliability and relatively low cost ($80-$140 depending on features) has made it an extremely popular RAT on the cybercrime forums for years, and NetWire infections consistently rank among the top 10 most active RATs in use.

NetWire has been sold openly on the same website since 2012: worldwiredlabs[.]com. That website now features a seizure notice from the U.S. Department of Justice (DOJ), which says the domain was taken as part of “a coordinated law enforcement action taken against the NetWire Remote Access Trojan.”

“As part of this week’s law enforcement action, authorities in Croatia on Tuesday arrested a Croatian national who allegedly was the administrator of the website,” reads a statement by the DOJ today. “This defendant will be prosecuted by Croatian authorities. Additionally, law enforcement in Switzerland on Tuesday seized the computer server hosting the NetWire RAT infrastructure.”

Neither the DOJ’s statement nor a press release on the operation published by Croatian authorities mentioned the name of the accused. But it’s fairly remarkable that it has taken so long for authorities in the United States and elsewhere to move against NetWire and its alleged proprietor, given that the RAT’s author apparently did very little to hide his real-life identity.

The WorldWiredLabs website first came online in February 2012 using a dedicated host with no other domains. The site’s true WHOIS registration records have always been hidden by privacy protection services, but there are plenty of clues in historical Domain Name System (DNS) records for WorldWiredLabs that point in the same direction.

In October 2012, the WorldWiredLabs domain moved to another dedicated server at the Internet address 198.91.90.7, which was home to just one other domain: printschoolmedia[.]org, also registered in 2012.

According to DomainTools.com, printschoolmedia[.]org was registered to a Mario Zanko in Zapresic, Croatia, and to the email address zankomario@gmail.com. DomainTools further shows this email address was used to register one other domain in 2012: wwlabshosting[.]com, also registered to Mario Zanko from Croatia.

A review of DNS records for both printschoolmedia[.]org and wwlabshosting[.]com shows that while these domains were online they both used the DNS name server ns1.worldwiredlabs[.]com. No other domains have been recorded using that same name server.

The WorldWiredLabs website, in 2013. Source: Archive.org.

DNS records for worldwiredlabs[.]com also show the site forwarded incoming email to the address tommaloney@ruggedinbox.com. Constella Intelligence, a service that indexes information exposed by public database leaks, shows this email address was used to register an account at the clothing retailer romwe.com, using the password “123456xx.”

Running a reverse search on this password in Constella Intelligence shows there are more than 450 email addresses known to have used this credential, and two of those are zankomario@gmail.com and zankomario@yahoo.com.

A search on zankomario@gmail.com in Skype returns three results, including the account name “Netwire” and the username “Dugidox,” and another for a Mario Zanko (username zanko.mario).

Dugidox corresponds to the hacker handle most frequently associated with NetWire sales and support discussion threads on multiple cybercrime forums over the years.

Constella ties dugidox@gmail.com to a number of website registrations, including the Dugidox handle on BlackHatWorld and HackForums, and to IP addresses in Croatia for both. Constella also shows the email address zankomario@gmail.com used the password “dugidox2407.”

In 2010, someone using the email address dugidox@gmail.com registered the domain dugidox[.]com. The WHOIS registration records for that domain list a “Senela Eanko” as the registrant, but the address used was the same street address in Zapresic that appears in the WHOIS records for printschoolmedia[.]org, which is registered in Mr. Zanco’s name.

Prior to the demise of Google+, the email address dugidox@gmail.com mapped to an account with the nickname “Netwire wwl.” The dugidox email also was tied to a Facebook account (mario.zanko3), which featured check-ins and photos from various places in Croatia.

That Facebook profile is no longer active, but back in January 2017, the administrator of WorldWiredLabs posted that he was considering adding certain Android mobile functionality to his service. Three days after that, the Mario.Zank3 profile posted a photo saying he was selected for an Android instruction course — with his dugidox email in the photo, naturally.

Incorporation records from the U.K.’s Companies House show that in 2017 Mr. Zanko became an officer in a company called Godbex Solutions LTD. A Youtube video invoking this corporate name describes Godbex as a “next generation platform” for exchanging gold and cryptocurrencies.

The U.K. Companies House records show Godbex was dissolved in 2020. It also says Mr. Zanko was born in July 1983, and lists his occupation as “electrical engineer.”

Mr. Zanko did not respond to multiple requests for comment.

A statement from the Croatian police about the NetWire takedown is here.

Experts Reveal Google Cloud Platform's Blind Spot for Data Exfiltration Attacks

By Ravie Lakshmanan
Malicious actors can take advantage of "insufficient" forensic visibility into Google Cloud Platform (GCP) to exfiltrate sensitive data, a new research has found. "Unfortunately, GCP does not provide the level of visibility in its storage logs that is needed to allow any effective forensic investigation, making organizations blind to potential data exfiltration attacks," cloud incident response

The LastPass Hack Somehow Gets Worse

By Lily Hay Newman
Plus: The US Marshals disclose a “major” cybersecurity incident, T-Mobile has gotten pwned so much, and more.

The High-Stakes Blame Game in the White House Cybersecurity Plan

By Lily Hay Newman
The Biden administration’s new strategy would shift the liability for security failures to a controversial target: the companies that caused them.

Highlights from the New U.S. Cybersecurity Strategy

By BrianKrebs

The Biden administration today issued its vision for beefing up the nation’s collective cybersecurity posture, including calls for legislation establishing liability for software products and services that are sold with little regard for security. The White House’s new national cybersecurity strategy also envisions a more active role by cloud providers and the U.S. military in disrupting cybercriminal infrastructure, and it names China as the single biggest cyber threat to U.S. interests.

The strategy says the White House will work with Congress and the private sector to develop legislation that would prevent companies from disavowing responsibility for the security of their software products or services.

Coupled with this stick would be a carrot: An as-yet-undefined “safe harbor framework” that would lay out what these companies could do to demonstrate that they are making cybersecurity a central concern of their design and operations.

“Any such legislation should prevent manufacturers and software publishers with market power from fully disclaiming liability by contract, and establish higher standards of care for software in specific high-risk scenarios,” the strategy explains. “To begin to shape standards of care for secure software development, the Administration will drive the development of an adaptable safe harbor framework to shield from liability companies that securely develop and maintain their software products and services.”

Brian Fox, chief technology officer and founder of the software supply chain security firm Sonatype, called the software liability push a landmark moment for the industry.

“Market forces are leading to a race to the bottom in certain industries, while contract law allows software vendors of all kinds to shield themselves from liability,” Fox said. “Regulations for other industries went through a similar transformation, and we saw a positive result — there’s now an expectation of appropriate due care, and accountability for those who fail to comply. Establishing the concept of safe harbors allows the industry to mature incrementally, leveling up security best practices in order to retain a liability shield, versus calling for sweeping reform and unrealistic outcomes as previous regulatory attempts have.”

THE MOST ACTIVE, PERSISTENT THREAT

In 2012 (approximately three national cyber strategies ago), then director of the U.S. National Security Agency (NSA) Keith Alexander made headlines when he remarked that years of successful cyber espionage campaigns from Chinese state-sponsored hackers represented “the greatest transfer of wealth in history.”

The document released today says the People’s Republic of China (PRC) “now presents the broadest, most active, and most persistent threat to both government and private sector networks,” and says China is “the only country with both the intent to reshape the international order and, increasingly, the economic, diplomatic, military, and technological power to do so.”

Many of the U.S. government’s efforts to restrain China’s technology prowess involve ongoing initiatives like the CHIPS Act, a new law signed by President Biden last year that sets aside more than $50 billion to expand U.S.-based semiconductor manufacturing and research and to make the U.S. less dependent on foreign suppliers; the National Artificial Intelligence Initiative; and the National Strategy to Secure 5G.

As the maker of most consumer gizmos with a computer chip inside, China is also the source of an incredible number of low-cost Internet of Things (IoT) devices that are not only poorly secured, but are probably more accurately described as insecure by design.

The Biden administration said it would continue its previously announced plans to develop a system of labeling that could be applied to various IoT products and give consumers some idea of how secure the products may be. But it remains unclear how those labels might apply to products made by companies outside of the United States.

FIGHTING BADNESS IN THE CLOUD

One could convincingly make the case that the world has witnessed yet another historic transfer of wealth and trade secrets over the past decade — in the form of ransomware and data ransom attacks by Russia-based cybercriminal syndicates, as well as Russian intelligence agency operations like the U.S. government-wide Solar Winds compromise.

On the ransomware front, the White House strategy seems to focus heavily on building the capability to disrupt the digital infrastructure used by adversaries that are threatening vital U.S. cyber interests. The document points to the 2021 takedown of the Emotet botnet — a cybercrime machine that was heavily used by multiple Russian ransomware groups — as a model for this activity, but says those disruptive operations need to happen faster and more often.

To that end, the Biden administration says it will expand the capacity of the National Cyber Investigative Joint Task Force (NCIJTF), the primary federal agency for coordinating cyber threat investigations across law enforcement agencies, the intelligence community, and the Department of Defense.

“To increase the volume and speed of these integrated disruption campaigns, the Federal Government must further develop technological and organizational platforms that enable continuous, coordinated operations,” the strategy observes. “The NCIJTF will expand its capacity to coordinate takedown and disruption campaigns with greater speed, scale, and frequency. Similarly, DoD and the Intelligence Community are committed to bringing to bear their full range of complementary authorities to disruption campaigns.”

The strategy anticipates the U.S. government working more closely with cloud and other Internet infrastructure providers to quickly identify malicious use of U.S.-based infrastructure, share reports of malicious use with the government, and make it easier for victims to report abuse of these systems.

“Given the interest of the cybersecurity community and digital infrastructure owners and operators in continuing this approach, we must sustain and expand upon this model so that collaborative disruption operations can be carried out on a continuous basis,” the strategy argues. “Threat specific collaboration should take the form of nimble, temporary cells, comprised of a small number of trusted operators, hosted and supported by a relevant hub. Using virtual collaboration platforms, members of the cell would share information bidirectionally and work rapidly to disrupt adversaries.”

But here, again, there is a carrot-and-stick approach: The administration said it is taking steps to implement Executive Order (EO) 13984 –issued by the Trump administration in January 2021 — which requires cloud providers to verify the identity of foreign persons using their services.

“All service providers must make reasonable attempts to secure the use of their infrastructure against abuse or other criminal behavior,” the strategy states. “The Administration will prioritize adoption and enforcement of a risk-based approach to cybersecurity across Infrastructure-as-a-Service providers that addresses known methods and indicators of malicious activity including through implementation of EO 13984.”

Ted Schlein, founding partner of the cybersecurity venture capital firm Ballistic Ventures, said how this gets implemented will determine whether it can be effective.

“Adversaries know the NSA, which is the elite portion of the nation’s cyber defense, cannot monitor U.S.-based infrastructure, so they just use U.S.-based cloud infrastructure to perpetrate their attacks,” Schlein said. “We have to fix this. I believe some of this section is a bit pollyannaish, as it assumes a bad actor with a desire to do a bad thing will self-identify themselves, as the major recommendation here is around KYC (‘know your customer’).”

INSURING THE INSURERS

One brief but interesting section of the strategy titled “Explore a Federal Cyber Insurance Backdrop” contemplates the government’s liability and response to a too-big-to-fail scenario or “catastrophic cyber incident.”

“We will explore how the government can stabilize insurance markets against catastrophic risk to drive better cybersecurity practices and to provide market certainty when catastrophic events do occur,” the strategy reads.

When the Bush administration released the first U.S. national cybersecurity strategy 20 years ago after the 9/11 attacks, the popular term for that same scenario was a “digital Pearl Harbor,” and there was a great deal of talk then about how the cyber insurance market would soon help companies shore up their cybersecurity practices.

In the wake of countless ransomware intrusions, many companies now hold cybersecurity insurance to help cover the considerable costs of responding to such intrusions. Leaving aside the question of whether insurance coverage has helped companies improve security, what happens if every one of these companies has to make a claim at the same time?

The notion of a Digital Pearl Harbor incident struck many experts at the time as a hyperbolic justification for expanding the government’s digital surveillance capabilities, and an overstatement of the capabilities of our adversaries. But back in 2003, most of the world’s companies didn’t host their entire business in the cloud.

Today, nobody questions the capabilities, goals and outcomes of dozens of nation-state level cyber adversaries. And these days, a catastrophic cyber incident could be little more than an extended, simultaneous outage at multiple cloud providers.

The full national cybersecurity strategy is available from the White House website (PDF).

This Hacker Tool Can Pinpoint a DJI Drone Operator's Exact Location

By Andy Greenberg
Every DJI quadcopter broadcasts its operator's position via radio—unencrypted. Now, a group of researchers has learned to decode those coordinates.

China Is Relentlessly Hacking Its Neighbors

By Matt Burgess
New details reveal that Beijing-backed hackers targeted the Association of Southeast Asian Nations, adding to a string of attacks in the region.

Security News This Week: Sensitive US Military Emails Exposed

By Dhruv Mehrotra, Andrew Couts
Plus: Iran’s secret torture black sites, hacking a bank account with AI-generated voice, and Lance Bass’ unhinged encounter in Russia.

Ukraine Suffered More Wiper Malware in 2022 Than Anywhere, Ever

By Andy Greenberg
As Russia has accelerated its cyberattacks on its neighbor, it's barraged the country with an unprecedented volume of different data-destroying programs.

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

A New Kind of Bug Spells Trouble for iOS and macOS Security

By Matt Burgess
Security researchers found a class of flaws that, if exploited, would allow an attacker to access people’s messages, photos, and call history.

Hackers Ran Amok Inside GoDaddy for Nearly 3 Years

By Andy Greenberg, Andrew Couts
Plus: The FBI got (at least a little bit) hacked, an election-disruption firm gets exposed, Russia mulls allowing “patriotic hacking,” and more.

Pig Butchering Scams Are Evolving Fast

By Lily Hay Newman
Investment schemes are ensnaring victims with increasingly compelling narratives and believable tech.

North Korean Hackers Are Attacking US Hospitals

By Matt Burgess, Lily Hay Newman
Plus: Deepfake disinformation spotted in the wild, Android privacy problems in China, Reddit gets phished, and more.

Meet the Creator of North Korea’s Favorite Crypto Privacy Service

By Andy Greenberg
The world’s most prolific crypto thieves have used Sinbad.io to launder tens of millions. Its creator, “Mehdi,” answers WIRED’s questions.

SE Labs 2023 Annual Security Report Names Cisco as Best Next Generation Firewall

By Neville Letzerich

Cisco is honored to be this year’s winner of the Best Next Generation Firewall Award in the SE Labs 2023 Annual Report. This industry recognition validates Cisco’s continuous push towards harmonizing network, workload, and application security across hybrid and multicloud environments. I’m incredibly proud of the Cisco Secure Firewall team and am thankful for our amazing customers who continue to trust Cisco and develop their network security around our capabilities. 

SE Labs, a cybersecurity testing and evaluation firm, provides impartial and independent assessments of various cybersecurity products and solutions. In their 2023 Annual Report, SE Labs states: 

“Our Annual Security Awards recognizes security vendors that notonly do well in our tests, but perform well in the real world withreal customers. These awards are the only in the industry thatrecognize strong lab work combined with practical success.”

SE Labs Testing Methodology 

SE Labs performs tests on behalf of customers seeking independent proof-of-value assistance, as well as security vendors. At Cisco, we use third-party evaluations from multiple sources, including SE Labs, to augment our internal testing and to drive product improvement. 

Winners were determined after months of in-depth testing, based on a combination of continual public testing, private assessments and feedback from corporate clients who use SE Labs to help choose security products and services. The award further validates that our customers can expect superior threat protection and performance with Cisco Secure Firewall. 

SE Labs’ reports use the MITRE ATT&CK framework, employing both common “commodity” malware samples and sophisticated, targeted attacks. Their network security testing uses full attack chains to assess the detection and protection abilities of network devices and combinations of network and endpoint solutions. SE Labs publishes its testing methodologies and is BS EN ISO 9001: 2015 certified for The Provision of IT Security Product Testing. 

As a worldwide leader in networking and security, Cisco is better positioned than any other security vendor to incorporate effective firewall controls into our customers’ infrastructure — anywhere data and applications reside. We offer a comprehensive threat defense with industry-leading Snort 3 IPS to protect users, applications, and data from continuously evolving threats. Our solutions also leverage machine learning and advanced threat intelligence from Cisco Talos, one of the world’s largest commercial threat intelligence teams. 

Cisco Secure Firewall Key Features 

  • Cisco Secure Firewall’s threat-focused architecture enables superior visibility and control of network traffic. Many security practitioners today struggle with a lack of visibility into encrypted traffic, which is why Cisco has developed the differentiated Encrypted Visibility Engine that detects threats in encrypted traffic – with minimal to no decryption. Secure Firewall’s detailed analysis, visibility, and reporting enable organizations to rapidly gain insights into their network traffic, applications, and assets. 
  • Cisco Secure Firewall capabilities provide a unified security posture across the entire network. This is achieved through its tight integration with workload, web, email, and cloud security through our SecureX XDR platform. This integration increases the efficiency of the SecOps team, by accelerating threat investigation and response time. 
  • Designed to be adaptive and highly scalable in dynamic environments, Cisco Secure Firewall is expressly designed to reduce total cost of ownership. It helps teams save time with consistent policy enforcement, helping our customers realize up to a 195% return on investment over three years, as noted in the third-party research we commissioned with Forrester Consulting.   

In the constantly evolving world of cybersecurity, it is important to have access to the latest and most advanced technologies to stay ahead of threats. Whether you are an enterprise, government, healthcare, or a service provider organization, Cisco Secure Firewall provides top-ranked security. 

When you invest in Cisco Secure Firewall, you are investing in award-winning threat defense with capabilities that are built for the real world. Learn more about SE Labs 2023 Annual Report, Cisco Secure Firewall and how you can refresh your firewall. 


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Russia’s Ransomware Gangs Are Being Named and Shamed

By Matt Burgess, Lily Hay Newman
Members of the Trickbot and Conti cybercrime gangs have been sanctioned in an unprecedented wave of action against the country’s hackers.

The Power of Relationships: Executive Buy-In and Security Culture for Bolstering Resilience

By J. Wolfgang Goerlich

“Where do we start?”

This is the question every CISO asks about every new program. In fact, I ask and answer that question many times a month. There’s a reason for this, of course. A strong start to any project builds momentum, reassures stakeholders, and sets the stage for what’s to come. Security resilience initiatives are no different. Security resilience is the ability to anticipate and respond to unpredictable threats or changes, and then emerge stronger. It’s hard to imagine a more vital undertaking for CISOs. And as with all initiatives, CISOs always want to know where to begin.

They’re likely to find some valuable starting points in the Security Outcomes Report, Volume 3: Achieving Security Resilience, the latest in a series of reports released by Cisco and reflecting the viewpoints of 4,700 IT and security professionals from 26 countries. The report identifies seven success factors CISOs can pursue to improve outcomes within their own enterprise security resilience programs, placing a high priority on security resilience. The seven success factors range in nature from the architectural—simplifying your hybrid IT environment, maximizing zero trust adoption—to more relationship-focused factors.

It’s the latter that caught my eye.

Seven success factors for resilience:

  1. Establish executive support
  2. Cultivate a culture of security
  3. Hold resources in reserve
  4. Simplify hybrid cloud environments
  5. Maximize zero trust adoption
  6. Extend detection and response capabilities
  7. Take security to the edge

Solid relationships enable security resilience

It shouldn’t surprise any CISO that the first two success factors are built around relationships. These factors zero in on relationships with company leadership (as measured by establishing executive support) and relationships with people across the organization (as measured by cultivating a culture of security). Experienced CISOs know that these factors can make or break security initiatives.

Given the objective of security resilience is to withstand threats and come back even stronger, it’s clear that resilience must exist before, during, and after a cybersecurity incident. This has repercussions on the executive level and throughout the business. Lack of executive support can lead to detection, response, and recovery capabilities that are chronically underfunded. This leaves CISOs at a disadvantage when security incidents do inevitably happen and panic strikes the C-suite. What’s more, CISOs who lack strong executive relationships may also find themselves struggling to oversee incident management and coordinate communications. And afterward? Remediating and improving the security posture, which often impacts multiple parts of the organization beyond IT and often requires significant investment, stalls without a necessary lift from leadership.

The security report, which scores resilience levels across a series of criteria, finds that organizations reporting a strong backing from leadership have resilience scores that are 39% higher when compared to organizations reporting weak support. “Bridges to the C-suite are built upon a solid understanding of how the business works and how security initiatives can make it work even better,” notes the report. “Support goes both ways in any relationship, after all.”

In addition to keeping the program aligned, CISOs must keep in communication with their peers and superiors. Those who share only transactional relationships within the C-Suite find their interactions limited to status updates and budget requests. Transformational relationships, however, involve more frequent and deeper communication and interactions, which cover a broader set of topics than submitting the latest budget ask. They are, in other words, more valuable.

A security culture can create willing resilience partners

Of course, executive support is just one crucial factor for success. Resilience programs need broad support from throughout the organization, not just at the top. Every time an employee picks up a mouse or accesses an app from their mobile phone, they make a choice to either strengthen or lessen the organization’s security posture. Every time an improvement is necessary following a security event, cultural buy-in determines whether this new request from security is implemented or circumvented.

According to the report, organizations that successfully foster a culture of security can see a 46% increase in resilience compared to those who lack such a culture. Much like aligning a program with the business direction furthers leadership buy-in, CISOs need to align security policy with the functional direction of the business—but in a way that helps employees see security measures as protecting not just corporate data and IT assets but also their own future. When employees aren’t on board or see security measures as IT concerns with no relation to them, resilience suffers. “Frequent security policy violations and workarounds,” notes the report, “are evidence of poor security culture.” By viewing policy exceptions as feedback, and investigating these from the perspective of identifying and correcting misalignment, security leaders can enroll employees as the willing participants in the solution—rather than contributors to the problem.

Security leaders know, by and large, what we need to do to secure our organizations. We have frameworks with pages of controls. We have risk registers with lists of action items. Where we often struggle is translating this knowledge into action. To do that, we must see our efforts within the strategic context of executive leaders and the tactical reality of the line managers in our organization. We must personalize and prioritize our efforts around what matters to the people we collaborate with. It is through engaging people that our security programs become human-centric and, in turn, become more resilient.

Where do we start? With relationships. Good relationships lead to good security programs, and good security programs lead to great relationships. And all of these contribute to security resilience.

Download the Security Outcomes Report, Vol. 3: Achieving Security Resilience today.

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Googling for Software Downloads Is Extra Risky Right Now

By Lily Hay Newman, Andrew Couts
Plus: The FTC cracks down on GoodRx, Microsoft boots “verified” phishing scammers, researchers disclose EV charger vulnerabilities, and more.

You Really Need to Update Firefox and Android Right Now

By Kate O'Flaherty
January saw a slew of security patches for iOS, Chrome, Windows, and more.

The Untold Story of a Crippling Ransomware Attack

By Matt Burgess
More than two years ago, criminals crippled the systems of London’s Hackney Council. It's still fighting to recover.

A Link to News Site Meduza Can (Technically) Land You in Russian Prison

By Andy Greenberg, Andrew Couts
Plus: Hive ransomware gang gets knocked offline, FBI confirms North Korea stole $100 million, and more.

Most Criminal Cryptocurrency Funnels Through Just 5 Exchanges

By Andy Greenberg
The crypto money-laundering market is tighter than at any time in the past decade, and the few big players are moving a “shocking” amount of currency.

Is Once-Yearly Pen Testing Enough for Your Organization?

By The Hacker News
Any organization that handles sensitive data must be diligent in its security efforts, which include regular pen testing. Even a small data breach can result in significant damage to an organization's reputation and bottom line. There are two main reasons why regular pen testing is necessary for secure web application development: Security: Web applications are constantly evolving, and new

The Unrelenting Menace of the LockBit Ransomware Gang

By Matt Burgess, Lily Hay Newman
The notorious Russian-speaking cybercriminals grew successful by keeping a low profile. But now they have a target on their backs.

Flaw in Diksha App Exposed the Data of Millions of Indian Students

By Vittoria Elliott, Dhruv Mehrotra
A mandatory app exposed the personal information of students and teachers across the country for over a year.

The Biggest US Surveillance Program You Didn’t Know About

By Dhruv Mehrotra, Andrew Couts
Plus: A leaked US “no fly” list, the SCOTUS leaker slips investigators, and PayPal gets stuffed.

T-Mobile's New Data Breach Shows Its $150 Million Security Investment Isn't Cutting It

By Lily Hay Newman
The mobile operator just suffered at least its fifth data breach since 2018, despite promising to spend a fortune shoring up its systems.

Welcome to the Era of Internet Blackouts

By Lily Hay Newman
New research from Cloudflare shows that connectivity disruptions are becoming a problem around the globe, pointing toward a troubling new normal.

A Sneaky Ad Scam Tore Through 11 Million Phones

By Matt Burgess
Some 1,700 spoofed apps, 120 targeted publishers, 12 billion false ad requests per day—Vastflux is one of the biggest ad frauds ever discovered.

Earth Bogle Campaign Unleashes NjRAT Trojan on Middle East and North Africa

By Ravie Lakshmanan
An ongoing campaign dubbed Earth Bogle is leveraging geopolitical-themed lures to deliver the NjRAT remote access trojan to victims across the Middle East and North Africa. "The threat actor uses public cloud storage services such as files[.]fm and failiem[.]lv to host malware, while compromised web servers distribute NjRAT," Trend Micro said in a report published Wednesday. Phishing emails,

Encryption is on the Rise!

By Justin Buchanan

When the Internet Engineering Task Force (IETF) announced the TLS 1.3 standard in RFC 8446 in August 2018, plenty of tools and utilities were already supporting it (even as early as the year prior, some web browsers had implemented it as their default standard, only having to roll it back due to compatibility issues. Needless to say, the rollout was not perfect).

Toward the end of 2018, EMA conducted a survey of customers regarding their TLS 1.3 implementation and migration plans. In the January 2019 report, EMA concluded:

Some participants’ organizations may find they have to go back to the drawing board and come up with a Plan B to enable TLS 1.3 without losing visibility, introducing unacceptable performance bottlenecks and greatly increasing operational overhead. Whether they feel they have no choice but to enable TLS 1.3 because major web server and browser vendors have already pushed ahead with it or because they need to keep pace with the industry as it embraces the new standard is unclear. What is clear is that security practitioners see the new standard as offering greater privacy and end-to-end data security for their organizations, and that the long wait for its advancement is over.

When EMA asked many of the same questions in an updated survey of 204 technology and business leaders toward the end of 2022, they found that nearly all the conclusions in the 2018/2019 report still hold true today. Here are the three biggest takeaways from this most recent survey:

  • Remote work, regulatory and vendor controls, and improved data security are drivers. With all the attention paid to data security and privacy standards over the past few years, it is little wonder that improved data security and privacy were primary drivers for implementation – and those goals were generally achieved with TLS 1.3. The push for remote working has also increased TLS 1.3 adoption because security teams are looking for better ways for remote workers (76% using) and third-party vendors (64% using) to access sensitive data.
  • Resource and implementation costs are significant. Eighty-seven percent that have implemented TLS 1.3 require some level of infrastructure changes to accommodate the update. As organizations update their network infrastructure and security tools, migration to TLS 1.3 becomes more realistic, but it is a difficult pill to swallow for many organizations to revamp their network topology due to this update. Over time, organizations will adopt TLS 1.3 for no other reason than existing technologies being depreciated – but that continues to be a slow process. There is also a real consideration about the human resources available to implement a project with very little perceived business value (81%), causing workload increases to thinly stretched security staff. Again, this will likely change as the technology changes and improves, but competing business needs will take a higher priority.
  • Visibility and monitoring considerations remain the biggest obstacle to adoption. Even with vendor controls and regulatory requirements, many organizations have delayed implementing TLS 1.3 for the significant upheaval that it would cause with their security and monitoring plans within their environment. Even with improved technologies (since the first announcement of TLS 1.3), organizations still cannot overcome these challenges. Organizations are evaluating the risks and compensating controls when it comes to delaying the implementation, and they continue to evaluate stop-gap solutions that are easier and less intrusive to implement than TLS 1.3 while road-mapping their eventual TLS 1.3 migration.

While regulatory frameworks and vendor controls continue to push the adoption of the TLS 1.3 standard, adoption still comes with a significant price tag – one that many organizations are just not yet ready or able to consume. Technology improvements will increase rates of adoption over time, such as Cisco Secure Firewall’s ability to decrypt and inspect encrypted traffic. More recent and unique technologies, like Cisco’s encrypted visibility engine, allow the firewall to recognize attack patterns in encrypted traffic without decryption. This latter functionality preserves performance and privacy of the encrypted flows without sacrificing the visibility and monitoring that 94% of respondents were concerned about.

Readers wishing to read the full EMA report can do so here and readers wishing to learn more about Cisco Secure Firewall’s encyrpted visibility engine can do so here.


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Russian Ransomware Gang Attack Destabilizes UK Royal Mail

By Lily Hay Newman
Plus: Joe Biden’s classified-documents scandal, the end of security support for Windows 7, and more.

In the Fight Against Scams, ‘Cyber Ambassadors’ Enter the Chat

By Varsha Bansal
Police in the Indian state of Telangana have found a novel way to help people avoid getting swindled online: grassroots education.

A Siemens S7-1500 Logic Controller Flaw Raises the Specter of Stuxnet

By Lily Hay Newman
More than 120 models of Siemens' S7-1500 PLCs contain a serious vulnerability—and no fix is on the way.

Slack Discloses Breach of Its Github Code Repository

By Matt Burgess
Plus: Russian spies uncovered in Europe, face recognition leads to another wrongful arrest, a new porn ID law, and more.

Twitter Data Leak: What the Exposure of 200 Million User Emails Means for You

By Lily Hay Newman
The exposure of hundreds of millions of email addresses puts pseudonymous users of the social network at risk.

Why Zero Trust Helps Unlock Security Resilience

By Richard Archdeacon

Speaking to many CISOs, it’s clear that many security executives view zero trust as a journey that can be difficult to start, and one that even makes identifying successful outcomes a challenge. Simultaneously, the topic of security resilience has risen up the C-level agenda and is now another focus for security teams. So, are these complementary? Or will they present conflicting demands that will disrupt rather than assist the CISO in their role?

One of the most striking results coming from Cisco’s latest Security Outcomes Report is that organizations with a mature zero trust implementation – those with basic controls, constant validation and automated workflows – experience a 30% improvement in security resilience compared to those who have not started their zero trust journey. So, these two initiatives – implementing zero trust and working to achieve security resilience – appear to complement each other while supporting the CISO when a cyber black swan swims in.

Security resilience is the ability to withstand an incident and recover more strongly. In other words, ride out the storm and come back better. Meanwhile, zero trust is best known as a “never trust, always verify” principle. The idea is to check before you provide access, and authenticate identity based on a risk profile of assets and users. This starts to explain why the two are complementary.

Cisco Security Outcomes Report: Resilience Outcomes - Ranked by Importance

The top security resilience outcomes

The Security Outcomes Report summarizes the results of a survey of more than 4,700 security professionals. Among the insights that emerge are nine security resilience outcomes they consider most important. The top three outcomes for resilience are prevention, mitigation and adaptation. In other words, they prioritize first the ability to avoid an incident by having the right controls in place, then the ability to reduce and reverse the overall impact when an incident occurs, and then the ability to pivot rapidly without being bound by too rigid a set of systems. Zero trust will support these outcomes.

Preventing, or reducing the likelihood of a cybersecurity incident, is an obvious first step and no surprise as the most important outcome. Pursuing programs that identify users and monitor the health of devices is a crucial a preventative step. In fact, simply ensuring that multifactor authentication (MFA) is ubiquitous across the organization can bring an 11% improvement in security resilience.

When incidents occur, security teams will need a clear picture of the incident they are having to manage. This will help in them respond quickly, with a proactive determination of recovery requirements. Previous studies show that once a team achieves 80% coverage of critical systems, the ability to maintain continuity increases measurably. This knowledge will also help teams develop more focused incident response processes. A mature zero trust environment has also been found to almost double a team’s ability to streamline these processes when compared to a limited zero trust implementation.

Communication is key

When talking to CISOs about successful implementation programs, communication within the business emerges as a recurring theme. Security teams must inform and guide users through the phases of zero trust implementation, while emphasizing the benefits to them. When users are aware of their responsibility to keep the organization secure, they take a participatory role in an important aspect of the business. So, when an incident occurs, they can support the company’s response. This increases resilience. Research has shown that a mature program will more than double the effect of efforts to improve the security culture. Additionally, the same communication channels established to spread the word of zero trust now can be called upon when an incident requires immediate action.

Mature implementations have also been seen to help increase cost effectiveness and reduce unplanned work. This releases more resource to cope with the unexpected – another important driver of resilience surfaced in Volume 3 of the Security Outcomes Report. Having more efficient resources enables the security function to reallocate teams when needed. Reviewing and updating resource processes and procedures, along with all other important processes, is a vital part of any of any change initiative. Mature zero trust environments reflect this commitment continuous assessment and improvement.

Adapt and innovate

Inherent in organizational resilience is the ability to adapt and innovate. The corporate landscape is littered with examples of those who failed to do those two things. A zero trust environment enables organizations to lower their risk of incidents while adapting their security posture to fit the ongoing changes of the business. Think of developing new partners, supporting new products remotely, securing a changing supply chain. The basic tenets of MFA – including continuous validation, segmentation and automation – sets a foundation that accommodates those changes without compromising security. The view that security makes change difficult is becoming obsolete. With zero trust and other keys to achieving security resilience, security now is a partner in business change. And for those CISOs who fear even starting this journey, understanding the benefits should help them take that first step.

Download the Security Outcomes Report, Vol. 3: Achieving Security Resilience today.

Learn more about cybersecurity research and security resilience:


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Turla, a Russian Espionage Group, Piggybacked on Other Hackers' USB Infections

By Andy Greenberg
The infamous, FSB-connected Turla group took over other hackers' servers, exploiting their USB drive malware for targeted espionage.

Cops Hacked Thousands of Phones. Was It Legal?

By Matt Burgess
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What Is a Pig Butchering Scam?

By Lily Hay Newman
This type of devastating scheme ensnares victims and takes them for all they’re worth—and the threat is only growing.

Update Android Right Now to Fix a Scary Remote-Execution Flaw

By Kate O'Flaherty
Plus: Patches for Apple iOS 16, Google Chrome, Windows 10, and more.

The Worst Hacks of 2022

By Lily Hay Newman
The year was marked by sinister new twists on cybersecurity classics, including phishing, breaches, and ransomware attacks.

LastPass Data Breach: It’s Time to Ditch This Password Manager

By Lily Hay Newman
The password manager’s most recent data breach is so concerning, users need to take immediate steps to protect themselves.

Russia’s Cyberwar Foreshadowed Deadly Attacks on Civilians

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Hacktivism Is Back and Messier Than Ever

By Matt Burgess
Throughout 2022, geopolitics has given rise to a new wave of politically motivated attacks with an undercurrent of state-sponsored meddling.

The Most Dangerous People on the Internet in 2022

By WIRED Staff
From SBF to the GRU, these were the most disruptive forces of online chaos this year.

Russians Hacked JFK Airport Taxi Dispatch in Line-Skipping Scheme

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Plus: An offensive US hacking operation, swatters hacking Ring cameras, a Netflix password-sharing crackdown, and more.

Black Hat Europe 2022 NOC: The SOC Inside the NOC

By Jessica Bair

Our core mission in the NOC is network resilience. We also provide integrated security, visibility and automation, a SOC inside the NOC.

In part one, we covered:

  • Designing the Black Hat Network, by Evan Basta
  • AP Placement Planning, by Sandro Fasser
  • Wi-Fi Air Marshal, by Jérémy Couture, Head of SOC, Paris 2024 Olympic Games
  • Meraki Dashboards, by Rossi Rosario Burgos
  • Meraki Systems Manager, by Paul Fidler
  • A Better Way to Design Training SSIDs/VLANs, by Paul Fidler

In part two, we are going deep with security:

  • Integrating Security
  • First Time at Black Hat, by Jérémy Couture, Head of SOC, Paris 2024 Olympic Games
  • Trojan on an Attendee Laptop, by Ryan MacLennan
  • Automated Account Provisioning, by Adi Sankar
  • Integrating Meraki Scanning Data with Umbrella Security Events, by Christian Clasen
  • Domain Name Service Statistics, by Adi Sankar

Integrating Security

As the needs of Black Hat evolved, so did the Cisco Secure Technologies in the NOC:

The SecureX dashboard made it easy to see the status of each of the connected Cisco Secure technologies.

Since joining the Black Hat NOC in 2016, my goal remains integration and automation. As a NOC team comprised of many technologies and companies, we are pleased that this Black Hat NOC was the most integrated to date, to provide an overall SOC cybersecurity architecture solution.

We have ideas for even more integrations for Black Hat Asia and Black Hat USA 2023. Thank you, Piotr Jarzynka, for designing the integration diagram.

Below are the SecureX threat response integrations for Black Hat Europe, empowering analysts to investigate Indicators of Compromise very quickly, with one search.

The original Black Hat NOC integration for Cisco was NetWitness sending suspicious files to Threat Grid (know Secure Malware Analytics). We expanded that in 2022 with Palo Alto Networks Cortex XSOAR and used it in London, for investigation of malicious payload attack.

NetWitness observed a targeted attack against the Black Hat network. The attack was intended to compromise the network.

NetWitness extracted the payload and sent it to Secure Malware Analytics for detonation.

Reviewing the analysis report, we were able to quickly determine it was the MyDoom worm, which would have been very damaging.

The attack was blocked at the perimeter and the analysts were able to track and enrich the incident in XSOAR.

First Time at Black Hat, by Jérémy Couture, Head of SOC, Paris 2024 Olympic Games

My first time at Black Hat turned out to be an incredible journey!

Thanks to the cybersecurity partnership between Paris 2024 and Cisco, I was able to integrate into the Cisco Crew, to operate the NOC/SOC as a Threat Hunter on the most dangerous network in the world for this European Edition of Black Hat.

My first day, I helped with deploying the network by installing the wireless Meraki APs on the venue, understanding how they were configured and how they could help analysts to identify and locate any client connected to the network that could have a bad behavior during the event, the idea being to protect the attendees if an attack was to spray on the network.

Following this “physical” deployment, I’ve been able to access the whole Cisco Secure environment including Meraki, Secure Malware Analytics, Umbrella, SecureX and the other Black Hat NOC partners software tools.

SecureX was definitely the product on which I wanted to step up. By having so fantastic professionals around me, we were able to dig in the product, identifying potential use cases to deploy in the orchestration module and expected integrations for Paris 2024.

Time was flying and so were the attendees to the conference, a network without user is fun but can be quite boring as nothing happens, having so many cybersecurity professional at the same place testing different security malwares, attacks and so on led us to very interesting investigations. A paradox at the Black Hat, we do not want to block malicious content as it could be part of exercises or training classes, quite a different mindset as what we, security defenders, are used to! Using the different components, we were able to find some observables/IOCs that we investigate through SecureX, SecureX being connected to all the other components helped us to enrich the observables (IPs, urls, domains…), understanding the criticality of what we identified (such as malware payloads) and even led us to poke the folks in the training classes to let them know that something really wrong was happening on their devices.

Being part of the Black Hat NOC was an incredible experience, I was able to meet fantastic professionals, fully committed on making the event a success for all attendees and exhibitors. It also helped me to better understand how products, that we use or will use within Paris 2024, could be leveraged to our needs and which indicators could be added to our various Dashboards, helping us to identify, instantaneously, that something is happening. 

Trojan on an Attendee Laptop, by Ryan MacLennan

During the last day of Black Hat Europe, our NOC partner, NetWitness saw some files being downloaded on the network. The integration again automatically carved out the file and submitted the Cisco Secure Malware Analytics (SMA) platform. One of those files came back as a trojan, after SMA detonated the file in a sandbox environment. The specific hash is the below SHA-256:

938635a0ceed453dc8ff60eab20c5d168a882bdd41792e5c5056cc960ebef575

The screenshot below shows some of the behaviors that influenced the decision:

The result of seeing these behaviors caused SMA to give it the highest judgement score available to a detonated file:

After this judgement was made, we connected with the Palo Alto Networks team, and they found the IP address associated with the file download.

Once we had this information, we went to the Meraki dashboard and did a search for the IP address. The search returned only one client that has been associated with the address for the entire Black Hat conference.

Knowing that there has only been one client associated with the address made finding the attendee easier. We then needed to know where they were and Meraki had this figured out. After opening the client’s profile, we saw what SSID and access point (AP) they were connected to using the Meraki location map.

We then found the attendee and let them know to have their IT inspect their laptop to make sure it is clean.

Apart from the technical challenges of running a temporary network for N thousand people, the Black Hat event reminded us that success doesn’t happen without teamwork; that leadership isn’t just about keeping the project on track. It is also about looking after the team and that small details in planning, build up and tear down can be just as important, as having all the right tools and fantastically skilled Individuals using them during the event itself.

Automated Account Provisioning, by Adi Sankar

In the Cisco Secure technology stack, within the Black Hat NOC, we use SecureX Single Sign-on. This reduces the confusion of managing multiple accounts and passwords. It also streamlines the integrations between the Cisco products and our fellow NOC partners. We have an open ecosystem approach to integrations and access in the NOC, so we will provision Cisco Secure accounts for any staff member of the NOC. Logging into each individual console and creating an account is time consuming and can often lead to confusion on which tools to provision and which permission levels are needed.

To automate this process, I developed two workflows: one to create non-admin users for NOC partners and one to create administrator accounts in all the tools for Cisco staff. The workflows create accounts in SecureX, Secure Malware Analytics (Threat Grid), Umbrella DNS and Meraki dashboard, all using SecureX Single Sign-On.

Here is what the workflow looks like for creating non-admin users.

The workflow requires three inputs: first name, last name, and email. Click Run.

The sequence of API calls is as follows:

  • Generate a SecureX token to access the SecureX API including the “admin/invite:write, invite:write” scopes.
  • Invite the User to SecureX using the invite API (https://visibility.amp.cisco.com/iroh/invite/index.html#/). In the body of this POST the role is set to “user”. In the Administrator workflow this would be set to “admin” allowing full access to SecureX.
  • If the invite fails due to a duplicate invite, print an error message in Webex teams.
  • Invite the user to the Meraki dashboard using the “admins” API (https://api.meraki.com/api/v1/organizations/{organizationId}/admins). In the body of this call, the organization access is set to none, and access to two networks (Wireless network and Systems Manager) are set to “read-only” to ensure the user cannot make any changes to affect the network. In the Administrator version org access is still set to none but “full” permissions are provided to the two networks, something we do not want all users to have.
  • Generate a token to the new Umbrella API using https://api.umbrella.com/auth/v2/token with the following scopes (read admin users, write admin users, read admin roles). This single endpoint for generating a token based on scopes has made using the Umbrella API significantly easier.
  • Then invite the user to Umbrella using the “admins” API at (https://api.umbrella.com/admin/v2/users) and in the body of this POST the “role ID” is set to 2 to ensure read-only permissions are provisioned for Umbrella.
  • Create a user in Secure Malware analytics using the API at (https://panacea.threatgrid.com/api/v3/organizations/<ORG_ID>/users). The body of this request simply creates a Malware Analytics login using the users last name and appending “_blackhat”
  • The last call is to send a password reset email for the Malware Analytics user. (https://panacea.threatgrid.com/api/v3/users/<LOGIN>/password-email) They can set their password via the email, login to the Malware Analytics console and then link their SecureX sign-on account, which means they will no longer need to use their Malware Analytics credentials.

Once the workflow has completed successfully, the user will receive four emails to create a SecureX Sign-On account and accept the invitations to the various products. These workflows really improved our responsiveness to account provisioning requests and makes it much easier to collaborate with other NOC partners.

Integrating Meraki Scanning Data with Umbrella Security Events, by Christian Clasen

Over the previous Black Hat events, we have been utilizing Meraki scanning data to get location data for individual clients, as they roamed conference. In the initial blog post (Black Hat Asia 2022), we created a Docker container to accept the data from the Meraki Scanning API and save it for future analysis. At Black Hat USA 2022, we wrote about how to use Python Folium to use the flat text files to generate chronological heatmaps that illustrated the density of clients throughout the conference.

This time around, we’ve stepped it up again by integrating Umbrella DNS Security events and adding the ability to track clients across the heatmap using their local IP address.

To improve the portability of our data and the efficiency of our code, we began by moving from flat JSON files to a proper database. We chose SQLite this time around, though going forward we will likely use Mongo.

Both can be queried directly into Python Pandas dataframes which is what will give us the optimal performance we are looking for. We have a dedicated Docker container (Meraki-Receiver) that will validate the incoming data stream from the Meraki dashboard and insert the values into the database.

The database is stored on a Docker volume that can be mounted by our second container, the Meraki-Mapper. Though this container’s primary purpose is building the heatmaps, it also performs the task of retrieving and correlating Umbrella DNS security events. That is, any DNS query from the Black Hat network that matches one of several predefined security categories. Umbrella’s APIs were recently improved to add OAuth and simplify the URI scheme for each endpoint. After retrieving a token, we can get all security events in the time frame of the current heatmap with one call.

What we want to do with these events is to create Folium Markers. These are static “pins” that will sit on the map to indicate where the DNS query originated from. Clicking on a marker will popup more information about the query and the client who sent it.

Thanks to the Umbrella Virtual Appliances in the Black Hat network, we have the internal IP address of the client who sent the DNS query. We also have the internal IP address in the Meraki scanning data, along with the latitude and longitude. After converting the database query into a Pandas dataframe, our logic takes the IP address from the DNS query and finds all instances in the database of location data for that IP within a 5-minute window (the resolution of our heatmap).

What we end up with is a list of dictionaries representing the markers we want to add to the map. Using Bootstrap, we can format the popup for each event to make it look a bit more polished. Folium’s Popup plugin allows for an iFrame for each marker popup.

The result is a moving heatmap covering an entire day on a given conference floor, complete with markers indicating security events (the red pushpin icon).

Clicking on the pushpin shows the details of the query, allowing us in the NOC to see the exact location of the client when they sent it.

To further improve this service during the next conference, we plan to implement a web page where NOC staff can submit an IP address and immediately get map tracking that client through the conference floor. This should give us an even more efficient way to find and notify folks who are either behaving maliciously or appear to be infected.

Domain Name Service Statistics, by Adi Sankar

For years we have been tracking the DNS stats at the Blackhat conferences. The post-pandemic 2022 numbers look like we never skipped a beat after the dip in DNS queries from 2021, seen in the bar graph below. This year’s attendance saw well over 11 million total DNS queries.

The Activity volume view from Umbrella gives a top-level level glance of activity by category, which we can drill into for deeper threat hunting. On trend with the previous Black Hat Europe events, the top Security categories were Dynamic DNS and Newly Seen Domains. However, it’s worth noting a proportionally larger increase in the cryptomining and phishing categories from 9 to 17 and 28 to 73, respectively, compared to last year.

These years, Black Hat saw over 4,100 apps connect to the network, which is nearly double of what was seen last year. However, still not topping over 6,100 apps seen at Black Hat USA early this year.

Should the need arise, we can block any application, such as Mail.ru above.

Black Hat Europe 2022 was the best planned and executed NOC in my experience, with the most integrations and visibility. This allowed us the time to deal with problems, which will always arise.

We are very proud of the collaboration of the team and the NOC partners.

Black Hat Asia will be in May 2023, at the Marina Bay Sands, Singapore…hope to see you there!

Acknowledgments

Thank you to the Cisco NOC team:

  • Cisco Secure: Ian Redden, Christian Clasen, Aditya Sankar, Ryan MacLennan, Guillaume Buisson, Jerome Schneider, Robert Taylor, Piotr Jarzynka, Tim Wadhwa-Brown and Matthieu Sprunck
  • Threat Hunter / Paris 2024 Olympics SOC: Jérémy Couture
  • Meraki Network: Evan Basta, Sandro Fasser, Rossi Rosario Burgos, Otis Ioannou, Asmae Boutkhil, Jeffry Handal and Aleksandar Dimitrov Vladimirov
  • Meraki Systems Manager: Paul Fidler

Also, to our NOC partners NetWitness (especially David Glover, Iain Davidson, Alessandro Contini and Alessandro Zatti), Palo Alto Networks (especially James Holland, Matt Ford, Matt Smith and Mathew Chase), Gigamon, IronNet, and the entire Black Hat / Informa Tech staff (especially Grifter ‘Neil Wyler’, Bart Stump, Steve Fink, James Pope, Jess Stafford and Steve Oldenbourg).

About Black Hat

For 25 years, Black Hat has provided attendees with the very latest in information security research, development, and trends. These high-profile global events and trainings are driven by the needs of the security community, striving to bring together the best minds in the industry. Black Hat inspires professionals at all career levels, encouraging growth and collaboration among academia, world-class researchers, and leaders in the public and private sectors. Black Hat Briefings and Trainings are held annually in the United States, Europe and USA. More information is available at: blackhat.com. Black Hat is brought to you by Informa Tech.


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Black Hat Europe 2022 NOC: When planning meets execution

By Jessica Bair

In this blog about the design, deployment and automation of the Black Hat network, we have the following sections:

  • Designing the Black Hat Network, by Evan Basta
  • AP Placement Planning, by Sandro Fasser
  • Wi-Fi Air Marshal, by Jérémy Couture, Head of SOC, Paris 2024 Olympic Games
  • Meraki Dashboards, by Rossi Rosario Burgos
  • Meraki Systems Manager, by Paul Fidler
  • A Better Way to Design Training SSIDs/VLANs, by Paul Fidler

Cisco is honored to be a Premium Partner of the Black Hat NOC, and is the Official Network Platform, Mobile Device Management, Malware Analysis and DNS (Domain Name Service) Provider of Black Hat.

2022 was Cisco’s sixth year as a NOC partner for Black Hat Europe. However, it was our first time building the network for Black Hat Europe. We used experiences of Black Hat Asia 2022 and Black Hat USA 2022 to refine the planning for network topology design and equipment. Below are our fellow NOC partners providing hardware, to build and secure the network, for our joint customer: Black Hat.

Designing the Black Hat Network, by Evan Basta

We are grateful to share that Black Hat Europe 2022 was the smoothest experience we’ve had in the years at Black Hat. This is thanks to the 15 Cisco Meraki and Cisco Secure engineers on site (plus virtually supporting engineers) to build, operate and secure the network; and great NOC leadership and collaborative partners.

To plan, configure, deploy (in two days), maintain resilience, and recover (in four hours) an enterprise class network, took a lot of coordination. We appreciate the Black Hat NOC leadership, Informa and the NOC partners; meeting each week to discuss the best design, staffing, gear selection and deployment, to meet the unique needs of the conference. Check out the “Meraki Unboxed” podcast – Episode 94: Learnings from the Black Hat Europe 2022 Cybersecurity Event

We must allow real malware on the Black Hat network: for training, demonstrations, and briefing sessions; while protecting the attendees from attack within the network from their fellow attendees, and prevent bad actors from using the network to attack the Internet. It is a critical balance to ensure everyone has a safe experience, while still being able to learn from real world malware, vulnerabilities, and malicious websites.

In addition to the weekly meetings with Black Hat and the other partners, the Cisco Meraki engineering team of Sandro Fasser, Rossi Rosario Burgos, Otis Ioannou, Asmae Boutkhil, Jeffry Handal and I met every Friday for two months. We also discussed the challenges in a Webex space with other engineers who worked on past Black Hat events.

The mission:

Division of labor is essential to reduce mistakes and stay laser focused on security scope. Otis took the lead working on network topology design with Partners. Asmae handled the port assignments for the switches. Rossi ensured every AP and Switch was tracked, and the MAC addresses were provided to Palo Alto Networks for DCHP assignments. Otis and Rossi spent two days in the server room with the NOC partners, ensuring every switch was operating and configured correctly. Rossi also deployed and configured a remote Registration switch for Black Hat.

AP Placement Planning, by Sandro Fasser

In the weeks before deployment, our virtual Meraki team member, Aleksandar Dimitrov Vladimirov, and I focused on planning and creating a virtual Wi-Fi site survey. Multiple requirements and restrictions had to be taken into consideration. The report was based on the ExCel centre floor plans, the space allocation requirements from Black Hat and the number of APs we had available to us. Although challenging to create, with some uncertainties and often changing requirements due to the number of stakeholders involved, the surveys AP placement for best coverage ended up being pivotal at the event.

Below is the Signal Strength plan for the Expo Hall Floor on the 5 GHz band. The original plan to go with a dual-Band deployment was adjusted onsite and the 2.4 GHz band was disabled to enhance performance and throughput. This was a decision made during the network setup, in coordination with the NOC Leadership and based on experience from past conferences.

Upon arrival at the ExCel Centre, we conducted a walkthrough of the space that most of us had only seen as a floor plan and on some photos. Thanks to good planning, we could start deploying the 100+ APs immediately, with only a small number of changes to optimize the deployment on-site. As the APs had been pre-staged and added to the Meraki dashboard, including their location on the floor maps, the main work was placing and cabling them physically. During operation, the floor plans in the Meraki Dashboard were a visual help to easily spot a problem and navigate the team on the ground to the right spot, if something had to be adjusted.

As the sponsors and attendees filled each space, in the Meraki dashboard, we were able to see in real-time the number of clients connected to each AP, currently and over the time of the conference. This enabled quick reaction if challenges were identified, or APs could be redeployed to other zones. Below is the ExCel Centre Capital Hall and London Suites, Level 0. We could switch between the four levels with a single click on the Floor Plans, and drill into any AP, as needed.

The Location heatmaps also provided essential visibility into conference traffic, both on the network and footfalls of attendees. Physical security is also an important aspect of cybersecurity; we need to know how devices move in space, know where valuable assets are located and monitor their safety.

Below is the Business Hall at lunchtime, on the opening day of the conference. You can see no live APs in the bottom right corner of the Location heatmap. This is an example of adapting the plan to reality onsite. In past Black Hat Europe conferences, the Lobby in that area was the main entrance. Construction in 2022 closed this entrance. So, those APs were reallocated to the Level 1 Lobby, where attendees would naturally flow from Registration.

The floor plans and heatmaps also helped with the Training, Briefings and Keynote network resilience. Capacity was easy to add temporarily, and we were able to remove it and relocate it after a space emptied.

Meraki API Integration for automatic device blocking

During our time in the NOC, we had the chance to work with other vendor engineers and some use cases that came up led to interesting collaborations. One specific use case was that we wanted to block wireless clients, that show some malicious or bad behavior, automatically after they have been identified by one of the SOC analysts on the different security platforms, in addition we wanted to show them a friendly warning page that guides them to the SOC for a friendly conversation.

The solution was a script that can be triggered thru the interfaces of the other security products and attaches a group policy thru the Meraki Dashboard, including a quarantine VLAN and a splash page, via the Meraki APIs. This integration was just one of the many collaboration bits that we worked on.

Wi-Fi Air Marshal, by Jérémy Couture, Head of SOC, Paris 2024 Olympic Games

During the first day of training, in the Meraki dashboard Air Marshal, I observed packet flood attacks, against we were able to adapt and remain resilient.

I also observed an AP spoofing and broadcast de-authentication attack. I was able to quickly identify the location of the attack, which was at the Lobby outside the Business Hall.  Should the attacks continue, physical security had the information to intervene. We also had the ability to track the MAC address throughout the venue, as discussed in Christian Clasen’s section in part two.

From our experiences at Black Hat USA 2022, we had encrypted frames enabled, blunting the attack.

Meraki Dashboards, by Rossi Rosario Burgos

The Meraki dashboards made it very easy to monitor the health of the network APs and Switches, with the ability to aggregate data, and quickly pivot into any switch, AP or clients.

Through the phases of the conference, from two days of pre-conference setup, to focused and intense training the first two days, and transition to the briefings and Business Hall, we were able to visualize the network traffic.

In addition, we could see the number of attendees who passed through the covered area of the conference, with or without connecting to the network. Christian Clasen takes this available data to a new level in Part 2 of the blog.

As the person with core responsibilities for the switch configuration and uptime, the Meraki dashboard made it very simple to quickly change the network topology, according to the needs of the Black Hat customer.

Meraki Systems Manager, by Paul Fidler

If you refer back to Black Hat USA 2022, you’d have seen that we had over 1,000 iOS devices to deploy, with which we had several difficulties. For context, the company that leases the devices to Black Hat doesn’t use a Mobile Device Management (MDM) platform for any of their other shows…Black Hat is the only one that does. So, instead of using a mass deployment technology, like Apple’s Automated Device Enrollment, the iOS devices are “prepared” using Apple Configurator. This includes uploading a Wi-Fi profile to the devices as part of that process. In Las Vegas, this Wi-Fi profile wasn’t set to auto join the Wi-Fi, resulting in the need to manually change this on 1,000 devices. Furthermore, 200 devices weren’t reset or prepared, so we had those to reimage as well.

Black Hat Europe 2022 was different. We took the lessons from US and coordinated with the contractor to prepare the devices. Now, if you’ve ever used Apple Configurator, there’s several steps needed to prepare a device. However, all of these can be actions can be combined into a Blueprint:

Instead of there being several steps to prepare a device, there is now just one! Applying the Blueprint!

For Black Hat Europe, this included:

  • Wi-Fi profile
  • Enrollment, including supervision
  • Whether to allow USB pairing
  • Setup Assistant pane skipping

There’s lots of other things that can be achieved as well, but this results in the time taken to enroll and set up a device to around 30 seconds. Since devices can be set up in parallel (you’re only limited by the number of USB cables / ports you have), this really streamlines the enrollment and set up process.

Now, for the future, whilst you can’t Export these blueprints, they are transportable. If you open Terminal on a Mac and type:
cd /Users/<YOUR USER NAME>/Library/Group Containers/K36BKF7T3D.group.com.apple.configurator/Library/Application Support/com.apple.configurator/Blueprints

You’ll see a file / package called something.blueprint This can be zipped up and emailed to some else so, they can then use the exact same Blueprint! You may need to reboot your computer for the Blueprint to appear in Apple Configurator.

Device Naming / Lock Screen Messages

As mentioned, the registration / lead capture / session scanning devices are provided by the contractor. Obviously, these are all catalogued and have a unique device code / QR code on the back of them. However, during setup, any device name provisioned on the device gets lost.

So, there’s three things we do to know, without having to resort to using the unwieldy serial number, what devices is what.

  • The first thing that we do is to use the Meraki API to rename Systems Manager Devices. The script created has some other functionality too, such as error handling, but it is possible to do this without a script. You can find it here. This ensures that the device has a name: iOS devices default to being called iPhone or iPad in Systems Manager when they first enroll, so, already, this is incredibly helpful.
  • The second thing we do is to use a simple Restrictions profile for iOS, which keeps the physical device’s name in sync with that in the dashboard
  • Lastly, we then use a Lock Screen payload to format the message on the device when it’s locked:

In the footnote, you’ll see Device Name and Device Serial in blue. This denotes that the values are actually dynamic and change per device. They include:

  • Organization name
  • Network name
  • Device name
  • Device serial
  • Device model
  • Device OS version
  • Device notes
  • Owner name
  • Owner email
  • Owner username
  • SM device ID

On the Lock Screen, it’s now possible to see the device’s name and serial number, without having to flip the device over (A problem for the registration devices which are locked in a secure case) or open systems preferences.

We also had integration with SecureX device insights, to see the security status of each iOS device.

With the ability to quickly check on device health from the SecureX dashboard.

 

Data Security

This goes without saying, but the iOS devices (Registration, Lead Capture and Session Scanning) do have access to personal information. To ensure the security of the data, devices are wiped at the end of the conference. This is incredibly satisfying, hitting the Erase Devices button in Meraki Systems Manager, and watching the 100+ devices reset!

A Better Way to Design Training SSIDs/VLANs, by Paul Fidler

Deploying a network like Black Hat takes a lot of work, and repetitive configuration. Much of this has been covered in previous blogs. However, to make things easier for this event, instead of the 60 training SSIDs we had in Black Hat US 2022, the Meraki team discussed the benefits of moving to iPSKs with Black Hat NOC Leadership, which accepted the plan.

For context, instead of having a single pre shared key for an SSID, iPSK functionality allows you to have 1000+. Each of these iPSKs can be assigned its own group policy / VLAN. So, we created a script:

  • That consumed networkID, SSID, Training name, iPSK and VLAN from a CSV
  • Created a group policy for that VLAN with the name of the training
  • Created an iPSK for the given SSID that referred to the training name

This only involves five API calls:

  • For a given network name, get the network ID
  • Get Group Policies
  • If the group policy exists, use that, else create a group policy, retaining the group policy ID
  • Get the SSIDs (to get the ID of the SSID)
  • Create an iPSK for the given SSID ID

The bulk of the script is error handling (The SSID or network doesn’t exist, for example) and logic!

The result was one SSID for all of training: BHTraining, and each classroom had their own password. This reduced the training SSIDs from over a dozen and helped clear the airwaves.

Check out part two – Black Hat Europe 2022 NOC: The SOC Inside the NOC 

Acknowledgments

Thank you to the Cisco NOC team:

  • Meraki Network: Evan Basta, Sandro Fasser, Rossi Rosario Burgos, Otis Ioannou, Asmae Boutkhil, Jeffry Handal and Aleksandar Dimitrov Vladimirov
  • Meraki Systems Manager: Paul Fidler
  • Cisco Secure: Ian Redden, Christian Clasen, Aditya Sankar, Ryan MacLennan, Guillaume Buisson, Jerome Schneider, Robert Taylor, Piotr Jarzynka, Tim Wadhwa-Brown and Matthieu Sprunck
  • Threat Hunter / Paris 2024 Olympics SOC: Jérémy Couture

Also, to our NOC partners NetWitness (especially David Glover, Iain Davidson, Alessandro Contini and Alessandro Zatti), Palo Alto Networks (especially James Holland, Matt Ford, Matt Smith and Mathew Chase), Gigamon, IronNet, and the entire Black Hat / Informa Tech staff (especially Grifter ‘Neil Wyler’, Bart Stump, Steve Fink, James Pope, Jess Stafford and Steve Oldenbourg).

About Black Hat

For 25 years, Black Hat has provided attendees with the very latest in information security research, development, and trends. These high-profile global events and trainings are driven by the needs of the security community, striving to bring together the best minds in the industry. Black Hat inspires professionals at all career levels, encouraging growth and collaboration among academia, world-class researchers, and leaders in the public and private sectors. Black Hat Briefings and Trainings are held annually in the United States, Europe and USA. More information is available at: blackhat.com. Black Hat is brought to you by Informa Tech.


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