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Yesterday — June 2nd 2024Security

The Ticketmaster Data Breach May Be Just the Beginning

By Matt Burgess
Data breaches at Ticketmaster and financial services company Santander have been linked to attacks against cloud provider Snowflake. Researchers fear more breaches will soon be uncovered.

Mysterious Hack Destroyed 600,000 Internet Routers

By Dell Cameron, Andrew Couts
Plus: A whistleblower claims the Biden administration falsified a report on Gaza, “Operation Endgame” disrupts the botnet ecosystem, and more.
Before yesterdaySecurity

Cisco Enhances Zero Trust Access with Google

By Jeff Scheaffer
Cisco and Google are collaborating to help organizations block threats and secure access across internet destinations and private applications.

Introducing the Open Supply-Chain Information Modeling (OSIM) Technical Committee

By Omar Santos
OSIM is a great advancement towards a more secure and resilient supply chain ecosystem.

Ecuador Is Literally Powerless in the Face of Drought

By Hannah Singleton
Drought-stricken hydro dams have led to daily electricity cuts in Ecuador. As weather becomes less predictable due to climate change, experts say other countries need to take notice.

Managing Firewall complexity and Augmenting Effectiveness with AIOps for Cisco Firewall

By Gayathri Nagarajan
Explore how AIOps revolutionizes Cisco Firewall management, enhancing security, reducing downtime, and maximizing ROI with intelligent, automated solutions.

Cisco Secure Firewall integrates with Azure Virtual WAN (vWAN) to simplify firewall insertion in Azure environments

By Pal Lakatos-Toth
Cisco's Secure Firewall Threat Defense Virtual (formerly FTDv) now integrates with Azure Virtual WAN to effortlessly insert next-generation virtual firewalls into the Azure vWAN hub. Version 7.4.1 simplifies how customers secure their enterprise network as they expand their cloud footprint to Microsoft Azure.Azure Virtual WAN.

The Unusual Espionage Act Case Against a Drone Photographer

By Jordan Pearson
In seemingly the first case of its kind, the US Justice Department has charged a Chinese national with using a drone to photograph a Virginia shipyard where the US Navy was assembling nuclear submarines.

‘Largest Botnet Ever’ Tied to Billions in Stolen Covid-19 Relief Funds

By Dell Cameron
The US says a Chinese national operated the “911 S5” botnet, which included computers worldwide and was used to file hundreds of thousands of fraudulent Covid claims and distribute CSAM, among other crimes.

Integration of Cisco Secure Threat Defense Virtual with Megaport

By Karmanya Dadhich
Introduction to Cisco FTDv partnership with Megaport. Learn how organisations can solve their last-mile network security puzzle with ease.

How Researchers Cracked an 11-Year-Old Password to a $3 Million Crypto Wallet

By Kim Zetter
Thanks to a flaw in a decade-old version of the RoboForm password manager and a bit of luck, researchers were able to unearth the password to a crypto wallet containing a fortune.

Cops Are Just Trolling Cybercriminals Now

By Matt Burgess
Police are using subtle psychological operations against ransomware gangs to sow distrust in their ranks—and trick them into emerging from the shadows.

Navigating DORA (Digital Operational Resilience Act) with Secure Workload

By Jorge Quintero
The Digital Operational Resilience Act (DORA) represents a shift toward establishing harmonized guidelines that can keep pace with the dynamic nature of cyber threats.

Microsoft’s New Recall AI Tool May Be a ‘Privacy Nightmare’

By Dell Cameron, Andrew Couts
Plus: US surveillance reportedly targets pro-Palestinian protesters, the FBI arrests a man for AI-generated CSAM, and stalkerware targets hotel computers.

He Trained Cops to Fight Crypto Crime—and Allegedly Ran a $100M Dark-Web Drug Market

By Andy Greenberg
The strange journey of Lin Rui-siang, the 23-year-old accused of running the Incognito black market, extorting his own site’s users—and then refashioning himself as a legit crypto crime expert.

A Leak of Biometric Police Data Is a Sign of Things to Come

By Matt Burgess
Thousands of fingerprints and facial images linked to police in India have been exposed online. Researchers say it’s a warning of what will happen as the collection of biometric data increases.

Emotions as human detection & defence

By /u/DiabloHorn

With this blog post my goal is not to raise awareness, but to provide people with a tool that they can use to defend themselves from attacks when technological measures fail or are not properly configured as well as analog scams or other fraudulent attempts. I’ve also come to the conclusion that maybe it’s not so much about what you know about attacks, but how you FEEL when being attacked, that can make the difference between becoming a victim or not.

submitted by /u/DiabloHorn
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Demystifying Multicloud Networking with Cisco Multicloud Defense

By Anubhav Swami
See how Cisco is leveraging Cisco Defense Orchestrator, Multicloud Defense, and Secure Firewall to securely connect apps from site to cloud and between clouds.

Teslas Can Still Be Stolen With a Cheap Radio Hack—Despite New Keyless Tech

By Andy Greenberg
Ultra-wideband radio has been heralded as the solution for “relay attacks” that are used to steal cars in seconds. But researchers found Teslas equipped with it are as vulnerable as ever.

Random thoughts on physical security measures

By /u/DiabloHorn

Some random thoughts / ramblings on physical security stuff. Mostly intended as a memo to self on a variety of possibilities.

submitted by /u/DiabloHorn
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Network Pentesting - Full Guide

By /u/Material-Tonight8924

Hi,

Recently, I was working on an article on Medium platform about WiFi penetration testing using the tool Freeway.

It's completely free to read, and takes only 10 minutes of your time, while you can surely learn a lot, whether you are beginner or a professional.

Any feedback is greatly appreciated.

submitted by /u/Material-Tonight8924
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Why Your Wi-Fi Router Doubles as an Apple AirTag

By BrianKrebs

Image: Shutterstock.

Apple and the satellite-based broadband service Starlink each recently took steps to address new research into the potential security and privacy implications of how their services geo-locate devices. Researchers from the University of Maryland say they relied on publicly available data from Apple to track the location of billions of devices globally — including non-Apple devices like Starlink systems — and found they could use this data to monitor the destruction of Gaza, as well as the movements and in many cases identities of Russian and Ukrainian troops.

At issue is the way that Apple collects and publicly shares information about the precise location of all Wi-Fi access points seen by its devices. Apple collects this location data to give Apple devices a crowdsourced, low-power alternative to constantly requesting global positioning system (GPS) coordinates.

Both Apple and Google operate their own Wi-Fi-based Positioning Systems (WPS) that obtain certain hardware identifiers from all wireless access points that come within range of their mobile devices. Both record the Media Access Control (MAC) address that a Wi-FI access point uses, known as a Basic Service Set Identifier or BSSID.

Periodically, Apple and Google mobile devices will forward their locations — by querying GPS and/or by using cellular towers as landmarks — along with any nearby BSSIDs. This combination of data allows Apple and Google devices to figure out where they are within a few feet or meters, and it’s what allows your mobile phone to continue displaying your planned route even when the device can’t get a fix on GPS.

With Google’s WPS, a wireless device submits a list of nearby Wi-Fi access point BSSIDs and their signal strengths — via an application programming interface (API) request to Google — whose WPS responds with the device’s computed position. Google’s WPS requires at least two BSSIDs to calculate a device’s approximate position.

Apple’s WPS also accepts a list of nearby BSSIDs, but instead of computing the device’s location based off the set of observed access points and their received signal strengths and then reporting that result to the user, Apple’s API will return the geolocations of up to 400 hundred more BSSIDs that are nearby the one requested. It then uses approximately eight of those BSSIDs to work out the user’s location based on known landmarks.

In essence, Google’s WPS computes the user’s location and shares it with the device. Apple’s WPS gives its devices a large enough amount of data about the location of known access points in the area that the devices can do that estimation on their own.

That’s according to two researchers at the University of Maryland, who theorized they could use the verbosity of Apple’s API to map the movement of individual devices into and out of virtually any defined area of the world. The UMD pair said they spent a month early in their research continuously querying the API, asking it for the location of more than a billion BSSIDs generated at random.

They learned that while only about three million of those randomly generated BSSIDs were known to Apple’s Wi-Fi geolocation API, Apple also returned an additional 488 million BSSID locations already stored in its WPS from other lookups.

UMD Associate Professor David Levin and Ph.D student Erik Rye found they could mostly avoid requesting unallocated BSSIDs by consulting the list of BSSID ranges assigned to specific device manufacturers. That list is maintained by the Institute of Electrical and Electronics Engineers (IEEE), which is also sponsoring the privacy and security conference where Rye is slated to present the UMD research later today.

Plotting the locations returned by Apple’s WPS between November 2022 and November 2023, Levin and Rye saw they had a near global view of the locations tied to more than two billion Wi-Fi access points. The map showed geolocated access points in nearly every corner of the globe, apart from almost the entirety of China, vast stretches of desert wilderness in central Australia and Africa, and deep in the rainforests of South America.

A “heatmap” of BSSIDs the UMD team said they discovered by guessing randomly at BSSIDs.

The researchers said that by zeroing in on or “geofencing” other smaller regions indexed by Apple’s location API, they could monitor how Wi-Fi access points moved over time. Why might that be a big deal? They found that by geofencing active conflict zones in Ukraine, they were able to determine the location and movement of Starlink devices used by both Ukrainian and Russian forces.

The reason they were able to do that is that each Starlink terminal — the dish and associated hardware that allows a Starlink customer to receive Internet service from a constellation of orbiting Starlink satellites — includes its own Wi-Fi access point, whose location is going to be automatically indexed by any nearby Apple devices that have location services enabled.

A heatmap of Starlink routers in Ukraine. Image: UMD.

The University of Maryland team geo-fenced various conflict zones in Ukraine, and identified at least 3,722 Starlink terminals geolocated in Ukraine.

“We find what appear to be personal devices being brought by military personnel into war zones, exposing pre-deployment sites and military positions,” the researchers wrote. “Our results also show individuals who have left Ukraine to a wide range of countries, validating public reports of where Ukrainian refugees have resettled.”

In an interview with KrebsOnSecurity, the UMD team said they found that in addition to exposing Russian troop pre-deployment sites, the location data made it easy to see where devices in contested regions originated from.

“This includes residential addresses throughout the world,” Levin said. “We even believe we can identify people who have joined the Ukraine Foreign Legion.”

A simplified map of where BSSIDs that enter the Donbas and Crimea regions of Ukraine originate. Image: UMD.

Levin and Rye said they shared their findings with Starlink in March 2024, and that Starlink told them the company began shipping software updates in 2023 that force Starlink access points to randomize their BSSIDs.

Starlink’s parent SpaceX did not respond to requests for comment. But the researchers shared a graphic they said was created from their Starlink BSSID monitoring data, which shows that just in the past month there was a substantial drop in the number of Starlink devices that were geo-locatable using Apple’s API.

UMD researchers shared this graphic, which shows their ability to monitor the location and movement of Starlink devices by BSSID dropped precipitously in the past month.

They also shared a written statement they received from Starlink, which acknowledged that Starlink User Terminal routers originally used a static BSSID/MAC:

“In early 2023 a software update was released that randomized the main router BSSID. Subsequent software releases have included randomization of the BSSID of WiFi repeaters associated with the main router. Software updates that include the repeater randomization functionality are currently being deployed fleet-wide on a region-by-region basis. We believe the data outlined in your paper is based on Starlink main routers and or repeaters that were queried prior to receiving these randomization updates.”

The researchers also focused their geofencing on the Israel-Hamas war in Gaza, and were able to track the migration and disappearance of devices throughout the Gaza Strip as Israeli forces cut power to the country and bombing campaigns knocked out key infrastructure.

“As time progressed, the number of Gazan BSSIDs that are geolocatable continued to decline,” they wrote. “By the end of the month, only 28% of the original BSSIDs were still found in the Apple WPS.”

In late March 2024, Apple quietly updated its website to note that anyone can opt out of having the location of their wireless access points collected and shared by Apple — by appending “_nomap” to the end of the Wi-Fi access point’s name (SSID). Adding “_nomap” to your Wi-Fi network name also blocks Google from indexing its location.

Apple updated its privacy and location services policy in March 2024 to allow people to opt out of having their Wi-Fi access point indexed by its service, by appending “_nomap” to the network’s name.

Asked about the changes, Apple said they have respected the “_nomap” flag on SSIDs for some time, but that this was only called out in a support article earlier this year.

Rye said Apple’s response addressed the most depressing aspect of their research: That there was previously no way for anyone to opt out of this data collection.

“You may not have Apple products, but if you have an access point and someone near you owns an Apple device, your BSSID will be in [Apple’s] database,” he said. “What’s important to note here is that every access point is being tracked, without opting in, whether they run an Apple device or not. Only after we disclosed this to Apple have they added the ability for people to opt out.”

The researchers said they hope Apple will consider additional safeguards, such as proactive ways to limit abuses of its location API.

“It’s a good first step,” Levin said of Apple’s privacy update in March. “But this data represents a really serious privacy vulnerability. I would hope Apple would put further restrictions on the use of its API, like rate-limiting these queries to keep people from accumulating massive amounts of data like we did.”

The UMD researchers said they omitted certain details from their study to protect the users they were able to track, noting that the methods they used could present risks for those fleeing abusive relationships or stalkers.

“We observe routers move between cities and countries, potentially representing their owner’s relocation or a business transaction between an old and new owner,” they wrote. “While there is not necessarily a 1-to-1 relationship between Wi-Fi routers and users, home routers typically only have several. If these users are vulnerable populations, such as those fleeing intimate partner violence or a stalker, their router simply being online can disclose their new location.”

The researchers said Wi-Fi access points that can be created using a mobile device’s built-in cellular modem do not create a location privacy risk for their users because mobile phone hotspots will choose a random BSSID when activated.

“Modern Android and iOS devices will choose a random BSSID when you go into hotspot mode,” he said. “Hotspots are already implementing the strongest recommendations for privacy protections. It’s other types of devices that don’t do that.”

For example, they discovered that certain commonly used travel routers compound the potential privacy risks.

“Because travel routers are frequently used on campers or boats, we see a significant number of them move between campgrounds, RV parks, and marinas,” the UMD duo wrote. “They are used by vacationers who move between residential dwellings and hotels. We have evidence of their use by military members as they deploy from their homes and bases to war zones.”

A copy of the UMD research is available here (PDF).

Update, May 22, 4:54 p.m. ET: Added response from Apple.

TrollUAC

By /u/cybersectroll

Troll .NET library to bypass x64 UAC

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