Criminals are hacking into public Wi-Fi devices—at hotels, conference centers, and so on—around the world and changing their DNS settings. The goal is to redirect users to fake login pages and steal their credentials.
Criminals are hacking into public Wi-Fi devices—at hotels, conference centers, and so on—around the world and changing their DNS settings. The goal is to redirect users to fake login pages and steal their credentials.
What HappenedOfficers from the Dedicated Card and Payment Crime Unit (DCPCU), jointly run by the London Met Police and City of London Police, secured the conviction of a man who used an SMS Blaster device to send fraudulent text messages as part of an organised criminal operation in London.The conviction relates to an investigation that previously led to the sentencing of Ruichen Xiong in July 2025, who was apprehended while driving a vehicle in North London as the device was in operation. Duri
Officers from the Dedicated Card and Payment Crime Unit (DCPCU), jointly run by the London Met Police and City of London Police, secured the conviction of a man who used an SMS Blaster device to send fraudulent text messages as part of an organised criminal operation in London.
The conviction relates to an investigation that previously led to the sentencing of Ruichen Xiong in July 2025, who was apprehended while driving a vehicle in North London as the device was in operation. During that incident, officers in the vicinity received fraudulent text messages purporting to be from HMRC.
Ruichen Xiong was a student from China who drove around London using the SMS Blaster between 22 and 27 March 2025, sending messages to tens of thousands of potential victims.
Following Xiong’s arrest and subsequent conviction, enquiries identified another individual called Di Li who was a key organiser. Li facilitated Xiong’s involvement by arranging access to the device, assisting with obtaining a vehicle, and supporting his day-to-day living costs.
Xiong had accrued significant gambling debts after arriving in the UK as a student. To pay off his debts, Li instructed that he could repay what he owed by driving routes in a car with the SMS Blaster.
On 20 August 2025, officers searched Li’s home address, where digital evidence was recovered showing communications between Li and Xiong relating to the deployment of the SMS blaster. Li was arrested on 1 September 2025 and charged with offences linked to the operation.
At the court trial, Li’s defence was that the device was intended for “advertising” purposes and described himself as a middleman acting on behalf of an individual based in China. He maintained that he had been merely attempting to help Xiong repay his debts.
Analyst Comment
An SMS Blaster acts as a portable mobile phone mast that forces nearby mobile devices to connect to it by silently downgrading it to 2G while they try to connect to 5G or LTE. By doing so, criminals can bypass safeguards designed to block malicious senders and harmful links, enabling them to deliver fraudulent messages directly to victims nearby without needing their phone numbers. The SMS Blaster allow an operator to customise all aspects of the messages, so they can make it look like it has come from a genuine organisation like HMRC, the UK tax authority.
SMS Blasters are a relatively new technology for scammers. Police in the UK only encountered them for the first time in 2025, but they have been used in other parts of the world. SMS Blaster are also a type of IMSI catcher that mirrors the capability of law enforcement tools such as a Stingray.
When used in busy metropolitan areas, they allow criminals to easily send out SMS phishing messages to hundreds of people at a time. These SMS messages typically have a malicious link that host scam websites that trick victims into entering their personal details. These details can then used by fraudsters to make payments, steal funds, or resell it to others.
This report also highlights the concerning trend of organised cybercrime gangs from China are actively hunting for individuals who are financially vulnerable (like students with gambling debts) to conduct high-risk in-person operations.
Defensive Takeaways
Block and Report: If you receive a suspicious text message, do not engage with it. Instead, forward it to 7726, a free reporting service, and block the number.
Move Away from SMS: If your organisation relies on SMS for One-Time Passcodes (OTPs), this threat highlights that the SMS sender ID can be perfectly spoofed locally. Organisations should migrate to authenticator apps, hardware tokens, or application push notifications to avoid spoofing.
Proactive Takedown Programs: Since the attack relies on hosting malicious links to harvest credentials, defenders can perform proactive domain monitoring. Detecting and taking down lookalike domains immediately minimises the impact.
Not sure this will have any effect, but I support the effort:
According to Google’s legal filing, Outsider Enterprise operates through Telegram. The group offers phishing-as-a-service to individuals who may not be technically savvy enough to set up fraudulent websites and text campaigns on their own. In its Telegram channels, Outsider Enterprise reportedly provided instructions on how to use Google’s Gemini AI to create websites that imitate those of Google, YouTube, and government agencies such
Not sure this will have any effect, but I support the effort:
According to Google’s legal filing, Outsider Enterprise operates through Telegram. The group offers phishing-as-a-service to individuals who may not be technically savvy enough to set up fraudulent websites and text campaigns on their own. In its Telegram channels, Outsider Enterprise reportedly provided instructions on how to use Google’s Gemini AI to create websites that imitate those of Google, YouTube, and government agencies such as New York’s E-ZPass. The group offered nearly 300 scam templates.
[…]
Google worked with AT&T, Verizon, and T-Mobile to block many of these malicious text messages, and Google notes that its on-device scam detection in Google Messages probably helped reduce the number of successful phishing attempts, too. This AI-powered feature apparently stops 10 billion scam texts every month, so it’s fair to expect it caught at least some Outsider Enterprise activity.
What Happened:On 11 May 2026, the UK Information Commissioner’s Office (ICO) fined South Staffordshire Water £963,900 after the Cl0p ransomware group lurked completely undetected in its network for nearly two years.Initial access reportedly occurred via a malicious phishing email in September 2020, which downloaded Cl0p’s Get2Loader malware and their SDBBOT backdoor to establish persistence.The breach itself, however, was only discovered two years later in July 2022 when staff began investigati
On 11 May 2026, the UK Information Commissioner’s Office (ICO) fined South Staffordshire Water £963,900 after the Cl0p ransomware group lurked completely undetected in its network for nearly two years.
Initial access reportedly occurred via a malicious phishing email in September 2020, which downloaded Cl0p’s Get2Loader malware and their SDBBOT backdoor to establish persistence.
The breach itself, however, was only discovered two years later in July 2022 when staff began investigating IT performance slowdowns and ultimately found out that 4.1 terabytes of data was exfiltrated and the personal data of 633,887 customers and employees being published in August 2022 on Cl0p’s Tor data leak site.
The ICO’s investigation also revealed a staggering list of systemic failures, such as South Staff’s outsourced Security Operations Center (SOC) was blind to 95% of the network and that they conducted zero internal or external vulnerability scans over an 18-month window.
At the time of the attack they were still running Windows Server 2003 machines long after extended support ended. Further, two of their domain controllers were left completely unpatched against ZeroLogon (CVE-2020-1472), a critical, easily exploitable vulnerability published years before the intrusion.
Analyst Comment:
This case is a sobering look at the technical debt hiding inside the UK’s Critical National Infrastructure (CNI). A dwell time of nearly two years is practically unheard of in modern ransomware operations, and the TTPs used by the adversary points to a total breakdown of their defences. Cl0p didn’t need sophisticated, state-sponsored techniques or zero-days to pull this one off, they just walked back in through an infection that went undetected.
The ICO’s findings also reveal the reality that many UK organisations still treat cybersecurity as a set-and-forget compliance check rather than routine efforts to mature and upgrade systems or proactive measures to hunt and detect threats lurking inside the network.
Defensive Takeaways:
Audit Your Outsourced SOC: As we learned from this incident, never assume the third-party security provider sees everything or is doing everything right. Establish audits to verify that endpoint telemetry and logs from your entire estate are actively ingested, retained, and monitored in the right platform.
Harden Your Crown Jewels Against Old Flaws: Ensure that active directory and domain controllers are strictly monitored and prioritised for critical patches. Vulnerabilities like ZeroLogon remain a ransomware operator’s favourite tool for fast lateral movement and escalation to Domain Admin access. This is exactly what Cl0p and a dozen or so other groups use.
A month or so ago a friend of mine received the following message on Steam from someone in their Friends list (they were already friends):Figure 1 - 'this is for you' The two links are different and refer to a Gift Card on Steam's community platform. As you might have noticed, the domain is not related to Steam at all, but rather is an attempt at phishing. The URLs are:stermcormmunity[.]com/gift-card/steamcoummuniity[.]com/gift-card/The differences are subtle enough that you may j
A month or so ago a friend of mine received the following message on Steam from someone in their Friends list (they were already friends):
Figure 1 - 'this is for you'
The two links are different and refer to a Gift Card on Steam's community platform. As you might have noticed, the domain is not related to Steam at all, but rather is an attempt at phishing.
The differences are subtle enough that you may just miss it. When you click on the link, you are redirected to a 'Summer Gift Marathon'.
Figure 2 - Fake Steam website
Once you log in to the fake Steam website, your credentials are stolen and will be used to spread more phishing, likely steal your inventory items and so on.
Other phishing sites related to this campaign are:
New ones do pop up from time to time, so stay vigilant.
Tips
Only log in on the legitimate Steam community website, this being https://steamcommunity.com/. An extra tip is to bookmark the legitimate site, so even if you do get a message like this, you can go straight to your bookmark and search what you need from there.
If someone new tries to add you as a Friend and immediately sends a message like the above, alarm bells should start ringing.
If someone already on your Friends list suddenly sends a random message with an even more random link out of the blue, cue the alarm bells again.
If you want to check the website out in a safe manner, then you can use URLscan.io, which will give you a verdict of the website as well as an image preview. In addition, you can use VirusTotal to review a website's reputation.
Note that an 'all clean' does not necessarily mean it is. Caution above all!
Follow Steam's Account Security Recommendations to stay safe.
Introduction to Infrastructure Pivoting
Pivoting on infrastructure is a handy skill for cyber threat
intelligence (CTI) analysts to learn. It can help to reveal the bigger picture
when it comes to malware, phishing, or network exploitation campaigns. Infrastructure
pivoting essentially is the act of looking for more systems an adversary has
created. The main benefit of this pursuit is the identification of additional
targets or victims, more tools or malware samples, and ultimately new insigh
Pivoting on infrastructure is a handy skill for cyber threat
intelligence (CTI) analysts to learn. It can help to reveal the bigger picture
when it comes to malware, phishing, or network exploitation campaigns. Infrastructure
pivoting essentially is the act of looking for more systems an adversary has
created. The main benefit of this pursuit is the identification of additional
targets or victims, more tools or malware samples, and ultimately new insights
about the adversary’s capabilities.
If done correctly, being able to pivot on adversary
infrastructure will be very useful during incident response (IR) engagements. For
example, it may lead to being able to attribute the intrusion to a known
adversary. This will help others during an IR engagement understand the level
of threat posed to the victim organisation.
Receiving Threat Data
To be able to pivot on adversary infrastructure, threat data
is needed such as the intelligence shared by threat reports put out
by various researchers from public and private sector organisations. This
scenario, however, involves relying on the analysis skills of other researchers to explain
what the infrastructure is and when they observed it in use.
This blog will examine threat data provided by public sector
organisations such as the Computer Emergency Response Team of Ukraine (CERT-UA)
as well as cybersecurity vendors such as Deep Instinct, Cyble, and Fortinet.
These organisations have shared indicators of compromise (IOCs) uncovered
following analysis of adversary intrusion activities or upload to online
malware sandboxes, such as VirusTotal, among others.
Introduction to the Ghostwriter Campaign
On 3 June 2024, Fortinet shared a report
on malicious XLS macro documents leading to Cobalt Strike Beacons. Analysis of
the XLS documents showed that they appeared to be targeting the Ukrainian
military and linked to a known Belarusian state-sponsored APT group tracked as Ghostwriter
(aka UNC1151, UAC-0057, TA445). On 4 June 2024, Cyble also shared a report
on a similar campaign.
In both reports, if the XLS was opened and the macros were executed
by the target, a malicious DLL file was downloaded from an adversary-created domain.
In Fortinet’s report, two similar “.shop” domains were mentioned. In Cyble’s
report another “.shop” domain was also called out.
Overlapping IOCs
The first pivot on Ghostwriter APT infrastructure that will be
demonstrated involves finding indicators of compromise (IOCs) such as domains
and IP addresses that appear in multiple threat reports.
The fastest way to realize these overlaps is through
continuous collection of reported IOCs into a Threat Intelligence Platform
(TIP). This will reveal IOCs that appear in multiple threat reports through
tagging and sources of where IOCs come from. Eventually, one domain or IP
address will get reported by multiple entities and the connection will make
itself apparent.
In Figure 1 (see below) the domain “goudieelectric[.]shop”
appeared in both Cyble’s blog and Fortinet’s blog. Analysis of all three
domains found that they use the same generic top-level domain (gTLD),
registrar, and name servers, as well as have a robots.txt directory configured.
These common infrastructure characteristics indicate that all three domains
were created by the same adversary.
Figure 1. Three similar
domains appearing in two threat reports.
Domain Registration & Hosting Overlaps
When more IOCs are reported in other threat reports it is
possible to link them to other known domains, this is due to adversaries
reusing the same registrars, name servers, and gTLDs.
In Figure 2 (see below), Deep Instinct reported
two more domains that could also be linked to the previous three domains through
the mutual use of the PublicDomainsRegistry registrar, Cloudflare name servers,
and the robots.txt file.
Figure 2. Five
similar domains that appear across three threat reports.
Further, CERT-UA reported three more domains (see
Figure 3 below) that could be linked to the infrastructure cluster through this
same method as well. This pattern of behaviour is a strong indicator that these
domains were created by the same adversary.
Figure 3. Eight similar domains that appear across four threat reports.
Finding Unreported Domains
Since the domains from the above threat reports were
collected and linked together through overlapping attributes, it is now
possible to use these attributes to find more domains that had gone unreported.
Using a VirusTotal domain attribute query, additional domains
can be found by using the following registration pattern:
Name Servers: CLOUDFLARE
Registrar: PublicDomainRegistry
TLD: *.shop
This revealed up to 24 domains that matched this pattern
that were likely created by Ghostwriter, a state-sponsored APT group:
backstagemerch[.]shop
bryndonovan[.]shop
chaptercheats[.]shop
clairedeco[.]shop
connecticutchildrens[.]shop
disneyfoodblog[.]shop
eartheclipse[.]shop
empoweringparents[.]shop
foampartyhats[.]shop
goudieelectric[.]shop
ikitas[.]shop
jackbenimblekids[.]shop
kingarthurbaking[.]shop
lansdownecentre[.]shop
lauramcinerney[.]shop
medicalnewstoday[.]shop
moonlightmixes[.]shop
penandthepad[.]shop
physio-pedia[.]shop
semanticscholar[.]shop
simonandschuster[.]shop
thevegan8[.]shop
twisterplussize[.]shop
utahsadventurefamily[.]shop
Note: VirusTotal domain searches are only available
to VirusTotal Enterprise users. There are other providers which allow you to search
for domain registration patterns such as DomainTools, Validin, and Zetalytics. There
also some free OSINT sites such as nslookup.io
and viewdns.info that can be useful in
certain scenarios.
Finding Related Malware Samples
Using the list of similar domains that were uncovered
through the registration pattern search, it is then possible to find additional
malware samples communicating with them.
This can be achieved by looking at domains in VirusTotal and
checking the Relations tab can show communicating files as shown in
Figure 4 below.
Figure 4. Additional malware samples
uncovered via the VirusTotal relations tab
Using a VirusTotal graph can help to reveal every
communicating file with every domain discovered through the registration pattern
search, as shown in Figure 5 below.
Figure 5. All
communicating files with every additional domain identified.
In conclusion, it is important for CTI analysts to closer
inspect the attributes of the IOCs they come across. It is not uncommon for
state-sponsored APT groups to make such mistakes when creating their
infrastructure to launch attacks from. By exploiting this fact, CTI analysts
can learn much more about the adversary’s targets, capabilities, and the behaviours
of the humans themselves behind such campaigns.
The importance of this type of work was demonstrated in
December 2023 when the US Treasury
sanctioned members of the Russian APT group known as Callisto
(aka Star Blizzard, BlueCharlie, COLDRIVER, GOSSAMER BEAR). The real world
identity of Andrey Korinets was revealed after he was sanctioned for fraudulently
creating and registering malicious domain infrastructure for Russian federal
security service (FSB) spear phishing campaigns.