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This Week in Security News: Ransomware Gang is Raking in Tens of Millions of Dollars and Microsoft Patch Tuesday Update Fixes 17 Critical Bugs

By Jon Clay (Global Threat Communications)

Welcome to our weekly roundup, where we share what you need to know about cybersecurity news and events that happened over the past few days. This week, learn about a ransomware group that walked away with 2,200 Bitcoin: More than $33 million based on the current Bitcoin exchange rate. Also, read about this month’s Patch Tuesday security updates from Microsoft, including patches for 112 vulnerabilities.

 

Read on:

Microsoft Patch Tuesday Update Fixes 17 Critical Bugs

Microsoft’s November Patch Tuesday roundup of security fixes tackled an unusually large crop of remote code execution (RCE) bugs. Twelve of Microsoft’s 17 critical patches were tied to RCE bugs. In all, 112 vulnerabilities were patched by Microsoft, with 93 rated important, and two rated low in severity. In this article, ZDI’s Dustin Childs shares his thoughts on Microsoft’s removal of descriptions from CVE overviews.

An Old Joker’s New Tricks: Using Github to Hide Its Payload

Trend Micro detected a new Joker malware version on a sample on Google Play, which utilizes Github pages and repositories in an attempt to evade detection. The app promised wallpapers in HD and 4K quality and was downloaded over a thousand times before it was removed from the Play Store by Google after being reported as malicious.

NETGEAR Router, WD NAS Device Hacked on First Day of Pwn2Own Tokyo 2020

Due to the coronavirus pandemic, this year’s Pwn2Own Tokyo was turned into a virtual event coordinated by ZDI from Toronto, Canada. On the first day of the event, the NETGEAR Nighthawk R7800 router, Western Digital My Cloud Pro series PR4100 NSA device and Samsung Smart TV were targeted and $50,000 was awarded among teams STARLabs, Trapa Security and Team Flashback.

Developing Story: COVID-19 Used in Malicious Campaigns

As the number of those afflicted with COVID-19 continues to surge by thousands, malicious campaigns that use the disease as a lure likewise increase. In this report, Trend Micro researchers share samples on COVID-19 related malicious campaigns. The report also includes detections from other researchers.

IoT Security is a Mess. These Guidelines Could Help Fix That

The supply chain around the Internet of Things (IoT) has become the weak link in cybersecurity, potentially leaving organizations open to cyberattacks via vulnerabilities they’re not aware of. However, new guidelines from the European Union Agency for Cybersecurity (ENISA) aims to ensure that security forms part of the entire lifespan of IoT product development.

US Department of Energy Launches New Program for Technology Security Managers

The US Department of Energy (DOE) recently launched the Operational Technology (OT) Defender Fellowship. Another milestone from the Department in enhancing the US’s critical infrastructure. In collaboration with DOE’s Idaho National Laboratory (INL) and the Foundation for Defense of Democracies’ (FDD) Center for Cyber and Technology Innovation (CTTI), the OT Defender Fellowship hopes to expand the knowledge of primary US front-line critical infrastructure defenders.

Ransomware Gang is Raking in Tens of Millions of Dollars

A ransomware organization has raked in tens of millions of dollars, according to a new report. The organization, identified as group “One,” walked away with 2,200 Bitcoin, according to a report by Advanced Intelligence. That’s more than $33 million based on the current Bitcoin exchange rate.

CISA Braces for 5G with New Strategy, Initiatives

The Department of Homeland Security’s (DHS) Cybersecurity and Infrastructure Security Agency (CISA) released its 5G Strategy, ensuring the federal government and its many states, local, tribal, territorial, and private sector partners are secure as when the 5G technology arrives. The agency’s document hoped to expand on how the US government would secure 5G infrastructure both in the country and abroad.

Hacker-for-Hire Group Targeting South Asian Organizations

There’s a new cyber mercenary group on the block, and they’re going after targets in more than a dozen countries globally, according to a BlackBerry research report. The hack-for-hire shop, which BlackBerry is calling “CostaRicto,” has largely gone after targets in South Asia, especially in India, Bangladesh and Singapore. Some of its targeting was also located in Africa, the Americas, Australia and Europe.

Defense in Depth, Layered Security in the Cloud

In this blog, Trend Micro’s vice president of cybersecurity, Greg Young, discusses the evolution of network security into how it manifests itself today, how network security has looked up until now, how the future of network security looks and why security teams need layered protection in the cloud.

Surprised by Microsoft’s decision to remove the description section from Patch Tuesday bulletins?  Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

The post This Week in Security News: Ransomware Gang is Raking in Tens of Millions of Dollars and Microsoft Patch Tuesday Update Fixes 17 Critical Bugs appeared first on .

This Week in Security News: US Cyber Command Exposes New Russian Malware and REvil Ransomware Gang ‘Acquires’ KPOT Malware

By Jon Clay (Global Threat Communications)

Welcome to our weekly roundup, where we share what you need to know about cybersecurity news and events that happened over the past few days. This week, learn about eight new malware samples that were developed and deployed by Russian hackers in recent attacks. Also, read about how the operators of the REvil ransomware strain have “acquired” the source code of the KPOT trojan in an auction held on a hacker forum last month.

Read on:

Beware a New Google Drive Scam Landing in Inboxes

Scammers just found a new phishing lure to play with: Google Drive. A flaw in Drive is being exploited to send out seemingly legitimate emails and push notifications from Google that, if opened, could land people on malicious websites. The smartest part of the scam is that the emails and notifications it generates come directly from Google.

What Are the Best Options for Cybersecurity Protection for Small Businesses?

For Workplace IT, providing the best cybersecurity protection for their company’s hundreds of small business clients is critical. Workplace IT relies exclusively on Trend Micro to ensure that its customers have the best cybersecurity protection available. Partnering with one security vendor makes it easy for the company to focus on other issues, knowing that security is handled comprehensively and consistently.

REvil Ransomware Gang ‘Acquires’ KPOT Malware

The operators of the REvil ransomware strain have “acquired” the source code of the KPOT trojan in an auction held on a hacker forum last month. The sale took place after the KPOT malware author decided to auction off the code, desiring to move off to other projects, and was organized as a public auction on a private underground hacking forum for Russian-speaking cyber-criminals.

Encouraging the Next Generation of Cybersecurity Stars to Join the Industry

At its core, Trend Micro has a passion for education and a desire to grow the cybersecurity industry with talented, dedicated professionals. The two are closely linked: If we can introduce cyber skills into schools at an earlier age, then more young people will be encouraged to start a career in cybersecurity. That’s why Trend Micro is running a new virtual event for university students in November, during NIST NICE Cybersecurity Career Awareness Week.

Cybersecurity Threats to Corporate America are Present Now ‘More Than Ever,’ SEC Chair Says

Securities and Exchange Commission (SEC) Chairman Jay Clayton is telling corporate America it needs to be more vigilant on security. In an interview with CNBC, Clayton stressed that significant cybersecurity threats remain, despite the ongoing coronavirus pandemic and election season. In October alone, the Cybersecurity and Infrastructure Security Agency (CISA) put out 30 cyber alerts across various industries and business sizes, as well as consumers.

US Cyber Command Exposes New Russian Malware

US Cyber Command has exposed eight new malware samples that were developed and deployed by Russian hackers in recent attacks. Six of the eight samples are for the ComRAT malware (used by the Turla hacking group), while the other two are samples for the Zebrocy malware (used by the APT28 hacking group).

SaltStack Discloses Critical Vulnerabilities, Urges Patching

SaltStack disclosed three new vulnerabilities, two of which are assessed to be critical, and is urging users to patch immediately. In an advisory, the organization announced it released a security update to address the vulnerabilities. While two vulnerabilities were discovered and submitted by “KPC” of Trend Micro’s Zero Day Initiative (ZDI), the advisory does not say how CVE-2020-25592 was found. Dustin Childs, ZDI communications manager, said they reported it to SaltStack privately in late August.

New Data Shows Just How Badly Home Users Overestimate IoT Security

A new survey from the National Cyber Security Alliance (NCSA) shows adult workers vastly overestimate the security of the internet devices in their homes. The survey polled 1,000 adults – 500 aged 18-34 and 500 aged 50-75 – and found that the overwhelming majority of both believed the internet of things (IoT) devices they owned were secure.

Over 23,000 Hacked Databases Shared Over Telegram and Discord

It was reported that over 50GB of data from 23,000 hacked databases have been shared by hackers across Telegram channels and two hacking forums. A total of 23,618 databases were able to be downloaded through the Mega file hosting service, amounting to a dataset of around 13 billion personal files. The link was later taken down following abuse reports but there are fears that the data has entered the public domain.

Deloitte’s ‘Test Your Hacker IQ’ Site Fails Itself After Exposing Database Username, Password in Config File

A website created for global consultancy Deloitte to quiz people on knowledge of hacking tactics has proven itself vulnerable to hacking. The site, found at the insecure non-HTTPS URL http://deloittehackeriq.com/, makes its YAML configuration file publicly accessible. And within the file, in cleartext, is the username and password for the site’s mySQL database.

Toymaker Mattel Hit by Ransomware Attack

Top toymaker Mattel revealed it was a victim of a ransomware attack that successfully encrypted some data and temporarily crippled a limited number of business functions. The disclosure was part of a U.S. Securities Exchange Commission (SEC) disclosure filed in late October. Mattel reported the attack occurred on July 28, 2020 and that, for the most part, it was mitigated quickly and had a minimal impact on the company.

Spike in Emotet Activity Could Mean Big Payday for Ransomware Gangs

There’s been a massive increase in Emotet attacks and cyber criminals are taking advantage of machines compromised by the malware to launch more malware infections as well as ransomware campaigns. The October 2020 HP-Bromium Threat Insights Report reports a 1,200% increase in Emotet detections from July to September compared to the previous three months.

How do you secure your IoT devices at home?  Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

The post This Week in Security News: US Cyber Command Exposes New Russian Malware and REvil Ransomware Gang ‘Acquires’ KPOT Malware appeared first on .

This Week in Security News: Trend Micro Researcher Uncover Two Espionage Backdoors Associated with Operation Earth Kitsune and Trickbot and Ransomware Attackers Plan Big Hit on U.S. Hospitals

By Jon Clay (Global Threat Communications)

Welcome to our weekly roundup, where we share what you need to know about cybersecurity news and events that happened over the past few days. This week, learn about how Trend Micro researchers uncovered two new espionage backdoors associated with the ‘Operation Earth Kitsune’ campaign. Also, read about how U.S. healthcare providers have been put on high alert over Trickbot malware and ransomware targeting the sector.

Read on:

Operation Earth Kitsune: A Dance of Two New Backdoors

Trend Micro recently published a research paper on Operation Earth Kitsune, a watering hole campaign aiming to steal information by compromising websites. Besides its heavy use of SLUB malware, Trend Micro researchers also uncovered two new espionage backdoors associated with the campaign: agfSpy and dneSpy, dubbed as such following the attackers’ three-letter naming scheme.

FBI Warning: Trickbot and Ransomware Attackers Plan Big Hit on U.S. Hospitals

U.S. healthcare providers, already under pressure from the COVID-19 pandemic, are on high alert over Trickbot malware and ransomware targeting the sector. Trickbot is one of the largest botnets in the world, against which Microsoft took U.S. legal action earlier this month in effort to gain control of its servers. Within a day of the seizure, Trickbot C&C servers and domains were replaced with new infrastructure.

Trend Micro HouseCall for Home Networks

While a home network provides numerous benefits, it can also expose its users to safety and privacy risks. Checking for those risks doesn’t need to be costly: Trend Micro’s Housecall for Home Networks (HCHN) solution scans the connected devices in home networks and detects those that pose security risks and is available for free.

Bug-Bounty Awards Spike 26% in 2020

According to a list of top 10 vulnerabilities by HackerOne, cross-site scripting (XSS) remained the most impactful vulnerability and reaped the highest rewards for ethical hackers in 2020 for the second year in a row, earning hackers $4.2 million in total bug-bounty awards in the last year, a 26-percent increase from what was paid out in 2019 for finding XSS flaws. Following XSS on the list: Improper access control, information disclosure, server-side request forgery (SSRF) and more.

Supply Chain Attacks in the Age of Cloud Computing: Risks, Mitigations, and the Importance of Securing Back Ends

Security is an aspect that every enterprise needs to consider as they use and migrate to cloud-based technologies. On top of the list of resources that enterprises need to secure are networks, endpoints, and applications. However, another critical asset that enterprises should give careful security consideration to is their back-end infrastructure which, if compromised, could lead to supply chain attacks.

U.S. Shares Information on North Korean Threat Actor ‘Kimsuky’

An alert released this week by the Cybersecurity and Infrastructure Security Agency (CISA), the FBI, and the Cyber Command Cyber National Mission Force (CNMF) provides information on Kimsuky, a threat actor focused on gathering intelligence on “foreign policy and national security issues related to the Korean peninsula, nuclear policy, and sanctions” on behalf of the North Korean government. The advisory says the adversary has been active since 2012, engaging in social engineering, spear-phishing, and watering hole attacks.

76% of Applications Have at Least One Security Flaw

Most applications contain at least one security flaw and fixing those flaws typically takes months, a new Veracode report reveals. This year’s analysis of 130,000 applications found that it takes about six months for teams to close half the security flaws they find. The report also uncovered some best practices to significantly improve these fix rates.

Apps Infected with Adware Found on Google Play Store

Some 21 malicious Android apps containing intrusive adware were discovered on the Google Play Store, but most have now been removed, according to a report from Avast. These fraudulent mobile applications, disguised as Android gaming apps, had been downloaded more than 8 million times since they were made available in the store.

Patients in Finland Blackmailed After Therapy Records Were Stolen by Hackers

The confidential records of thousands of psychotherapy patients in Finland have been hacked and some are now facing the threat of blackmail. Attackers were able to steal records related to therapy sessions, as well as patients’ personal information including social security numbers and addresses, according to Vastaamo, the country’s largest private psychotherapy center.

Surprised by the Vastaamo hack and subsequent blackmail of patients?  Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

The post This Week in Security News: Trend Micro Researcher Uncover Two Espionage Backdoors Associated with Operation Earth Kitsune and Trickbot and Ransomware Attackers Plan Big Hit on U.S. Hospitals appeared first on .

This Week in Security News: Watering Hole Campaign Operation Earth Kitsune Spying on Users’ Systems and Fancy Bear Imposters Are on a Hacking Extortion Spree

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about a watering hole campaign Trend Micro dubbed ‘Operation Earth Kitsune’ that is spying on users’ systems through compromised websites. Also, read about how APT groups are threatening DDoS attacks against victims if they don’t send them bitcoin.

Read on:

Fancy Bear Imposters Are on a Hacking Extortion Spree

Radware recently published extortion notes that were sent to a variety of companies globally. The senders purport to be from the North Korean government hackers Lazarus Group, or APT38, and Russian state-backed hackers Fancy Bear, or APT28. The notes threaten that if the target doesn’t send bitcoin, powerful distributed denial of service (DDoS) attacks will be launched against the victim. Robert McArdle, Trend Micro’s director of our Forward-Looking Threat Research (FTR) team, comments on DDoS as an extortion method.

A Ride on Taiwan’s Self-Driving Bus

The self-driving bus is now being tested on the streets of downtown Taipei and more autonomous buses are being deployed in other places, including Germany, Japan and Canada. Since connected cars are still a relatively new technology, the dangers of these vehicles are unknown and mostly speculated. In this article, Trend Micro discusses potential security implications of these connected vehicles.

 U.S. Charges Russian Intelligence Officers in Major Cyberattacks

This week, the Justice Department unsealed charges accusing six Russian military intelligence officers of an aggressive worldwide hacking campaign that caused mass disruption and cost billions of dollars by attacking targets like a French presidential election, the electricity grid in Ukraine and the opening ceremony of the 2018 Winter Olympics.

 Operation Earth Kitsune: Tracking SLUB’s Current Operations

A watering hole campaign that Trend Micro has dubbed as Operation Earth Kitsune is spying on users’ systems through compromised websites. Using SLUB and two new malware variants, the attacks exploit vulnerabilities including those of Google Chrome and Internet Explorer.

Cybersecurity Company Finds Hacker Selling Info on 186 Million U.S. Voters

Trustwave says it found a hacker selling personally identifying information of more than 200 million Americans, including the voter registration data of 186 million. The revelation underscored how vulnerable Americans are to email targeting by criminals and foreign adversaries, even as U.S. officials announced that Iran and Russia had obtained voter registration data and email addresses with an eye toward interfering in the 2020 election.

Future Imperfect

In 2012, Trend Micro, the International Cyber Security Protection Alliance (ICSPA) and Europol’s European Cyber Crime Centre (EC3) collaborated on a white paper that imagined the technological advances of the coming 8 years, the societal and behavioral changes they may bring and the opportunities for malfeasance they could present. As we enter the 2020s, we now have the opportunity to objectively review the project against a number of success factors.

WordPress Deploys Forced Security Update for Dangerous Bug in Popular Plugin

WordPress sites running Loginizer, one of today’s most popular WordPress plugins with an install base of over one million sites, were forcibly updated this week to Loginizer version 1.6.4. This version contained a security fix for a dangerous SQL injection bug that could have allowed hackers to take over WordPress sites running older versions of the Loginizer plugin.

Just Leave That Docker API on the Front Porch, No One Will Steal It

Recently, a new type of Linux malware named “DOKI” has been discovered exploiting publicly accessible Docker API’s hosted in all major cloud providers. The manner in which threat actors are gaining access to container environments is a previously discovered technique, but the DOKI malware is something that has not been documented until now.

Adobe Fixes 16 Critical Code-Execution Bugs Across Portfolio

Adobe has released 18 out-of-band security patches in 10 different software packages, including fixes for critical vulnerabilities that stretch across its product suite. Two of the issues are out-of-bounds read flaws, (CVE-2020-24409, CVE-2020-24410); one is an out-of-bounds write bug (CVE-2020-24411). Tran Van Khang, working with Trend Micro Zero Day Initiative, is credited for the discoveries.

US Treasury Department Ban on Ransomware Payments Puts Victims in Tough Position

This month, the US Treasury Department’s Office of Foreign Assets Control (OFAC) warned organizations making ransomware payments that they risk violating economic sanctions imposed by the government against cybercriminal groups or state-sponsored hackers. The advisory has the potential to disrupt the ransomware monetization model, but also puts victims, their insurers and incident response providers in a tough situation.

What are your thoughts on the sanctions imposed by the government against cybercriminal groups or state-sponsored hackers?  Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

The post This Week in Security News: Watering Hole Campaign Operation Earth Kitsune Spying on Users’ Systems and Fancy Bear Imposters Are on a Hacking Extortion Spree appeared first on .

This Week in Security News: Cybercriminals Use Stolen Data and Hacking Tools as Prizes in Poker Games and Rap Battles and VirusTotal Now Supports Trend Micro ELF Hash

By Jon Clay (Global Threat Communications)

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about how cybercriminals are passing the time during the COVID-19 pandemic with online poker games, where the prizes include stolen data. Also, read about how VirusTotal now supports Trend Micro ELF Hash (aka telfhash).

 

Read on:

Cybercriminals Use Stolen Data and Hacking Tools as Prizes in Poker Games and Rap Battles

Cybercriminals have put their own spin on passing time during the COVID-19 lockdown with online rap battles, poker tournaments, poem contests, and in-person sport tournaments. The twist is that the prize for winning these competitions is sometimes stolen data and tools to make cybercrime easier, according to new research from Trend Micro.

Becoming an Advocate for Gender Diversity: Five Steps that Could Shape Your Journey

Sanjay Mehta, senior vice president at Trend Micro, was recently named a new board member at Girls In Tech—a noted non-profit and Trend Micro partner working tirelessly to enhance the engagement, education, and empowerment of women in technology. In this blog, Sanjay shares five steps that you can use to become an ally for diversity in the workplace.

October Patch Tuesday: Microsoft Patches Critical, Wormable RCE Bug

In this month’s Patch Tuesday update, Microsoft pushed out fixes for 87 security vulnerabilities – 11 of them critical – and one of those is potentially wormable. There are also six bugs that were previously unpatched but publicly disclosed, which could give cybercriminals a leg up — and in fact at least one public exploit is already circulating for this group.

VirusTotal Now Supports Trend Micro ELF Hash

To help IoT and Linux malware researchers investigate attacks containing Executable and Linkable Format (ELF) files, Trend Micro created telfhash, an open-source clustering algorithm that helps cluster Linux IoT malware samples. VirusTotal has always been a valuable tool for threat research and now, with telfhash, users of the VirusTotal Intelligence platform can pivot from one ELF file to others.

New Emotet Attacks Use Fake Windows Update Lures

File attachments sent in recent Emotet campaigns show a message claiming to be from the Windows Update service, telling users that the Office app needs to be updated. Naturally, this must be done by clicking the Enable Editing button. According to the Cryptolaemus group, since yesterday, these Emotet lures have been spammed in massive numbers to users located all over the world.

Metasploit Shellcodes Attack Exposed Docker APIs

Trend Micro recently observed an interesting payload deployment using the Metasploit Framework (MSF) against exposed Docker APIs. The attack involves the deployment of Metasploit’s shellcode as a payload, and researchers said this is the first attack they’ve seen using MSF against Docker. It also uses a small, vulnerability-free base image in order for the attack to proceed in a fast and stealthy manner.

Barnes & Noble Warns Customers It Has Been Hacked, Customer Data May Have Been Accessed

American bookselling giant Barnes & Noble is contacting customers via email, warning them that its network was breached by hackers, and that sensitive information about shoppers may have been accessed. In the email to customers, Barnes & Noble says that it became aware that it had fallen victim to a cybersecurity attack on Saturday, October 10th.

ContentProvider Path Traversal Flaw on ESC App Reveals Info

Trend Micro researchers found ContentProvider path traversal vulnerabilities in three apps on the Google Play store, one of which had more than 5 million installs. The three applications include a keyboard customization app, a shopping app from a popular department store, and the app for the European Society of Cardiology (ESC). Fortunately, the keyboard and department store apps have both been patched by developers. However, as of writing this blog, the ESC app is still active.

Carnival Corp. Ransomware Attack Affects Three Cruise Lines

Hackers accessed personal information of guests, employees and crew of three cruise line brands and the casino operations of Carnival Corp. in a ransomware attack the company suffered on Aug. 15, officials have confirmed. Carnival Cruise Line, Holland America Line and Seabourn were the brands affected by the attack, which Carnival said they’re still investigating in an update on the situation this week.

Docker Content Trust: What It Is and How It Secures Container Images

Docker Content Trust allows users to deploy images to a cluster or swarm confidently and verify that they are the images you expect them to be. In this blog from Trend Micro, learn how Docker Content Trust works, how to enable it, steps that can be taken to automate trust validation in the continuous integration and continuous deployment (CI/CD) pipeline and limitations of the system.

Twitter Hackers Posed as IT Workers to Trick Employees, NY Probe Finds

A simple phone scam was the key first step in the Twitter hack that took over dozens of high-profile accounts this summer, New York regulators say. The hackers responsible for the July 15 attack called Twitter employees posing as company IT workers and tricked them into giving up their login credentials for the social network’s internal tools, the state’s Department of Financial Services said.

What is a DDoS Attack? Everything You Need to Know About Distributed Denial-of-Service Attacks and How to Protect Against Them

A distributed denial-of-service (DDoS) attack sees an attacker flooding the network or servers of the victim with a wave of internet traffic so big that their infrastructure is overwhelmed by the number of requests for access, slowing down services or taking them fully offline and preventing legitimate users from accessing the service at all. DDoS attacks are one of the crudest forms of cyberattacks, but they’re also one of the most powerful and can be difficult to stop.

Cyberattack on London Council Still Having ‘Significant Impact’

Hackney Council in London has said that a cyberattack earlier this week is continuing to have a “significant impact” on its services. Earlier this week, the north London council said it had been the target of a serious cyberattack, which was affecting many of its services and IT systems.

 

Surprised by the new Emotet attack?  Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

The post This Week in Security News: Cybercriminals Use Stolen Data and Hacking Tools as Prizes in Poker Games and Rap Battles and VirusTotal Now Supports Trend Micro ELF Hash appeared first on .

This Week in Security News: A Look Inside the Bulletproof Hosting Business and Amazon Prime Day Spurs Spike in Phishing, Fraud Attacks

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about how cybercriminals secure their assets and survive in the business in a new Trend Micro report. Also, read about a how cybercriminals are tapping into Amazon’s Prime Day with phishing and malicious websites that are fraudulently using the Amazon brand.

Read on:

French Companies Under Attack from Clever BEC Scam

Trend Micro researchers observed a new modus operandi involving a clever BEC campaign that uses social engineering to target French companies. Malicious actors impersonated a French company in the metal fabrication industry that provides services to several organizations. They then registered a domain very similar to the legitimate one used by the business and used it to send emails to their targets. 

Amazon Prime Day Spurs Spike in Phishing, Fraud Attacks

Cybercriminals are tapping into Amazon’s annual Prime Day with researchers warning of a recent spike in phishing and malicious websites that are fraudulently using the Amazon brand. There has been a spike in the number of new monthly phishing and fraudulent sites created using the Amazon brand since August, the most significant since the COVID-19 pandemic forced people indoors in March.

CSO Insights: DataBank’s Mark Houpt on Looking Beyond Securing Infrastructures in the New Normal

The big move to working remotely wasn’t completely difficult for Mark Houpt, CISO at DataBank. After all, he has been doing so since before COVID-19. However, when the pandemic hit, DataBank, like many other companies across the globe, had to help most of their employees transition securely and smoothly to virtual work. Read up on the several important security considerations this experience highlighted.

240+ Android Apps Caught Showing Out-of-Context Ads

This summer, Google removed more than 240 Android applications from the Play Store for showing out-of-context ads and breaking a newly introduced Google policy against this type of intrusive advertising. Out-of-context ads are mobile ads that are shown outside an app’s normal container and appear as pop-ups or as full-screen ads.

Safe and Smart Connections: Securing IoT Networks for Remote Setups

As a result of our work-from-home (WFH) arrangements, there is an increased demand on networks as remote operations have created greater dependence on the IoT. Subsequently, now is a good time to re-examine the security of your network. Rather than only focusing on securing individual devices that can compromise a network, users should also secure the network to minimize threats across several devices.

Inside the Bulletproof Hosting Business

The use of underground infrastructure is inherent to the modus operandi of a cybercriminal. In Trend Micro’s Underground Hosting series, it differentiates how cybercrime goods are sold in marketplaces and what kinds of services are offered. In this final part of the Underground Hosting report series, Trend Micro explores the methods criminals employ to secure their assets and survive in the business.

Comcast Voice Remote Control Could be Turned into Spying Tool

The Comcast XR11 voice remote controller was recently found to be vulnerable and could be turned into a spying tool that eavesdrops on users. Discovered by researchers at Guardicore, the attack has been named WarezTheRemote and is said to be a very serious threat, considering that the remote is used for over 18 million devices across the U.S.

Transforming IoT Monitoring Data into Threat Defense

In the first half of 2020, there was a 70% increase in inbound attacks on devices and routers compared to the second half of 2019, which included attacks on IoT systems. To protect customers effectively by continuously monitoring trends in IoT attacks, Trend Micro examined Mirai and Bashlite (aka Qbot), two notorious IoT botnet malware types, and shares the figures relating to these botnets’ command and control (C&C) servers, IP addresses, and C&C commands.

Russia’s Fancy Bear Hackers Likely Penetrated a Federal Agency

Last week the Cybersecurity and Infrastructure Security Agency published an advisory that hackers had penetrated a US federal agency. Now, clues uncovered by a researcher at cybersecurity firm Dragos and an FBI notification to hacking victims obtained by WIRED in July suggest that it was Fancy Bear, a team of hackers working for Russia’s GRU also known as APT28.

Threat Research & XDR Combine to Stop Cybercrime

Like legitimate businesses across the globe seeking to improve their information security and protect their network infrastructure, cybercriminal businesses take similar precautions. Trend Micro Research released the final report in a series focused on this part of cybercriminal business: Underground hosting providers. Based on the report, it’s clear that understanding both the criminal business and the attacks themselves better prepares defenders and investigators to identify and eliminate threats.

Researchers Find Vulnerabilities in Microsoft Azure Cloud Service

As businesses are increasingly migrating to the cloud, securing the infrastructure has never been more important. According to research by Paul Litvak of Intezer Labs, two security flaws in Microsoft’s Azure App Services could have enabled a bad actor to carry out server-side request forgery (SSRF) attacks or execute arbitrary code and take over the administration server.

Cyber Security Awareness: A Critical Checklist

October 2020 marks the 17th year of National Cybersecurity Awareness Month, where users and organizations are encouraged to increase awareness of cybersecurity issues. To help raise awareness, Trend Micro’s Consumer Division breaks down of the security issues you should be aware of and shares tips about how you can protect yourself and your family while working, learning, or gaming at home.

The Basics of Keeping Kubernetes Cluster Secure: Worker Nodes and Related Components

In part one of this blog series, Trend Micro talked about the different ways developers can protect control plane components, including Kube API server configurations, RBAC authorization, and limitations in the communication between pods through network policies. In this second part, Trend Micro focuses on best practices that developers can implement to protect worker nodes and their components.

Are you surprised that Comcast voice activated remote controllers could be turned into a spying tool?  Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

The post This Week in Security News: A Look Inside the Bulletproof Hosting Business and Amazon Prime Day Spurs Spike in Phishing, Fraud Attacks appeared first on .

This Week in Security News: Linkury Adware Caught Distributing Full-Blown Malware and Cross-Platform Modular Glupteba Malware Uses ManageX

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about how an adware family known primarily for distributing browser hijackers, Linkury, has been caught distributing malware. Also, read about a newly uncovered strain of the Glupteba trojan.

 

Read on:

Cross-Platform Modular Glupteba Malware Uses ManageX

Trend Micro recently encountered a variant of the Glupteba trojan and reported its attacks on MikroTik routers and updates on its command and control (C&C) servers. The use of ManageX, a type of modular adware that Trend Micro has recently analyzed, is notable in this newly uncovered strain as it aims to emphasize the modularity and the cross-platform features of Glupteba as seen through its code analysis.

Phishing Attack Targets Microsoft 365 Users with Netflix & Amazon Lures

Security researchers have been tracking a phishing campaign that abuses Microsoft Office 365 third-party application access to obtain specific resources from victims’ accounts. The attacker, dubbed TA2552, mostly uses Spanish-language lures and a narrow range of themes and brands. These attacks have targeted organizations with a global presence but seem to choose victims who likely speak Spanish, according to a report from Proofpoint researchers.

New Report Suggests the Bug Bounty Business is Recession-Proof

A new report from HackerOne presents data suggesting that the bug bounty business might be recession-proof, citing increases in hacker registrations, monthly vulnerability disclosures and payouts during a pandemic-induced economic downturn. Brian Gorenc, senior director of vulnerability research and director of Trend Micro’s Zero Day Initiative program, shared that he’s seen bug bounty activity increase with ZDI publishing 1,045 vulnerability advisories in all of 2019 and 1,235 already in 2020.

Identity Fraud: How to Protect Your Identity Data, Accounts and Money During the Coronavirus Crisis

We’ve all been spending more time online since the pandemic hit, and as a result we’re sharing more personal and financial information online with each other and with organizations. Unfortunately, as ever, there are bad guys around every digital corner looking for this. Personally identifiable information (PII) is the currency of internet crime, and cyber-criminals will do whatever they can to get it.

Linkury Adware Caught Distributing Full-Blown Malware

An adware family known primarily for distributing browser hijackers has been caught distributing malware, security researchers said at the Virus Bulletin 2020 security conference. Its main method of distribution is the SafeFinder widget, a browser extension ironically advertised as a way to perform safe searches on the internet. K7 researchers say that in recent cases they analyzed, the SafeFinder widget has now also begun installing legitimate malware, such as the Socelars and Kpot infostealer trojans.

Chinese APT Group Targets Media, Finance, and Electronics Sectors

Cybersecurity researchers have uncovered a new espionage campaign targeting media, construction, engineering, electronics, and finance sectors in Japan, Taiwan, the U.S. and China. Linking the attacks to Palmerworm (aka BlackTech), likely a China-based advanced persistent threat (APT), the first wave of activity associated with this campaign began last year in August 2019.

InterPlanetary Storm Botnet Infects 13K Mac, Android Devices

A new variant of the InterPlanetary Storm malware has been discovered, which comes with fresh detection-evasion tactics and now targets Mac and Android devices (in addition to Windows and Linux, which were targeted by previous variants of the malware). Researchers say the malware is building a botnet with a current estimated 13,500 infected machines across 84 countries worldwide – and that number continues to grow.

More Americans Share Social Security, Financial and Medical Information than Before the Pandemic

A new survey has shown that consumer willingness to share more sensitive data – social security numbers, financial information and medical information – is greater in 2020 than in both 2018 and 2019. According to the NYC-based scientific research foundation ARF’s (Advertising Research Foundation) third annual privacy study, contact tracing is considered a key weapon in the fight against COVID-19.

Do you feel like you are more willing to share sensitive information online since the pandemic began? Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

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Identity Fraud: How to Protect Your Identity Data, Accounts and Money During the Coronavirus Crisis

By Trend Micro

We’ve all been spending more of our time online since the crisis hit. Whether it’s ordering food for delivery, livestreaming concerts, holding virtual parties, or engaging in a little retail therapy, the digital interactions of many Americans are on the rise. This means we’re also sharing more of our personal and financial information online, with each other and the organizations we interact with. Unfortunately, as ever, there are bad guys around every digital corner looking for a piece of the action.

The bottom line is that personally identifiable information (PII) is the currency of internet crime. And cyber-criminals will do whatever they can to get their hands on it. When they commit identity theft with this data, it can be a messy business, potentially taking months for banks and businesses to investigate before you get your money and credit rating back. At a time of extreme financial hardship, this is the last thing anyone needs.

It therefore pays to be careful about how you use your data and how you protect it. Even more: it’s time to get proactive and monitor it—to try and spot early on if it has been stolen. Here’s what you need to know to protect your identity data.

How identity theft works

First, some data on the scope of the problem. In the second quarter of 2020 alone 349,641 identity theft reports were filed with the FTC. To put that in perspective, it’s over half of the number for the whole of 2019 (650,572), when consumers reported losing more than $1.9 billion to fraud. What’s driving this huge industry? A cybercrime economy estimated to be worth as much as $1.5 trillion annually.

Specialized online marketplaces and private forums provide a user-friendly way for cyber-criminals and fraudsters to easily buy and sell stolen identity data. Many are on the so-called dark web, which is hidden from search engines and requires a specialized anonymizing browser like Tor to access. However, plenty of this criminal activity also happens in plain sight, on social media sites and messaging platforms. This underground industry is an unstoppable force: as avenues are closed down by law enforcement or criminal in-fighting, other ones appear.

At-risk personal data could be anything from email and account log-ins to medical info, SSNs, card and bank details, insurance details and much more. It all has a value on the cybercrime underground and the price fraudsters are prepared to pay will depend on supply and demand, just like in the ‘real’ world.

There are various ways for attackers to get your data. The main ones are:

  • Phishing: usually aimed at stealing your log-ins or tricking you into downloading keylogging or other info-stealing malware. Phishing mainly happens via email but could also occur via web, text, or phone. Around $667m was lost in imposter scams last year, according to the FTC.
  • Malicious mobile apps disguised as legitimate software.
  • Eavesdropping on social media: If you overshare even innocuous personal data (pet names, birth dates, etc.,) it could be used by fraudsters to access your accounts.
  • Public Wi-Fi eavesdropping: If you’re using it, the bad guys may be too.
  • Dumpster diving and shoulder surfing: Sometimes the old ways are still popular.
  • Stealing devices or finding lost/misplaced devices in public places.
  • Attacking the organizations you interact with: Unfortunately this is out of your control somewhat, but it’s no less serious. There were 1,473 reported corporate breaches in 2019, up 17% year-on-year.
  • Harvesting card details covertly from the sites you shop with. Incidents involving this kind of “web skimming” increased 26% in March as more users flocked to e-commerce sites during lockdown.

 

The COVID-19 challenge

As if this weren’t enough, consumers are especially exposed to risk during the current pandemic. Hackers are using the COVID-19 threat as a lure to infect your PC or steal identity data via the phishing tactics described above. They often impersonate trustworthy institutions/officials and emails may claim to include new information on outbreaks, or vaccines. Clicking through or divulging your personal info will land you in trouble. Other fraud attempts will try to sell counterfeit or non-existent medical or other products to help combat infection, harvesting your card details in the process. In March, Interpol seized 34,000 counterfeit COVID goods like surgical masks and $14m worth of potentially dangerous pharmaceuticals.

Phone-based attacks are also on the rise, especially those impersonating government officials. The aim here is to steal your identity data and apply for government emergency stimulus funds in your name. Of the 349,641 identity theft reports filed with the FTC in Q2 2020, 77,684 were specific to government documents or benefits fraud.

What do cybercriminals do with my identity data?

Once your PII is stolen, it’s typically sold on the dark web to those who use it for malicious purposes. It could be used to:

  • Crack open other accounts that share the same log-ins (via credential stuffing). There were 30 billion such attempts in 2018.
  • Log-in to your online bank accounts to drain it of funds.
  • Open bank accounts/credit lines in your name (this can affect your credit rating).
  • Order phones in your name or port your SIM to a new device (this impacts 7,000 Verizon customers per month).
  • Purchase expensive items in your name, such as a new watch or television, for criminal resale. This is often done by hijacking your online accounts with e-tailers. E-commerce fraud is said to be worth around $12 billion per year.
  • File fraudulent tax returns to collect refunds on your behalf.
  • Claim medical care using your insurance details.
  • Potentially crack work accounts to attack your employer.

How do I protect my identity online?

The good news among all this bad is that if you remain skeptical about what you see online, are cautious about what you share, and follow some other simple rules, you’ll stand a greater chance of keeping your PII under lock and key. Best practices include:

  • Using strong, long and unique passwords for all accounts, managed with a password manager.
  • Enable two-factor authentication (2FA) if possible on all accounts.
  • Don’t overshare on social media.
  • Freeze credit immediately if you suspect data has been misused.
  • Remember that if something looks too good to be true online it usually is.
  • Don’t use public Wi-Fi when out-and-about, especially not for sensitive log-ins, without a VPN.
  • Change your password immediately if a provider tells you your data may have been breached.
  • Only visit/enter payment details into HTTPS sites.
  • Don’t click on links or open attachments in unsolicited emails.
  • Only download apps from official app stores.
  • Invest in AV from a reputable vendor for all your desktop and mobile devices.
  • Ensure all operating systems and applications are on the latest version (i.e., patch frequently).
  • Keep an eye on your bank account/credit card for any unusual spending activity.
  • Consider investing in a service to monitor the dark web for your personal data.

How Trend Micro can help

Trend Micro offers solutions that can help to protect your digital identity.

Trend Micro ID Security is the best way to get proactive about data protection. It works 24/7 to monitor dark web sites for your PII and will sound the alarm immediately if it finds any sign your accounts or personal data have been stolen. It features

  • Dark Web Personal Data Manager to scour underground sites and alert if it finds personal info like bank account numbers, driver’s license numbers, SSNs and passport information.
  • Credit Card Checker will do the same as the above but for your credit card information.
  • Email Checker will alert you if any email accounts have been compromised and end up for sale on the dark web, allowing you to immediately change the password.
  • Password Checker will tell you if any passwords you’re using have appeared for sale on the dark web, enabling you to improve password security.

Trend Micro Password Manager enables you to manage all your website and app log-ins from one secure location. Because Password Manager remembers and recalls your credentials on-demand, you can create long, strong and unique passwords for each account. As you’re not sharing easy-to-remember passwords across multiple accounts, you’ll be protected from popular credential stuffing and similar attacks.

Finally, Trend Micro WiFi Protection will protect you if you’re out and about connecting to WiFi hotspots. It automatically detects when a WiFi connection isn’t secure and enables a VPN—making your connection safer and helping keep your identity data private.

In short, it’s time to take an active part in protecting your personal identity data—as if your digital life depended on it. In large part, it does.

 

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This Week in Security News: Cybercriminals Distribute Backdoor with VPN Installer and New ‘Alien’ Malware can Steal Passwords from 226 Android Apps

By Jon Clay (Global Threat Communications)

 

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about how threat actors are bundling Windscribe VPN installers with backdoors. Also, read about a new strain of Android malware that comes with a wide array of features allowing it to steal credentials from 226 applications.

 

 

Read on:

 

Windows Backdoor Masquerading as VPN App Installer

This article discusses findings covered in a recent blog from Trend Micro where company researchers warn that Windows users looking to install a VPN app are in danger of downloading one that’s been bundled with a backdoor. The trojanized package in this specific case is the Windows installer for Windscribe VPN and contains the Bladabindi backdoor.

The Evolution of Malicious Shell Scripts

The Unix-programming community commonly uses shell scripts as a simple way to execute multiple Linux commands within a single file. Many users do this as part of a regular operational workload manipulating files, executing programs and printing text. However, as a shell interpreter is available in every Unix machine, it is also an interesting and dynamic tool abused by malicious actors.

Microsoft Says It Detected Active Attacks Leveraging Zerologon Vulnerability

Hackers are actively exploiting the Zerologon vulnerability in real-world attacks, Microsoft’s security intelligence team said on Thursday morning. The attacks were expected to happen, according to security industry experts. Multiple versions of weaponized proof-of-concept exploit code have been published online in freely downloadable form since details about the Zerologon vulnerability were revealed on September 14 by Dutch security firm Secura BV.

Stretched and Stressed: Best Practices for Protecting Security Workers’ Mental Health

Security work is stressful under the best of circumstances, but remote work presents its own challenges. In this article, learn how savvy security leaders can best support their teams today — wherever they’re working. Trend Micro’s senior director of HR for the Americas, Bob Kedrosky, weighs in on how Trend Micro is supporting its remote workers.

Exploitable Flaws Found in Facial Recognition Devices

To gain a more nuanced understanding of the security issues present in facial recognition devices, Trend Micro analyzed the security of four different models: ZKTeco FaceDepot-7B, Hikvision DS-K1T606MF, Telpo TPS980 and Megvii Koala. Trend Micro’s case studies show how these devices can be misused by malicious attackers.

New ‘Alien’ Malware Can Steal Passwords from 226 Android Apps

Security researchers have discovered and analyzed a new strain of Android malware that comes with a wide array of features allowing it to steal credentials from 226 applications. Named Alien, this new trojan has been active since the start of the year and has been offered as a Malware-as-a-Service (MaaS) offering on underground hacking forums.

Government Software Provider Tyler Technologies Hit by Possible Ransomware Attack

Tyler Technologies, a Texas-based provider of software and services for the U.S. government, started informing customers this week of a security incident that is believed to have involved a piece of ransomware. Tyler’s website is currently unavailable and in emails sent out to customers the company said its internal phone and IT systems were accessed without authorization by an “unknown third party.”

U.S. Justice Department Charges APT41 Hackers Over Global Cyberattacks

On September 16, 2020, the United States Justice Department announced that it was charging five Chinese citizens with hacking crimes committed against over 100 institutions in the United States and abroad. The global hacking campaign went after a diverse range of targets, from video game companies and telecommunications enterprises to universities and non-profit organizations. The five individuals were reportedly connected to the hacking group known as APT41.

Phishers are Targeting Employees with Fake GDPR Compliance Reminders

Phishers are using a bogus GDPR compliance reminder to trick recipients – employees of businesses across several industry verticals – into handing over their email login credentials. In this evolving campaign, the attackers targeted mostly email addresses they could glean from company websites and, to a lesser extent, emails of people who are high in the organization’s hierarchy.

Mispadu Banking Trojan Resurfaces

Recent spam campaigns leading to the URSA/Mispadu banking trojan have been uncovered, as reported by malware analyst Pedro Tavares in a Twitter post and by Seguranca Informatica in a blog post. Mispadu malware steals credentials from users’ systems. This attack targets systems with Spanish and Portuguese as system languages.

A Blind Spot in ICS Security: The Protocol Gateway Part 3: What ICS Security Administrators Can Do

In this blog series, Trend Micro analyzes the impacts of the serious vulnerabilities detected in the protocol gateways that are essential when shifting to smart factories and discusses the security countermeasures that security administrators in those factories must take. In the final part of this series, Trend Micro describes a stealth attack method that abuses a vulnerability as well as informs readers of a vital point of security measures required for the future ICS environment.

Major Instagram App Bug Could’ve Given Hackers Remote Access to Your Phone

Check Point researchers disclosed details about a critical vulnerability in Instagram’s Android app that could have allowed remote attackers to take control over a targeted device just by sending victims a specially crafted image. The flaw lets attackers perform actions on behalf of the user within the Instagram app, including spying on victim’s private messages and deleting or posting photos from their accounts, as well as execute arbitrary code on the device.

Addressing Threats Like Ryuk via Trend Micro XDR

Ryuk has recently been one of the most noteworthy ransomware families and is perhaps the best representation of the new paradigm in ransomware attacks where malicious actors go for quality over sheer quantity. In 2019, the Trend Micro™ Managed XDR and Incident Response teams investigated an incident concerning a Trend Micro customer that was infected with the Ryuk ransomware.

What are your thoughts on the Android Instagram app bug that could allow remote access to user’s phones? Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

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Ransom from Home – How to close the cyber front door to remote working ransomware attacks

By Trend Micro

Coronavirus has caused a major shift to our working patterns. In many cases these will long outlast the pandemic. But working from home has its own risks. One is that you may invite ransomware attacks from a new breed of cyber-criminal who has previously confined his efforts to directly targeting the corporate network. Why? Because as a remote worker, you’re increasingly viewed as a soft target—the open doorway to extorting money from your employer.

So how does ransomware land up on your front doorstep? And what can a home worker do to shut that door?

The new ransomware trends

Last year, Trend Micro detected over 61 million ransomware-related threats, a 10% increase from 2018 figures. But things have only gotten worse from there. There has been a 20% spike in ransomware detections globally in the first half of 2020, rising to 109% in the US. And why is that?

At a basic level, ransomware searches for and encrypts most of the files on a targeted computer, so as to make them unusable. Victims are then asked to pay a ransom within a set time frame in order to receive the decryption key they need to unlock their data. If they don’t, and they haven’t backed-up this data, it could be lost forever.

The trend of late, however, has been to focus on public and private sector organizations whose staff are working from home (WFH). The rationale is that remote workers are less likely to be able to defend themselves from ransomware attacks, while they also provide a useful stepping-stone into high-value corporate networks. Moreover, cybercriminals are increasingly looking to steal sensitive data before they encrypt it, even as they’re more likely to fetch a higher ransom for their efforts than they do from a typical consumer, especially if the remote employee’s data is covered by cyber-insurance.

Home workers are also being more targeted for a number of reasons:

  • They may be more distracted than those in the office.
  • Home network and endpoint security may not be up to company levels.
  • Home systems (routers, smart home devices, PCs, etc.,) may not be up-to-date and therefore are more easily exposed to exploits.
  • Remote workers are more likely to visit insecure sites, download risky apps, or share machines/networks with those who do.
  • Corporate IT security teams may be overwhelmed with other tasks and unable to provide prompt support to a remote worker.
  • Security awareness programs may have been lacking in the past, perpetuating bad practice for workers at home.

What’s the attack profile of the remote working threat?

In short, the bad guys are now looking to gain entry to the corporate network you may be accessing from home via a VPN, or to the cloud-hosted systems you use for work or sharing files, in order to first steal and then encrypt company data with ransomware as far and wide as possible into your organization. But the methods are familiar. They’ll

  • Try to trick you into dangerous behavior through email phishing—the usual strategy of getting you to click links that redirect you to bad websites that house malware, or getting you to download a bad file, to start the infection process.
  • Steal or guess your log-ins to work email accounts, remote desktop tools (i.e., Microsoft Remote Desktop or RDP), and cloud-based storage/networks, etc., before they deliver the full ransomware payload. This may happen via a phishing email spoofed to appear as if sent from a legitimate source, or they may scan for your use of specific tools and then try to guess the password (known as brute forcing). One new Mac ransomware, called EvilQuest, has a keylogger built into it, which could capture your company passwords as you type them in. It’s a one-two punch: steal the data first, then encrypt it.
  • Target malware at your VPN or remote desktop software, if it’s vulnerable. Phishing is again a popular way to do this, or they may hide it in software on torrent sites or in app stores. This gives them a foothold into your employer’s systems and network.
  • Target smart home devices/routers via vulnerabilities or their easy-to-guess/crack passwords, in order to use home networks as a stepping-stone into your corporate network.

How can I prevent ransomware when working from home?

The good news is that you, the remote worker, can take some relatively straightforward steps up front to help mitigate the cascading risks to your company posed by the new ransomware. Try the following:

  • Be cautious of phishing emails. Take advantage of company training and awareness courses if offered.
  • Keep your home router firmware, PCs, Macs, mobile devices, software, browsers and operating systems up to date on the latest versions – including remote access tools and VPNs (your IT department may do some of this remotely).
  • Ensure your home network, PCs, and mobile devices are protected with up-to-date with network and endpoint AV from a reputable vendor. (The solutions should include anti-intrusion, anti-web threat, anti-spam, anti-phishing, and of course, anti-ransomware features.)
  • Ensure remote access tools and user accounts are protected with multi-factor authentication (MFA) if used and disable remote access to your home router.
  • Disable Microsoft macros where possible. They’re a typical attack vector.
  • Back-up important files regularly, according to 3-2-1 rule.

How Trend Micro can help

In short, to close the cyber front door to ransomware, you need to protect your home network and all your endpoints (laptops, PCs, mobile devices) to be safe. Trend Micro can help via

  • The Home Network: Home Network Security (HNS) connects to your router to protect any devices connected to the home network — including IoT gadgets, smartphones and laptops — from ransomware and other threats.
  • Desktop endpoints: Trend Micro Security (TMS) offers advanced protection from ransomware-related threats. It includes Folder Shield to safeguard valuable files from ransomware encryption, which may be stored locally or synched to cloud services like Dropbox®, Google Drive® and Microsoft® OneDrive/OneDrive for Business.
  • Mobile endpoints: Trend Micro Mobile Security (also included in TMS) protects Android and iOS devices from ransomware.
  • Secure passwords: Trend Micro Password Manager enables users to securely store and recall strong, unique passwords for all their apps, websites and online accounts, across multiple devices.
  • VPN Protection at home and on-the-go: Trend Micro’s VPN Proxy One (Mac | iOS) solution will help ensure your data privacy on Apple devices when working from home, while its cross-platform WiFi Protection solution will do the same across PCs, Macs, Android and iOS devices when working from home or when connecting to public/unsecured WiFi hotspots, as you venture out and about as the coronavirus lockdown eases in your area.

With these tools, you, the remote worker, can help shut the front door to ransomware, protecting your work, devices, and company from data theft and encryption for ransom.

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1H 2020 Cyber Security Defined by Covid-19 Pandemic

By Jon Clay (Global Threat Communications)

When we published our 2020 Predictions report in December, we didn’t realize there was a global pandemic brewing that would give cybercriminals an almost daily news cycle to take advantage of in their attacks against people and organizations around the world. Malicious actors have always taken advantage of big news to use as lures for socially engineered threats, but these events tend to be fairly short news cycles.

When Covid-19 started making headlines in early 2020, we started seeing new threats using this in the attacks. As you see below, April was the peak month for email-based Covid-19 related threats.

The same was true for phishing URLs related to Covid-19, but for files using Covid-19 in their naming convention, the peak month in the first half was June.

Impact on Cybercrime

The constant 24×7 news around cases, cures and vaccines makes this pandemic unique for cybercriminals. Also, the shift to remote working and the challenges posed to supply chains all gave cybercriminals new content they could use as lures to entice victims into infecting themselves.

As we’ve seen for many years now, email-based threats were the most used threat vector by malicious actors, which makes sense as the number one infection vector to penetrate an organization’s network is to use a socially engineered email against an employee.

We even saw malicious mobile apps being developed using Covid-19 as a lure, as you see below.

In this case it was supporting potential cures for the virus, which many people would have wanted.

Other Highlights in 1H 2020

While Covid-19 dominated the threat landscape in the 1H 2020, it wasn’t the only thing that defined it. Ransomware actors continued their attacks against organizations, but as we’ve been seeing over the past year, they’ve become much more selective in their victims. The spray and pray model using spam has been shifted to a more targeted approach, similar to how nation-state actors and APT groups perform their attacks. Two things showcase this trend:

  1. The number of ransomware detections has dropped significantly from 1H 2019 to 1H 2020, showing that ransomware actors are not looking for broad infection numbers.

 

 

2. The ransom amounts have increased significantly over the years, showing ransomware actors are selecting their victims around how much they feel they can extort them for and whether they are more likely to pay a ransom.

 

Home network attacks are another interesting aspect of the threat landscape in the first half of this year. We have millions of home routers around the world that give us threat data on events coming into and out of home networks.

Threat actors are taking advantage of more remote workers by launching more attacks against these home networks. As you see below, the first half of 2020 saw a marked increase in attacks.

Many of these attacks are brute force login attempts as actors try to obtain login credentials for routers and devices within the home network, which can allow them to do further damage.

The above are only a small number of security events and trends we saw in just six months of 2020. Our full roundup of the security landscape so far this year is detailed out in our security roundup report – Securing the Pandemic-Disrupted Workplace. You can read about all we found to help prepare for many of the threats we will continue to see for the rest of the year.

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The Life Cycle of a Compromised (Cloud) Server

By Bob McArdle

Trend Micro Research has developed a go-to resource for all things related to cybercriminal underground hosting and infrastructure. Today we released the second in this three-part series of reports which detail the what, how, and why of cybercriminal hosting (see the first part here).

As part of this report, we dive into the common life cycle of a compromised server from initial compromise to the different stages of monetization preferred by criminals. It’s also important to note that regardless of whether a company’s server is on-premise or cloud-based, criminals don’t care what kind of server they compromise.

To a criminal, any server that is exposed or vulnerable is fair game.

Cloud vs. On-Premise Servers

Cybercriminals don’t care where servers are located. They can leverage the storage space, computation resources, or steal data no matter what type of server they access. Whatever is most exposed will most likely be abused.

As digital transformation continues and potentially picks up to allow for continued remote working, cloud servers are more likely to be exposed. Many enterprise IT teams, unfortunately, are not arranged to provide the same protection for cloud as on-premise servers.

As a side note, we want to emphasize that this scenario applies only to cloud instances replicating the storage or processing power of an on-premise server. Containers or serverless functions won’t fall victim to this same type of compromise. Additionally, if the attacker compromises the cloud account, as opposed to a single running instance, then there is an entirely different attack life cycle as they can spin up computing resources at will. Although this is possible, however, it is not our focus here.

Attack Red Flags

Many IT and security teams might not look for earlier stages of abuse. Before getting hit by ransomware, however, there are other red flags that could alert teams to the breach.

If a server is compromised and used for cryptocurrency mining (also known as cryptomining), this can be one of the biggest red flags for a security team. The discovery of cryptomining malware running on any server should result in the company taking immediate action and initiating an incident response to lock down that server.

This indicator of compromise (IOC) is significant because while cryptomining malware is often seen as less serious compared to other malware types, it is also used as a monetization tactic that can run in the background while server access is being sold for further malicious activity. For example, access could be sold for use as a server for underground hosting. Meanwhile, the data could be exfiltrated and sold as personally identifiable information (PII) or for industrial espionage, or it could be sold for a targeted ransomware attack. It’s possible to think of the presence of cryptomining malware as the proverbial canary in a coal mine: This is the case, at least, for several access-as-a-service (AaaS) criminals who use this as part of their business model.

Attack Life Cycle

Attacks on compromised servers follow a common path:

  1. Initial compromise: At this stage, whether a cloud-based instance or an on-premise server, it is clear that a criminal has taken over.
  2. Asset categorization: This is the inventory stage. Here a criminal makes their assessment based on questions such as, what data is on that server? Is there an opportunity for lateral movement to something more lucrative? Who is the victim?
  3. Sensitive data exfiltration: At this stage, the criminal steals corporate emails, client databases, and confidential documents, among others. This stage can happen any time after asset categorization if criminals managed to find something valuable.
  4. Cryptocurrency mining: While the attacker looks for a customer for the server space, a target attack, or other means of monetization, cryptomining is used to covertly make money.
  5. Resale or use for targeted attack or further monetization: Based on what the criminal finds during asset categorization, they might plan their own targeted ransomware attack, sell server access for industrial espionage, or sell the access for someone else to monetize further.

 

lifecycle compromised server

The monetization lifecycle of a compromised server

Often, targeted ransomware is the final stage. In most cases, asset categorization reveals data that is valuable to the business but not necessarily valuable for espionage.

A deep understanding of the servers and network allows criminals behind a targeted ransomware attack to hit the company where it hurts the most. These criminals would know the dataset, where they live, whether there are backups of the data, and more. With such a detailed blueprint of the organization in their hands, cybercriminals can lock down critical systems and demand higher ransom, as we saw in our 2020 midyear security roundup report.

In addition, while a ransomware attack would be the visible urgent issue for the defender to solve in such an incident, the same attack could also indicate that something far more serious has likely already taken place: the theft of company data, which should be factored into the company’s response planning. More importantly, it should be noted that once a company finds an IOC for cryptocurrency, stopping the attacker right then and there could save them considerable time and money in the future.

Ultimately, no matter where a company’s data is stored, hybrid cloud security is critical to preventing this life cycle.

 

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Black Hat Trip Report – Trend Micro

By William "Bill" Malik (CISA VP Infrastructure Strategies)

At Black Hat USA 2020, Trend Micro presented two important talks on vulnerabilities in Industrial IoT (IIoT). The first discussed weaknesses in proprietary languages used by industrial robots, and the second talked about vulnerabilities in protocol gateways. Any organization using robots, and any organization running a multi-vendor OT environment, should be aware of these attack surfaces. Here is a summary of the key points from each talk.

Rogue Automation

Presented at Black Hat, Wednesday, August 5. https://www.blackhat.com/us-20/briefings/schedule/index.html#otrazor-static-code-analysis-for-vulnerability-discovery-in-industrial-automation-scripts-19523 and the corresponding research paper is available at https://www.trendmicro.com/vinfo/us/security/news/internet-of-things/unveiling-the-hidden-risks-of-industrial-automation-programming

Industrial robots contain powerful, fully capable computers. Unlike most contemporary computers, though, industrial robots lack basic information security capabilities. First, at the architectural level, they lack any mechanism to isolate certain instructions or memory. That is, any program can alter any piece of storage, or run any instruction. In traditional mainframes, no application could access, change, or run any code in another application or in the operating system. Even smartphone operating systems have privilege separation. An application cannot access a smartphone’s camera, for instance, without being specifically permitted to do so. Industrial robots allow any code to read, access, modify, or run any device connected to the system, including the clock. That eliminates data integrity in industrial robots and invalidates any audit of malfunctions; debugging becomes exceptionally difficult.

Industrial robots do not use conventional programming languages, like C or Python. Instead, each manufacturer provides its own proprietary programming language. That means a specialist using one industrial robot cannot use another vendor’s machine without training. There are no common information security tools for code validation, since vendors do not develop products for fragmented markets. These languages describe programs telling the robot how to move. They also support reading and writing data, analyzing and modifying files, opening and closing input/output devices, getting and sending information over a network, and accessing and changing status indicators on connected sensors. Once a program starts to run on an industrial robot, it can do anything any fully functional computer can do, without any security controls at all. Contemporary industrial robots do not have any countermeasures against this threat.

Most industrial robot owners do not write their own programs. The supply chain for industrial robot programs involves many third-party actors. See Figure 1 below for a simplified diagram. In each community, users of a particular vendor’s languages share code informally, and rely on user’s groups for hints and tips to solve common tasks. These forums rarely discuss security measures. Many organizations hire third-party contractors to implement particular processes, but there are no security certifications relevant to these proprietary languages. Most programmers learned their trade in an air-gapped world, and still rely on a perimeter which separates the safe users and code inside from the untrusted users and code outside. The languages offer no code scanners to identify potential weaknesses, such as not validating inputs, modifying system services, altering device state, or replacing system functions. The machines do not have a software asset management capability, so knowing where the components of a running program originated from is uncertain.

Figure 1: The Supply Chain for Industrial Robot Programming

All is not lost – not quite. In the short term, Trend Micro Research has developed a static code analysis tool called OTRazor, which examines robotic code for unsafe code patterns. This was demonstrated during our session at Black Hat.

Over time, vendors will have to introduce basic security checks, such as authentication, authorization, data integrity, and data confidentiality. The vendors will also have to introduce architectural restrictions – for instance, an application should be able to read the clock but not change it.. Applications should not be able to modify system files, programs, or data, nor should they be able to modify other applications. These changes will take years to arrive in the market, however. Until then, CISOs should audit industrial robot programs for vulnerabilities, and segment networks including industrial robots, and apply baseline security programs, as they do now, for both internally developed and procured software.

Protocol Gateway Vulnerabilities

Presented at Black Hat, Wednesday, August 5, https://www.blackhat.com/us-20/briefings/schedule/index.html#industrial-protocol-gateways-under-analysis-20632, with the corresponding research paper available here: https://www.trendmicro.com/vinfo/us/security/news/internet-of-things/lost-in-translation-when-industrial-protocol-translation-goes-wrong.

Industry 4.0 leverages the power of automation alongside the rich layer of software process control tools, particularly Enterprise Resource Planning (ERP), and its bigger cousin, Supply Chain Management (SCM). By bringing together dynamic industrial process control with hyper-efficient “just-in-time” resource scheduling, manufacturers can achieve minimum cost, minimum delay, and optimal production. But these integration projects require that IIoT devices speak with other technology, including IIoT from other manufacturers and legacy equipment. Since each equipment or device may have their own communication protocol, Industry 4.0 relies heavily on protocol converters.

Protocol converters are simple, highly efficient, low-cost devices that translate one protocol into another. Protocol converters are ubiquitous, but they lack any basic security capabilities – authentication, authorization, data integrity or data confidentiality – and they sit right in the middle of the OT network. Attackers can subvert protocol converters to hijack the communication or change configuration. An attacker can disable a safety thresholds, generate a denial of service attack, and misdirect an attached piece of equipment.

In the course of this research, we found nine vulnerabilities and are working with vendors to remediate the issues. Through our TXOne subsidiary, we are developing rules and intelligence specifically for IIoT message traffic, which are then embedded in our current network security offerings, providing administrators with better visibility and the ability to enforce security policies in their OT networks.

Protocol converters present a broad attack surface, as they have limited native information security capabilities. They don’t validate senders or receivers, nor do they scan or verify message contents. Due to their crucial position in the middle of the OT network, they are an exceptionally appealing target for malicious actors. Organizations using protocol converters – especially those on the way to Industry 4.0 – must address these weak but critical components of their evolving infrastructure.

What do you think? Let me know in the comments below or @WilliamMalikTM

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Have You Considered Your Organization’s Technical Debt?

By Madeline Van Der Paelt

TL;DR Deal with your dirty laundry.

Have you ever skipped doing your laundry and watched as that pile of dirty clothes kept growing, just waiting for you to get around to it? You’re busy, you’re tired and you keep saying you’ll get to it tomorrow. Then suddenly, you realize that it’s been three weeks and now you’re running around frantically, late for work because you have no clean socks!

That is technical debt.

Those little things that you put off, which can grow from a minor inconvenience into a full-blown emergency when they’re ignored long enough.

Piling Up

How many times have you had an alarm go off, or a customer issue arise from something you already knew about and meant to fix, but “haven’t had the time”? How many times have you been working on something and thought, “wow, this would be so much easier if I just had the time to …”?

That is technical debt.

But back to you. In your craze to leave for work you manage to find two old mismatched socks. One of them has a hole in it. You don’t have time for this! You throw them on and run out the door, on your way to solve real problems. Throughout the day, that hole grows and your foot starts to hurt.

This is really not your day. In your panicked state this morning you actually managed to add more pain to your already stressed system, plus you still have to do your laundry when you get home! If only you’d taken the time a few days ago…

Coming Back to Bite You

In the tech world where one seemingly small hole – one tiny vulnerability – can bring down your whole system, managing technical debt is critical. Fixing issues before they become emergent situations is necessary in order to succeed.

If you’re always running at full speed to solve the latest issue in production, you’ll never get ahead of your competition and only fall further behind.

It’s very easy to get into a pattern of leaving the little things for another day. Build optimizations, that random unit test that’s missing, that playbook you meant to write up after the last incident – technical debt is a real problem too! By spending just a little time each day to tidy up a few things, you can make your system more stable and provide a better experience for both your customers and your fellow developers.

Cleaning Up

Picture your code as that mountain of dirty laundry. Each day that passes, you add just a little more to it. The more debt you add on, the more daunting your task seems. It becomes a thing of legend. You joke about how you haven’t dealt with it, but really you’re growing increasingly anxious and wary about actually tackling it, and what you’ll find when you do.

Maybe if you put it off just a little bit longer a hero will swoop in and clean up for you! (A woman can dream, right?) The more debt you add, the longer it will take to conquer it, and the harder it will be and the higher the risk is of introducing a new issue.

This added stress and complexity doesn’t sound too appealing, so why do we do it? It’s usually caused by things like having too much work in progress, conflicting priorities and (surprise!) neglected work.

Managing technical debt requires only one important thing – a cultural change.

As much as possible we need to stop creating technical debt, otherwise we will never be able to get it under control. To do that, we need to shift our mindset. We need to step back and take the time to see and make visible all of the technical debt we’re drowning in. Then we can start to chip away at it.

Culture Shift

My team took a page out of “The Unicorn Project” (Kim, 2019) and started by running “debt days” when we caught our breath between projects. Each person chose a pain point, something they were interested in fixing, and we started there. We dedicated two days to removing debt and came out the other side having completed tickets that were on the backlog for over a year.

We also added new metrics and dashboards for better incident response, and improved developer tools.

Now, with each new code change, we’re on the lookout. Does this change introduce any debt? Do we have the ability to fix that now? We encourage each other to fix issues as we find them whether it’s with the way our builds work, our communication processes or a bug in the code.

We need to give ourselves the time to breathe, in both our personal lives or our work day. Taking a pause between tasks not only allows us to mentally prepare for the next one, but it gives us time to learn and reflect. It’s in these pauses that we can see if we’ve created technical debt in any form and potentially go about fixing it right away.

What’s Next?

The improvement of daily work ultimately enables developers to focus on what’s really important, delivering value. It enables them to move faster and find more joy in their work.

So how do you stay on top of your never-ending laundry? Your family chooses to makes a cultural change and decides to dedicate time to it. You declare Saturday as laundry day!

Make the time to deal with technical debt –your developers, security teams, and your customers will thank you for it.

 

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Fixing cloud migration: What goes wrong and why?

By Trend Micro

 

The cloud space has been evolving for almost a decade. As a company we’re a major cloud user ourselves. That means we’ve built up a huge amount of in-house expertise over the years around cloud migration — including common challenges and perspectives on how organizations can best approach projects to improve success rates.

As part of our #LetsTalkCloud series, we’ve focused on sharing some of this expertise through conversations with our own experts and folks from the industry. To kick off the series, we discussed some of the security challenges solution architects and security engineers face with customers when discussing cloud migrations. Spoiler…these challenges may not be what you expect.

 

Drag and drop

 

This lack of strategy and planning from the start is symptomatic of a broader challenge in many organizations: There’s no big-picture thinking around cloud, only short-term tactical efforts. Sometimes we get the impression that a senior exec has just seen a ‘cool’ demo at a cloud vendor’s conference and now wants to migrate a host of apps onto that platform. There’s no consideration of how difficult or otherwise this would be, or even whether it’s necessary and desirable.

 

These issues are compounded by organizational siloes. The larger the customer, the larger and more established their individual teams are likely to be, which can make communication a major challenge. Even if you have a dedicated cloud team to work on a project, they may not be talking to other key stakeholders in DevOps or security, for example.

 

The result is that, in many cases, tools, applications, policies, and more are forklifted over from on-premises environments to the cloud. This ends up becoming incredibly expensive. as these organizations are not really changing anything. All they are doing is adding an extra middleman, without taking advantage of the benefits of cloud-native tools like microservices, containers, and serverless.

 

There’s often no visibility or control. Organizations don’t understand they need to lockdown all their containers and sanitize APIs, for example. Plus, there’s no authority given to cloud teams around governance, cost management, and policy assignment, so things just run out of control. Often, shared responsibility isn’t well understood, especially in the new world of DevOps pipelines, so security isn’t applied to the right areas.

 

Getting it right

 

These aren’t easy problems to solve. From a security perspective, it seems we still have a job to do in educating the market about shared responsibility in the cloud, especially when it comes to newer technologies, like serverless and containers. Every time there’s a new way of deploying an app, it seems like people make the same mistakes all over again — presuming the vendors are in charge of security.

 

Automation is a key ingredient of successful migrations. Organizations should be automating everywhere, including policies and governance, to bring more consistency to projects and keep costs under control. In doing so, they must realize that this may require a redesign of apps, and a change in the tools they use to deploy and manage those apps.

 

Ultimately, you can migrate apps to the cloud in a couple of clicks. But the governance, policy, and management that must go along with this is often forgotten. That’s why you need clear strategic objectives and careful planning to secure more successful outcomes. It may not be very sexy, but it’s the best way forward.

 

To learn more about cloud migration, check out our blog series. And catch up on all of the latest trends in DevOps to learn more about securing your cloud environment.

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Are You Promoting Security Fluency in your Organization?

By Trend Micro

 

Migrating to the cloud is hard. The PowerPoint deck and pretty architectures are drawn up quickly but the work required to make the move will take months and possibly years.

 

The early stages require significant effort by teams to learn new technologies (the cloud services themselves) and new ways of the working (the shared responsibility model).

 

In the early days of your cloud efforts, the cloud center of expertise is a logical model to follow.

 

Center of Excellence

 

A cloud center of excellence is exactly what it sounds like. Your organization forms a new team—or an existing team grows into the role—that focuses on setting cloud standards and architectures.

 

They are often the “go-to” team for any cloud questions. From the simple (“What’s an Amazon S3 bucket?”), to the nuanced (“What are the advantages of Amazon Aurora over RDS?”), to the complex (“What’s the optimum index/sort keying for this DynamoDB table?”).

 

The cloud center of excellence is the one-stop shop for cloud in your organization. At the beginning, this organizational design choice can greatly accelerate the adoption of cloud technologies.

 

Too Central

 

The problem is that accelerated adoption doesn’t necessarily correlate with accelerated understanding and learning.

 

In fact, as the center of excellent continues to grow its success, there is an inverse failure in organizational learning which create a general lack of cloud fluency.

 

Cloud fluency is an idea introduced by Forrest Brazeal at A Cloud Guru that describes the general ability of all teams within the organization to discuss cloud technologies and solutions. Forrest’s blog post shines a light on this situation and is summed up nicely in this cartoon;

 

Our own Mark Nunnikhoven also spoke to Forrest on episode 2 of season 2 for #LetsTalkCloud.

 

Even though the cloud center of excellence team sets out to teach everyone and raise the bar, the work soon piles up and the team quickly shifts away from an educational mandate to a “fix everything” one.

 

What was once a cloud accelerator is now a place of burnout for your top, hard-to-replace cloud talent.

 

Security’s Past

 

If you’ve paid attention to how cybersecurity teams operate within organizations, you have probably spotted a number of very concerning similarities.

 

Cybersecurity teams are also considered a center of excellence and the central team within the organization for security knowledge.

 

Most requests for security architecture, advice, operations, and generally anything that includes the prefix “cyber”, word “risk”, or hints of “hacking” get routed to this team.

 

This isn’t the security team’s fault. Over the years, systems have increased in complexity, more and more incidents occur, and security teams rarely get the opportunity to look ahead. They are too busy stuck in “firefighting mode” to take as step back and re-evaluate the organizational design structure they work within.

 

According to Gartner, for every 750 employees in an organization, one of those is dedicated to cybersecurity. Those are impossible odds that have lead to the massive security skills gap.

 

Fluency Is The Way Forward

 

Security needs to follow the example of cloud fluency. We need “security fluency” in order to import the security posture of the systems we built and to reduce the risk our organizations face.

 

This is the reason that security teams need to turn their efforts to educating development teams. DevSecOps is a term chock full of misconceptions and it lacks context to drive the needed changes but it is handy for raising awareness of the lack of security fluency.

 

Successful adoption of a DevOps philosophy is all about removing barriers to customer success. Providing teams with the tools and autonomy they require is a critical factor in their success.

 

Security is just one aspect of the development team’s toolkit. It’s up to the current security team to help educate them on the principles driving modern cybersecurity and how to ensure that the systems they build work as intended…and only as intended.

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Cloud Security Is Simple, Absolutely Simple.

By Mark Nunnikhoven (Vice President, Cloud Research)

“Cloud security is simple, absolutely simple. Stop over complicating it.”

This is how I kicked off a presentation I gave at the CyberRisk Alliance, Cloud Security Summit on Apr 17 of this year. And I truly believe that cloud security is simple, but that does not mean easy. You need the right strategy.

As I am often asked about strategies for the cloud, and the complexities that come with it, I decided to share my recent talk with you all. Depending on your preference, you can either watch the video below or read the transcript of my talk that’s posted just below the video. I hope you find it useful and will enjoy it. And, as always, I’d love to hear from you, find me @marknca.

For those of you who prefer to read rather than watch a video, here’s the transcript of my talk:

Cloud security is simple, absolutely simple. Stop over complicating it.

Now, I know you’re probably thinking, “Wait a minute, what is this guy talking about? He is just off his rocker.”

Remember, simple doesn’t mean easy. I think we make things way more complicated than they need to be when it comes to securing the cloud, and this makes our lives a lot harder than they need to be. There’s some massive advantages when it comes to security in the cloud. Primarily, I think we can simplify our security approach because of three major reasons.

The first is integrated identity and access management. All three major cloud providers, AWS, Google and Microsoft offer fantastic identity, and access management systems. These are things that security, and [inaudible 00:00:48] professionals have been clamouring for, for decades.

We finally have this ability, we need to take advantage of it.

The second main area is the shared responsibility model. We’ll cover that more in a minute, but it’s an absolutely wonderful tool to understand your mental model, to realize where you need to focus your security efforts, and the third area that simplifies security for us is the universal application of APIs or application programming interfaces.

These give us as security professionals the ability to orchestrate. and automate a huge amount of the grunt work away. These three things add up to, uh, the ability for us to execute a very sophisticated, uh, or very difficult to pull off, uh, security practice, but one that ultimately is actually pretty simple in its approach.

It’s just all the details are hard and we’re going to use these three advantages to make those details simpler. So, let’s take a step back for a second and look at what our goal is.

What is the goal of cybersecurity? That’s not something you hear quite often as a question.

A lot of the time you’ll hear the definition of cybersecurity is, uh, about, uh, securing the confidentiality, integrity, and availability of information or data. The CIA triad, different CIA, but I like to phrase this in a different way. I think the goal is much clearer, and the goal’s much simpler.

It is to make sure that whatever you’re building works as intended and only as intended. Now, you’ll realize you can’t accomplish this goal just as a security team. You need to work with your, uh, developers, you need to work with operations, you need to work with the business units, with the end users of your application as well.

This is a wonderful way of phrasing our goal, and realizing that we’re all in this together to make sure whatever you’re building works as intended, and only as intended.

Now, if we move forward, and we look at who are we up against, who’s preventing our stuff from working, uh, well?

You look at normally, you think of, uh, who’s attacking our systems? Who are the risks? Is it nation states? Is it maybe insider threats? While these are valid threats, they’re really overblown. You’re… don’t have to worry about nation state attacks.

If you’re a nation state, worry about it. If you’re not a nation state, you don’t have to worry about it because frankly, there’s nothing you can do to stop them. You can slow them down a little bit, but by definition, they’re going to get through your resources.

As far as insider attacks, this is an HR problem. Treat your people well. Um, check in with them, and have a strong information management policy in place, and you’re going to reduce this threat naturally. If you go hunting for people, you’re going to create the very threats that you’re looking at.

So, it brings us to the next set. What about cyber criminals? You know, we do have to worry about cyber criminals.

Cyber criminals are targeting systems simply because these systems are online, these are profit motivated criminals who are organized, and have a good set of tools, so we absolutely need to worry about them, but there’s a more insidious or more commonplace, maybe a simpler threat that we need to worry about, and that’s one of mistakes.

The vast majority of issues that happen around data breaches around security vulnerabilities in the cloud are mistake driven. In fact, to the point where I would not even worry about cyber criminals simply because all the work we’re going to do to focus on, uh, preventing mistakes.

And catching, and rectifying the stakes really, really quickly is going to uh, you a cover all the stuff that we would have done to block out cyber criminals as well, so mistakes are very common because people are using a lot more services in the cloud.

You have a lot more, um, parts and moving, uh, complexity in your deployment, um, and you’re going to make a mistake, which is why you need to put automated systems in place to make sure that those mistakes don’t happen, or if they do happen that they’re caught very, very quickly.

This applies to standard DevOps, the philosophies for building. It also applies to security very, very wonderfully, so this is the main thing we’re going to focus on.

So, if we look at that sum up together, we have our goal of making sure whatever we’re building works as intended, and only as intended, and our major issue here, the biggest risk to this is simple mistakes and misconfigurations.

Okay, so we’re not starting from ground zero here. We can learn from others, and the first place we’re going to learn is the shared responsibility model. The shared responsibility applies to all cloud service providers.

If you look on the left hand side of the slide here, you’ll see the traditional on premise model. We roughly have six areas where something has to be done roughly daily, whether it’s patching, maintenance, uh, just operational visibility, monitoring, that kind of thing, and in a traditional on premise environment, you’re responsible for all of it, whether it’s your team, or a team underneath your organization.

Somewhere within your tree, people are on the hook for doing stuff daily. Here when we move into an infrastructure, so getting a virtual machine from a cloud provider right off the bat, half of the responsibilities are pushed away.

That’s a huge, huge win.

And, as we move further and further to the right to more managed service, or staff level services, we have less and less daily responsibilities.

Now, of course, you always still have to verify that the cloud service provider’s doing what they, uh, say they’re doing, which is why certifications and compliance frameworks come into play, uh, but the bottom line is you’re doing less work, so you can focus on fewer areas.

Um, that is, or I should say not less work, but you’re doing, uh, less broad of a work.

So you can have that deeper focus, and of course, you always have to worry about service configuration. You are given knobs and dials to turn to lock things down. You should use them like things like encrypting, uh, all your data at rest.

Most of the time it’s an easy check box, but it’s up to you to check it ‘cause it’s your responsibility.

We also have the idea of an adoption framework, and this applies for Azure, for AWS and for Google, uh, and what they do is they help you map out your business processes.

This is important to security, because it gives you the understanding of where your data is, what’s important to the business, where does it lie, who needs to touch it, and access it and process it.

That also gives us the idea, uh, or the ability to identify the stakeholders, so that we know, uh, you know, who’s concerned about this data, who is, has an investment in this data, and finally it helps to, to deliver an action plan.

The output of all of these frameworks is to deliver an action plan to help you migrate into the cloud and help you to continuously evolve. Well, it’s also a phenomenal map for your security efforts.

You want to prioritize security, this is how you do it. You get it through the adoption framework, understanding what’s important to the business, and that lets you identify critical systems and areas for your security.

Again, we want to keep things simple, right? And, the third, uh, the o- other things we want to look at is the CIS foundations. They have them for AWS, Azure and GCP, um, and these provide a prescriptive guidance.

They’re really, um, a strong baseline, and a checklist of tasks that you can accomplish, um, or take on, on your, uh, take on, on your own, excuse me, uh, in order to, um, you know, basically cover off the really basics is encryption at rest on, um, you know, do I make sure that I don’t have, uh, things needlessly exposed to the internet, that type of thing.

Really fantastic reference point and a starting point for your security practice.

Again, with this idea of keeping things as simple as possible, so when it comes to looking at our security policy, we’ve used the frameworks, um, and the baseline to kind of set up a strong, uh, start to understand, uh, where the business is concerned, and to prioritize.

And, the first question we need to ask ourselves as security practitioners, what happened? If we, if something happens, and we ask what happened?

Do we have the ability to answer this question? So, that starts us off with logging and auditing. This needs to be in place before something happened. Let me just say that again, before something happened, you need [laughs] to be able to have this information in place.

Now, uh, this is really, uh, to ask these key questions of what happened in my account, and who, or what made that thing happen?

So, this starts in the cloud with some basic services. Uh, for AWS it’s cloud trail, for Azure, it’s monitor, and for Google Cloud it used to be called Stackdriver, it is now the Google Cloud operations suite, so these need to be enabled on at full volume.

Don’t worry, you can use some lifecycle rules on the data source to keep your costs low.

But, this gives you that layer, that basic auditing and logging layer, so that you can answer that question of what happened?

So, the next question you want to ask yourself or have the ability to answer is who’s there, right? Who’s doing what in my account? And, that comes down to identity.

We’ve already mentioned this is one of the key pillars of keeping security simple, and getting that highly effective security in your cloud.

[00:09:00] So here you’re answering the questions of who are you, and what are you allowed to do? This is where we get a very simple privilege, uh, or principle in security, which is the principle of least privilege.

You want to give an identity, so whether that’s a user, or a role, or a service, uh, only the privileges they, uh, require that are essential to perform the task that, uh, they are intended to do.

Okay?

So, basically if I need to write a file into a storage, um, folder or a bucket, I should only have the ability to write that file. I don’t need to read it, I don’t need to delete it, I just need to write to it, so only give me that ability.

Remember, that comes back to the other pillar of simple security here of, of key cloud security, is integrated identity.

This is where it really takes off, is that we start to assign very granular access permissions, and don’t worry, we’re going to use the APIs to automate all this stuff, so that it’s not a management headache, but the principle of these privilege is absolutely critical here.

The services you’re going to be using, amazingly, all three cloud providers got in line, and named them the same thing. It’s IAM, identity access management, whether that’s AWS, Azure or Google Cloud.

Now, the next question we’re going to a- ask ourselves are the areas where we’re going to be looking at is really where should I be focusing security controls? Where should I be putting stuff in place?

Because up until now we’ve really talked about leveraging what’s available from the cloud service providers, and you absolutely should available, uh, maximize your usage of their, um, native and primitive, uh, structures primitive as far as base concepts, not as, um, refined.

They’re very advanced controls and, but there are times where you’re going to need to put in your own controls, and these are the areas you’re going to focus on, so you’re going to start with networking, right?

So, in your networking, you’re going to maximize the native structures that are available in the cloud that you’re in, so whether that’s a project structure in Google Cloud, whether that’s a service like transit gateway in AWS, um, and all of them have this idea of a VPC or virtual private cloud or virtual network that is a very strong boundary for you to use.

Remember, most of the time you’re not charged for the creation of those. You have limits in your accounts, but accounts are free, and you can keep adding more, uh, virtual networks. You may be saying, wait a minute, I’m trying to simplify things.

Actually, having multiple virtual networks or virtual private clouds ends up being far simpler because each of them has a task. You go, this application runs in this virtual private cloud, not a big shared one in this specific VPC, and that gives you this wonderfully strong security boundaries, and a very simple way of looking at one VPC, one action, very much the Unix philosophy in play.

Key here though is understanding that while all of the security controls in place for your service provider, um, give you, so, you know, whether it’s VPCs, routing tables, um, uh, access control lists, security groups, all the SDN features that they’ve got in place.

These really help you figure out whether service A or system A is allowed to talk to B, but they don’t tell you what they’re saying.

And, that’s where additional controls called an IPS, or intrusion prevention system come into play, and you may want to look at getting a third party control in to do that, because none of the th- big three cloud providers offer an IPS at this point.

[00:12:00] But that gives you the ability to not just say, “Hey, you’re allowed to talk to each other.” But, to monitor that conversation, to ensure that there’s not malicious code being passed back and forth between systems that nobody’s trying a denial of service attack.

A whole bunch of extra things on there have, so that’s where IPS comes into play in your network defense. Now, we look at compute, right?

We can have compute in various forms, whether that’s in serverless functions, whether that’s in containers, manage containers, whether that’s in traditional virtual machines, but all the principles are the same.

You want to understand where the shared responsibility line is, how much is on your plate, how much is on the CSPs?

You want to understand that you need to harden the EOS, or the service, or both in some cases, make sure that, that’s locked down, so have administrator passwords. Very, very complicated.

Don’t log into these systems, uh, you know, because you want to be fixing things upstream. You want to be fixing things in the build pipeline, not logging into these systems directly, and that’s a huge thing for, uh, systems people to get over, but it’s absolutely essential for security, and you know what?

It’s going to take a while, but there’s some tricks there you can follow with me. You can see, uh, on the slides, uh, at Mark, that is my social everywhere, uh, happy to walk you through the next steps.

This idea of this presentation’s really just the simple basics to start with, to give you that overview of where to focus your time, and, dispel that myth that cloud security is complicating things.

It is a huge path is simplicity, which is a massive lens, or for security.

So, the last area you want to focus here is in data and storage. Whether this is databases, whether this is big blob storage, or, uh, buckets in AWS, it doesn’t really matter the principles, again, all the same.

You want to encrypt your data at rest using the native cloud provided, uh, cloud service provider, uh, features functionality, because most of the time it’s just give it a key address, and give it a checkbox, and you’re good to go.

It’s never been easier to encrypt things, and there is no excuse for it and none of the providers charge extra for, uh, encryption, which is amazing, and you absolutely want to be taking advantage of that, and you want to be as granular as possible with your IAM, uh, and as reasonable, okay?

So, there’s a line here, and a lot of the data stores that are native to the cloud service providers, you can go right down to the data cell level and say, Mark has access, or Mark doesn’t have access to this cell.

That can be highly effective, and maybe right for your use case. It might be too much as well.

But, the nice thing is that you have that option. It’s integrated, it’s pretty straightforward to implement, and then, uh, when we look here, uh, sorry. and then, finally you want to be looking at lifecycle strategies to keep your costs under control.

Um, data really spins out of control when you don’t have to worry about capacity. All of the cloud service providers have some fantastic automations in place.

Basically, just giving you, uh, very simple rules to say, “Okay, after 90 days, move this over to cheaper storage. After 180 days, you know, get rid of it completely, or put it in cold storage.”

Take advantage of those or your bill’s going to spiral out of control, and, and that relates to availability ‘cause uh, uh, and reliability, ‘cause the more you’re spending on that kind of stuff, the less you have to spend on other areas like security and operational efficiency.

So, that brings us to our next big security question. Is this working?

[00:15:00] How do you know if any of this stuff is working? Well, you want to talk about the concept of traceability. Traceability is a, you know, somewhat formal definition, but for me it really comes down to where did this come from, who can access it, and when did they access it?

That ties very closely with the concept of observability. Basically, the ability to look at, uh, closed systems and to infer what’s going on inside based on what’s coming into that system, and what’s leaving that system, really what’s going on.

There’s some great tools here from the service providers. Again, you want to look at, uh, Amazon CloudWatch, uh, Azure Monitor and the Google Cloud operations, uh, suite. Um, and here this leads us to the key, okay?

This is the key to simplifying everything, and I know we’ve covered a ton in this presentation, but I really want you to take a good look at this slide, and again, hit me up, uh, @marknca, happy to answer any questions with, questions afterwards as well here, um, that this will really, really make this simple, and this will really take your security practice to the next level.

If the idea of something happened in your, cloud system, right? In your deployment, there’s a trigger, and then, it either is generating an event or a log.

If you go the bottom row here, you’ve got a log, which you can then react to in a function to deliver some sort of result. That’s the slow-lane on the bottom.

We’re talking minutes here. You also have the top lane where your trigger fires off an event, and then, you react to that with a function, and then, you get a result in the fast lane.

These things happen in seconds, sub-second time. You start to build out your security practice based on this model.

You start automating more and more in these functions, whether it’s, uh, Lambda, whether it’s Cloud Functions, whether it’s Azure Functions, it doesn’t matter.

The CSPs all offer the same core functionality here. This is the critical, critical success metric, is that when you start reacting in the fast lane automatically to things, so if you see that a security event is triggered from like your malware, uh, on your, uh, virtual machine, you can lock that off, and have a new one spin up automatically.

Um, if you’re looking for compliance stuff, the slow lane is the place to go, because it takes minutes.

Reactions happen up top, more, um, stately or more sedate things, so somebody logging into a system is both up top and down low, so up top, if you logged into a VPC or into, um, an instance, or a virtual machine, you’d have a trigger fire off and maybe ask me immediately, “Mark, did you log into the system? Uh, ‘cause you’re, you know, you’re not supposed to be.”

But then I’d respond and say, “Yeah, I, I did log in.” So, immediately you don’t have to respond. It’s not an incident response scenario, but on the bottom track, maybe you’re tracking how many times I’ve logged in.

And after the three or fourth time maybe someone comes by, and has a chat with me, and says, “Hey, do you keep logging into these systems? Can’t you fix it upstream in the deployment, uh, and build a pipeline ‘cause that’s where we need to be moving?”

So, you’ll find this balance, and this concept, I just wanted to get into your heads right now of automating your security practice. If you have a checklist, it should be sitting in a model like this, because it’ll help you, uh, reduce your workload, right?

The idea is to get as much automated possible, and keep things in very clear, and simple boundaries, and what’s more simple than having every security action listed as an automated function, uh, sitting in a code repository somewhere?

[00:18:00] Fantastic approach to modern security practice in the cloud. Very simple, very clear. Yes, difficult to implement. It can be, but it’s an awesome, simple mental model to keep in your head that everything gets automated as a function based on a trigger somewhere.

So, what are the keys to success? What are the keys to keeping this cloud security thing simple? And, hopefully you’ve realized the difference between a simple mental model, and the challenges, uh, in, uh, implementation.

It can be difficult. It’s not easy to implement, but the mental model needs to be kept simple, right? Keep things in their own VPCs, and their own accounts, automate everything. Very, very simple approach. Everything fits into this s- into this structure, so the keys here are remembering the goal.

Make sure that cybersecurity, uh, is making sure that whatever you build works as intended and only as intended. It’s understanding the shared responsibility model, and it’s really looking at, uh, having a plan through cloud adoption frameworks, how to build well, which is a, uh, a concept called the Well-Architected Framework.

It’s specific to AWS, but it’s generic, um, its principles, it can be applied everywhere. We didn’t cover it here, but I’ll put the links, um, in the materials for you, uh, as well as remembering systems over people, right?

Adding the right controls at the right time, uh, and then, finally observing and react. Be vigilant, practice. You’re not going to get this right out of the gates, uh, perfect.

You’re going to have to refine, iterate, and then it’s extremely cloud friendly. That is the cloud model is, get it out there, iterate quickly, but putting the structures in place, you’re not going to make sure that you’re not doing that in an insecure manner.

Thank you very much, uh, here’s a couple of links that’ll help you out before we take some Q&A here, um, trendmicro.com/cloud will get you to the products to learn more. We’re also doing this really cool streaming.

Uh, I host a show called Let’s Talk Cloud. Um, we uh, interview experts, uh, and have a great conversation around, um, what they’re talking about, uh, in the cloud, what they’re working on, and not just around security, but just in building in general.

You can hit that up at trendtalks.fyi. Um, and again, hit me up on social @marknca.

So, we have a couple of questions to kick this off, and you can put more questions in the webinar here, and they will send them along, or answer them in kind if they can.

Um, and that’s really what these are about, is the interaction is getting that, um, to and from. So, the first question that I wanted to tackle is an interesting one, and it’s really that systems over people.

Um, you heard me mention it in the, uh, in the end and the question is really what does that mean systems over people? Isn’t security really about people’s expertise?

And, yes and no, so if you are a SOC analyst, if you are working in a security, uh, role right now, I am really confident saying that 80%, 90% of what you do right now could be delegated out to a system.

So, if you were looking at log lines, and stuff that should be done by systems and bubble up, just the goal for you to investigate to do what people are good at in systems are bad at, so systems mean, uh, you know, putting in, uh, to build pipeline, putting in container scanning in the build pipeline, so that you have to manually scan stuff, right to get rid of the basics. Is that a pen test? 100% no.

Um, but it gets rid of that, hey, you didn’t upgrade to, um, you know, this version of this library.

[00:21:00] That’s all automated, and those, the more systems you get in place, the more you as a security professional, or your security team will be able to focus on where they can really deliver value and frankly, where it’s more interesting work, so that’s what systems over people mean, is basically automate as much as you can to get people doing what people are really good at, and to make sure that the systems catch what we make as mistakes all the time.

If you accidentally try to push an old build out, you know that systems should stop that, if you push a build that hasn’t been checked by that container scanning or by, um, you know, it doesn’t have the appropriate security policy in place.

Systems should catch all that humans shouldn’t have to worry about it at all. That’s systems over processing. You saw that on the, uh, keys to success slide here. I’ll just pull it up. Um, you know, is that, that’s absolutely key.

Another question that we had, uh, was what we didn’t get into here, which was around the Well-Architected Framework. Now, this is a document that was published by AWS, uh, a number of years back, and they’ve kept it going.

They’ve evolved it and essentially it has five pillars. Um, performance, efficiency, uh, op- reliability, security, cost optimization, and operational excellence. Hey, I’ve got all five.

Um, and really [laughs] what that is, is it’s about how to take advantage of these cloud tools.

Now, AWS publishes it, but honestly it applies to Azure, it applies to Google Cloud as well. It’s not service specific. It teaches you how to build in the cloud, and obviously security is one of those big pillars, but it’s… so talking about teaching you how to make those trade offs, how to build an innovation flywheel, so that you have an idea, test it, uh, get the feedback from it, and move forward.

Um, and that’s really, really key. Again, now you should be reading that even if you are an Azure, or GCP customer or, uh, that’s where you’re putting your most of your stuff, because it’s really about the principles, and everything we do, and encourage people to build well, it means that there’s less security issues, right?

Especially we know that the number one problem is mistakes.

That leads to the last question we have here, which is about that, how can I say that cyber criminals, you don’t need to worry about them.

You need to worry about mistakes? That’s a good question. It’s valid, and, um, Trend Micro does a huge amount of research around cyber criminals. I do a whole huge amount of research around cyber criminals.

Uh, my training, by training, and by professional experience. I’m a forensic investigator. This is what I do is take down cyber crimes. Um, but I think mistakes are the number one thing that we deal with in the cloud simply because of the underlying complexity.

I know it’s ironic, and to talk about simplicity, to talk about complexity, but the idea is, um, is that you look at all the major breaches, especially around s3 buckets, those are all m- based on mistake.

There’ve been billions, and billions, and billions of records, and, uh, millions of dollars of damage exposed because of simple mistakes, and that is far more common, uh, than cyber criminals.

And yes, cyber crimes you have [inaudible 00:23:32] worry. You have to worry about them, but everything you’re going to do to fix mistakes, and to put systems in place to stop those mistakes from happening is also going to be for your pr- uh, protection up against cyber criminals, and honestly, if you’re the guy who runs around your organization’s screaming about cyber criminals all the time, you’re far less credible than if you’re saying, “Hey, I want to make sure that we build really, really well, and don’t make mistakes.”

Thank you for taking the time. My name’s Mark Nunnikhoven. I’m the vice president of cloud research at Trend Micro. I’m also an AWS community hero, and I love this stuff. Hit me up on social @marknca. Happy to chat more.

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Automatic Visibility And Immediate Security with Trend Micro + AWS Control Tower

By Trend Micro

Things fail. It happens. A core principle of building well in the AWS Cloud is reliability. Dr. Vogels said it best, “How can you reduce the impact of failure on your customers?” He uses the term “blast radius” to describe this principle.

One of the key methods for reducing blast radius is the AWS account itself. Accounts are free and provide a strong barrier between resources, and thus, failures or other issues. This type of protection and peace of mind helps teams innovate by reducing the risk of running into another team’s work. The challenge is managing all of these accounts in a reasonable manner. You need to strike a balance between providing security guardrails for teams while also ensuring that each team gets access to the resources they need.

AWS Services & Features

There are a number of AWS services and features that help address this need. AWS Organizations, AWS Firewall Manager, IAM Roles, tagging, AWS Resource Access Manager, AWS Control Tower, and more, which all play a role in helping your team manage multiple accounts.

For this post, we’ll look at AWS Control Tower a little closer. AWS Control Tower was made generally available at AWS re:Inforce. The service provides an easy way to setup and govern AWS accounts in your environment. You can configure strong defaults for all new accounts, pre-populate IAM Roles, and more. Essentially, AWS Control Tower makes sure that any new account starts off on the right foot.

For more on the service, check out this excellent talk from the launch.

Partner Integrations

With almost a year under its belt, AWS Control Tower is now expanding to provide partner integrations. Now, in addition to setting up AWS services and features, you can pre-config supported APN solutions as well. Trend Micro is among the first partners to support this integration by providing the ability to add Trend Micro Cloud One™Workload Security and Trend Micro Cloud One™Conformity to your Control Tower account factory. Once configured, any new account that is created via the factory will automatically be configured in your Trend Micro Cloud One account.

Integration Advantage

This integration not only reduces the friction in getting these key security tools setup, it also provides immediate visibility into your environment. Workload Security will now be able show you any Amazon EC2 instances or Amazon ECS hosts within your accounts. You’ll still need to install and apply a policy to the Workload Security agent to protect these instances, but this initial visibility provides a map for your teams, reducing the time to protection. Conformity will start generating information within minutes. This information from Conformity will allow your teams to get a quick handle on their security posture and more with fast and ongoing security and compliance checks.

Integrating this from the beginning of every new account will allow each team to track their progress against a huge set of recommended practices across all five pillars of the Well-Architected Framework.

What’s Next?

One of the biggest challenges in cloud security is integrating it early in the development process. We know that the earlier security is factored into your builds, the better the result. You can’t get much earlier than the initial creation on an account. That’s why this new integration with AWS Control Tower is so exciting. Having security in every account within your organization from day zero provides much needed visibility and a fantastic head start.

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Beyond the Endpoint: Why Organizations are Choosing XDR for Holistic Detection and Response

By Trend Micro

The endpoint has long been a major focal point for attackers targeting enterprise IT environments. Yet increasingly, security bosses are being forced to protect data across the organization, whether it’s in the cloud, on IoT devices, in email, or on-premises servers. Attackers may jump from one environment to the next in multi-stage attacks and even hide between the layers. So, it pays to have holistic visibility, in order to detect and respond more effectively.

This is where XDR solutions offer a convincing alternative to EDR and point solutions. But unfortunately, not all providers are created equal. Trend Micro separates themselves from the pack by providing mature security capabilities across all layers, industry-leading threat intelligence, and an AI-powered analytical approach that produces fewer, higher fidelity alerts.

Under pressure

It’s no secret that IT security teams today are under extreme pressure. They’re faced with an enemy able to tap into a growing range of tools and techniques from the cybercrime underground. Ransomware, social engineering, fileless malware, vulnerability exploits, and drive-by-downloads, are just the tip of the iceberg. There are “several hundred thousand new malicious programs or unwanted apps registered every day,” according to a new Osterman Research report. It argues that, while endpoint protection must be a “key component” in corporate security strategy, “It can only be one strand” —complemented with protection in the cloud, on the network, and elsewhere.

There’s more. Best-of-breed approaches have saddled organizations with too many disparate tools over the years, creating extra cost, complexity, management headaches, and security gaps. This adds to the workload for overwhelmed security teams.

According to Gartner, “Two of the biggest challenges for all security organizations are hiring and retaining technically savvy security operations staff, and building a security operations capability that can confidently configure and maintain a defensive posture as well as provide a rapid detection and response capacity. Mainstream organizations are often overwhelmed by the intersectionality of these two problems.”

XDR appeals to organizations struggling with all of these challenges as well as those unable to gain value from, or who don’t have the resources to invest in, SIEM or SOAR solutions. So what does it involve?

What to look for

As reported by Gartner, all XDR solutions should fundamentally achieve the following:

  • Improve protection, detection, and response
  • Enhance overall productivity of operational security staff
  • Lower total cost of ownership (TCO) to create an effective detection and response capability

However, the analyst urges IT buyers to think carefully before choosing which provider to invest in. That’s because, in some cases, underlying threat intelligence may be underpowered, and vendors have gaps in their product portfolio which could create dangerous IT blind spots. Efficacy will be a key metric. As Gartner says, “You will not only have to answer the question of does it find things, but also is it actually finding things that your existing tooling is not.”

A leader in XDR

This is where Trend Micro XDR excels. It has been designed to go beyond the endpoint, collecting and correlating data from across the organization, including; email, endpoint, servers, cloud workloads, and networks. With this enhanced context, and the power of Trend Micro’s AI algorithms and expert security analytics, the platform is able to identify threats more easily and contain them more effectively.

Forrester recently recognized Trend Micro as a leader in enterprise detection and response, saying of XDR, “Trend Micro has a forward-thinking approach and is an excellent choice for organizations wanting to centralize reporting and detection with XDR but have less capacity for proactively performing threat hunting.”

According to Gartner, fewer than 5% of organizations currently employ XDR. This means there’s a huge need to improve enterprise-wide protection. At a time when corporate resources are being stretched to the limit, Trend Micro XDR offers global organizations an invaluable chance to minimize enterprise risk exposure whilst maximizing the productivity of security teams.

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ISO/SAE 21434: It’s time to put the brakes on connected car cyber-threats

By William "Bill" Malik (CISA VP Infrastructure Strategies)

Connected cars are on the move. Globally their number is set to grow 270% between 2018 and 2022 to reach an estimated 125 million in a couple of years. Increasingly, these vehicles are more akin to high-performance mobile computers with wheels than traditional cars, with features including internet access, app-based remote monitoring and management, advanced driver-assistance, and autonomous driving capabilities. But this also leaves them exposed to sensitive data theft and remote manipulation, which could create serious physical safety issues.

This is where a new standard comes in. ISO/SAE 21434 creates detailed guidance for the automotive industry to help it navigate these challenges and reduce reputational and cyber-risk. A new report from Trend Micro details what industry stakeholders need to, along with our recommendations as cybersecurity experts.

Packed with power

Modern automobiles do far more than transport their occupants from A to B. They are filled with computing power, sensors, infotainment systems and connectivity to help improve the car experience, traffic safety, vehicle maintenance and much more. This all creates complexity, which in turn leads to the emergence of cybersecurity gaps.

For example, there are now more than 100 engine control units (ECUs) in many modern vehicles, packed with software to control everything from the engine and suspension to the brakes. By hijacking the execution of any ECU an attacker could move laterally to any target in the vehicle, potentially allowing them to remotely cause life-threatening accidents.

As our report explains, there are three fundamental issues that make securing connected cars challenging:

Vulnerabilities are difficult to patch due to the highly tiered mature of car supply chains, firmware interoperability and long update times. If updates fail, as they can, a vehicle may be left inoperable.

Protocols used for connectivity between ECUs were not designed with security in mind, allowing attackers to conduct lateral movement.

Aftermarket products and services represent a third area of risk exposure. Akin to unsecured IoT devices in the smart home, they can be abused by attackers to pivot to more sensitive parts of the vehicle.

These vulnerabilities have been highlighted in research dating back years, but as connected cars grow in number, real-world attacks are now starting to emerge. Attack scenarios target everything from user applications to network protocols, to the CAN bus, on-board software and more. In short, there’s much for the bad guys to gain and plenty for carmakers to lose.

Here to help

This is where the new standard comes in. ISO/SAE 21434 “Road vehicles – Cybersecurity engineering” is a typically long and detailed document designed to improve automotive cybersecurity and risk mitigation across the entire supply chain — from vehicle design and engineering through to decommissioning.

As a long-time collaborator with the automotive industry, Trend Micro welcomes the new standard as a way to enhance security-by-design in an area coming under the increasing scrutiny of attackers. In fact, eight out of the world’s top 10 automotive companies have adopted Trend Micro solutions for their enterprise IT.

In order to follow ISO/SAE 21434 and protect connected cars, organizations need comprehensive visibility and control of the entire connected car ecosystem, including: vehicle, network and backend systems. They should then consider developing a Vehicle Security Operations Center (VSOC) to manage notifications coming in from all three areas and to create a bird’s eye view of the entire ecosystem.

Consider the following capabilities in each of these key areas:

Vehicle: Detect in-vehicle vulnerabilities and possible exploitation, including those in critical devices that connected the in-vehicle network to outside networks, for instance, in-vehicle infotainment systems (IVI) and telematic control units (TCUs).

Network: Apply network security policy, monitoring traffic to detect and prevent threats including connections between vehicle and backend cloud and data centers.

Backend: Secure data centers, cloud and containers from known and unknown threats and bugs without compromising performance.

Vehicle SOC: Take quick and effective action by correlating threats detected from the endpoint, network, and backend with individual notifications from each, enabling a bird’s eye view of comprehensive elements.

In uncertain times for the industry, it pays to get ahead of the game, and any prospective changes in local laws that the new ISO/SAE standard may encourage. For carmakers looking to differentiate in a tough market, and do the right thing by protecting their customers, Trend Micro is here to help.

To find out more, read the full report here.

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Survey: Employee Security Training is Essential to Remote Working Success

By Trend Micro

Organisations have been forced to adapt rapidly over the past few months as government lockdowns kept most workers to their homes. For many, the changes they’ve made may even become permanent as more distributed working becomes the norm. This has major implications for cybersecurity. Employees are often described as the weakest link in the corporate security chain, so do they become an even greater liability when working from home?

Unfortunately, a major new study from Trend Micro finds that, although many have become more cyber-aware during lockdown, bad habits persist. CISOs looking to ramp up user awareness training may get a better return on investment if they try to personalize strategies according to specific user personas.

What we found

We polled 13,200 remote workers across 27 countries to compile the Head in the Clouds study. It reveals that 72% feel more conscious of their organisation’s cybersecurity policies since lockdown began, 85% claim they take IT instructions seriously, and 81% agree that cybersecurity is partly their responsibility. Nearly two-thirds (64%) even admit that using non-work apps on a corporate device is a risk.

Yet in spite of these lockdown learnings, many employees are more preoccupied by productivity. Over half (56%) admit using a non-work app on a corporate device, and 66% have uploaded corporate data to it; 39% of respondents “often” or “always” access corporate data from a personal device; and 29% feel they can get away with using a non-work app, as IT-backed solutions are “nonsense.”

This is a recipe for shadow IT and escalating levels of cyber-risk. It also illustrates that current approaches to user awareness training are falling short. In fact, many employees seem to be aware of what best practice looks like, they just choose not to follow it.

Four security personas

This is where the second part of the research comes in. Trend Micro commissioned Dr Linda Kaye, Cyberpsychology Academic at Edge Hill University, to profile four employee personas based on their cybersecurity behaviors: fearful, conscientious, ignorant and daredevil.

In this way: Fearful employees may benefit from training simulation tools like Trend Micro’s Phish Insight, with real-time feedback from security controls and mentoring.

Conscientious staff require very little training but can be used as exemplars of good behavior, and to team up with “buddies” from the other groups.

Ignorant users need gamification techniques and simulation exercises to keep them engaged in training, and may also require additional interventions to truly understand the consequences of risky behavior.

Daredevil employees are perhaps the most challenging because their wrongdoing is the result not of ignorance but a perceived superiority to others. Organisations may need to use award schemes to promote compliance, and, in extreme circumstances, step up data loss prevention and security controls to mitigate their risky behavior.

By understanding that no two employees are the same, security leaders can tailor their approach in a more nuanced way. Splitting staff into four camps should ensure a more personalized approach than the one-size-fits-all training sessions most organisations run today.

Ultimately, remote working only works if there is a high degree of trust between managers and their teams. Once the pandemic recedes and staff are technically allowed back in the office, that trust will have to be re-earned if they are to continue benefiting from a Work From Home environment.

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Connected Car Standards – Thank Goodness!

By William "Bill" Malik (CISA VP Infrastructure Strategies)

Intelligent transportation systems (ITS) require harmonization among manufacturers to have any chance of succeeding in the real world. No large-scale car manufacturer, multimodal shipper, or MaaS (Mobility as a Service) provider will risk investing in a single-vendor solution. Successful ITS require interoperable components, especially for managing cybersecurity issues. See https://www.trendmicro.com/vinfo/us/security/news/intelligent-transportation-systems for a set of reports on ITS cybersecurity.

The good news is we now have a standard for automotive cybersecurity, ISA/SAE 21434. This standard addresses all the major elements of connected car security including V2X, reaching from the internals of ECUs and communications busses including CAN to the broader issues of fleet management and public safety. See https://www.iso.org/standard/70918.html for the current draft version of this standard.

Intelligent transport systems rely on complex, contemporary infrastructure elements, including cloud (for data aggregation, traffic analysis, and system-wide recommendations) and 5G (for inter-component networking and real-time sensing). ITS also rely on aging industrial control systems and components, for vehicle detection, weather reporting, and traffic signaling, some dating back forty years or more. This profound heterogeneity makes the cybersecurity problem unwieldy. Automotive systems generally are the most complex public-facing applications of industrial IoT. Any information security problems with them will erode public trust in this important and ultimately critical infrastructure.

Robert Bosch GmbH began working on the first automotive bus architecture in 1986. Automobiles gained increasing electronic functions (smog controls, seat belt monitors, electric window controls, climate controls, and so on). With each new device, the manufacturers had to install additional point-to-point wiring to monitor and control them. This led to increasing complexity, the possibility for error, extended manufacturing time, more costly diagnosis and repair post-sales, and added weight. See Figure 1 for details. By replacing point-to-point wiring with a simple bus, manufacturers could introduce new features connected with one pair of wires for control. This simplified design, manufacturing, diagnosis, and improved quality and maintainability.

Figure 1: CAN Networks Significantly Reduce Wiring (from National Instruments https://www.ni.com/en-us/innovations/white-papers/06/controller-area-network–can–overview.html)

The bus was simple: all devices saw all traffic and responded to messages relevant to them. Each message has a standard format, with a header describing the message content and priority (the arbitration IDs), the body which contains the relevant data, and a cyclic redundancy check (CRC), which is a code to verify that the message contents are accurate. This CRC uses a mathematical formula to determine if any bits have flipped, and for small numbers of errors can correct the message, like a checksum. This is not as powerful as a digital signature. It has no cryptographic power. Every device on the bus can use the CRC algorithm to create a code for messages it sends and to verify the data integrity of messages it receives. Other than this, there is no data confidentiality, authentication, authorization, data integrity, or non-repudiation in CAN bus messages – or any other automotive bus messages. The devices used in cars are generally quite simple, lightweight, and inexpensive: 8-bit processors with little memory on board. Any device connected to the network is trusted. Figure 2 shows the layout of a CAN bus message.

Figure 2: The Standard CAN Frame Format, from National Instruments

Today’s automobiles have more sophisticated devices on board. The types of messages and the services the offer are becoming more complex. In-vehicle infotainment (IVI) systems provide maps, music, Bluetooth connectivity for smartphones and other devices, in addition to increasingly more elaborate driving assistance and monitoring systems all add more traffic to the bus. But given the diversity of manufacturers and suppliers, impeding security measures over the automotive network. No single vendor could today achieve what Robert Bosch did nearly forty years ago. Yet the need for stronger vehicle security is growing.

The ISO/SAE 21434 standard describes a model for securing the supply chain for automotive technology, for validating the integrity of the development process, detecting vulnerabilities and cybersecurity attacks in automotive systems, and managing the deployment of fixes as needed. It is comprehensive. ISO/SAE 21434 builds on decades of work in information security. By applying that body of knowledge to the automotive case, the standard will move the industry towards a safer and more trustworthy connected car world.

But the standard’s value doesn’t stop with cars and intelligent transport systems. Domains far beyond connected cars will benefit from having a model for securing communications among elements from diverse manufacturers sharing a common bus. The CAN bus and related technologies are used onboard ships, in aircraft, in railroad management, in maritime port systems, and even in controlling prosthetic limbs. The vulnerabilities are common, the complexity of the supply chain is equivalent, and the need for a comprehensive architectural solution is as great. So this standard is a superb achievement and will go far to improve the quality, reliability, and trustworthiness of critical systems globally.

What do you think? Let me know in the comments below or @WilliamMalikTM.

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Perspectives Summary – What You Said

By William "Bill" Malik (CISA VP Infrastructure Strategies)

 

On Thursday, June 25, Trend Micro hosted our Perspectives 2-hour virtual event. As the session progressed, we asked our attendees, composed of +5000 global registrants, two key questions. This blog analyzes those answers.

 

First, what is your current strategy for securing the cloud?

Rely completely on native cloud platform security capabilities (AWS, Azure, Google…) 33%

Add on single-purpose security capabilities (workload protection, container security…) 13%

Add on security platform with multiple security capabilities for reduced complexity 54%

 

This result affirms IDC analyst Frank Dickson’s observation that most cloud customers will benefit from a suite offering a range of security capabilities covering multiple cloud environments. For the 15% to 20% of organizations that rely on one cloud provider, purchasing a security solution from that vendor may provide sufficient coverage. The quest for point products (which may be best-of-breed, as well) introduces additional complexity across multiple cloud platforms, which can obscure problems, confuse cybersecurity analysts and business users, increase costs, and reduce efficiency.  The comprehensive suite strategy compliments most organizations’ hybrid, multi-cloud approach.

Second, and this is multiple choice, how are you enabling secure digital transformation in the cloud today?

 

This shows that cloud users are open to many available solutions for improving cloud security. The adoption pattern follows traditional on-premise security deployment models. The most commonly cited solution, Network Security/Cloud IPS, recognizes that communication with anything in the cloud requires a trustworthy network. This is a very familiar technique, dating back in the on-premise environment to the introduction of firewalls in the early 1990s from vendors like CheckPoint and supported by academic research as found in Cheswick and Bellovin’s Firewalls and Internet Security (Addison Wesley, 1994).

 

The frequency of data exposure due to misconfigured cloud instances surely drives Cloud Security Posture Management, certainly aided by the ease of deployment of tools like Cloud One conformity.

 

The newness of containers in the production environment most likely explains the relatively lower deployment of container security today.

 

The good news is that organizations do not have to deploy and manage a multitude of point products addressing one problem on one environment. The suite approach simplifies today’s reality and positions the organization for tomorrow’s challenges.

 

Looking ahead, future growth in industrial IoT and increasing deployments of 5G-based public and non-public networks will drive further innovations, increasing the breadth of the suite approach to securing hybrid, multi-cloud environments.

 

What do you think? Let me know @WilliamMalikTM.

 

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Principles of a Cloud Migration

By Jason Dablow
cloud

Development and application teams can be the initial entry point of a cloud migration as they start looking at faster ways to accelerate value delivery. One of the main things they might use during this is “Infrastructure as Code,” where they are creating cloud resources for running their applications using lines of code.

In the below video, as part of a NADOG (North American DevOps Group) event, I describe some additional techniques on how your development staff can incorporate the Well Architected Framework and other compliance scanning against their Infrastructure as Code prior to it being launched into your cloud environment.

If this content has sparked additional questions, please feel free to reach out to me on my LinkedIn. Always happy to share my knowledge of working with large customers on their cloud and transformation journeys!

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This Week in Security News: XORDDoS and Kaiji Botnet Malware Variants Target Exposed Docker Servers and Ripple20 Vulnerabilities Could Impact Millions of IoT Devices

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about two recently detected variants of existing Linux botnet malware types targeting exposed Docker servers. Also, read about a group of vulnerabilities dubbed Ripple20 that have the potential to critically impact millions of IoT devices across many different industries.

Read on:

The Fear of Vendor Lock-in Leads to Cloud Failures

Vendor lock-in, the fear that by investing too much with one vendor an organization reduces their options in the future, has been an often-quoted risk since the mid-1990s. Organizations continue to walk a fine line with their technology vendors. Ideally, you select a set of technologies that not only meet your current needs but that align with your future vision as well.

How Do I Select a Mobile Security Solution for My Business?

The percentage of companies admitting to suffering a mobile-related compromise has grown, despite a higher percentage of organizations deciding not to sacrifice the security of mobile devices to meet business targets. To make things worse, the C-suite is the most likely group within an organization to ask for relaxed mobile security protocols – despite also being highly targeted by cyberattacks.

Knowing Your Shared Security Responsibility in Microsoft Azure and Avoiding Misconfigurations

Trend Micro is excited to launch new Trend Micro Cloud One™ – Conformity capabilities that will strengthen protection for Azure resources. As with any launch, there is a lot of new information, so we held a Q&A with one of the founders of Conformity, Mike Rahmati. In the interview, Mike shares how these new capabilities can help customers prevent or easily remediate misconfigurations on Azure.

FBI Warns K-12 Schools of Ransomware Attacks via RDP

The US Federal Bureau of Investigation (FBI) this week sent out a security alert to K-12 schools about the increase in ransomware attacks during the coronavirus pandemic, and especially about ransomware gangs that abuse RDP connections to break into school systems.

XORDDoS, Kaiji Botnet Malware Variants Target Exposed Docker Servers

Trend Micro recently detected variants of two existing Linux botnet malware types targeting exposed Docker servers: XORDDoS malware and Kaiji DDoS malware. Having Docker servers as their target is a new development for both XORDDoS and Kaiji; XORDDoS was known for targeting Linux hosts on cloud systems, while recently discovered Kaiji was first reported to affect internet of things (IoT) devices.

Frost & Sullivan Employee, Customer Data for Sale on Dark Web

A group is hawking records of more than 12,000 Frost & Sullivan employees and customers on a hacker folder. According to Cyble CEO Beenu Arora the breach was a result of a misconfigured backup directory on one of Frost & Sullivan’s public-facing servers. The KelvinSecurity Team said they put the information – which includes names, email addresses, company contacts, login names and hashed passwords – for sale in a hacking forum to sound the “alarm” after Frost & Sullivan didn’t respond to the group’s attempt to alert it to the exposed database.

Millions of IoT Devices Affected by Ripple20 Vulnerabilities

Israeli cybersecurity firm JSOF has released information on a group of vulnerabilities dubbed Ripple20. These vulnerabilities have the potential to critically impact millions of internet of things (IoT) devices across many different industries — crucial machines in the medical, oil and gas, transportation, power, and manufacturing industries can be affected by these bugs.

Nvidia Warns Windows Gamers of Serious Graphics Driver Bugs

Graphics chipmaker Nvidia has fixed two high-severity flaws in its graphics drivers. Attackers can exploit the vulnerabilities to view sensitive data, gain escalated privileges or launch denial-of-service (DoS) attacks in impacted Windows gaming devices.

Cyberattacks from the Frontlines: Incident Response Playbook for Beginners

For enterprises, staying competitive in an ever-changing market involves keeping up with the latest technological trends. However, without the parallel development of security infrastructure and robust response, new technology could be used as a conduit for cyberthreats that result in losses. Organizations should aim to prevent these breaches from happening — but having protocols for reducing a breach lifecycle is an essential and realistic approach for dealing with current threats.

OneClass Unsecured S3 Bucket Exposes PII on More than One Million Students, Instructors

An unsecured database belonging to remote learning platform OneClass has exposed information associated with more than a million students in North America who use the platform to access study guides and educational assistance. Data exposed includes full names, email addresses (some masked), schools and universities attended, phone numbers, school and university course enrollment details and OneClass account details.

Guidelines Related to Security in Smart Factories (Part 1) Concepts and Management Systems of IEC62443

During the past decade, various countries and industries have actively developed guidelines and frameworks for OT security. Recently, multiple guidelines have been integrated, and two standards as global standards are IEC62443 and the NIST CSF, SP800 series, from the viewpoint of security in smart factories. In this series, Trend Miro explains the overviews of IEC62443 and NIST CSF, in order to understand their concepts required for security in smart factories.

 8 Cloud Myths Debunked

Many businesses have misperceptions about cloud environments, providers, and how to secure it all. In order to help separate fact from fiction when it comes to your cloud environment, Trend Micro debunks 8 myths to help you confidently take the next steps in the cloud.

Does your organization have an incident response playbook for potential breaches? Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

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8 Cloud Myths Debunked

By Trend Micro

Many businesses have misperceptions about cloud environments, providers, and how to secure it all. We want to help you separate fact from fiction when it comes to your cloud environment.

This list debunks 8 myths to help you confidently take the next steps in the cloud.

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This Week in Security News: Microsoft June Patch Tuesday Fixes 129 Flaws in Largest-Ever Update and New Android Spyware ActionSpy Revealed via Phishing Attacks from Earth Empusa

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about Microsoft’s largest-ever Patch Tuesday update including 129 CVEs. Also, read about a new Android Spyware dubbed ActionSpy.

Read on:

Microsoft June Patch Tuesday Fixes 129 Flaws in Largest-Ever Update

Microsoft has released patches for 129 vulnerabilities as part of its June Patch Tuesday updates – the highest number of CVEs ever released by Microsoft in a single month. Within the blockbuster security update, 11 critical remote code-execution flaws were patched in Windows, SharePoint server, Windows Shell, VBScript and other products.

#LetsTalkSecurity: Become the Hunter 

This week, Rik Ferguson, vice president of Security Research at Trend Micro, hosted the sixth episode of #LetsTalkSecurity featuring guest Jake Williams, founder of Rendition Infosec. Check out this week’s episode and follow the link to find more information about upcoming episodes and guests.

Not Just Good Security Products, But a Good Partner

This week, Trend Micro announced it has been placed in the Champions quadrant of the Canalys Global Cybersecurity Leadership Matrix, in recognition of major investments and improvements in the channel over the past year. The report particularly highlights Trend Micro’s partner portal improvements that include significant investments in deal registration, sales kits, promotions and training.

12 Biggest Cloud Threats and Vulnerabilities In 2020

Data breaches, cybercrime and targeted attacks in the cloud have driven demand for cloud security products and services in recent years. From misconfigured storage buckets and excess privileges to Infrastructure as Code (IoC) templates and automated attacks, here’s a look at 12 of the biggest cloud threats technical experts are worried about this year. Data breaches, cybercrime and targeted attacks in the cloud have driven demand for cloud security products and services in recent years.

Trend Micro Guardian: Protecting Your Kids On-the-Go

Some smart devices are not limited for use on the home network, for example, your child’s mobile phone or tablet. Keeping your kids safe with on-the-go devices means extending your security policies beyond the home. Trend Micro Home Network Security makes it easy with its free app, Trend Micro Guardian. Guardian integrates with HNS’s parental control rules via Mobile Device Management technology to extend the rules you’ve applied on your home network to your children’s Wi-Fi/mobile connections outside the home.

Microsoft Discovers Cryptomining Gang Hijacking ML-Focused Kubernetes Clusters

Microsoft published a report detailing a never-before-seen series of attacks against Kubeflow, a toolkit for running machine learning (ML) operations on top of Kubernetes clusters. The attacks have been going on since April, and Microsoft says its end-goal has been to install a cryptocurrency miner on Kubernetes clusters running Kubeflow instances exposed to the internet.

New Tekya Ad Fraud Found on Google Play

In late March, researchers from CheckPoint found the Tekya malware family being used to carry out ad fraud on Google Play. These apps have since been removed from the store, but Trend Micro recently found a variant of this family that had made its way onto Google Play via five malicious apps, although these have also been removed.

Fake COVID-19 Contact-Tracing Apps Infect Android Phones

Security researchers have identified 12 malicious Android applications, disguised to appear as official government COVID-19 contact-tracing apps, distributing malware onto devices. The Anomali Threat Research team found multiple applications containing a range of malware families, primarily banking Trojan Anubis and SpyNote, an Android Trojan with the goal of collecting and monitoring data on infected devices.

Tracking, Detecting, and Thwarting PowerShell-based Malware and Attacks

While traditional malware and attacks rely on crafted executables to function, fileless malware reside in memory to evade traditional scanners and detection methods. PowerShell, a legitimate management tool used by system administrators, provides an ideal cover for threat actors as they craft payloads heavily dependent on its deep Windows integration. Trend Micro has published multiple reports on this phenomenon, which has been further validated by telemetry data.

Updated Analysis on Nefilim Ransomware’s Behavior

Shortly after the discovery of Nefilim in March 2019, Trend Micro released its analysis of the ransomware and its behavior. Through recent investigations of cases observed in several companies, Trend Micro has amassed more information on how this ransomware operates. Some notable updates added the use of other tools such as Mimikatz, AdFind, CobaltStrike, and MegaSync, and the description of events that occur within the attack phases weeks or even months before the ransomware is deployed.

New Android Spyware ActionSpy Revealed via Phishing Attacks from Earth Empusa

While tracking Earth Empura, also known as POISON CARP/Evil Eye, Trend Micro identified an undocumented Android spyware it has dubbed ActionSpy. During the first quarter of 2020, Trend Micro observed Earth Empusa’s activity targeting users in Tibet and Turkey before they extended their scope to include Taiwan.

Babylon Health Admits ‘Software Error’ Led to Patient Data Breach

Babylon Health, a UK AI chatbot and telehealth startup which has been valued in excess of $2BN, has suffered an embarrassing data breach after a user of the app found he was able to access other patients’ video consultations. The company confirmed the breach yesterday, telling the BBC that a “software error” related to a feature that lets users switch from audio to video-based consultations part way through a call had caused a “small number” of UK users to be able to see others sessions.

Forward-Looking Security Analysis of Smart Factories Part 3: Trojanized Libraries for Industrial IoT Devices

In part three of this five-part blog series, Trend Micro looks at the security risks of promoting smart factories by examining overlooked attack vectors, feasible attack scenarios, and recommended defense strategies. This blog describes the usage of Industrial IoT (IIoT) devices and overlooked security risks in software supply chains.

Surprised by the new Android spyware ActionSpy that was revealed via phishing attacks from Earth Empusa? Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

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Trend Micro Guardian: Protecting Your Kids On-the-Go

By Trend Micro

Some smart devices are not limited to use on the home network; for instance, your child’s mobile phone or tablet. Keeping your kids safe on these on-the-go devices means extending your security policies beyond the home. Trend Micro Home Network Security (HNS) makes it easy with its complementary app, Trend Micro Guardian. Guardian integrates with HNS’s parental control rules via Mobile Device Management technology to extend the rules you’ve applied on your home network to your children’s Wi-Fi / mobile connections outside the home.

Guardian enables the following security and parental controls:

  • Web Threat Protection, which blocks dangerous websites and phishing attempts.
  • Website Filtering, which is equipped with category-based filters to protect your children from inappropriate websites.
  • You can Pause the Internet and YouTube, to turn off your child’s distractions when they need to focus on other tasks.
  • You can enforce Time Limits, to restrict when your child is online within a range of time. (This feature will be available around mid-year).

Setup and Configuration

In order to benefit from these features, the Trend Micro Guardian app must be installed on your child’s device and paired with your Home Network Security Station. It’s recommended that you install Trend Micro Guardian on the child’s device before setting up Parental Controls. However, you may also save the Trend Micro Guardian setup process until after you’ve defined the Parental Control rules for your child. Either way, Guardian accepts the rules defined and applies them to the child’s device whenever they go beyond your home and hook up to public WiFi or their mobile network.

For the Trend Micro Guardian app setup and installation process, you may refer to FAQ: Trend Micro Guardian or the Home Network Security Product Guide for more details.

A Few Additional Notes

  • Trend Micro Guardian is only available for Android and iOS platforms. For protecting your child while using a laptop outside the home network, use Trend Micro Security for your Windows machine (Antivirus+, Internet Security or Maximum Security) or Mac (Antivirus for Mac), available directly from the Trend Micro website. Trend Micro Antivirus One is also available for Macs directly from the Apple App Store.
  • Once installed, you need to protect Trend Micro Guardian from being uninstalled. Uninstall Protection is set up somewhat differently on an iOS or Android device. Again refer to the Home Network Security Product Guide for more details.
  • Trend Micro Guardian can be installed on your mobile device with any existing Trend Micro Mobile Security app for Android or iOS. When Trend Micro Mobile Security and Trend Micro Guardian are used together, Guardian takes precedence over Mobile Security in detecting and blocking dangerous or malicious sites. It does not affect the other features in Trend Micro Mobile Security, which are still fully enabled on your mobile device.

Protection that Goes Where Your Child Goes

Internet safety for kids is a must, whether they’re online at home, or out and about, away from home. Trend Micro Guardian ensures the child will observe and practice the same security rules at home and on the internet anywhere in the world.

For more information on Trend Micro Home Network Security with Guardian, go to Home Network Security.

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Message from Eva Chen – as a human being, not a CEO: We need to speak out and act against racism

By Eva Chen

 

I would like to express my outrage over the brutal killings of George Floyd, Breonna Taylor, and Ahmaud Arbery – not as the CEO of an international company, but as a human being and a citizen of the world. It makes me very sad, but also intensely frustrated and angry to realize how little is being done around the world to overcome the blatant inequality and racism that persists. The disturbing, high-profile incidents in the past weeks expose in a cruel way how we live in a world where fear, uncertainty and discrimination continue to impact the lives of black people every single day.

 

As a global society, we should do better; we must be better.

 

At Trend Micro, we are committed to providing a safe, empathetic and respectful environment where we reject any form of racism and discrimination, with zero tolerance. We not only welcome diversity in our Trend Micro family, we encourage it, whether it is diversity of race, ethnicity, nationality, gender, gender identification, sexual orientation, physical ability, age, religion, veteran status, socio-economic status, and political philosophy. We believe it is our different backgrounds and experiences that make us who we are and make us as strong as we are. But we continue to listen and learn how to create equality for all.

 

I feel very strongly that we all need to do something and become a force for change. We have an obligation towards our communities and our children to leave this world in a better place. I am fortunate as a CEO to be able to use my voice to speak out against any kind of discrimination, against racism in any form. I ask that we all seek to expand our perspectives and heighten our awareness of others. We must open our eyes to the current and ugly truth and challenge any subconscious tendencies to avoid this painful reality of inequality!

 

Today I am inspired to lift up the voice of a young Trend Micro employee who posted on our internal web site:

 

“Progress is a process. Unity is part of the process.
Unity drives awareness…
Awareness drives education…
Education drives action…
Action drives change…
Let’s make a change!”

 

These are very difficult times for us as individuals, communities, and as nations. I ask you to join me in doing our part to fight racism – we can’t afford any more lives to be lost, any more children growing up deprived of their opportunities. First and foremost, we need to listen to our black communities and educate ourselves. And we must acknowledge that this is an ongoing issue – and continue to fight inequality every day, even when the protests don’t make headlines anymore. We can all make a difference. Speak out against injustice, listen to the stories of inequality, act, vote and make a change.

 

Together, we can make this world a better place!

Eva Chen

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Principles of a Cloud Migration – Security W5H – The HOW

By Jason Dablow
cloud

“How about… ya!”

Security needs to be treated much like DevOps in evolving organizations; everyone in the company has a responsibility to make sure it is implemented. It is not just a part of operations, but a cultural shift in doing things right the first time – Security by default. Here are a few pointers to get you started:

1. Security should be a focus from the top on down

Executives should be thinking about security as a part of the cloud migration project, and not just as a step of the implementation. Security should be top of mind in planning, building, developing, and deploying applications as part of your cloud migration. This is why the Well Architected Framework has an entire pillar dedicated to security. Use it as a framework to plan and integrate security at each and every phase of your migration.

2. A cloud security policy should be created and/or integrated into existing policy

Start with what you know: least privilege permission models, cloud native network security designs, etc. This will help you start creating a framework for these new cloud resources that will be in use in the future. Your cloud provider and security vendors, like Trend Micro, can help you with these discussions in terms of planning a thorough policy based on the initial migration services that will be used. Remember from my other articles, a migration does not just stop when the workload has been moved. You need to continue to invest in your operation teams and processes as you move to the next phase of cloud native application delivery.

3. Trend Micro’s Cloud One can check off a lot of boxes!

Using a collection of security services, like Trend Micro’s Cloud One, can be a huge relief when it comes to implementing runtime security controls to your new cloud migration project. Workload Security is already protecting thousands of customers and billions of workload hours within AWS with security controls like host-based Intrusion Prevention and Anti-Malware, along with compliance controls like Integrity Monitoring and Application Control. Meanwhile, Network Security can handle all your traffic inspection needs by integrating directly with your cloud network infrastructure, a huge advantage in performance and design over Layer 4 virtual appliances requiring constant changes to route tables and money wasted on infrastructure. As you migrate your workloads, continuously check your posture against the Well Architected Framework using Conformity. You now have your new infrastructure secure and agile, allowing your teams to take full advantage of the newly migrated workloads and begin building the next iteration of your cloud native application design.

This is part of a multi-part blog series on things to keep in mind during a cloud migration project.  You can start at the beginning which was kicked off with a webinar here: https://resources.trendmicro.com/Cloud-One-Webinar-Series-Secure-Cloud-Migration.html. To have a more personalized conversation, please add me to LinkedIn!

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Is Cloud Computing Any Safer From Malicious Hackers?

By Rob Maynard

Cloud computing has revolutionized the IT world, making it easier for companies to deploy infrastructure and applications and deliver their services to the public. The idea of not spending millions of dollars on equipment and facilities to host an on-premises data center is a very attractive prospect to many. And certainly, moving resources to the cloud just has to be safer, right? The cloud provider is going to keep our data and applications safe for sure. Hackers won’t stand a chance. Wrong. More commonly than anyone should, I often hear this delusion from many customers. The truth of the matter is, without proper configuration and the right skillsets administering the cloud presence, as well as practicing common-sense security practices, cloud services are just (if not more) vulnerable.

The Shared Responsibility Model

Before going any further, we need to discuss the shared responsibility model of the cloud service provider and user.

When planning your migration to the cloud, one needs to be aware of which responsibilities belong to which entity. As the chart above shows, the cloud service provider is responsible for the cloud infrastructure security and physical security of such. By contrast, the customer is responsible for their own data, the security of their workloads (all the way to the OS layer), as well as the internal network within the companies VPC’s.

One more pretty important aspect that remains in the hands of the customer is access control. Who has access to what resources? This is really no different than it’s been in the past, exception being the physical security of the data center is handled by the CSP as opposed to the on-prem security, but the company (specifically IT and IT security) are responsible for locking down those resources efficiently.

Many times, this shared responsibility model is overlooked, and poor assumptions are made the security of a company’s resources. Chaos ensues, and probably a firing or two.

So now that we have established the shared responsibility model and that the customer is responsible for their own resource and data security, let’s take a look at some of the more common security issues that can affect the cloud.

Amazon S3 

Amazon S3 is a truly great service from Amazon Web Services. Being able to store data, host static sites or create storage for applications are widely used use cases for this service. S3 buckets are also a prime target for malicious actors, since many times they end up misconfigured.

One such instance occurred in 2017 when Booz Allen Hamilton, a defense contractor for the United States, was pillaged of battlefield imagery as well as administrator credentials to sensitive systems.

Yet another instance occurred in 2017, when due to an insecure Amazon S3 bucket, the records of 198 million American voters were exposed. Chances are if you’re reading this, there’s a good chance this breach got you.

A more recent breach of an Amazon S3 bucket (and I use the word “breach,” however most of these instances were a result of poor configuration and public exposure, not a hacker breaking in using sophisticated techniques) had to do with the cloud storage provider “Data Deposit Box.” Utilizing Amazon S3 buckets for storage, a configuration issue caused the leak of more than 270,000 personal files as well as personal identifiable information (PII) of its users.

One last thing to touch on the subject of cloud file storage has to do with how many organizations are using Amazon S3 to store uploaded data from customers as a place to send for processing by other parts of the application. The problem here is how do we know if what’s being uploaded is malicious or not? This question comes up more and more as I speak to more customers and peers in the IT world.

API

APIs are great. They allow you to interact with programs and services in a programmatic and automated way. When it comes to the cloud, APIs allow administrators to interact with services, an in fact, they are really a cornerstone of all cloud services, as it allows the different services to communicate. As with anything in this world, this also opens a world of danger.

Let’s start with the API gateway, a common construct in the cloud to allow communication to backend applications. The API gateway itself is a target, because it can allow a hacker to manipulate the gateway, and allow unwanted traffic through. API gateways were designed to be integrated into applications. They were not designed for security. This means untrusted connections can come into said gateway and perhaps retrieve data that individual shouldn’t see. Likewise, the API requests to the gateway can come with malicious payloads.

Another attack that can affect your API gateway and likewise the application behind it, is a DDOS attack. The common answer to defend against this is Web Application Firewall (WAF). The problem is WAFs struggle to deal with low, slow DDOS attacks, because the steady stream of requests looks like normal traffic. A really great way to deter DDOS attacks at the API gateway however is to limit the number of requests for each method.

A great way to prevent API attacks lies in the configuration. Denying anonymous access is huge. Likewise, changing tokens, passwords and keys limit the chance effective credentials can be used. Lastly, disabling any type of clear-text authentication. Furthermore, enforcing SSL/TLS encryption and implementing multifactor authentication are great deterrents.

Compute

No cloud service would be complete without compute resources. This is when an organization builds out virtual machines to host applications and services. This also introduces yet another attack surface, and once again, this is not protected by the cloud service provider. This is purely the customers responsibility.

Many times, in discussing my customers’ migration from an on-premises datacenter to the cloud, one of the common methods is the “lift-and-shift” approach. This means customers take the virtual machines they have running in their datacenter and simply migrating those machines to the cloud. Now, the question is, what kind of security assessment was done on those virtual machines prior to migrating? Were those machines patched? Were discovered security flaws fixed? In my personal experience the answer is no. Therefore, these organizations are simply taking their problems from one location to the next. The security holes still exist and could potentially be exploited, especially if the server is public facing or network policies are improperly applied. For this type of process, I think a better way to look at this is “correct-and-lift-and-shift”.

Now once organizations have already established their cloud presence, they will eventually need to deploy new resources, and this can mean developing or building upon a machine image. The most important thing to remember here is that these are computers. They are still vulnerable to malware, so regardless of being in the cloud or not, the same security controls are required including things like anti-malware, host IPS, integrity monitoring and application control just to name a few.

Networking

Cloud services make it incredibly easy to deploy networks and divide them into subnets and even allow cross network communication. They also give you the ability to lock down the types of traffic that are allowed to traverse those networks to reach resources. This is where security groups come in. These security groups are configured by people, so there’s always that chance that a port is open that shouldn’t be, opening a potential vulnerability. It’s incredibly important from this perspective to really have a grasp on what a compute resource is talking to and why, so the proper security measures can be applied.

So is the cloud really safe from hackers? No safer than anything else unless organizations make sure they’re taking security in their hands and understand where their responsibility begins, and the cloud service provider’s ends. The arms war between hackers and security professionals is still the same as it ever was, the battleground just changed.

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How the Cybercriminal Underground Has Changed in 5 Years

By Trend Micro
Cybercriminal Underground

The cybercrime economy is one of the runaway success stories of the 21st century — at least, for those who participate in it. Estimates claim it could be worth over $1 trillion annually, more than the GDP of many countries. Part of that success is due to its ability to evolve and shift as the threat landscape changes. Trend Micro has been profiling the underground cybercrime community for many years. Over the past five years, we’ve seen a major shift to new platforms, communications channels, products and services, as trust on the dark web erodes and new market demands emerge.

We also expect the current pandemic to create yet another evolution, as cyber-criminals look to take advantage of new ways of working and systemic vulnerabilities.

Shifts in the underground

Our latest report, Shifts in the Cybercriminal Underground Markets, charts the fascinating progress of cybercrime over the past five years, through detailed analysis of forums, marketplaces and dark web sites around the world. It notes that in many product areas, the cost of items has dropped as they become commoditised: so where in 2015 you expected to pay $1000 per months for crypting services, today they may be as little as $20.

In other areas, such as IoT botnets, cyber-propaganda and stolen gaming account credentials, prices are high as new products spark surging demand. Fortnite logins can sell for around $1,000 on average, for example.

The good news is that law enforcement action appears to be working. Trend Micro has long partnered with Interpol, Europol, national crime agencies and local police to provide assistance in investigations. So it’s good to see that these efforts are having an impact. Many dark web forums and marketplaces have been infiltrated and taken down over the past five years, and our researchers note that current users complain of DDoS-ing and log-in issues.

Cybercriminals have been forced to take extreme measures as trust erodes among the community, for example, by using gaming communications service Discord to arrange trades, and e-commerce platform Shoppy.gg to sell items. A new site called DarkNet Trust was even created to tackle this specific challenge: it aims to verify cybercrime vendors’ reputations by analysing their usernames and PGP fingerprints.

What does the future hold?

However, things rarely stay still on the cybercrime underground. Going forward, we expect to see a range of new tools and techniques flood dark web stores and forums. AI will be at the centre of these efforts. Just as it’s being used by Trend Micro and other companies to root out fraud, sophisticated malware and phishing, it could be deployed in bots designed to predict roll patterns on gambling sites. It could also be used in deepfake services developed to help buyers bypass photo ID systems, or launch sextortion campaigns against individuals.

Some emerging trends are less hi-tech but no less damaging. Log-ins for wearable devices could be stolen and used to request replacements under warranty, defrauding the customer and costing the manufacturers dear. In fact, access to devices, systems and accounts is so common today that we’re already seeing it spun out in “as-a-service” cybercrime offerings. Prices for access to Fortune 500 companies can hit as much as $10,000.

Post-pandemic threats

Then there’s COVID-19. We’re already seeing fraudsters targeted government stimulus money with fake applications, sometimes using phished information from legitimate businesses. And healthcare organisations are being targeted with ransomware as they battle to save lives.

Even as the pandemic recedes, remote working practices are likely to stay in many organisations. What does this mean for cybercrime? It means more targeting of VPN vulnerabilities with malware and DDoS services. And it means more opportunities to compromise corporate networks via connected home devices. Think of it like a kind of Reverse BYOD scenario – instead of bringing devices into work to connect, the corporate network is now merged with home networks.

Tackling such challenges will demand a multi-layered strategy predicated around that familiar trio: people, process and technology. It will require more training, better security for home workers, improved patch management and password security, and much more besides. But most of all it will demand continued insight into global cybercriminals and the platforms they inhabit, to anticipate where the next threats are coming from.

Fortunately, this is where Trend Micro’s expert team of researchers come in. We won’t let them out of our sight.

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From Bugs to Zoombombing: How to Stay Safe in Online Meetings

By Trend Micro

The COVID-19 pandemic, along with social distancing, has done many things to alter our lives. But in one respect it has merely accelerated a process begun many years ago. We were all spending more and more time online before the virus struck. But now, forced to work, study and socialize at home, the online digital world has become absolutely essential to our communications — and video conferencing apps have become our “face-to-face” window on the world.

The problem is that as users flock to these services, the bad guys are also lying in wait — to disrupt or eavesdrop on our chats, spread malware, and steal our data. Zoom’s problems have perhaps been the most widely publicized, because of its quickly rising popularity, but it’s not the only platform whose users have been potentially at risk. Cisco’s WebEx and Microsoft Teams have also had issues; while other platforms, such as Houseparty, are intrinsically less secure (almost by design for their target audience, as the name suggests).

Let’s take a look at some of the key threats out there and how you can stay safe while video conferencing.

What are the risks?

Depending on the platform (designed for work or play) and the use case (business or personal), there are various opportunities for the online attacker to join and disrupt or eavesdrop on video conferencing calls. The latter is especially dangerous if you’re discussing sensitive business information.

Malicious hackers may also look to deliver malware via chats or shared files to take control of your computer, or to steal your passwords and sensitive personal and financial information. In a business context, they could even try to hijack your video conferencing account to impersonate you, in a bid to steal info from or defraud your colleagues or company.

The bad guys may also be able to take advantage of the fact that your home PCs and devices are less well-secured than those at work or school—and that you may be more distracted at home and less alert to potential threats.

To accomplish their goals, malicious hackers can leverage various techniques at their disposal. These can include:

  • Exploiting vulnerabilities in the video conferencing software, particularly when it hasn’t been updated to fend off the latest threats
  • Stealing your log-ins/meeting ID via malware or phishing attacks; or by obtaining a meeting ID or password shared on social media
  • Hiding malware in legitimate-looking video apps, links and files
  • Theft of sensitive data from meeting recordings stored locally or in the cloud.

Zooming in on trouble

Zoom has in many ways become the victim of its own success. With daily meeting participants soaring from 10 million in December last year to 200 million by March 2020, all eyes have been focused on the platform. Unfortunately, that also includes hackers. Zoom has been hit by a number of security and privacy issues over the past several months, which include “Zoombombing” (meetings disrupted by uninvited guests), misleading encryption claims, a waiting room vulnerability, credential theft and data collection leaks, and fake Zoom installers. To be fair to Zoom, it has responded quickly to these issues, realigning its development priorities to fix the security and privacy issues discovered by its intensive use.

And Zoom isn’t alone. Earlier in the year, Cisco Systems had its own problem with WebEx, its widely-used enterprise video conferencing system, when it discovered a flaw in the platform that could allow a remote, unauthenticated attacker to enter a password-protected video conferencing meeting. All an attacker needed was the meeting ID and a WebEx mobile app for iOS or Android, and they could have barged in on a meeting, no authentication necessary. Cisco quickly moved to fix the high-severity vulnerability, but other flaws (also now fixed) have cropped up in WebEx’s history, including one that could enable a remote attacker to send a forged request to the system’s server.

More recently, Microsoft Teams joined the ranks of leading business videoconferencing platforms with potentially deadly vulnerabilities. On April 27 it surfaced that for at least three weeks (from the end of February till the middle of March), a malicious GIF could have stolen user data from Teams accounts, possibly across an entire company. The vulnerability was patched on April 20—but it’s a reminder to potential video conferencing users that even leading systems such as Zoom, WebEx, and Teams aren’t fool-proof and require periodic vulnerability and security fixes to keep them safe and secure. This is compounded during the COVID-19 pandemic when workers are working from home and connecting to their company’s network and systems via possibly unsecure home networks and devices.

Video conferencing alternatives

So how do you choose the best, most secure, video conferencing software for your work-at-home needs? There are many solutions on the market today. In fact, the choice can be dizzying. Some simply enable video or audio meetings/calls, while others also allow for sharing and saving of documents and notes. Some are only appropriate for one-on-one connections or small groups, while others can scale to thousands.

In short, you’ll need to choose the video conferencing solution most appropriate to your needs, while checking if it meets a minimum set of security standards for working at home. This set of criteria should include end-to-end encryption, automatic and frequent security updates, the use of auto-generated meeting IDs and strong access controls, a program for managing vulnerabilities, and last but not least, good privacy practices by the company.

Some video conferencing options alongside Zoom, WebEx, and Teams include:

  • Signal which is end-to-end encrypted and highly secure, but only supports one-to-one calls.
  • FaceTime, Apple’s video chat tool, is easy-to-use and end-to-end encrypted, but is only available to Mac and iOS users.
  • Jitsi Meet is a free, open-source video conferencing app that works on Android, iOS, and desktop devices, with no limit on participants beyond your bandwidth.
  • Skype Meet Now is Microsoft’s free, popular conferencing tool for up to 50 users that can be used without an account, (in contrast to Teams, which is a paid, more business-focused platform for Office 365 users).
  • Google Duo is a free option for video calls only, while the firm’s Hangouts platform can also be used for messaging. Hangouts Meet is a more business-focused paid version.
  • Doxy.me is a well-known telemedicine platform used by doctors and therapists that works through your browser—so it’s up to you to keep your browser updated and to ensure the appropriate security and privacy settings are in place. Secure medical consultation with your healthcare provider is of particular concern during the shelter- and work-from-home quarantine.

How do I stay safe?

Whatever video conferencing platform you use, it’s important to bear in mind that cyber-criminals will always be looking to take advantage of any security gaps they can find — in the tool itself or your use of it. So how do you secure your video conferencing apps? Some tips listed here are Zoom-specific, but consider their equivalents in other platforms as general best-practice tips. Depending on the use case, you might choose to not enable some of the options here.

  • Check for end-to-end encryption before getting onboard with the app. This includes encryption for data at rest.
  • Ensure that you generate one-off meeting IDs and passwords automatically for recurring meetings (Zoom).
  • Don’t share any meeting IDs online.
  • Use the “waiting room” feature in Zoom (now fixed), so the host can only allow attendees from a pre-assigned list.
  • Lock the meeting once it’s started to stop anyone new from joining.
  • Allow the host to put attendees on hold, temporarily removing them from a meeting if necessary.
  • Play a sound when someone enters or leaves the room.
  • Set screen-sharing to “host only” to stop uninvited guests from sharing disruptive content.
  • Disable “file transfers” to block possible malware.
  • Keep your systems patched and up-to-date so there are no bugs that hackers can target.
  • Only download conferencing apps from official iOS/Android stores and manufacturer websites.
  • Never click on links or open attachments in unsolicited mail.
  • Check the settings in your video conferencing account. Switch off camera access if you don’t want to appear on-screen.
  • Use a password manager for video conferencing app log-ins.
  • Enhance passwords with two-factor authentication (2FA) or Single-Sign-On (SSO) to protect access, if available.
  • Install anti-malware software from a reputable vendor on all devices and PCs. And implement a network security solution if you can.

How Trend Micro can help

Fortunately, Trend Micro has a range of capabilities that can support your efforts to stay safe while using video conferencing services.

Trend Micro Home Network Security (HNS) protects every device in your home connected to the internet. That means it will protect you from malicious links and attachments in phishing emails spoofed to appear as if sent from video conferencing firms, as well as from those sent by hackers that may have covertly entered a meeting. Its Vulnerability Check can identify any vulnerabilities in your home devices and PCs, including work laptops, and its Remote Access Protection can reduce the risk of tech support scams and unwanted remote connections to your device. Finally, it allows parents to control their kids’ usage of video conferencing applications, to limit their exposure.

Trend Micro Security also offers protection against email, file, and web threats on your devices. Note too, that Password Manager is automatically installed with Maximum Security to help users create unique, strong passwords for each application/website they use, including video conferencing sites.

Finally, Trend Micro WiFi Protection (multi-platform) / VPN Proxy One (Mac and iOS) offer VPN connections from your home to the internet, creating secure encrypted tunnels for traffic to flow down. The VPN apps work on both Wi-Fi and Ethernet connections. This could be useful for users concerned their video conferencing app isn’t end-to-end encrypted, or for those wishing to protect their identity and personal information when interacting on these apps.

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Securing Smart Manufacturing

By William "Bill" Malik (CISA VP Infrastructure Strategies)
IIoT

“Alexa, turn on the TV.”

”Get it yourself.”

This nightmare scenario could play out millions of times unless people take steps to protect their IoT devices. The situation is even worse in industrial settings. Smart manufacturing, that is, Industry 4.0, relies on tight integration between IT systems and OT systems. Enterprise resource planning (ERP) software has evolved into supply chain management (SCM) systems, reaching across organizational and national boundaries to gather all forms of inputs, parting out subcomponent development and production, and delivering finished products, payments, and capabilities across a global canvas.

Each of these synergies fulfills a rational business goal: optimize scarce resources across diverse sources; minimize manufacturing, shipping, and warehousing expense across regions; preserve continuity of operations by diversifying suppliers; maximize sales among multiple delivery channels. The supply chain includes not only raw materials for manufacturing, but also third party suppliers of components, outsourced staff for non-core business functions, open source software to optimize development costs, and subcontractors to fulfill specialized design, assembly, testing, and distribution tasks. Each element of the supply chain is an attack surface.

Software development has long been a team effort. Not since the 1970s have companies sought out the exceptional talented solo developer whose code was exquisite, flawless, ineffable, undocumented, and impossible to maintain.  Now designs must be clear across the team, and testing requires close collaboration between architects, designers, developers, and production. Teams identify business requirements, then compose a solution from components sourced from publically shared libraries. These libraries may contain further dependencies on yet other third-party code of unknown provenance. Simplified testing relies on the quality of the shared libraries, but shared library routines may have latent (or intentionally hidden) defects that do not come to life until in a vulnerable production environment. Who tests GitHub? The scope of these vulnerabilities is daunting. Trend Micro just published a report, “Attacks on Smart Manufacturing Systems: A Forward-looking Security Analysis,” that surveys the Industry 4.0 attack surface.

Within the manufacturing operation, the blending of IT and OT exposes additional attack surfaces. Industrial robots provide a clear example. Industrial robots are tireless, precision machines programmed to perform exacting tasks rapidly and flawlessly. What did industry do before robots? Factories either relied on hand-built products or on non-programmable machines that had to be retooled for any change in product specifications. Hand-built technology required highly skilled machinists, who are expensive and require time to deliver. See Figure 1 for an example.

Figure 1: The cost of precision

Non-programmable robots require factory down time for retooling, a process that can take weeks. Before programmable industrial robots, automobile factories would deliver a single body style across multiple years of production. Programmable robots can produce different configurations of materials with no down time. They are used everywhere in manufacturing, warehousing, distribution centers, farming, mining, and soon guiding delivery vehicles. The supply chain is automated.

However, the supply chain is not secure. The protocols industrial robots depend on assumed the environment was isolated. One controller would govern the machines in one location. Since the connection between the controller and the managed robots was hard-wired, there was no need for operator identification or message verification. My controller would never see your robot. My controller would only connect to my robot, so the messages they exchanged needed no authentication. Each device assumed all its connections were externally verified. Even the safety systems assumed the network was untainted and trustworthy. No protocols included any security or privacy controls. Then Industry 4.0 adopted wireless communications.

The move, which saved the cost of laying cable in the factory, opened those networks to eavesdropping and attacks. Every possible attack against industrial robots is happening now. Bad guys are forging commands, altering specifications, changing or suppressing error alerts, modifying output statistics, and rewriting logs. The consequences can be vast yet nearly undetectable. In the current report on Rogue Robots, our Forward-looking Threat Research team, collaborating with the Politecnico di Milano (POLIMI), analyzes the range of specific attacks today’s robots face, and the potential consequences those attacks may have.

Owners and operators of programmable robots should heed the warnings of this research, and consider various suggested remedies. Forewarned is forearmed.

The Rogue Robots research is here: https://www.trendmicro.com/vinfo/us/security/news/internet-of-things/rogue-robots-testing-industrial-robot-security.

The new report, Attacks on Smart Manufacturing Systems: A Forward-looking Security Analysis, is here: https://www.trendmicro.com/vinfo/us/security/threat-intelligence-center/internet-of-things/threats-and-consequences-a-security-analysis-of-smart-manufacturing-systems.

What do you think? Let me know in the comments below, or @WilliamMalikTM.

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Principles of a Cloud Migration – Security W5H – The WHERE

By Jason Dablow
cloud

“Wherever I go, there I am” -Security

I recently had a discussion with a large organization that had a few workloads in multiple clouds while assembling a cloud security focused team to build out their security policy moving forward.  It’s one of my favorite conversations to have since I’m not just talking about Trend Micro solutions and how they can help organizations be successful, but more so on how a business approaches the creation of their security policy to achieve a successful center of operational excellence.  While I will talk more about the COE (center of operational excellence) in a future blog series, I want to dive into the core of the discussion – where do we add security in the cloud?

We started discussing how to secure these new cloud native services like hosted services, serverless, container infrastructures, etc., and how to add these security strategies into their ever-evolving security policy.

Quick note: If your cloud security policy is not ever-evolving, it’s out of date. More on that later.

A colleague and friend of mine, Bryan Webster, presented a concept that traditional security models have been always been about three things: Best Practice Configuration for Access and Provisioning, Walls that Block Things, and Agents that Inspect Things.  We have relied heavily on these principles since the first computer was connected to another. I present to you this handy graphic he presented to illustrate the last two points.

But as we move to secure cloud native services, some of these are outside our walls, and some don’t allow the ability to install an agent.  So WHERE does security go now?

Actually, it’s not all that different – just how it’s deployed and implemented. Start by removing the thinking that security controls are tied to specific implementations. You don’t need an intrusion prevention wall that’s a hardware appliance much like you don’t need an agent installed to do anti-malware. There will also be a big focus on your configuration, permissions, and other best practices.  Use security benchmarks like the AWS Well-Architected, CIS, and SANS to help build an adaptable security policy that can meet the needs of the business moving forward.  You might also want to consider consolidating technologies into a cloud-centric service platform like Trend Micro Cloud One, which enables builders to protect their assets regardless of what’s being built.  Need IPS for your serverless functions or containers?  Try Cloud One Application Security!  Do you want to push security further left into your development pipeline? Take a look at Trend Micro Container Security for Pre-Runtime Container Scanning or Cloud One Conformity for helping developers scan your Infrastructure as Code.

Keep in mind – wherever you implement security, there it is. Make sure that it’s in a place to achieve the goals of your security policy using a combination of people, process, and products, all working together to make your business successful!

This is part of a multi-part blog series on things to keep in mind during a cloud migration project.  You can start at the beginning which was kicked off with a webinar here: https://resources.trendmicro.com/Cloud-One-Webinar-Series-Secure-Cloud-Migration.html.

Also, feel free to give me a follow on LinkedIn for additional security content to use throughout your cloud journey!

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Teaming up with INTERPOL to combat COVID-19 threats

By Trend Micro

If the past couple of months have taught us anything, it’s that partnerships matter in times of crisis. We’re better, stronger and more resilient when we work together. Specifically, public-private partnerships matter in cybersecurity, which is why Trend Micro is always happy to reach out across industry, academia and law enforcement to offer its expertise.

We are again delighted to be working with long-time partner INTERPOL over the coming weeks on a new awareness campaign to help businesses and remote workers stay safe from a deluge of COVID-19 threats.

The new normal

All over the world, organizations have been forced to rapidly adjust to the new normal: social distancing, government lockdowns and mass remote working. While most have responded superbly to the challenge, there’s no denying that IT security teams and remote access infrastructure are being stretched to the limit. There are understandable concerns that home workers may be more distracted, and therefore likely to click on phishing links, and that their PCs and devices may not be as well protected as corporate equivalents.

At the same time, the bad guys have also reacted quickly to take advantage of the pandemic. Phishing campaigns using COVID as a lure have surged, spoofing health authorities, government departments and corporate senders. BEC attacks try to leverage the fact that home workers may not have colleagues around to check wire transfer requests. And remote infrastructure like RDP endpoints and VPNs are being targeted by ransomware attackers — even healthcare organizations that are simultaneously trying to treat critical patients infected with the virus.

Getting the basics right

That’s why Trend Micro has been pushing out regular updates — not only on the latest scams and threats we’re picking up around the globe, but also with advice on how to secure the newly distributed workforce. Things like improved password security, 2FA for work accounts, automatic software updates, regular back-ups, remote user training, and restricted use of VPNs can all help. We’re also offering six months free use of our flagship Trend Micro Maximum Security product to home workers.

Yet there’s always more to do. Getting the message across as far and wide as possible is where organizations like INTERPOL come in. That’s why we’re delighted to be teaming up with the global policing organization to run a new public awareness campaign throughout May. It builds on highly successful previous recent campaigns we’ve collaborated on, to tackle BEC and crypto-jacking.

This time, we’ll be resharing some key resources on social media to alert users to the range of threats out there, and what businesses and home workers can do to stay safe. And we’ll help to develop infographics and other new messages on how to combat ransomware, online scams, phishing and other threats.

We’re all doing what we can during these difficult days. But if some good can come from a truly terrible event like this, then it’s that we show our strength in the face of adversity. And by following best practices, we can make life much tougher for the cybercriminals looking to profit from tragedy.

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This Week in Security News: Shade Ransomware Shuts Down, Releases Decryption Keys and WebMonitor RAT Bundled with Zoom Installer

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, read about how the operators of the Shade (Troldesh) ransomware have shut down and released more than 750,000 decryption keys. Also, learn about an attack using Zoom installers to spread a WebMonitor RAT malware.

Read on:

The Industry 4.0 Lab Never Ignores Brownfields – What POLIMI and Trend Micro Aim to Prove

It takes time for new technologies to penetrate the market and even the most innovative technology must be used safely and with confidence. Industry 4.0 technology is no exception. Engineers and researchers, including those at Politecnico di Milano (POLIMI) and Trend Micro, are currently investigating how to map ICT technology principles onto OT environments, including factory environments.

Shade (Troldesh) Ransomware Shuts Down and Releases Decryption Keys

The operators of the Shade (Troldesh) ransomware have shut down and, as a sign of goodwill, have released more than 750,000 decryption keys that past victims can now use to recover their files. Security researchers from Kaspersky Lab have confirmed the validity of the leaked keys and are now working on creating a free decryption tool.

Trend Micro’s Top Ten MITRE Evaluation Considerations

The MITRE ATT&CK framework, and the evaluations, have gone a long way in helping advance the security industry, and the individual security products serving the market. The insight garnered from these evaluations is incredibly useful but can be hard to understand. In this blog, read Trend Micro’s top 10 key takeaways for its evaluation results.  

New Android Malware Steals Banking Passwords, Private Data and Keystrokes

A new type of mobile banking malware has been discovered abusing Android’s accessibility features to exfiltrate sensitive data from financial applications, read user SMS messages, and hijack SMS-based two-factor authentication codes. Dubbed “EventBot” by Cybereason researchers, the malware can target over 200 different financial apps, including banking, money transfer services, and crypto-currency wallets. 

Principles of a Cloud Migration – Security, The W5H – Episode WHAT?

Last week in Trend Micro’s cloud migration blog series, we explained the “WHO” of securing a cloud migration, detailing each of the roles involved with implementing a successful security practice during the migration. This week, Trend Micro touches on the “WHAT” of security: the key principles required before your first workload moves.  

Critical WordPress e-Learning Plugin Bugs Open Door to Cheating

Researchers have disclosed critical-severity flaws in three popular WordPress plugins used widely by colleges and universities: LearnPress, LearnDash and LifterLMS. The flaws, now patched, could allow students to steal personal information, change their grades, cheat on tests and more. 

WebMonitor RAT Bundled with Zoom Installer

The COVID-19 pandemic has highlighted the usefulness of communication apps for work-from-home setups. However, as expected, cybercriminals look to exploit popular trends and user behavior. Trend Micro has witnessed threats against several messaging apps, including Zoom. In April, Trend Micro spotted an attack using Zoom installers to spread a cryptocurrency miner. Trend Micro recently encountered a similar attack that drops a different malware: RevCode WebMonitor RAT. 

Group Behind TrickBot Spreads Fileless BazarBackdoor

A new campaign is spreading a new malware named “BazarBackdoor,” a fileless backdoor created by the same threat actors behind TrickBot, according to BleepingComputer. The conclusion is drawn due to similarities in code, crypters, and infrastructure between the two malware variants. The social engineering attacks used to spread the backdoor use topics such as customer complaints, COVID-19-themed payroll reports, and employee termination lists for the emails they send out. 

Critical Adobe Illustrator, Bridge and Magento Flaws Patched

Adobe is warning of critical flaws in Adobe Bridge, Adobe Illustrator and the Magento e-commerce platform. If exploited, the most severe vulnerabilities could enable remote code execution on affected systems. Francis Provencher, Mat Powell, and an anonymous reporter were credited for discovering the flaws, all working with Trend Micro’s Zero Day Initiative.

Guidance on Kubernetes Threat Modeling

Kubernetes is one of the most used container orchestration systems in cloud environments. As such, like any widely used application, it is an attractive target for cybercriminals and other threat actors. In this blog, Trend Micro shares three general areas that cloud administrators need to secure their deployments against, as they can introduce threats or risks to their Kubernetes-driven containerization strategies.

Loki Info Stealer Propagates Through LZH Files

Trend Micro previously encountered a spam sample that propagates the info stealer Loki through Windows Cabinet (CAB) files. Recently, Trend Micro also acquired another sample that delivers the same malware, but through LZH compressed archive files. Trend Micro detects the attachment and the dropper as TrojanSpy.Win32.LOKI.TIOIBYTU.

Security 101: How Fileless Attacks Work and Persist in Systems

As security measures improve, modern adversaries continue to craft sophisticated techniques to evade detection. One of the most persistent evasion techniques involves fileless attacks, which don’t require malicious software to break into a system. Instead of relying on executables, these threats misuse tools that are already in the system to initiate attacks.

COVID-19 Lockdown Fuels Increase in RDP Attacks

The number of attacks abusing the remote desktop protocol (RDP) to compromise corporate environments has increased significantly over the past couple of months, according to Kaspersky. With employees worldwide forced to work from home due to the COVID-19 pandemic, the volume of corporate traffic has increased significantly, just as the use of third-party services has increased to keep teams connected and efficient.

What measures are you taking to secure your migration to the cloud? Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

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Principles of a Cloud Migration – Security W5H – The When

By Jason Dablow
cloud

If you have to ask yourself when to implement security, you probably need a time machine!

Security is as important to your migration as the actual workload you are moving to the cloud. Read that again.

It is essential to be planning and integrating security at every single layer of both architecture and implementation. What I mean by that, is if you’re doing a disaster recovery migration, you need to make sure that security is ready for the infrastructure, your shiny new cloud space, as well as the operations supporting it. Will your current security tools be effective in the cloud? Will they still be able to do their task in the cloud? Do your teams have a method of gathering the same security data from the cloud? More importantly, if you’re doing an application migration to the cloud, when you actually implement security means a lot for your cost optimization as well.

NIST Planning Report 02-3

In this graph, it’s easy to see that the earlier you can find and resolve security threats, not only do you lessen the workload of infosec, but you also significantly reduce your costs of resolution. This can be achieved through a combination of tools and processes to really help empower development to take on security tasks sooner. I’ve also witnessed time and time again that there’s friction between security and application teams often resulting in Shadow IT projects and an overall lack of visibility and trust.

Start there. Start with bringing these teams together, uniting them under a common goal: Providing value to your customer base through agile secure development. Empower both teams to learn about each other’s processes while keeping the customer as your focus. This will ultimately bring more value to everyone involved.

At Trend Micro, we’ve curated a number of security resources designed for DevOps audiences through our Art of Cybersecurity campaign.  You can find it at https://www.trendmicro.com/devops/.

Also highlighted on this page is Mark Nunnikhoven’s #LetsTalkCloud series, which is a live stream series on LinkedIn and YouTube. Seasons 1 and 2 have some amazing content around security with a DevOps focus – stay tuned for Season 3 to start soon!

This is part of a multi-part blog series on things to keep in mind during a cloud migration project.  You can start at the beginning which was kicked off with a webinar here: https://resources.trendmicro.com/Cloud-One-Webinar-Series-Secure-Cloud-Migration.html.

Also, feel free to give me a follow on LinkedIn for additional security content to use throughout your cloud journey!

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Trend Micro’s Top Ten MITRE Evaluation Considerations

By Trend Micro

The introduction of the MITRE ATT&CK evaluations is a welcomed addition to the third-party testing arena. The ATT&CK framework, and the evaluations in particular, have gone such a long way in helping advance the security industry as a whole, and the individual security products serving the market.

The insight garnered from these evaluations is incredibly useful.  But let’s admit, for everyone except those steeped in the analysis, it can be hard to understand. The information is valuable, but dense. There are multiple ways to look at the data and even more ways to interpret and present the results (as no doubt you’ve already come to realize after reading all the vendor blogs and industry articles!) We have been looking at the data for the past week since it published, and still have more to examine over the coming days and weeks.

The more we assess the information, the clearer the story becomes, so we wanted to share with you Trend Micro’s 10 key takeaways for our results:

1. Looking at the results of the first run of the evaluation is important:

  • Trend Micro ranked first in initial overall detection. We are the leader in detections based on initial product configurations. This evaluation enabled vendors to make product adjustments after a first run of the test to boost detection rates on a re-test. The MITRE results show the final results after all product changes. If you assess what the product could detect as originally provided, we had the best detection coverage among the pool of 21 vendors.
  • This is important to consider because product adjustments can vary in significance and may or may not be immediately available in vendors’ current product. We also believe it is easier to do better, once you know what the attacker was doing – in the real world, customers don’t get a second try against an attack.
  • Having said that, we too took advantage of the retest opportunity since it allows us to identify product improvements, but our overall detections were so high, that even removing those associated with a configuration change, we still ranked first overall.

  • And so no one thinks we are just spinning… without making any kind of exclusions to the data at all, and just taking the MITRE results in their entirety, Trend Micro had the second highest detection rate, with 91+% detection coverage.

2. There is a hierarchy in the type of main detections – Techniques is most significant

  • There is a natural hierarchy in the value of the different types of main detections.
    • A general detection indicates that something was deemed suspicious but it was not assigned to a specific tactic or technique.
    • A detection on tactic means the detection can be attributed to a tactical goal (e.g. credential access).
    • Finally, a detection on technique means the detection can be attributed to a specific adversarial action (e.g. credential dumping).
  • We have strong detection on techniques, which is a better detection measure. With the individual MITRE technique identified, the associated tactic can be determined, as typically, there are only a handful of tactics that would apply to a specific technique. When comparing results, you can see that vendors had lower tactic detections on the whole, demonstrating a general acknowledgement of where the priority should lie.
  • Likewise, the fact that we had lower general detections compared to technique detections is a positive. General detections are typically associated with a signature; as such, this proves that we have a low reliance on AV.
  • It is also important to note that we did well in telemetry which gives security analysts access to the type and depth of visibility they need when looking into detailed attacker activity across assets.


https://attackevals.mitre.org/APT29/detection-categories.html 

3. More alerts does not equal better alerting – quite the opposite

  • At first glance, some may expect one should have the same number of alerts as detections. But not all detections are created equal, and not everything should have an alert (remember, these detections are for low level attack steps, not for separate attacks.)
  • Too many alerts can lead to alert fatigue and add to the difficulty of sorting through the noise to what is most important.
  • When you consider the alerts associated with our higher-fidelity detections (e.g. detection on technique), you can see that the results show that Trend Micro did very well at reducing the noise of all of the detections into a minimal volume of meaningful/actionable alerts.

4. Managed Service detections are not exclusive

  • Our MDR analysts contributed to the “delayed detection” category. This is where the detection involved human action and may not have been initiated automatically.
  • Our results shows the strength of our MDR service as one way for detection and enrichment. If an MDR service was included in this evaluation, we believe you would want to see it provide good coverage, as it demonstrates that the team is able to detect based on the telemetry collected.
  • What is important to note though is that the numbers for the delayed detection don’t necessarily mean it was the only way a detection was/could be made; the same detection could be identified by other means. There are overlaps between detection categories.
  • Our detection coverage results would have remained strong without this human involvement – approximately 86% detection coverage (with MDR, it boosted it up to 91%).

5. Let’s not forget about the effectiveness and need for blocking!

  • This MITRE evaluation did not test for a product’s ability to block/protect from an attack, but rather exclusively looks at how effective a product is at detecting an event that has happened, so there is no measure of prevention efficacy included.
  • This is significant for Trend, as our philosophy is to block and prevent as much as you can so customers have less to clean up/mitigate.

6. We need to look through more than the Windows

  • This evaluation looked at Windows endpoints and servers only; it did not look at Linux for example, where of course Trend has a great deal of strength in capability.
  • We look forward to the expansion of the operating systems in scope. Mitre has already announced that the next round will include a linux system.

7. The evaluation shows where our product is going

  • We believe the first priority for this evaluation is the main detections (for example, detecting on techniques as discussed above). Correlation falls into the modifier detection category, which looks at what happens above and beyond an initial detection.
  • We are happy with our main detections, and see great opportunity to boost our correlation capabilities with Trend Micro XDR, which we have been investing in heavily and is at the core of the capabilities we will be delivering in product to customers as of late June 2020.
  • This evaluation did not assess our correlation across email security; so there is correlation value we can deliver to customers beyond what is represented here.

8. This evaluation is helping us make our product better

  • The insight this evaluation has provided us has been invaluable and has helped us identify areas for improvement and we have initiate product updates as a result.
  • As well, having a product with a “detection only” mode option helps augment the SOC intel, so our participation in this evaluation has enabled us to make our product even more flexible to configure; and therefore, a more powerful tool for the SOC.
  • While some vendors try to use it against us, our extra detections after config change show that we can adapt to the changing threat landscape quickly when needed.

9. MITRE is more than the evaluation

  • While the evaluation is important, it is important to recognize MITRE ATT&CK as an important knowledge base that the security industry can both align and contribute to.
  • Having a common language and framework to better explain how adversaries behave, what they are trying to do, and how they are trying to do it, makes the entire industry more powerful.
  • Among the many things we do with or around MITRE, Trend has and continues to contribute new techniques to the framework matrices and is leveraging it within our products using ATT&CK as a common language for alerts and detection descriptions, and for searching parameters.

10. It is hard not to get confused by the fud!

  • MITRE does not score, rank or provide side by side comparison of products, so unlike other tests or industry analyst reports, there is no set of “leaders” identified.
  • As this evaluation assesses multiple factors, there are many different ways to view, interpret and present the results (as we did here in this blog).
  • It is important that individual organizations understand the framework, the evaluation, and most importantly what their own priorities and needs are, as this is the only way to map the results to the individual use cases.
  • Look to your vendors to help explain the results, in the context that makes sense for you. It should be our responsibility to help educate, not exploit.

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Principles of a Cloud Migration – Security, The W5H – Episode WHAT?

By Jason Dablow
cloud

Teaching you to be a Natural Born Pillar!

Last week, we took you through the “WHO” of securing a cloud migration here, detailing each of the roles involved with implementing a successful security practice during a cloud migration. Read: everyone. This week, I will be touching on the “WHAT” of security; the key principles required before your first workload moves.  The Well-Architected Framework Security Pillar will be the baseline for this article since it thoroughly explains security concepts in a best practice cloud design.

If you are not familiar with the AWS Well-Architected Framework, go google it right now. I can wait. I’m sure telling readers to leave the article they’re currently reading is a cardinal sin in marketing, but it really is important to understand just how powerful this framework is. Wait, this blog is html ready – here’s the link: https://wa.aws.amazon.com/index.en.html. It consists of five pillars that include best practice information written by architects with vast experience in each area.

Since the topic here is Security, I’ll start by giving a look into this pillar. However, I plan on writing about each and as I do, each one of the graphics above will become a link. Internet Magic!

There are seven principles as a part of the security framework, as follows:

  • Implement a strong identity foundation
  • Enable traceability
  • Apply security at all layers
  • Automate security best practices
  • Protect data in transit and at rest
  • Keep people away from data
  • Prepare for security events

Now, a lot of these principles can be solved by using native cloud services and usually these are the easiest to implement. One thing the framework does not give you is suggestions on how to set up or configure these services. While it might reference turning on multi-factor authentication as a necessary step for your identity and access management policy, it is not on by default. Same thing with file object encryption. It is there for you to use but not necessarily enabled on the ones you create.

Here is where I make a super cool (and free) recommendation on technology to accelerate your learning about these topics. We have a knowledge base with hundreds of cloud rules mapped to the Well-Architected Framework (and others!) to help accelerate your knowledge during and after your cloud migration. Let us take the use case above on multi-factor authentication. Our knowledge base article here details the four R’s: Risk, Reason, Rationale, and References on why MFA is a security best practice.

Starting with a Risk Level and detailing out why this is presents a threat to your configurations is a great way to begin prioritizing findings.  It also includes the different compliance mandates and Well-Architected pillar (obviously Security in this case) as well as descriptive links to the different frameworks to get even more details.

The reason this knowledge base rule is in place is also included. This gives you and your teams context to the rule and helps further drive your posture during your cloud migration. Sample reason is as follows for our MFA Use Case:

“As a security best practice, it is always recommended to supplement your IAM user names and passwords by requiring a one-time passcode during authentication. This method is known as AWS Multi-Factor Authentication and allows you to enable extra security for your privileged IAM users. Multi-Factor Authentication (MFA) is a simple and efficient method of verifying your IAM user identity by requiring an authentication code generated by a virtual or hardware device on top of your usual access credentials (i.e. user name and password). The MFA device signature adds an additional layer of protection on top of your existing user credentials making your AWS account virtually impossible to breach without the unique code generated by the device.”

If Reason is the “what” of the rule, Rationale is the “why” supplying you with the need for adoption.  Again, perfect for confirming your cloud migration path and strategy along the way.

“Monitoring IAM access in real-time for vulnerability assessment is essential for keeping your AWS account safe. When an IAM user has administrator-level permissions (i.e. can modify or remove any resource, access any data in your AWS environment and can use any service or component – except the Billing and Cost Management service), just as with the AWS root account user, it is mandatory to secure the IAM user login with Multi-Factor Authentication.

Implementing MFA-based authentication for your IAM users represents the best way to protect your AWS resources and services against unauthorized users or attackers, as MFA adds extra security to the authentication process by forcing IAM users to enter a unique code generated by an approved authentication device.”

Finally, all the references for each of the risk, reason, and rationale, are included at the bottom which helps provide additional clarity. You’ll also notice remediation steps, the 5th ‘R’ when applicable, which shows you how to actually the correct the problem.

All of this data is included to the community as Trend Micro continues to be a valued security research firm helping the world be safe for exchanging digital information. Explore all the rules we have available in our public knowledge base: https://www.cloudconformity.com/knowledge-base/.

This blog is part of a multi-part series dealing with the principles of a successful cloud migration.  For more information, start at the first post here: https://blog.trendmicro.com/principles-of-a-cloud-migration-from-step-one-to-done/

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Getting ATT&CKed By A Cozy Bear And Being Really Happy About It: What MITRE Evaluations Are, and How To Read Them

By Greg Young (Vice President for Cybersecurity)

Full disclosure: I am a security product testing nerd*.

 

I’ve been following the MITRE ATT&CK Framework for a while, and this week the results were released of the most recent evaluation using APT29 otherwise known as COZY BEAR.

First, here’s a snapshot of the Trend eval results as I understand them (rounded down):

91.79% on overall detection.  That’s in the top 2 of 21.

91.04% without config changes.  The test allows for config changes after the start – that wasn’t required to achieve the high overall results.

107 Telemetry.  That’s very high.  Capturing events is good.  Not capturing them is not-good.

28 Alerts.  That’s in the middle, where it should be.  Not too noisy, not too quiet.  Telemetry I feel is critical whereas alerting is configurable, but only on detections and telemetry.

 

So our Apex One product ran into a mean and ruthless bear and came away healthy.  But that summary is a simplification and doesn’t capture all the nuance to the testing.  Below are my takeaways for you of what the MITRE ATT&CK Framework is, and how to go about interpreting the results.

 

Takeaway #1 – ATT&CK is Scenario Based

The MITRE ATT&CK Framework is intriguing to me as it mixes real world attack methods by specific adversaries with a model for detection for use by SOCs and product makers.  The ATT&CK Framework Evaluations do this but in a lab environment to assess how security products would likely handle an attack by that adversary and their usual methods.  There had always been a clear divide between pen testing and lab testing and ATT&CK was kind of mixing both.  COZY BEAR is super interesting because those attacks were widely known for being quite sophisticated and being state-sponsored, and targeted the White House and US Democratic Party.  COZY BEAR and its family of derivatives use backdoors, droppers, obfuscation, and careful exfiltration.

 

Takeaway #2 – Look At All The Threat Group Evals For The Best Picture

I see the tradeoffs as ATT&CK evals are only looking at that one scenario, but that scenario is very reality based and with enough evals across enough scenarios a narrative is there to better understand a product.  Trend did great on the most recently released APT/29/COZY BEAR evaluation, but my point is that a product is only as good as all the evaluations. I always advised Magic Quadrant or NSS Value Map readers to look at older versions in order to paint a picture over time of what trajectory a product had.

 

Takeaway #3 – It’s Detection Focused (Only)

The APT29 test like most Att&ck evals is testing detection, not prevention nor other parts of products (e.g. support).  The downside is that a product’s ability to block the attacks isn’t evaluated, at least not yet.  In fact blocking functions have to be disabled for parts of the test to be done.  I get that – you can’t test the upstairs alarm with the attack dog roaming the downstairs.  Starting with poor detection never ends well, so the test methodology seems to be focused on ”if you can detect it you can block it”.  Some pen tests are criticized that a specific scenario isn’t realistic because A would stop it before B could ever occur.  IPS signature writers everywhere should nod in agreement on that one. I support MITRE on how they constructed the methodology because there has to be limitations and scope on every lab test, but readers too need to understand those limitations and scopes.  I believe that the next round of tests will include protection (blocking) as well, so that is cool.

 

Takeaway #4 – Choose Your Own Weather Forecast

Att&ck is no magazine style review.  There is no final grade or comparison of products.  To fully embrace Att&ck imagine being provided dozens of very sound yet complex meteorological measurements and being left to decide on what the weather will be. Or have vendors carpet bomb you with press releases of their interpretations.  I’ve been deep into the numbers of the latest eval scores and when looking at some of the blogs and press releases out there they almost had me convinced they did well even when I read the data at hand showing they didn’t.  I guess a less jaded view is that the results can be interpreted in many ways, some of them quite creative.  It brings to mind the great quote from the Lockpicking Lawyer review “the threat model does not include an attacker with a screwdriver”.

 

Josh Zelonis at Forrester provides a great example of the level of work required to parse the test outcomes, and he provides extended analysis on Github here that is easier on the eyes than the above.  Even that great work product requires the context of what the categories mean.  I understand that MITRE is taking the stance of “we do the tests, you interpret the data” in order to pick fewer fights and accommodate different use cases and SOC workflows, but that is a lot to put on buyers. I repeat: there’s a lot of nuance in the terms and test report categories.

 

If, in the absence of Josh’s work, if I have to pick one metric Detection Rate is likely the best one.  Note that Detection rate isn’t 100% for any product in the APT29 test, because of the meaning of that metric.  The best secondary metrics I like are Techniques and Telemetry.  Tactics sounds like a good thing, but in the framework it is lesser than Techniques, as Tactics are generalized bad things (“Something moving outside!”) and Techniques are more specific detections (“Healthy adult male Lion seen outside door”), so a higher score in Techniques combined with a low score in Tactics is a good thing.  Telemetry scoring is, to me, best right in the middle.  Not too many alerts (noisy/fatiguing) and not too few (“about that lion I saw 5 minutes ago”).

 

Here’s an example of the interpretations that are valuable to me.  Looking at the Trend Micro eval source page here I get info on detections in the steps, or how many of the 134 total steps in the test were detected.  I’ll start by excluding any human involvement and exclude the MSSP detections and look at unassisted only.  But the numbers are spread across all 20 test steps, so I’ll use Josh’s spreadsheet shows 115 of 134 steps visible, or 85.82%.  I do some averaging on the visibility scores across all the products evaluated and that is 66.63%, which is almost 30% less.  Besides the lesson that the data needs gathering and interpretation, it highlights that no product spotted 100% across all steps and the spread was wide. I’ll now look at the impact of human involvement add in the MSSP detections and the Trend number goes to 91%.  Much clinking of glasses heard from the endpoint dev team.  But if I’m not using an MSSP service that… you see my point about context/use-case/workflow.  There’s effectively some double counting (i.e. a penalty, so that when removing MSSP it inordinately drops the detection ) of the MSSP factor when removing it in the analyses, but I’ll leave that to a future post.  There’s no shortage of fodder for security testing nerds.

 

Takeaway #5 – Data Is Always Good

Security test nerdery aside, this eval is a great thing and the data from it is very valuable.  Having this kind of evaluation makes security products and the uses we put them to better.  So dig into ATT&CK and read it considering not just product evaluations but how your organization’s framework for detecting and processing attacks maps to the various threat campaigns. We’ll no doubt have more posts on APT29 and upcoming evals.

 

*I was a Common Criteria tester in a place that also ran a FIPS 140-2 lab.  Did you know that at Level 4 of FIPS a freezer is used as an exploit attempt? I even dipped my toe into the arcane area of Formal Methods using the GYPSY methodology and ran from it screaming “X just equals X!  We don’t need to prove that!”. The deepest testing rathole I can recall was doing a portability test of the Orange Book B1 rating for MVS RACF when using logical partitions. I’m never getting those months of my life back. I’ve been pretty active in interacting with most security testing labs like NSS and ICSA and their schemes (that’s not a pejorative, but testing nerds like to use British usages to sound more learned) for decades because I thought it was important to understand the scope and limits of testing before accepting it in any product buying decisions. If you want to make Common Criteria nerds laugh point out something bad that has happened and just say “that’s not bad, it was just mistakenly put in scope”, and that will then upset the FIPS testers because a crypto boundary is a very real thing and not something real testers joke about.  And yes, Common Criteria is the MySpace of tests.

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“We Need COBOL Programmers!” No, You Probably Don’t

By William "Bill" Malik (CISA VP Infrastructure Strategies)

Editor’s note: While this topic isn’t entirely security-specific, Trend Micro leader William Malik, has career expertise on the trending topic and shared his perspective.

——

There was a provocative report recently that the Governor of New Jersey told reporters that the state of New Jersey needed COBOL programmers. The reason was that the number of unemployment claims had spiked, and the legacy system running unemployment claims had failed. That 40-year-old system was written in COBOL, so the conclusion was that the old language had finally given out. Hiring COBOL programmers would let the State update and modernize the application to handle the increase in load.

This might be the problem, but it probably is not. Here’s why.

  1. Software doesn’t wear out, and it doesn’t rust. Any code that’s been running for 40 years is probably rock solid.
  2. Computers have a fixed amount of specific resources: processing power, memory, network capacity, disk storage. If any of these is used up, the computer cannot do any more work.
  3. When a computer application gets more load than it can handle, things back up. Here’s a link to a process that works fine until excessive load leads to a system failure. https://www.youtube.com/watch?v=NkQ58I53mjk Trigger warning – this may be unsettling to people working on assembly lines, or on diets.
  4. Adding more resources must fit the machine architecture proportionately.
  5. Incidentally, throwing a bunch of people at an IT problem usually makes things worse.

From these points, we learn the following lessons.

Software Doesn’t Wear Out

Logic is indelible. A computer program is deterministic. It will do exactly what you tell it to do, even if what you tell it to do isn’t precisely what you meant it to do. Code never misbehaves – but your instructions may be incorrect. That’s why debugging is such a hard problem.

Incidentally, that’s also why good developers usually make lousy testers. The developer focuses her mind on one thing – getting a bunch of silicon to behave. The tester looks for faults, examines edge conditions, limit conditions, and odd configurations of inputs and infrastructure to see how things break. The two mindsets are antithetical.

Once a piece of software has been in production long enough, the mainline paths are usually defect free. In fact, the rest of the code may be a hot mess, but that stuff doesn’t get executed so those defects are latent and do not impact normal processing. Ed Adams published a report in 1984 titled “Optimizing Preventative Service for Software Products” (https://ieeexplore.ieee.org/document/5390362, originally published in the IBM Journal of Research and Development, v 28, n 1). He concluded that once a product has been in production for a sufficient time, it was safer to leave it alone. Installing preventative maintenance was likely to disrupt the system. Most IT organizations know this, having learned the hard way. “If it ain’t broke, don’t fix it” is the mantra for this wisdom.

As a corollary, new software has a certain defect rate. Fixes to that software typically have a defect rate ten times greater. So if a typical fix is large enough, you put in a new bug for every bug you take out.

Computers Are Constrained

All computers have constraints. The relative amount of resources mean some computers are better for some workloads than others. For mainframes, the typical constraint is processing power. That’s why mainframes are tuned to run at 100% utilization, or higher. (How do you get past 100% utilization? Technically, of course, you can’t. But what the measurements are showing you is how much work is ready to run, waiting for available processing power. The scale actually can go to 127%, if there’s enough work ready.)

Different types of computers have different constraints. Mainframes run near 100% utilization – the CPU is the most expensive and constrained resource. PCs on the other hand never get busy. No human can type fast enough to drive utilization above a few percent. The constrained resource on PCs is typically disk storage. That’s why different types of computers do better at different types of work. PCs are great for user interface stuff. Mainframes are perfect for chewing through a million database records. By chance we developed mainframes first; that’s not an indictment of either type, Both are useful.

Computers Can Run Out of Resources

Any IT infrastructure has a design point for load. That is, when you put together a computer you structure it to meet the likely level of demand on the system. If you over-provision it, you waste resources that will never be used. If you under-provision it, you will not meet your service level agreements. So when you begin, you must know what the customers – your users – expect in terms of response time, number of concurrent transactions, database size, growth rates, network transaction load, transaction mix, computational complexity of transaction types, and so on. If you don’t specify what your targets are for these parameters, you probably won’t get the sizing right. You will likely buy too much of one resource or not enough of another.

Note that cloud computing can help – it allows you to dynamically add additional capacity to handle peak load. However, cloud isn’t a panacea. Some workloads don’t flex that much, so you spend extra money for flexibility for a capability that you can provide more economically and efficiently if it were in-house.

Add Capacity in Balance

When I was in high school our physics teacher explained that temperature wasn’t the same as heat. He said “Heat is the result of a physical or chemical reaction. Temperature is simply the change in heat over the mass involved.” One of the kids asked (snarkily) “Then why don’t drag racers have bicycle tires on the back?” The teacher was caught off guard. The answer is that the amount of heat put into the tire is the same regardless of its size, but the temperature was related to the size of the area where the tire touched the road. A bicycle tire has only about two square inches on the pavement, a fat drag tire has 100 square inches or more. So putting the same amount of horsepower spinning the tire will cause the bicycle tire’s temperature to rise about 50 times more than the gumball’s will.

When you add capacity to a computing system, you need to balance related capacity elements or you’ll be wasting money. Doubling the processor’s power (MHz or MIPS) without proportionately increasing the memory or network capacity simply moves the constraint from one place to another. What used to be a system with a flat-out busy CPU now becomes a system that’s waiting for work with a queue at the memory, the disk drive, or the network card.

Adding Staff Makes Things Worse

Increasing any resource creates potential problems of its own, especially of the system’s underlying architecture is ignored. Fore the software development process (regardless of form) one such resource is staff. The book “The Mythical Man-Month” by Fred Brooks (https://www.barnesandnoble.com/w/the-mythical-man-month-frederick-p-brooks-jr/1126893908) discusses how things go wrong.

The core problem is adding more people require strong communications and clear goals. Too many IT projects lack both. I once was part of an organization that consulted on a complex application rewrite – forty consultants, hundreds of developers, and very little guidance. The situation degenerated rapidly when the interim project manager decided we shouldn’t waste time on documentation. A problem would surface, the PM would kick off as task force, hold a meeting, and send everybody on their way. After the meeting, people would ask what specific decisions had been reached, but since there were no minutes, nobody could be sure. That would cause the PM to schedule another meeting, and so on. Two lessons I learned concerns meetings:

  1. If you do not have agenda, you do not have a meeting.
  2. If you do not distribute minutes, you did not have a meeting.

When you add staff, you must account for the extra overhead managing the activities of each person, and establish processes to monitor changes that every participant must follow. Scrum is an excellent way of flattening potentially harmful changes. By talking face to face regularly, the team knows everything that’s going on. Omit those meetings or rely on second-hand reports and the project is already off the rails. All that remains is to see how far things go wrong before someone notices.

In Conclusion …

If you have a computer system that suddenly gets a huge spike in load, do these things first:

  1. Review the performance reports. Look at changes in average queue length, response time, transaction flight time, and any relevant service level agreements or objectives.
  2. Identify likely bottlenecks
  3. Model the impact of additional resources
  4. Apply additional resource proportionately
  5. Continue to monitor performance

If you are unable to resolve the capacity constraints with these steps, examine the programs for internal limitations:

  1. Review program documentation, specifications, service level objectives, workload models and predictions, data flow diagrams, and design documents to understand architectural and design limits
  2. Determine what resource consumption assumptions were built per transaction type, and expected transaction workload mix
  3. Verify current transaction workload mix and resource consumption per transaction type
  4. Design program extension alternatives to accommodate increased concurrent users, transactions, resource demands per transaction class
  5. Model alternative design choices, including complexity, size, and verification (QA cost)
  6. Initiate refactoring based on this analysis

Note that if you do not have (or cannot find) the relevant documentation, you will need to examine the source code. At this point, you may need to bring in a small set of experts in the programming language to recreate the relevant documentation. Handy hint: before you start working on the source code, regenerate the load modules and compare them with the production stuff to identify any patches or variance between what’s in the library and what’s actually in production.

Bringing in a bunch of people before going through this analysis will cause confusion and waste resources. While to an uninformed public it may appear that something is being done, the likelihood is that what is actually being done will have to be expensively undone before the actual core problem can be resolved. Tread lightly. Plan ahead. State your assumptions, then verify them. Have a good plan and you’ll work it out. Remember, it’s just ones and zeros.

What do you think? Let me know in the comments below, or @WilliamMalikTM.

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Principles of a Cloud Migration – Security, The W5H

By Jason Dablow
cloud

Whosawhatsit?! –  WHO is responsible for this anyways?

For as long as cloud providers have been in business, we’ve been discussing the Shared Responsibility Model when it comes to customer operation teams. It defines the different aspects of control, and with that control, comes the need to secure, manage, and maintain.

While I often make an assumption that everyone is already familiar with this model, let’s highlight some of the requirements as well as go a bit deeper into your organization’s layout for responsibility.

During your cloud migration, you’ll no doubt come across a variety of cloud services that fits into each of these configurations. From running cloud instances (IaaS) to cloud storage (SaaS), there’s a need to apply operational oversight (including security) to each of these based on your level of control of the service.  For example, in a cloud instance, since you’re still responsible for the Operating System and Applications, you’ll still need a patch management process in place, whereas with file object storage in the cloud, only oversight of permissions and data management is required. I think Mark Nunnikhoven does a great job in going into greater detail of the model here: https://blog.trendmicro.com/the-shared-responsibility-model/.

shared responsibility model

I’d like to zero in on some of the other “WHO”s that should be involved in security of your cloud migration.

InfoSec – I think this is the obvious mention here. Responsible for all information security within an organization. Since your cloud migration is working with “information”, InfoSec needs to be involved with how they get access to monitoring the security and risk associated to an organization. 

Cloud Architect – Another no-brainer in my eyes but worth a mention; if you’re not building a secure framework with a look beyond a “lift-and-shift” initial migration, you’ll be doomed with archaic principles leftover from the old way of doing things. An agile platform built for automating every operation including security should be the focus to achieving success.

IT / Cloud Ops – This may be the same or different teams. As more and more resources move to the cloud, an IT team will have less responsibilities for the physical infrastructure since it’s now operated by a cloud provider. They will need to go through a “migration” themselves to learn new skills to operate and secure a hybrid environment. This adaptation of new skills needs to be lead by…

Leadership – Yes, leadership plays an important role in operations and security even if they aren’t part of the CIO / CISO / COO branch. While I’m going to cringe while I type it, business transformation is a necessary step as you move along your cloud migration journey. The acceleration that the cloud provides can not be stifled by legacy operation and security ideologies. Every piece of the business needs to be involved in accelerating the value you’re delivering your customer base by implementing the agile processes including automation into the operations and security of your cloud.

With all of your key players focused on a successful cloud migration, regardless of what stage you’re in, you’ll reach the ultimate stage: the reinvention of your business where operational and security automation drives the acceleration of value delivered to your customers.

This blog is part of a multi-part series dealing with the principles of a successful cloud migration.  For more information, start at the first post here: https://blog.trendmicro.com/principles-of-a-cloud-migration-from-step-one-to-done/

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5 reasons to move your endpoint security to the cloud now

By Chris Taylor

As the world has adopts work from home initiatives, we’ve seen many organizations accelerate their plans to move from on-premises endpoint security and Detection and Response (EDR/XDR) solutions to Software as a Service versions. And several customers who switched to the SaaS version last year, recently wrote us to tell how glad to have done so as they transitioned to working remote. Here are 5 reasons to consider moving to a cloud managed solution:

 

  1. No internal infrastructure management = less risk

If you haven’t found the time to update your endpoint security software and are one or two versions behind, you are putting your organization at risk of attack. Older versions do not have the same level of protection against ransomware and file-less attacks. Just as the threats are always evolving, the same is true for the technology built to protect against them.

With Apex One as a Service, you always have the latest version. There are no software patches to apply or Apex One servers to manage – we take care of it for you. If you are working remote, this is one less task to worry about and less servers in your environment which might need your attention.

  1. High availability, reliability

With redundant processes and continuous service monitoring, Apex One as a Services delivers the uptime you need with 99.9% availability. The operations team also proactively monitors for potential issues on your endpoints and with your prior approval, can fix minor issues with an endpoint agent before they need your attention.

  1. Faster Detection and Response (EDR/XDR)

By transferring endpoint telemetry to a cloud data lake, detection and response activities like investigations and sweeping can be processed much faster. For example, creating a root cause analysis diagram in cloud takes a fraction of the time since the data is readily available and can be quickly processed with the compute power of the cloud.

  1. Increased MITRE mapping

The unmatched power of cloud computing also enables analytics across a high volume of events and telemetry to identify a suspicious series of activities. This allows for innovative detection methods but also additional mapping of techniques and tactics to the MITRE framework.  Building the equivalent compute power in an on- premises architecture would be cost prohibitive.

  1. XDR – Combined Endpoint + Email Detection and Response

According to Verizon, 94% of malware incidents start with email.  When an endpoint incident occurs, chances are it came from an email message and you want to know what other users have messages with the same email or email attachment in their inbox? You can ask your email admin to run these searches for you which takes time and coordination. As Forrester recognized in the recently published report: The Forrester Wave™ Enterprise Detection and Response, Q1 2020:

“Trend Micro delivers XDR functionality that can be impactful today. Phishing may be the single most effective way for an adversary to deliver targeted payloads deep into an infrastructure. Trend Micro recognized this and made its first entrance into XDR by integrating Microsoft office 365 and Google G suite management capabilities into its EDR workflows.”

This XDR capability is available today by combining alerts, logs and activity data of Apex One as a Service and Trend Micro Cloud App Security. Endpoint data is linked with Office 365 or G Suite email information from Cloud App Security to quickly assess the email impact without having to use another tool or coordinate with other groups.

Moving endpoint protection and detection and response to the cloud, has enormous savings in customer time while increasing their protection and capabilities. If you are licensed with our Smart Protection Suites, you already have access to Apex One as a Service and our support team is ready to help you with your migration. If you are an older suite, talk to your Trend Micro sales rep about moving to a license which includes SaaS.

 

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Monitoring and Maintaining Trend Micro Home Network Security – Part 4: Best Practices

By Trend Micro

We continue our four-part series on protecting your home and family. See the links to the previous parts at the end of this blog.

We’re now done with familiarizing ourselves with the features of Trend Micro Home Network Security (HNS) It’s now time for you to get a bit more adept at regular monitoring and maintenance, to ensure you’re getting the best protection HNS can provide your connected home.

Keeping Tabs on Your Home Network

Once you’re tracking the various internet-capable devices in your home within HNS, as with any security-related device it’s essential to monitor the activities captured by it. In the same way that we need to periodically review the videos taken by our security cameras, to check for any unusual events in or around the home that need our attention; so too, do you need to keep abreast of the goings on in your home network, particularly those of an unusual or suspect nature, as revealed by HNS. This can easily be done in two ways: via Voice Control and Reports.

Voice Control. When you want just a quick overview of the status of your network, you can use HNS’s Voice Control. Voice Control is available as a skill for both Amazon Alexa and Google Home.

Once the skill has been enabled, you can ask Alexa or Google Assistant to control your Home Network Security (HNS) using the following voice commands:

  • Start a Check Devices Scan – To check your network and devices, say: “Alexa (or Ok, Google), tell Trend Micro to scan my network.”
  • Get Your Security Status – To get a network security status update, say: “Alexa (Ok, Google), ask Trend Micro if my network is ok.”
  • Get An Online Activity Summary – To get a summary of a profile’s online activity, say: “Alexa (Ok, Google), ask Trend Micro what Tom (or any member of your household) did today.”
  • Pause the Internet for a Profile – To disconnect the devices assigned to a profile from the internet, say: “Alexa (Ok, Google), ask Trend Micro to pause the Internet for Tom (or any member of your household).”
  • Pause YouTube for a Profile – To prevent the devices assigned to a profile from accessing YouTube, say: “Alexa (Ok, Google), ask Trend Micro to turn off YouTube for Tom (or any member of your household).”
  • Use the Dashboard – Lastly, though not a voice command, checking out the Dashboard of the HNS app will give you a brief summary of the state of security of your home network, and will let you know if anything triggered any Parental Control rules that you’ve set.

Reports. On the other hand, if you have more time to spare, you can peruse the Reports for your devices, user profiles, and network usage.

  • Devices. On your HNS app, Tap Menu > Devices and select a device. Then, tap Report and choose the report you want to view in order to see more details.
  • User Profiles. From your HNS app, Tap Menu > Family and select a user profile. Then, tap Report and choose an event card from the list to see more details.
  • Network Usage. Besides knowing the status of your devices and users, it’s also necessary to know your network usage, especially when your home network relies on a metered connection. Having an idea which devices are hogs on the network will allow you to make proper adjustments, either to rules you implement for your youngsters and other members of your household; or to let you know that maybe you need to upgrade your internet plan to address the more intensive internet needs of your family. Network usage can be viewed by scrolling down to the bottom of the Dashboard and tapping the Network Usage graph; or you can just simply tap Menu > Network. Both will display more detailed network usage information.

Responding to Network Events

Now that you’re more acquainted with your home network through HNS, it’s vital that you know what to do when, for instance, you received a Smart Alert notification indicating an unusually high network activity detected on one of your connected devices.

A Range of Network Events. In brief, you’ll need to review the recent activities and perform the required actions to eliminate risks such as the following:

  • Check if there are any important security-related issues you need to resolve by checking if the ball at the top of the Dashboard says “Action Required”. Tap the ball to find out what you need to do to make sure your network and device security are optimal.
  • Check detected network activities.
  • Check if the device where the unusually high network activity was detected.
  • Select the device where the unusual activity was detected to view the Summary Report for the past 7 days.
  • You will see the unusual network traffic details, including the time range of the traffic and the amount of data used.
  • Check if the top 3 activity destinations were done by you or your family member.
  • If you are aware of the activities and not concerned about these events, tap Report > Not Unusual.
  • If these unusually high traffic activities were not caused by you or your family member, you need to double-check that the Network and Security settings are still enabled, to keep your connected devices protected. Moreover, you should fix any vulnerabilities on your devices, usually resolved by a software or firmware update.

For more specific information regarding these types of incidents, you may refer to this Technical Support article.

Monitoring the Health of Your Home Network Security Station

The Home Network Security Station takes care of your home and your family’s security and safety. In return, you should know how to check if it’s in good working condition.

Physical Status. Check whether the physical components (LED, Reset button, Power, and Ethernet ports) of your Station are intact.

Power. Ensure that the Station is powered on. To check if the Station has power supply, just follow these simple steps:

  • Connect the adapter to the outlet and the Station.
  • Make sure power on the outlet is turned on.
  • Change outlets to ensure power is on.

Offline Notifications. When the HNS Station is offline the user will receive a notification about it. In addition, the HNS app will indicate the Station is offline. This situation can be attributed to loss of either the internet or LAN connections.

Internet Connection. Make sure you have stable internet connection. Checking your internet connection is easy:

  • Disconnect your Home Network Security Station from the router.
  • Check if internet line is connected to the router’s WAN port.
  • If there is no internet connection, do the following:
  • Reboot your router
  • Check the network status from your Internet Service Provider
  • Check your router settings

If you are able to connect to the internet, just reconnect your Home Network Security Station to the router.

LAN Connection. Check the connection between the router and the HNS Station.

  • Ensure that the Ethernet cable provided is used to connect the HNS Station to any available LAN port of your router.
  • Check if the two LED lights of the LAN port are turned on.
  • The port on the right should be blinking green, while the other port should be a steady green or yellow.
  • If the LED lights don’t light up as mentioned, move the Ethernet cable to another router LAN port. Once the LED lights become normal, your HNS Station should be connected to the network.

Updates. Make sure that you update the HNS App if you receive a notification that indicates, “Update Needed. Please click the button below to get the latest version.” This will guarantee that your HNS is up-to-date with app improvements.

Getting Help. Always remember, if you encounter any questions, issues or concerns that you’re unable to resolve, Help is just a click away.

Final Thoughts

Home networks are everywhere these days. However, the user knowledge required to secure and maintain our home networks spans from tech newbies to gurus and often seems to be a rather complicated or even confusing task.

To help you maintain and monitor your home network, Trend Micro offers a simple plug-and-protect home network device to protect your smart home and connected devices from being hacked, while keeping the internet safe for your kids on any device. But plug-and-protect doesn’t mean plug-and-forget. As with any security device, ongoing monitoring and maintenance is needed to provide the best protection your home network and family members need and deserve.

For more information, go to Trend Micro Home Network Security.

To read the rest of our series on HNS, go to

You’re in Safe Hands with Trend Micro Home Network Security – Part 1: Setup and Configuration

Trend Micro Home Network Security Has Got You Covered – Part 2: Parental Controls

In Safe Hands with Trend Micro Home Network Security – Part 3: Testing Its Functions

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Why CISOs Are Demanding Detection and Response Everywhere

By Leah MacMillan

Over the past three decades, we’ve had time at Trend Micro to observe the industry trends that have the biggest impact on our customers. And one of the big things we’ve seen is that threats move largely in tandem with changes to IT infrastructure. This matters today because most organizations are transforming the way they run and manage their infrastructure—a daunting task on its own.

But with digital transformation also comes an expanded corporate attack surface, driving security leaders to demand enhanced visibility, detection & response across the entire enterprise — this is not just about the endpoint.

Transforming business

Over the past five years, there has been a major shift in the way IT infrastructure is delivered, and with that shift, increasing complexity. A big part of this change has been the use of the cloud, reflected in Gartner’s prediction that the market will grow to over $266 billion in 2020. Organizations everywhere are leveraging the cloud and DevOps to rapidly deliver new and differentiated applications and services for their customers, partners and employees. And the use of containers and microservices across a multi-cloud and hybrid environment is increasingly common.

In addition to leveraging public cloud services like IaaS, organizations are also rapidly adopting SaaS applications like Office 365, and expanding their use of mobile and collaborative applications to support remote working. Some are even arguing that working patterns may never be the same again, following the changes forced on many employers by the Covid-19 pandemic.

Combine these changes with networks that continue to extend to include branch offices and add new areas to protect like operational technology including industrial systems, and we can certainly see that the challenges facing the modern enterprise look nothing like they did a few years ago.

Under fire, under pressure

All of these infrastructure changes make for a broader attack surface that the bad guys can take advantage of, and they’re doing so with an increasingly wide range of tools and techniques. In the cloud there is a new class of vulnerabilities introduced through a greater use of open source, containers, orchestration platforms, supply chain applications and more. For all organizations, the majority of threats still prey upon the user, arriving via email (over 90% of the 52.3 billion we blocked in 2019), and they’re no longer just basic phishing attempts. There’s been an uptick in fileless events designed to bypass traditional security filters (we blocked 1.4 million last year). And Business Email Compromise (BEC) and ransomware continue to evolve, the latter causing major outages across local government, healthcare and other vulnerable sectors.

Organizations are often left flat-footed because they don’t have the in-house skills to secure a rapidly evolving IT environment. Mistakes get made, and configuration errors can allow the hackers to sneak in.

Against this backdrop, CISOs need visibility, detection and response capabilities across the extended enterprise. But in too many cases, teams are struggling because they have:

  • Too many security tools, in silos. Security leaders want to consolidate the 10, 20 or even 50+ security technologies currently in use across their organizations. And ideally, they need capabilities that work seamlessly together, sharing threat intelligence across security layers, and delivering a fully connected threat defense.
  • Too few people. Global cybersecurity skills shortages have now exceeded four million, with existing teams often overwhelmed by alerts, allowing serious threats to fly under the radar
  • Increased compliance pressures. CISOs are under pressure to comply with a number of regulations, and the impacts of non-compliance are increasingly strict. While newer, more demanding compliance requirements like GDPR and the California Consumer Privacy Act aim to protect data, they also present operational challenges for cloud teams with complex, manual and time consuming audits. Not to mention new regulations have teeth, with fines that can have a serious impact on the bottom line.  For example, as of March 2020, 227 GDPR fines had been levied, totalling over 466 million euros.

Beyond the endpoint

While endpoint detection and response (EDR) has become a popular response to some of these problems over recent years, the reality is that cyber-attacks are rarely straightforward and limited to the endpoint (as noted in the email statistic above). Security teams actually need visibility, detection, and response across the entire IT environment, so they can better contextualize and deal with threats.

This is what Trend Micro XDR offers. It provides visibility across not just endpoints but also email, servers, cloud workloads and networks, applying AI and expert security analytics to correlate and identify potential threats. The result is fewer, higher fidelity alerts for stretched IT security teams to deal with. Recognizing the skills shortage reality, we also offer a managed XDR service that augments in-house SOC activities with the power of Trend Micro security experts.

Detection and response is too important to be limited to the endpoint. Today’s CISOs need visibility, detection, and response everywhere.

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Letter from the CEO: A time of kindness and compassion

By Trend Micro

Dear Customers,

Together, we are facing a truly unprecedented situation and we have all had to adapt to the new reality. The global coronavirus pandemic is affecting our families, our communities, our organizations – indeed, it affects our perspective and way of life. As you certainly have too, at Trend Micro we have been busy over the past few weeks ensuring our employees are safe while also delivering uninterrupted service and protection for our customers. We have made it a priority to help organizations around the globe strengthen their security and ensure business continuity while so many of their employees work remotely.

As a global company with headquarters in Japan, we have been exposed to COVID-19 from the very early days when it first erupted in Asia. We have seen the massive impact this novel coronavirus has had on all of us: from social distancing, to families being separated, illness and even death. Our thoughts and prayers go out to everyone who has been impacted by the virus, directly or indirectly.

The safety of our employees is our first priority and for the last few weeks the vast majority of our employees are all working from home – all 7,000 across 60 countries. It is heartwarming to see the different activities teams have launched to stay connected while being apart: virtual happy hours or morning coffee meetings, online sports classes to stay fit together, movie watching nights and even remote karaoke. I sometimes feel that we are more connected now than ever before.

In the midst of these difficult times, we have also seen the amazing power of positivity and kindness around the world. I am very touched and proud of how our employees, our Trenders, are stepping up even more than usual to engage in acts of generosity and community support. A few examples include:

  • Employee-initiated neighborhood help services such as shopping for the elderly
  • Tools developed to help our medical heroes, for example a 3D printed clip that allows medical staff to wear face masks more comfortably
  • New content for students and parents who are now working from home, developed by our Internet Safety for Kids & Families team
  • Over 60,000 masks donated to our communities
  • Give & Match activities supporting underserved neighborhoods in India and the Philippines, with the company matching each employee donation.

We have also seen Trenders donating some of their accrued paid vacation days to colleagues who might need additional time off to take care of family. There have been thousands of such acts of kindness – likely many more that I’m not even aware of. Knowing the passion of our employees, I know that there are new activities being organized and happening at this exact moment.

In this same spirit, it is very important to me – as well as the entire executive team – that we do the right thing for our employees and our customers during these difficult times, rather than focusing solely on what’s best for our bottom line. We intend to retain all of our employees, and are working to ensure that our teams that work on commission will continue to have a steady income, no matter how business goes. We know that not every company is as fortunate as we are, and many family members of our employees are out of jobs, so our executives have also committed to reducing their salaries if necessary, to ensure that every employee will receive company bonuses for the first half of 2020. If we protect our Trend Micro family, our Trend Micro family can protect and care for their communities.

I understand these times are difficult and while we are celebrating acts of kindness and positivity, many of our friends and families are struggling with health issues and other concerns. Our hearts go out to all those who are affected, to our healthcare workers and all essential employees who help keep our lives going. We thank you from the bottom of our hearts.

Please stay safe – and stay at home!

Kind regards,

Eva Chen

 

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Shift Well-Architecture Left. By Extension, Security Will Follow

By Raphael Bottino, Solutions Architect

A story on how Infrastructure as Code can be your ally on Well-Architecting and securing your Cloud environment

By Raphael Bottino, Solutions Architect — first posted as a medium article
Using Infrastructure as Code(IaC for short) is the norm in the Cloud. CloudFormation, CDK, Terraform, Serverless Framework, ARM… the options are endless! And they are so many just because IaC makes total sense! It allows Architects and DevOps engineers to version the application infrastructure as much as the developers are already versioning the code. So any bad change, no matter if on the application code or infrastructure, can be easily inspected or, even better, rolled back.

For the rest of this article, let’s use CloudFormation as reference. And, if you are new to IaC, check how to create a new S3 bucket on AWS as code:

Pretty simple, right? And you can easily create as many buckets as you need using the above template (if you plan to do so, remove the BucketName line, since names are globally unique on S3!). For sure, way simpler and less prone to human error than clicking a bunch of buttons on AWS console or running commands on CLI.

Pretty simple, right? And you can easily create as many buckets as you need using the above template (if you plan to do so, remove the BucketName line, since names are globally unique on S3!). For sure, way simpler and less prone to human error than clicking a bunch of buttons on AWS console or running commands on CLI.

Well, it’s not that simple…

Although this is a functional and useful CloudFormation template, following correctly all its rules, it doesn’t follow the rules of something bigger and more important: The AWS Well-Architected Framework. This amazing tool is a set of whitepapers describing how to architect on top of AWS, from 5 different views, called Pillars: Security, Cost Optimization, Operational Excellence, Reliability and Performance Efficiency. As you can see from the pillar names, an architecture that follows it will be more secure, cheaper, easier to operate, more reliable and with better performance.

Among others, this template will generate a S3 bucket that doesn’t have encryption enabled, doesn’t enforce said encryption and doesn’t log any kind of access to it–all recommended by the Well-Architected Framework. Even worse, these misconfigurations are really hard to catch in production and not visibly alerted by AWS. Even the great security tools provided by them such as Trusted Advisor or Security Hub won’t give an easy-to-spot list of buckets with those misconfigurations. Not for nothing Gartner states that 95% of cloud security failures will be the customer’s fault¹.

The DevOps movement brought to the masses a methodology of failing fast, which is not exactly compatible with the above scenario where a failure many times is just found out whenever unencrypted data is leaked or the access log is required. The question is, then, how to improve it? Spoiler alert: the answer lies on the IaC itself 🙂

Shifting Left

Even before making sure a CloudFormation template is following AWS’ own best practices, the first obvious requirement is to make sure that the template is valid. A fantastic open-source tool called cfn-lint is made available by AWS on GitHub² and can be easily adopted on any CI/CD pipeline, failing the build if the template is not valid, saving precious time. To shorten the feedback loop even further and fail even faster, the same tool can be adopted on the developer IDE³ as an extension so the template can be validated as it is coded. Pretty cool, right? But it still doesn’t help us with the misconfiguration problem that we created with that really simple template in the beginning of this post.

Conformity⁴ provides, among other capabilities, an API endpoint to scan CloudFormation templates against the Well-Architected Framework, and that’s exactly how I know that template is not adhering to its best practices. This API can be implemented on your pipeline, just like the cfn-lint. However, I wanted to move this check further left, just like the cfn-lint extension I mentioned before.

The Cloud Conformity Template Scanner Extension

With that challenge in mind, but also with the need for scanning my templates for misconfigurations fast myself, I came up with a Visual Studio Code extension that, leveraging Conformity’s API, allows the developer to scan the template as it is coded. The Extension can be found here⁵ or searching for “Conformity” on your IDE.

After installing it, scanning a template is as easy as running a command on VS Code. Below it is running for our template example:

This tool allows anyone to shift misconfiguration and compliance checking as left as possible, right on developers’ hands. To use the extension, you’ll need a Conformity API key. If you don’t have one and want to try it out, Conformity provides a 14-day free trial, no credit card required. If you like it but feels that this time period is not enough for you, let me know and I’ll try to make it available to you.

But… What about my bucket template?

Oh, by the way, if you are wondering how a S3 bucket CloudFormation template looks like when following the best practices, take a look:

   
A Well-Architected bucket template

Not as simple, right? That’s exactly why this kind of tool is really powerful, allowing developers to learn as they code and organizations to fail the deployment of any resource that goes against the AWS recommendations.

References

[1] https://www.gartner.com/smarterwithgartner/why-cloud-security-is-everyones-business

[2] https://github.com/aws-cloudformation/cfn-python-lint

[3] https://marketplace.visualstudio.com/items?itemName=kddejong.vscode-cfn-lint

[4] https://www.cloudconformity.com/

[5] https://marketplace.visualstudio.com/items?itemName=raphaelbottino.cc-template-scanner

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This Week in Security News: Exploring Common Threats to Cloud Security and Zoom Removes Meeting IDs from App Title Bar to Improve Privacy

By Jon Clay (Global Threat Communications)
week in security

Welcome to our weekly roundup, where we share what you need to know about the cybersecurity news and events that happened over the past few days. This week, learn about why Zoom has released an update for its Linux, Mac, and Windows apps that removes the meeting ID from the app’s title bar. Also, read about Trend Micro’s latest research on cloud-specific security, with examples of threats and risks that organizations could face when migrating to the cloud or using cloud services.

Read on:

Trend Micro Study Shows Cloud Misconfiguration as Major Threat

This week, Trend Micro released new research findings concerning cloud security, a major area of concern for enterprises of all sizes. The research confirms the role of both human errors and complex deployments in creating cloud-based cyber threats; above all, Trend Micro notes the dangers of cloud misconfiguration to cloud environments.  

NCSA Small Business Webinar Series

The National Cyber Security Alliance is hosting a series of webinars for small business owners, and Trend Micro is proud to support this effort with guest speakers sharing threat intelligence and security expertise. The topics will help small companies deal with the challenges of COVID-19, including sessions on telework, digital spring cleaning, e-commerce security, how to avoid COVID-19 scams and more.

Cisco ‘Critical Update’ Phishing Attack Steals Webex Credentials

An ongoing phishing campaign is reeling in victims with a recycled Cisco security advisory that warns of a critical vulnerability. The campaign urges victims to “update,” only to steal their credentials for Cisco’s Webex web conferencing platform instead. The campaign is looking to leverage the wave of remote workers who have come to rely on online conferencing tools like Webex and other platforms.

Principles of a Cloud Migration – From Step One to Done

Cloud migrations are happening every day and analysts predict over 75% of mid-size to large enterprises will migrate a workload to the cloud by 2021 – but how can you make sure your workload is successful? In this multi-part blog series, Trend Micro explores best practices, forward thinking, and use cases around creating a successful cloud migration from multiple perspectives.  

Zoomed In: A Look into a Coinminer Bundled with Zoom Installer

Trend Micro recently found a Coinminer bundled with the legitimate installer of video conferencing app Zoom, luring users who want to install the software but end up downloading a malicious file. The compromised files are assumed to come from fraudulent websites. Trend Micro has been working with Zoom to ensure that they are able to communicate this to their users appropriately.

Investigation into a Nefilim Attack Shows Signs of Lateral Movement, Possible Data Exfiltration

Trend Micro’s Managed XDR (MxDR) and Incident Response (IR) teams recently investigated an incident involving a company that was hit by the Nefilim ransomware, which was initially discovered in March 2020. What makes Nefilim especially devious is that the threat actors behind the attack threaten to release the victim’s stolen data on an online leak site.

Zoom Removes Meeting IDs from App Title Bar to Improve Privacy

Video conferencing service Zoom has released an update for its LinuxMac, and Windows apps that removes the meeting ID from the app’s title bar. The update comes after the company’s users have often leaked their meeting IDs, and even meeting passwords, when sharing screenshots of their meetings on social media.

Analysis: Suspicious “Very Hidden” Formula on Excel 4.0 Macro Sheet

A malicious Microsoft Excel 4.0 Macro sheet with a suspicious formula that is set as “Very Hidden” was submitted by a customer and further analyzed by Trend Micro researchers. The sheet is not readily accessible via the Microsoft Excel User Interface (UI) due to a feature documented in the Microsoft website that allows users to hide sheets. The compromised files were commonly used as an attachment in spam.

Actively Exploited MS Exchange Flaw Present on 80% of Exposed Servers

Attackers looking to exploit CVE-2020-0688, a critical Microsoft Exchange flaw patched by Microsoft in February 2020, don’t have to look hard to find a server they can attack: according to an internet-wide scan performed by Rapid7 researchers, there are at least 315,000 and possibly as many as 350,000 vulnerable on-premise Exchange servers (out of 433,464 total) out there.

Misconfigured Docker Daemon API Ports Attacked for Kinsing Malware Campaign

A campaign that targets misconfigured Docker Daemon API ports through Kinsing malware was reported by security researchers from Aqua Security. The campaign exploited the ports to run an Ubuntu container. According to the researchers, Kinsing malware’s strings revealed that it is a Golang-based Linux agent.

Threat Actors Deliver Courier-Themed Spam Campaign with Attached ACE Files

Trend Micro researchers detected a new courier service-themed malicious spam campaign that uses ACE files as attachments. The samples were gathered from Trend Micro’s honeypot. The email poses as a shipment arrival notification with a fake receipt attached. It then convinces receivers to download the attachment by asking them to check if the address on the receipt is correct.blo

Exploring Common Threats to Cloud Security

Trend Micro’s recent cloud research provides examples of threats and risks organizations could face when migrating to the cloud or using cloud services. No matter the cloud service or platform, the common theme is that misconfiguration continues to be one of the major pitfalls of cloud security, affecting both companies who subscribe to cloud services and users of software that are hosted on the cloud.

PowerPoint ‘Weakness’ Opens Door to Malicious Mouse-Over Attack

A researcher is sounding the alarm over what he believes could be a novel attack vector which allows a hacker to manipulate a PowerPoint file to download and begin the installation of malware, simply by hovering over a hypertext link. The technique does require a victim to accept one pop-up dialogue box to run or install a program. For those reasons, Microsoft does not consider this a vulnerability.

Cloud Transformation Is the Biggest Opportunity to Fix Security

Lower costs, improved efficiencies and faster time to market are some of the primary benefits of transitioning to the cloud. However, it’s not done overnight. It can take years to move complete data centers and operational applications to the cloud and the benefits won’t be fully realized until most functional data have been transitioned.

Who is World Wired Labs and Why Are They Selling an Android Trojan?

A company advertising a remote access tool frequently used by criminals and nation-state hackers may be serving as a front for a Chinese hacking group, according to research published by BlackBerry Cylance. In a report on remote access trojans (RAT), researchers detail an Android malware variant, which they call PWNDROID4, that can be used to monitor targets’ phone calls, record audio, send and receive text messages, and track victims’ GPS location.

Is your organization looking to migrate to the cloud? Share your thoughts in the comments below or follow me on Twitter to continue the conversation: @JonLClay.

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Cloud Native Application Development Enables New Levels of Security Visibility and Control

By Trend Micro

We are in unique times and it’s important to support each other through unique ways. Snyk is providing a community effort to make a difference through AllTheTalks.online, and Trend Micro is proud to be a sponsor of their virtual fundraiser and tech conference.

In today’s threat landscape new cloud technologies can pose a significant risk. Applying traditional security techniques not designed for cloud platforms can restrict the high-volume release cycles of cloud-based applications and impact business and customer goals for digital transformation.

When organizations are moving to the cloud, security can be seen as an obstacle. Often, the focus is on replicating security controls used in existing environments, however, the cloud actually enables new levels of visibility and controls that weren’t possible before.

With today’s increased attention on cyber threats, cloud vulnerabilities provide an opportunistic climate for novice and expert hackers alike as a result of dependencies on modern application development tools, and lack of awareness of security gaps in build pipelines and deployment environments.

Public clouds are capable of auditing API calls to the cloud management layer. This gives in-depth visibility into every action taken in your account, making it easy to audit exactly what’s happening, investigate and search for known and unknown attacks and see who did what to identify unusual behavior.

Join Mike Milner, Global Director of Application Security Technology at Trend Micro on Wednesday April 15, at 11:45am EST to learn how to Use Observability for Security and Audit. This is a short but important session where we will discuss the tools to help build your own application audit system for today’s digital transformation. We’ll look at ways of extending this level of visibility to your applications and APIs, such as using new capabilities offered by cloud providers for network mirroring, storage and massive data handling.

Register for a good cause and learn more at https://www.allthetalks.org/.

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Cloud Transformation Is The Biggest Opportunity To Fix Security

By Greg Young (Vice President for Cybersecurity)

This overview builds on the recent report from Trend Micro Research on cloud-specific security gaps, which can be found here.

Don’t be cloud-weary. Hear us out.

Recently, a major tipping point was reached in the IT world when more than half of new IT spending was on cloud over non- cloud. So rather than being the exception, cloud-based operations have become the rule.

However, too many security solutions and vendors still treat the cloud like an exception – or at least not as a primary use case. The approach remains “and cloud” rather than “cloud and.”

Attackers have made this transition. Criminals know that business security is generally behind the curve with its approach to the cloud and take advantage of the lack of security experience surrounding new cloud environments. This leads to ransomware, cryptocurrency mining and data exfiltration attacks targeting cloud environments, to name a few.

Why Cloud?

There are many reasons why companies transition to the cloud. Lower costs, improved efficiencies and faster time to market are some of the primary benefits touted by cloud providers.

These benefits come with common misconceptions. While efficiency and time to market can be greatly improved by transitioning to the cloud, this is not done overnight. It can take years to move complete data centers and operational applications to the cloud. The benefits won’t be fully realized till the majority of functional data has been transitioned.

Misconfiguration at the User Level is the Biggest Security Risk in the Cloud

Cloud providers have built in security measures that leave many system administrators, IT directors and CTOs feeling content with the security of their data. We’ve heard it many times – “My cloud provider takes care of security, why would I need to do anything additional?”

This way of thinking ignores the shared responsibility model for security in the cloud. While cloud providers secure the platform as a whole, companies are responsible for the security of their data hosted in those platforms.

Misunderstanding the shared responsibility model leads to the No. 1 security risk associated with the cloud: Misconfiguration.

You may be thinking, “But what about ransomware and cryptomining and exploits?” Other attack types are primarily possible when one of the 3 misconfigurations below are present.

You can forget about all the worst-case, overly complex attacks: Misconfigurations are the greatest risk and should be the No. 1 concern. These misconfigurations are in 3 categories:

  1. Misconfiguration of the native cloud environment
  2. Not securing equally across multi-cloud environments (i.e. different brands of cloud service providers)
  3. Not securing equally to your on-premises (non-cloud) data centers

How Big is The Misconfiguration Problem?

Trend Micro Cloud One™ – Conformity identifies an average of 230 million misconfigurations per day.

To further understand the state of cloud misconfigurations, Trend Micro Research recently investigated cloud-specific cyber attacks. The report found a large number of websites partially hosted in world-writable cloud-based storage systems. Despite these environments being secure by default, settings can be manually changed to allow more access than actually needed.

These misconfigurations are typically put in place without knowing the potential consequences. But once in place, it is simple to scan the internet to find this type of misconfiguration, and criminals are exploiting them for profit.

Why Do Misconfigurations Happen?

The risk of misconfigurations may seem obvious in theory, but in practice, overloaded IT teams are often simply trying to streamline workflows to make internal processes easier. So, settings are changed to give read and/or write access to anyone in the organization with the necessary credentials. What is not realized is that this level of exposure can be found and exploited by criminals.

We expect this trend will increase in 2020, as more cloud-based services and applications gain popularity with companies using a DevOps workflow. Teams are likely to misconfigure more cloud-based applications, unintentionally exposing corporate data to the internet – and to criminals.

Our prediction is that through 2025, more than 75% of successful attacks on cloud environments will be caused by missing or misconfigured security by cloud customers rather than cloud providers.

How to Protect Against Misconfiguration

Nearly all data breaches involving cloud services have been caused by misconfigurations. This is easily preventable with some basic cyber hygiene and regular monitoring of your configurations.

Your data and applications in the cloud are only as secure as you make them. There are enough tools available today to make your cloud environment – and the majority of your IT spend – at least as secure as your non-cloud legacy systems.

You can secure your cloud data and applications today, especially knowing that attackers are already cloud-aware and delivering vulnerabilities as a service. Here are a few best practices for securing your cloud environment:

  • Employ the principle of least privilege: Access is only given to users who need it, rather than leaving permissions open to anyone.
  • Understand your part of the Shared Responsibility Model: While cloud service providers have built in security, the companies using their services are responsible for securing their data.
  • Monitor your cloud infrastructure for misconfigured and exposed systems: Tools are available to identify misconfigurations and exposures in your cloud environments.
  • Educate your DevOps teams about security: Security should be built in to the DevOps process.

To read the complete Trend Micro Research report, please visit: https://www.trendmicro.com/vinfo/us/security/news/virtualization-and-cloud/exploring-common-threats-to-cloud-security.

For additional information on Trend Micro’s approach to cloud security, click here: https://www.trendmicro.com/en_us/business/products/hybrid-cloud.html.

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Principles of a Cloud Migration – From Step One to Done

By Jason Dablow
cloud

Boiling the ocean with the subject, sous-vide deliciousness with the content.

Cloud Migrations are happening every day.  Analysts predict over 75% of mid-large enterprises will migrate a workload to the cloud by 2021 – but how can you make sure your workload is successful? There are not just factors with IT teams, operations, and security, but also with business leaders, finance, and many other organizations of your business. In this multi-part series, I’ll explore best practices, forward thinking, and use cases around creating a successful cloud migration from multiple perspectives.  Whether you’re a builder in the cloud or an executive overseeing the transformation, you’ll learn from my firsthand experience and knowledge on how to bring value into your cloud migration project.

Here are just a few advantages of a cloud migration:

  • Technology benefits like scalability, high availability, simplified infrastructure maintenance, and an environment compliant with many industry certifications
  • The ability to switch from a CapEx to an OpEx model
  • Leaving the cost of a data center behind

While there can certainly be several perils associated with your move, with careful planning and a company focus, you can make your first step into cloud a successful one.  And the focus of a company is an important step to understand. The business needs to adopt the same agility that the cloud provides by continuing to learn, grow, and adapt to this new environment. The Phoenix Project and the Unicorn Project are excellent examples that show the need and the steps for a successful business transformation.

To start us off, let’s take a look at some security concepts that will help you secure your journey into this new world. My webinar on Principles to Make Your Cloud Migration Journey Secure is a great place to start: https://resources.trendmicro.com/Cloud-One-Webinar-Series-Secure-Cloud-Migration.html

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NCSA Small Business Webinar Series

By William "Bill" Malik (CISA VP Infrastructure Strategies)
virus

Working from home? How do you keep your employees cyber-safe and cyber-secure? How do you protect your reputation, profit, and cash flow when you depend on your IT infrastructure as never before?

The National Cyber Security Alliance is hosting a series of webinars for small business owners, and we’re proud to support this effort with guest speakers to share our threat intelligence and security expertise.

The topics will help small companies deal with the challenges of COVID-19. The agenda is at https://staysafeonline.org/event_category/cybersecure-my-business/.

Here’s a quick overview of each session and why it might benefit your organization to tune in.

Telework Cybersecurity Best Practices – April 7: Many small business owners rely on face-to-face meetings with their teams. But, social distancing and work-from-home directives interrupt that way of doing things. In this session, we’ll discuss how to adjust your business to deal with a remote workforce. For some managers, not seeing every member of the team can be unsettling. We’ll talk about ways to overcome that barrier. For many organizations, using remote tools can put an extra burden on your IT gear and staff. We’ll talk about alternatives to lighten that load. And for most organizations, the new way of working can expose new and different information security vulnerabilities. We’ll offer some good practices to reduce your exposure.

Guest speakers from Trend Micro will be Greg Young and Ed Cabrera.

Spring has Sprung! Time for a Digital Spring Cleaning – April 14: One way to cut down on IT resource use is to get rid of unnecessary stuff. This webcast will suggest tactics to reduce the burden on your infrastructure. You will learn about cleaning up your storage, getting off unnecessary email lists, improving your – and your customers’ – privacy, and lowering your attack profile by getting rid of stale applications and services.

E-Commerce Security During COVID-19 – April 21, 2020: Businesses that rely on foot traffic are pivoting to on-line offerings. Restaurants support demand with delivery or curbside pick-up, which both put a strain on your IT resources. Unfortunately, the bad guys are exploiting weaknesses in on-line ordering and payment systems. We’ll talk about measures small businesses should consider to protect their reputation, cash flow, and profits during this transition.

Guest speakers from Trend Micro will be myself and Mitchel Chang.

How to Avoid COVID-19 Scams – May 5, 2020: Bad guys are trying to make money off Covid-19 worries. In this session, Lesley Fair, a Senior Attorney with the Bureau of Consumer Protection at the Federal Trade Commission talks about different kinds of scams and what to do about them, hopefully before anyone gets conned, and what steps you can take if you think you might have gotten stung. Ths session will be repeated on May 26.

Guest speakers from Trend Micro will be myself and Jon Clay.

What Are Phishing, Vishing and Smishing? How Can I Protect My Small Business From These Threats? – May 12, 2020: This session will discuss attacks that can arrive through email, messages, and video chats. Small businesses are targets as well as big firms and the public at large – the bad guys are going anywhere they can to make a (dishonest) buck. You’ll help your employees and customers protect themselves with some good advice, practices, and tools.

Mitchel Chang will be a guest panelist.

How to Avoid COVID-19 Scams – May 26, 2020: A second session of the May 5 discussion. This time Jon Clay and Myla Pilao will be guest speakers from Trend Micro.

Telework Cybersecurity Best Practices – June 9, 2020: A second session of the April 7 event. Greg and Ed will give a repeat performance attendees.

Each session starts at 2:00 PM Eastern time. NCSA will record each session, but you should register to listen in and ask questions live. While the information is tuned to meet the needs of small businesses, individuals at larger organizations, and the general public, will find good ideas and helpful hints an tips to stay safe and cope with this challenging time. We hope to see you soon.

What do you think? Let me know in the comments below or @WilliamMalikTM

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COVID-19: How Do I Work from Home Securely?

By Trend Micro

The coronavirus pandemic—the infection officially designated as COVID-19—is causing upheaval across the globe. Aside from the serious economic and public health implications, one very practical impact of shelter-in-place dictums is to force many companies to support remote working where they can. The most recent data tells us that in 2017, eight million Americans worked from home at least some of the week — amounting to around 5% of US workers. However, the events of the past few weeks are driving what is being described in certain sectors as the biggest shift to home working since 9/11.

This will ensure that many companies can continue functioning while helping to achieve social distancing to minimise the spread of the virus. But there are challenges, particularly to smaller businesses who don’t have IT security teams to assist with the transition. Hackers are primed and ready to take advantage of home workers, whose machines and devices may not be as secure as those in the office. There’s also a risk that workers are more distracted by current events when working at home, creating more opportunities for cyber-criminals to strike.

This isn’t just about hackers stealing your personal log-ins and information to sell on the dark web. In a home-working context, corporate data and systems may also be at risk. It takes just one unsecured remote worker to let the bad guys in. The damage they end up doing may be particularly difficult for employers to weather given the extreme economic pressures already on many firms.

With that in mind, therefore, let’s take a look at some of the major threats to home workers and their organizations, and what can be done to keep the hackers at bay.

The main threats

Phishing messages are by far the number one threat to home workers. Cyber-criminals are using widespread awareness of COVID-19, and a desire for more information on the outbreak, to trick users into clicking on malicious links or opening booby-trapped attachments. Many are spoofed to appear as if sent by trusted organizations such as the US Centers for Disease Control and Prevention (CDC) or the World Health Organization (WHO). They may claim to offer more information on the spread of the outbreak, tips on staying safe, and even provide details of how to get a non-existent vaccine online.

If you click through on a malicious link, the next stage of the attack could:

  • Take you to a convincing-looking log-in page (e.g., for Microsoft Outlook, Office 365, or any popular cloud apps) where your username and password could be harvested by hackers. With these, they have a foothold in the organization which could provide the foundation for a serious information-stealing attack.
  • Covertly initiate a malware download. This malware could exploit unpatched vulnerabilities on your computer to infect not just your machine but the entire corporate network it’s connected to, with ransomware, cryptojacking malware, banking trojans, information-stealing threats, and much more.

Brute forcing is another way for hackers to hijack your cloud accounts. They use previously breached username/password combos and run them through automation software to try them across billions of websites and apps. Because users reuse passwords across numerous accounts, the bad guys often get lucky and are able to unlock additional accounts in this way. Home workers using Microsoft Teams, Slack, Zoom and other cloud platforms for collaboration and productivity may be targeted.

Malicious smartphone apps are another threat to home workers. These may be disguised to trick the user into believing they’re downloading a COVID-19 tracker, for example. In reality, it could infect the device with ransomware, info-stealers, or other malware. That device could then spread the same malware to the corporate network, if it is connected to it via the home network.

Smart device threats are also a concern for home workers. More and more of us are investing in smart home devices. From voice assistants to smart speakers, connected refrigerators to smart TVs, it’s estimated that there’ll be as many as 128 million smart homes in the US by the end of this year. However, often these consumer-grade devices don’t have strong built-in protection. They may use weak, factory default passwords and/or contain multiple software vulnerabilities which are rarely patched by the manufacturer, if at all. The risk is that hackers could hijack one or more of these devices and use them as a stepping stone into the home and then corporate network – as we’ve demonstrated in previous research.

Friends and family could also introduce new cyber-threats, as they will also be confined largely to the home. That means they’ll be logging on to the home network with their own mobile devices, which may not be as well protected from threats as they should be. Once again, such threats could spread quickly from the home network to infect the enterprise network if it’s connected without adequate security controls. Another risk is of children using unsecured remote learning platforms, which may offer cybercriminals opportunities to hijack accounts, steal information and spread malware onto the network.

What are the hackers after?

Home workers represent an attractive target in their own right. After all, personal information and log-ins (home banking, Netflix, webmail etc) can be easily sold for a profit on dark web marketplaces. However, organizations represent a much bigger, potentially more lucrative pay day for cyber-criminals. While corporate PCs and networks might be fairly well secured, the rush to support home working may have left gaps the bad guys are keen to exploit.

By first compromising the home worker, and then pivoting through unsecured channels to the corporate network, hackers could spread ransomware, steal sensitive company IPs, infect work networks with crypto-mining malware, or steal large volumes of customer data. They may also look to hijack employees’ corporate email or other accounts as the first part of a multi-stage information-stealing attack. There have even been new warnings of Business Email Compromise (BEC) attacks in which employees (usually those working in the finance department) are contacted by someone posing as a senior exec and ordered to wire business funds to a new bank account.

Working safely at home

With so many techniques at their disposal, it’s easy to imagine that the bad guys have the upper hand. But by putting a few best practices in place, there are things businesses and employees can do today to reduce home working security risks.

Consider the following:

  • User awareness exercises to improve the ability of home workers to spot phishing attacks.
  • Ensure all home workers are outfitted with anti-malware for any devices used for work. Trend Micro Maximum Security is an excellent place to start for PCs and Macs, while Trend Micro Mobile Security can help secure Android and Mobile devices.
  • Require strong, unique passwords for all accounts, stored in a password manager, such as Trend Micro Password Manager.
  • Enhance the above by switching on two-factor authentication for all enterprise accounts that have it (including any cloud platforms).
  • Always use a VPN for communication between home and corporate networks.
  • Ensure staff have a clear route to report any security incidents.
  • Switch on automatic updates for all home computer systems (operating systems and software).
  • Ensure smart home devices are on latest software version and have strong passwords or 2FA.
  • Use a network security solution like Trend Micro Home Network Security to secure your home network. It not only provides a secure baseline for working at home, with its web and content threat protections; you can block your kids’ use of the internet and YouTube while you’re having conference calls or doing other bandwidth-intensive work on the remotely-accessed corporate network.
  • Tightly enforce endpoint security policies: if possible, only allow work devices to connect to the corporate network, and/or employee devices that have been previously scanned for threats.

We don’t know how long COVID-19 will last. But by adapting to the new reality as quickly as possible, businesses and their home workers can at least close down any security gaps, enabling them to be as productive as possible — while most importantly, staying safe and healthy.

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Riding another wave of success for our multi-layered detection and response approach

By Trend Micro

 

The corporate endpoint is a constant battle between cybersecurity white hats and criminal attackers. According to one study from the Ponemon Institute, 68% of organizations were victims of an attack on the endpoint in 2019. The risks and costs associated with undetected threats are immeasurable. Organizations need to detect and respond immediately before any significant damage is done.

In order to do this, CISOs must look beyond the endpoint to also include email, servers, cloud workloads and networks. This is the value of Trend Micro’s XDR platform. We heard feedback on this strategy recently, as Trend Micro was named a Leader in The Forrester Wave™: Enterprise Detection and Response, Q1 2020.

Under fire and over-stretched

Enterprise IT security teams are under unparalleled pressure. On one hand, they’re bombarded with cyber-attacks on a massive scale. Trend Micro detected and blocked over 52 billion such threats in 2019 alone. On the other hand, they’re facing a range of continuously evolving black hat tools and techniques including fileless malware, phishing, and supply chain attacks, that could lead to data theft and service outages. The stakes couldn’t be higher, thanks to an ever-tightening regulatory regime. All of this must be done with workforce challenges: the current cyber skills shortage for North American firms stands at nearly 500,000 workers.

These are the kinds of challenges facing Trend Micro customer MedImpact Healthcare Systems, the largest privately held pharmacy benefit manager (PBM) in the US. Processing more than one million healthcare claims daily, MedImpact must protect two primary data centers, three call centers staffed 24/7, and multiple private network routing centers — all to the strict compliance requirements of HIPAA, PCI DSS and other regulations.

As Frank Bunton, VP, CISO for MedImpact knows, effective endpoint detection and response (EDR) is vital to modern organizations. “EDR accelerates the threat analysis process so we can get to the solution faster,” says Bunton. “Speed to resolution is critical because we see attacks every day on just about every network.”

But MedImpact is similar to a lot of other organizations today in that it also appreciates the need to go beyond the endpoint for critical cross-layer detection and response. “XDR gives us the added confidence that our organization is protected on all fronts. If an endpoint detects a problem, it automatically uploads the suspect object to a tool that analyzes that problem and fixes it. By the time we are aware of an issue, the issue is resolved. There is no way we could manage this much information without extended security automation,” says Bunton.

The future is XDR

This is where XDR comes in. It has been designed to look not just at endpoint detection and response, but also to collect and correlate data from across the organization, including: email, endpoint, servers, cloud workloads, and networks. With this enhanced context, and the power of our AI and expert security analytics, the platform is able to identify threats more easily and contain them more effectively.

This matters to organizations like MedImpact, whose key challenge was “finding security solutions that could communicate with each other and share valuable data in real time.” XDR has visibility across the entire IT environment to detect earlier and with more confidence. It provides a single source of the truth and delivers fewer higher-fidelity alerts to enhance protection and maximize limited IT resources.

But don’t just take our word for it. Forrester gave us a perfect score for product vision, security analytics, performance, market presence and much more. “Trend Micro has a forward-thinking approach and is an excellent choice for organizations wanting to centralize reporting and detection with XDR but have less capacity for proactively threat hunting,” the report concluded.

To find out more… check out the Forrester report on leaders in this space.

Learn more from MedImpact’s success story.

 

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The Wawa Breach: 30 Million Reasons to Try Dark Web Monitoring

By Trend Micro

We’re all getting a little more worldly wise to the dangers that lurk around every corner of our digital lives. We know that the flipside of being able to shop, chat, bank and share online at the push of a button is the risk of data theft, ransomware and identity fraud. That’s why we protect our families’ PCs and mobile devices with security solutions from proven providers like Trend Micro, and take extra care each time we fire up the internet.

But what about the firms that we entrust to handle our data securely?

Unfortunately, many of these organizations still aren’t doing enough to protect our personal and financial information. It could be data we enter online to pay for an item or open an account. Or it could be payment card details that we’ve used at a local outlet which are subsequently stored online. These companies are big targets for the bad guys, who only have to get lucky once to crack open an Aladdin’s Cave of lucrative customer data.

What does this mean? That data breaches are the new normal. Last year in the US there were a reported 1,473 of these incidents, exposing nearly 165 million customer records. The latest affected customers of convenience store and gas station chain Wawa — and it could be one of the biggest ever, affecting 30 million cards.

Let’s take a look at what happened, and what consumers can do to steal a march on the bad guys.

What happened this time?

Wawa first notified its customers of a payment card breach in December 2019. But although the firm discovered malware on its payment processing servers that month, it had actually been sitting there since March, potentially siphoning card data silently from every single Wawa location. That’s more than 850 stores, across Pennsylvania, New Jersey, Delaware, Maryland, Virginia, Florida, and Washington DC.

The company itself has so far declined to put a number on how many customers have been affected. However, while cardholders were still wondering whether they’ve been impacted or not, something else happened. At the end of January, a hacker began to upload the stolen cards to a notorious dark web marketplace, known as Joker’s Stash.

They are claiming to have 30 million stolen cards in total, which if accurate could make this one of the biggest card breaches of its kind, placing it alongside other incidents at Home Depot (2014) and Target (2013).

How does it affect me?

Once the data goes on sale on a dark web market like this, it is usually bought by scammers, who use it in follow-on identity fraud attacks. In this case, the stolen data includes debit and credit card numbers, expiration dates and cardholder names, but not PINs or CVV records. That means they can’t be used at ATMs and fraudsters will find it hard to use the cards online, as most merchants require the CVV number.

However, if the cards are of the old magstripe type, they could be cloned for use in face-to-face transactions.

Although Wawa said it has informed the relevant card issuers and brands, the cardholders themselves must monitor their cards for unusual transactions and then report to their issuer “in a timely manner” if they want to be reimbursed for any fraudulent usage. This can be a distressing, time-consuming process.

What should I do next?

This is by no means the first and it won’t be the last breach of this kind. In the past, data stolen from customers of Hilton Hotels, supermarket chain Hy-Vee, retailer Bebe Stores, and restaurant chains including Krystal, Moe’s and Schlotzsky’s has turned up for sale on Joker’s Stash. It can be dispiriting for consumers to see their personal data time and again compromised in this way by cyber-criminals.

Too often in the aftermath of such incidents, the customers themselves are left in the dark. There is no information on whether they’ve definitively had their personal or card data stolen, just an ominous sense that something bad may be about to happen. If the company itself doesn’t even know how many cards have been affected, how can you act decisively?

Credit monitoring is often provided by breached firms, but this is a less-than-perfect solution. For one thing, such services only alert the user if a new line of credit is being opened in their name — not if a stolen card is being used. And second, they only raise the alarm after the incident, by which time the fraudsters may already have made a serious dent in your finances.

Monitoring your bank account for fraudulent transactions is arguably more useful in cases like the Wawa breach, but it’s still too reactive. Here’s a handy 2-step plan which could provide better results:

Step 1: Dark web monitoring works

To get more proactive, consumers need Dark Web monitoring. These tools typically scour dark web sites like Joker’s Stash to look for your personal information. The beauty of this approach is that it can raise the alarm after a breach has occurred, when the data is posted to the Dark Web, but before a fraudster has had time to monetize your stolen details. With this information, you can proactively request that your lender block a particular card and issue a new one.

This approach works for all personal data you may want to keep protected, including email addresses, driver’s license, passport numbers and passwords.

Step 2: Password protection

Once you’ve determined that your data has been part of a breach and is being sold on the dark web, one of the most important things you can do is to change your passwords to any stolen accounts, in order to minimize the potential damage that fraudsters can do.

This is where password manager tools can come in very handy. They allow users to store and recall long, strong and unique credentials for each of the websites and apps they use. This means that if one password is compromised, as in a breach scenario, your other accounts will remain secure. It also makes passwords harder for hackers to guess, which they may try to do with automated tools if they already have your email address.

Following a breach, it also makes sense to look out for follow-on phishing attacks which may try to trick you into handing over more information to the fraudsters. Here are a few tips:

  • Be wary of any unsolicited email, even if it appears to come from a reputable vendor
  • Don’t click on links in unsolicited emails, or download attachments
  • If an email asks you for personal data, check directly with the source, rather than clicking through/replying
  • Invest in AV with anti-phishing from a trusted vendor, for all desktop and mobile devices
  • Ensure all operating systems and applications are on the latest version.

How Trend Micro can help

Fortunately, Trend Micro has several products that can help you, as a potential or actual victim of a data breach, to proactively mitigate the fallout from a serious security incident, or to foil the fraudsters:

Trend Micro ID Security: checks if your personal information has been uploaded to Dark Web sites by hackers. This highly secure service, available in apps for Android and iOS mobile devices, uses data hashing and an encrypted connected to keep your details safe, alerting when it has found a match on the Dark Web so you can take action. Use it to protect your emails, credit card numbers, passwords, bank accounts, passport details and more.

Trend Micro Password Manager: provides a secure place to store, manage and update your passwords. It remembers your log-ins, so you can create secure and unique credentials for each website/app you need to sign-in to. This means if one site is breached, hackers will not be able to use that password to open your other accounts. Password Manager is available for Windows, Mac, iOS, and Android, synchronizing your passwords across all four platforms.

Trend Micro Fraud Buster: is a free online service you can use to check suspicious emails It uses advanced machine learning technology to identify scam emails that don’t contain malicious URLs or attachments but still pose a risk to the user, because the email (which may be extortionist) reflects the fact that the fraudster probably got your email address from the Dark Web in the first place. Users can then decide to report the scam, get more details, or proceed as before.

Fraud Buster is also now integrated into Trend Micro Security for Windows, protecting Gmail and Outlook webmail in Internet Explorer, Chrome, and Firefox. It’s also integrated in Trend Micro Antivirus for Mac, where it does the same for Gmail webmail in Safari, Chrome and Firefox on the Mac.

In the end, only you can guard your identity credentials with vigilance.

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How to Stay Safe as Online Coronavirus Scams Spread

By Trend Micro
Here, we'll take a look at several best practices for protecting kids on the Internet, and how, as a parent or guardian, you can do your part to help safeguard young users' online activities.

Few national emergencies have the ability to strike panic into the populace quite like a virus pandemic. It’s fortunately something most of us have never had to experience, until now. At the time of writing, the number of global confirmed cases of Coronavirus infection, or COVID-19, has reached nearly 174,000 worldwide. Although the official US total currently remains a fraction of that (around 4,000), problems with testing mean many cases are likely to be going unreported here.

This is a difficult time for many Americans, as it is for citizens all over the world. But unfortunately it’s extraordinary global events like this that cyber-criminals look for in order to make their schemes more successful. True to form, they’re using mass awareness of the outbreak and a popular desire for more information on the virus, to trick users into giving away personal information and log-ins, or to unwittingly install malware on their devices.

As organizations enforce remote working to reduce the impact of the virus, many of you will be logging-on from home or your mobile computing devices, which may have fewer built-in protections from such threats. This makes it more important than ever to know how the bad guys are trying to cash in on COVID-19 and what you can do to stay safe.

Here’s a quick guide to the key online threats and security tips:

Phishing for trouble

Decades before COVID-19 burst onto the scene, a different kind of pandemic was spreading across the globe. Phishing messages have been one of the most popular tools in the hackers’ arsenal for years. In fact, Trend Micro blocked nearly 48 billion email-borne threats in 2019, 91% of the total we detected. Phishing is designed to trick the user into handing over their log-ins or personal and financial details, or persuading them to unwittingly download malware. Cyber-criminals typically achieve this by spoofing an email to make it appear as if sent from a legitimate and trustworthy source.

Once a user has been hooked, they are enticed into clicking on a malicious link or opening a malware-laden attachment. This could be anything from a banking trojan designed to steal online banking log-ins, to a piece of ransomware which will lock the user out of their PC until they pay a fee. It could even be cryptojacking malware which sits on the infected machine, quietly mining for Bitcoin while running up large energy bills and slowing down your PC.

The bad news is that phishing messages — whether sent by email, social media, text or messaging app — are getting harder to spot. Many now feature perfect English, and official logos and sender domains. They also often use current newsworthy events to trick the user into clicking. And they don’t get more high-profile than the COVID-19 pandemic.

Depending on how well protected your computing devices are, you may be more likely to receive one of these scam messages than be exposed to the virus itself. So, it pays to know what’s out there.

Watch out for these scams

The phishing landscape is evolving all the time. But here is a selection of some of the most common scams doing the rounds at the moment:

‘Official’ updates

Many of these emails purport to come from official organizations such as the US Center for Disease Control and Prevention (CDC), or the World Health Organization (WHO). They claim to contain key updates on the spread of the virus and must-read recommendations on how to avoid infection. Booby-trapped links and attachments carry malware and/or could redirect users to phishing sites.

Coronavirus map

Sometimes legitimate tools can be hijacked to spread malware. Researchers have spotted a version of the interactive Coronavirus dashboard created by Johns Hopkins University which was altered to contain information-stealing malware known as AZORult. If emails arrive with links to such sites, users should exercise extreme caution.

Corporate updates

Many big brands are proactively contacting their customer base to reassure them of the steps they are taking to keep staff and customers safe from the virus. But here too, the hackers are jumping in with spoof messages of their own purporting to come from the companies you may do business with. FedEx is one such global brand that has been spoofed in this way.

Donations

Another trick is to send phishing emails calling for donations to help fund research into the virus. One, claiming to come from the “Department of Health” has a subject line, “URGENT: Coronavirus, Can we count on your support today?” A key tactic in phishing emails is to create a sense of urgency like this to rush the reader into making hasty decisions.

Click here for a cure

One scam email claims to come from a medical professional and contains details about a vaccine for COVID-19 which has been “hushed up” by global governments. Of course, clicking through to find the non-existent ‘cure’ will bring the recipient nothing but trouble.

Tax refunds

In the UK, users have received emails spoofed to appear as if sent from the government, and promising a tax refund to help citizens cope with the financial shock of the pandemic. As governments in the US and elsewhere start to take more interventionist measures to prop up their economies, we can expect more of these types of phishing email.

How to stay safe

The good news is that there’s plenty you can do to protect you and your family from phishing emails like these. A blend of the following technical and human fixes will go a long way to minimizing the threat:

  • Be cautious of any unsolicited emails/social media messages etc, even if they appear to come from a reputable organization or a known contact.
  • Don’t click through on any links/buttons in unsolicited emails, or download attachments.
  • If an email asks you for personal data, check directly with the sender rather than clicking through and entering those details.
  • Invest in cybersecurity tools from a trusted vendor like Trend Micro, to spot and block scam emails and block malicious downloads and websites.
  • Disable macros in Office files – these are often used by hackers to run malware.

How Trend Micro can help

Fortunately, Trend Micro Security can also help. Among its anti-phishing features are the following:

Antispam for Outlook: includes checks on email sender reputation, employs web threat protection to block malicious URLs in messages, and scans for threats in files attached to email messages.

Fraud Buster: uses leading-edge AI technology to detect fake emails in Gmail and Outlook webmail that don’t contain malicious URLs or attachments, but still pose a risk to the user.

To find out more about how Trend Micro can help keep your family safe from online threats and phishing, go to our Trend Micro Security homepage, or watch our video series: How to Prevent Phishing, Part 1 and Part 2.

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A message from our COO regarding Trend Micro’s Customer commitment during the global Coronavirus Pandemic (COVID-19)

By Trend Micro

The recent outbreak of COVID-19 has affected peoples’ lives across the globe and has quickly swept through and impacted individuals, families, communities, and businesses around the world. At Trend Micro, our number one priority is to ensure that our employees and their families are as safe as possible, and our thoughts are with those who have been affected by the virus.

Our team has spent a great deal of time reviewing options to ensure both the continued protection of our customers and partners, as well as the physical safety of our employees. We realize this situation remains very dynamic, as information continues to change day-to-day, and as such we will continue to provide updates as we learn more, but in the meantime we remain committed to providing the superior service and support that our customers, partners and suppliers have come to expect of our company throughout this situation.

We know the critical role that Trend Micro plays in your organization to keep your company and employees protected. We have taken several measures to ensure that the COVID-19 crisis does not impact your experience with Trend Micro products or services.

Listed below are several actions that the team has taken to date to not only ensure that our employees are safe, but to continue to deliver business “as usual” during this time:

Safety of Employees
Our number one priority is the health and safety of our employees around the globe. To that measure, we have:

  • Abided by local government guidelines: All of our global offices are adhering to guidelines and best practices from the Center for Disease Control (CDC), other global health organizations and local government guidelines.
  • Ability to work from remote locations: Many teams at Trend Micro have worked remotely from all corners of the globe for over a decade. This practice has enabled us to provide you with world-class products and service even in a time of social distancing. With the COVID-19 situation, we have shifted our workforce to virtual/remote wherever it is feasible, and we are maintaining critical onsite operations as needed.  At this time, we have not experienced any major impact to our business operations as a result of this temporary shift, and we will continue to closely monitor and adjust as appropriate to ensure we are continuing to deliver world class security protection and service for our customers and partners.
  • Travel restrictions: We have suspended all international travel, with only essential domestic travel permitted where still allowed (and if the employee is comfortable doing so).  As new restrictions are being placed daily, we will continue to closely monitor this situation and react appropriately.
  • Ongoing Vigilance: A cross-functional team within Trend Micro is closely monitoring all aspects of the crisis and will take prudent, agile, and swift action necessary to ensure the safety of our employees.  We are committed to doing our part to minimize the spread of COVID-19 while ensuring service continuity for you.

 

Continuity of Service
We are committed to ensuring that we continue to support the security needs of your organization, including but not limited to:

  • Product Infrastructure: All Trend products are built upon a highly reliable commercial cloud infrastructure and delivered through a variety of content delivery networks. This includes our ISO 27001-certified SaaS offerings.
  • Support Infrastructure: Our major global support centers have already shifted to remote/virtual operations and are working to ensure the customer experience is as seamless as possible.
  • Flexibility: As with any best-in-class SaaS organization, we are able to perform all systems monitoring and product development remotely.
  • Supply Chain: We are working very closely with our global suppliers and technical content providers/partners to ensure that availability and normal operations of our technology and services are not adversely impacted due to measures that they will have to put into place for combating this issue as well.
  • Resilience: Our R&D, Support and other technology teams are globally dispersed and able to provide you with around the clock access. Though geographically spread out, we are one global, highly coordinated team, dedicated to supporting your business needs. We have been operating in this model for decades, and we consider this to be one of Trend Micro’s inherent strengths for continuing to have a strong operational model in times of crisis such as this.

As an optimistic organization, we believe that because of this unfortunate situation, new ways to work together and incredible innovation will occur and will make us all stronger in the future.

As always, if you have any questions or concerns, please reach out to your local account representative or Trend Micro authorized support contact.   We will continue to watch this situation closely, react accordingly and communicate any substantial changes with our customers and partners.

On behalf of everyone at Trend Micro, thank you for trusting us with your business. We wish health and safety to you and your families, employees, and customers.

 

Sincerely,

Kevin Simzer

Chief Operating Officer

Trend Micro Incorporated

 

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Suddenly Teleworking, Securely

By Greg Young (Vice President for Cybersecurity)

So you suddenly have a lot of staff working remotely. Telework is not new and a good percentage of the workforce already does so. But the companies who have a distributed workforce had time to plan for it, and to plan for it securely.

A Lot of New Teleworkers All At Once

This event can’t be treated like a quick rollout of an application: there are business, infrastructure, and customer security impacts. There will be an increase of work for help desks as new teleworkers wrestle with remote working.

Additionally, don’t compound the problem. There is advice circulating to reset all passwords for remote workers. This opens the door for increased social engineering to attempt to lure overworked help desk staff into doing password resets that don’t comply with policy. Set expectations for staff that policy must be complied with, and to expect some delays while the help desk is overloaded.

Business continuity issues will arise as limited planning for remote workers could max out VPN licenses, firewall capacity, and application timeouts as many people attempt to use the same apps through a narrower network pipe.

Help Staff Make A Secure Home Office

In the best of times, remote workers are often left to their own devices (pun intended) for securing their work at home experience. Home offices are already usually much less secure than corporate offices: weak routers, unmanaged PCs, and multiple users means home offices become an easier attack path into the enterprise.

It doesn’t make sense to have workers operate in a less secure environment in this context. Give them the necessary security tools and operational tools to do their business. Teleworkers, even with a company-issued device, are likely to work on multiple home devices. Make available enterprise licensed storage and sharing tools, so employees don’t have to resort to ‘sketchy’ or weak options when they exceed the limits for free storage on Dropbox or related services.

A Secure Web Gateway as a service is a useful option considering that teleworkers using a VPN will still likely be split tunneling (i.e. not going through corporate security devices when browsing to non-corporate sites, etc.), unlike when they are in the corporate office and all connections are sanitized. That is especially important in cases where a weak home router gets compromised and any exfiltration or other ‘phone home’ traffic from malware needs to be spotted.

A simple way to get this information out to employees is to add remote working security tips to any regularly occurring executive outreach.

Operational Issues

With a large majority of businesses switching to a work-from-home model with less emphasis on in-person meetings, we also anticipate that malicious actors will start to impersonate digital tools, such as ‘free’ remote conferencing services and other cloud computing software.

Having a policy on respecting telework privacy is a good preventative step to minimize the risk of this type of attack being successful. Remote workers may be concerned about their digital privacy when working from home, so any way to inform them about likely attack methods can help.

Any steps to prevent staff trying to evade security measures out of a concern over privacy are likely a good investment.

Crisis Specific Risks

During any major event or crisis, socially engineered attacks and phishing will increase. Human engineering means using any lever to make it a little bit easier for targets to click on a link.

We’re seeing targeted email attacks taking advantage of this. Some will likely use tactics such as attachments named “attached is your Work At Home Allowance Voucher,” spoofed corporate guidelines, or HR documents.

Sadly, we expect hospitals and local governments will see increased targeting by ransomware due the expectation that payouts are likelier during an emergency.

But Hang On – It Is Not All Bad News

The good news is that none of these attacks are  new and we already have playbooks to defend against them. Give a reminder to all staff during this period to be more wary of phishing, but don’t overly depend on user education – back it up with security technology measures. Here are a few ways to do that.

  • Give your remote workers the security and productivity tools they need to protect themselves and their non-corporate IT resources.
  • Include an enterprise managed cloud storage account for work documents so employees don’t find free versions that may not be safe.
  • Enable customers and supply chain partners, who may also be teleworking, to interact with you securely.

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Tax Scams – Everything you need to know to keep your money and data safe

By Trend Micro

Tax season has always been a pretty nerve-wracking time for hard-working Americans. But over the years, technology advances have arrived to gradually make the process a bit easier. The bad news is that they can also introduce new cyber risks and even more stress.

There are two things that cybercriminals are always on the hunt for: people’s identity data from their accounts, and their money. And during the tax-filing season both can be unwittingly exposed. Over the years, cybercriminals have adapted multiple tools and techniques to part taxpayers with their personal information and funds.

Let’s take look at some of the main threats out there and what you can do to stay safe.

What do they want?

Cybercrime is a highly efficient money-making business. Some reports suggest this underground economy generates as much as $1.5 trillion each year. (See Into the Web of Profit, April 2018, McGuire, Bromium.) And tax-related scams are an increasingly popular way for the bad guys to drive-up profits. The Internal Revenue Service (IRS) claims that “thousands of people have lost millions of dollars and their personal information” to such attacks.

The bottom line is that they’re after one of two things: to trick you into wiring funds to them, and/or to get hold of your personally identifiable information (PII), including bank account and Social Security Numbers (SSNs). This personal data can subsequently be used to defraud you or the IRS, or may be deployed in follow-on identity fraud schemes to capture illicit funds from you.

There are various ways cyber-criminals can achieve these goals. The most common is by using social engineering tactics to trick taxpayers into sending money or personal information. But they might also use malware, either delivered to you personally or targeted at your tax preparer. This means you not only have to look after your own cybersecurity but also demand that the third-party businesses you work with store and transmit your sensitive information securely.

Look out for these scams

Here’s a round-up of the most popular tactics used by tax scammers today:

Impersonation: The fraudster gets in touch pretending to be an IRS representative. This could be via email, phone, social media or even SMS. They usually claim you owe the IRS money in unpaid taxes or fines and demand a wire transfer, or funds from a prepaid debit card. Sometimes they may ask for personal and financial details—for example, by claiming you’re entitled to a large tax refund and they just need you to supply your bank account info.

These interactions are usually pushy. The scammer knows the best way of making you pay up is by creating a sense of urgency and, sometimes, shaming the individual into believing they’ve been withholding tax payments. Phishing emails may look highly convincing, right down to the logo and sender domain, while phone callers will use fake names and badge numbers. Sometimes the scammers use personal data they may have stolen previously or bought on the Dark Web to make their communications seem more convincing.

In some impersonation scams, the fraudsters may even pretend to work for charities and ask for personal details to help disaster victims with tax refund claims.

Spoofing, phishing, and malware: In some cases, a text, email or social media message spoofed to appear as if sent from the IRS or your tax preparer actually contains malware. The scammers use the same tactics as above but trick the recipient into clicking on a malicious link or opening an attachment laden with malware. The covert download that follows could result in: theft of your personal information; your computer being completely hijacked by hackers via remote control software; or a ransomware download that locks your computer until you pay a fee.

Fake tax returns: Another trick the scammers employ is to use stolen SSNs and other personal information to file tax returns on your behalf. They can then try to claim a large payment in tax refunds from the IRS. The PII they use to file in your name may have been taken from a third-party source without your knowledge, and the first you might hear of it is when you go to file a legitimate tax return. It can take months to resolve the problem.

Attacks targeting tax preparers: Over half of Americans use third-party tax preparation companies to help them with their returns. However, this offers another opportunity for scammers to get hold of your sensitive information. In one recently discovered campaign, malware deployed on tax preparers’ websites was designed to download to the visitor’s computer as soon as they loaded the page. The IRS warns that businesses large and small are potentially at risk, as scammers are keen to get hold of tax information which enables them to file highly convincing fake returns in your name.

What to do

The good news is that by taking a few simple steps you can insulate yourself from the worst of these scams. Remember: the IRS does not contact taxpayers by email, text messages or social media to request personal/financial information— so if you receive communications that do, they are definitely a scam. It’s also important to remember that scams happen all year round, not just in the run-up to the tax filing deadline. That means, unfortunately, that you need to be on your guard all the time.

Here are a few other recommendations:

  • Install anti-malware from a reputable provider to block phishing emails and websites and prevent malware downloads.
  • Be wary of any unsolicited messages purporting to come from your tax preparer or the IRS. Always contact them directly to check whether it’s a genuine communication or not.
  • Don’t click on any links in unsolicited emails, or download attachments.
  • Obtain an Identity Protection PIN from the IRS before filing your taxes. This will prevent fake returns being filed in your name.
  • Alert phishing@irs.gov about any unsolicited emails from IRS scammers.
  • Protect your log-ins with tax preparation companies. Switch on multi-factor authentication (MFA) if available, and/or use a password manager to make your logins hard to guess or crack.

It also pays to demand that your tax preparer take their own precautions to keep your data secure. They should not be sending sensitive data or documents unencrypted in emails and must take steps on their own to combat phishing emails that target employees, since these can cascade to you during your tax preparation process. Whether hosted in the cloud or running on-premises, the servers that hold your data should also have adequate protection—and you have a right (and a duty to yourself) to ask ahead of time what they’re doing to protect it.

According to the IRS tax preparers should put the following internal controls in place:

  • Install anti-malware on all web and storage servers and keep their software automatically updated.
  • Encourage the use of unique, strong passwords via a password manager for each account, and deploy multi-factor authentication technology for clients.
  • Encrypt all sensitive files and emails exchanged with strong password protections.
  • Back-up sensitive data regularly to a secure off-site source.
  • Wipe clean/destroy any old hard drives and printers containing sensitive data.
  • Limit access to taxpayer data to staff who need to know.

How Trend Micro can help

Trend Micro offers a range of security tools to help taxpayers keep their personal and financial information safe from fraudsters.

Our flagship consumer solution Trend Micro Security (TMS) provides the following protections:

  • Protects against phishing links in emails that can take you to fraudulent sites. Its Fraud Buster feature for Gmail and Hotmail extends this to webmail.
  • Blocks malicious website downloads and scans for malware hidden in attachments.
  • Protects against ransomware and theft of sensitive data via Folder Shield.
  • Protects and manages strong, unique passwords with Password Manager, which is bundled with Trend Micro Maximum Security.

To find out more, go to our Trend Micro Security website.

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