This Week In Security: AI Generated Reports, More AI Generated Reports, GitHub Chaos, And More Linux Vulnerabilities

Google’s Project Zero demonstrates a new zero-click exploit for the Pixel 10 phones, showing a full escalation from remote to kernel without user interaction. During the investigation Project Zero found unprotected memory access from userspace in the Tensor G5 video processing chip driver, which allows direct write access to kernel memory.

Using previously discovered flaws in media decoding components — in this case CVE-2025-54957 in the Dolby digital audio decoder — Project Zero modified a Pixel 9 attack to work on the Pixel 10, despite newer protections built into the hardware to harden the system against memory corruption.

The author’s takeaway is mixed. Once the bug on Pixel 9 was reported, one could hope that the Android team would look into similar bugs in their newer systems. On the positive side, though, Project Zero reported the vulnerabilities to the Android team in November 2025 and they were patched in February of 2026, 71 days later. That’s 19 days short of the 90-day timeline.

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This Week In Security: Another Linux Exploit, Ubuntu Knocked Offline, Finals Interrupted, And Backdoored Tools

After the CopyFail vulnerability gave root access from any user on almost all distributions last week, this week we’ve got DirtyFrag. This chains the vulnerability in CopyFail (xfrm-ESP) and a new vulnerability in a RPC function which allows similar overwriting of the page cache.

Both vulnerabilities manipulate the Linux page cache where data from disk is stored for rapid access. The kernel will always prefer the cached version of a file, which means that anything that is able to manipulate the contents of the cache can effectively replace the contents of the file. Both of the vulnerabilities leverage a similar mechanism – picking a binary which is flagged to run as root, such as su, and replacing the contents that would prompt for the users password with a launcher to immediately run a shell.

Like CopyFail, DirtyFrag requires the ability to execute code on the target in the first place, but turning almost any code or command execution vulnerability in any network service into root raises the impact significantly, allowing an attacker to break out of containers and privilege environments, or establish a persistent presence in the system when the original vulnerabilities are discovered and closed.

The previous mitigations to block specific kernel modules related to CopyFail are not sufficient to block the new vulnerabilities. At the time of writing this, there are no available patches from the distributions, however the vulnerable kernel modules can be temporarily disabled.

CopyFail added to KEV

CISA (the United States cyber security agency) has added CopyFail to the KEV, or Known Exploited Vulnerabilities list. Attacks on the KEV have been observed under active exploitation, which in the case of CopyFail is hardly a surprise.

The KEV is designed as a tool to allow security teams in government and commercial industry to prioritize the highest risk vulnerabilities – or at least give another source of data to point at when you say “we really need to patch this now”.

Prolonged Ubuntu DDOS

On the heels of the CopyFail vulnerability impacting almost all distributions, Ubuntu has had to face a prolonged distributed denial-of-service (DDoS) attack against the main infrastructure. Ars Technica reported at the beginning of the attack, and after several days, services appear to be restored. In the meantime, core services such as package updates, core repositories, and even the Ubuntu and Canonical websites were largely unreachable.

An Iraqi group claims responsibility for the attack, but it is unclear if they were the actual perpetrators – or why. The timing with the CopyFail vulnerability seems like an opportune moment to cause chaos by taking the update mechanisms of a major distribution offline, but in the era of modern Internet behavior, it could also just have been a Tuesday.

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This Week In Security: Flatpak Fixes, Android Malware, And SCADA Was IOT Before IOT Was Cool

Rowhammer attacks have been around since 2014, and mitigations are in place in most modern systems, but the team at gddr6.fail has found ways to apply the attack to current-generation GPUs.

Rowhammer attacks attach the electrical characteristics of RAM, using manipulation of the contents of RAM to cause changes in the contents of adjacent memory cells. Bit values are just voltage levels, after all, and if a little charge leaks across from one row to the next, you can potentially pull a bit high by writing repeatedly to its physical neighbors.

The attack was used to allow privilege escalation by manipulating the RAM defining the user data, and later, to allow reading and manipulation of any page in ram by modifying the system page table that maps memory and memory permissions. By 2015 researchers refined the attack to run in pure JavaScript against browsers, and in 2016 mobile devices were shown to be vulnerable. Mitigations have been put in place in physical memory design, CPU design, and in software. However, new attack vectors are still discovered regularly, with DDR4 and DDR5 RAM as well as AMD and RISC-V CPUs being vulnerable.

The GDDR6-Fail attack targets the video ram of modern graphics cards, and is able to trigger similar vulnerabilities in the graphics card itself, culminating in accessing and changing the memory of the PC via the PCI bus and bypassing protections.

For users who fear they are at risk — most likely larger AI customers or shared hosting environments where the code running on the GPU may belong to untrusted users — enabling error correcting (ECC) mode in the GPU reduces the amount of available RAM, but adds protection by performing checksums on the memory to detect corruption or bit flipping. For the average home user, your mileage may vary – there’s certainly easier ways to execute arbitrary code on your PC – like whatever application is running graphics in the first place!

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