Do It by Code
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We uhhhhh... do things by coding them.
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Open mail relay

An open mail relay is a Simple Mail Transfer Protocol (SMTP) server configured in such a way that it allows anyone on the Internet to send e-mail through it, not just mail destined to or originating from known users.
This used to be the default configuration in many mail servers; indeed, it was the way the Internet was initially set up, but open mail relays have become unpopular because of their exploitation by spammers and worms. Many relays were closed, or were placed on blacklists by other servers.

https://en.m.wikipedia.org/wiki/Open_mail_relay
New York Tribune newspaper, December 4, 1921 (104 years ago)
sora2:
https://sora.chatgpt.com/

invite code:
3RZ05P (can be used only 4 times)
note:
* requires USA VPN
* it has way too many brainrots
CVE-2025-9864: Use after free in V8 in Google Chrome prior to 140.0.7339.80 allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (Chromium security severity: High)

- issue tracker
- announcement
- heapspray PoC
- Heap spraying
there is a really basic kind of mutex in computer science that requires no operating system features: the spinlock.

Instead of blocking, the threads simply try to lock it again and again in a tight loop, thus burning CPU time until the mutex is free again.

Because they avoid overhead from operating system process rescheduling or context switching, spinlocks are efficient if threads are likely to be blocked for only short periods.
For this reason, operating-system kernels often use spinlocks. However, spinlocks become wasteful if held for longer durations, as they may prevent other threads from running and require rescheduling.

The longer a thread holds a lock, the greater the risk that the thread will be interrupted by the OS scheduler while holding the lock. If this happens, other threads will be left "spinning" (repeatedly trying to acquire the lock), while the thread holding the lock is not making progress towards releasing it.
The result is an indefinite postponement until the thread holding the lock can finish and release it. This is especially true on a single-processor system, where each waiting thread of the same priority is likely to waste its quantum (allocated time where a thread can run) spinning until the thread that holds the lock is finally finished.

Implementing spinlocks correctly is challenging because programmers must take into account the possibility of simultaneous access to the lock, which could cause race conditions. Generally, such an implementation is possible only with special assembly language instructions, such as atomic (i.e. un-interruptible) test-and-set operations and cannot be easily implemented in programming languages not supporting truly atomic operations.
1
https://www.pixnapping.com/

Pixnapping is a new class of attacks that allows a malicious Android app to stealthily leak information displayed by other Android apps or arbitrary websites. Pixnapping exploits Android APIs and a hardware side channel that affects nearly all modern Android devices. We have demonstrated Pixnapping attacks on Google and Samsung phones and end-to-end recovery of sensitive data from websites including Gmail and Google Accounts and apps including Signal, Google Authenticator, Venmo, and Google Maps. Notably, our attack against Google Authenticator allows any malicious app to steal 2FA codes in under 30 seconds while hiding the attack from the user.
Any running Android app can mount this attack, even if it does not have any Android permissions (i.e., no permissions are specified in its manifest file).
2
container escape via "masked path" abuse due to mount race conditions

https://github.com/opencontainers/runc/security/advisories/GHSA-9493-h29p-rfm2
source - @govd_bot
description: Nano Banana 2 CRAZY image outputs:

I was lucky enough to know someone who has access to nano banana 2 and have tested many outputs over the last 2 weeks, here are some of my favourites.

Check comments for more outputs.