finding
17 stories and discussions about finding, aggregated from every source we track.
For years, cybersecurity had one obvious problem: Finding vulnerabilities was...
Are generative (randomized) tests significantly more effective than example-based unit-tests at discovering bugs? There's an interesting discussion about this on lobste.rs. One argument in favor of unit tests is,…
How Firezone combines sans-IO design, deterministic simulation testing and coverage-guided fuzzing into one test harness for its WireGuard data plane.
:zap: From finding text to search and replace, from sorting to beautifying text and more :art: - learnbyexample/Command-line-text-processing
A treemap for finding and removing what fills your disk, for Omarchy. Rust + GPUI. - tobi/disktree
Agent Jesse crawls the live internet to surface high-intent B2B leads in real time — find impossible accounts instantly.
I have no idea how I keep finding these adventures for myself, but sometimes broken software finds me, even when I’m not actively looking for trouble. This is today’s adventure about Windows’ weirdness and cloning Linux.
Are generative (randomized) tests significantly more effective than example-based unit-tests at discovering bugs? There's an interesting discussion about this on lobste.rs. One argument in favor of unit tests is,…
ReacherX is an open-source △ Agent that finds relevant people on X/Twitter and LinkedIn, researches their background, and helps you plan outreach.
Are generative (randomized) tests significantly more effective than example-based unit-tests at discovering bugs? There's an interesting discussion about this on lobste.rs. One argument in favor of unit tests is,…
For a long time, sleep research has treated the cerebral cortex as a passive follower reacting to signals from the deep brain. “Usually, sleep is associated with being controlled by subcortical regions,” said Geoffrey Terral, a neuroscientist at the Albert Einstein College of Medicine in New York. The cortex is where the slow rhythms of deep sleep can be seen, but researchers assumed the signals that triggered them originated elsewhere. In a recent Nature study, Terral and Renata Batista-Brito, who runs the lab, report a population of cortical cells that challenges that assumption. These cortical cells make up only around one percent of the cortex's inhibitory neurons, and switching them on in a mouse puts the animal to sleep. “What our work shows is that the cortex can not only see this rhythm but also initiate it by itself, and this is sufficient to promote sleep,” Terral said. Read full article Comments