Rust is just the language they happened to be working in. If you read through the LLM generated garbage it becomes clear that io_uring isnt the problem, their code was just slop / bad.
He also decided that it was appropriate to say "The team threatened us with unfounded accusations of plagarism." Which has to be the absolute height of irony on both the counts of plagiarism and threats given that OpenAI has effectively admitted to likely plagiarism with their deliberate non-answers, and explicitly admitted to threatening them.
Curses, the TUI library, has been around since 1978. It was superseded by ncurses in 1993, which saw it's latest update in December of 2025. Both of them still work and can be used today, with the caveat that the official original curses has been deprecated since 95, but NetBSD maintains an updated version iirc.
You clearly didn't actually look at the link and are just responding to the title. There's Supreme Court precedent. It doesn't get any clearer than that.
As the sibling comment said, the existing precedent is for an entirely different scenario. If a human claims no involvement then it's fair to say they have no ownership. But if I meticulously guide an LLM to implement precisely the code I want to be written, that's an entirely different thing which has not been tested in court.
A similar concept: if I type the code via a brain-computer interface, does the interface get ownership because it is inferring my intent? If I type it via an LLM, why is that less legitimately my creation?
It's fine if I vibecode something and never look at or claim ownership of the code, but if I am actively involved in all of the code but it is written to disk by new tools instead of old tools, why is it suddenly not mine?
I don't think you read the cases. The Thaler one is about AI created art not code, and Thaler stated that the agent was "the sole creator of the work". The case got no further than that. Thaler said he had no involvement: open and shut case.
I think the point is that breaking it up makes the cost more palatable. It's also easier to convince people to spend a bit of money for people they care about than a bunch for themselves that they don't strictly need. People also often struggle to think of gift ideas for birthdays.
True, but you're still buying an entire battery yourself in the course of a calendar year.
I love the spirit behind this but it's strange advice. I consider myself lucky to have a healthy roster of adult friends, and I still think getting 16 of them to spend significant money on each other's birthday would be a big ask to pull off.
Thanks, but I did read the policy. This is what they say: "It's fine to use LLMs to answer questions, analyze, distill, refine, check, suggest, review. But not to create."
And later:
"There are very strict guidelines on LLM-generated code changes:
Pre-arranged, non-critical, high-quality, well-tested, and well-reviewed code changes that are originally created by an LLM are allowed, with disclosure."
That's a pretty limited wedge of allowed cases in my opinion.
They explicitly say that "create" is not the hard or valuable part. I suggest you actually read their policy instead of just the headline and then reacting to comments.
Darktable should already basically do all of this with their existing copy and import function. The only thing it won't do is erase the SD card for you, and generally I would recommend you just format it on the camera.
The A/C cannot keep up the load, due to the exteme heat. So they decided to just not cool one part of the building, to be able to keep cooling the other part ..
It is now interesting who was in which part ;)
The article indicates they were unable to handle the increased electricity load, which caused blackouts.
Additionally, sometimes unnaturally high temperatures break AC systems put in place with poor planning. This is very common in UK supermarkets every summer.
I know the average temps have gone up and there have been more extremes, but it's not like it moved 20˚F. They really don't have that level of tolerance in these systems? USA and other countries have been dealing with global warming too, the A/C still works.
The affected building was last renovated in the early 1990s, where average max temperature was around 18 degrees.
But even now "normal" average max temperature is only 21.7 degrees[1] and on the 23 of June temperatures reached 36.6 degrees, which is indeed over 20 deg F hotter than the normal maximum temperature for June.
I get what you mean with the normal max temp being 21.7C, but would expect the AC to be able to handle the peaks, and 33.5C wasn't unheard of ~20 years ago. Not sure what the situation was in the early 1990s, but they had 30 years to figure it out.
If it's every summer, how is it unnatural? If it's poor planning how is it every summer? There's poor planning and then there's ... what, forgetting that summer happens? It sounds to me like somebody sat down and penciled in some numbers and decided that "it makes less money to let it break?" which seems pretty weird when you consider second-order stuff (but it's not like people tend to do that anyway)
Because a lot of electric grids are too old to handle the increased load.
To translate: When it's hot, air conditioners use more electricity. This is because they use more electricity because they have to work harder to keep a cool temperature.
The reason why electric grids are too old to handle the load is because:
Electric grids were built for smaller populations with the assumption that we'll build more as we make more babies; AND; electric grids weren't built to handle the temperature rise from climate change.
>Because a lot of electric grids are too old to handle the increased load.
Well maybe we can cool ourselves with gas/oil burning air conditioners like in winter.
>with the assumption that we'll build more as we make more babies
Babies don't build infrastructure. And EU cities had more migration instead of babies and yet they still didn't build more infrastructure to keep up with the migration population growth. Why is that?
> electric grids weren't built to handle the temperature rise from climate change.
But somehow they're built to handle running all the new heat pumps we want to have in winter?
Presumably the AC systems themselves couldn't operate in that extreme heat. A lot of grocery stores in the UK, which are icy cold usually, had major issues with AC and refrigeration systems failing - I think because a lot of the equipment is on the roof and exposed to the heat.
AC systems don't quite care about direct sunlight, they are forced air heat exchangers. Now if the condenser (rooftop) side is undersized and therefore inadequate given elevated ambient air temperature all you can do is shut down a portion of evaporation side (the cold one) off, or the entire system just stops working.
Alternatively one can install water sprinkers on roofs like they do in China.
Its pretty common to se the AC systems on the top of roofs on big buildings in the US. From what I read, exposing the AC condenser unit to the sun should have minimal impact. Air flow through the condenser unit matters the most. Perhaps they were undersized for the extreme heat now happening in the UK.
my guess is that the outdoor AC unit reached its maximum working temperature...
since we're not that used to extreme heat in EU, units with max working temperatures of 45 degrees Celsius are pretty common and the air around the AC unit is warmer than regular outdoors air, doubly so if they're placed on the ground and the glass from the building reflects some additional heat from the sun.
the risk of this was broadcasted in our local news for home AC owners when the forecast reached 40, as lots of apartments have the AC on partly glass-encased balconies, or on walls facing direct sunlight...
Based on the little information provided the AC can't keep up. So they cut off the lower half of the building to provide better cooling to the other half
This isn't your home with open stairwells and loose venting doorjams. This is a thirteen story office building with elevators and badged access easements.
My dorm room was on the ninth floor of a nine floor building.
I assure you, heat passes through elevator shafts and floors just fine, and office buildings aren't usually built like a BSL-4 laboratory. If anything, they're typically less insulated than a regular old house.
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