Suppose you get a paper, you automatically implement the code, and then modify it a bit with a novel idea, and publish your paper. Then somebody else does that with your paper, and does the same.. at some point, we will have a huge quantity of vibe coded code on github, and two similar papers will have very different underlying implementations, so hard to reason about and hard to change.
From a learning perspective, you try to understand the code, and it's all spaghetti, and you loose more time understanding the code than it would take to just reimplement it. You also learn a lot by not only reading the paper but reading the authors code where most of the small details reside.
And I'm not even talking about the reliability of the code, test to know that it's the correct implementation. Authors try to make papers as close as possible to the implementation but sometimes subtle steps are removed, sometimes from inadvertance, sometimes because the number of pages is lionmited.
A paper and an implementation are not one-to-one mappings
That may actually be an improvement over much of the code that is generated for papers.
I would love to have a structured approach to help students learn to use better LLMs. What I have observed (for uni students) is that they produce better code overall, but have no idea how it works, and would not be able to reproduce it without LLMs. (this is from first to last year)
I agree with you in general, but maybe the jump would be similar to the one from hand-written punchcards/assembly to higher level compilers. Very few people worry about the asm generated from GHC for example. So maybe a lot of code would be like that. I also imagine at some point a better intermediate language for LLMs to generate will be discovered and suddenly that's how most programs will be written.
We should have the technology now to hand-write pseudocode on a piece of paper (or whiteboard or chalkboard), and have it translated and executed. Maybe you even hook up a projector, and project the output back onto the board