biggonometry retweeted
Whoever made ohne cry count ur bloody days mate.
pick' ems are beyond cooked
HUGE COMEBACK ON SUMMIT
@T1 survives to fight another day at #VALORANTChampions Shanghai!
biggonometry retweeted
🇰🇷 NS Head Coach SilKanoN: "I think many of the head coaches on other teams would relate to the fact that we just don't even have enough time to get adjusted to the new patch right after an international.
Because after our win in Santiago, we had less than 10 days. Yoru got nerfed, and it's not even like we had the full 10 days, because we had media day, we had to tech check, and it's not like we can scrim back to back to back right after our long flights. So that would be the thing.
And secondly, on a similar note, there are too many changes between events. When EWC first started, the Neon jump wasn't nerfed, and then in the groups there was a new map, and then it was nerfed. It was more like it was up to the teams to adapt to the changes on the fly, and whoever manages to adjust the fastest manages to win.
So we just don't even have enough time to prepare ourselves. And right after EWC too, we also had to compete in Stage 2, so again, no time.
And I'm sure that all the teams here that are competing can relate to this."
(via @zahkriiven of @hotspawnval)
biggonometry retweeted
Like I genuinely wish ai didnt exist, this wouldve been a game changer
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biggonometry retweeted
Meteor was on the same ranked team as JAWGEMO, and after the game, JAWGEMO shouted “Let’s go G2!” so Meteor had to yell “Let’s go T1!” over and over until he won the shouting match 🤣🤣🤣 🤣🤣
#Meteor
biggonometry retweeted
For everyone asking:
- yes it's real
- 6 month term
- money well spent to get this mf off the internet
His lawyers are now pressing us hard to have this contract scrapped but we will stay strong
biggonometry retweeted
Timeline was hot yesterday and rightfully so. Went to bed and woke up this morning realizing something…
Maven is getting a ton of flack for very obvious reasons but she is also undeniably guilty. Haven’t seen her name being tarnished nearly as much as it should as well.
friendly reminder
I don't recommend anyone scramble to move their funds to new wallets today. But we should take the risks to cryptography from AI-accelerated math seriously, and minimize our exposure to not just quantum-vulnerable cryptography, but also potentially AI-vulnerable cryptography.
The core new area of risk from this viewpoint is, unfortunately, ML-DSA / FHE / lattices.
(and it's also another reason, along with quantum, why ECDSA might fall even faster than expected, hence the "fresh address" recommendation)
So far most people have been in the mode of thinking "elliptic curves broken, hashes safe, lattices safe". But there is a good chance that the concrete security of lattices will take serious hits from the next two years of AI math.
The basic threat model is: factoring is something that naively takes 2^(n/2) time, but over decades smart people have found and optimized number field sieves, and degraded that to 2^O(n^(1/3)), which is why RSA keys and signatures need to be ~400 bytes (and not 64 bytes). What if there are skeletons in the closet like that, both for elliptic curves and lattices, that we are simply not smart enough to discover - but bots soon will be?
This is a major part of the reason why for the past year ethereum's lean roadmap has been going in the "hash-only" direction: no lattices, no ML-DSA, no Falcon, no lattice-based commitments inside ZK proofs, etc. Signatures in lean ethereum are all hash-based, either WOTS or SPHINCS-.
For signatures and proofs, we already know how to go hash-only. The bigger challenge is for *public-key encryption* - and this goes far beyond blockchains. Secure communication, anonymizing protocols, lots of things need public-key encryption.
And unfortunately there are long-standing mathematical theorems showing why public-key encryption cannot be done with hashes alone. You have to have some kind of trapdoor object that has at least one form of usable "structure" - either group theory (incl. isogenies) or lattices or code-based or potentially in the future even more newfangled and spooky things (local mixing?). But for anything that has structure, you should assume that AI will make at least some progress in breaking that structure. Here, one reasonable inference is that if you want to make something plausibly long-term secure, multiply the key sizes by 10.
To me that's a very plausible world and something not at all extreme to predict. If AI will bring us 50 years of math in 2 years, then that 50 years of math may very plausibly include a "naive factoring -> GNFS" level of improvement to our ability to break lattices. In that world, lattices will still exist, but they will have to be significantly bigger to guarantee the same level of safety.
And at those new larger sizes, hash-based constructions will beat lattice-based constructions on concrete efficiency in every use case where hash-based constructions are possible at all.
Theoretically, of course it's possible that hashes are broken too (eg. P = NP would imply that). But I think P = NP is very unlikely. And intuitively, it's much more likely that a mathematical object has exactly no exploitable structure (like hashes are intended to), than that a mathematical object has exactly ~3 forms of exploitable structure (for elliptic curves: associativity, Schoof, pairings) and not some secret fourth form of structure we have not yet discovered that greatly degrades its security (for elliptic curves, ECDLP and pairing security). Similar for LWE, SVP, RLWE and the zoo of lattice problems.
For this reason, we do not yet see any reason to worry and start padding the byte size of hashes (if we start to worry more, we would pad the round count first before doing anything to the byte size).
Concrete TLDR, my own personal views:
* Hash-based > lattice-based, in those situations where hash-based is possible at all
* For anything lattice-based, be much more paranoid on param sizes. Remember that blockchains are only a small portion of the cryptography story; this point goes far beyond blockchains and applies to eg. access to websites, secure messaging, Tor / VPNs ...
* For privacy protocols, strongly favor NOT putting encrypted notes onchain. Instead, send them offchain through some third-party mechanism.
* If it's not difficult for you, keeping your funds in addresses which have not yet been used to make a transaction is a good idea. If it's easy for you, do it. **But be careful about migrations; I personally have lost more money in botched migrations than I have lost in all hacks combined**.
* For multisig wallets, doing confirmations offchain is better than onchain, because this way the signatures of signer wallets do not get exposed to the public, so if ECDSA falls to AI much faster than expected, at least the multisig "gracefully degrades" to a 1-of-1 where the 1 is whoever was gathering the signatures - a much better place to be than "anyone can take the money"
firefly.social/post/x/210783…
biggonometry retweeted
"oh another clickbait video about destiny content vault i cant wait for them to say nothing of valu- LINUS TECH TIPS??"