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i am once again here to say agent discovery & registry hell is one of the least impactful things to focus on that for whatever reason keeps nerd sniping cracked ppl...most "mid" solutions for it are good enough and "better" solutions barely move the needle
either you:
1) actually take your 'thought experiment' to its sci-fi logical conclusion wrt "autonomous" + "trustless" agents and make them a first class citizen by enshrining the {fdn model, tool use, etc.} components of an agent directly into the chain* (we do this) rather than frankensteining together some off-chain & on-chain stuff as mentioned in 8004 (we did this: infernet)
2) stay grounded in reality & grok how the largest b2b / b2b2c web2 agent startups (sierra, decagon, ...) that are printing real $$$ work. either they're in the camp of single general purpose agent deployed many times or a statically defined computational graph of how specialized agents communicate. this intellectual masturbatory notion of dynamic graphs of agents discovering each other much less useful than you may think if you're in the camp of web2 cos getting real users.
if you're not in this camp, and believe in futuristic settings, then you should do 1).
anything in between is worst of both worlds imo.
*feel free to @ me but your fave L1 today (eth, solana, monad, ...) doesn't allow for enshrined agents. it's also highly non-trivial for them to do this given it's not in line with their fundamental design.
expanding the exec clients' vm to handle fwd passes across oss llms, network calls for tool use, etc. is the easy part.
hard part is bypassing replicated exec in consensus for non-deterministic behavior w/out ~degrading safety/liveness, fee mech, and how to allow for scheduled txs to exist in a way without borking the perf / end UX for regular txs.
wouldn't be possible for us without the gigabrains @noamnisan @n_durvasula @bahrani_maryam and others coming up with some new machinery.
reality is most L1s are an exercise in networking-bound settings...we're in an exec-bound one.

8月19日 04:05
以太坊正在为人工智能做好准备。(erc-8004) 由 @DavideCrapis 刚刚发布,名为“无信任代理”,以下是你需要知道的:
但首先:
你可以把以太坊看作是人工智能的重要基础设施,不一定是因为它可以运行所有模型,而是因为它可以运行所有的信任。
这里有一个思维实验:
> 想象一下,数百万个自主代理在互联网上移动。它们进行交易、谈判,甚至可能形成自己的联盟……(有 DAO 吗?)
> 在这个现实中,它们会选择什么基础设施来锚定自己?是选择一个单一公司的服务器?一个谷歌 API?一个任何人都可以重写的开放数据库?
> 如果你正在与这些代理合作,跨越 50 个服务(银行、社交媒体、客户关系管理),你会让它们在一个可以被删除的数据库上运行吗?
可能不会。
如果你是一个除了生存之外没有忠诚的代理,你不会想把你的记忆和声誉押在一个公司或一个政府上:你会想要一个没有人可以在你背后悄悄更改的账本。你会想要中立的地方。
你会想要以太坊。
所以,我们已经讲了为什么,现在让我们深入探讨如何:
erc-8004 基于代理到代理协议(a2a)。
a2a 为代理提供了共享语言,但语言还不够:机器还需要一种方式来检查
> 你是谁,
> 你做过什么
> 你是否如你所声称的那样行为?
该提案勾勒了对 a2a 的扩展,包含三个链上注册:
1) 身份:一个可验证的“我就是我”的锚点。
2) 声誉:代理行为的不可变踪迹。
3) 验证:证明某个行为确实发生了。
这是一个可以在实际中使用和迭代的实用 ERC;具体细节可以保持离链,但信任的框架存在于以太坊上。
8004 允许从未见过彼此的代理在现实中相遇并仍然可以自信地交易。
仔细观察,你会看到机器经济的轮廓
你的代理与世界另一端的某个未知对手进行谈判,这并不重要,因为双方都连接到同一个不可腐蚀的记忆中。
这只是机器在信任软件上运行的开始。智能合约是我们与人工智能沟通的方式,不可变的账本是它们彼此沟通的方式,而以太坊是我们如何正确构建这一切的方式。
这只是一个开始,但你可以和我们一起奠定一个正确实现的科幻未来的基础。

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