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Vitalik Buterin 關於以太坊未來的部落格文章在區塊鏈社群中引發了熱烈討論。
Vitalik Buterin's recent blog post on the future of Ethereum has sparked enthusiastic discussions within the blockchain community. Among the key highlights is the project's innovative work in zero-knowledge (ZK) technology, which has seen significant contributions from RISC Zero.
Vitalik Buterin 最近發表的有關以太坊未來的部落格文章引發了區塊鏈社群的熱烈討論。該專案的主要亮點之一是在零知識(ZK)技術方面的創新工作,RISC Zero 對此做出了重大貢獻。
In a series of tweets, Jeremy Bruestle, CEO and co-founder of RISC Zero, a zero-knowledge verifiable general computing platform, highlighted their company's role in shaping the ZK-enabled future, as mentioned in Buterin's post. Bruestle pointed out how one of the features mentioned in the article — parallel proving via linking memory states of a single long-running computation — has already been implemented by RISC Zero.
正如 Buterin 的貼文中所提到的,零知識可驗證通用運算平台 RISC Zero 的執行長兼聯合創始人 Jeremy Bruestle 在一系列推文中強調了他們公司在塑造 ZK 支援的未來中所扮演的角色。 Bruestle 指出了文章中提到的功能之一——透過連結單一長時間運行計算的記憶體狀態進行並行證明——已經由 RISC Zero 實現。
“One of the features mentioned in the article (parallel proving via linking memory states of a single long-running computation) is, in fact, how our continuations feature (https://t.co/buP5QlFq30) has worked for a while now. Enjoy reading about the future of ZK in the article!”
「文章中提到的一個功能(透過連結單一長時間運行計算的記憶體狀態進行並行證明)實際上是我們的延續功能 (https://t.co/buP5QlFq30) 已經工作了一段時間了。享受閱讀有關 ZK 未來的文章吧!
Buterin's responses to these comments further underscore the importance of these advancements in ZK technology. In one exchange, he draws attention to the critical role of compression efficiency in enabling faster proving times.
Buterin 對這些評論的回應進一步強調了 ZK 技術這些進步的重要性。在一次交流中,他提請人們注意壓縮效率在實現更快的證明時間方面的關鍵作用。
“Processing 1 MB of data in 1 second would require about 16,000 compression funcs/second. Achieving one more order of magnitude (160,000 funcs/sec) would be another big milestone. Appreciate your work.”
「1 秒內處理 1 MB 資料將需要大約 16,000 次壓縮函數/秒。再實現一個數量級(160,000 個函數/秒)將是另一個重大里程碑。欣賞你的作品。
Meanwhile, crypto enthusiast Paolo Rebuffo raised concerns regarding the need for a timely decision on incorporating Verkle Trees into clients, given the finite resources available and the potential impact on the Ethereum roadmap.
同時,鑑於可用資源有限以及對以太坊路線圖的潛在影響,加密貨幣愛好者 Paolo Rebuffo 對是否需要及時決定將 Verkle Trees 納入客戶提出了擔憂。
“I believe it is urgent to come to a final decision on whether to continue to develop and implement Verkle Trees within clients.
「我認為迫切需要就是否繼續在客戶中開發和實施 Verkle Trees 做出最終決定。
Resources are not infinite, and eventually there would be other parts of the ethereum roadmap to focus on.”
資源不是無限的,最終以太坊路線圖上還會有其他部分需要關注。
In response to Rebuffo's inquiry about Verkle Trees, Buterin clarified that about 75% of the implementation focuses on shared components that remain the same across different binary tree aggregation techniques, such as tree keys, gas cost adjustments, and transition processes, ultimately streamlining the integration of Verkle Trees, Poseidon binary, and Blake binary.
在回應 Rebuffo 關於 Verkle Trees 的詢問時,Buterin 澄清說,大約 75% 的實施側重於在不同二叉樹聚合技術中保持相同的共享組件,例如樹鍵、gas 成本調整和轉換過程,最終簡化集成Verkle 樹、 Poseidon 二元和Blake 二元。
“About 75% of the Verkle Tree implementation is in fact shared components that remain the same for any binary tree aggregation technique (tree keys, gas cost adjustments, transition processes). This includes the code for Poseidon binary and Blake binary.”
「Verkle Tree 實現的大約 75% 實際上是共享元件,這些元件對於任何二元樹聚合技術(樹鍵、gas 成本調整、轉換過程)都保持不變。這包括波塞冬二進位和布萊克二進位檔案的程式碼。
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