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The article explores the rise of provable software, enabled by zero-knowledge proofs (ZK), highlighting the transition from application-specific implementations to general-purpose standards and driving new infrastructure development.
To understand what it is and why its useful.
The article explains the CKKS encryption scheme, focusing on encoding, decoding, key generation, and homomorphic operations, ideal for approximate arithmetic in privacy-preserving applications.
This proposal analyzes Ethereum's RANDAO manipulability, introducing forking with selfish mixing attacks and exploring short- and long-term countermeasures.
主要面向非专业数学人士的开发者打造,希望使用简单易懂的文字和例子带人快速的了解 ZK 是如何实现的。
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