概率智能合约:区块链上的安全随机性

K. Chatterjee, A. K. Goharshady, Arash Pourdamghani
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引用次数: 52

摘要

在今天的可编程区块链中,智能合约仅限于确定性和非概率性。考虑到现实世界中各种各样的金融合约(如赌场游戏和彩票)完全依赖于随机性,这种随机性的缺乏是一种必然的限制。因此,已经开发了几种用于智能合约的临时随机数生成方法。其中包括使用oracle或依赖块哈希等想法。然而,这些方法是可操纵的,也就是说,它们的输出可以被可能不是中立的各方篡改,比如oracle的所有者或矿工。我们提出了一种新的博弈论方法,用于在区块链上生成可证明的不可操纵的伪随机数。我们的方法允许智能合约访问一个值得信赖的随机性来源,而不依赖于潜在的受损矿工或预言机,从而能够创建新一代的智能合约,这些合约不仅限于非概率,而且可以从更一般的概率程序中提取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probabilistic Smart Contracts: Secure Randomness on the Blockchain
In today’s programmable blockchains, smart contracts are limited to being deterministic and non-probabilistic. This lack of randomness is a consequential limitation, given that a wide variety of real-world financial contracts, such as casino games and lotteries, depend entirely on randomness. As a result, several ad-hoc random number generation approaches have been developed to be used in smart contracts. These include ideas such as using an oracle or relying on the block hash. However, these approaches are manipulatable, i.e. their output can be tampered with by parties who might not be neutral, such as the owner of the oracle or the miners.We propose a novel game-theoretic approach for generating provably unmanipulatable pseudorandom numbers on the blockchain. Our approach allows smart contracts to access a trustworthy source of randomness that does not rely on potentially compromised miners or oracles, hence enabling the creation of a new generation of smart contracts that are not limited to being non-probabilistic and can be drawn from the much more general class of probabilistic programs.
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