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Effort-Release Public-Key Encryption from Cryptographic Puzzles

机译:加密难题中的努力发布公钥加密

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Timed-release cryptography addresses the problem of "sending messages into the future": a message is encrypted so that it can only be decrypted after a certain amount of time, either (a) with the help of a trusted third party time server, or (b) after a party performs the required number of sequential operations. We generalise the latter case to what we call effort-release public key encryption (ER-PKE), where only the party holding the private key corresponding to the public key can decrypt, and only after performing a certain amount of computation which may or may not be parallelisable. Effort-release PKE generalises both the sequential-operation-based timed-release encryption of Rivest, Shamir, and Wagner, and also the encapsulated key escrow techniques of Bellare and Goldwasser. We give a generic construction for ER-PKE based on the use of moderately hard computational problems called puzzles. Our approach extends the KEM/DEM framework for public key encryption by introducing a difficulty notion for KEMs which results in effort-release PKE. When the puzzle used in our generic construction is non-parallelisable, we recover timed-release cryptography, with the addition that only the designated receiver (in the PKE setting) can decrypt.
机译:定时释放加密解决了“将消息发送到未来”的问题:对消息进行加密,以便仅在一定时间后才能对其进行解密,或者(a)在受信任的第三方时间服务器的帮助下,或者(b)一方执行了所需数量的顺序操作之后。我们将后一种情况推广到所谓的努力释放公钥加密(ER-PKE),其中只有持有与公钥相对应的私钥的一方才能解密,并且只有在执行了一定数量的计算之后(可能会或可能会进行解密)不可并行化。努力发布PKE概括了Rivest,Shamir和Wagner的基于顺序操作的定时发布加密,以及Bellare和Goldwasser的封装密钥托管技术。我们基于称为难题的中等难度计算问题的使用,给出了ER-PKE的通用构造。我们的方法通过引入针对KEM的困难概念(这导致了努力释放PKE),扩展了用于公开密钥加密的KEM / DEM框架。当我们的通用构造中使用的难题是不可并行的时,我们将恢复定时释放密码,此外,只有指定的接收者(在PKE设置中)才能解密。

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