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CONTINUOUS SPACE-BOUNDED NON-MALLEABLE CODES FROM STRONGER PROOFS-OF-SPACE

机译:来自更强大空间的连续空间绑定的不可恶意代码

摘要

Systems, methods, and apparatuses for protecting a secret on a device with limited memory, while still providing tamper resistance, are described. To achieve security, an encoding computer can apply a memory-hard function MHF to a secret S and determine a result Y, then determine a proof π for the result Y. Then, the encoding computer can send a codeword C comprising the secret S and the proof π to a decoding computer. The decoding computer can retrieve the codeword C from persistent memory and parse the secret S and the proof π. The decoding device can use transient memory to decode the codeword C by verifying the proof π was generated with the secret S and the result Y. When the correctness of the result Y is verified, the decoding device can apply a cryptographic function to input data using the secret S then reset the transient memory.
机译:描述了用于保护具有有限存储器的设备上的秘密,同时仍然提供防篡改的系统,方法和装置。为了实现安全性,编码计算机可以将存储硬功能MHF应用于秘密S并确定结果Y,然后确定结果Y的证明π。然后,编码计算机可以发送包含秘密S和证明π到解码计算机。解码计算机可以从持久性存储器中检索码字C并解析秘密S和证明π。解码设备可以使用瞬态存储器,通过验证用秘密S和结果Y生成的证明π来对码字C进行解码。当验证结果Y的正确性时,解码设备可以使用以下方法对输入数据应用密码函数:然后,秘密S重置瞬态存储器。

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