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On the Data Limitation of Small-State Stream Ciphers: Correlation Attacks on Fruit-80 and Plantlet

机译:关于小州流密码的数据限制:水果80和Plantlet的相关攻击

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Many cryptographers have focused on lightweight cryptography, and a huge number of lightweight block ciphers have been proposed. On the other hand, designing lightweight stream ciphers is a challenging task due to the well-known security criteria, i.e., the state size of stream ciphers must be at least twice the key size. The designers of Sprout addressed this issue by involving the secret key not only in the initialization but also in the keystream generation, and the state size of such stream ciphers can be smaller than twice the key size. After the seminal work, some small-state stream ciphers have been proposed such as Fruit, Plantlet, and LIZARD. Unlike conventional stream ciphers, these small-state stream ciphers have the limitation of keystream bits that can be generated from the same key and IV pair. In this paper, our motivation is to show whether the data limitation claimed by the designers is proper or not. The correlation attack is one of the attack methods exploiting many keystream bits generated from the same key and IV pair, and we apply it to Fruit-80 and Plantlet. As a result, we can break the full Fruit-80, i.e., the designers' data limitation is not sufficient. We can also recover the secret key of Plantlet if it allows about 253 keystream bits from the same key and IV pair.
机译:许多加密人员专注于轻质密码学,并提出了大量的轻质块密码。另一方面,由于众所周知的安全标准,设计轻量级流密码是一个具有挑战性的任务,即流密码的状态大小必须至少是密钥大小的两倍。 Sprout的设计者通过涉及初始化的秘密密钥而且在keyStream生成中涉及秘密密钥,并且这种流密码的状态大小可以小于密钥大小的两倍。在开创性的工作之后,已经提出了一些小状态流密码,例如水果,小植物和蜥蜴。与传统的流密码相比,这些小状态流密码具有限制可以从相同的键和IV对产生的键人段位。在本文中,我们的动机是展示设计人员的数据限制是否适当。相关性攻击是利用来自相同密钥和IV对生成的许多键人位的攻击方法之一,并且我们将其应用于水果80和Plantlet。结果,我们可以打破完整的水果80,即设计人员的数据限制是不够的。如果允许来自相同键和IV对的大约253位,则可以恢复Plantlet的秘密密钥。

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