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Quark: A Lightweight Hash

机译:夸克:轻量级哈希

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The need for lightweight (that is, compact, low-power, low-energy) cryptographic hash functions has been repeatedly expressed by professionals, notably to implement cryptographic protocols in RFID technology. At the time of writing, however, no algorithm exists that provides satisfactory security and performance. The ongoing SHA-3 Competition will not help, as it concerns general-purpose designs and focuses on software performance. This paper thus proposes a novel design philosophy for lightweight hash functions, based on the sponge construction in order to minimize memory requirements. Inspired by the stream cipher Grain and by the block cipher KATAN (amongst the lightest secure ciphers), we present the hash function family Quark, composed of three instances: u-Quark, d-Quark, and s-Quark. As a sponge construction, Quark can be used for message authentication, stream encryption, or authenticated encryption. Our hardware evaluation shows that Quark compares well to previous tentative lightweight hash functions. For example, our lightest instance u-Quark conjecturally provides at least 64-bit security against all attacks (collisions, multicollisions, distinguishers, etc.), fits in 1379 gate-equivalents, and consumes on average 2.44 μW at 100 kHz in 0.18 μm ASIC. For 112-bit security, we propose s-Quark, which can be implemented with 2296 gate-equivalents with a power consumption of 4.35 μW.
机译:专业人员已经反复表达了对轻量级(即紧凑,低功耗,低能耗)加密哈希函数的需求,尤其是在RFID技术中实现加密协议。但是,在撰写本文时,不存在提供令人满意的安全性和性能的算法。正在进行的SHA-3竞争将无济于事,因为它涉及通用设计并专注于软件性能。因此,本文提出了一种基于海绵构造的轻量哈希函数的新颖设计理念,以最大程度地减少内存需求。受流密码Grain和分组密码KATAN(在最轻的安全密码中)的启发,我们提出了哈希函数族Quark,它由三个实例组成:u-Quark,d-Quark和s-Quark。作为海绵结构,Quark可用于消息身份验证,流加密或身份验证加密。我们的硬件评估表明,Quark与以前的暂定的轻量级哈希函数相比非常好。例如,我们最轻巧的实例u-Quark可以推测出针对所有攻击(碰撞,多碰撞,区分器等)的至少64位安全性,适合1379门等效,并且在0.18μm的100 kHz时平均消耗2.44μW ASIC。为了获得112位安全性,我们建议使用s-Quark,它可以用2296个门等效电路实现,功耗为4.35μW。

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