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Efficient Message Authentication Codes with Combinatorial Group Testing

机译:组合组测试的高效消息身份验证代码

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Message authentication code, MAC for short, is a symmetric-key cryptographic function for authenticity. A standard MAC verification only tells whether the message is valid or invalid, and thus we can not identify which part is corrupted in case of invalid message. In this paper we study a class of MAC functions that enables to identify the part of corruption, which we call group testing MAC (GTM). This can be seen as an application of a classical (non-adaptive) combinatorial group testing to MAC. Although the basic concept of GTM (or its keyless variant) has been proposed in various application areas, such as data forensics and computer virus testing, they rather treat the underlying MAC function as a black box, and exact computation cost for GTM seems to be overlooked. In this paper, we study the computational aspect of GTM, and show that a simple yet non-trivial extension of parallelizable MAC (PMAC) enables O(m + t) computation for m data items and t tests, irrespective of the underlying test matrix we use, under a natural security model. This greatly improves efficiency from naively applying a black-box MAC for each test, which requires O(mt) time. Based on existing group testing methods, we also present experimental results of our proposal and observe that ours runs as fast as taking single MAC tag, with speed-up from the conventional method by factor around 8 to 15 for m = 10~4 to 10~5 items.
机译:消息身份验证代码(简称MAC)是用于确保真实性的对称密钥密码功能。标准的MAC验证仅告诉消息有效还是无效,因此在消息无效的情况下我们无法确定哪个部分已损坏。在本文中,我们研究了一类能够识别损坏部分的MAC功能,我们将其称为组测试MAC(GTM)。这可以看作是经典(非自适应)组合组测试在MAC上的应用。尽管已在各种应用领域(例如数据取证和计算机病毒测试)中提出了GTM(或其无密钥变体)的基本概念,但他们宁愿将基本的MAC功能视为黑匣子,并且GTM的确切计算成本似乎是被忽略了。在本文中,我们研究了GTM的计算方面,并表明对可并行化MAC(PMAC)进行了简单但不平凡的扩展就可以对m个数据项和t个测试进行O(m + t)计算,而无需考虑基础测试矩阵我们在自然安全模型下使用。天真地为每个测试应用黑盒MAC,这大大提高了效率,这需要O(mt)时间。基于现有的组测试方法,我们还提出了我们的建议的实验结果,并观察到我们的方法的运行速度与采用单个MAC标签一样快,对于m = 10〜4至10,将传统方法的速度提高了8到15倍〜5个项目。

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