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POWERALERT: Integrity Checking Using Power Measurement and a Game-Theoretic Strategy

机译:POWERALERT:使用功率测量和博弈论策略进行完整性检查

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We propose POWERALERT, an efficient external integrity checker for untrusted hosts. Current attestation systems suffer from shortcomings, including requiring a complete checksum of the code segment, from being static, use of timing information sourced from the untrusted machine, or using imprecise timing information such as network round-trip time. We address those shortcomings by (1) using power measurements from the host to ensure that the checking code is executed and (2) checking a subset of the kernel space over an extended period. We compare the power measurement against a learned power model of the execution of the machine and validate that the execution was not tampered. Finally, POWERALERT randomizes the integrity checking program to prevent the attacker from adapting. We model the interaction between POWERALERT and an attacker as a time-continuous game. The Nash equilibrium strategy of the game shows that POWERALERT has two optimal strategy choices: (1) aggressive checking that forces the attacker into hiding, or (2) slow checking that minimizes cost. We implement a prototype of POWERALERT using Raspberry Pi and evaluate the performance of the integrity checking program generation.
机译:我们建议使用POWERALERT,一种用于不受信任主机的高效外部完整性检查程序。当前的认证系统具有缺点,包括要求代码段的完整校验和,是静态的,使用从不受信任的机器获得的定时信息,或使用不精确的定时信息(例如网络往返时间)。我们通过(1)使用来自主机的功率测量以确保执行检查代码,以及(2)在较长的时间内检查内核空间的子集来解决这些缺点。我们将功率测量值与学习到的机器执行功率模型进行比较,并验证执行未被篡改。最后,POWERALERT将完整性检查程序随机化,以防止攻击者进行适应。我们将POWERALERT和攻击者之间的交互建模为时间连续的游戏。游戏的纳什均衡策略表明,POWERALERT有两个最佳策略选择:(1)积极的检查会迫使攻击者躲藏起来;或者(2)缓慢的检查会最大程度地降低成本。我们使用Raspberry Pi实现POWERALERT的原型,并评估完整性检查程序生成的性能。

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