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Earthquake — A NoC-based optimized differential cache-collision attack for MPSoCs

机译:地震 - 用于MPsocs的基于NOC的优化差分缓存碰撞攻击

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Multi-Processor Systems-on-Chips (MPSoCs) are a platform for a wide variety of applications and use-cases. The high on-chip connectivity, the programming flexibility, and the reuse of IPs, however, also introduce security concerns. Problems arise when applications with different trust and protection levels share resources of the MPSoC, such as processing units, cache memories and the Network-on-Chip (NoC) communication structure. If a program gets compromised, an adversary can observe the use of these resources and infer (potentially secret) information from other applications. In this work, we explore the cache-based attack by Bogdanov et al., which infers the cache activity of a target program through timing measurements and exploits collisions that occur when the same cache location is accessed for different program inputs. We implement this differential cache-collision attack on the MPSoC Glass and introduce an optimized variant of it, the Earthquake Attack, which leverages the NoC-based communication to increase attack efficiency. Our results show that Earthquake performs well under different cache line and MPSoC configurations, illustrating that cache-collision attacks are considerable threats on MPSoCs.
机译:多处理器系统上芯片(MPSOC)是各种应用和使用情况的平台。然而,高芯片连接,编程灵活性和IP的重用也引入了安全问题。当具有不同信任和保护级别的应用程序的应用程序的应用程序,如MPSOC的资源,例如加工单元,高速缓存存储器和片内(NOC)通信结构。如果程序受到损害,对手可以观察这些资源的使用并从其他应用程序推断(潜在的秘密)信息。在这项工作中,我们通过Bogdanov等人探讨了基于缓存的攻击。,Bogdanov等人通过定时测量来揭示目标程序的缓存活动,并利用当对不同程序输入访问相同的缓存位置时发生的冲突。我们在MPSOC玻璃上实现了这种差分缓存冲突攻击,并引入了它的优化变体,地震攻击,利用基于NOC的沟通来提高攻击效率。我们的结果表明,地震在不同的缓存线和MPsoc配置下表现良好,说明缓存冲突攻击对MPSOC有相当大的威胁。

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