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Heat stroke: power-density-based denial of service in SMT

机译:中暑:基于电力密度的SMT拒绝服务

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In the past, there have been several denial of service (DOS) attacks which exhaust some shared resource (e.g., physical memory, process table, file descriptors, TCP connections) of the targeted machine. Though these attacks have been addressed, it is important to continue to identify and address new attacks because DOS is one of most prominent methods used to cause significant financial loss. A recent paper shows how to prevent attacks that exploit the sharing of pipeline resources (e.g., shared trace cache) in SMT to degrade the performance of normal threads. In this paper, we show that power density can be exploited in SMT to launch a novel DOS attack, called heat stroke. Heat stroke repeatedly accesses a shared resource to create a hot spot at the resource. Current solutions to hot spots inevitably involve slowing down the pipeline to let the hot spot cool down. Consequently, heat stroke slows down the entire SMT pipeline and severely degrades normal threads. We present a solution to heat stroke by identifying the thread that causes the hot spot and selectively slowing down the malicious thread while minimally affecting normal threads.
机译:过去,已经有几种拒绝服务(DOS)攻击,其排出目标计算机的某些共享资源(例如,物理内存,处理表,文件描述符,TCP连接)。虽然已经解决了这些攻击,但重要的是要继续识别和解决新的攻击,因为DOS是用于造成重大财务损失的最突出的方法之一。最近的一篇论文展示了如何防止开发SMT中的管道资源共享(例如,共享跟踪缓存)的攻击,以降低正常线程的性能。在本文中,我们表明,可以在SMT中利用功率密度,以发动新的DOS攻击,称为热风。热量冲程反复访问共享资源以在资源中创建一个热点。热点的当前解决方案不可避免地涉及减速管道,让热点冷却。因此,热行程减速了整个SMT管道,并且严重降低了正常螺纹。我们通过识别导致热点的螺纹并选择性地减慢恶意线程而在微小地影响正常线程的同时选择性地减慢螺纹来提出加热冲程的解决方案。

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