DoS攻击你的云内存

Tianwei Zhang, Yinqian Zhang, R. Lee
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引用次数: 32

摘要

在云计算中,网络拒绝服务(DoS)攻击已经得到了很好的研究,防御措施也已经实施,但是单个恶意虚拟机对受害者工作记忆的严重DoS攻击还没有得到很好的理解。内存DoS攻击是由于云服务器上的硬件内存资源争用而导致的拒绝服务(或服务退化)攻击。尽管云服务器中的软件虚拟化层为虚拟机(VM)提供了强大的内存隔离技术,但底层硬件内存层仍然由VM共享,并且可以被聪明的攻击者在与受害者VM位于同一服务器上的恶意VM中利用,从而拒绝受害者所需的工作内存。我们首先定量地展示了不同内存资源上争用的严重程度。然后,我们展示了恶意的云客户可以发起低成本的攻击,导致Hadoop分布式应用程序的严重性能下降,并使亚马逊EC2云中的电子商务网站的响应时间延迟38倍。然后,我们设计了一个有效的,针对这些内存DoS攻击的新防御,使用统计度量来检测它们的存在和执行限制来减轻攻击损害。我们通过对现有硬件性能计数器和占空比调制的新颖重新利用来实现这一目标,以提高安全性,而不是提高性能或功耗。我们在OpenStack云系统上实现了一个完整的原型。我们的评估表明,这种防御系统可以有效地击败内存DoS攻击,而性能开销可以忽略不计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DoS Attacks on Your Memory in Cloud
In cloud computing, network Denial of Service (DoS) attacks are well studied and defenses have been implemented, but severe DoS attacks on a victim's working memory by a single hostile VM are not well understood. Memory DoS attacks are Denial of Service (or Degradation of Service) attacks caused by contention for hardware memory resources on a cloud server. Despite the strong memory isolation techniques for virtual machines (VMs) enforced by the software virtualization layer in cloud servers, the underlying hardware memory layers are still shared by the VMs and can be exploited by a clever attacker in a hostile VM co-located on the same server as the victim VM, denying the victim the working memory he needs. We first show quantitatively the severity of contention on different memory resources. We then show that a malicious cloud customer can mount low-cost attacks to cause severe performance degradation for a Hadoop distributed application, and 38X delay in response time for an E-commerce website in the Amazon EC2 cloud. Then, we design an effective, new defense against these memory DoS attacks, using a statistical metric to detect their existence and execution throttling to mitigate the attack damage. We achieve this by a novel re-purposing of existing hardware performance counters and duty cycle modulation for security, rather than for improving performance or power consumption. We implement a full prototype on the OpenStack cloud system. Our evaluations show that this defense system can effectively defeat memory DoS attacks with negligible performance overhead.
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