防御攻击的事务性流程执行

Meng Yu, Wanyu Zang, Peng Liu
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引用次数: 1

摘要

一个众所周知的问题是,自愈系统的攻击恢复不仅回滚恶意事务,而且还回滚依赖于恶意事务的合法事务。回滚和重新执行损坏的事务会增加系统的响应时间,并可能导致严重的处理延迟。在这种情况下,系统的可用性受到损害,系统遭受拒绝服务(DoS)的攻击。本文提出了一种防御性执行技术,并对其有效性进行了分析。我们的技术基于离散时间马尔可夫链生成的预测并发执行事务过程的多条路径。防御性的执行可以减少恢复造成的延迟。我们还提出了一种分支切断技术,以减少防御性执行带来的额外成本。我们的分析结果表明,我们的技术对事务级攻击是实用的
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Defensive execution of transactional processes against attacks
It is a well known problem that the attack recovery of a self-healing system rolls back not only malicious transactions, but also legitimate transactions that are dependent on the malicious transactions. Rolling back and re-executing damaged transactions increase the response time of the system and may cause a significant processing delay. In such situations, the availability of the system is compromised and the system suffers the vulnerability of denial of service (DoS). In this paper, we propose a defensive executing technique and analyze its effectiveness. Our technique concurrently executes multiple paths of a transactional processes based on the prediction generated by a discrete time Markov chain. The defensive execution can reduce the delay caused by recovery. We also propose a branch cutting technique to reduce the extra cost introduced by defensive execution. Our analytical results show that our technique is practical against transactional level attacks
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