减少幽灵攻击的Retpoline技术

Mohd Fadzil Abdul Kadir, J. Wong, Fauziah Ab Wahab, Ahmad Faisal Amri Abidin Bharun, M. A. Mohamed, Aznida Hayati Zakaria
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引用次数: 8

摘要

Spectre (Speculative execution)是一种试图预测未来以提高系统性能的芯片,它涉及多个逻辑分支。在程序做出决定之前,它就会开始计算所有这些分支的数学。通常,它与缓存一起工作,缓存通过填充需要的数据来加快内存访问速度,并且通常推测执行的输出存储在这里。操作系统中的推测执行和缓存通过预测要使用的数据或资源和缓存内存来快速访问数据或资源,从而提高了整个系统和操作系统的性能。问题出现在此功能可能允许潜在的攻击者通过利用幽灵攻击(也称为侧信道攻击和Meltdown)访问他们不应该访问的数据。幽灵攻击和Meltdown打开了危险攻击的可能性,涉及违反用户的安全和机密性。已经引入了各种技术和补丁来减轻幽灵攻击和熔毁。在这个项目中,我们研究了在网络虚拟化环境中用于减轻Google引入的称为Retpoline技术的Spectre攻击变体2的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Retpoline Technique for Mitigating Spectre Attack
The Speculative execution (Spectre) is a chip attempting to predict the future to improve the system performance which involves multiple logical branches. It will start working out the math for all those branches before the program even has to decide between them. Normally, it works together with caching which is to speed up the memory access by filled with the data that will need some and often the output of the speculative execution is stored here. The speculative execution and caching in the operating system improve the overall system and operating system performance through the prediction of data or resources to be used and cache memory for quick access to data or resources. The problem arises where this function could allow potential attackers to get access to data they should not have access to by exploiting Spectre attack which also known as side-channel attack and Meltdown. Spectre attack and Meltdown open up the possibilities for dangerous attacks which involved the breach of security and confidentiality of the user. Various techniques and patches have been introduced to mitigating the Spectre attack and Meltdown. In this project, we study the technique used to mitigate the Spectre attack variant 2 introduced by Google called Retpoline technique in the networking virtualised environment.
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