虚拟化环境下安全关键需求调度计划的影响分析

Asmaa Tellabi, Jaafar Fehmi, Sabri Abdelbast, C. Ruland
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引用次数: 0

摘要

多年来,由于虚拟化提供的好处,例如更好的互操作性和改进的性能,虚拟化已经被部署。两种流行的计算机架构在虚拟化中得到了广泛的应用,x86和ARM处理器。虚拟化中的关键组件是hypervisor,它是一个虚拟机管理器,允许多个客户机操作系统(OS)同时在单个主机系统上运行。研究人员和从业人员认为,使关键应用程序能够共享公共硬件平台而不相互干扰是虚拟化安全面临的主要挑战之一。在这种情况下,XtratuM被指定为旨在满足虚拟化中的安全关键需求的管理程序。本文将比较XtratuM在ARM和x86架构下的通信性能。将为分区提供不同的调度,以便检查它对每个通信通道的影响。正如本文将演示的那样,排队消息(QC)比采样消息(SP)慢,这是由内部结构和在分区之间发送消息的方式引起的。从测试来看,XtratuM在x86处理器上的版本比ARM处理器上的版本要快;这也是由于两种体系结构中的差异造成的。此外,还将介绍基于先前架构的修改后的系统架构,该架构经过修改以适应XtratuM的更多限制。
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On the Analysis of the Impact of Scheduling Plans in Safety Critical Requirements in Virtualization
Over the years, virtualization has been deployed due to the benefits it offers, such as a better interoperability and improved performances. Two popular architectures of computers have been widely used in virtualization, x86 and ARM processors. The key component in virtualization is the hypervisor, which is a virtual machine manager that allows multiple guest operating systems (OS) to run on a single host system at the same time. Researchers and practitioners identified the challenge of enabling critical applications to share a common hardware platform without interfering one another as one of the main virtualization safety challenges. In this context, XtratuM was specified as a hypervisor designed to meet safety critical requirements in virtualization. In this paper, a comparison between XtratuM communication performances will be provided for ARM and x86 architectures. Different schedules will be given to partitions in order to examine the effect it has on each communication channel. As it will be demonstrated in this paper, Queuing messages (QC) are slower than Sampling Messages (SP), and this is caused by the internal structure and how messages are sent between partitions. As seen from tests, the version of XtratuM for x86 processors is faster than the one for ARM processors; this is also caused by the differences found in both architectures. In addition, a modified system’s architecture based on a previous architecture will be presented, which was modified in order to fit more the limits of XtratuM.
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