Towards a Robust MMIO-based Synchronized Clock for Virtualized Edge Computing Devices

Jan Ruh
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引用次数: 2

Abstract

Mixed-criticality is a key characteristic of Fog Computing Platforms posing challenging requirements concerning workload isolation, resource utilization, orchestration, and timing behavior. Virtualization featuring a hypervisor that logically partitions physical resources of edge computing devices has been identified to support these stringent requirements. However, fulfilling conflicting requirements, such as deterministic timing behavior or workload isolation and resource utilization or orchestration, remains challenging. A common approach to this problem is the application of the time-triggered paradigm to task and network scheduling. A precondition of the time-triggered paradigm is a global time base provided by the execution of a clock synchronization algorithm. In previous work [1], we provided a comprehensive analysis of clock synchronization in virtualized distributed real-time systems using a formal model. We could show that a bounded sub-microsecond clock synchronization precision is feasible utilizing a type-1 hypervisor implementing the dependent clock paradigm. In the paper at hand, we introduce an MMIO-based synchronized clock that tackles drawbacks of previous implementations making for a more robust source of a global time base.
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面向虚拟化边缘计算设备的基于mmio的鲁棒同步时钟
混合临界性是雾计算平台的一个关键特征,它在工作负载隔离、资源利用、编排和定时行为方面提出了具有挑战性的需求。为了支持这些严格的要求,已经确定了具有虚拟机管理程序的虚拟化,该虚拟机管理程序可以对边缘计算设备的物理资源进行逻辑分区。然而,满足冲突的需求(如确定性定时行为或工作负载隔离和资源利用或编排)仍然具有挑战性。解决这个问题的一种常见方法是将时间触发范式应用于任务和网络调度。时间触发范式的先决条件是由时钟同步算法的执行提供的全局时间基。在之前的工作[1]中,我们使用形式化模型对虚拟化分布式实时系统中的时钟同步进行了全面分析。我们可以证明,利用实现依赖时钟范例的type-1管理程序,有界的亚微秒时钟同步精度是可行的。在手头的论文中,我们介绍了一个基于mmio的同步时钟,它解决了以前实现的缺点,使全局时基源更加健壮。
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