虚拟化网络环境中用于低延迟数据包处理的容器性能评估

IF 1 4区 计算机科学 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Performance Evaluation Pub Date : 2024-08-28 DOI:10.1016/j.peva.2024.102442
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引用次数: 0

摘要

由于低延迟、高可靠性和资源共享等要求日益普遍,当前网络场景中的数据包处理面临着复杂的挑战。虚拟化是缓解这些挑战的潜在解决方案,它可以实现资源共享和按需配置;然而,确保高可靠性和超低延迟仍然是一个关键挑战。由于裸机系统通常成本高、占用空间大,而且虚拟机(VM)的开销也很大,因此我们评估了利用容器作为低延迟数据包处理的潜在轻量级解决方案的可行性。在此,我们讨论了容器的优点和缺点,并鼓励在客户数据隔离程度足够且裸机系统无法负担的情况下,在低延迟数据包处理中使用容器环境。我们的研究结果表明,与裸机数据包处理相比,容器表现出相似的延迟性能和更可预测的尾延迟行为。此外,决定使用哪种主板架构,尤其是缓存划分也同样重要,因为容器在内核间共享缓存较多的情况下容易出现较高的延迟,尤其是在无法使用其他优化时。我们的研究表明,与裸机或虚拟机相比,这对容器内延迟的影响更大,因此在优化后选择硬件架构是一项关键挑战。此外,结果还显示,虚拟化开销不会影响尾部延迟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Performance evaluation of containers for low-latency packet processing in virtualized network environments

Packet processing in current network scenarios faces complex challenges due to the increasing prevalence of requirements such as low latency, high reliability, and resource sharing. Virtualization is a potential solution to mitigate these challenges by enabling resource sharing and on-demand provisioning; however, ensuring high reliability and ultra-low latency remains a key challenge. Since bare-metal systems are often impractical because of high cost and space usage, and the overhead of virtual machines (VMs) is substantial, we evaluate the utilization of containers as a potential lightweight solution for low-latency packet processing. Herein, we discuss the benefits and drawbacks and encourage container environments in low-latency packet processing when the degree of isolation of customer data is adequate and bare metal systems are unaffordable. Our results demonstrate that containers exhibit similar latency performance with more predictable tail-latency behavior than bare metal packet processing. Moreover, deciding which mainboard architecture to use, especially the cache division, is equally vital as containers are prone to higher latencies on more shared caches between cores especially when other optimizations cannot be used. We show that this has a higher impact on latencies within containers than on bare metal or VMs, resulting in the selection of hardware architectures following optimizations as a critical challenge. Furthermore, the results reveal that the virtualization overhead does not impact tail latencies.

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来源期刊
Performance Evaluation
Performance Evaluation 工程技术-计算机:理论方法
CiteScore
3.10
自引率
0.00%
发文量
20
审稿时长
24 days
期刊介绍: Performance Evaluation functions as a leading journal in the area of modeling, measurement, and evaluation of performance aspects of computing and communication systems. As such, it aims to present a balanced and complete view of the entire Performance Evaluation profession. Hence, the journal is interested in papers that focus on one or more of the following dimensions: -Define new performance evaluation tools, including measurement and monitoring tools as well as modeling and analytic techniques -Provide new insights into the performance of computing and communication systems -Introduce new application areas where performance evaluation tools can play an important role and creative new uses for performance evaluation tools. More specifically, common application areas of interest include the performance of: -Resource allocation and control methods and algorithms (e.g. routing and flow control in networks, bandwidth allocation, processor scheduling, memory management) -System architecture, design and implementation -Cognitive radio -VANETs -Social networks and media -Energy efficient ICT -Energy harvesting -Data centers -Data centric networks -System reliability -System tuning and capacity planning -Wireless and sensor networks -Autonomic and self-organizing systems -Embedded systems -Network science
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