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Network Packet Processing Mode-Aware Power Management for Data Center Servers

机译:网络数据包处理模式感知数据中心服务器的电源管理

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In data center servers, power management (PM) exploiting Dynamic Voltage and Frequency Scaling (DVFS) for processors can play a crucial role to improve energy efficiency. However, we observe that current PM policies (i.e., governors) not only considerably increase tail response time (i.e., violate a given Service Level Objective (SLO)) but also hurt energy efficiency. Tackling limitations of current PM governors, we propose NMAP, Network packet processing Mode-Aware Power management. NMAP improves energy efficiency while satisfying given SLOs, considering packet processing status on a core for PM by monitoring transitions between network packet processing modes - interrupt and polling. Tracking the transitions, NMAP detects moments that a core cannot process packets fast enough and forces the core to immediately raise the voltage and frequency (V/F) state. As a result, NMAP can provide not only low response time but also low energy consumption. Our experiment shows that NMAP improves tail response time by up to 4.1 compared with the ondemand governor, reducing energy by up to 44.6 percent compared with the performance governor.
机译:在数据中心服务器中,用于处理器的动态电压和频率缩放(DVF)的电源管理(PM)可以发挥至关重要的作用以提高能效。然而,我们观察到当前的PM政策(即,州长)不仅大大增加了尾部响应时间(即,违反了给定的服务水平目标(SLO)),而且损害了能源效率。解决当前PM调速器的限制,我们提出了NMAP,网络数据包处理模式感知电源管理。 NMAP通过监控网络分组处理模式之间的转换 - 中断和轮询,在给定SLO时提高了能量效率,同时满足PM,考虑到PM的核心上的核心处理状态。跟踪过渡,NMAP检测到核心无法快速处理数据包的瞬间,并强制核心立即提高电压和频率(V / F)状态。结果,NMAP不仅可以提供低响应时间,而且可以提供低能量消耗。我们的实验表明,与持证人总督相比,NMAP将尾部响应时间提高至4.1,比绩效州长相比将能源降低至44.6%。

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