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Crank it up or dial it down: Coordinated multiprocessor frequency and folding control

机译:向上或向下拨动:协调的多处理器频率和折叠控制

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Dynamic power management features are now an integral part of processor chip and system design. Dynamic voltage and frequency scaling (DVFS), core folding and per-core power gating (PCPG) are power control actuators (or "knobs") that are available in modern multi-core systems. However, figuring out the actuation protocol for such knobs in order to achieve maximum efficiency has so far remained an open research problem. In the context of specific system utilization dynamics, the desirable order of applying these knobs is not easy to determine. For complexity-effective algorithm development, DVFS, core folding and PCPG control methods have evolved in a somewhat decoupled manner. However, as we show in this paper, independent actuation of these techniques can lead to conflicting decisions that jeopardize the system in terms of power-performance efficiency. Therefore, a more robust coordination protocol is necessary in orchestrating the power management functions. Heuristics for achieving such coordinated control are already becoming available in server systems. It remains an open research problem to optimally adjust power and performance management options at runtime for a wide range of time-varying workload applications, environmental conditions, and power constraints. This research paper contributes a novel approach for a systematically architected, robust, multi-knob power management protocol, which we empirically analyze on live server systems. We use a latest generation POWER7+ multi-core system to demonstrate the benefits of our proposed new coordinated power management algorithm (called PAMPA). We report measurement-based analysis to show that PAMPA achieves comparable power-performance efficiencies (relative to a baseline decoupled control system) while achieving conflict-free actuation and robust operation.
机译:动态电源管理功能现在已成为处理器芯片和系统设计的组成部分。动态电压和频率缩放(DVFS),铁芯折叠和每核功率门控(PCPG)是现代多核系统中可用的功率控制执行器(或“旋钮”)。然而,迄今为止,弄清楚用于此类旋钮的致动协议以实现最大效率仍然是一个未解决的研究问题。在特定的系统利用动态的背景下,应用这些旋钮的理想顺序并不容易确定。对于复杂性有效的算法开发,DVFS,核心折叠和PCPG控制方法已经以某种分离的方式发展。但是,正如我们在本文中显示的那样,这些技术的独立驱动可能导致决策冲突,从而在功率性能效率方面危及系统。因此,在协调电源管理功能时,需要更强大的协调协议。用于实现这种协调控制的试探法已经在服务器系统中可用。对于各种随时间变化的工作负载应用,环境条件和电源限制,如何在运行时最佳地调整电源和性能管理选项仍然是一个开放的研究问题。本研究论文为系统设计,健壮,多旋钮的电源管理协议提供了一种新颖的方法,我们对实时服务器系统进行了经验分析。我们使用最新一代的POWER7 +多核系统来演示我们提出的新型协调电源管理算法(称为PAMPA)的好处。我们报告基于测量的分析,以表明PAMPA在实现无冲突的致动和鲁棒的运行的同时,具有可比的功率性能效率(相对于基准解耦控制系统)。

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