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Rescheduling of Power Gating Instructions for Reduction of In-rush Current

机译:重新安排电源门控指令以减少涌入电流

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The present work introduces two compilation techniques for reduction of in-rush current in processors with power gating (PG) facility. These are done by rescheduling the PG instructions responsible in turning on multiple components from sleep to active mode at overlapped time intervals. The firstmethod eliminates overlapped wake-up of the components resulting lesser in-rush current at the cost of performance degradation due to increase in program size. The second method allows overlapped wake-up as long as the resultant in-rush current is tolerable by the system with lesser increase in delay and program size. Algorithms are designed to automate these methods. The efficacy of the proposed methods are evaluated on MiBenchand MediaBench benchmark programs. The original program with PG and their translated versions are executed on gem5 which simulates ARM Cortex-M4F processor enhanced with PG. McPAT is used to find the values of power consumed and in-rush current. The first and second methods reduce in-rush current by an average of 54% and 35%, respectively with corresponding average performance loss of 21% and 9%.
机译:本工作介绍了两种编译技术,用于减少具有电源门控(PG)功能的处理器中的涌入电流。通过重新安排负责以重叠时间间隔将多个组件从睡眠模式切换到活动模式的PG指令来完成这些操作。第一种方法消除了组件的重叠唤醒,从而导致了较小的浪涌电流,但由于程序尺寸的增加而降低了性能。第二种方法允许重叠的唤醒,只要系统能够容忍由此产生的浪涌电流,而延迟和程序大小的增加较小。算法被设计为使这些方法自动化。在MiBenchand MediaBench基准程序上评估了所提出方法的功效。带有PG的原始程序及其翻译版本在gem5上执行,后者可模拟PG增强的ARM Cortex-M4F处理器。 McPAT用于查找消耗的功率和浪涌电流的值。第一种和第二种方法分别平均减少了54%和35%的涌入电流,相应的平均性能损失为21%和9%。

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