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Dynamic AC-scheduling for hardware cores with unknown and uncertain information

机译:信息未知和不确定的硬件内核的动态AC调度

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Modern hardware cores necessarily have to deal with many sources of unknown or uncertain information. Components with variable latency and unpredictable behavior are becoming predominant in hardware designs. Conventional hardware cores underperform when dealing with unknown or uncertain information. Common High-Level Synthesis (HLS) approaches, which require to specify the complete behavior at design-time, present significant restrictions in supporting this kind of conditions. The literature proposes several dynamic scheduling techniques to improve the cores performance by handling inherent uncertainty of applications. However, they do not address other sources of unknown information. In this paper, we propose the dynamic Activating Conditions (AC)-scheduling: a methodology for the design automation of hardware cores which can dynamically adapt the instructions scheduling according to behaviors unknown at design-time. Neither assumptions about components latency nor worst case approach are required. Experimental results show significant performance increase, with limited area overhead, with respect to state-of-the-art approaches.
机译:现代硬件内核必须必须处理许多未知或不确定信息的来源。具有可变等待时间和不可预测行为的组件在硬件设计中正变得越来越重要。当处理未知或不确定的信息时,常规的硬件内核的性能不佳。要求在设计时指定完整行为的通用高级综合(HLS)方法在支持此类条件方面存在重大限制。文献提出了几种动态调度技术,以通过处理应用程序固有的不确定性来提高内核性能。但是,它们没有解决未知信息的其他来源。在本文中,我们提出了动态激活条件(AC)调度:一种用于硬件内核设计自动化的方法,该方法可以根据设计时未知的行为动态调整指令调度。既不需要关于组件延迟的假设,也不需要最坏情况的假设。实验结果表明,相对于最新方法,性能显着提高,而开销却有限。

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