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DAPs: Dynamic Adjustment and Partial Sampling for Multithreaded/Multicore Simulation

机译:用于多线程/多核模拟的动态调整和部分采样

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Faced with increasingly large multicore chip designs, architects need fast and accurate simulations for their exploration of design spaces within a limited simulation time budget. In multithreaded applications, threads cannot run simultaneously. Sampling is commonly used to reduce simulation time, but conventional sampling barely detects the instantaneous program variations of synchronization events and the inconsistency between phases of each core. This work proposes a dynamic adjustment and partial sampling technique (DAPs), consisting of aggressive sampling, lazy sampling, and regular sampling, to overcome thread interference in multithreaded applications. Moreover, DAPs partially selects sampling cores to reduce the overhead of sampling inconsistent phases.
机译:面对越来越大的多核芯片设计,架构师需要快速准确地模拟他们在有限的模拟时间预算中探索设计空间。在多线程应用程序中,线程无法同时运行。采样通常用于降低模拟时间,但是传统的采样几乎不检测同步事件的瞬时节目变化和每个核心的阶段之间的不一致。这项工作提出了一种动态调整和部分采样技术(DAPS),包括激进采样,懒惰采样和正常采样,克服多线程应用中的线程干扰。此外,点击部分选择采样核心以减少采样不一致阶段的开销。

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