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Scenario-oriented design for single-chip heterogeneous multiprocessors

机译:单芯片异构多处理器的面向场景的设计

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Single-chip heterogeneous multiprocessors (SCHMs) are arising to meet the computational demands of portable and handheld devices. These computing systems are not fully custom designs traditionally targeted by the design automation community, general-purpose designs traditionally targeted by the computer architecture community, nor pure embedded designs traditionally targeted by the real-time community. An entirely new design philosophy will be needed for this hybrid class of computing. The programming of the device will be drawn from a narrower set of applications with execution that persists in the system over a longer period of time than for general-purpose programming. However, the devices will still be programmable, not only at the level of the individual processing element, but across multiple processing elements and even the entire chip. The design of other programmable single chip computers has enjoyed an era where the design tradeoffs could be captured in simulators such as SimpleScalar and performance could be evaluated to the SPEC benchmarks. Motivated by this, we describe new benchmark-based design strategies for SCHMs which we refer to as scenario-oriented design. We include an example and results.
机译:为了满足便携式和手持设备的计算需求,出现了单芯片异构多处理器(SCHM)。这些计算系统不是传统上以设计自动化社区为目标的完全定制设计,不是传统上以计算机体系结构社区为目标的通用设计,也不是传统上以实时社区为目标的纯嵌入式设计。这种混合计算类别将需要全新的设计理念。与通用编程相比,该器件的编程将从一组较窄的应用程序中提取,并且其执行在系统中的保留时间更长。但是,不仅在单个处理元件的级别,而且在多个处理元件甚至整个芯片上,这些设备仍将是可编程的。其他可编程单芯片计算机的设计已经进入了一个时代,可以在诸如SimpleScalar的模拟器中捕获设计权衡,并可以将性能评估为SPEC基准。因此,我们描述了针对SCHM的基于基准的新设计策略,我们将其称为面向场景的设计。我们包括一个示例和结果。

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