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Using Functional Independence Conditions to Optimize the Performance of Latency-Insensitive Systems

机译:使用功能独立条件优化延迟不敏感系统的性能

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In latency-insensitive design shell modules are used to encapsulate system components (pearls) in order to interface them with the given latency-insensitive protocol and dynamically control their operations. In particular, a shell stalls a pearl whenever new valid data are not available on its input channels. We study how functional independence conditions (FIC) can be applied to the performance optimization of a latency-insensitive system by avoiding unnecessary stalling of their pearls. We present a novel circuit design of a generic shell template that can exploit FICs. We describe an automatic procedure for the logic synthesis of a FIC-shell instance that is only based on the analysis of the logic structure of its corresponding pearl and does not require any input from the designers. We implemented the proposed technique within the logic synthesis tool ABC and we use it to complete various experiments that demonstrate its performance benefits and limited overhead. In particular, we completed the semi-custom design of a system-on-chip (SoC), an ultra-wideband baseband transmitter, using a state-of-the-art 90nm technology process. To the best of our knowledge this represents the first report on the complete latency-insensitive design of a real-world SoC.
机译:在延迟不敏感的设计外壳模块中用于封装系统组件(珍珠),以便与给定的延迟不敏感协议接口并动态控制其操作。特别是,只要在其输入通道上不可用新的有效数据,壳就会停止珍珠。我们研究功能性独立条件(FIC)如何通过避免不必要的珍珠的停滞来应用于延迟不敏感系统的性能优化。我们介绍了一种可以利用FICS的通用壳模板的新电路设计。我们描述了一个自动过程,用于逻辑合成的FIC-Shell实例,其仅基于其对应珍珠的逻辑结构的分析,并且不需要设计人员的任何输入。我们在逻辑综合工具中实施了该技术,我们使用它来完成各种实验,证明其性能效益和有限的开销。特别是,我们使用最先进的90nm技术过程完成了片上系统(SOC),超宽带基带发射器的半定制设计。据我们所知,这代表了关于现实世界SoC的完整延迟不敏感设计的第一报告。

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