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Optimal metastability-containing sorting networks

机译:含有含有最佳的亚稳态分类网络

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When setup/hold times of bistable elements are violated, they may become metastable, i.e., enter a transient state that is neither digital 0 nor 1 [1]. In general, metastability cannot be avoided, a problem that manifests whenever taking discrete measurements of analog values. Metastability of the output then reflects uncertainty as to whether a measurement should be rounded up or down to the next possible measurement outcome. Surprisingly, Lenzen & Medina (ASYNC 2016) showed that metastability can be contained, i.e., measurement values can be correctly sorted without resolving metastability first. However, both their work and the state of the art by Bund et al. (DATE 2017) leave open whether such a solution can be as small and fast as standard sorting networks. We show that this is indeed possible, by providing a circuit that sorts Gray code inputs (possibly containing a metastable bit) and has asymptotically optimal depth and size. Concretely, for 10-channel sorting networks and 16-bit wide inputs, we improve by 48.46% in delay and by 71.58% in area over Bund et al. Our simulations indicate that straightforward transistor-level optimization is likely to result in performance on par with standard (non-containing) solutions.
机译:当违反BISTable元素的设置/保持时间时,它们可能会成为常量的,即,输入既不数字0也不是1 [1]的瞬态状态。通常,不能避免亚稳性,每当采取模拟值的离散测量时都会出现的问题。然后,输出的延展性反映了对不确定的是是否应向下一个可能的测量结果舍入或降低测量。令人惊讶的是,Lenzen&Medina(Async 2016)表明,可以包含衡量性,即可以首先正确地分解测量值,而不会解决亚稳态。但是,他们的工作和艺术艺术的国家被外滩等。 (日期2017)休息打开这样的解决方案是否可以像标准排序网络一样小且快速。我们表明这确实可以通过提供对灰码输入(可能包含亚稳态位)进行排序的电路并具有渐近最佳深度和大小的电路。具体而言,对于10通道排序网络和16位宽的输入,我们在Bond等人的区域内提高了48.46 %延迟和71.58 %。我们的模拟表明,直接的晶体管级优化可能会导致标准(非含)解决方案的性能。

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