降低成本的同步弹性化:利用超简单的分叉和控制器合并

E. Kilada, K. Stevens
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引用次数: 6

摘要

延迟不敏感(LI)设计可以容忍任意的计算和通信延迟。同步弹性将普通时钟设计转换为LI。它使用诸如同步弹性流(SELF)之类的通信协议。与其lazy实现相比,eager SELF没有组合周期,可以提供性能优势。然而,它使用急切分叉(EForks),消耗更多的面积和功率。本文证明了efork可以是冗余的。介绍了一种新颖的超简单分叉(USFork)实现。EFork的行为与USFork完全相同的条件(从协议的角度来看)是正式派生的。本文还研究了合并多个SELF控制器以进一步减少面积和功率开销的条件(只要物理位置允许)。该流程已集成到全自动工具HGEN中。混合发生器(HGEN)有选择地用USForks替换冗余的efork,并有选择地合并等效控制器。HGEN使用6thSense工具作为嵌入式验证引擎。与已发表的MiniMIPS处理器案例研究中使用的方法相比,HGEN显示,由于使用USForks,在面积和功耗方面节省了34.3%和25.4%。它还显示,在s382 ISCAS基准测试中,efork的数量至少节省了32%。如果物理位置允许控制器合并,则可以减少更多。由于同步验证技术的进步,HGEN可以在几分钟内运行(对于本文中的所有示例)。这使得所建议的方法适合于时间紧迫的上市限制。
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Synchronous elasticization at a reduced cost: Utilizing the ultra simple fork and controller merging
Latency insensitive (LI) designs can tolerate arbitrary computation and communication latencies. Synchronous elasticization converts an ordinary clocked design into LI. It uses communication protocols such as the Synchronous Elastic Flow (SELF). Comparing to its lazy implementations, eager SELF has no combinational cycles and can provide performance advantage. Yet, it uses eager forks (EForks) consuming more area and power. This paper demonstrates that EForks can be redundant. A novel ultra simple fork (USFork) implementation is introduced. The conditions under which an EFork will behave exactly the same as a USFork (from the protocol perspective) are formally derived. The paper also investigates the conditions under which multiple SELF controllers can be merged to further decrease the area and power overhead (as long as the physical placement allows). The flow has been integrated in a fully automated tool, HGEN. Hybrid GENerator (HGEN) selectively replaces redundant EForks with USForks and, optionally, merges equivalent controllers. HGEN uses 6thSense tool as an embedded verification engine. Comparing to the methodology used in published work on a MiniMIPS processor case study, HGEN shows up to 34.3% and 25.4% savings in area and power due to utilizing USForks. It also shows at least 32% saving in the number of EForks in s382 ISCAS benchmark. More reduction is possible if the physical placement allows for controller merging. Thanks to the advance in synchronous verification technology, HGEN runs within a few minutes (for all this paper examples). This makes the proposed approach suitable for tight time-to-market constraints.
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