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Chip multithreading: opportunities and challenges

机译:芯片多线程:机会和挑战

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Chip multi-threaded (CMT) processors provide support for many simultaneous hardware threads of execution in various ways, including simultaneous multithreading (SMT) and chip multiprocessing (CMP). CMT processors are especially suited to server workloads, which generally have high levels of thread-level parallelism (TLP). In this paper, we describe the evolution of CMT chips in industry and highlight the pervasiveness of CMT designs in upcoming general-purpose processors. The CMT design space accommodates a range of designs between the extremes represented by the SMT and CMP designs and a variety of attractive design options are currently unexplored. Though there has been extensive research on utilizing multiple hardware threads to speed up single-threaded applications via speculative parallelization, there are many challenges in designing CMT processors, even when sufficient TLP is present. This paper describes some of these challenges including, hot sets, hot banks, speculative prefetching strategies, request prioritization and off-chip bandwidth reduction.
机译:芯片多线程(CMT)处理器为以各种方式提供许多同步硬件线程,包括同时多线程(SMT)和芯片多处理(CMP)。 CMT处理器特别适用于服务器工作负载,其通常具有高水平的线程并行性(TLP)。在本文中,我们描述了CMT芯片在行业中的演变,并突出了CMT设计在即将到来的通用处理器中的普及。 CMT设计空间可容纳由SMT和CMP设计所代表的极端之间的一系列设计,以及目前未开发的各种有吸引力的设计选项。虽然有了广泛的研究通过推测并行化加速单线螺纹,但在设计足够的TLP时,在设计CMT处理器时存在许多挑战。本文介绍了其中一些挑战,包括热套,热门银行,推测预取策略,要求优先级和片外带宽减少。

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