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On Dynamic Monitoring Methods for Networks-on-Chip

机译:片上网络动态监控方法研究

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摘要

Rapid ongoing evolution of multiprocessors will lead to systems with hundreds of processing cores integrated in a single chip. An emerging challenge is the implementation of reliable and efficient interconnection between these cores as well as other components in the systems. Network-on-Chip is an interconnection approach which is intended to solve the performance bottleneck caused by traditional, poorly scalable communication structures such as buses. However, a large on-chip network involves issues related to congestion problems and system control, for instance. Additionally, faults can cause problems in multiprocessor systems. These faults can be transient faults, permanent manufacturing faults, or they can appear due to aging. To solve the emerging traffic management, controllability issues and to maintain system operation regardless of faults a monitoring system is needed. The monitoring system should be dynamically applicable to various purposes and it should fully cover the system under observation. In a large multiprocessor the distances between components can be relatively long. Therefore, the system should be designed so that the amount of energy-inefficient long-distance communication is minimized. This thesis presents a dynamically clustered distributed monitoring structure. The monitoring is distributed so that no centralized control is required for basic tasks such as traffic management and task mapping. To enable extensive analysis of different Network-on-Chip architectures, an in-house SystemC based simulation environment was implemented. It allows transaction level analysis without time consuming circuit level implementations during early design phases of novel architectures and features. The presented analysis shows that the dynamically clustered monitoring structure can be efficiently utilized for traffic management in faulty and congested Network-on-Chip-based multiprocessor systems. The monitoring structure can be also successfully applied for task mapping purposes. Furthermore, the analysis shows that the presented in-house simulation environment is flexible and practical tool for extensive Network-on-Chip architecture analysis.
机译:多处理器的快速发展将导致系统在单个芯片中集成数百个处理内核。一个新出现的挑战是在这些内核以及系统中的其他组件之间实现可靠,高效的互连。片上网络是一种互连方法,旨在解决由传统的,可扩展性差的通信结构(如总线)引起的性能瓶颈。然而,大型的片上网络涉及例如与拥塞问题和系统控制有关的问题。此外,故障可能导致多处理器系统出现问题。这些故障可能是瞬时故障,永久性制造故障,也可能由于老化而出现。为了解决新兴的流量管理,可控性问题,并保持系统运行,无论出现什么故障,都需要监视系统。监视系统应动态适用于各种目的,并且应完全覆盖正在观察的系统。在大型多处理器中,组件之间的距离可能相对较长。因此,应对系统进行设计,以使低能耗的长途通信量最小化。本文提出了一种动态集群的分布式监控结构。监视是分布式的,因此基本任务(例如流量管理和任务映射)不需要集中控制。为了能够对不同的片上网络体系结构进行广泛的分析,实施了一个基于SystemC的内部仿真环境。它可以在新颖的体系结构和功能的早期设计阶段进行事务级分析,而无需花费时间在电路级上。所提出的分析表明,动态群集监视结构可以有效地用于故障和拥塞的基于单芯片网络的多处理器系统中的流量管理。监视结构也可以成功地用于任务映射。此外,分析表明,所提供的内部仿真环境是用于广泛的片上网络架构分析的灵活实用的工具。

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  • 作者

    Rantala Ville;

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  • 年度 2012
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  • 正文语种 en
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