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Enforcing Predictability of Many-Cores With DCFNoC

机译:对DCFNOC实施多核的可预测性

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摘要

The ever need for higher performance forces industry to include technology based on multi-processors system on chip (MPSoCs) in their safety-critical embedded systems. MPSoCs include a network-on-chip (NoC) to interconnect the cores between them and with memory and the rest of shared resources. Unfortunately, the inclusion of NoCs compromises guaranteeing time predictability as network-level conflicts may occur. To overcome this problem, in this article we propose DCFNoC, a new time-predictable NoC design paradigm where conflicts within the network are eliminated by design. This new paradigm builds on top of the Channel Dependency Graph (CDG) in order to deterministically avoid network conflicts. The network guarantees predictability to applications and is able to naturally inject messages using a TDM period equal to the optimal theoretical bound without the need of using a computationally demanding offline process. DCFNoC is integrated in a tile-based many-core system and adapted to its memory hierarchy. Our results show that DCFNoC guarantees time predictability avoiding network interference among multiple running applications. DCFNoC always guarantees performance and also improves wormhole performance in a 4 x 4 setting by a factor of 3.7x when interference traffic is injected. For a 8 x 8 network differences are even larger. In addition, DCFNoC obtains a total area saving of 10.79 percent over a standard wormhole implementation.
机译:在其安全关键嵌入式系统中,需要基于芯片(MPSOCs)的多处理器系统,包括高性能力量行业的技术。 MPSOCS包括片上网(NOC),用于将它们之间的核心和内存和其余的共享资源互连。不幸的是,包含NOCS妥协保证时间可预测性,因为可能发生网络级冲突。为了克服这个问题,在本文中,我们提出了DCFnoc,一个新的时间可预测的NoC设计范式,网络内的冲突被设计消除。此新的范例在频道依赖图(CDG)之上构建,以便确定地避免网络冲突。该网络可确保对应用的可预测性,并且能够自然地使用TDM时段来注入消息,而不是使用计算要求要求的离线过程的最佳理论界限。 DCFnoc集成在基于图块的多核系统中,并适用于其存储层次结构。我们的结果表明,DCFnoc保证了避免多个运行应用中的网络干扰的时间可预测性。 DCFnoc始终保证性能,并在注入干扰流量时,在4×4设置中提高虫洞性能。对于8 x 8,网络差异甚至更大。此外,DCFnoc在标准虫洞实施方面获得了10.79%的总面积。

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