A4 Vertaisarvioitu artikkeli konferenssijulkaisussa

Mixed-criticality run-time task mapping for NoC-based many-core systems




TekijätMohammad Fattah, Amir-Mohammad Rahmani, Thomas Canhao Xu, Anil Kanduri, Pasi Liljeberg, Juha Plosila, Hannu Tenhunen

ToimittajaMarco Aldinucci, Daniele

Konferenssin vakiintunut nimiEuromicro international conference on parallel, distributed and network-based processing

KustantajaIEEE Computer Society

Julkaisuvuosi2014

Kokoomateoksen nimi2014 22nd Euromicro International Conference on Parallel, Distributed, and Network-Based Processing

Tietokannassa oleva lehden nimiProceedings - 2014 22nd Euromicro International Conference on Parallel, Distributed, and Network-Based Processing, PDP 2014

Aloitussivu458

Lopetussivu465

Sivujen määrä8

ISBN978-1-4799-2728-9

ISSN1066-6192

DOIhttps://doi.org/10.1109/PDP.2014.100

Verkko-osoitehttp://api.elsevier.com/content/abstract/scopus_id:84899462698


Tiivistelmä

Contiguous processor allocation improves both the network and the application performance, by decreasing the congestion probability among communication of different applications. Consequently, the average, standard deviation and worst-case latency of the network is decreased significantly. This makes the contiguous allocation a good solution for time-critical applications with bounded deadlines. On the other hand, non-contiguous allocation will increase the system throughput significantly. Isolated nodes are utilized and more applications can finish their job in a time unit. However, this will lead to poor network metrics, unsuitable for real-time applications. In this work, we combine these two approaches in order to manage workloads with mixed-critical characteristics. Real-time applications are mapped contiguously, while non-critical applications are allowed to get dispersed over the available system nodes. Results show over 50% improvement in worst-case latency and 100 times improvement in deadline misses. © 2014 IEEE.




Last updated on 2024-26-11 at 21:27