DocumentCode :
619486
Title :
RISO: Relaxed network-on-chip isolation for cloud processors
Author :
Hang Lu ; Guihai Yan ; Yinhe Han ; Binzhang Fu ; Xiaowei Li
Author_Institution :
State Key Lab. of Comput. Archit., Inst. of Comput. Technol., Beijing, China
fYear :
2013
fDate :
May 29 2013-June 7 2013
Firstpage :
1
Lastpage :
6
Abstract :
Cloud service providers use workload consolidation technique in many-core cloud processors to optimize system utilization and augment performance for ever extending scale-out workloads. Performance isolation usually has to be enforced for the consolidated workloads sharing the same many-core resources. Networks-on-chip (NoC) serves as a major shared resource, also needs to be isolated to avoid violating performance isolation. Prior work uses strict network isolation to fulfill performance isolation. However, strict network isolation either results in low consolidation density, or complex routing mechanisms which indicates prohibitive high hardware cost and large latency. In view of this limitation, we propose a novel NoC isolation strategy for many-core cloud processors, called relaxed isolation (RISO). It permits underutilized links to be shared by multiple applications, at the same time keeps the aggregated traffic in check to enforce performance isolation. The experimental results show that the consolidation density is improved more than 12% in comparison with previous strict isolation scheme, meanwhile reducing network latency by 38.4% on average.
Keywords :
cloud computing; electronic engineering computing; network routing; network-on-chip; NoC isolation strategy; RISO; aggregated traffic; cloud service providers; complex routing mechanisms; low consolidation density; many-core cloud processors; many-core resources; relaxed network-on-chip isolation; scale-out workloads; system utilization optimization; workload consolidation technique; Network topology; Program processors; Routing; Shape; System-on-chip; Topology; Vectors; Cloud Computing; Cloud Processors; Networks-on-Chip; Performance Isolation; Relaxed Isolation; Workload Consolidation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation Conference (DAC), 2013 50th ACM/EDAC/IEEE
Conference_Location :
Austin, TX
ISSN :
0738-100X
Type :
conf
Filename :
6560631
Link To Document :
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