Title :
WIQ: Work-Intensive Query Scheduling for In-Memory Database Systems
Author :
Kraft, Stephan ; Casale, Giuliano ; Jula, Alin ; Kilpatrick, Peter ; Greer, Des
Author_Institution :
SAP Res., Belfast, UK
Abstract :
We propose a novel admission control policy for database queries. Our methodology uses system measurements of CPU utilization and query backlogs to determine interference between queries in execution on the same database server. Query interference may arise due to the concurrent access of hardware and software resources and can affect performance in positive and negative ways. Specifically our admission control considers the mix of jobs in service and prioritizes the query classes consuming CPU resources more efficiently. The policy ignores I/O subsystems and is therefore highly appropriate for in-memory databases. We validate our approach in trace-driven simulation and show performance increases of query slowdowns and throughputs compared to first-come first-served and shortest expected processing time first scheduling. Simulation experiments are parameterized from system traces of a SAP HANA in-memory database installation with TPC-H type workloads.
Keywords :
database management systems; query processing; scheduling; CPU utilization system measurements; I-O subsystems; SAP HANA in-memory database installation; TPC-H type workloads; WIQ; admission control policy; database queries; first-come first-served scheduling; in-memory database systems; query backlogs; query interference; shortest expected processing time first scheduling; trace-driven simulation; work-intensive query scheduling; Admission control; Computational modeling; Databases; Delay; Instruction sets; Interference; admission control; database management; performance; query interference; scheduling;
Conference_Titel :
Cloud Computing (CLOUD), 2012 IEEE 5th International Conference on
Conference_Location :
Honolulu, HI
Print_ISBN :
978-1-4673-2892-0
DOI :
10.1109/CLOUD.2012.120