Title :
Batch based cancellation: a rollback optimal cancellation scheme in time warp simulations
Author :
Zeng, Yi ; Cai, Wentong ; Turner, Stephen J.
Author_Institution :
Sch. of Comput. Eng., Nanyang Technol. Univ., Singapore, Singapore
Abstract :
An efficient cancellation scheme is essential to the performance of time warp simulations. The pitfalls of rollback echoes, chasing hazards and cascading rollbacks can be identified as being attributable to the inefficiency of the conventional per-event based cancellation scheme. Instead of capturing the happen-before relation between events, which is used by the range based cancellation scheme, the batch based cancellation scheme proposed in this paper utilizes a modified paradigm of vector time, namely, state vector, to capture the dependence of events. We prove that with conformance to specific rules regulating the advancement of LPs (logical processes), the events to be cancelled by a straggler message can be determined using a range of the state vector. Thus, knowledge of the range enables any LP to recover from the receipt of a straggler message at the cost of at most one rollback (i.e., rollback optimal). The results of preliminary experiments conducted using a manufacturing model show that the proposed scheme is successful in reducing the number of antimessages and increasing the ratio of the number of committed events to the number of processed events.
Keywords :
communication complexity; fault tolerant computing; logic programming; time warp simulation; antimessages; batch based cancellation; cascading rollbacks; chasing hazards; logical processes; range based cancellation; rollback echoes; rollback optimal cancellation; state vector; time warp simulations; vector time; Computational modeling; Computer simulation; Cost function; Hazards; Job shop scheduling; Manufacturing processes; Predictive models; Processor scheduling; Time warp simulation; Virtual manufacturing;
Conference_Titel :
Parallel and Distributed Simulation, 2004. PADS 2004. 18th Workshop on
Print_ISBN :
0-7695-2111-8
DOI :
10.1109/PADS.2004.1301288