2009 29th IEEE International Conference on Distributed Computing Systems (2009)
Montreal, Quebec, Canada
June 22, 2009 to June 26, 2009
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/ICDCS.2009.35
Event stream processing (ESP) applications target the real-time processing of huge amounts of data. Events traverse a graph of stream processing operators where the information of interest is extracted. As these applications gain popularity, the requirements for scalability, availability, and dependability increase. In terms of dependability and availability, many applications require a precise recovery, i.e., a guarantee that the outputs during and after a recovery would be the same as if the failure that triggered recovery had never occurred. Existing solutions for precise recovery induce prohibitive latency costs, either by requiring continuous checkpoint or logging (in a passive replication approach) or perfect synchronization between replicas executing the same operations (in an active replication approach). We introduce a novel technique to guarantee precise recovery for ESP applications while minimizing the latency costs as compared to traditional approaches. The technique minimizes latencies via speculative execution in a distributed system. In terms of scalability, the key component of our approach is a modified software transactional memory that provides not only the speculation capabilities but also optimistic parallelization for costly operations.
Event Stream Processing, Fault-tolerance, Software Transactional Memory, Parallel Computing
Andrey Brito, Christof Fetzer, Pascal Felber, "Minimizing Latency in Fault-Tolerant Distributed Stream Processing Systems", 2009 29th IEEE International Conference on Distributed Computing Systems, vol. 00, no. , pp. 173-182, 2009, doi:10.1109/ICDCS.2009.35