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Asynchronous snapshots of actor systems for latency-sensitive applications

  • Dominik Aumayr (Vortragende*r)

Aktivität: Vortrag oder PräsentationVortrag nach Bewerbung und AuswahlScience-to-science

Beschreibung

The actor model is popular for many types of server applications. Efficient snapshotting of applications is crucial in the deployment of pre-initialized applications or moving running applications to different machines, e.g for debugging purposes. A key issue is that snapshotting blocks all other operations. In modern latency-sensitive applications, stopping the application to persist its state needs to be avoided, because users may not tolerate the increased request latency. In order to minimize the impact of snapshotting on request latency, our approach persists the application’s state asynchronously by capturing partial heaps, completing snapshots step by step. Additionally, our solution is transparent and supports arbitrary object graphs. We prototyped our snapshotting approach on top of the Truffle/Graal platform and evaluated it with the Savina benchmarks and the Acme Air microservice application. When performing a snapshot every thousand Acme Air requests, the number of slow requests ( 0.007% of all requests) with latency above 100ms increases by 5.43%. Our Savina microbenchmark results detail how different utilization patterns impact snapshotting cost. To the best of our knowledge, this is the first system that enables asynchronous snapshotting of actor applications, i.e. without stop-the-world synchronization, and thereby minimizes the impact on latency. We thus believe it enables new deployment and debugging options for actor systems.
Zeitraum22 Okt. 2019
EreignistitelIntl. Conf. on Managed Programming Languages and Runtimes (MPLR'19)
VeranstaltungstypKonferenz
OrtGriechenlandAuf Karte anzeigen

Wissenschaftszweige

  • 102029 Praktische Informatik
  • 102009 Computersimulation
  • 102 Informatik
  • 102011 Formale Sprachen
  • 102022 Softwareentwicklung
  • 102013 Human-Computer Interaction
  • 102024 Usability Research

JKU-Schwerpunkte

  • Digital Transformation