SPIRIT: A Microservice-Based Framework for Interactive Cloud Infrastructure Planning
| Authors |
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| Publication date | 2022 |
| Host editors |
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| Book title | Euro-Par 2021: Parallel Processing Workshops |
| Book subtitle | Euro-Par 2021 International Workshops, Lisbon, Portugal, August 30-31, 2021 : revised selected papers |
| ISBN |
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| ISBN (electronic) |
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| Series | Lecture Notes in Computer Science |
| Event | 27th International Conference on Parallel and Distributed Computing, Euro-Par 2021 |
| Pages (from-to) | 405-416 |
| Number of pages | 12 |
| Publisher | Cham: Springer |
| Organisations |
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| Abstract |
The IaaS model provides elastic infrastructure that enables the migration of legacy applications to cloud environments. Many cloud computing vendors such as Amazon Web Services, Microsoft Azure, and Google Cloud Platform offer a pay-per-use policy that allows for a sustainable reduction in costs compared to on-premise hosting, as well as enable users to choose various geographically distributed data centers. Using state-of-the-art planning algorithms can help application owners to estimate the size and characteristics of the underlying cloud inveterate. However, it’s not always clear which is the optimal solution especially in multi-cloud environments with complex application requirements and QoS constraints. In this paper, we propose an open framework named SPIRIT, which allows a user to include cloud infrastructure planning algorithms and to evaluate and compare their solutions. SPIRIT achieves this by allowing users to interactively study infrastructure planning algorithms by adjusting parameters via a graphical user interface, which visualizes the results of these algorithms. In the current prototype, we have included from the IaaS Partial Critical Path algorithm. By taking advantage of SPIRIT’s microservice-based architecture and its generic interfaces a user can add to the framework, new planning algorithms. SPIRIT can transform an abstract workflow described using the CWL to a concrete infrastructure described using the TOSCA specification. This way the infrastructure descriptions can be ranked on various key performance indicators. |
| Document type | Conference contribution |
| Language | English |
| Published at | https://doi.org/10.1007/978-3-031-06156-1_32 |
| Published at | https://zenodo.org/record/6792510 |
| Other links | https://www.scopus.com/pages/publications/85133007893 |
| Downloads |
Europar_2021_workshop_planner
(Accepted author manuscript)
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