Michal Welnicki

dblp:22/3981 · DBLP profile ↗
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4ranked-venue papers
0as first author
3since 2021 · last 2023
0009-0006-0272-4258ORCID · reported

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 4 · 3 since 2021Databases, data management, data science and information retrieval · 2 · 1 since 2021
YearPublicationVenuePosition
2023 InftyDedup: Scalable and Cost-Effective Cloud Tiering with Deduplication
Iwona Kotlarska, Andrzej Jackowski, Krzysztof Lichota, Michal Welnicki, Cezary Dubnicki, Konrad Iwanicki
FAST4
2023 Derrick: A Three-layer Balancer for Self-managed Continuous Scalability
abstract
Data arrangement determines the capacity, resilience, and performance of a distributed storage system. A scalable self-managed system must place its data efficiently not only during stable operation but also after an expansion, planned downscaling, or device failures. In this article, we present Derrick, a data balancing algorithm addressing these needs, which has been developed for HYDRAstor, a highly scalable commercial storage system. Derrick makes its decisions quickly in case of failures but takes additional time to find a nearly optimal data arrangement and a plan for reaching it when the device population changes. Compared to balancing algorithms in two other state-of-the-art systems, Derrick provides better capacity utilization, reduced data movement, and improved performance. Moreover, it can be easily adapted to meet custom placement requirements.
Andrzej Jackowski, Leszek Gryz, Michal Welnicki, Cezary Dubnicki, Konrad Iwanicki
ACM Trans. Storage3
2023 ObjDedup: High-Throughput Object Storage Layer for Backup Systems With Block-Level Deduplication
abstract
The immense popularity of object storage is also affecting the market of backup. Not only have novel backup solutions emerged that utilize cloud-based object storage as backends, but also support for object storage interfaces is increasingly expected from traditional dedicated backup appliances. This latter trend especially concerns systems with data deduplication, as they can offer compelling gains in storage capacity and throughput. However, such systems have been designed for interfaces and workloads that are markedly different from those encountered in object storage. Notably, they expect data to be written in portions that are orders of magnitude longer than those in the novel object-storage-oriented backup applications. In this light, we contribute twofold. First, contrasting the properties of object storage interfaces with usage patterns from 686 commercial deployments of backup appliances, we identify specific issues an implementation of such an interface has to address to offer adequate performance in a backup system with block-level deduplication. In particular, we show that a major challenge is efficient metadata management. Second, we present distributed data structures and algorithms to handle object metadata in backup systems with block-level deduplication. Subsequently, we implement them as an object storage layer for our HYDRAstor backup system. In comparison to object storage without in-line deduplication, our solution achieves 1.8–3.93x higher write throughput. Compared to object storage on top of a state-of-the-art file-based backup system, it processes 5.26–11.34x more object put operations per time unit.
Andrzej Jackowski, Lukasz Slusarczyk, Krzysztof Lichota, Michal Welnicki, Rafal Wijata, Mateusz Kielar, Tadeusz Kopec, Cezary Dubnicki, Konrad Iwanicki
IEEE Trans. Parallel Distributed Syst.4
2009 HYDRAstor: A Scalable Secondary Storage
Cezary Dubnicki, Leszek Gryz, Lukasz Heldt, Michal Kaczmarczyk, Wojciech Kilian, Przemyslaw Strzelczak, Jerzy Szczepkowski, Cristian Ungureanu, Michal Welnicki
FAST9