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Learned Indexes for Dynamic Workloads

1 Pith paper cite this work. Polarity classification is still indexing.

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abstract

The recent proposal of learned index structures opens up a new perspective on how traditional range indexes can be optimized. However, the current learned indexes assume the data distribution is relatively static and the access pattern is uniform, while real-world scenarios consist of skew query distribution and evolving data. In this paper, we demonstrate that the missing consideration of access patterns and dynamic data distribution notably hinders the applicability of learned indexes. To this end, we propose solutions for learned indexes for dynamic workloads (called Doraemon). To improve the latency for skew queries, Doraemon augments the training data with access frequencies. To address the slow model re-training when data distribution shifts, Doraemon caches the previously-trained models and incrementally fine-tunes them for similar access patterns and data distribution. Our preliminary result shows that, Doraemon improves the query latency by 45.1% and reduces the model re-training time to 1/20.

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cs.DC 1

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2025 1

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representative citing papers

Mycelium: A Transformation-Embedded LSM-Tree

cs.DC · 2025-06-10 · conditional · novelty 6.0

Mycelium embeds data transformations into LSM-tree compaction, reducing transformation write overhead from 35-60% to about 20% while speeding up column-reading queries by up to 4.25x.

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  • Mycelium: A Transformation-Embedded LSM-Tree cs.DC · 2025-06-10 · conditional · none · ref 38 · internal anchor

    Mycelium embeds data transformations into LSM-tree compaction, reducing transformation write overhead from 35-60% to about 20% while speeding up column-reading queries by up to 4.25x.