REIS: A High-Performance and Energy-Efficient Retrieval System with In-Storage Processing

Onur Mutlu, Yu Liang, Kangqi Chen, Rakesh Nadig, Manos Frouzakis, Nika Mansouri Ghiasi, Haiyu Mao, Jisung Park, Mohammad Sadrosadati
2025-06-20

SCID:  54.1/yc4ph3x5
Large Language Models (LLMs) face an inherent challenge: their knowledge is confined to the data that they have been trained on.This limitation, combined with the significant cost of retraining renders them incapable of providing up-to-date responses.To overcome these issues, Retrieval-Augmented Generation (RAG) complements the static training-derived knowledge of LLMs with an external knowledge repository.RAG consists of three stages: (i) indexing, which creates a database that facilitates similarity search on text embeddings, (ii) retrieval, which, given a user query, searches and retrieves relevant data from the database and (iii) generation, which uses the user query and the retrieved data to generate a response.The retrieval stage of RAG in particular becomes a significant performance bottleneck in inference pipelines.In this stage, (i) a given user query is mapped to an embedding vector and (ii) an Approximate Nearest Neighbor Search (ANNS) algorithm searches for the most semantically similar embedding vectors in the database to identify relevant items.Due to the large database sizes, ANNS incurs significant data movement overheads between the host and the storage system.To alleviate these overheads, prior works propose In-Storage Processing (ISP) techniques that accelerate ANNS workloads by performing computations inside the storage system.However, existing works that leverage ISP for ANNS (i) employ algorithms that are not tailored to ISP systems, (ii) do not accelerate data retrieval operations for data selected by ANNS, and (iii) introduce significant hardware modifications to the storage system, limiting performance and hindering their adoption.
Publication Details
Publication Date
2025-06-20
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Onur Mutlu
Yu Liang
Kangqi Chen
Rakesh Nadig
Manos Frouzakis
Nika Mansouri Ghiasi
Haiyu Mao
Jisung Park
Mohammad Sadrosadati
Explore More Research
Use the citation graph to discover related papers and expand your research horizons.
Click any node to explore
Download PDF
100%