Lune

DAC2025Top-tier venue

ARCANE: Adaptive RISC-V Cache Architecture for Near-memory Extensions

Vincenzo Petrolo, Flavia Guella, Michele Caon, Pasquale Davide Schiavone, Guido Masera, Maurizio Martina

2025Year
1Citations

Abstract

Modern data-driven applications expose limitations of von Neumann architectures-extensive data movement, low throughput, and poor energy efficiency. Accelerators improve performance but lack flexibility and require data transfers. Existing compute in- and nearmemory solutions mitigate these issues but face usability challenges due to data placement constraints. We propose a novel cache architecture that doubles as a tightly-coupled compute-near-memory coprocessor. Our RISC-V cache controller executes custom instructions from the host CPU using vector operations dispatched to near-memory vector processing units within the cache memory subsystem. This architecture abstracts memory synchronization and data mapping from application software while offering software-based Instruction Set Architecture extensibility. Our implementation shows 30×30 \times to 84×84 \times performance improvement when operating on 8-bit data over the same system with a traditional cache when executing a worst-case 32-bit CNN workload, with only 41.3% area overhead.

Ask about this paper

Your agent reads all of it.

Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.

Questions to start from

Your agent calls

Luneget_paper_fulltext

Ask in Lune

Free to start. No credit card required.

lune papers fulltext efe28fb5-056b-4751-be75-8ccbf3b5ebc4

Builds on2

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines