English

Link Quality Aware Pathfinding for Chiplet Interconnects

Hardware Architecture 2026-03-13 v1

Abstract

As chiplet-based integration advances, designers must select among short-reach die-to-die interconnect technologies with widely varying shoreline and areal bandwidth density, energy per bit, reach, and raw bit error rate (BER). Meeting stringent delivered BER targets in chiplet systems requires error-correcting codes (ECC), but incurs energy, area, and throughput overheads. We develop a flow centered around RTL synthesis power and area estimations to support pathfinding of inter-chiplet links under a stringent 10-27 delivered BER target. We synthesize a parameterized Reed-Solomon code with CRC-64 and Go-Back-N retry logic to estimate the correction overhead for different transceiver bit error rates. Results show that ECC can materially change link comparisons under common figures of merit and that CRC+ARQ can reduce the required RS strength (and decoder overhead) at moderate BERs while still meeting stringent delivered-BER targets. We present a CP-SAT-based link assignment formulation that uses these ECC-corrected metrics under reach, delivered-bandwidth, and shoreline constraints in system-level optimization.

Keywords

Cite

@article{arxiv.2603.11612,
  title  = {Link Quality Aware Pathfinding for Chiplet Interconnects},
  author = {Aaron Yen and Jooyeon Jeong and Puneet Gupta},
  journal= {arXiv preprint arXiv:2603.11612},
  year   = {2026}
}

Comments

8 pages, 8 figures Accepted at IEEE Electronic Components and Technology Conference 2026

R2 v1 2026-07-01T11:16:05.224Z