Pith. sign in

REVIEW 3 cited by

HLSPilot: LLM-based High-Level Synthesis

Not yet reviewed by Pith; the record is open.

This paper has not been read by Pith yet. Machine review is queued; the pith claim, tier, and objections will appear here once it completes.

SPECIMEN: schema-true, not a live event

T0 review · schema-true

One-sentence machine reading of the paper's core claim.

pith:XXXXXXXX · record.json · timestamp

arxiv 2408.06810 v1 pith:5QVFO45R submitted 2024-08-13 cs.AR

classification cs.AR
keywords codehardwarehigh-leveldesignsgenerationhlspilotlanguagellms
verification ladder T0 review T1 audit T2 compute T3 formal
0 comments
read the original abstract

Large language models (LLMs) have catalyzed an upsurge in automatic code generation, garnering significant attention for register transfer level (RTL) code generation. Despite the potential of RTL code generation with natural language, it remains error-prone and limited to relatively small modules because of the substantial semantic gap between natural language expressions and hardware design intent. In response to the limitations, we propose a methodology that reduces the semantic gaps by utilizing C/C++ for generating hardware designs via High-Level Synthesis (HLS) tools. Basically, we build a set of C-to-HLS optimization strategies catering to various code patterns, such as nested loops and local arrays. Then, we apply these strategies to sequential C/C++ code through in-context learning, which provides the LLMs with exemplary C/C++ to HLS prompts. With this approach, HLS designs can be generated effectively. Since LLMs still face problems in determining the optimized pragma parameters precisely, we have a design space exploration (DSE) tool integrated for pragma parameter tuning. Furthermore, we also employ profiling tools to pinpoint the performance bottlenecks within a program and selectively convert bottleneck components to HLS code for hardware acceleration. By combining the LLM-based profiling, C/C++ to HLS translation, and DSE, we have established HLSPilot, the first LLM-enabled high-level synthesis framework, which can fully automate the high-level application acceleration on hybrid CPU-FPGA architectures. According to our experiments on real-world application benchmarks, HLSPilot achieve comparable performance in general and can even outperform manually crafted counterparts, thereby underscoring the substantial promise of LLM-assisted hardware designs.

Discussion (0). Continue with ORCID to comment.

Forward citations

Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Iceberg: Enhancing HLS Modeling with Synthetic Data

    cs.LG 2025-07 conditional novelty 6.0 of 10

    Pretraining on LLM-generated HLS programs plus GNN weak labels reduces few-shot latency prediction error by 86% on six real-world applications.

  2. Spec2RTL-Agent: Automated Hardware Code Generation from Complex Specifications Using LLM Agent Systems

    cs.AR 2025-06 conditional novelty 6.0 of 10

    On three NIST crypto standards (AES, DSS, HMAC), Spec2RTL-Agent generates RTL via a multi-agent pipeline from pseudocode to Python to synthesizable C++, reporting 3/3 correct designs with about 4.3 human interventions...

  3. SANGAM: SystemVerilog Assertion Generation via Monte Carlo Tree Self-Refine

    cs.AI 2025-06 conditional novelty 6.0 of 10

    An LLM-based system combining specification analysis, waveform analysis, and Monte Carlo Tree Self-Refine generates SystemVerilog assertions that outperform AssertLLM and ChIRAAG on I2C and RV-Timer designs.

Pith tools