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CATBench: A Compiler Autotuning Benchmarking Suite for Black-box Optimization

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arxiv 2406.17811 v2 pith:7YUVIJYY submitted 2024-06-24 cs.LG cs.AIcs.NE

classification cs.LGcs.AIcs.NE
keywords optimizationcatbenchautotuningbayesiancompilersuitealgorithmsbenchmarking
verification ladder T0 review T1 audit T2 compute T3 formal
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Bayesian optimization is a powerful method for automating tuning of compilers. The complex landscape of autotuning provides a myriad of rarely considered structural challenges for black-box optimizers, and the lack of standardized benchmarks has limited the study of Bayesian optimization within the domain. To address this, we present CATBench, a comprehensive benchmarking suite that captures the complexities of compiler autotuning, ranging from discrete, conditional, and permutation parameter types to known and unknown binary constraints, as well as both multi-fidelity and multi-objective evaluations. The benchmarks in CATBench span a range of machine learning-oriented computations, from tensor algebra to image processing and clustering, and uses state-of-the-art compilers, such as TACO and RISE/ELEVATE. CATBench offers a unified interface for evaluating Bayesian optimization algorithms, promoting reproducibility and innovation through an easy-to-use, fully containerized setup of both surrogate and real-world compiler optimization tasks. We validate CATBench on several state-of-the-art algorithms, revealing their strengths and weaknesses and demonstrating the suite's potential for advancing both Bayesian optimization and compiler autotuning research.

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Cited by 1 Pith paper

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  1. Bencher: Simple and Reproducible Benchmarking for Black-Box Optimization

    cs.LG 2025-05 conditional novelty 5.0 of 10

    Bencher isolates each benchmark in a virtual environment and exposes a unified RPC interface, supporting a large set of benchmarks for black-box optimization evaluation.

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