Multi-Variant User Functions for Platform-Aware Skeleton Programming

Author:

Ernstsson August1,Kessler Christoph1

Affiliation:

1. PELAB, Dept. of Computer and Information Science, Linköping University, 581 83 Linköping, Sweden

Abstract

Today’s computer architectures are increasingly specialized and heterogeneous configurations of computational units are common. To provide efficient programming of these systems while still achieving good performance, including performance portability across platforms, high-level parallel programming libraries and tool-chains are used, such as the skeleton programming framework SkePU. SkePU works on heterogeneous systems by automatically generating program components, “user functions”, for multiple different execution units in the system, such as CPU and GPU, from a high-level C++ program. This work extends this multi-backend approach by providing the possibility for the programmer to provide additional variants of these user functions tailored for different scenarios, such as platform constraints. This paper introduces the overall approach of multi-variant user functions, provides several use cases including explicit SIMD vectorization for supported hardware, and evaluates the result of these optimizations that can be achieved using this extension.

Publisher

IOS Press

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Structured platform-aware programming;Anais do XXIV Simpósio em Sistemas Computacionais de Alto Desempenho (SSCAD 2023);2023-10-17

2. Approximate computing, skeleton programming and run-time scheduling in an algorithm for process design and controllability in distributed and heterogeneous infrastructures;Computers & Chemical Engineering;2022-08

3. EXA2PRO: A Framework for High Development Productivity on Heterogeneous Computing Systems;IEEE Transactions on Parallel and Distributed Systems;2022-04-01

4. SkePU 3: Portable High-Level Programming of Heterogeneous Systems and HPC Clusters;International Journal of Parallel Programming;2021-05-19

5. Portable exploitation of parallel and heterogeneous HPC architectures in neural simulation using SkePU;Proceedings of the 23th International Workshop on Software and Compilers for Embedded Systems;2020-05-25

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