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IWOCL 2024: Chicago, IL, USA
- Proceedings of the 12th International Workshop on OpenCL and SYCL, IWOCL 2024, Chicago, IL, USA, April 8-11, 2024. ACM 2024
- Luigi Crisci
, Lorenzo Carpentieri
, Peter Thoman
, Aksel Alpay
, Vincent Heuveline
, Biagio Cosenza
:
SYCL-Bench 2020: Benchmarking SYCL 2020 on AMD, Intel, and NVIDIA GPUs. 1:1-1:12 - Topi Leppänen
, Joonas Multanen
, Leevi Leppänen
, Pekka Jääskeläinen
:
Towards Efficient OpenCL Pipe Specification for Hardware Accelerators. 2:1-2:8 - Peter Thoman
, Fabian Knorr
, Luigi Crisci
:
SimSYCL: A SYCL Implementation Targeting Development, Debugging, Simulation and Conformance. 3:1-3:12 - Daniel Arndt
, Damien Lebrun-Grandié
, Christian Trott
:
Experiences with implementing Kokkos' SYCL backend. 4:1-4:11 - Aksel Alpay
, Vincent Heuveline
:
AdaptiveCpp Stdpar: C++ Standard Parallelism Integrated Into a SYCL Compiler. 5:1-5:12 - Kaan Olgu
, Tobias Kenter
, José L. Núñez-Yáñez, Simon McIntosh-Smith
:
Optimisation and Evaluation of Breadth First Search with oneAPI/SYCL on Intel FPGAs: from Describing Algorithms to Describing Architectures. 6:1-6:11 - Brian Homerding
, Arturo Vargas
, Tom Scogland
, Robert Chen
, Mike Davis
, Rich Hornung
:
Enabling RAJA on Intel GPUs with SYCL. 7:1-7:10 - Nathan S. Nichols
, J. Taylor Childers
, Tyler James Burch
, Laurence Field
:
Improving Performance Portability of the Procedurally Generated High Energy Physics Event Generator MadGraph Using SYCL. 8:1-8:8 - Gianmarco Accordi
, Davide Gadioli
, Gianluca Palermo
, Luigi Crisci
, Lorenzo Carpentieri
, Biagio Cosenza
, Andrea Rosario Beccari
:
Unlocking performance portability on LUMI-G supercomputer: A virtual screening case study. 9:1-9:4 - Marcel Breyer
, Alexander Van Craen
, Dirk Pflüger
:
Evaluation of SYCL's Different Data Parallel Kernels. 10:1-10:4 - Jolly Chen
, Monica Dessole
, Ana Lucia Varbanescu
:
Migrating CUDA to SYCL: A HEP Case Study with ROOT RDataFrame. 11:1-11:2 - Hugh Delaney
, Nicolas Miller
, Gordon Brown
, Tadej Ciglaric
:
Extending SYCL host_task for Asynchronous Interop. 12:1-12:2 - Wenwan Xing
, Wenju He
, Xinmin Tian
:
An Efficient Approach to Resolving Stack Overflow of SYCL Kernel on Intel® CPUs. 13:1 - Ziran Zhang
, Zhiming Wang
, Chenwei Sun
, Andy Huang
:
Smoothing the Migration from CUDA to SYCL: SYCLomatic Utility Features. 14:1-14:2 - Yang Zhao
, Wenju He
, Yingcong Wu
, Maosu Zhao
, Ge Jin
, Chunyang Dai
:
Unified AddressSanitizer Framework for SYCL Kernel on CPU and GPU Device. 15:1 - Andy Huang
, Zhiming Wang
, Wenhui Ni
, Sheng Chen
, Nithin George
:
CodePin: An Instrumentation-Based Debug Tool of SYCLomatic. 16:1-16:2 - Ioanna-Maria Panagou
, Nikolaos Bellas
, Lorenzo Moneta
, Sanjiban Sengupta
:
Accelerating Machine Learning Inference on GPUs with SYCL. 17:1-17:2 - Peizhao Qiu
, Danial Chitnis
:
Ray Tracer based lidar simulation using SYCL. 18:1-18:2 - Skyler Szot
, Hongqiang Wang
, Alexander Angus
:
Optimization of Fast Fourier Transform for Qualcomm Adreno Graphics Processing Unit. 19:1-19:2 - Yosang Jeong
, Hoon Ryu
:
Acceleration of Quantum Transport Simulations with OpenCL. 20:1 - Victor Perez, Victor Lomüller
, Lukas Sommer
, Julian Oppermann
, Romain Biessy
, Tadej Ciglaric
, Mehdi Goli
:
On Demand Specialization of SYCL Kernels with Specialization Constant Length Allocations (SCLA). 21:1-21:2 - Robert Mueller-Albrecht
:
SYCLomatic: SYCL Adoption for Everyone - Moving from CUDA to SYCL Gets Progressively Easier: Advanced Migration Considerations. 22:1-22:2
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