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Software Transactional Memory for GPU Architectures.

, , , , and . IEEE Comput. Archit. Lett., 13 (1): 49-52 (2014)

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An Empirical-cum-Statistical Approach to Power-Performance Characterization of Concurrent GPU Kernels., , , and . CoRR, (2020)On Characterization of Performance and Energy Efficiency in Heterogeneous HPC Cloud Data Centers., , , and . MASCOTS, page 315-320. IEEE Computer Society, (2014)Integrating nanophotonics in GPU microarchitecture., , , , and . PACT, page 425-426. ACM, (2012)Hierarchically characterizing CUDA program behavior., , , , and . IISWC, page 76. IEEE Computer Society, (2011)Software Transactional Memory for GPU Architectures., , , , , and . CGO, page 1. ACM, (2014)Chameleon: Adapting throughput server to time-varying green power budget using online learning., , , , , and . ISLPED, page 100-105. IEEE, (2013)Exploring GPGPU workloads: Characterization methodology, analysis and microarchitecture evaluation implications., , , and . IISWC, page 1-10. IEEE Computer Society, (2010)GPGPU-MiniBench: Accelerating GPGPU Micro-Architecture Simulation., , , , , , , and . IEEE Trans. Computers, 64 (11): 3153-3166 (2015)Software Transactional Memory for GPU Architectures., , , , and . IEEE Comput. Archit. Lett., 13 (1): 49-52 (2014)Exploring Silicon Nanophotonics in Throughput Architecture., , , and . IEEE Des. Test, 31 (5): 18-27 (2014)