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Large-scale maximum likelihood-based phylogenetic analysis on the IBM BlueGene/L.

, , , and . SC, page 4. ACM Press, (2007)

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DRAxML at home: a distributed program for computation of large phylogenetic trees., , , , and . Future Generation Comp. Syst., 21 (4): 725-730 (2005)Automatic performance analysis with periscope., and . Concurrency and Computation: Practice and Experience, 22 (6): 736-748 (2010)Inference of large phylogenetic trees on parallel architectures.. Technical University Munich, (2010)Exploiting Fine-Grained Parallelism in the Phylogenetic Likelihood Function with MPI, Pthreads, and OpenMP: A Performance Study., and . PRIB, volume 5265 of Lecture Notes in Computer Science, page 424-435. Springer, (2008)A Novel Approach for Job Scheduling Optimizations Under Power Cap for ARM and Intel HPC Systems., , , , and . HiPC, page 142-151. IEEE Computer Society, (2017)Large-scale phylogenetic analysis on current HPC architectures., , , , , and . Scientific Programming, 16 (2-3): 255-270 (2008)RAxML-OMP: An Efficient Program for Phylogenetic Inference on SMPs., , and . PaCT, volume 3606 of Lecture Notes in Computer Science, page 288-302. Springer, (2005)Large-scale maximum likelihood-based phylogenetic analysis on the IBM BlueGene/L., , , and . SC, page 4. ACM Press, (2007)Best Practices in Energy-Efficient High Performance Computing., and . GI-Jahrestagung (Workshops), volume P-285 of LNI, page 167-176. GI, (2018)From Facility to Application Sensor Data: Modular, Continuous and Holistic Monitoring with DCDB., , , , , , and . CoRR, (2019)