ANL Theta; 128 Processors


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Application-level Performance

100s 300w

FTLA-rSC13 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=20000.0, min matrix size=6000.0, stride size=2000.0, block size=100.0, number of failure injetions=1.0

FTLA-rSC13 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=20000.0, min matrix size=6000.0, stride size=2000.0, block size=100.0, number of failure injetions=3.0

FTLA-rSC13 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=20000.0, min matrix size=6000.0, stride size=2000.0, block size=100.0, number of failure injetions=2.0

FTLA-rSC13 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=20000.0, min matrix size=6000.0, stride size=2000.0, block size=100.0, number of failure injetions=4.0

FTLA-rSC13 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=20000.0, min matrix size=6000.0, stride size=2000.0, block size=100.0, number of failure injetions=5.0

STREAM_PC 1.0; ANL Theta; 128 Processors; 1.301 GHz; stream_mpic; STREAM array size=256000000.0, NTIMES=5000.0

STREAM_PC 2.0; ANL Theta; 128 Processors; 1.301 GHz; stream_mpic; STREAM array size=512000000.0, NTIMES=5000.0

Nekbone-fti 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0, ckp L1=1.0, ckp L2=2.0, ckp L3=3.0, ckp L4=4.0

Nekbone-fti 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0, ckp L1=2.0, ckp L2=4.0, ckp L3=6.0, ckp L4=8.0

Nekbone-fti 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0, ckp L1=3.0, ckp L2=5.0, ckp L3=7.0, ckp L4=11.0

Nekbone-fti 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0, ckp L1=4.0, ckp L2=6.0, ckp L3=8.0, ckp L4=10.0

Nekbone-fti 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0, ckp L1=5.0, ckp L2=8.0, ckp L3=9.0, ckp L4=10.0

XSBench 16.0; ANL Theta; 128 Processors; 1.301 GHz; XSBench; gridpoints=100000.0, threads per node=64.0

OpenMC 0.1; ANL Theta; 128 Processors; 1.301 GHz; openmc; Particles size=4000000.0, batch size=100.0, inactive size=20.0

la-fti 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=50000.0, min matrix size=8000.0, stride size=2000.0, block size=100.0, Ckp L1=1.0, Ckp L2=2.0, Ckp L3=3.0, Ckp L4=4.0

la 1.0; ANL Theta; 128 Processors; 1.301 GHz; testing_ftdqr.x; max matrix size=50000.0, min matrix size=8000.0, stride size=2000.0, block size=100.0

HACC 1.7; ANL Theta; 128 Processors; 1.301 GHz; hacc_tpm; nstep=3.0, nsub=5.0, ng/np=640.0

Nekbone-ori-cache 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0

Nekbone-ori-flat 1.0; ANL Theta; 128 Processors; 1.301 GHz; nekbone; Element size=256.0, Iters=1000.0

Nek5000-flat 1.0; ANL Theta; 128 Processors; 1.301 GHz; nek5000; domain dimension=2.0, Iters=100000.0

Nek5000-cache 1.0; ANL Theta; 128 Processors; 1.301 GHz; nek5000; domain dimension=2.0, Iters=100000.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=120.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=90.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=100.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=110.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=130.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=140.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=150.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=160.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=50.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=60.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=70.0, epochs=384.0

Horovod CANDLE P1B2 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; p1b2-hybrid.py; learning rate=0.001, batch size=80.0, epochs=384.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; nt3-hybrid-opt.py; learning rate=0.001, batch size=10.0, epochs=128.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; nt3-hybrid-opt.py; learning rate=0.001, batch size=20.0, epochs=128.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; nt3-hybrid-opt.py; learning rate=0.001, batch size=30.0, epochs=128.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; nt3-hybrid-opt.py; learning rate=0.001, batch size=40.0, epochs=128.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; nt3-hybrid-opt.py; learning rate=0.001, batch size=50.0, epochs=128.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; nt3-hybrid-opt.py; learning rate=0.001, batch size=60.0, epochs=128.0

Horovod CANDLE NT3 Benchmark 1.0; ANL Theta; 128 Processors; 1.301 GHz; nt3-hybrid-opt.py; learning rate=0.001, batch size=70.0, epochs=128.0