SPEC® CFP2006 Result

Copyright 2006-2017 Standard Performance Evaluation Corporation

Hewlett Packard Enterprise (Test Sponsor: Advanced Micro Devices)

HPE Cloudline CL3150,
AMD EPYC 7601

CPU2006 license: 49 Test date: May-2017
Test sponsor: Advanced Micro Devices Hardware Availability: Jul-2017
Tested by: Advanced Micro Devices Software Availability: Apr-2016
Benchmark results graph
Hardware
CPU Name: AMD EPYC 7601
CPU Characteristics: AMD Turbo CORE technology up to 3.20 GHz
CPU MHz: 2200
FPU: Integrated
CPU(s) enabled: 32 cores, 1 chip, 32 cores/chip, 2 threads/core
CPU(s) orderable: 1 chip
Primary Cache: 64 KB I + 32 KB D on chip per core
Secondary Cache: 512 KB I+D on chip per core
L3 Cache: 64 MB I+D on chip per chip, 8 MB shared / 4 cores
Other Cache: None
Memory: 256 GB (8 x 32 GB 2Rx4 PC4-2667V-R)
Disk Subsystem: 1 x 500 GB SSD
Other Hardware: None
Software
Operating System: Ubuntu 16.04 LTS,
Kernel 4.4.0-71.generic
Compiler: C/C++/Fortran: Version 4.5.2.1 of x86 Open64
Compiler Suite (from AMD)
Auto Parallel: No
File System: ext3
System State: Run level 3 (Full multiuser with network)
Base Pointers: 64-bit
Peak Pointers: 32/64-bit
Other Software: None

Results Table

Benchmark Base Peak
Copies Seconds Ratio Seconds Ratio Seconds Ratio Copies Seconds Ratio Seconds Ratio Seconds Ratio
Results appear in the order in which they were run. Bold underlined text indicates a median measurement.
410.bwaves 64 1388 627 1389 626 1389 626 64 1351 644 1349 645 1349 645
416.gamess 64 1207 1040 1208 1040 1211 1030 64 1072 1170 1073 1170 1073 1170
433.milc 64 1134 518 1135 518 1135 518 64 933 630 933 629 933 630
434.zeusmp 64 511 1140 515 1130 513 1130 64 506 1150 507 1150 506 1150
435.gromacs 64 449 1020 449 1020 447 1020 64 333 1370 331 1380 331 1380
436.cactusADM 64 624 1230 627 1220 625 1220 64 607 1260 614 1250 610 1250
437.leslie3d 64 1300 463 1302 462 1303 462 64 1027 586 1022 589 1024 587
444.namd 64 557 921 557 921 556 923 64 470 1090 469 1090 469 1090
447.dealII 64 412 1780 417 1750 413 1770 64 376 1950 379 1930 382 1920
450.soplex 64 1101 485 1113 480 1101 485 64 1026 520 1025 521 1027 520
453.povray 64 263 1290 261 1300 263 1290 64 209 1630 207 1650 207 1640
454.calculix 64 373 1420 373 1420 374 1410 64 373 1420 373 1420 374 1410
459.GemsFDTD 64 1640 414 1641 414 1642 414 64 1520 447 1519 447 1521 446
465.tonto 64 637 988 637 989 637 989 64 586 1070 587 1070 580 1090
470.lbm 64 945 931 944 931 944 932 64 945 931 944 931 944 932
481.wrf 64 894 799 896 798 894 799 64 894 799 896 798 894 799
482.sphinx3 64 1921 649 1925 648 1923 649 64 1722 724 1723 724 1721 725

Submit Notes

The config file option 'submit' was used.
'numactl' was used to bind copies to the cores.
See the configuration file for details.

Operating System Notes

'ulimit -s unlimited' was used to set environment stack size
'ulimit -l 2097152' was used to set environment locked pages in memory limit
runspec command invoked through numactl i.e.:
numactl --interleave=all runspec <etc>
Set dirty_ratio=8 to limit dirty cache to 8% of memory
Set swappiness=1 to swap only if necessary
Set zone_reclaim_mode=1 to free local node memory and avoid remote memory
sync then drop_caches=3 to reset caches before invoking runspec
Transparent huge pages were enabled for this run (OS default)

Platform Notes

The Linux run level was 3; sysinfo run-level is incorrect.
The dmidecode memory speed information is incorrect.

General Notes

Environment variables set by runspec before the start of the run:
LD_LIBRARY_PATH = "/root/work/cpu2006/amd1603-rate-libs-revA/32:/root/work/cpu2006/amd1603-rate-libs-revA/64"
The binaries were built with the AMD supported x86 Open64 Compiler Suite,
which is only available from AMD at
http://developer.amd.com/tools-and-sdks/cpu-development/x86-open64-compiler-suite/
Binaries were compiled on a system with 2x AMD Opteron 6378 chips + 128GB Memory using RHEL 6.3
Submitted_by: "Smith, Van" <Van.Smith@amd.com>
Submitted: Mon Jun  5 12:38:47 EDT 2017
Submission: cpu2006-20170529-47128.sub
Submitted_by: "Smith, Van" <Van.Smith@amd.com>
Submitted: Thu Jun  8 15:44:26 EDT 2017
Submission: cpu2006-20170529-47128.sub

Base Compiler Invocation

C benchmarks:

 opencc 

C++ benchmarks:

 openCC 

Fortran benchmarks:

 openf95 

Benchmarks using both Fortran and C:

 opencc   openf95 

Base Portability Flags

410.bwaves:  -DSPEC_CPU_LP64 
416.gamess:  -DSPEC_CPU_LP64 
433.milc:  -DSPEC_CPU_LP64 
434.zeusmp:  -DSPEC_CPU_LP64 
435.gromacs:  -DSPEC_CPU_LP64 
436.cactusADM:  -DSPEC_CPU_LP64   -fno-second-underscore 
437.leslie3d:  -DSPEC_CPU_LP64 
444.namd:  -DSPEC_CPU_LP64 
447.dealII:  -DSPEC_CPU_LP64 
450.soplex:  -DSPEC_CPU_LP64 
453.povray:  -DSPEC_CPU_LP64 
454.calculix:  -DSPEC_CPU_LP64 
459.GemsFDTD:  -DSPEC_CPU_LP64 
465.tonto:  -DSPEC_CPU_LP64 
470.lbm:  -DSPEC_CPU_LP64 
481.wrf:  -DSPEC_CPU_LINUX   -DSPEC_CPU_CASE_FLAG   -DSPEC_CPU_LP64   -fno-second-underscore 
482.sphinx3:  -DSPEC_CPU_LP64 

Base Optimization Flags

C benchmarks:

 -Ofast   -OPT:malloc_alg=1   -HP:bd=2m:heap=2m   -IPA:plimit=8000   -IPA:small_pu=100   -mso   -march=bdver1   -mno-fma4   -mno-xop   -mno-tbm   -WB,   -Wl,   -z,muldefs 

C++ benchmarks:

 -Ofast   -static   -CG:load_exe=0   -OPT:malloc_alg=1   -INLINE:aggressive=on   -HP:bd=2m:heap=2m   -D__OPEN64_FAST_SET   -march=bdver2   -mno-fma4   -mno-xop   -mno-tbm   -WB,   -Wl,   -z,muldefs 

Fortran benchmarks:

 -Ofast   -LNO:blocking=off   -LNO:simd_peel_align=on   -OPT:rsqrt=2   -OPT:unroll_size=256   -HP:bd=2m:heap=2m   -mso   -march=bdver1   -mno-fma4   -mno-xop   -mno-tbm   -WB,   -Wl,   -z,muldefs 

Benchmarks using both Fortran and C:

 -Ofast   -OPT:malloc_alg=1   -HP:bd=2m:heap=2m   -IPA:plimit=8000   -IPA:small_pu=100   -mso   -march=bdver1   -mno-fma4   -mno-xop   -mno-tbm   -WB,   -Wl,   -z,muldefs   -LNO:blocking=off   -LNO:simd_peel_align=on   -OPT:rsqrt=2   -OPT:unroll_size=256 

Peak Compiler Invocation

C benchmarks:

 opencc 

C++ benchmarks:

 openCC 

Fortran benchmarks:

 openf95 

Benchmarks using both Fortran and C:

 opencc   openf95 

Peak Portability Flags

410.bwaves:  -DSPEC_CPU_LP64 
416.gamess:  -DSPEC_CPU_LP64 
433.milc:  -DSPEC_CPU_LP64 
434.zeusmp:  -DSPEC_CPU_LP64 
435.gromacs:  -DSPEC_CPU_LP64 
436.cactusADM:  -DSPEC_CPU_LP64   -fno-second-underscore 
437.leslie3d:  -DSPEC_CPU_LP64 
444.namd:  -DSPEC_CPU_LP64 
453.povray:  -DSPEC_CPU_LP64 
454.calculix:  -DSPEC_CPU_LP64 
459.GemsFDTD:  -DSPEC_CPU_LP64 
465.tonto:  -DSPEC_CPU_LP64 
470.lbm:  -DSPEC_CPU_LP64 
481.wrf:  -DSPEC_CPU_LINUX   -DSPEC_CPU_CASE_FLAG   -DSPEC_CPU_LP64   -fno-second-underscore 

Peak Optimization Flags

C benchmarks:

433.milc:  -Ofast   -CG:movnti=1   -CG:locs_best=on   -HP:bdt=2m:heap=2m   -IPA:plimit=7000   -IPA:callee_limit=1200   -OPT:struct_array_copy=2   -OPT:alias=field_sensitive   -mso   -march=bdver1   -mno-fma4 
470.lbm:  basepeak = yes 
482.sphinx3:  -Ofast   -m32   -IPA:plimit=1000   -OPT:malloc_alg=2   -CG:cmp_peep=on   -CG:p2align=0   -CG:load_exe=1   -CG:dsched=on   -INLINE:aggressive=on   -LNO:prefetch=2   -LNO:prefetch_ahead=4   -mso   -march=bdver2   -WB,   -mno-fma4   -mno-tbm   -mno-xop 

C++ benchmarks:

444.namd:  -Ofast   -IPA:plimit=3000   -LNO:ignore_feedback=off   -CG:local_sched_alg=0   -CG:load_exe=0   -OPT:unroll_size=256   -fno-exceptions   -HP:bdt=2m:heap=2m   -LNO:if_select_conv=1   -OPT:alias=disjoint   -LNO:psimd_iso_unroll=ON   -march=bdver2   -mno-fma4   -WB,   -mno-xop   -mno-tbm 
447.dealII:  -Ofast   -D__OPEN64_FAST_SET   -static   -INLINE:aggressive=on   -LNO:opt=1   -LNO:simd=2   -fno-emit-exceptions   -m32   -OPT:unroll_times_max=8   -OPT:unroll_size=256   -OPT:unroll_level=2   -HP:bdt=2m:heap=2m   -GRA:unspill=on   -CG:cmp_peep=on   -CG:movext_icmp=off   -TENV:frame_pointer=off   -march=bdver1   -mno-fma4 
450.soplex:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -O3   -LNO:ignore_feedback=off   -INLINE:aggressive=on   -OPT:RO=1   -OPT:IEEE_arith=3   -OPT:IEEE_NaN_Inf=off   -OPT:fold_unsigned_relops=on   -fno-exceptions   -CG:p2align=0   -m32   -mno-fma4   -HP:bdt=2m:heap=2m   -WOPT:sib=on   -march=bdver1 
453.povray:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -CG:pre_local_sched=off   -CG:p2align=0   -CG:p2align_split=on   -CG:dsched=on   -INLINE:aggressive=on   -HP:bd=2m:heap=2m   -OPT:transform=2   -OPT:alias=disjoint   -WOPT:aggcm=0   -march=bdver2   -mno-fma4   -WB,   -mno-xop   -mno-tbm   -Wl,   -z,muldefs 

Fortran benchmarks:

410.bwaves:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -OPT:Ofast   -OPT:treeheight=on   -LNO:blocking=off   -LNO:ignore_feedback=off   -LNO:fu=4   -LNO:loop_model_simd=on   -LNO:simd_rm_unity_remainder=on   -WOPT:aggstr=0   -HP:bdt=2m:heap=2m   -CG:cmp_peep=on   -march=bdver2   -mno-fma4 
416.gamess:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:fu=6   -LNO:blocking=0   -LNO:simd=2   -OPT:ro=3   -OPT:recip=on   -CG:local_sched_alg=1   -HP:bdt=2m:heap=2m   -WOPT:sib=on   -march=bdver1   -mno-fma4 
434.zeusmp:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:blocking=off   -LNO:interchange=off   -IPA:plimit=1500   -HP:bdt=2m:heap=2m   -march=bdver2   -mno-fma4 
437.leslie3d:  -Ofast   -CG:pre_minreg_level=2   -LNO:simd=0   -LNO:fusion=2   -HP:bdt=2m:heap=2m   -mso   -march=bdver1   -mno-fma4 
459.GemsFDTD:  -Ofast   -IPA:plimit=1500   -OPT:unroll_size=1024   -OPT:unroll_times_max=16   -LNO:fission=2   -CG:local_sched_alg=2   -HP   -march=bdver1   -mno-fma4 
465.tonto:  -Ofast   -OPT:alias=no_f90_pointer_alias   -LNO:blocking=off   -CG:load_exe=1   -CG:local_sched_alg=3   -IPA:plimit=525   -HP:bdt=2m:heap=2m   -march=bdver2   -WB,   -mno-fma4   -mno-tbm   -mno-xop 

Benchmarks using both Fortran and C:

435.gromacs:  -Ofast   -OPT:rsqrt=2   -HP:bdt=2m:heap=2m   -CG:local_sched_alg=2   -CG:load_exe=3   -GRA:unspill=on   -march=bdver2   -mno-fma4   -LNO:simd=3 
436.cactusADM:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:blocking=off   -LNO:prefetch=2   -LNO:pf2=0   -LNO:prefetch_ahead=4   -HP   -CG:locs_shallow_depth=1   -CG:load_exe=0   -CG:dsched=on   -WOPT:sib=on   -march=bdver2   -mno-fma4 
454.calculix:  basepeak = yes 
481.wrf:  basepeak = yes 

The flags file that was used to format this result can be browsed at
http://www.spec.org/cpu2006/flags/x86-openflags-rate-revA-I.html.

You can also download the XML flags source by saving the following link:
http://www.spec.org/cpu2006/flags/x86-openflags-rate-revA-I.xml.