SPEC® CINT2006 Result

Copyright 2006-2018 Standard Performance Evaluation Corporation

ASUSTeK Computer Inc. (Test Sponsor: Advanced Micro Devices)

Asus RS700A-E9,
AMD EPYC 7351

CPU2006 license: 49 Test date: Jul-2017
Test sponsor: Advanced Micro Devices Hardware Availability: Sep-2017
Tested by: Advanced Micro Devices Software Availability: Apr-2016
Benchmark results graph
Hardware
CPU Name: AMD EPYC 7351
CPU Characteristics: AMD Turbo CORE technology up to 2.90 GHz
CPU MHz: 2400
FPU: Integrated
CPU(s) enabled: 32 cores, 2 chips, 16 cores/chip, 2 threads/core
CPU(s) orderable: 1,2 chips
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 / 2 cores
Other Cache: None
Memory: 512 GB (16 x 32 GB 2Rx4 PC4-2667V-R, running at
2400)
Disk Subsystem: 1 x 1 TB SSD
Other Hardware: None
Software
Operating System: Ubuntu 16.04.2 LTS,
Kernel 4.4.0-87-generic
Compiler: C/C++: Version 4.5.2.1 of x86 Open64 Compiler
Suite (from AMD)
Auto Parallel: No
File System: ext4
System State: Run level 3 (Full multiuser with network)
Base Pointers: 32/64-bit
Peak Pointers: 32/64-bit
Other Software: MicroQuill SmartHeap 10.0 32-bit Library for Linux

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.
400.perlbench 64 586 1070 590 1060 590 1060 64 459 1360 462 1350 464 1350
401.bzip2 64 760 813 762 810 760 812 64 729 847 725 852 724 853
403.gcc 64 524 983 525 982 526 979 64 475 1080 472 1090 474 1090
429.mcf 64 444 1310 444 1320 443 1320 64 326 1790 325 1790 326 1790
445.gobmk 64 671 1000 673 997 669 1000 64 631 1060 631 1060 628 1070
456.hmmer 64 293 2030 293 2040 294 2030 64 270 2210 271 2200 272 2200
458.sjeng 64 853 908 843 918 843 919 64 805 962 805 962 804 963
462.libquantum 64 108 12300 107 12400 107 12400 64 108 12300 107 12400 107 12400
464.h264ref 64 1055 1340 1056 1340 1058 1340 64 869 1630 869 1630 869 1630
471.omnetpp 64 514 778 524 764 524 764 64 514 778 524 764 524 764
473.astar 64 547 821 542 829 542 829 64 501 896 504 892 503 893
483.xalancbmk 64 305 1450 306 1440 304 1450 64 306 1440 304 1450 304 1450

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 runcpu

Transparent huge pages were enabled for this run (OS default)

Set vm/nr_hugepages=57344 in /etc/sysctl.conf
mount -t hugetlbfs nodev /mnt/hugepages

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:
HUGETLB_LIMIT = "896"
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 Aug  7 23:26:10 EDT 2017
Submission: cpu2006-20170807-48149.sub

Base Compiler Invocation

C benchmarks:

 opencc 

C++ benchmarks:

 openCC 

Base Portability Flags

400.perlbench:  -DSPEC_CPU_LP64   -DSPEC_CPU_LINUX_X64 
401.bzip2:  -DSPEC_CPU_LP64 
403.gcc:  -DSPEC_CPU_LP64 
429.mcf:  -DSPEC_CPU_LP64 
445.gobmk:  -DSPEC_CPU_LP64 
456.hmmer:  -DSPEC_CPU_LP64 
458.sjeng:  -DSPEC_CPU_LP64 
462.libquantum:  -DSPEC_CPU_LP64   -DSPEC_CPU_LINUX 
464.h264ref:  -DSPEC_CPU_LP64 
483.xalancbmk:  -DSPEC_CPU_LINUX 

Base Optimization Flags

C benchmarks:

 -Ofast   -CG:local_sched_alg=1   -INLINE:aggressive=ON   -IPA:plimit=8000   -IPA:small_pu=100   -HP:bd=2m:heap=2m   -mso   -LNO:prefetch=2   -march=bdver1   -mno-fma4   -mno-xop   -mno-tbm 

C++ benchmarks:

 -Ofast   -m32   -INLINE:aggressive=on   -CG:cmp_peep=on   -D__OPEN64_FAST_SET   -march=bdver1   -mno-fma4   -mno-xop   -mno-tbm   -L/root/work/libraries/SmartHeap-10/lib -lsmartheap 

Peak Compiler Invocation

C benchmarks:

 opencc 

C++ benchmarks:

 openCC 

Peak Portability Flags

400.perlbench:  -DSPEC_CPU_LP64   -DSPEC_CPU_LINUX_X64 
401.bzip2:  -DSPEC_CPU_LP64 
445.gobmk:  -DSPEC_CPU_LP64 
456.hmmer:  -DSPEC_CPU_LP64 
458.sjeng:  -DSPEC_CPU_LP64 
462.libquantum:  -DSPEC_CPU_LP64   -DSPEC_CPU_LINUX 
464.h264ref:  -DSPEC_CPU_LP64 
473.astar:  -DSPEC_CPU_LP64 
483.xalancbmk:  -DSPEC_CPU_LINUX 

Peak Optimization Flags

C benchmarks:

400.perlbench:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:prefetch=2   -LNO:opt=0   -IPA:plimit=20000   -OPT:unroll_times_max=8   -OPT:unroll_size=256   -OPT:unroll_level=2   -OPT:keep_ext=on   -WOPT:if_conv=0   -WOPT:sib=on   -CG:local_sched_alg=1   -CG:unroll_fb_req=on   -CG:movext_icmp=off   -HP:bd=2m:heap=2m   -march=bdver1   -mno-fma4   -GRA:aggr_loop_splitting=off   -GRA:loop_splitting=off 
401.bzip2:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:prefetch=2   -LNO:pf2=0   -OPT:alias=disjoint   -OPT:goto=off   -CG:local_sched_alg=1   -HP:bdt=2m:heap=2m   -march=bdver2   -WB,   -mno-fma4   -mno-tbm   -mno-xop 
403.gcc:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:trip_count=256   -CG:cmp_peep=on   -CG:pre_minreg_level=2   -m32   -HP:bdt=2m:heap=2m   -GRA:unspill=on   -IPA:small_pu=200   -WOPT:sib=on   -march=bdver2   -mno-fma4   -WB,   -mno-tbm   -mno-xop 
429.mcf:  -O3   -OPT:unroll_times_max=5   -ipa   -INLINE:aggressive=on   -CG:gcm=off   -CG:dsched=on   -GRA:prioritize_by_density=on   -m32   -HP:bdt=2m:heap=2m   -mso   -march=bdver1   -mno-fma4 
445.gobmk:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -OPT:unroll_size=256   -OPT:unroll_times_max=8   -OPT:keep_ext=on   -IPA:plimit=750   -IPA:min_hotness=300   -IPA:pu_reorder=1   -LNO:ignore_feedback=off   -WOPT:if_conv=2   -HP:bd=2m:heap=2m   -march=bdver1   -mno-fma4 
456.hmmer:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -LNO:prefetch=2   -OPT:alias=disjoint   -OPT:unroll_times_max=16   -OPT:unroll_size=512   -OPT:unroll_level=2   -OPT:keep_ext=on   -CG:cflow=0   -CG:cmp_peep=on   -CG:pre_local_sched=off   -HP:bdt=2m:heap=2m   -CG:p2align=0   -CG:load_exe=3   -CG:dsched=on   -march=bdver1   -mno-fma4 
458.sjeng:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -CG:ptr_load_use=0   -CG:divrem_opt=on   -CG:movext_icmp=off   -CG:locs_best=on   -LNO:full_unroll=10   -IPA:pu_reorder=2   -HP:heap=2m:bd=2m   -WOPT:sib=on   -march=bdver1   -mno-fma4 
462.libquantum:  basepeak = yes 
464.h264ref:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -O3   -OPT:unroll_size=256   -OPT:unroll_times_max=2   -IPA:plimit=20000   -OPT:alias=disjoint   -CG:ptr_load_use=0   -CG:local_sched_alg=1   -HP:bdt=2m:heap=2m   -march=bdver1   -mno-fma4 

C++ benchmarks:

471.omnetpp:  basepeak = yes 
473.astar:  -fb_create fbdata(pass 1)   -fb_opt fbdata(pass 2)   -Ofast   -WOPT:if_conv=0   -WOPT:sib=on   -CG:divrem_opt=on   -CG:p2align=1   -CG:dsched=on   -GRA:optimize_boundary=on   -OPT:alias=disjoint   -INLINE:aggressive=on   -IPA:small_pu=3000   -IPA:plimit=3000   -HP:bdt=2m:heap=2m   -march=bdver1   -mno-fma4 
483.xalancbmk:  -Ofast   -LNO:prefetch=2   -OPT:unroll_size=512   -OPT:unroll_times_max=8   -D__OPEN64_FAST_SET   -INLINE:aggressive=on   -m32   -CG:cmp_peep=on   -CG:local_sched=off   -CG:p2align=1   -GRA:unspill=on   -TENV:frame_pointer=off   -fno-emit-exceptions   -march=bdver2   -mno-fma4   -L/root/work/libraries/SmartHeap-10/lib -lsmartheap 

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.