m5zn-12xlarge-amazon-linux-2023 amazon testing on Amazon Linux 2023.6.20241010 via the Phoronix Test Suite.
Compare your own system(s) to this result file with the
Phoronix Test Suite by running the command:
phoronix-test-suite benchmark 2410280-NE-M5ZN12XLA25 2 x 96 GB DDR4-2933MT Processor: 2 x Intel Xeon Platinum 8252C (24 Cores / 48 Threads), Motherboard: Amazon EC2 m5zn.12xlarge (1.0 BIOS), Chipset: Intel 440FX 82441FX PMC, Memory: 2 x 96 GB DDR4-2933MT/s, Disk: 107GB Amazon Elastic Block Store, Network: Amazon Elastic
OS: Amazon Linux 2023.6.20241010, Kernel: 6.1.112-122.189.amzn2023.x86_64 (x86_64), Compiler: GCC 11.4.1 20230605, File-System: xfs, System Layer: amazon
Kernel Notes: Transparent Huge Pages: madviseCompiler Notes: --build=x86_64-amazon-linux --disable-libunwind-exceptions --enable-__cxa_atexit --enable-bootstrap --enable-cet --enable-checking=release --enable-gnu-indirect-function --enable-gnu-unique-object --enable-initfini-array --enable-languages=c,c++,fortran,lto --enable-multilib --enable-offload-targets=nvptx-none --enable-plugin --enable-shared --enable-threads=posix --mandir=/usr/share/man --with-arch_32=x86-64 --with-arch_64=x86-64-v2 --with-gcc-major-version-only --with-linker-hash-style=gnu --with-tune=generic --without-cuda-driverProcessor Notes: CPU Microcode: 0x5003707Security Notes: gather_data_sampling: Unknown: Dependent on hypervisor status + itlb_multihit: KVM: Mitigation of VMX unsupported + l1tf: Mitigation of PTE Inversion + mds: Vulnerable: Clear buffers attempted no microcode; SMT Host state unknown + meltdown: Mitigation of PTI + mmio_stale_data: Vulnerable: Clear buffers attempted no microcode; SMT Host state unknown + reg_file_data_sampling: Not affected + retbleed: Vulnerable + spec_rstack_overflow: Not affected + spec_store_bypass: Vulnerable + spectre_v1: Mitigation of usercopy/swapgs barriers and __user pointer sanitization + spectre_v2: Mitigation of Retpolines; STIBP: disabled; RSB filling; PBRSB-eIBRS: Not affected; BHI: Retpoline + srbds: Not affected + tsx_async_abort: Not affected
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Copy - Benchmark: Integer 2 x 96 GB DDR4-2933MT 6K 12K 18K 24K 30K SE +/- 118.07, N = 3 27233.34 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Scale - Benchmark: Integer 2 x 96 GB DDR4-2933MT 5K 10K 15K 20K 25K SE +/- 77.82, N = 3 22440.79 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Triad - Benchmark: Integer 2 x 96 GB DDR4-2933MT 6K 12K 18K 24K 30K SE +/- 58.99, N = 3 27287.04 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Average - Benchmark: Integer 2 x 96 GB DDR4-2933MT 6K 12K 18K 24K 30K SE +/- 31.46, N = 3 26132.39 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Add - Benchmark: Floating Point 2 x 96 GB DDR4-2933MT 5K 10K 15K 20K 25K SE +/- 19.09, N = 3 23875.09 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Copy - Benchmark: Floating Point 2 x 96 GB DDR4-2933MT 6K 12K 18K 24K 30K SE +/- 35.73, N = 3 26612.53 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Scale - Benchmark: Floating Point 2 x 96 GB DDR4-2933MT 4K 8K 12K 16K 20K SE +/- 133.48, N = 3 20368.16 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Triad - Benchmark: Floating Point 2 x 96 GB DDR4-2933MT 6K 12K 18K 24K 30K SE +/- 78.77, N = 3 27810.97 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MB/s, More Is Better RAMspeed SMP 3.5.0 Type: Average - Benchmark: Floating Point 2 x 96 GB DDR4-2933MT 5K 10K 15K 20K 25K SE +/- 19.38, N = 3 25000.33 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy - Array Size: 512 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 0.95, N = 3 4785.20 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy - Array Size: 1024 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 2.94, N = 3 4786.32 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy - Array Size: 4096 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 6.70, N = 3 4754.54 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy - Array Size: 8192 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 16.35, N = 3 4718.85 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy, Fixed Block Size - Array Size: 128 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 5.12, N = 3 4506.98 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy, Fixed Block Size - Array Size: 512 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 2.36, N = 3 4508.61 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy, Fixed Block Size - Array Size: 1024 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 15.79, N = 3 4526.13 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy, Fixed Block Size - Array Size: 4096 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 5.91, N = 3 4516.44 1. (CC) gcc options: -O3 -march=native
OpenBenchmarking.org MiB/s, More Is Better MBW 2018-09-08 Test: Memory Copy, Fixed Block Size - Array Size: 8192 MiB 2 x 96 GB DDR4-2933MT 1000 2000 3000 4000 5000 SE +/- 1.90, N = 3 4517.15 1. (CC) gcc options: -O3 -march=native
pmbench Pmbench is a Linux paging and virtual memory benchmark. This test profile will report the average page latency of the system. Learn more via the OpenBenchmarking.org test page.
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 1 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.0178 0.0356 0.0534 0.0712 0.089 SE +/- 0.0001, N = 3 0.0789 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 2 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.018 0.036 0.054 0.072 0.09 SE +/- 0.0003, N = 3 0.0800 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 4 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.0212 0.0424 0.0636 0.0848 0.106 SE +/- 0.0014, N = 3 0.0943 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 8 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.0218 0.0436 0.0654 0.0872 0.109 SE +/- 0.0002, N = 3 0.0967 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 16 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.0216 0.0432 0.0648 0.0864 0.108 SE +/- 0.0001, N = 3 0.0958 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 32 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.0256 0.0512 0.0768 0.1024 0.128 SE +/- 0.0001, N = 3 0.1136 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 48 - Read-Write Ratio: 50% 2 x 96 GB DDR4-2933MT 0.0259 0.0518 0.0777 0.1036 0.1295 SE +/- 0.0007, N = 3 0.1153 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 1 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0088 0.0176 0.0264 0.0352 0.044 SE +/- 0.0002, N = 3 0.0389 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 2 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0088 0.0176 0.0264 0.0352 0.044 SE +/- 0.0002, N = 3 0.0389 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 4 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0088 0.0176 0.0264 0.0352 0.044 SE +/- 0.0000, N = 3 0.0390 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 8 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0088 0.0176 0.0264 0.0352 0.044 SE +/- 0.0000, N = 3 0.0391 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 1 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.0102 0.0204 0.0306 0.0408 0.051 SE +/- 0.0003, N = 3 0.0452 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 16 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0088 0.0176 0.0264 0.0352 0.044 SE +/- 0.0001, N = 3 0.0391 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 2 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.0103 0.0206 0.0309 0.0412 0.0515 SE +/- 0.0004, N = 7 0.0456 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 32 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0106 0.0212 0.0318 0.0424 0.053 SE +/- 0.0001, N = 3 0.0470 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 4 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.011 0.022 0.033 0.044 0.055 SE +/- 0.0003, N = 3 0.0487 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 48 - Read-Write Ratio: 100% Reads 2 x 96 GB DDR4-2933MT 0.0106 0.0212 0.0318 0.0424 0.053 SE +/- 0.0001, N = 3 0.0473 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 8 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.011 0.022 0.033 0.044 0.055 SE +/- 0.0001, N = 3 0.0491 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 16 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.0112 0.0224 0.0336 0.0448 0.056 SE +/- 0.0000, N = 3 0.0497 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 32 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.0185 0.037 0.0555 0.074 0.0925 SE +/- 0.0002, N = 3 0.0822 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 48 - Read-Write Ratio: 100% Writes 2 x 96 GB DDR4-2933MT 0.0186 0.0372 0.0558 0.0744 0.093 SE +/- 0.0003, N = 3 0.0827 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 1 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0223 0.0446 0.0669 0.0892 0.1115 SE +/- 0.0000, N = 3 0.0991 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 2 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0223 0.0446 0.0669 0.0892 0.1115 SE +/- 0.0003, N = 3 0.0991 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 4 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0282 0.0564 0.0846 0.1128 0.141 SE +/- 0.0003, N = 3 0.1253 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 8 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0286 0.0572 0.0858 0.1144 0.143 SE +/- 0.0003, N = 3 0.1271 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 16 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0285 0.057 0.0855 0.114 0.1425 SE +/- 0.0003, N = 3 0.1265 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 32 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0302 0.0604 0.0906 0.1208 0.151 SE +/- 0.0002, N = 3 0.1342 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org us - Average Page Latency, Fewer Is Better pmbench Concurrent Worker Threads: 48 - Read-Write Ratio: 80% Reads 20% Writes 2 x 96 GB DDR4-2933MT 0.0302 0.0604 0.0906 0.1208 0.151 SE +/- 0.0006, N = 3 0.1344 1. (CC) gcc options: -lm -luuid -lxml2 -m64 -pthread
OpenBenchmarking.org MB/s, More Is Better CacheBench Test: Write 2 x 96 GB DDR4-2933MT 13K 26K 39K 52K 65K SE +/- 13.31, N = 3 58623.76 MIN: 45620.65 / MAX: 67544.06 1. (CC) gcc options: -O3 -lrt
OpenBenchmarking.org MB/s, More Is Better CacheBench Test: Read / Modify / Write 2 x 96 GB DDR4-2933MT 20K 40K 60K 80K 100K SE +/- 970.18, N = 3 94996.99 MIN: 71171.43 / MAX: 108388.71 1. (CC) gcc options: -O3 -lrt
OpenBenchmarking.org Events Per Second, More Is Better Sysbench 1.0.20 Test: CPU 2 x 96 GB DDR4-2933MT 12K 24K 36K 48K 60K SE +/- 11.13, N = 3 57620.00 1. (CC) gcc options: -O2 -funroll-loops -rdynamic -ldl -laio -lm
2 x 96 GB DDR4-2933MT Processor: 2 x Intel Xeon Platinum 8252C (24 Cores / 48 Threads), Motherboard: Amazon EC2 m5zn.12xlarge (1.0 BIOS), Chipset: Intel 440FX 82441FX PMC, Memory: 2 x 96 GB DDR4-2933MT/s, Disk: 107GB Amazon Elastic Block Store, Network: Amazon Elastic
OS: Amazon Linux 2023.6.20241010, Kernel: 6.1.112-122.189.amzn2023.x86_64 (x86_64), Compiler: GCC 11.4.1 20230605, File-System: xfs, System Layer: amazon
Kernel Notes: Transparent Huge Pages: madviseCompiler Notes: --build=x86_64-amazon-linux --disable-libunwind-exceptions --enable-__cxa_atexit --enable-bootstrap --enable-cet --enable-checking=release --enable-gnu-indirect-function --enable-gnu-unique-object --enable-initfini-array --enable-languages=c,c++,fortran,lto --enable-multilib --enable-offload-targets=nvptx-none --enable-plugin --enable-shared --enable-threads=posix --mandir=/usr/share/man --with-arch_32=x86-64 --with-arch_64=x86-64-v2 --with-gcc-major-version-only --with-linker-hash-style=gnu --with-tune=generic --without-cuda-driverProcessor Notes: CPU Microcode: 0x5003707Security Notes: gather_data_sampling: Unknown: Dependent on hypervisor status + itlb_multihit: KVM: Mitigation of VMX unsupported + l1tf: Mitigation of PTE Inversion + mds: Vulnerable: Clear buffers attempted no microcode; SMT Host state unknown + meltdown: Mitigation of PTI + mmio_stale_data: Vulnerable: Clear buffers attempted no microcode; SMT Host state unknown + reg_file_data_sampling: Not affected + retbleed: Vulnerable + spec_rstack_overflow: Not affected + spec_store_bypass: Vulnerable + spectre_v1: Mitigation of usercopy/swapgs barriers and __user pointer sanitization + spectre_v2: Mitigation of Retpolines; STIBP: disabled; RSB filling; PBRSB-eIBRS: Not affected; BHI: Retpoline + srbds: Not affected + tsx_async_abort: Not affected
Testing initiated at 28 October 2024 08:14 by user root.