ODROID-N2 Thermal Performance

ARMv8 Cortex-A53 testing with a libre aml-s805x-ac (2020.04+ BIOS) and mesondrmfb on Ubuntu 18.04 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 2006139-NI-1904255HV63
Jump To Table - Results

View

Do Not Show Noisy Results
Do Not Show Results With Incomplete Data
Do Not Show Results With Little Change/Spread
List Notable Results

Limit displaying results to tests within:

C/C++ Compiler Tests 2 Tests
CPU Massive 4 Tests
Creator Workloads 3 Tests
Encoding 2 Tests
Java 2 Tests
Multi-Core 2 Tests
Single-Threaded 2 Tests

Statistics

Show Overall Harmonic Mean(s)
Show Overall Geometric Mean
Show Geometric Means Per-Suite/Category
Show Wins / Losses Counts (Pie Chart)
Normalize Results
Remove Outliers Before Calculating Averages

Graph Settings

Force Line Graphs Where Applicable
Convert To Scalar Where Applicable
Prefer Vertical Bar Graphs
No Box Plots
On Line Graphs With Missing Data, Connect The Line Gaps

Additional Graphs

Show Perf Per Core/Thread Calculation Graphs Where Applicable
Show Perf Per Clock Calculation Graphs Where Applicable

Multi-Way Comparison

Condense Multi-Option Tests Into Single Result Graphs
Condense Test Profiles With Multiple Version Results Into Single Result Graphs

Table

Show Detailed System Result Table

Run Management

Highlight
Result
Hide
Result
Result
Identifier
View Logs
Performance Per
Dollar
Date
Run
  Test
  Duration
ODROID-N2
April 25 2019
  23 Minutes
La-Frite 5.6 Optimize
June 13 2020
  52 Minutes
Invert Hiding All Results Option
  38 Minutes
Only show results matching title/arguments (delimit multiple options with a comma):
Do not show results matching title/arguments (delimit multiple options with a comma):


ODROID-N2 Thermal PerformanceProcessorMotherboardMemoryDiskGraphicsMonitorOSKernelCompilerFile-SystemScreen ResolutionODROID-N2La-Frite 5.6 OptimizeARMv8 Cortex-A73 @ 1.90GHz (6 Cores)Hardkernel ODROID-N24096MB16GB AJTD4ROSDUbuntu 18.044.9.156-14 (aarch64)GCC 7.3.0ext41920x2160ARMv8 Cortex-A53 @ 1.42GHz (4 Cores)libre aml-s805x-ac (2020.04+ BIOS)1024MB16GB Cruzer Blade + 8GB H8G4amesondrmfbDELL U2312HM5.6.10 (aarch64)GCC 7.5.0btrfs1920x1080OpenBenchmarking.orgCompiler Details- ODROID-N2: --build=aarch64-linux-gnu --disable-libquadmath --disable-libquadmath-support --disable-werror --enable-checking=release --enable-clocale=gnu --enable-default-pie --enable-fix-cortex-a53-843419 --enable-gnu-unique-object --enable-languages=c,ada,c++,go,d,fortran,objc,obj-c++ --enable-libstdcxx-debug --enable-libstdcxx-time=yes --enable-multiarch --enable-nls --enable-plugin --enable-shared --enable-threads=posix --host=aarch64-linux-gnu --program-prefix=aarch64-linux-gnu- --target=aarch64-linux-gnu --with-default-libstdcxx-abi=new --with-gcc-major-version-only -v - La-Frite 5.6 Optimize: --build=aarch64-linux-gnu --disable-libquadmath --disable-libquadmath-support --disable-werror --enable-bootstrap --enable-checking=release --enable-clocale=gnu --enable-default-pie --enable-fix-cortex-a53-843419 --enable-gnu-unique-object --enable-languages=c,ada,c++,go,d,fortran,objc,obj-c++ --enable-libstdcxx-debug --enable-libstdcxx-time=yes --enable-multiarch --enable-nls --enable-plugin --enable-shared --enable-threads=posix --host=aarch64-linux-gnu --program-prefix=aarch64-linux-gnu- --target=aarch64-linux-gnu --with-default-libstdcxx-abi=new --with-gcc-major-version-only -v Processor Details- ODROID-N2: Scaling Governor: arm-big-little performance- La-Frite 5.6 Optimize: Scaling Governor: scpi-cpufreq ondemandJava Details- ODROID-N2: OpenJDK Runtime Environment (build 11.0.2+9-Ubuntu-3ubuntu118.04.3)- La-Frite 5.6 Optimize: OpenJDK Runtime Environment (build 11.0.7+10-post-Ubuntu-2ubuntu218.04) Security Details- La-Frite 5.6 Optimize: itlb_multihit: Not affected + l1tf: Not affected + mds: Not affected + meltdown: Not affected + spec_store_bypass: Not affected + spectre_v1: Mitigation of __user pointer sanitization + spectre_v2: Not affected + tsx_async_abort: Not affected

ODROID-N2 vs. La-Frite 5.6 Optimize ComparisonPhoronix Test SuiteBaseline+81.9%+81.9%+163.8%+163.8%+245.7%+245.7%H.2.V.E327.5%WAV To FLAC211.9%F.F.T203.8%S.M.M200%Monte Carlo173.9%G.I.R.1.S167.3%D.L.M.F146.6%Composite139.9%J.S.O.R71.4%x264FLAC Audio EncodingJava SciMarkJava SciMarkJava SciMarkSmallptJava SciMarkJava SciMarkJava SciMarkODROID-N2La-Frite 5.6 Optimize

ODROID-N2 Thermal Performancesmallpt: Global Illumination Renderer; 128 Samplesencode-flac: WAV To FLACx264: H.264 Video Encodingoctave-benchmark: java-scimark2: Compositejava-scimark2: Fast Fourier Transformjava-scimark2: Jacobi Successive Over-Relaxationjava-scimark2: Monte Carlojava-scimark2: Sparse Matrix Multiplyjava-scimark2: Dense LU Matrix Factorizationsunflow: Global Illumination + Image SynthesisODROID-N2La-Frite 5.6 Optimize91.3495.8610.7331.14501.05365.36548.13298.12402.18891.437.55244.136299.0262.51208.89120.28319.83108.83134.07361.46OpenBenchmarking.org

Smallpt

Smallpt is a C++ global illumination renderer written in less than 100 lines of code. Global illumination is done via unbiased Monte Carlo path tracing and there is multi-threading support via the OpenMP library. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSmallpt 1.0Global Illumination Renderer; 128 SamplesODROID-N2La-Frite 5.6 Optimize50100150200250SE +/- 0.09, N = 3SE +/- 0.78, N = 391.34244.141. (CXX) g++ options: -fopenmp -O3
OpenBenchmarking.orgSeconds, Fewer Is BetterSmallpt 1.0Global Illumination Renderer; 128 SamplesODROID-N2La-Frite 5.6 Optimize4080120160200Min: 91.18 / Avg: 91.34 / Max: 91.48Min: 242.63 / Avg: 244.14 / Max: 245.211. (CXX) g++ options: -fopenmp -O3

OpenBenchmarking.orgMegahertz, Fewer Is BetterSmallpt 1.0CPU Frequency (CPU0) MonitorODROID-N24008001200160020001896.00

MinAvgMaxODROID-N232.844.246.3OpenBenchmarking.orgCelsius, Fewer Is BetterSmallpt 1.0Memory Temperature Monitor1224364860

MinAvgMaxODROID-N231.944.246.0OpenBenchmarking.orgCelsius, Fewer Is BetterSmallpt 1.0System Temperature Monitor1224364860

FLAC Audio Encoding

This test times how long it takes to encode a sample WAV file to FLAC format five times. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterFLAC Audio Encoding 1.3.2WAV To FLACODROID-N2La-Frite 5.6 Optimize70140210280350SE +/- 0.14, N = 5SE +/- 1.06, N = 595.86299.031. (CXX) g++ options: -O2 -fvisibility=hidden -logg -lm
OpenBenchmarking.orgSeconds, Fewer Is BetterFLAC Audio Encoding 1.3.2WAV To FLACODROID-N2La-Frite 5.6 Optimize50100150200250Min: 95.56 / Avg: 95.86 / Max: 96.34Min: 296.73 / Avg: 299.03 / Max: 302.661. (CXX) g++ options: -O2 -fvisibility=hidden -logg -lm

OpenBenchmarking.orgMegahertz, Fewer Is BetterFLAC Audio Encoding 1.3.2CPU Frequency (CPU0) MonitorODROID-N24008001200160020001896.00

MinAvgMaxODROID-N233.135.738.9OpenBenchmarking.orgCelsius, Fewer Is BetterFLAC Audio Encoding 1.3.2Memory Temperature Monitor1122334455

MinAvgMaxODROID-N232.234.938.5OpenBenchmarking.orgCelsius, Fewer Is BetterFLAC Audio Encoding 1.3.2System Temperature Monitor1122334455

x264

This is a simple test of the x264 encoder run on the CPU (OpenCL support disabled) with a sample video file. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgFrames Per Second, More Is Betterx264 2018-09-25H.264 Video EncodingODROID-N2La-Frite 5.6 Optimize3691215SE +/- 0.17, N = 3SE +/- 0.00, N = 310.732.51-lavformat -lavcodec -lavutil -lswscale1. (CC) gcc options: -ldl -lm -lpthread
OpenBenchmarking.orgFrames Per Second, More Is Betterx264 2018-09-25H.264 Video EncodingODROID-N2La-Frite 5.6 Optimize3691215Min: 10.4 / Avg: 10.73 / Max: 10.91Min: 2.51 / Avg: 2.51 / Max: 2.511. (CC) gcc options: -ldl -lm -lpthread

OpenBenchmarking.orgMegahertz, Fewer Is Betterx264 2018-09-25CPU Frequency (CPU0) MonitorODROID-N24008001200160020001896.00

MinAvgMaxODROID-N232.545.248.2OpenBenchmarking.orgCelsius, Fewer Is Betterx264 2018-09-25Memory Temperature Monitor1428425670

MinAvgMaxODROID-N231.744.947.7OpenBenchmarking.orgCelsius, Fewer Is Betterx264 2018-09-25System Temperature Monitor1428425670

GNU Octave Benchmark

This test profile measures how long it takes to complete several reference GNU Octave files via octave-benchmark. GNU Octave is used for numerical computations and is an open-source alternative to MATLAB. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterGNU Octave Benchmark 4.2.2ODROID-N2714212835SE +/- 0.13, N = 331.14

OpenBenchmarking.orgMegahertz, Fewer Is BetterGNU Octave BenchmarkCPU Frequency (CPU0) MonitorODROID-N24008001200160020001896.00

MinAvgMaxODROID-N234.639.847.1OpenBenchmarking.orgCelsius, Fewer Is BetterGNU Octave BenchmarkMemory Temperature Monitor1428425670

MinAvgMaxODROID-N233.739.045.2OpenBenchmarking.orgCelsius, Fewer Is BetterGNU Octave BenchmarkSystem Temperature Monitor1224364860

Java SciMark

This test runs the Java version of SciMark 2.0, which is a benchmark for scientific and numerical computing developed by programmers at the National Institute of Standards and Technology. This benchmark is made up of Fast Foruier Transform, Jacobi Successive Over-relaxation, Monte Carlo, Sparse Matrix Multiply, and dense LU matrix factorization benchmarks. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: CompositeODROID-N2La-Frite 5.6 Optimize110220330440550SE +/- 0.27, N = 4SE +/- 0.06, N = 4501.05208.89
OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: CompositeODROID-N2La-Frite 5.6 Optimize90180270360450Min: 500.26 / Avg: 501.05 / Max: 501.48Min: 208.74 / Avg: 208.89 / Max: 209

OpenBenchmarking.orgMegahertz, Fewer Is BetterJava SciMark 2.0CPU Frequency (CPU0) MonitorODROID-N24008001200160020001896.00

MinAvgMaxODROID-N233.835.937.9OpenBenchmarking.orgCelsius, Fewer Is BetterJava SciMark 2.0Memory Temperature Monitor1122334455

MinAvgMaxODROID-N232.836.040.0OpenBenchmarking.orgCelsius, Fewer Is BetterJava SciMark 2.0System Temperature Monitor1122334455

OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Fast Fourier TransformODROID-N2La-Frite 5.6 Optimize80160240320400SE +/- 0.39, N = 4SE +/- 0.06, N = 4365.36120.28
OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Fast Fourier TransformODROID-N2La-Frite 5.6 Optimize70140210280350Min: 364.6 / Avg: 365.36 / Max: 366.44Min: 120.16 / Avg: 120.28 / Max: 120.39

OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Jacobi Successive Over-RelaxationODROID-N2La-Frite 5.6 Optimize120240360480600SE +/- 0.05, N = 4SE +/- 0.07, N = 4548.13319.83
OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Jacobi Successive Over-RelaxationODROID-N2La-Frite 5.6 Optimize100200300400500Min: 548.05 / Avg: 548.13 / Max: 548.21Min: 319.67 / Avg: 319.83 / Max: 319.99

OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Monte CarloODROID-N2La-Frite 5.6 Optimize60120180240300SE +/- 0.06, N = 4SE +/- 0.08, N = 4298.12108.83
OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Monte CarloODROID-N2La-Frite 5.6 Optimize50100150200250Min: 298.01 / Avg: 298.12 / Max: 298.26Min: 108.68 / Avg: 108.83 / Max: 108.99

OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Sparse Matrix MultiplyODROID-N2La-Frite 5.6 Optimize90180270360450SE +/- 0.05, N = 4SE +/- 0.44, N = 4402.18134.07
OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Sparse Matrix MultiplyODROID-N2La-Frite 5.6 Optimize70140210280350Min: 402.06 / Avg: 402.18 / Max: 402.31Min: 133.26 / Avg: 134.07 / Max: 134.85

OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Dense LU Matrix FactorizationODROID-N2La-Frite 5.6 Optimize2004006008001000SE +/- 1.22, N = 4SE +/- 0.22, N = 4891.43361.46
OpenBenchmarking.orgMflops, More Is BetterJava SciMark 2.0Computational Test: Dense LU Matrix FactorizationODROID-N2La-Frite 5.6 Optimize160320480640800Min: 888.02 / Avg: 891.43 / Max: 893.84Min: 361.01 / Avg: 361.46 / Max: 361.97

Sunflow Rendering System

This test runs benchmarks of the Sunflow Rendering System. The Sunflow Rendering System is an open-source render engine for photo-realistic image synthesis with a ray-tracing core. Learn more via the OpenBenchmarking.org test page.

OpenBenchmarking.orgSeconds, Fewer Is BetterSunflow Rendering System 0.07.2Global Illumination + Image SynthesisODROID-N2246810SE +/- 0.02, N = 37.55

OpenBenchmarking.orgMegahertz, Fewer Is BetterSunflow Rendering System 0.07.2CPU Frequency (CPU0) MonitorODROID-N24008001200160020001896.00

MinAvgMaxODROID-N232.645.548.2OpenBenchmarking.orgCelsius, Fewer Is BetterSunflow Rendering System 0.07.2Memory Temperature Monitor1428425670

MinAvgMaxODROID-N231.745.047.8OpenBenchmarking.orgCelsius, Fewer Is BetterSunflow Rendering System 0.07.2System Temperature Monitor1428425670

CPU Frequency (CPU0) Monitor

OpenBenchmarking.orgMegahertzCPU Frequency (CPU0) MonitorPhoronix Test Suite System MonitoringODROID-N24008001200160020001896.00

Memory Temperature Monitor

OpenBenchmarking.orgCelsiusMemory Temperature MonitorPhoronix Test Suite System MonitoringODROID-N21020304050Min: 32.5 / Avg: 39.99 / Max: 48.2

System Temperature Monitor

OpenBenchmarking.orgCelsiusSystem Temperature MonitorPhoronix Test Suite System MonitoringODROID-N21020304050Min: 31.7 / Avg: 39.49 / Max: 47.8