glkha

Intel Core i7-1280P testing with a MSI Prestige 14Evo A12M MS-14C6 (E14C6IMS.115 BIOS) and MSI Intel ADL GT2 8GB on Ubuntu 23.10 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 2402189-NE-GLKHA863203
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 2 Tests
Creator Workloads 2 Tests
HPC - High Performance Computing 2 Tests
Molecular Dynamics 2 Tests
Multi-Core 4 Tests
NVIDIA GPU Compute 3 Tests
Scientific Computing 2 Tests
Server CPU Tests 2 Tests
Vulkan Compute 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

Multi-Way Comparison

Condense Multi-Option Tests Into Single Result Graphs

Table

Show Detailed System Result Table

Run Management

Highlight
Result
Hide
Result
Result
Identifier
Performance Per
Dollar
Date
Run
  Test
  Duration
a
February 18
  30 Minutes
b
February 18
  28 Minutes
c
February 19
  28 Minutes
Invert Hiding All Results Option
  29 Minutes

Only show results where is faster than
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):


glkha Suite 1.0.0 System Test suite extracted from glkha. pts/dav1d-1.15.1 -i chimera_8b_1080p.ivf Video Input: Chimera 1080p pts/dav1d-1.15.1 -i summer_nature_4k.ivf Video Input: Summer Nature 4K pts/dav1d-1.15.1 -i summer_nature_1080p.ivf Video Input: Summer Nature 1080p pts/dav1d-1.15.1 -i chimera_10b_1080p.ivf Video Input: Chimera 1080p 10-bit pts/gromacs-1.9.0 mpi-build water-cut1.0_GMX50_bare/1536 Implementation: MPI CPU - Input: water_GMX50_bare pts/oidn-2.2.0 -r RT.hdr_alb_nrm.3840x2160 -d cpu Run: RT.hdr_alb_nrm.3840x2160 - Device: CPU-Only pts/oidn-2.2.0 -r RT.ldr_alb_nrm.3840x2160 -d cpu Run: RT.ldr_alb_nrm.3840x2160 - Device: CPU-Only pts/oidn-2.2.0 -r RTLightmap.hdr.4096x4096 -d cpu Run: RTLightmap.hdr.4096x4096 - Device: CPU-Only pts/libplacebo-1.2.0 Test: deband_heavy pts/libplacebo-1.2.0 Test: polar_nocompute pts/libplacebo-1.2.0 Test: hdr_peakdetect pts/libplacebo-1.2.0 Test: hdr_lut pts/libplacebo-1.2.0 Test: av1_grain_lap pts/libplacebo-1.2.0 Test: gaussian pts/namd-1.3.1 ../f1atpase/f1atpase.namd Input: ATPase with 327,506 Atoms pts/namd-1.3.1 ../stmv/stmv.namd Input: STMV with 1,066,628 Atoms pts/vkfft-1.3.0 -vkfft 6 Test: FFT + iFFT R2C / C2R pts/vkfft-1.3.0 -vkfft 2 Test: FFT + iFFT C2C 1D batched in half precision pts/vkfft-1.3.0 -vkfft 7 Test: FFT + iFFT C2C Bluestein in single precision pts/vkfft-1.3.0 -vkfft 1 Test: FFT + iFFT C2C 1D batched in double precision pts/vkfft-1.3.0 -vkfft 0 Test: FFT + iFFT C2C 1D batched in single precision pts/vkfft-1.3.0 -vkfft 3 Test: FFT + iFFT C2C multidimensional in single precision pts/vkfft-1.3.0 -vkfft 8 Test: FFT + iFFT C2C Bluestein benchmark in double precision pts/vkfft-1.3.0 -vkfft 5 Test: FFT + iFFT C2C 1D batched in single precision, no reshuffling