Benchmark #1844

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Splitgate 2 - BPFLand 1.0.17 -S 10 Flag

Splitgate 2 - BPFLand 1.0.17 -S 10 Flag

Submitted 2 weeks ago by ritzdacat

Specifications
Label OS GPU CPU RAM OS specific
Splitgate_BPFLand_1.0.17_S10Flag_Run1 CachyOS NVIDIA GeForce RTX 4090 AMD Ryzen 7 9800X3D 8-Core Processor 101 GB 6.17.1-2-cachyos performance
Splitgate_BPFLand_1.0.17_S10Flag_Run2 CachyOS NVIDIA GeForce RTX 4090 AMD Ryzen 7 9800X3D 8-Core Processor 101 GB 6.17.1-2-cachyos performance
Splitgate_BPFLand_1.0.17_S10Flag_Run3 CachyOS NVIDIA GeForce RTX 4090 AMD Ryzen 7 9800X3D 8-Core Processor 101 GB 6.17.1-2-cachyos performance
Splitgate_BPFLand_1.0.17_S10Flag_Run4 CachyOS NVIDIA GeForce RTX 4090 AMD Ryzen 7 9800X3D 8-Core Processor 101 GB 6.17.1-2-cachyos performance
# Top runs: * **Highest FPS**: `Splitgate_BPFLand_1.0.17_S10Flag_Run2` with around 1% higher mean FPS compared to the rest. * **Smoothest FPS**: `Splitgate_BPFLand_1.0.17_S10Flag_Run1` with the lowest standard deviation and variance of FPS values. * **Best overall**: `Splitgate_BPFLand_1.0.17_S10Flag_Run1` combining smooth performance and competitive FPS overall. # Issues: * The run with a lower GPU memory clock compared to others is the fourth configuration, which may have contributed to variability in FPS as evidenced by its higher variance. * The fourth configuration also exhibited slightly higher RAM usage and noticeably higher GPU memory clock variability, potentially impacting performance stability. # Summary This benchmark tested various runs of `Splitgate 2` on a consistent hardware setup using the `BPFLand 1.0.17 -S 10 Flag` configuration across `CachyOS`. Notably, the comparisons highlight that `Splitgate_BPFLand_1.0.17_S10Flag_Run2` performed best in terms of average FPS, but `Splitgate_BPFLand_1.0.17_S10Flag_Run1` excelled in delivering smoother and more consistent gameplay due to its lower variance in FPS values. The solid consistency of performance across these trials validates the robustness of the setup, though the last configuration presents room for optimization in reducing memory clock variability.