Benchmark #202

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amd_pstate_guided performance schedulers

Rocket League first two minutes of match replay no additional workload Ryzen 5700X RTX 3060T

Submitted 10 months ago by yubysowhat

Specifications
Label OS GPU CPU RAM OS specific
ASDF guided performance CachyOS NVIDIA GeForce RTX 3060 Ti AMD Ryzen 7 5700X 8-Core Processor 17 GB 6.10.3-3-cachyos performance
BORE guided performance CachyOS NVIDIA GeForce RTX 3060 Ti AMD Ryzen 7 5700X 8-Core Processor 17 GB 6.10.3-3-cachyos performance
Bpfland guided performance CachyOS NVIDIA GeForce RTX 3060 Ti AMD Ryzen 7 5700X 8-Core Processor 17 GB 6.10.3-3-cachyos performance
Bpfland-next guided performance CachyOS NVIDIA GeForce RTX 3060 Ti AMD Ryzen 7 5700X 8-Core Processor 17 GB 6.10.3-3-cachyos performance
LAVD guided performance CachyOS NVIDIA GeForce RTX 3060 Ti AMD Ryzen 7 5700X 8-Core Processor 17 GB 6.10.3-3-cachyos performance
Rusty guided performance CachyOS NVIDIA GeForce RTX 3060 Ti AMD Ryzen 7 5700X 8-Core Processor 17 GB 6.10.3-3-cachyos performance
## Top runs - **Highest FPS**: `BORE guided performance` - **Smoothest FPS**: `ASDF guided performance` - **Best overall**: `BORE guided performance` ## Summary All the runs were conducted on the same hardware and software configurations, ensuring a fair comparison. The `BORE guided performance` run emerged as the top performer in terms of highest FPS and overall performance, although it had a higher standard deviation compared to others. The `ASDF guided performance` run was noted for its stability with the lowest standard deviation, making it the smoothest run despite having lower average FPS. Other runs like `Bpfland guided performance`, `LAVD guided performance`, and `Rusty guided performance` fell in between in terms of both FPS and stability. The `Bpfland-next guided performance`, similar to `ASDF guided performance`, had comparable FPS and standard deviation, yet slightly underperformed in both metrics. No significant issues were found across the six runs, indicating generally consistent results with expected variances.