Benchmark #752

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osu!stable + stress-ng - BORE vs flash vs lavd - le9uo

Submitted 5 days ago by .dnaim

Specifications
Label OS GPU CPU RAM OS specific
flash-le9uo CachyOS AMD Radeon Graphics AMD Ryzen 5 6600HS Creator Edition 14 GB 6.12.0-2-cachyos-naim powersave
lavd-le9uo CachyOS AMD Radeon Graphics AMD Ryzen 5 6600HS Creator Edition 14 GB 6.12.0-2-cachyos-naim powersave
BORE-le9uo CachyOS AMD Radeon Graphics AMD Ryzen 5 6600HS Creator Edition 14 GB 6.12.0-2-cachyos-naim powersave
lavd CachyOS AMD Radeon Graphics AMD Ryzen 5 6600HS Creator Edition 14 GB 6.12.0-2-cachyos-test powersave
BORE CachyOS AMD Radeon Graphics AMD Ryzen 5 6600HS Creator Edition 14 GB 6.12.0-2-cachyos-test powersave
FLASH CachyOS AMD Radeon Graphics AMD Ryzen 5 6600HS Creator Edition 14 GB 6.12.0-2-cachyos-test powersave
# Top runs: * **Highest FPS**: `BORE-le9uo` provides the highest average FPS, showing a substantial advantage over others in terms of performance. * **Smoothest FPS**: `BORE` achieves the lowest standard deviation in frame time, indicating stable performance with minimal fluctuation. * **Best overall**: `BORE` stands out by balancing high FPS with smooth performance, making it the optimal choice overall. # Issues: * The benchmark using the kernel version marked as test in `lavd` and `BORE` runs shows a noticeable reduction in swap usage efficiency compared to the other configurations, which may affect system balance and allocation efficiency under stress. # Summary The benchmark compares performance using the `powersave` Linux scheduler across various configurations of `osu!stable` stress tests. The tests with the `BORE` configuration, particularly using the stable kernel, deliver superior FPS performance, both average and peak, setting a high standard of smooth and consistent performance across the board. However, some variations using the test kernel exhibit inefficiencies in system resource management, reflected in higher swap usage, which may influence the choice of configurations for applications requiring consistent resource handling.