Linux 6.19 benchmarks excel on AMD EPYC 9965 server

Early tests of the Linux 6.19 development kernel on a dual AMD EPYC 9965 processor server reveal strong performance in high-performance computing workloads. Despite some scheduler issues, the kernel shows promising results for AI and HPC applications. These benchmarks compare it against the stable Linux 6.18 version.

The Linux 6.19 merge window concluded over the weekend, prompting initial benchmarks on various systems. On a flagship AMD EPYC 9965 dual-processor setup, which provides 384 cores and 768 threads, testers evaluated the kernel's performance using an AMD Volcano reference server platform.

The tests pitted Linux 6.19 Git from December 12 against the stable Linux 6.18, maintaining identical hardware and software except for kernel differences. The operating system was based on Ubuntu 25.10 defaults, with the same kernel configuration apart from Linux 6.19's new options.

A range of benchmarks focused on real-world Linux server workloads highlighted encouraging outcomes, particularly for HPC tasks, even amid noted scheduler regressions in the development kernel. The configuration demonstrated excellence in AI and HPC performance areas.

Further testing on additional hardware and workloads is planned in the coming weeks. Linux 6.19-rc1 was released today, with the stable version expected around early February.

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Linux kernel 6.19 released: end of 6.x series with major Intel/AMD/Arm hardware, GPU, storage, networking, and cloud upgrades

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Linus Torvalds announced the stable release of Linux kernel 6.19 on February 9, 2026, following an eight-week development cycle with a one-week delay. Marking the end of the 6.x series—like 3.x to 4.0 and 5.x to 6.0—this non-LTS version (6.18 LTS until December 2027) brings extensive enhancements for Intel/AMD/Arm hardware, older GPUs, file systems, peripherals, HDR graphics, networking, virtualization, and cloud environments. Torvalds timed it with a major U.S. sporting event, joking, "6.19 is out as expected -- just as the US prepares to come to a complete standstill later today, watching the latest batch of televised commercials," and noted the next kernel will be 7.0 as he's "running out of fingers and toes."

The Linux 6.18 kernel, released as the 2025 long-term support version, provides significant performance improvements over Linux 6.12 LTS for fifth-generation AMD EPYC processors. Benchmarks on an AMD EPYC 9755 dual-processor server demonstrate advantages from AMD-specific optimizations and general kernel enhancements. This upgrade is expected to drive adoption in enterprise and hyperscaler environments.

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The Linux 6.19 kernel has addressed a significant scheduler performance regression, restoring efficiency after early testing revealed issues. Developers identified and patched a flaw that caused a 52.4% drop in benchmarks, ensuring smoother task management across CPU cores. This fix highlights the kernel's robust development process amid broader optimizations.

The Linux kernel project has issued release candidate 6.19-rc7, featuring a new kernel continuity plan alongside a handful of key fixes. This update aims to maintain stability and support for ongoing developments in Linux hardware and performance. Phoronix reported the release, highlighting its relevance to desktop and server environments.

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The Linux 6.19 kernel development continues with the release of 6.19-rc4, following a quiet holiday period since earlier release candidates like rc1 in December 2025. The team is already planning for 6.19-rc8.

Building on Linus Torvalds' announcement of Linux kernel 6.19-rc1, this release candidate introduces advanced security features like PCIe link encryption, file system enhancements for EXT4 and XFS, and drivers for new hardware including Tenstorrent SoCs and Intel Xe3P graphics.

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The upcoming Linux kernel 6.19 introduces key improvements to the sched_ext framework for better eBPF scheduler recovery and integrates Microsoft C extensions for cleaner code compilation. These updates aim to enhance stability, performance, and developer efficiency in various computing environments. Contributions from companies like Google, Meta, and Microsoft highlight growing collaboration in open-source development.

 

 

 

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