Linux supercomputer comparison record Article: https://yenra.com/linux-supercomputer/ Prepared: September 15, 2026 Purpose: compare results for a defined workload and measurement boundary. QUESTION Application, input and correctness/convergence target: Fixed problem size or growing problem size: Deadline or resource budget: FOR EACH CONFIGURATION System / list edition / source URL / measurement date: Node, CPU and accelerator counts: Memory / interconnect / storage: OS, compiler, libraries, application and launch settings: Benchmark or application: Precision and operation-count convention: Rpeak / Rmax if relevant, with units: Queue / setup / compute / output time, with units: Repeated runs and variation: Result correctness: Average power (kW) and components included: Elapsed measurement time (hours): Energy (kWh) = average kW x hours: Excluded facility loads or other limitations: COMPARISON Speedup = baseline elapsed time / candidate elapsed time. Time reduction (%) = (baseline - candidate) / baseline x 100. Energy change (%) = (candidate energy - baseline energy) / baseline energy x 100. Decision, reason and missing evidence: FICTIONAL EXAMPLE A: 2 h at 100 kW = 200 kWh. B: 1.5 h at 150 kW = 225 kWh. Speedup 1.333...; time reduction 25%; energy increase 12.5%. These values are invented and share the same measurement boundary. Primary references: https://www.top500.org/project/top500_description/ https://www.top500.org/project/linpack/ https://hpcg-benchmark.org/