hotSpring Validation Summary

Computational physics on consumer GPU — 720/596/1,045 tests, 234 experiments, guideStone Level 6, 25 papers reproduced, $0.30 total science cost

Status

  • 720 (cylinder) / 596 / 1,045 tests passing (IPC-first default / barracuda-local), 0 failed, 6 GPU-heavy ignored
  • 234 experiments across 12 physics categories + sovereign GPU
  • 25 papers reproduced (25/25 CPU, 20/25 GPU)
  • guideStone Level 6 CERTIFIED — NUCLEUS Deployment Validation
  • 155 binaries, 65 validation suites (smoke/nucleus/silicon), 154 WGSL shaders, 7 deploy graphs
  • $0.30 total science cost on consumer hardware
  • Tier 4 IPC-firstprimal-proof feature, barracuda optional
  • Fleet: 2× Titan V (GV100) + RTX 5060 (Blackwell) — Tier 1 sovereign infrastructure validated
  • Sovereignty Tier Model — Tier 0 (cold), Tier 1 (warm infra — validated), Tier 2 (warm compute — blocked by GPC power), Tier 3 (full sovereign)
  • 183ms warm pipeline — falcon preservation, fd store e2e, 76× faster than cold

Key Validation Binaries

  • hotspring_unibin — eukaryotic UniBin: certify (L0–L6), validate (18/24 scenarios), status
  • validate_primal_proof — end-to-end primal composition validation
  • validate_nuclear_eos_* — AME2020 binding energies (L1/L2/L3)
  • validate_lattice_qcd_* — SU(3) HMC/RHMC, gradient flow, beta-scan
  • validate_sarkas_md — Yukawa OCP molecular dynamics
  • validate_anderson_3d — Anderson localization (1D/2D/3D)
  • validate_pure_gauge — 16/16 quenched QCD checks

sporePrint Notebooks (5)

#NotebookFocus
01Composition ValidationDeploy graphs (7), guideStone Level 6, capability routing, atomic types
02Benchmark ComparisonPython vs Rust timing (compiled vs interpreted), GPU vs CPU, DF64 14-digit on FP32
03Experiment Evidence234 experiments, science ladder milestones, evolution timeline
04Cross-Spring Connections10 primals consumed, 5 patterns handed back, ecosystem flows
05Physics Deep DiveNuclear EOS, lattice QCD, sovereign GPU pipeline, code safety

Paper Baseline Notebooks (13)

Publishable Python baselines for 25 reproduced papers — notebooks/papers/.

#NotebookDomain
01SEMF Binding EnergyNuclear physics (live)
02Yukawa ScreeningScreened Coulomb (live)
03Sarkas Yukawa MDPlasma MD (live + frozen)
04TTM Laser-PlasmaLaser heating (live)
05Transport CoefficientsDaligault fit (live)
06Surrogate LearningML sampling (live)
07Quenched QCDSU(3) HMC (live 4^4)
08Dynamical FermionsStaggered QCD (live + frozen)
09Abelian HiggsU(1) gauge-Higgs (live)
10Spectral TheoryAnderson/Hofstadter (live)
11Gradient FlowWilson flow (live 4^4)
12Plasma DielectricBGK/Mermin (live)
13LTEE Anderson FitnessAnderson & Wiser (live statistics)

Workload TOMLs

Not yet created — contribute to projectNUCLEUS/workloads/hotspring/.

See Also