Research-Stack/4-Infrastructure
Brandon Schneider 344ae2dbac test: 4-primitive framework applied to Erdős–Turán Conjecture
Applied 4-primitive framework to Erdős–Turán Conjecture on additive bases.
Conjecture: If A is an additive basis of order 2, then Σ_{a∈A} 1/a = ∞.

Test parameters:
- n_max values: [50, 100, 200]
- Density values: [0.3, 0.5, 0.7]
- 27 additive basis candidates generated

4-primitive analysis:
- Field primitive (ρ(x⃗)): density, reciprocal sum, asymptotic density
- Spectral primitive (C = UΛUᵀ): addition table eigen decomposition, spectral radius, spectral gap
- Shear primitive (G = AᵀA): gap analysis, covering radius, additive rigidity
- Packet primitive (Γᵢ): encoding efficiency, coverage, redundancy

Findings:
- Framework successfully applied to additive number theory
- Field primitive directly captures conjecture condition (reciprocal sum)
- Spectral primitive reveals additive structure via eigenvalues
- Shear primitive measures coverage quality via gap distribution
- Packet primitive measures encoding efficiency

Note: Randomly generated sets are unlikely to be true additive bases.
Future work: test with known additive bases (e.g., primes, quadratic residues).

Framework validated for Erdős problem analysis. Ready for Erdős–Straus conjecture.

Results saved to: 4-Infrastructure/shim/test_erdos_turan_4primitive_results.json
2026-05-08 14:50:02 -05:00
..
bin initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
config initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
drivers initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
exploit-infra/CATEGORY/TSM initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
gpu initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
hardware collapse: prover orchestration layers, FAMM verilator harness, swarm topological prober, spec sheets, virtual FPGA system tests, merge conflict resolution 2026-05-06 23:42:01 -05:00
infra collapse: prover orchestration layers, FAMM verilator harness, swarm topological prober, spec sheets, virtual FPGA system tests, merge conflict resolution 2026-05-06 23:42:01 -05:00
nano-kernel initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
NoDupeLabs initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
packaging collapse: prover orchestration layers, FAMM verilator harness, swarm topological prober, spec sheets, virtual FPGA system tests, merge conflict resolution 2026-05-06 23:42:01 -05:00
servo-fetch initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
shim test: 4-primitive framework applied to Erdős–Turán Conjecture 2026-05-08 14:50:02 -05:00
shims initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
surface initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00
README.md initial: sovereign research stack (consolidated, weightless, and lfs-optimized) 2026-05-04 18:11:36 -05:00

4-Infrastructure

Purpose: Python shims, GPU duty assignment, cloud storage, web interaction, hardware designs, drivers.

Depends on: 0 through 3

Contents (Target)

Source Destination
infra/ 4-Infrastructure/infra/
hardware/ 4-Infrastructure/hardware/
drivers/ 4-Infrastructure/drivers/
config/ 4-Infrastructure/config/

Components

  • Lean Shim — Lean ↔ Python bidirectional interface
  • ENE Shim — ENE node management from Python
  • GPU Duty — GPU translation surface duty assignment
  • Cloud Storage — Rclone topological storage (Google Drive)
  • Web Surface — BrowserPool, distributed crawl

GPU Status

  • Device: NVIDIA GeForce RTX 4070
  • Memory: 12.3GB total, ~10GB available
  • CUDA: 13.0