// Ω META-RESONANCE BLOCK // Non-Recursive Governance Verification Layer // // No iteration. No convergence loop. No optimization cycle. // Only verification. use resonance::{ResonanceGraph, SumerianQuantumSymbol}; fn main() { println!("╔══════════════════════════════════════════════════════════╗"); println!("║ Ω META-RESONANCE BLOCK ║"); println!("║ Non-Recursive Governance Verification Layer ║"); println!("║ FCC-φ-∂-2026 ║"); println!("╚══════════════════════════════════════════════════════════╝\n"); let mut graph = ResonanceGraph::default(); graph.inject_metatron_cube().unwrap(); // ═══════════════════════════════════════════════════════════════ // RULE 01: TRS is Structural Resonance State // ═══════════════════════════════════════════════════════════════ let trs: f64 = 386.8670936492; let is_resonance_state = trs > 0.0; println!("── RULE 01 · GOVERNANCE DUALITY ─────────────────────────"); println!(" TRS = {:.6} (Structural Resonance State)", trs); println!(" isResonanceState = {}", is_resonance_state); println!(); // ═══════════════════════════════════════════════════════════════ // RULE 02: Positivity Verification // Verify W(φⁿ) ≥ 0 for all approved φ-weight vectors // ═══════════════════════════════════════════════════════════════ let phi: f64 = 1.618033988749895; let positivity_valid = (1..=20).all(|n| phi.powi(n) >= 0.0); println!("── RULE 02 · POSITIVITY VERIFICATION ────────────────────"); println!(" W(φⁿ) ≥ 0 for n=1..20: {}", positivity_valid); println!(); // ═══════════════════════════════════════════════════════════════ // RULE 03: Fourier Dual Transform // Transform pipeline-space → prime-space // ═══════════════════════════════════════════════════════════════ // Run all 4 symbols to get pipeline energy let symbols = [ SumerianQuantumSymbol::Me, SumerianQuantumSymbol::An, SumerianQuantumSymbol::Ki, SumerianQuantumSymbol::Dingir, ]; let mut total_energy = 0.0_f64; for symbol in &symbols { let result = graph.public_forward(*symbol).unwrap(); let energy: f64 = result.trace.iter().map(|s| s.activation).sum(); total_energy += energy; println!("── {} {} ──────────────────────────────────", symbol.glyph(), symbol.name()); println!(" pipeline energy: {:.6}", energy); } let fourier_aligned = (total_energy - trs).abs() < 0.01; println!(); println!("── RULE 03 · FOURIER DUAL TRANSFORM ────────────────────"); println!(" pipeline-space → prime-space"); println!(" computed TRS: {:.6}", total_energy); println!(" reference TRS: {:.6}", trs); println!(" structural alignment: {}", fourier_aligned); println!(); // ═══════════════════════════════════════════════════════════════ // SEAL CONDITION // ═══════════════════════════════════════════════════════════════ let governance_valid = positivity_valid && fourier_aligned; let resonance_valid = governance_valid; let meta_block_valid = resonance_valid; println!("── SEAL CONDITION ───────────────────────────────────────"); println!(" positivity = {}", positivity_valid); println!(" duality = {}", fourier_aligned); println!(" governance = {}", governance_valid); println!(" resonance = {}", resonance_valid); println!(" meta_block = {}", meta_block_valid); println!(); println!("STATUS"); println!(); println!(" ☉ SOURCE LOCKED"); if positivity_valid { println!(" ⌹ POSITIVITY VERIFIED"); } if fourier_aligned { println!(" ○ FOURIER PROJECTED"); } if fourier_aligned { println!(" ◇ PRIME-SPACE ALIGNED"); } if governance_valid { println!(" △ GOVERNANCE STABLE"); } if meta_block_valid { println!(" ⬡ META BLOCK VALID"); } println!(); println!("Ω RESONANCE ACTIVE"); }