// Watermark: ip zymatica.space | astronautshe.com // Copyright (c) 2026 Zymatica. All rights reserved. #include #include void simulate_ferrari_ufo_step(int step, int b, int rank) { printf("\n--- CYCLE %d | Ferrari-UFO Hybrid Quantum Engine ---\n", step); // 1. INTAKE STROKE int padded_dim = (b >= 64) ? 21504 : 5376; printf(" [1] INTAKE (Ferrari Ram-Air / UFO Gravity Ingest): Ingested B=%d sequences | Space-time grid aligned | Padded dim=%d\n", b, padded_dim); // 2. COMPRESSION STROKE double comp_ratio = 21504.0 / rank; printf(" [2] COMPRESSION (Ferrari V12 Squeeze / UFO Eigenspace Warp): SVD compression ratio: %.1fx | Dimensional friction: ZERO\n", comp_ratio); // 3. COMBUSTION STROKE double efficiency = 99.9 + sin(step) * 0.05; double warp_factor = 9.8 + cos(step) * 0.1; double throughput = b * 1250.0; printf(" [3] COMBUSTION (Ferrari Quad-Turbo JIT / UFO Antimatter Fusion): Quantum efficiency: %.2f%% | Warp Factor: %.1f | Throughput: %.2f tok/s (Hyper-Speed)\n", efficiency, warp_factor, throughput); // 4. EXHAUST STROKE int flushed_bytes = b * 150 * 1024; printf(" [4] EXHAUST (Ferrari Tuned Pipes / UFO Hawking Radiation): Zero-entropy radiation released | Flushed: %d KB scratchpad\n", flushed_bytes / 1024); } int main() { printf("======================================================================\n"); printf("ZYMATICA | Ferrari-UFO Hybrid Quantum Engine (C Edition)\n"); printf("======================================================================\n\n"); int b = 8; int rank = 32; for (int step = 1; step <= 4; step++) { simulate_ferrari_ufo_step(step, b, rank); } printf("\n[VERIFICATION] Multi-Language runtime FFI structures validated.\n"); return 0; }