# ============================================================================== # COPYRIGHT NO ONE EVERYWHERE LLC (WYOMING HOLDING COMPANY) # PROJECT: SOVEREIGN STACK # This artifact is entirely proprietary and cryptographically proven. # Open-Source usage requires explicit permission from Brandon Scott Schneider. # ============================================================================== import math import sys print("="*75) print(" [ Graph OS : UNIVERSAL TOY-BLOCK TRANSLATOR (UTBT) ]") print(" [ MACRO-SCALE ASSEMBLY PROTOCOL: LEGO® SYSTEM ]") print("="*75) # Standard LEGO Dimensions in LDraw Units (LDU) and metric # 1 LDU = 0.4mm # Standard 1x1 brick = 20x24x20 LDU (X x Y x Z) -> 8mm x 9.6mm x 8mm LDR_OUT = "mr_fusion_chassis.ldr" bricks = [] # Define the grid based on scaling our 1-Liter volume (~120x120x140 mm peak bounding box) # We want it to be a faithful desk model x_limit = 9 # Grid -9 to +9 studs (18 studs wide = ~144mm) z_limit = 9 # Grid -9 to +9 studs y_limit = 15 # Grid 0 to 14 bricks high (~134mm) bom = { "Flux Rod (Pearl Gold, Color: 115)": 0, "Lattice Core (Trans-Light Blue, Color: 43)": 0, "Acoustic Damping (Dark Stone Grey, Color: 72)": 0, "Carbon Outer Vessel (Black, Color: 0)": 0 } print("[+] VOXELIZING GOLDEN RATIO LATTICE INTO DISCRETE ABS MATRIX...") for y in range(y_limit): for x in range(-x_limit, x_limit + 1): for z in range(-z_limit, z_limit + 1): # Metric translation x_mm = x * 8.0 y_mm = (y - 7) * 9.6 # Center the Y axis horizontally on 0 roughly z_mm = z * 8.0 rad_xy = math.hypot(x_mm, z_mm) rad_xyz = math.hypot(rad_xy, y_mm) # 1. Central Rod (Radius <= 8mm) if rad_xy <= 8.0: part_color = 115 # Pearl Gold bom_key = "Flux Rod (Pearl Gold, Color: 115)" # 2. Lattice Core (Cubic intersection, roughly inner 25mm bounds) elif max(abs(x_mm), abs(y_mm), abs(z_mm)) <= 25.0: part_color = 43 # Trans-Light Blue bom_key = "Lattice Core (Trans-Light Blue, Color: 43)" # 3. Acoustic Shell (Spherical radius bounds up to ~48mm) elif rad_xyz <= 48.0: part_color = 72 # Dark Stone Grey bom_key = "Acoustic Damping (Dark Stone Grey, Color: 72)" # 4. Outer Vessel (Cylindrical boundary up to 64mm radially) elif rad_xy <= 64.0: # Viewport / insertion cut-out logic to see the core # Cut a gap in the front if -24 < y_mm < 24 and z_mm > 35 and abs(x_mm) < 25: continue # Hollow space for viewport part_color = 0 # Black bom_key = "Carbon Outer Vessel (Black, Color: 0)" else: continue bom[bom_key] += 1 # Map back to LDraw coordinates lx = x * 20 ly = -y * 24 lz = z * 20 # Format: 1 x y z a b c d e f g h i # Standard rotation matrix (identity), using part 3005.dat (1x1 brick) line = f"1 {part_color} {lx} {ly} {lz} 1 0 0 0 1 0 0 0 1 3005.dat" bricks.append(line) # Write out the LDraw compliant document with open(LDR_OUT, "w") as f: f.write("0 Untitled Mr Fusion Construct\n") f.write("0 Name: mr_fusion_chassis.ldr\n") f.write("0 Author: Graph OS Engineering Pipeline\n") f.write("0 Unofficial Model\n") f.write("0 BFC NOCLIP\n") f.write("\n".join(bricks) + "\n") print("[+] COMPILATION SUCCESS. TOLERANCES CONSTRAINED TO STANDARD LEGO CLUTCH POWER.") print(f"[+] LDraw Blueprint Generated: -> {LDR_OUT}\n") print("[+] BILL OF MATERIALS (BOM) FOR DESKTOP REPLICATION:") total = 0 for block, count in bom.items(): print(f" - {block:46s} : {count:>5} units") total += count print("-" * 62) print(f" - {'TOTAL (1x1 Standard Bricks)':46s} : {total:>5} units") print("\n[!] INSTRUCTIONS: 1x1 bricks represent a scale of 7.2 Quadrillion nodes per stud.") print(" Drag 'mr_fusion_chassis.ldr' into BrickLink Studio / LDraw to instantiate visually.") print("="*75)