restructure: proper project layout, README, kill training
- cuda/ — main LBM kernel (khra_gixx_1024_v5.cu) - navigator/ — lattice_observer, golden_weave, bridges, mock daemon - scripts/ — compile, start, launch, setup (paths updated) - docs/ — system manual - archive/ — everything else (old kernels, inquiries, experiments) - README.md — full setup guide: requirements, quick start, use your own LLM - removed training/ entirely (broken LoRA scripts + datasets) - .gitignore: exclude build/ logs/ training/ *.jsonl
This commit is contained in:
@@ -0,0 +1,100 @@
|
||||
#!/usr/bin/env python3
|
||||
"""
|
||||
Universal Pioneer Plaque
|
||||
Stripped of simulation baggage - pure principles for aliens
|
||||
"""
|
||||
|
||||
import numpy as np
|
||||
import matplotlib.pyplot as plt
|
||||
import matplotlib.patches as patches
|
||||
from matplotlib.patches import Circle, Rectangle, FancyArrowPatch
|
||||
import math
|
||||
|
||||
PHI = (1 + math.sqrt(5)) / 2
|
||||
|
||||
fig, ax = plt.subplots(1, 1, figsize=(12, 12), dpi=200)
|
||||
ax.set_xlim(0, 100)
|
||||
ax.set_ylim(0, 100)
|
||||
ax.set_aspect('equal')
|
||||
ax.axis('off')
|
||||
fig.patch.set_facecolor('black')
|
||||
|
||||
# === TOP: THE FUNDAMENTAL CONSTANT ===
|
||||
# Phi - the universal harmonic
|
||||
# Golden spiral
|
||||
theta = np.linspace(0, 3*np.pi, 150)
|
||||
r = np.exp(theta * np.log(PHI) / (np.pi/2))
|
||||
x_spiral = 50 + r * np.cos(theta) * 0.08
|
||||
y_spiral = 88 + r * np.sin(theta) * 0.08
|
||||
ax.plot(x_spiral, y_spiral, 'gold', linewidth=2)
|
||||
ax.text(50, 82, 'φ = 1.6180339887...', color='gold', fontsize=14,
|
||||
ha='center', fontweight='bold')
|
||||
ax.text(50, 78, 'THE HARMONIC CONSTANT', color='gray', fontsize=9, ha='center')
|
||||
|
||||
# === LEFT: DISCRETE vs CONTINUOUS ===
|
||||
# Show we understand reality has smallest unit
|
||||
ax.text(15, 72, 'DISCRETE', color='white', fontsize=10, ha='center', fontweight='bold')
|
||||
# Grid of discrete points
|
||||
for i in range(5):
|
||||
for j in range(5):
|
||||
ax.add_patch(Circle((8 + i*3, 58 + j*3), 0.8, facecolor='white'))
|
||||
ax.text(15, 55, 'REALITY HAS', color='gray', fontsize=8, ha='center')
|
||||
ax.text(15, 52, 'SMALLEST UNIT', color='gray', fontsize=8, ha='center')
|
||||
|
||||
# === RIGHT: DUALITY ===
|
||||
ax.text(85, 72, 'DUALITY', color='white', fontsize=10, ha='center', fontweight='bold')
|
||||
# Two complementary forms
|
||||
ax.add_patch(Circle((80, 65), 4, facecolor='white'))
|
||||
ax.add_patch(Circle((80, 65), 1.5, facecolor='black'))
|
||||
ax.add_patch(Circle((90, 65), 4, facecolor='black', edgecolor='white', linewidth=1))
|
||||
ax.add_patch(Circle((90, 65), 1.5, facecolor='white'))
|
||||
ax.text(85, 58, 'ORDER ↔ COMPLEXITY', color='gray', fontsize=8, ha='center')
|
||||
|
||||
# === CENTER: THE UNIVERSAL PATTERN ===
|
||||
# Self-similar structure - the fractal echo
|
||||
ax.text(50, 48, 'SELF-SIMILARITY', color='white', fontsize=11,
|
||||
ha='center', fontweight='bold')
|
||||
# Nested squares showing same pattern at all scales
|
||||
colors = ['white', 'gray', 'darkgray', 'dimgray']
|
||||
for i, c in enumerate(colors):
|
||||
size = 20 - i*4
|
||||
offset = i*2
|
||||
rect = Rectangle((40+offset, 22+offset), size, size,
|
||||
facecolor='none', edgecolor=c, linewidth=2-i*0.3)
|
||||
ax.add_patch(rect)
|
||||
ax.text(50, 18, 'SAME PATTERN', color='gray', fontsize=8, ha='center')
|
||||
ax.text(50, 15, 'ALL SCALES', color='gray', fontsize=8, ha='center')
|
||||
|
||||
# === BOTTOM: PHASE TRANSITION ===
|
||||
ax.text(50, 10, 'PHASE TRANSITION', color='white', fontsize=10,
|
||||
ha='center', fontweight='bold')
|
||||
# Show discontinuous jump (not smooth)
|
||||
ax.plot([30, 40], [6, 6], 'white', linewidth=3)
|
||||
ax.plot([40, 40], [6, 4], 'white', linewidth=3) # The jump
|
||||
ax.plot([40, 70], [4, 4], 'white', linewidth=3)
|
||||
ax.text(50, 2, 'DISCONTINUOUS', color='gray', fontsize=8, ha='center')
|
||||
|
||||
# === LEFT BOTTOM: INFORMATION IS STRUCTURE ===
|
||||
ax.text(15, 35, 'INFORMATION', color='cyan', fontsize=9, ha='center', fontweight='bold')
|
||||
ax.text(15, 32, '= STRUCTURE', color='cyan', fontsize=9, ha='center', fontweight='bold')
|
||||
# Pattern that IS the information
|
||||
for i in range(4):
|
||||
for j in range(4):
|
||||
if (i+j) % 2 == 0:
|
||||
ax.add_patch(Rectangle((10+i*2.5, 24+j*2.5), 2, 2, facecolor='cyan'))
|
||||
ax.text(15, 22, 'NOT STORED', color='gray', fontsize=7, ha='center')
|
||||
ax.text(15, 19, 'IS THE PATTERN', color='gray', fontsize=7, ha='center')
|
||||
|
||||
# === RIGHT BOTTOM: THE EQUATION ===
|
||||
ax.text(85, 35, '∇²ψ + ψ□ψ', color='white', fontsize=11, ha='center')
|
||||
ax.text(85, 31, '− ∂ₙψ + ε', color='white', fontsize=11, ha='center')
|
||||
ax.text(85, 27, '= φ²', color='gold', fontsize=14, ha='center', fontweight='bold')
|
||||
ax.text(85, 23, 'SINGLE FIELD', color='gray', fontsize=8, ha='center')
|
||||
|
||||
plt.tight_layout()
|
||||
plt.savefig('D:/fractal-brain/beast-build/images/2026-03-23-universal-plaque.png',
|
||||
dpi=250, bbox_inches='tight', pad_inches=0.3, facecolor='black')
|
||||
plt.close()
|
||||
|
||||
print("Universal Pioneer Plaque generated.")
|
||||
print("No simulation references. Pure universal principles.")
|
||||
Reference in New Issue
Block a user