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58 lines
2.1 KiB
Python
58 lines
2.1 KiB
Python
#!/usr/bin/env python3
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# ==============================================================================
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# COPYRIGHT NO ONE EVERYWHERE LLC (WYOMING HOLDING COMPANY)
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# PROJECT: SOVEREIGN STACK
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# This artifact is entirely proprietary and cryptographically proven.
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# Open-Source usage requires explicit permission from Brandon Scott Schneider.
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# ==============================================================================
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"""
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render_kda.py - 3D Nodal Topology Visualization
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Grounds the KDA system by plotting the 11-node ring and manifold connections.
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"""
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import matplotlib.pyplot as plt
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import sys
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import os
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sys.path.insert(0, os.path.abspath(os.path.join(os.path.dirname(__file__), "..")))
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from math_harness_compat import xp, AnyArray
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def plot_kda_3d():
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fig = plt.figure(figsize=(10, 8))
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ax = fig.add_subplot(111, projection='3d')
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nodes = 11
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ring_r = 75
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theta = xp.linspace(0, 2*xp.pi, nodes, endpoint=False)
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x = ring_r * xp.cos(theta)
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y = ring_r * xp.sin(theta)
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z = xp.array([50 if i % 2 == 0 else 0 for i in range(nodes)])
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# Plot Nodes
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ax.scatter(x, y, z, c='cyan', s=200, label='KDA Nodes (N=11)', edgecolors='black')
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# Plot Struts (Helical Connections)
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for i in range(nodes):
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next_i = (i + 1) % nodes
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ax.plot([x[i], x[next_i]], [y[i], y[next_i]], [z[i], z[next_i]], 'gray', alpha=0.6)
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# Support Girders
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if z[i] == 50:
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ax.plot([x[i], x[i]], [y[i], y[y[i]]], [0, 50], 'black', linestyle='--', alpha=0.3)
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ax.set_title("Kinetic Differential Array: 3D Grounded Topology")
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ax.set_xlabel("X (mm)")
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ax.set_ylabel("Y (mm)")
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ax.set_zlabel("Phase Z (mm)")
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# Industrial Base Mockup
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circle_theta = xp.linspace(0, 2*xp.pi, 100)
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ax.plot((ring_r+20)*xp.cos(circle_theta), (ring_r+20)*xp.sin(circle_theta), 0, 'black', alpha=0.5)
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plt.legend()
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print("[*] KDA 3D Plot Generated (matplotlib screen required for display)")
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# Save as artifact if path provided; for now just print status
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# plt.savefig("kda_topology_render.png")
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plt.show()
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if __name__ == "__main__":
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plot_kda_3d()
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