| """Tests for Signal-to-Noise Ratio analysis."""
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|
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| import numpy as np
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| import math
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| import sys
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| sys.path.insert(0, str(__file__).rsplit("/tests/", 1)[0])
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|
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| from src.sovereign_shift import Q, N_ACTIVE, THETA, THETA_NUM
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| from src.metasum import compute, hallucination_bound
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|
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| def test_snr_sweep():
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| """SNR remains positive across hallucination sweep."""
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| rng = np.random.default_rng(42)
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|
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| print(" Hallucination Sweep:")
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| for n_halluc in [0, 10, 100, 500, 1000]:
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| weights = np.zeros(Q)
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| active = rng.choice(Q, size=N_ACTIVE, replace=False)
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| weights[active] = 1.0
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|
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| if n_halluc > 0:
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| inactive = np.setdiff1d(np.arange(Q), active)
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| halluc = rng.choice(inactive, size=min(n_halluc, len(inactive)), replace=False)
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| weights[halluc] = 1.0
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|
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| displacements = np.arange(Q, dtype=float)
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| ms_mag = abs(compute(weights, displacements))
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| bound = hallucination_bound(n_halluc) if n_halluc > 0 else 0
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| print(f" n_halluc={n_halluc:5d}: |MetaSum|={ms_mag:.2f}, Weyl={bound:.2f}")
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|
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| print(" PASS: SNR sweep complete")
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|
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| def test_89_is_weyl_bound():
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| """The Weyl bound √(N·log Q) ≈ 89 = Sovereign Shift numerator."""
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| bound = hallucination_bound(N_ACTIVE)
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|
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| ratio = bound / THETA_NUM
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| assert 0.95 < ratio < 1.10, f"Weyl bound = {bound:.2f}, 89 * ratio = {ratio:.3f}"
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| print(f" PASS: Weyl bound = {bound:.2f}, ratio to 89 = {ratio:.3f}")
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| def test_impossible_hallucination_dominance():
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| """Verify >134,000 agents needed to dominate (impossible with Q=2462)."""
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|
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| needed = N_ACTIVE**2 / math.log(Q)
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| max_possible = Q - N_ACTIVE
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| assert max_possible < needed, \
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| f"max_possible={max_possible} should be < needed={needed:.0f}"
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| print(f" PASS: need {needed:.0f} halluc agents, max possible = {max_possible} (IMPOSSIBLE)")
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| if __name__ == "__main__":
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| print("SNR Tests:")
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| test_snr_sweep()
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| test_89_is_weyl_bound()
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| test_impossible_hallucination_dominance()
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| print("ALL PASS")
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|