7.3 KiB
Forensic Audit of Data - Grid Comparison Analysis
Date: 2026-03-12 06:22 GMT+7
Analysis Target: Probe data from 256×256 grid vs Original 1024×1024 grid
Purpose: Find differences from original grid and identify root causes
Executive Summary
A forensic audit of the 256×256 grid simulation data reveals significant deviations from the expected scaling behavior of the original 1024×1024 grid. The most critical findings are:
- Power scaling is 4× less efficient than expected (25.3% vs 100%)
- Guardian density is 7.2% higher than scaled expectation
- Grid size is below the stability boundary (256 ≤ 768)
- System shows coherent behavior despite being in unstable region
Detailed Findings
1. Grid Scaling Parameters
| Parameter | Original (1024×1024) | Current (256×256) | Expected Scaling | Actual | Difference |
|---|---|---|---|---|---|
| Grid Size | 1024×1024 | 256×256 | 1/4 linear | 1/4 linear | ✓ Correct |
| Area | 1,048,576 cells | 65,536 cells | 1/16 (0.0625) | 1/16 (0.0625) | ✓ Correct |
| Guardian Count | 194 | 13 | 12.125 (194 × 0.0625) | 13 | +7.2% |
| Guardian Density | 1.850×10⁻⁴ | 1.983×10⁻⁴ | Same as original | +7.2% | ⚠️ Higher |
| Power Baseline | 150W | 37W | 9.375W (150 × 0.0625) | 37W | +295% |
2. Critical Anomalies
2.1 Power Scaling Discrepancy
- Expected: Power should scale with area (1/16 = 6.25% of original)
- Actual: Power scales to 24.7% of original (4× higher than expected)
- Implication: Non-linear power consumption at small grid sizes
- Possible Cause: Fixed overhead, memory bandwidth saturation, or GPU architecture limits
2.2 Guardian Formation Analysis
- Threshold: RHO_THRESH = 1.00022f (optimized for 256×256)
- Creation Rho: Average 1.00023 (range: 1.00022-1.00024)
- Spatial Distribution: Guardians cover 24.4% of X-axis, 32.3% of Y-axis
- Accretion Rate: Average 0.0049 mass per creation event
- Finding: Guardians form correctly but at slightly higher density than scaled expectation
2.3 Stability Boundary Concern
- Harmonic Analysis: Grid size 256 corresponds to "Two octaves (1/4)" musical interval
- Stability Boundary: 768 (identified in harmonic analysis)
- Risk: Operating below stability boundary could lead to:
- Energy collapse (magnitude: -6.86 according to harmonic analysis)
- Phase transitions
- Non-linear response amplification
3. Probe Data Analysis (Cycles 600-607)
3.1 System State During Probe A (Metabolic Injection)
- Probe State: INJ (mass injection active)
- Omega Stability: All values within [1.2410, 1.2778] (stable range)
- Mass Accumulation: Steady increase from 14.91 to 15.07
- Total Mass (MTotal): Stable at ~65627.40
- Guardian Count: Constant at 13 (no deaths during probe)
3.2 Ghost Particle Analysis
- Total Particles: 156 ghost particles detected
- Average Position: (125.2, 128.5) - centered in grid
- Average Mass: 0.62 per particle
- State: All in PULSE state (active accretion)
- Distribution: Evenly distributed across grid
4. Comparison with Original Grid Behavior
4.1 Expected vs Observed Scaling Laws
| Scaling Law | Expected Relationship | Observed Relationship | Deviation |
|---|---|---|---|
| Power vs Area | P ∝ A (linear) | P ∝ A^0.5 (square root) | Non-linear |
| Guardians vs Area | G ∝ A (linear) | G ∝ A^1.072 (slightly super-linear) | Minor |
| Memory vs Area | M ∝ A (linear) | M ∝ A (linear) | ✓ Correct |
4.2 Efficiency Metrics
- Computational Efficiency: 25.3% of expected
- Guardian Formation Efficiency: 107.2% of expected (slightly over-efficient)
- Memory Efficiency: 100% of expected
- Overall System Efficiency: Sub-optimal due to power scaling issue
5. Root Cause Analysis
5.1 Primary Suspect: Fixed Overhead
- GPU kernels have fixed overhead regardless of grid size
- Memory transfers, kernel launches, synchronization
- Becomes dominant at small grid sizes
5.2 Secondary Suspect: Memory Bandwidth Saturation
- Small grids may not fully utilize memory bandwidth
- Inefficient memory access patterns at small scales
- Cache effects different at 256×256 vs 1024×1024
5.3 Tertiary Suspect: Guardian Interaction Range
- Guardian interaction radius may not scale correctly
- Fixed interaction range in lattice units vs physical units
- Could cause increased density effects
6. Recommendations
6.1 Immediate Actions
- Verify power measurement methodology - ensure accurate power reading
- Profile kernel execution times - identify fixed overhead components
- Test intermediate grid sizes - 512×512, 384×384 to map scaling curve
6.2 Short-term Investigations
- Memory bandwidth analysis - measure effective bandwidth at different grid sizes
- Guardian parameter validation - verify all scaled parameters:
- DRAIN_RADIUS (4 vs 16 original)
- SINK_RADIUS (6 vs 24 original)
- SINK_RATE (0.0003125 vs 0.005 original)
- RHO_THRESH (1.00022 vs 1.01 original)
6.3 Long-term Considerations
- Develop non-linear scaling model - account for fixed overhead
- Optimize for small grid operation - specialized kernels for <512 grids
- Implement adaptive guardian density - dynamic adjustment based on grid size
7. Data Quality Assessment
7.1 Data Completeness
- ✅ Cycle data: 8 complete records (600-607)
- ✅ Guardian data: 13 creation events fully documented
- ✅ Ghost particle data: 156 particles with complete state
- ⚠️ Limited time range: Only covers Probe A (cycles 600-649)
- ❌ Missing data: Probes B, C, D not captured in available data
7.2 Data Consistency
- ✅ Guardian count stable throughout observed cycles
- ✅ Omega values within expected physical range
- ✅ Mass conservation: MTotal stable within 0.01%
- ✅ Spatial distribution: Guardians and particles evenly distributed
7.3 Data Gaps
- No data for cycles 0-599 (initialization and warmup)
- No data for cycles 608-799 (recovery after Probe A)
- No data for Probe B (cycle 800 - lattice shear)
- No data for Probe C (cycles 1100-1199 - VRM silence)
- No data for Probe D (cycles 1400-1499 - vacuum trap)
8. Conclusion
The forensic audit reveals that while the 256×256 grid functions correctly from a computational perspective, it exhibits significant scaling anomalies compared to the original 1024×1024 grid:
- Power consumption is 4× higher than area scaling predicts
- System operates below the identified stability boundary (256 < 768)
- Guardian density is slightly elevated but within acceptable bounds
- Core physics remains coherent despite scaling issues
Primary Recommendation: Focus investigation on the power scaling discrepancy, as it represents the most significant deviation from expected behavior and likely indicates fundamental architectural constraints at small grid sizes.
Secondary Recommendation: Collect more complete data covering all probe phases (A-D) to fully characterize system response across different perturbation types.
Report generated by Forensic Audit Script v1.0
Data Sources: probe_final_results.csv, probe_output_20260311_220349.txt, harmonic_analysis_results.json
Analysis Time: 2026-03-12 06:22 GMT+7