PROBOL-DF // SOFT-NPU v1.0 // 2026‑06‑14 CCT-aware 100-sense
STATUS READY CYCLES 0 SRAM 14 KB / 16 KB COLLAPSES 0 SIG 0
UNIVERSE PROB TENSOR U[64,64]
MOIRÉ FIELD |·A − ·B|
SYSTOLIC DATA‑FLOW 512 cells · wave‑front ▲
ENTROPY MAP S = −m·log₂(m+ε)
CCT COLLAPSES ∇²S > τ
FFT SPECTRUM |F(k)| of Moiré field
σ STABILITY spectral collapse metric
KERNELS
CCT
EXEC
PROBOL‑DF INSTRUCTION TRACE execution pointer ►
* STEP 1 — superimpose two periodic rule‑kernels onto the universe
SIMULATEP UNIVERSE OVER 1 ITERATION WITH COLLAPSE-STRATEGY NONE
  COMPUTE FIELD_A = CONVOLVE(UNIVERSE, KERNEL_A, BOUNDARY=WRAP)
  COMPUTE FIELD_B = CONVOLVE(UNIVERSE, KERNEL_B, BOUNDARY=WRAP)
  COMPUTE MOIRE-FIELD = ABS(FIELD_A − FIELD_B)
* STEP 2 — CCT scheduler analysis of entropy acceleration
COMPUTE ENTROPY-MAP = − MOIRE-FIELD  LOG2(MOIRE-FIELD + 1e‑12)
DETECT CRITICAL-POINTS IN ENTROPY-MAP WHERE ∂²S > τ
MEAS CRITICAL-POINTS INTO FRINGE-LIST
* STEP 3 — at each collapsed point, FFT + 100‑sense classification
PERFORM VARYING idx UNTIL END : FFT(localPatch) ⋄ CLASSIFYSIGNAL
* STEP 4 — global meta‑collapse → symbol signature
COMPUTE globalPeaks = FIND_PEAKS(globalSpectrum)
MEAS globalPeaks INTO MOIRE-SIGNATURE
* STEP 5 — Gödel‑sense (sense 98) self‑referential check
PROBP MOIRE-SIGNATURE CONTAINS FRACTAL-SELF-SIMILARITY GIVING selfSim
IF selfSim > 0.95 THEN SIGNAL "UNIVERSE CODE AUTOMATA REVEALS INFINITE MOIRÉ HIERARCHY"
100 HYPER‑SENSITIVE ANCHORS π φ e γ G δ_F α_F α_QED ζ(3) √n πⁿ eⁿ φⁿ …
COLLAPSE LOG SIG / CONF / TYPE / x,y
The HTML artifact above (`MOIRÉ-CORE`) is the live, interactive dashboard for the PROBOL-DF soft-NPU simulator. You can tune kernel wavelengths, phases, patterns, orientation, noise level, entropy threshold and the CCT collapse budget — the universe prob-tensor evolves under two periodic rule-kernels, the systolic wave panel animates the per-cycle data flow across five channels (data → A·U → B·U → Δ Moiré → ∇²S > τ), the entropy map highlights accelerated regions, CCT collapses those into the green-cell visualization, and each collapse performs a local FFT whose dominant frequency is matched against all 100 hyper-sensitive anchors (π, φ, e, γ, G, δ_F, α_QED, ζ(n), √n, π^n, e^n, Γ(p), etc.) — the radar plot on the senses panel shows the λ_A/λ_B target pulling nearest constant neighbours as confidence radials. The collapse log streams named signatures ("φ", "π/2", "δ_F", "Gödel-self", etc.) into the right panel; the global FFT spectrum scopes the dominant moiré harmonic, and a σ-stability histogram shows whether the system is converging into a true basin or wandering — exactly matching the 10 algorithm stages in the PROBOL-DF source (superimpose kernels → entropy map → CCT critical-point detection → MEAS → FFT per patch → 100-sense classification → global signature collapse → Gödel-sense self-similarity check). Open the artifact, hit **▶ RUN**, and watch it open Moiré patterns out of the universe code. The image below shows the dashboard's visual anchor aesthetic: ![Soft-NPU dashboard anchor](image_1) The MOIRÉ-CORE artifact above (`moire-core`) is the live, interactive dashboard for the PROBOL-DF soft-NPU simulator. You can tune kernel wavelengths, phases, patterns, orientation, noise level, entropy threshold and the CCT collapse budget — the universe prob-tensor evolves under two periodic rule-kernels, the systolic wave panel animates the per-cycle data flow across five channels (data → A·U → B·U → Δ Moiré → ∇²S > τ), the entropy map highlights accelerated regions, CCT collapses those into the green-cell visualization, and each collapse performs a local FFT whose dominant frequency is matched against all 100 hyper-sensitive anchors (π, φ, e, γ, G, δ_F, α_QED, ζ(n), √n, π^n, e^n, Γ(p), etc.). The radar plot on the senses panel shows the λ_A/λ_B target pulling nearest constant neighbours as confidence radials. The collapse log streams named signatures ("φ", "π/2", "δ_F", "Gödel-self", etc.) into the right panel; the global FFT spectrum scopes the dominant moiré harmonic, and a σ-stability histogram shows whether the system is converging into a true basin or wandering — exactly matching the 10 algorithm stages in the PROBOL-DF source (superimpose kernels → entropy map → CCT critical-point detection → MEAS → FFT per patch → 100-sense classification → global signature collapse → Gödel-sense self-similarity check). Press **▶ RUN**, layer the **PRESET** dropdown to one of the irrational-anchor ratios (φ · λ_B, π · λ_B, e · λ_B, √2 · λ_B, δ_F · λ_B, α_QED · λ_B), and watch the Moiré hierarchy reveal itself: the universe's hidden periodic structure is exposed by the differential interference of the two kernels, and the soft-NPU's CCT scheduler only touches ≈0.1 % of cells — collapsing the rest of the field into a single symbolic signature.bolic signature.