Reproduce the checkpoints

Deterministic analysis scripts, bounded outputs, and SHA-256 checksums. A script-level pass does not constitute a physics-gate pass.

Setup

Clone the recovery branch and read its authority documents first

git clone https://github.com/brendohxd/ITSM-Integrated-Toroidal-Syntropic-Model.git
cd ITSM-Integrated-Toroidal-Syntropic-Model
git checkout recovery/v12-core-architecture

# Read current authority and status before interpreting outputs
# README.md
# active_research.md
# Theory/Core/ITSM_Master_Research_Plan.md
# Theory/Core/ITSM_MASTER_TEST_PROGRAMME_2026-09-24.md
# Theory/Core/ITSM_RULE9_DEFERRED_REVIEW_POLICY.md

Scoped Analysis Checkpoints

Run deterministic Python entry points and verify their matching .sha256 sidecars

TOP-X4 / X4-S2F3 — Plan 11

Reproduces the bounded static and finite-charge checks, the preserved 11/12 dynamic WKB failure, the separate 18/18 exact scalar/first-order Dirac transport pass, the 20/20 D5 scaffold audit, the 25/25 fixed-metric scalar-matrix pass, the 22/22 local scalar-matrix Hadamard-parametrix pass through U_2, the 8/8 finite-order Route-B adiabatic-symbol diagnostic, the registered 10/10 Route-A theorem-backed scalar-state construction, the scoped 13/13 curved-Dirac operator checkpoint and the 8/8 physical-Hessian readiness audit. All retain physics_pass=false; the result is not independent peer review or a numerical physics pass, and Dirac/gravity/parity completion, normalization, determinant, stress and the physical Hessian remain open.

python Analysis/TOP/TOP-X4/topx4_s2f3_static_determinant_checkpoint.py
python Analysis/TOP/TOP-X4/topx4_s2f3_finite_charge_entry_gate.py
python Analysis/TOP/TOP-X4/topx4_s2f3_finite_charge_operator_checkpoint.py
python Analysis/TOP/TOP-X4/topx4_s2f3_dynamic_state_subtraction_checkpoint.py
python Analysis/TOP/TOP-X4/topx4_s2f3_exact_transport_retry_checkpoint.py
python Analysis/TOP/TOP-X4/topx4_s2f3_hadamard_subtraction_readiness.py
python Analysis/TOP/TOP-X4/topx4_s2f3_covariant_scalar_matrix_checkpoint.py
python Analysis/TOP/TOP-X4/topx4_s2f3_scalar_matrix_hadamard_parametrix_checkpoint.py
python Analysis/TOP/TOP-X4/topx4_s2f3_global_state_construction_preflight.py
python Analysis/TOP/TOP-X4/topx4_s2f3_adiabatic_symbol_diagnostic.py
python Analysis/TOP/TOP-X4/topx4_s2f3_global_state_construction.py
python Analysis/TOP/TOP-X4/topx4_s2f3_physical_hessian_readiness.py

Master Tests 1–3 / R4C1 — Conditional Action and Stability Diagnostics

Runs the current bounded continuation under the frozen conditional R4C1 action. Tests 1–3 remain incomplete: the spherical force law is conditional, the universal periodic-T^3 pointwise law is rejected, and no unique blind Cχ is selected. The S1/S2/S3 receipts are scoped constraint, propagation and zero-branch diagnostics, not full stability or well-posedness proofs.

python -B Analysis/MasterTests/tests_01_03_symbolic_audit.py --test 1
python -B Analysis/MasterTests/test_01_r4c1_full_variation.py
python -B Analysis/MasterTests/test_01_r4c1_interacting_background.py
python -B Analysis/MasterTests/test_01_r4c1_gr_limit.py
python -B Analysis/MasterTests/test_03_r4c1_coefficient_identifiability.py
python -B Analysis/MasterTests/test_01_r4c1_scalar_constraints.py
python -B Analysis/MasterTests/test_01_r4c1_scalar_propagation.py
python -B Analysis/MasterTests/test_01_r4c1_zero_branch.py

TOP-001 / CBR-002 — Moduli Control

Free-Casimir dilution and inserted-source control. The free result is scoped negative; the prescribed driven ratio is not a stationary attractor, and the regenerated receipts explicitly remain physics_pass=false.

python Analysis/TOP/TOP-001/top001_moduli_phase_space_analysis.py

DISK-001 / STAT-001 — Methods Audit

Historical 175-galaxy methods entry point. The optimizer is not posterior sampling, and its output does not establish an ITSM prediction or open STAT-001.

python Analysis/DISK/DISK-001/disk001_sparc_multitier_mcmc_benchmark.py

COS-001 / PERT-001 — Calibration Audit

Historical proxy entry point retained for audit. Current authority classifies this sector as calibration-only; no ITSM Boltzmann hierarchy or S₈ prediction is established.

python Analysis/Cosmology/COS-001/cos001_genuine_boltzmann_growth_solver.py

BBN-001 — Table/CAMB Control

Checks all five bundled BBN tables, the PRIMAT 2024 Ombh2/ombh2 schema compatibility rule, interpolation domains and conventions, a DeltaN response sanity check, and the CAMB helium bridge. The action-derived interface contract validator checks its 12-field vocabulary, while a separate fail-closed preflight audits the UVIR-003 export and reports BLOCKED_UPSTREAM_BACKGROUND until the physical temperature/plenum interface exists. BBN remains CONTROL_ONLY.

python Analysis/Cosmology/BBN-001/bbn001_control.py
python Analysis/Cosmology/BBN-001/bbn001_action_derived_input_contract.py
python Analysis/Cosmology/BBN-001/bbn001_upstream_interface_preflight.py
Push-Location CAMB_ITSM_Solver
python -m unittest camb.tests.bbn_test
Pop-Location

WAK-001 — Retarded-Field Control

Historical wave-toy entry point. It is not a hydrodynamic cluster collision or metric-lensing calculation.

python Analysis/WAK/WAK-001/wak001_retarded_wave_lensing_solver.py

RES-001 — GKSL Control

Inserted-rate single-mode steady-state control. It does not derive a microscopic ITSM reservoir or constitutive exchange current.

python Analysis/RES/RES-001/res001_microscopic_lindblad_spohn_solver.py