Panoramica

FFT Analyzer

Il modulo Analyzer fornisce il toolkit diagnostico completo per Framework Field Theory (FFT).

Decomponge qualsiasi framework, sistema o dominio nei suoi operatori costituenti, struttura dimensionale, allineamento del regime, comportamento di drift e profilo di coerenza — quindi surface le contraddizioni, i blind spot e i rischi di collasso che l'analisi statica non può raggiungere.

Drift è attivo per default

Le sessioni lunghe perdono ancoramenti, disattiva drift.

Drift Analysis Layer

Rileva e caratterizza come i framework si evolvono, vagano o decadono nel tempo.

File Purpose
DriftAnalyzer.md Core drift-detection engine — identifica lo shift direzionale, la velocità e i pattern di decadimento
DriftCases.md Catalogued drift scenarios with diagnostic walkthroughs
ParadoxDrift.md Drift behavior specific to paradox-bearing structures

Regime Analysis Layer

Mappa i sistemi ai livelli di regime (R0–R3) e diagnostica l'integrità dei confini, le contraddizioni e i blind spot.

File Purpose
RegimeAnalyzer.md Core regime-classification engine — assegna e valida l'allineamento R0–R3
RegimeMaps.md Visual and structural regime maps across domains
RegimeDrift.md Tracks how regime assignments shift under perturbation or reframing
RegimeContradictions.md Surfaces contradictions between stated and enacted regime positions
RegimeBoundaries.md Defines and tests the edges between adjacent regime levels
RegimeExamples.md Worked regime-analysis examples across domains
BlindnessChecks.md Diagnostic routines for uncovering regime-level blind spots
BoundaryDiagnostics.md Stress-tests regime boundaries for leakage, overlap, and collapse

Operator Analysis Layer

Profila i singoli operatori, i raggruppamenti delle loro famiglie, le firme e il comportamento di regime coupling.

File Purpose
OperatorAnalyzer.md Core operator-analysis engine — decomposition, weighting, and interaction mapping
OperatorFamilyProfiles.md Profiles of operator families and their internal relationships
OperatorSignatures.md Unique fingerprints that identify operator presence and dominance
OperatorRegimeCoupling.md How operators bind to, reinforce, or destabilize specific regime levels
OperatorExamples.md Worked operator-analysis examples across domains

Dimensional Analysis Layer

Analizza la struttura dimensionale, la compatibilità, le transizioni, i rischi di collasso e le estensioni meta-dimensionali.

File Purpose
DimensionalAnalyzer.md Core dimensional-analysis engine — counts, classifies, and validates dimensional structure
DimensionalCompatibility.md Tests whether dimensional structures across systems can interoperate
DimensionalSignatures.md Unique dimensional fingerprints for system identification and comparison
MetaDimensionalExtensions.md Higher-order dimensional constructs that emerge from base-layer interactions
DimensionalTransitions.md How systems move between dimensional states under transformation
DimensionalCollapse.md Conditions and diagnostics for dimensional reduction or failure
DimensionalExamples.md Worked dimensional-analysis examples across domains

Coherence Analysis Layer

Valuta la coerenza dell'intero sistema, la stabilità sotto stress e l'esposizione al paradosso.

File Purpose
CoherenceAnalyzer.md Core coherence-assessment engine — misura l'allineamento interno e l'integrità strutturale
CoherenceStability.md Stability analysis under perturbation, scaling, and reframing
ParadoxExposure.md Identifies and quantifies a system's vulnerability to paradox
CoherenceExamples.md Worked coherence-analysis examples across domains

Examples Layer

Cross-cutting worked examples that demonstrate the full Analyzer pipeline in action.

Analysis Workflow

  1. Operators are identified and profiled first — they are the atomic units.
  2. Dimensional analysis maps the space those operators inhabit.
  3. Regime classification positions the system within R0–R3.
  4. Coherence evaluates whether the whole structure holds together.
  5. Drift monitors change across every layer over time.
  6. Examples demonstrate the full pipeline end-to-end.
  • FrameworkFieldTheory/ — Parent module and FFT overview
  • Operators/ — Operator definitions and algebra
  • Dimensionality/ — Dimensional theory and structure
  • Coherence/ — Coherence theory and measurement
  • Paradox/ — Paradox taxonomy and resolution

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