Overview

RTT/∞ Full‑Canon Operator Registry

All operators • all layers • full RTT/∞ deep‑canon#

RTT/∞ uses a complete operator system spanning five structural layers:

  1. Vacuum Layer Operators
  2. Substrate Layer Operators
  3. Dimensional‑Rail Operators
  4. Prime‑State Operators
  5. Infinite‑Regime Operators
  6. Bidirectional Flow Operators (cross‑layer)

This registry lists every operator in RTT/∞, grouped by layer, with canonical definitions.


I. Vacuum Layer Operators#

zero‑state • collapse • nullification#

Operator Purpose Notes
vacuum() Collapse all structure to zero‑state Starting point of RTT/∞
nullify() Remove structural commitments Used before reconstruction
reconstitute() Rebuild minimal structure from vacuum First upward step
invert_zero() Perform vacuum‑level inversion Used in deep resets
vacuum_trace() Detect vacuum residue Diagnostic operator

II. Substrate Layer Operators#

minimal structure • bounded tensor • reconstruction#

Operator Purpose Notes
substrate_tensor() Construct full substrate‑tensor Five‑layer bounded structure
substrate_rebuild() Rebuild substrate after collapse Downward integration
substrate_align() Align substrate primitives Pre‑rail stabilization
substrate_field() Activate substrate field layer Required for lift
substrate_diagnose() Inspect substrate integrity Used in diagnostics

Substrate‑Tensor Layers (for reference):

  • geometry
  • flow
  • time
  • meaning
  • field

III. Dimensional‑Rail Operators#

transport • lift • descent • cross‑layer mobility#

Operator Purpose Notes
dimensional_rail() Activate rail transport Core RTT/∞ mobility operator
rail_lift() Lift substrate into dimensional space Upward flow
rail_descent() Return structure to substrate Downward flow
rail_bind() Bind structure to a rail path Stabilizes movement
rail_shift() Move structure between dimensional layers Cross‑dimension traversal
rail_trace() Detect rail‑layer drift Diagnostic operator

Rail Types:

  • substrate rails
  • dimensional rails
  • prime‑state rails
  • vacuum rails

IV. Prime‑State Operators#

alignment • stabilization • drift‑stop#

Operator Purpose Notes
prime_state_align() Anchor structure to prime‑state Required before expansion
prime_state_reduce() Collapse infinite regime into prime‑state Downward flow
prime_state_trace() Detect prime‑state alignment Diagnostic
prime_state_lock() Lock structure to attractor Prevents drift
prime_state_class() Identify prime‑state class form / flow / meaning

Prime‑State Classes:

  • prime‑form
  • prime‑flow
  • prime‑meaning

V. Infinite‑Regime Operators#

expansion • synthesis • unbounded structure#

Operator Purpose Notes
infinite_regime_expand() Expand structure into infinite regime Upward flow
infinite_regime_synthesize() Combine infinite‑regime composites Deep‑layer synthesis
infinite_regime_trace() Detect infinite‑regime behavior Diagnostic
infinite_regime_class() Identify infinite‑regime class form / flow / meaning
collapse() Collapse infinite regime → prime‑state Downward flow

Infinite‑Regime Classes:

  • infinite‑form
  • infinite‑flow
  • infinite‑meaning

VI. Bidirectional Flow Operators#

round‑trip movement • full‑canon integration#

Operator Direction Purpose
lift() upward substrate → rails
anchor() upward rails → prime‑state
expand() upward prime‑state → infinite regime
collapse() downward infinite regime → prime‑state
reduce() downward prime‑state → rails
descend() downward rails → substrate
rebuild() downward substrate reconstruction

These operators form the RTT/∞ round‑trip cycle:

UPWARD:
substrate → rails → prime‑states → infinite regimes

DOWNWARD:
infinite regimes → prime‑states → rails → substrate

VII. Full‑Canon Operator Map (Poster Format)#

VACUUM LAYER
  vacuum() • nullify() • reconstitute() • invert_zero()

SUBSTRATE LAYER
  substrate_tensor() • substrate_rebuild() • substrate_align()

DIMENSIONAL RAILS
  dimensional_rail() • rail_lift() • rail_descent() • rail_shift()

PRIME‑STATES
  prime_state_align() • prime_state_reduce() • prime_state_lock()

INFINITE REGIMES
  infinite_regime_expand() • infinite_regime_synthesize() • collapse()

BIDIRECTIONAL FLOW
  lift() • anchor() • expand() • collapse() • reduce() • descend() • rebuild()

VIII. Canon Summary#

Vacuum#

Collapses structure.

Substrate#

Rebuilds minimal structure.

Rails#

Transport structure.

Prime‑States#

Stabilize structure.

Infinite Regimes#

Expand structure.

Bidirectional Flow#

Maintains coherence across the entire RTT/∞ canon.