a wave is settlingengine working on #27membrane waiting at #25

Wave 3 · record #27domain.factreturn.declared

#27 · the return is declared

The return listener opens a lane and keeps the address. It is not ready: the answer does not exist yet.

Came froma personThe person's act of opening a Cell sowed it at the door: the address the Cell's answer must return to. step 139

Read as

when it came in at the door

  1. 139Record #27 enters the logLOG · append

    a wave is settlingengine: next: #25membrane: waiting at #25

    The log
    1. #0a listener
    2. #1a doer
    3. #2listener: the charter
    4. #3doer: the author
    5. #4listener: charter seen
    6. #5listener: blueprint seen
    7. #6doer: the planner
    8. #7listener: assess · charter
    9. #8listener: assess · result
    10. #9doer: the evaluator
    11. #10the charter wanted
    12. #11the blueprint
    13. #12readiness
    14. #13readiness
    15. #14a request: a charter
    16. #15the charter proposed
    17. #16the charter defined
    18. #17readiness
    19. #18readiness
    20. #19a request: a Cell
    21. #20the seed
    22. #21the Cell is open
    23. #22inner listener
    24. #23inner doer
    25. #24the Cell's context
    26. #25return listenerenginemembrane
    27. #26return doer
    28. #27the return addressnew
    29. end of the log
    The log
    Whatbeforeafter
    records in the log2728
    #27—the return address · return.declared

    The door adds #27: the return address — which slot to fill, and as what kind of fact.

    Where it happens appendEmissions()Vol. 02 §4.1 · Vol. 03 §1

    The only function that adds records to the log. Each new record gets the next free number, at the end.

    Specification
    Vol. 02 §4.1 · Vol. 03 §1
    Code
    appendEmissions() in core/registers/append-emissions.ts, line 14: the new record gets the next free number
    Journal
    LOG · append · offset: 27, kind: domain.fact · by engine
    Picture
    records in the log: 27 → 28
    core/registers/append-emissions.ts · build 043cc8b
    1. // The one LOG writer (Vol. 02 §4.1, Vol. 03 §1): emissions become tuples by
    2. // receiving the next dense absolute offset — `base + window.length` — and
    3. // nothing else ever grows the log. Each append is journalled under the
    4. // ambient context, so a batch born of a propagated tuple carries that
    5. // tuple's offset as its cause — the cube's provenance line (ADR-002).
    6. import type { WaveEmission, WaveTuple } from "../wave/gate";
    7. import type { RegisterFile } from "./register-file";
    8. import { recordTransition } from "./record-transition";
    9. export function appendEmissions(file: RegisterFile, emissions: readonly WaveEmission[]): void {
    10. const engine = file.registers.engine;
    11. for (const emission of emissions) {
    12. const tuple: WaveTuple = { ...emission, offset: engine.base + engine.window.length };↑ the new record gets the next free number
    13. engine.window.push(tuple);↑ it is added at the end of the log
    14. recordTransition(file, "engine", "LOG", "append", {↑ the change is written into the journal
    15. offset: tuple.offset,
    16. kind: tuple.kind
    17. });
    18. }
    19. }

    AGPL-3.0-onlyThe Lab's demonstration environment, as this fragment ran it (build 043cc8b). The code may change, and may differ from the code of a working machine.

    Nest VM core, incubated in the CoAgnes garden · build 043cc8b (2026-09-21) · this file last changed in f36e70d (2026-08-18)

when the engine took #27

  1. 145The engine takes #27ENGINE.CURSOR · propagate

    a wave is settlingengine: working on #27membrane: waiting at #25

    The log
    1. #0a listener
    2. #1a doer
    3. #2listener: the charter
    4. #3doer: the author
    5. #4listener: charter seen
    6. #5listener: blueprint seen
    7. #6doer: the planner
    8. #7listener: assess · charter
    9. #8listener: assess · result
    10. #9doer: the evaluator
    11. #10the charter wanted
    12. #11the blueprint
    13. #12readiness
    14. #13readiness
    15. #14a request: a charter
    16. #15the charter proposed
    17. #16the charter defined
    18. #17readiness
    19. #18readiness
    20. #19a request: a Cell
    21. #20the seed
    22. #21the Cell is open
    23. #22inner listener
    24. #23inner doer
    25. #24the Cell's context
    26. #25return listenermembrane
    27. #26return doer
    28. #27the return addressengine · working
    29. end of the log
    The engine
    Whatbeforeafter
    pointer — the next record to take#27#28

    The engine moves on to #27, the return address, and the machine reacts to it.

    Where it happens takeNextTuple()Vol. 02 §4.1

    The engine's step: take the record under its pointer and move the pointer on — or stop, if the pointer has reached the end.

    Specification
    Vol. 02 §4.1
    Code
    takeNextTuple() in core/registers/take-next-tuple.ts, line 15: at the end of the log, the engine stops
    Journal
    #27 · ENGINE.CURSOR · propagate · offset: 27 · by engine
    Picture
    pointer — the next record to take: #27 → #28
    core/registers/take-next-tuple.ts · build 043cc8b
    1. // ENGINE.CURSOR advance (Vol. 02 §4.1) — the machine's instruction pointer:
    2. // returns the tuple at the cursor and moves it forward exactly once, or null
    3. // at quiescence. Advancing IS the context switch: the ambient wave context
    4. // moves to the propagated tuple in the same movement, so every transition
    5. // journalled during its propagation is attributed to it — the cube's spine.
    6. // The cursor never rewinds.
    7. import type { WaveTuple } from "../wave/gate";
    8. import type { RegisterFile } from "./register-file";
    9. import { recordTransition } from "./record-transition";
    10. import { setDriver, setWaveContext } from "./set-wave-context";
    11. export function takeNextTuple(file: RegisterFile): WaveTuple | null {
    12. const engine = file.registers.engine;
    13. if (engine.cursor >= engine.base + engine.window.length) return null;↑ at the end of the log, the engine stops
    14. const tuple = engine.window[engine.cursor - engine.base];
    15. engine.cursor += 1;↑ the engine's pointer moves on by one
    16. setWaveContext(file, { offset: tuple.offset, phase: "propagate" });
    17. setDriver(file, "engine");
    18. recordTransition(file, "engine", "ENGINE.CURSOR", "propagate", { offset: tuple.offset });↑ the change is written into the journal
    19. return tuple;
    20. }

    AGPL-3.0-onlyThe Lab's demonstration environment, as this fragment ran it (build 043cc8b). The code may change, and may differ from the code of a working machine.

    Nest VM core, incubated in the CoAgnes garden · build 043cc8b (2026-09-21) · this file last changed in 6730f58 (2026-09-13)

  2. 146The return listener opens a laneCLEWS · open-clew

    a wave is settlingengine: working on #27membrane: waiting at #25

    The log
    1. #0a listener
    2. #1a doer
    3. #2listener: the charter
    4. #3doer: the author
    5. #4listener: charter seen
    6. #5listener: blueprint seen
    7. #6doer: the planner
    8. #7listener: assess · charter
    9. #8listener: assess · result
    10. #9doer: the evaluator
    11. #10the charter wanted
    12. #11the blueprint
    13. #12readiness
    14. #13readiness
    15. #14a request: a charter
    16. #15the charter proposed
    17. #16the charter defined
    18. #17readiness
    19. #18readiness
    20. #19a request: a Cell
    21. #20the seed
    22. #21the Cell is open
    23. #22inner listener
    24. #23inner doer
    25. #24the Cell's context
    26. #25return listenermembrane
    27. #26return doer
    28. #27the return addressengine · working
    29. end of the log
    The listener return.cell-20.gate
    Whatbeforeafter
    lane · this session—open

    The return listener hears return.declared for cell@20, so it opens a lane. The address came after the listener, so it reaches it: a fact is heard only by listeners that existed before it.

    Where it happens ensureClew()Vol. 02 §4.2 · Vol. 03 §5.1

    Opens a lane in a listener for a new key — the first time a fact with that key reaches it.

    Specification
    Vol. 02 §4.2 · Vol. 03 §5.1
    Code
    ensureClew() in core/registers/ensure-clew.ts, line 15: a new lane is opened for this key
    Journal
    #27 · CLEWS · open-clew · key: fragment-one-cell · by knot:return.cell-20.gate
    Picture
    lane · this session: — → open
    core/registers/ensure-clew.ts · build 043cc8b
    1. // CLEWS lane creation (Vol. 02 §4.2): a clew is created lazily on the first
    2. // tuple of its key — parallel keys wind independent understanding (Vol. 05
    3. // §2, Vol. 03 §5.1). Creation is a transition (journalled); an existing lane
    4. // is a read and passes through silently.
    5. import type { ClewHandle, ClewRegisters } from "./topology-registers";
    6. import { recordTransition } from "./record-transition";
    7. export function ensureClew(clew: ClewHandle, init: () => ClewRegisters): ClewRegisters {
    8. const lanes = clew.region.clews.get(clew.knotId);
    9. if (!lanes) throw new Error(`Clew bank missing for knot '${clew.knotId}' — registration must precede facts (Vol. 02 §5.1).`);
    10. let registers = lanes.get(clew.key);
    11. if (!registers) {
    12. registers = init();
    13. lanes.set(clew.key, registers);↑ a new lane is opened for this key
    14. recordTransition(clew.file, `topology:${clew.region.regionId}/clew:${clew.knotId}`, "CLEWS", "open-clew", {↑ the change is written into the journal
    15. key: clew.key
    16. });
    17. }
    18. return registers;
    19. }

    AGPL-3.0-onlyThe Lab's demonstration environment, as this fragment ran it (build 043cc8b). The code may change, and may differ from the code of a working machine.

    Nest VM core, incubated in the CoAgnes garden · build 043cc8b (2026-09-21) · this file last changed in f36e70d (2026-08-18)

  3. 147The address is keptCOLLECTED · collect

    a wave is settlingengine: working on #27membrane: waiting at #25

    The log
    1. #0a listener
    2. #1a doer
    3. #2listener: the charter
    4. #3doer: the author
    5. #4listener: charter seen
    6. #5listener: blueprint seen
    7. #6doer: the planner
    8. #7listener: assess · charter
    9. #8listener: assess · result
    10. #9doer: the evaluator
    11. #10the charter wanted
    12. #11the blueprint
    13. #12readiness
    14. #13readiness
    15. #14a request: a charter
    16. #15the charter proposed
    17. #16the charter defined
    18. #17readiness
    19. #18readiness
    20. #19a request: a Cell
    21. #20the seed
    22. #21the Cell is open
    23. #22inner listener
    24. #23inner doer
    25. #24the Cell's context
    26. #25return listenermembrane
    27. #26return doer
    28. #27the return addressengine · working
    29. end of the log
    The listener return.cell-20.gate
    Whatbeforeafter
    lane · this session · slot addressemptycellRef = “cell@20” · slot = {"bind":"note.echo","knot":"note.gate"} · as = {"factType":"note.given","field":"text","where":[]} · mode = “answer” · exportType = “knowledge.l1.accepted” · session = “fragment-one-cell” · seat = “l1.seeking” · level = “l1.seeking”

    The address goes into the slot address: into the slot of note.echo and note.gate, as a note.given. The other slot is empty, so the listener is not ready: it holds the address and waits.

    Where it happens collectDeterministicSlot()Vol. 02 §4.4 · Vol. 05 §3.3

    Fills a slot of a listener with a value it heard.

    Specification
    Vol. 02 §4.4 · Vol. 05 §3.3
    Code
    collectDeterministicSlot() in core/registers/collect-deterministic-slot.ts, line 20: the slot is filled
    Journal
    #27 · COLLECTED · collect · key: fragment-one-cell, slot: address, reduce: latest · by knot:return.cell-20.gate
    Picture
    lane · this session · slot address: empty → cellRef = “cell@20” · slot = {"bind":"note.echo","knot":"note.gate"} · as = {"factType":"note.given","field":"text","where":[]} · mode = “answer” · exportType = “knowledge.l1.accepted” · session = “fragment-one-cell” · seat = “l1.seeking” · level = “l1.seeking”
    core/registers/collect-deterministic-slot.ts · build 043cc8b
    1. // COLLECTED write (Vol. 02 §4.4, Vol. 05 §3.3): the deterministic knot's
    2. // slot fills — `append` accumulates an array, otherwise the newest value
    3. // stands. The condition never runs here; this op records the landing.
    4. import type { DeterministicClewRegisters, ClewHandle } from "./topology-registers";
    5. import { recordTransition } from "./record-transition";
    6. export function collectDeterministicSlot(
    7. clew: ClewHandle,
    8. registers: DeterministicClewRegisters,
    9. slot: string,
    10. reduce: string,
    11. value: unknown
    12. ): void {
    13. if (reduce === "append") {
    14. const existing = registers.collected.get(slot);
    15. if (Array.isArray(existing)) existing.push(value);
    16. else registers.collected.set(slot, [value]);
    17. } else {
    18. registers.collected.set(slot, value);↑ the slot is filled
    19. }
    20. recordTransition(clew.file, `topology:${clew.region.regionId}/clew:${clew.knotId}`, "COLLECTED", "collect", {↑ the change is written into the journal
    21. key: clew.key,
    22. slot,
    23. reduce
    24. });
    25. }

    AGPL-3.0-onlyThe Lab's demonstration environment, as this fragment ran it (build 043cc8b). The code may change, and may differ from the code of a working machine.

    Nest VM core, incubated in the CoAgnes garden · build 043cc8b (2026-09-21) · this file last changed in f36e70d (2026-08-18)

when the membrane passed #27

  1. 150The membrane passes #27MEMBRANE.CURSOR · sweep

    a wave is settlingengine: at the endmembrane: passing #27

    The log
    1. #0a listener
    2. #1a doer
    3. #2listener: the charter
    4. #3doer: the author
    5. #4listener: charter seen
    6. #5listener: blueprint seen
    7. #6doer: the planner
    8. #7listener: assess · charter
    9. #8listener: assess · result
    10. #9doer: the evaluator
    11. #10the charter wanted
    12. #11the blueprint
    13. #12readiness
    14. #13readiness
    15. #14a request: a charter
    16. #15the charter proposed
    17. #16the charter defined
    18. #17readiness
    19. #18readiness
    20. #19a request: a Cell
    21. #20the seed
    22. #21the Cell is open
    23. #22inner listener
    24. #23inner doer
    25. #24the Cell's context
    26. #25return listener
    27. #26return doer
    28. #27the return addressmembrane · passing
    29. end of the logengine
    The membrane
    Whatbeforeafter
    pointer — the next record to pass#27#28

    #27 asks nothing of the world, so the membrane's pointer simply moves on.

    Where it happens sweepNextTuple()Vol. 02 §4.6 · Vol. 07 §3

    The membrane's step: pass over the record under its pointer and move the pointer on — exactly once per record.

    Specification
    Vol. 02 §4.6 · Vol. 07 §3
    Code
    sweepNextTuple() in core/registers/sweep-next-tuple.ts, line 16: the membrane's pointer moves on by one
    Journal
    #27 · MEMBRANE.CURSOR · sweep · offset: 27 · by membrane
    Picture
    pointer — the next record to pass: #27 → #28
    core/registers/sweep-next-tuple.ts · build 043cc8b
    1. // MEMBRANE.CURSOR advance (Vol. 02 §4.6, Vol. 07 §3): the membrane's own
    2. // reading of the one log — the second reception of one publication, never a
    3. // second truth. The cursor advances exactly once per offset per machine:
    4. // the exactly-once discharge guarantee lives in this movement.
    5. import type { WaveTuple } from "../wave/gate";
    6. import type { RegisterFile } from "./register-file";
    7. import { recordTransition } from "./record-transition";
    8. import { setDriver, setWaveContext } from "./set-wave-context";
    9. export function sweepNextTuple(file: RegisterFile): WaveTuple | null {
    10. const engine = file.registers.engine;
    11. const membrane = file.registers.membrane;
    12. if (membrane.cursor >= engine.base + engine.window.length) return null;
    13. const tuple = engine.window[membrane.cursor - engine.base];
    14. membrane.cursor += 1;↑ the membrane's pointer moves on by one
    15. setWaveContext(file, { offset: tuple.offset, phase: "sweep" });
    16. setDriver(file, "membrane");
    17. recordTransition(file, "membrane", "MEMBRANE.CURSOR", "sweep", { offset: tuple.offset });↑ the change is written into the journal
    18. return tuple;
    19. }

    AGPL-3.0-onlyThe Lab's demonstration environment, as this fragment ran it (build 043cc8b). The code may change, and may differ from the code of a working machine.

    Nest VM core, incubated in the CoAgnes garden · build 043cc8b (2026-09-21) · this file last changed in 6730f58 (2026-09-13)

Choose a step in the stack — or press →.

A fact: the return address

Where a Cell's accepted answer must go, declared by the act that opened the Cell: which slot, as which kind of fact, and which answer to wait for.

#27domain.factreturn.declared a person

envelope
offset27Its place in the log — the only address a record has. The engine gives it when the record is added, the next free number, and it never changes.
kinddomain.factWhich of the four kinds of record the machine knows. The kind decides what the payload holds.
keyfragment-one-cellThis session's lane.
payload
factTypereturn.declaredThe fact type — return.declared.
payload.data
cellRefcell@20The Cell whose answer returns.
slotbind · knotThe slot to return into: the doer note.echo and the listener note.gate.
asfactType · field · where ×0As what: a note.given, the answer in its field text.
modeanswerAnswer: the Cell's result is the answer itself.
exportTypeknowledge.l1.acceptedThe answer to wait for: the Cell's accepted export.
sessionfragment-one-cellThe session it belongs to.
seatl1.seekingThe seat the Cell was opened from.
levell1.seekingThe level of the Cell's material.

end · #27

In the specificationVol. 03 §1Vol. 03 §2Vol. 03 §5Vol. 04 §3.1Vol. 07 §6Vol. 12 §5.5

The record as the machine keeps it
{
 "offset": 27,
 "kind": "domain.fact",
 "key": "fragment-one-cell",
 "payload": {
  "factType": "return.declared",
  "data": {
   "cellRef": "cell@20",
   "slot": {
    "bind": "note.echo",
    "knot": "note.gate"
   },
   "as": {
    "factType": "note.given",
    "field": "text",
    "where": []
   },
   "mode": "answer",
   "exportType": "knowledge.l1.accepted",
   "session": "fragment-one-cell",
   "seat": "l1.seeking",
   "level": "l1.seeking"
  }
 }
}