Wave 2 · record #2domain.factnote.given
#2 · a note arrives
The listener opens a lane for this session, keeps the note, has what it waits for, empties its slot and announces it — as record #3. On the way, CellSpace sets up its registers.
Came froma personA person gave it at the door: the only thing a person adds in this wave. step 13
when it came in at the door
13Record #2 enters the logLOG · append
a wave is settlingengine: next: #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a notenew
- end of the log
The log What before after records in the log 2 3 #2 — a note · note.givenThe door adds the note to the log as record #2: a plain fact of type
note.given, with one field — its text.Where it happens
appendEmissions()Vol. 02 §4.1 · Vol. 03 §1The 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()incore/registers/append-emissions.ts, line 14: the new record gets the next free number- Journal
LOG · append· offset: 2, kind: domain.fact · by engine- Picture
- records in the log: 2 → 3
core/registers/append-emissions.ts· build 043cc8b// The one LOG writer (Vol. 02 §4.1, Vol. 03 §1): emissions become tuples by// receiving the next dense absolute offset — `base + window.length` — and// nothing else ever grows the log. Each append is journalled under the// ambient context, so a batch born of a propagated tuple carries that// tuple's offset as its cause — the cube's provenance line (ADR-002).import type { WaveEmission, WaveTuple } from "../wave/gate";import type { RegisterFile } from "./register-file";import { recordTransition } from "./record-transition";export function appendEmissions(file: RegisterFile, emissions: readonly WaveEmission[]): void {const engine = file.registers.engine;for (const emission of emissions) {const tuple: WaveTuple = { ...emission, offset: engine.base + engine.window.length };↑ the new record gets the next free numberengine.window.push(tuple);↑ it is added at the end of the logrecordTransition(file, "engine", "LOG", "append", {↑ the change is written into the journaloffset: tuple.offset,kind: tuple.kind});}}
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 #2
14The engine takes #2ENGINE.CURSOR · propagate
a wave is settlingengine: working on #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a note
- end of the log
The engine What before after pointer — the next record to take #2 #3 The engine's pointer moves past #2. It is the only thing a person gave; everything after it, the machine does on its own.
Where it happens
takeNextTuple()Vol. 02 §4.1The 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()incore/registers/take-next-tuple.ts, line 15: at the end of the log, the engine stops- Journal
- #2 ·
ENGINE.CURSOR · propagate· offset: 2 · by engine - Picture
- pointer — the next record to take: #2 → #3
core/registers/take-next-tuple.ts· build 043cc8b// ENGINE.CURSOR advance (Vol. 02 §4.1) — the machine's instruction pointer:// returns the tuple at the cursor and moves it forward exactly once, or null// at quiescence. Advancing IS the context switch: the ambient wave context// moves to the propagated tuple in the same movement, so every transition// journalled during its propagation is attributed to it — the cube's spine.// The cursor never rewinds.import type { WaveTuple } from "../wave/gate";import type { RegisterFile } from "./register-file";import { recordTransition } from "./record-transition";import { setDriver, setWaveContext } from "./set-wave-context";export function takeNextTuple(file: RegisterFile): WaveTuple | null {const engine = file.registers.engine;if (engine.cursor >= engine.base + engine.window.length) return null;↑ at the end of the log, the engine stopsconst tuple = engine.window[engine.cursor - engine.base];engine.cursor += 1;↑ the engine's pointer moves on by onesetWaveContext(file, { offset: tuple.offset, phase: "propagate" });setDriver(file, "engine");recordTransition(file, "engine", "ENGINE.CURSOR", "propagate", { offset: tuple.offset });↑ the change is written into the journalreturn tuple;}
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)
15The listener opens a lane for this sessionCLEWS · open-clew
a wave is settlingengine: working on #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a note
- end of the log
The listener note.gateWhat before after lane · this session — open The listener was told to hear
note.given, and this note carries a key — this session. So it opens a lane for that key, where this session's notes are kept.Where it happens
ensureClew()Vol. 02 §4.2 · Vol. 03 §5.1Opens 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()incore/registers/ensure-clew.ts, line 15: a new lane is opened for this key- Journal
- #2 ·
CLEWS · open-clew· key: fragment-one-knot-one-bind · by knot:note.gate - Picture
- lane · this session: — → open
core/registers/ensure-clew.ts· build 043cc8b// CLEWS lane creation (Vol. 02 §4.2): a clew is created lazily on the first// tuple of its key — parallel keys wind independent understanding (Vol. 05// §2, Vol. 03 §5.1). Creation is a transition (journalled); an existing lane// is a read and passes through silently.import type { ClewHandle, ClewRegisters } from "./topology-registers";import { recordTransition } from "./record-transition";export function ensureClew(clew: ClewHandle, init: () => ClewRegisters): ClewRegisters {const lanes = clew.region.clews.get(clew.knotId);if (!lanes) throw new Error(`Clew bank missing for knot '${clew.knotId}' — registration must precede facts (Vol. 02 §5.1).`);let registers = lanes.get(clew.key);if (!registers) {registers = init();lanes.set(clew.key, registers);↑ a new lane is opened for this keyrecordTransition(clew.file, `topology:${clew.region.regionId}/clew:${clew.knotId}`, "CLEWS", "open-clew", {↑ the change is written into the journalkey: clew.key});}return registers;}
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)
16The listener keeps the note in its slotCOLLECTED · collect
a wave is settlingengine: working on #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a note
- end of the log
The listener note.gateWhat before after lane · this session · slot note empty “The machine hears this note and releases it, unchanged.” The machine writes the note's text into the listener's slot note. Its condition — the slot is not empty — now holds: the listener has what it waits for.
Where it happens
collectDeterministicSlot()Vol. 02 §4.4 · Vol. 05 §3.3Fills a slot of a listener with a value it heard.
- Specification
- Vol. 02 §4.4 · Vol. 05 §3.3
- Code
collectDeterministicSlot()incore/registers/collect-deterministic-slot.ts, line 20: the slot is filled- Journal
- #2 ·
COLLECTED · collect· key: fragment-one-knot-one-bind, slot: note, reduce: latest · by knot:note.gate - Picture
- lane · this session · slot note: empty → “The machine hears this note and releases it, unchanged.”
core/registers/collect-deterministic-slot.ts· build 043cc8b// COLLECTED write (Vol. 02 §4.4, Vol. 05 §3.3): the deterministic knot's// slot fills — `append` accumulates an array, otherwise the newest value// stands. The condition never runs here; this op records the landing.import type { DeterministicClewRegisters, ClewHandle } from "./topology-registers";import { recordTransition } from "./record-transition";export function collectDeterministicSlot(clew: ClewHandle,registers: DeterministicClewRegisters,slot: string,reduce: string,value: unknown): void {if (reduce === "append") {const existing = registers.collected.get(slot);if (Array.isArray(existing)) existing.push(value);else registers.collected.set(slot, [value]);} else {registers.collected.set(slot, value);↑ the slot is filled}recordTransition(clew.file, `topology:${clew.region.regionId}/clew:${clew.knotId}`, "COLLECTED", "collect", {↑ the change is written into the journalkey: clew.key,slot,reduce});}
AGPL-3.0-onlyThe Lab's demonstration environment, as this fragment ran it (build 043cc8b). The code may change, and may differ from the code of a working machine.
Nest VM core, incubated in the CoAgnes garden · build 043cc8b (2026-09-21) · this file last changed in f36e70d (2026-08-18)
17The slot is emptied againCOLLECTED · reset
a wave is settlingengine: working on #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a note
- end of the log
The listener note.gateWhat before after lane · this session · slot note “The machine hears this note and releases it, unchanged.” empty Having enough, the listener will announce it — and first empties its slot, so that the next note starts afresh. What it heard travels with the announcement.
Where it happens
resetDeterministicClew()Vol. 02 §4.4Empties a listener's slots once it has announced that it is ready.
- Specification
- Vol. 02 §4.4
- Code
resetDeterministicClew()incore/registers/reset-deterministic-clew.ts, line 9: the slots are emptied- Journal
- #2 ·
COLLECTED · reset· key: fragment-one-knot-one-bind · by knot:note.gate - Picture
- lane · this session · slot note: “The machine hears this note and releases it, unchanged.” → empty
core/registers/reset-deterministic-clew.ts· build 043cc8b// The deterministic reset rule (Vol. 02 §4.4): COLLECTED clears at readiness// unless the policy says `never` — the station holds the policy, this op// holds the movement.import type { DeterministicClewRegisters, ClewHandle } from "./topology-registers";import { recordTransition } from "./record-transition";export function resetDeterministicClew(clew: ClewHandle, registers: DeterministicClewRegisters): void {registers.collected = new Map();↑ the slots are emptiedrecordTransition(clew.file, `topology:${clew.region.regionId}/clew:${clew.knotId}`, "COLLECTED", "reset", {↑ the change is written into the journalkey: clew.key});}
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)
18CellSpace sets up its registersREQUESTS,CHARTERS,CELLS · mount
a wave is settlingengine: working on #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a note
- end of the log
CellSpace · appears What before after requests — empty charters — empty Cells — empty #2 is the session's first plain fact. CellSpace, the part that runs Cells, checks every fact for a Cell that should also hear it; the first time it looks, it creates its three registers — empty.
Where it happens
cellsRegion()Vol. 12 §2Creates CellSpace's registers the first time CellSpace needs them.
- Specification
- Vol. 12 §2
- Code
cellsRegion()incore/registers/cells-region.ts, line 11: three empty registers are created- Journal
- #2 ·
REQUESTS,CHARTERS,CELLS · mount· by cellspace - Picture
- requests: — → empty
core/registers/cells-region.ts· build 043cc8b// The CellSpace stratum accessor (Vol. 12 §2): mounted lazily on the first// touch — an assembly without CellSpace never carries the extension// registers. Mounting is a transition; an existing stratum is a read.import type { CellSpaceRegisters } from "./cell-registers";import type { RegisterFile } from "./register-file";import { recordTransition } from "./record-transition";export function cellsRegion(file: RegisterFile): CellSpaceRegisters {if (!file.registers.cells) {file.registers.cells = { requests: new Map(), charters: new Map(), cells: new Map() };↑ three empty registers are createdrecordTransition(file, "cellspace", "REQUESTS,CHARTERS,CELLS", "mount");↑ the change is written into the journal}return file.registers.cells;}
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)
19The readiness enters the log as #3LOG · append
a wave is settlingengine: working on #2membrane: waiting at #2
The log - #0a listener
- #1a doer
- #2a note
- #3readinessnew
- end of the log
The log What before after records in the log 3 4 #3 — readiness · sys.knot.readyThe listener's announcement is written at the end of the log as record #3, together with what it heard. A readiness is a record like any other.
Where it happens
appendEmissions()Vol. 02 §4.1 · Vol. 03 §1The 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()incore/registers/append-emissions.ts, line 14: the new record gets the next free number- Journal
- #2 ·
LOG · append· offset: 3, kind: sys.knot.ready · by engine - Picture
- records in the log: 3 → 4
core/registers/append-emissions.ts· build 043cc8b// The one LOG writer (Vol. 02 §4.1, Vol. 03 §1): emissions become tuples by// receiving the next dense absolute offset — `base + window.length` — and// nothing else ever grows the log. Each append is journalled under the// ambient context, so a batch born of a propagated tuple carries that// tuple's offset as its cause — the cube's provenance line (ADR-002).import type { WaveEmission, WaveTuple } from "../wave/gate";import type { RegisterFile } from "./register-file";import { recordTransition } from "./record-transition";export function appendEmissions(file: RegisterFile, emissions: readonly WaveEmission[]): void {const engine = file.registers.engine;for (const emission of emissions) {const tuple: WaveTuple = { ...emission, offset: engine.base + engine.window.length };↑ the new record gets the next free numberengine.window.push(tuple);↑ it is added at the end of the logrecordTransition(file, "engine", "LOG", "append", {↑ the change is written into the journaloffset: tuple.offset,kind: tuple.kind});}}
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 #2
28The membrane passes #2MEMBRANE.CURSOR · sweep
a wave is settlingengine: at the endmembrane: passing #2
The log - #0a listener
- #1a doer
- #2a note
- #3readiness
- #4the release
- end of the log
The membrane What before after pointer — the next record to pass #2 #3 Only now, with the engine at the end, does the membrane pass over the new records. #2 asks nothing of the outside world.
Where it happens
sweepNextTuple()Vol. 02 §4.6 · Vol. 07 §3The 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()incore/registers/sweep-next-tuple.ts, line 16: the membrane's pointer moves on by one- Journal
- #2 ·
MEMBRANE.CURSOR · sweep· offset: 2 · by membrane - Picture
- pointer — the next record to pass: #2 → #3
core/registers/sweep-next-tuple.ts· build 043cc8b// MEMBRANE.CURSOR advance (Vol. 02 §4.6, Vol. 07 §3): the membrane's own// reading of the one log — the second reception of one publication, never a// second truth. The cursor advances exactly once per offset per machine:// the exactly-once discharge guarantee lives in this movement.import type { WaveTuple } from "../wave/gate";import type { RegisterFile } from "./register-file";import { recordTransition } from "./record-transition";import { setDriver, setWaveContext } from "./set-wave-context";export function sweepNextTuple(file: RegisterFile): WaveTuple | null {const engine = file.registers.engine;const membrane = file.registers.membrane;if (membrane.cursor >= engine.base + engine.window.length) return null;const tuple = engine.window[membrane.cursor - engine.base];membrane.cursor += 1;↑ the membrane's pointer moves on by onesetWaveContext(file, { offset: tuple.offset, phase: "sweep" });setDriver(file, "membrane");recordTransition(file, "membrane", "MEMBRANE.CURSOR", "sweep", { offset: tuple.offset });↑ the change is written into the journalreturn tuple;}
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: a note given at the door
A fact is anything said to the machine or by it. Its fact type, note.given, is how listeners recognise it; its data holds the note's words. A listener told to hear note.given keeps those words in a slot.
#2domain.factnote.given a person
| envelope | |
|---|---|
offset | 2Its 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. |
kind | domain.factWhich of the four kinds of record the machine knows. The kind decides what the payload holds. |
key | fragment-one-knot-one-bindThis session's lane: every note on it goes to the same lane of each listener. |
| payload | |
factType | note.givenThe fact type — the name listeners match on. |
| payload.data | |
text | «The machine hears this note and releases it, unchanged.»The note's words. |
end · #2
In the specificationVol. 03 §1Vol. 03 §2Vol. 03 §5Vol. 04 §3.1Vol. 07 §6
The record as the machine keeps it
{
"offset": 2,
"kind": "domain.fact",
"key": "fragment-one-knot-one-bind",
"payload": {
"factType": "note.given",
"data": {
"text": "The machine hears this note and releases it, unchanged."
}
}
}