Cycle-close audit for the #283/#77 tap-subscribers cycle (09994b8..6e3f394). Architect review: code contract-clean; what holds — C1/C7/C8 (empty-output caller-built consumers, (Timestamp, Cell) zero-heap payload, lifecycle hooks inside the sequential loop, byte-identical twin-run and streamed-vs-legacy byte-equality pins), C28 (assembly-crate placement of the writer-holding consumer, c28_layering guard green), C25 (registry growth = new Rust entry, data-expressible Named form, roster-enumerating refusals). All drift items were doc lifts, resolved in this commit: - C8: the lifecycle is now a symmetric pair — initialize() as finalize's start-of-stream mirror (infallible by signature; acquire-in-initialize, degrade-to-inert, surface-once-at-finalize); history sidecar records the refinement and the #77 resolution the old Deferred paragraph still carried as open. - C27: Guarantee and Current state now describe the shipped model — tap plan (Named{label, params} | Live) over the layered fold registry, BOTH entry points (run_signal_r AND run_measurement) on the one shared wiring pair, record streaming at constant memory. - C28: aura-runner now defines one graph node of its own (the in-graph record consumer — exactly the graph-meets-persistence assembly position); the #297 refusal-site count grows ~20 → ~24 (the four tap-plan refusals, already typed before the exit). - glossary §tap: the subscription/fold-registry sense added; Avoid line steers probe/monitor/scope away from the observation slot. Bench (report-only, loadavg 5.8 > 2 on the box — read with care), all fingerprints OK, no regression: engine_throughput bars_per_s 14005262 wall_s 0.714s Δ bars_per_s +3.0% wall_s -3.0% ingest_throughput bars_per_s 12970670 wall_s 0.387s Δ bars_per_s +0.5% wall_s -0.5% campaign_sweep cpu_percent 2202.0 peak_rss_mb 92.2 wall_s 1.396s Δ cpu_percent +1.5% peak_rss_mb -6.1% wall_s -1.5% campaign_heavy cpu_percent 2155.0 peak_rss_mb 94.8 wall_s 5.585s Δ cpu_percent +1.8% peak_rss_mb -3.5% wall_s -0.4% cli_fixed_cost help_ms 1.5ms run_ms 3.6ms Δ help_ms -1.8% run_ms -2.6% No baseline update (report-only surface; no ratify due). Correction on 6e3f394's body: "no Probe symbol is introduced anywhere" — introduced is the operative word; the pre-existing aura-core test fixture `struct Probe` stays, as the cycle's design record specified. Follow-ups on the tracker: #308 (legacy Recorder surface migration), #307 (binary trace format). Cycle spec/plan working files discarded. refs #283 refs #77
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C27 — Declared taps: named measurement points bind sinks run-mode-aware
Guarantee. A blueprint may declare taps — named, pure output-side
declarations { name, from: {node, field} }, the output-side twin of input_roles
(C26). A tap names an interior producer's output field
without naming a sink, exactly as a Role names an abstract input without naming a
source. At compile the tap resolves — and, for an interior composite, hoists to
the root — through the same lowering remap edges and OutField re-exports use
(resolve_tap_wire, a flat_taps accumulator threaded through the lowering
recursion), landing in FlatGraph.taps as a FlatTap { name, node, field } whose
name survives compile and is load-bearing for by-name binding (like
SourceSpec.role, #275).
Binding is run-mode-aware: the run-mode-owning layer constructs a consumer at
a bound tap via FlatGraph::bind_tap, which takes a caller-built
Box<dyn Node> sink (so the engine keeps its aura-core-only production
dependency — it never constructs a domain sink type) and appends it plus an edge
before bootstrap. What consumes a tap is declared per run by a tap plan
(#283): a Named { label, params } subscription resolves against a layered
fold registry (core vocabulary record | count | sum | mean | min | max | first | last; growth is a new Rust entry, C25, injectable by higher layers
without a core edit), and Live(closure) is the single deliberately non-data
variant. Both declared-tap entry points — the single-run path (run_signal_r)
and the bare measurement path (run_measurement) — bind through one shared
wiring pair, so they cannot drift: record persists the full series at constant
memory through the trace store's streamed write path (env.trace_store()), folds
keep an O(1) accumulator and land one summary row at finalize, so the tap columns
surface through the same tooling the campaign path feeds; a sweep/reduce run
leaves taps unbound.
Forbids. A tap carrying a channel endpoint or effect in the serialized artefact
— recording policy is run-mode authority, not fragment-embedded (a fragment must
not drag its measurement decisions into every harness that embeds it; the tier
ontology, C20/C21). The engine
constructing a domain sink type (the aura-core-only wall — the sink is
caller-built). Order statistics (median, etc.) inside the graph — they stay
sink/analysis-side (C18); multi-instrument study
inputs stay harness/World tier.
Non-error. An unbound tap is inert, not a fault — unlike an unbound root
input role, which check_root_roles_bound rejects (C26):
observation is optional, a fed input is mandatory. A declared-but-unbound tap
compiles and runs, its producer evaluating and its output discarded (a no-out-edge
producer is a valid runnable sink — the Kahn sort emits it,
check_ports_connected gates only inputs).
Why. Observability must be expressible in a hand-authored blueprint — the measurement-shaped study computes in the graph and surfaces via taps, no throwaway Rust harness — while recording stays a run-mode decision, not a fragment-embedded effect. Taps are designed DCE-compatible (a bound tap is a natural DCE root, an unbound tap a dead declaration) but this contract does not depend on DCE: an unbound tap's sink is simply never constructed (build-time elision, which the engine already tolerates). (#282, 2026-07-18.)
Current state
The tap types are realized in aura-engine: the authoring-level Tap
(crates/aura-engine/src/blueprint.rs, the output-side twin of Role), the
compiled FlatTap { name, node, field } and the FlatGraph.taps field
(crates/aura-engine/src/harness.rs), and FlatGraph::bind_tap, which appends a
caller-built Box<dyn Node> sink plus an edge and raises a typed UndeclaredTap
on a tap the graph does not declare (duplicate detection across binds is the
caller's — the method keeps no cross-call state). Lowering resolves and hoists taps
via resolve_tap_wire and the flat_taps accumulator (blueprint.rs). The
subscription seam is aura-runner::tap_plan (#283): TapPlan/TapSubscription,
the layered FoldRegistry (each entry carries a doc line — the help surface
and the roster-enumerating refusal — plus a scalar-typed param schema; all core
entries are param-less today, the seam ships in every entry's build signature),
and the shared bind_tap_plan/BoundTaps pair called by both declared-tap entry
points, run_signal_r (aura-runner::member) and run_measurement
(aura-runner::measure); both CLI verbs pass a record-all plan. The record
consumer (aura-runner::tap_recorder::TapRecorder) holds the trace store's
streaming writer in-graph — initialize opens (deferred acquisition), eval
appends (Timestamp, Cell) (zero per-cycle heap, #77), finalize reports
exactly one terminal outcome; fold consumers (aura-std::TapFold) land one
summary row; live closures run inline (aura-std::TapLive). The sweep/reduce
path never calls bind_tap.
The chain-pruning benefit — a sweep paying zero for the study wires behind an unbound tap — is deferred to the future DCE cycle (C23); the mechanism ships now, verified sound.
See also
- C26 — the input-side twin (
input_roles);check_root_roles_bound, the mandatory-input counterpart - C23 — compilation/lowering and the deferred DCE cycle the tap design anticipates
- C18 — the trace store and registry the tap series feed; order statistics live sink-side
- C20, C21 — the tier ontology behind run-mode recording authority
- C8 — the node/sink contract (a no-out-edge producer as a valid runnable sink)