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https://github.com/ruvnet/RuView
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38676aa2bd
Iter 34. Closes the gap where BfldPipelineHandle had no path for an
operator-supplied SoulMatchOracle to reach the worker thread. The
emit_with_oracle surface added in iter 14 was unreachable through the
handle API — Soul Signature deployments (ADR-118 §1.4) had to either
drop down to BfldEmitter directly or accept Recalibrate gate-drops on
known-enrolled matches.
Added (in src/pipeline.rs):
- BfldPipeline::process_with_oracle<O: SoulMatchOracle>(
inputs, embedding, oracle,
) -> Option<BfldEvent>
Wraps emitter.emit_with_oracle then applies the same privacy_mode
post-processing as process(). Privacy_mode and oracle are independent
— class-3 demote still happens AFTER any oracle Recalibrate exemption.
Added (in src/pipeline_handle.rs):
- BfldPipelineHandle::spawn_with_oracle<P, O>(pipeline, publisher, oracle) -> Self
where O: SoulMatchOracle + Send + Sync + 'static
The worker thread owns the oracle and consults it on every recv().
Worker loop now calls pipeline.process_with_oracle(...) instead of
pipeline.process(...).
tests/handle_soul_oracle.rs (3 named tests, all green):
spawn_with_oracle_null_is_equivalent_to_spawn
Parity: 3 identical low-risk inputs through spawn() and
spawn_with_oracle(NullOracle) produce the same publish count
and the same motion-topic count.
spawn_with_always_match_oracle_lets_events_publish_under_high_risk
*** Headline test ***
3 high-risk inputs spaced > DEBOUNCE_NS apart. With AlwaysMatch
oracle, all 3 produce motion topics — the gate never reaches
Recalibrate because the oracle reports an enrolled-person match.
spawn_with_null_oracle_drops_events_under_sustained_recalibrate_score
Negative control for the above: same 3 inputs through NullOracle,
only 1 motion topic survives (the first input lands at Accept;
the second and third hit Recalibrate after debounce and are
dropped per ADR-121 §2.4).
ADR-124 status (iter step 0 sibling check):
- docs/adr/ADR-124-rvagent-mcp-ruvector-npm-integration.md unchanged
at 431 lines. SENSE-BRIDGE scope remains orthogonal to BFLD core;
no overlap with this iter.
ACs progressed:
- ADR-118 §1.4 Soul Signature companion contract end-to-end through
the public handle API. Operators wiring Soul Signature into a
RuView deployment now use:
BfldPipelineHandle::spawn_with_oracle(pipeline, publisher, my_oracle)
…and the rest of the per-frame flow stays identical to spawn().
- ADR-121 §2.6 Recalibrate exemption proven over the worker-thread
boundary, not just at the unit level (iter 12 covered the gate-only
case).
Test config:
- cargo test --no-default-features → 72 passed
- cargo test → 227 passed (224 + 3)
Out of scope (next iter target):
- GitHub Actions workflow with mosquitto Docker (lifts iters 24+29
live-broker e2e from skip-mode). Remaining unmet ACs require
either external resources (KIT BFId, Pi5/Nexmon) or CI infra.
Co-Authored-By: claude-flow <ruv@ruv.net>
160 lines
5.4 KiB
Rust
160 lines
5.4 KiB
Rust
//! Acceptance tests for `BfldPipelineHandle::spawn_with_oracle`. ADR-121 §2.6
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//! end-to-end: the operator-supplied Soul Signature oracle reaches the worker
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//! thread and downgrades Recalibrate-grade scores to PredictOnly.
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#![cfg(feature = "std")]
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use std::sync::{Arc, Mutex};
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use std::thread;
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use std::time::Duration;
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use wifi_densepose_bfld::coherence_gate::DEBOUNCE_NS;
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use wifi_densepose_bfld::{
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BfldConfig, BfldPipeline, BfldPipelineHandle, CapturePublisher, IdentityEmbedding,
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MatchOutcome, NullOracle, PipelineInput, SensingInputs, SoulMatchOracle, EMBEDDING_DIM,
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};
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const NS_PER_SEC: u64 = 1_000_000_000;
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fn input_at(ts_secs: f64, risk: [f32; 4]) -> PipelineInput {
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let [sep, stab, consist, risk_conf] = risk;
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let ts_ns = (ts_secs * NS_PER_SEC as f64) as u64;
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PipelineInput {
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inputs: SensingInputs {
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timestamp_ns: ts_ns,
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presence: true,
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motion: 0.5,
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person_count: 1,
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sensing_confidence: 0.9,
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sep,
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stab,
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consist,
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risk_conf,
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rf_signature_hash: None,
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},
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embedding: Some(IdentityEmbedding::from_raw([0.05; EMBEDDING_DIM])),
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}
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}
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struct AlwaysMatch;
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impl SoulMatchOracle for AlwaysMatch {
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fn matches_enrolled(&self) -> MatchOutcome {
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MatchOutcome::Match {
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person_id: 0xDEAD_BEEF,
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}
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}
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}
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fn topic_count(log: &CapturePublisher, contains: &str) -> usize {
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log.published
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.iter()
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.filter(|m| m.topic.contains(contains))
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.count()
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}
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#[test]
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fn spawn_with_oracle_null_is_equivalent_to_spawn() {
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let pub_a = Arc::new(Mutex::new(CapturePublisher::default()));
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let pub_b = Arc::new(Mutex::new(CapturePublisher::default()));
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let handle_a = BfldPipelineHandle::spawn(
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BfldPipeline::new(BfldConfig::new("seed-null-1")),
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pub_a.clone(),
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);
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let handle_b = BfldPipelineHandle::spawn_with_oracle(
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BfldPipeline::new(BfldConfig::new("seed-null-1")),
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pub_b.clone(),
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NullOracle,
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);
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for i in 0..3 {
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handle_a
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.send(input_at(i as f64 * 0.1, [0.2, 0.2, 0.2, 0.2]))
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.unwrap();
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handle_b
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.send(input_at(i as f64 * 0.1, [0.2, 0.2, 0.2, 0.2]))
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.unwrap();
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}
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thread::sleep(Duration::from_millis(120));
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handle_a.shutdown();
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handle_b.shutdown();
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let log_a = pub_a.lock().unwrap();
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let log_b = pub_b.lock().unwrap();
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assert_eq!(log_a.published.len(), log_b.published.len());
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assert_eq!(
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topic_count(&log_a, "/motion/state"),
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topic_count(&log_b, "/motion/state"),
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);
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}
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#[test]
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fn spawn_with_always_match_oracle_lets_events_publish_under_high_risk() {
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// Without the oracle (or with NullOracle), a sustained Recalibrate-grade
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// score (all factors ≈ 1.0) promotes to Recalibrate after DEBOUNCE_NS
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// and `process_with_oracle` returns None for those frames. With
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// AlwaysMatch, the gate downgrades to PredictOnly, so events keep
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// publishing.
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let pub_arc = Arc::new(Mutex::new(CapturePublisher::default()));
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let handle = BfldPipelineHandle::spawn_with_oracle(
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BfldPipeline::new(BfldConfig::new("seed-match")),
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pub_arc.clone(),
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AlwaysMatch,
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);
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// Send 3 high-risk inputs separated by > DEBOUNCE_NS so the gate would
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// have promoted to Recalibrate were it not for the oracle exemption.
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handle.send(input_at(0.0, [1.0, 1.0, 1.0, 1.0])).unwrap();
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let ts_after_debounce = (DEBOUNCE_NS as f64) / (NS_PER_SEC as f64);
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handle
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.send(input_at(ts_after_debounce, [1.0, 1.0, 1.0, 1.0]))
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.unwrap();
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handle
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.send(input_at(ts_after_debounce * 2.0, [1.0, 1.0, 1.0, 1.0]))
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.unwrap();
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thread::sleep(Duration::from_millis(120));
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handle.shutdown();
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let log = pub_arc.lock().unwrap();
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let motions = topic_count(&log, "/motion/state");
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// All 3 inputs should yield motion topics — none dropped to Recalibrate.
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assert_eq!(
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motions, 3,
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"AlwaysMatch oracle must prevent Recalibrate-drop, got {motions} motion topics",
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);
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}
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#[test]
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fn spawn_with_null_oracle_drops_events_under_sustained_recalibrate_score() {
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// Negative control for the test above: same high-risk input sequence
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// through NullOracle should DROP the second + later events (the gate
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// promotes to Recalibrate after the first one passes through at Accept
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// baseline and the debounce elapses).
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let pub_arc = Arc::new(Mutex::new(CapturePublisher::default()));
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let handle = BfldPipelineHandle::spawn_with_oracle(
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BfldPipeline::new(BfldConfig::new("seed-null-drop")),
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pub_arc.clone(),
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NullOracle,
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);
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handle.send(input_at(0.0, [1.0, 1.0, 1.0, 1.0])).unwrap();
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let ts_after_debounce = (DEBOUNCE_NS as f64) / (NS_PER_SEC as f64);
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handle
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.send(input_at(ts_after_debounce, [1.0, 1.0, 1.0, 1.0]))
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.unwrap();
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handle
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.send(input_at(ts_after_debounce * 2.0, [1.0, 1.0, 1.0, 1.0]))
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.unwrap();
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thread::sleep(Duration::from_millis(120));
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handle.shutdown();
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let log = pub_arc.lock().unwrap();
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let motions = topic_count(&log, "/motion/state");
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// The first input passes (gate still in Accept). The second + third
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// hit Recalibrate after debounce → dropped. Expect exactly 1.
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assert_eq!(
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motions, 1,
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"NullOracle must let the gate Recalibrate-drop after debounce, got {motions} motion topics",
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);
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}
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