cai
2026-08-25 caeed9acdc676aa10f788e81edf45892b8cdcc8e
src/main.rs
@@ -66,10 +66,11 @@
const CONTROLLED_FIXTURE_GENERATION: u64 = 1;
const CONTROLLED_FIXTURE_PROBE_RECHECK_DELAY: Duration = Duration::from_millis(25);
const CONTROLLED_FIXTURE_PROBE_TTL: Duration = Duration::from_millis(250);
const CONTROLLED_FIXTURE_POST_EXPIRY_WINDOW: Duration = Duration::from_millis(2_000);
const CONTROLLED_FIXTURE_ACK_RESULTS: [&str; 4] =
    ["observed", "rejected", "timeout", "publish_failed"];
const CONTROLLED_FIXTURE_REJECT_REASONS: [&str; 10] = [
const CONTROLLED_FIXTURE_REJECT_REASONS: [&str; 16] = [
    "missing_attributes",
    "wrong_source",
    "missing_sequence",
@@ -79,6 +80,12 @@
    "duplicate_or_old_sequence",
    "no_current_participant",
    "ack_publish_failed",
    "missing_generation",
    "invalid_generation",
    "wrong_generation",
    "invalid_language",
    "incomplete_metadata",
    "invalid_source_or_sequence",
    "unknown",
];
@@ -118,7 +125,22 @@
    call_trace_id_hash: String,
    generation: u64,
    sequence: String,
    received_at: Instant,
    expires_at: Instant,
}
#[derive(Debug, PartialEq, Eq)]
struct ControlledFixtureVisibilityEvidence {
    first_visible_bucket: &'static str,
    visibility_source: &'static str,
    visibility_result: &'static str,
    binding_matched: bool,
}
#[derive(Debug, PartialEq, Eq)]
struct ControlledFixtureAckPublishOutcome {
    observed: bool,
    published: bool,
}
fn sha256_hex(value: &str) -> String {
@@ -145,6 +167,8 @@
}
fn record_controlled_fixture_probe_event(
    runtime_call_id: &str,
    runtime_trace_id: &str,
    stage: &'static str,
    call_id_hash: &str,
    trace_id_hash: &str,
@@ -158,47 +182,62 @@
    debug_assert!(
        reject_reason.is_none_or(|value| CONTROLLED_FIXTURE_REJECT_REASONS.contains(&value))
    );
    if let Some(ack_result) = ack_result {
        info!(
            event = "controlled_fixture_attribute_probe",
    println!(
        "{}",
        controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            stage,
            call_id_hash,
            trace_id_hash,
            generation,
            sequence,
            observed,
            ack_result,
            reject_reason = reject_reason.unwrap_or("unknown"),
            call_id_hash,
            trace_id_hash,
            generation,
            sequence_hash = %sha256_hex(sequence),
            "runtime helper controlled fixture probe state"
        );
    } else if let Some(reject_reason) = reject_reason {
        info!(
            event = "controlled_fixture_attribute_probe",
            stage,
            observed,
            reject_reason,
            call_id_hash,
            trace_id_hash,
            generation,
            sequence_hash = %sha256_hex(sequence),
            "runtime helper controlled fixture probe state"
        );
    } else {
        info!(
            event = "controlled_fixture_attribute_probe",
            stage,
            observed,
            call_id_hash,
            trace_id_hash,
            generation,
            sequence_hash = %sha256_hex(sequence),
            "runtime helper controlled fixture probe state"
        );
    }
        )
    );
}
fn controlled_fixture_probe_event(
    runtime_call_id: &str,
    runtime_trace_id: &str,
    stage: &'static str,
    call_id_hash: &str,
    trace_id_hash: &str,
    generation: u64,
    sequence: &str,
    observed: bool,
    ack_result: Option<&'static str>,
    reject_reason: Option<&'static str>,
) -> serde_json::Value {
    json!({
        "type": "cv_activity",
        "callId": runtime_call_id,
        "traceId": runtime_trace_id,
        "turnId": null,
        "eventName": "controlled_fixture_attribute_probe",
        "eventWallTimeMs": current_time_millis(),
        "result": "ok",
        "reasonCode": null,
        "retryable": null,
        "extension": {
            "stage": stage,
            "observed": observed,
            "ack_result": ack_result,
            "reject_reason": reject_reason,
            "call_id_hash": call_id_hash,
            "trace_id_hash": trace_id_hash,
            "generation": generation,
            "sequence_hash": sha256_hex(sequence),
        },
    })
}
fn record_controlled_fixture_attribute_decision(
    decision: Result<(), &'static str>,
    runtime_call_id: &str,
    runtime_trace_id: &str,
    call_id_hash: &str,
    trace_id_hash: &str,
    generation: u64,
@@ -206,6 +245,8 @@
) -> (&'static str, Option<&'static str>, bool) {
    let classification = controlled_fixture_ack_classification(decision);
    record_controlled_fixture_probe_event(
        runtime_call_id,
        runtime_trace_id,
        "attributes_classified",
        call_id_hash,
        trace_id_hash,
@@ -220,6 +261,8 @@
async fn complete_controlled_fixture_ack_publish<F, E>(
    publish: F,
    runtime_call_id: &str,
    runtime_trace_id: &str,
    observed: bool,
    ack_result: &'static str,
    reject_reason: Option<&'static str>,
@@ -227,13 +270,15 @@
    trace_id_hash: &str,
    generation: u64,
    sequence: &str,
    acknowledged_probe_sequences: &mut HashSet<String>,
) -> bool
    acknowledged_probe_sequences: &mut HashSet<(u64, String)>,
) -> ControlledFixtureAckPublishOutcome
where
    F: Future<Output = Result<(), E>>,
{
    if publish.await.is_ok() {
        record_controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            "ack_publish_completed",
            call_id_hash,
            trace_id_hash,
@@ -243,10 +288,15 @@
            Some(ack_result),
            reject_reason,
        );
        acknowledged_probe_sequences.insert(sequence.to_string());
        observed
        acknowledged_probe_sequences.insert((generation, sequence.to_string()));
        ControlledFixtureAckPublishOutcome {
            observed,
            published: true,
        }
    } else {
        record_controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            "ack_publish_completed",
            call_id_hash,
            trace_id_hash,
@@ -256,7 +306,10 @@
            Some("publish_failed"),
            Some("ack_publish_failed"),
        );
        false
        ControlledFixtureAckPublishOutcome {
            observed: false,
            published: false,
        }
    }
}
@@ -291,21 +344,200 @@
    let probe: ControlledFixtureAttributeProbe = serde_json::from_slice(payload).ok()?;
    if probe.message_type != CONTROLLED_FIXTURE_PROBE_TOPIC
        || probe.protocol_version != CONTROLLED_FIXTURE_PROTOCOL_VERSION
        || probe.generation != CONTROLLED_FIXTURE_GENERATION
        || !valid_input_generation(probe.generation)
        || probe.call_id_hash != sha256_hex(call_id)
        || probe.call_trace_id_hash != sha256_hex(trace_id)
        || probe.client_fixture_sequence.trim().is_empty()
    {
        return None;
    }
    let received_at = Instant::now();
    Some(PendingControlledFixtureProbe {
        sender: sender.clone(),
        call_id_hash: probe.call_id_hash,
        call_trace_id_hash: probe.call_trace_id_hash,
        generation: probe.generation,
        sequence: probe.client_fixture_sequence,
        expires_at: Instant::now() + CONTROLLED_FIXTURE_PROBE_TTL,
        received_at,
        expires_at: received_at + CONTROLLED_FIXTURE_PROBE_TTL,
    })
}
fn controlled_fixture_probe_binding_decision(
    probe_sender: &str,
    current_audio_participant: Option<&str>,
    expected_participant: Option<&str>,
) -> Result<(), &'static str> {
    if !is_bound_user_participant(probe_sender, expected_participant) {
        return Err("wrong_participant");
    }
    let Some(current_audio_participant) = current_audio_participant else {
        return Err("no_current_participant");
    };
    if current_audio_participant != probe_sender
        || !is_bound_user_participant(current_audio_participant, expected_participant)
    {
        return Err("wrong_participant");
    }
    Ok(())
}
fn controlled_fixture_visibility_bucket(elapsed: Duration) -> &'static str {
    if elapsed <= Duration::from_millis(250) {
        "lte_250ms"
    } else if elapsed <= Duration::from_millis(500) {
        "250_500ms"
    } else if elapsed <= Duration::from_millis(1_000) {
        "500_1000ms"
    } else {
        "1000_2000ms"
    }
}
async fn observe_controlled_fixture_post_expiry_views<F, G>(
    received_at: Instant,
    observation_deadline: Instant,
    held_participant: &str,
    expected_participant: Option<&str>,
    requested_sequence: &str,
    lifecycle_active: Arc<AtomicBool>,
    mut read_held_attributes: F,
    mut read_current_participant: G,
) -> Option<ControlledFixtureVisibilityEvidence>
where
    F: FnMut() -> std::collections::HashMap<String, String>,
    G: FnMut() -> Option<(String, std::collections::HashMap<String, String>)>,
{
    loop {
        if !lifecycle_active.load(Ordering::Acquire) {
            return None;
        }
        let now = Instant::now();
        let held_decision = classify_controlled_fixture_attributes(
            held_participant,
            expected_participant,
            &read_held_attributes(),
            requested_sequence,
        );
        match held_decision {
            Ok(()) => {
                return Some(ControlledFixtureVisibilityEvidence {
                    first_visible_bucket: controlled_fixture_visibility_bucket(
                        now.saturating_duration_since(received_at),
                    ),
                    visibility_source: "participant_attributes_poll",
                    visibility_result: "held_visible",
                    binding_matched: true,
                });
            }
            Err("missing_attributes") => {}
            Err(_) => return None,
        }
        let Some((current_identity, current_attributes)) = read_current_participant() else {
            return None;
        };
        match classify_controlled_fixture_attributes(
            &current_identity,
            expected_participant,
            &current_attributes,
            requested_sequence,
        ) {
            Ok(()) => {
                return Some(ControlledFixtureVisibilityEvidence {
                    first_visible_bucket: controlled_fixture_visibility_bucket(
                        now.saturating_duration_since(received_at),
                    ),
                    visibility_source: "current_room_lookup",
                    visibility_result: "held_stale_current_visible",
                    binding_matched: true,
                });
            }
            Err("missing_attributes") => {}
            Err(_) => return None,
        }
        if now >= observation_deadline {
            return Some(ControlledFixtureVisibilityEvidence {
                first_visible_bucket: "never_visible_within_observation_window",
                visibility_source: "held_and_current_room_lookup",
                visibility_result: "unavailable_both",
                binding_matched: true,
            });
        }
        sleep(CONTROLLED_FIXTURE_PROBE_RECHECK_DELAY).await;
    }
}
fn controlled_fixture_visibility_event(
    runtime_call_id: &str,
    runtime_trace_id: &str,
    probe: &PendingControlledFixtureProbe,
    evidence: &ControlledFixtureVisibilityEvidence,
) -> serde_json::Value {
    json!({
        "type": "cv_activity",
        "callId": runtime_call_id,
        "traceId": runtime_trace_id,
        "turnId": null,
        "eventName": "controlled_fixture_attribute_probe",
        "eventWallTimeMs": current_time_millis(),
        "result": "ok",
        "reasonCode": null,
        "retryable": null,
        "extension": {
            "stage": "post_expiry_visibility",
            "first_visible_bucket": evidence.first_visible_bucket,
            "visibility_source": evidence.visibility_source,
            "visibility_result": evidence.visibility_result,
            "binding_matched": evidence.binding_matched,
            "call_id_hash": probe.call_id_hash,
            "trace_id_hash": probe.call_trace_id_hash,
            "generation": probe.generation,
            "sequence_hash": sha256_hex(&probe.sequence),
            "evidence_count": 1,
        },
    })
}
fn spawn_controlled_fixture_post_expiry_observation(
    probe: PendingControlledFixtureProbe,
    participant: RemoteParticipant,
    room: Arc<Room>,
    expected_participant: Option<String>,
    lifecycle_active: Arc<AtomicBool>,
    runtime_call_id: String,
    runtime_trace_id: String,
) {
    tokio::spawn(async move {
        let participant_identity = participant.identity().to_string();
        let evidence = observe_controlled_fixture_post_expiry_views(
            probe.received_at,
            probe.received_at + CONTROLLED_FIXTURE_POST_EXPIRY_WINDOW,
            &participant_identity,
            expected_participant.as_deref(),
            &probe.sequence,
            lifecycle_active.clone(),
            || participant.attributes(),
            || {
                room.remote_participants()
                    .get(&probe.sender)
                    .map(|current| (current.identity().to_string(), current.attributes()))
            },
        )
        .await;
        if lifecycle_active.load(Ordering::Acquire) {
            if let Some(evidence) = evidence {
                println!(
                    "{}",
                    controlled_fixture_visibility_event(
                        &runtime_call_id,
                        &runtime_trace_id,
                        &probe,
                        &evidence,
                    )
                );
            }
        }
    });
}
fn classify_controlled_fixture_attributes(
@@ -339,6 +571,58 @@
        return Err("wrong_sequence");
    }
    Ok(())
}
fn controlled_fixture_probe_attribute_decision(
    actual_participant: &str,
    expected_participant: Option<&str>,
    attributes: &std::collections::HashMap<String, String>,
    probe: &PendingControlledFixtureProbe,
) -> Result<(), &'static str> {
    if !is_bound_user_participant(actual_participant, expected_participant) {
        return Err("wrong_participant");
    }
    let metadata = match AudioIngressMetadata::from_participant(attributes) {
        Ok(Some(metadata)) => metadata,
        Ok(None) => return Err("missing_attributes"),
        Err(reason) => return Err(reason),
    };
    if metadata.client_fixture_sequence != probe.sequence {
        return Err("wrong_sequence");
    }
    if metadata.input_generation != probe.generation {
        return Err("wrong_generation");
    }
    Ok(())
}
async fn observe_controlled_fixture_probe_attributes<F>(
    expires_at: Instant,
    actual_participant: &str,
    expected_participant: Option<&str>,
    probe: &PendingControlledFixtureProbe,
    mut read_attributes: F,
) -> Result<(), &'static str>
where
    F: FnMut() -> std::collections::HashMap<String, String>,
{
    loop {
        if Instant::now() > expires_at {
            return Err("timeout");
        }
        match controlled_fixture_probe_attribute_decision(
            actual_participant,
            expected_participant,
            &read_attributes(),
            probe,
        ) {
            Ok(()) => return Ok(()),
            Err("missing_attributes") | Err("missing_generation") => {
                sleep(CONTROLLED_FIXTURE_PROBE_RECHECK_DELAY).await;
            }
            Err(reason) => return Err(reason),
        }
    }
}
async fn observe_controlled_fixture_attributes<F>(
@@ -1075,6 +1359,10 @@
    expected.is_none_or(|value| identity == value)
}
fn valid_input_generation(generation: u64) -> bool {
    generation > 0
}
async fn observe_user_audio_events(
    mut events: UnboundedReceiver<RoomEvent>,
    call_id: String,
@@ -1105,6 +1393,7 @@
    let mut current_user_participant: Option<RemoteParticipant> = None;
    let mut pending_probe: Option<PendingControlledFixtureProbe> = None;
    let mut acknowledged_probe_sequences = HashSet::new();
    let controlled_fixture_lifecycle_active = Arc::new(AtomicBool::new(true));
    while let Some(event) = events.recv().await {
        match event {
@@ -1143,6 +1432,9 @@
                    Some(&participant_for_probe),
                    &sink,
                    user_participant_identity.as_deref(),
                    &call_id,
                    &trace_id,
                    controlled_fixture_lifecycle_active.clone(),
                )
                .await;
                let observer_started = start_observer_after_controlled_fixture_probe(
@@ -1173,6 +1465,8 @@
                        None => (None, Some("no_current_participant"), false),
                    };
                    record_controlled_fixture_probe_event(
                        &call_id,
                        &trace_id,
                        if observer_started {
                            "audio_observer_allowed"
                        } else {
@@ -1197,6 +1491,18 @@
                }
                current_user_participant = Some(participant_for_probe);
            }
            RoomEvent::TrackUnsubscribed {
                track: RemoteTrack::Audio(_),
                publication: _,
                participant,
            } => {
                if current_user_participant
                    .as_ref()
                    .is_some_and(|current| current.identity() == participant.identity())
                {
                    current_user_participant = None;
                }
            }
            RoomEvent::DataReceived {
                payload,
                topic: Some(topic),
@@ -1206,8 +1512,12 @@
                if let Ok(probe) =
                    serde_json::from_slice::<ControlledFixtureAttributeProbe>(&payload)
                {
                    if acknowledged_probe_sequences.contains(&probe.client_fixture_sequence) {
                    if acknowledged_probe_sequences
                        .contains(&(probe.generation, probe.client_fixture_sequence.clone()))
                    {
                        record_controlled_fixture_probe_event(
                            &call_id,
                            &trace_id,
                            "data_received",
                            &probe.call_id_hash,
                            &probe.call_trace_id_hash,
@@ -1229,6 +1539,8 @@
                );
                if let Some(probe) = pending_probe.as_ref() {
                    record_controlled_fixture_probe_event(
                        &call_id,
                        &trace_id,
                        "data_received",
                        &probe.call_id_hash,
                        &probe.call_trace_id_hash,
@@ -1245,6 +1557,9 @@
                    current_user_participant.as_ref(),
                    &sink,
                    user_participant_identity.as_deref(),
                    &call_id,
                    &trace_id,
                    controlled_fixture_lifecycle_active.clone(),
                )
                .await;
            }
@@ -1287,20 +1602,26 @@
            _ => {}
        }
    }
    controlled_fixture_lifecycle_active.store(false, Ordering::Release);
}
async fn process_controlled_fixture_probe(
    pending_probe: &mut Option<PendingControlledFixtureProbe>,
    acknowledged_probe_sequences: &mut HashSet<String>,
    acknowledged_probe_sequences: &mut HashSet<(u64, String)>,
    participant: Option<&RemoteParticipant>,
    sink: &BotAudioOutputSink,
    expected_participant: Option<&str>,
    runtime_call_id: &str,
    runtime_trace_id: &str,
    lifecycle_active: Arc<AtomicBool>,
) -> Option<bool> {
    let Some(probe) = pending_probe.take() else {
        return None;
    };
    if acknowledged_probe_sequences.contains(&probe.sequence) {
    if acknowledged_probe_sequences.contains(&(probe.generation, probe.sequence.clone())) {
        record_controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            "attributes_classified",
            &probe.call_id_hash,
            &probe.call_trace_id_hash,
@@ -1314,6 +1635,8 @@
    }
    if Instant::now() > probe.expires_at {
        record_controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            "attributes_classified",
            &probe.call_id_hash,
            &probe.call_trace_id_hash,
@@ -1327,6 +1650,8 @@
    }
    let Some(participant) = participant else {
        record_controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            "attributes_classified",
            &probe.call_id_hash,
            &probe.call_trace_id_hash,
@@ -1341,6 +1666,8 @@
    };
    if participant.identity() != probe.sender {
        record_controlled_fixture_probe_event(
            runtime_call_id,
            runtime_trace_id,
            "attributes_classified",
            &probe.call_id_hash,
            &probe.call_trace_id_hash,
@@ -1352,16 +1679,30 @@
        );
        return Some(false);
    }
    let decision = observe_controlled_fixture_attributes(
    let decision = observe_controlled_fixture_probe_attributes(
        probe.expires_at,
        &participant.identity().to_string(),
        participant.identity().as_str(),
        expected_participant,
        &probe.sequence,
        &probe,
        || participant.attributes(),
    )
    .await;
    if let Err(reason) = decision {
        record_controlled_fixture_attribute_decision(
            Err(reason),
            runtime_call_id,
            runtime_trace_id,
            &probe.call_id_hash,
            &probe.call_trace_id_hash,
            probe.generation,
            &probe.sequence,
        );
        return Some(false);
    }
    let (ack_result, reject_reason, observed) = record_controlled_fixture_attribute_decision(
        decision,
        Ok(()),
        runtime_call_id,
        runtime_trace_id,
        &probe.call_id_hash,
        &probe.call_trace_id_hash,
        probe.generation,
@@ -1374,6 +1715,8 @@
    };
    let local_participant = sink.room.local_participant();
    record_controlled_fixture_probe_event(
        runtime_call_id,
        runtime_trace_id,
        "ack_publish_started",
        &probe.call_id_hash,
        &probe.call_trace_id_hash,
@@ -1387,22 +1730,34 @@
        payload,
        topic: Some(CONTROLLED_FIXTURE_ACK_TOPIC.to_string()),
        reliable: true,
        destination_identities: vec![probe.sender],
        destination_identities: vec![probe.sender.clone()],
    });
    Some(
        complete_controlled_fixture_ack_publish(
            publish,
            observed,
            ack_result,
            reject_reason,
            &probe.call_id_hash,
            &probe.call_trace_id_hash,
            probe.generation,
            &probe.sequence,
            acknowledged_probe_sequences,
        )
        .await,
    let outcome = complete_controlled_fixture_ack_publish(
        publish,
        runtime_call_id,
        runtime_trace_id,
        observed,
        ack_result,
        reject_reason,
        &probe.call_id_hash,
        &probe.call_trace_id_hash,
        probe.generation,
        &probe.sequence,
        acknowledged_probe_sequences,
    )
    .await;
    if outcome.published && ack_result == "timeout" && reject_reason == Some("expired") {
        spawn_controlled_fixture_post_expiry_observation(
            probe,
            participant.clone(),
            sink.room.clone(),
            expected_participant.map(str::to_string),
            lifecycle_active,
            runtime_call_id.to_string(),
            runtime_trace_id.to_string(),
        );
    }
    Some(outcome.observed)
}
async fn handle_finished_turn(
@@ -3554,6 +3909,7 @@
        };
        let mut realtime_asr_upload: Option<RealtimeAsrUpload> = None;
        let mut last_fixture_sequence: Option<String> = None;
        let mut last_fixture_generation: Option<u64> = None;
        while let Some(drained) = frame_rx.recv().await {
            let frame = drained.frame;
@@ -3604,6 +3960,7 @@
                        || participant.attributes(),
                        &mut realtime_asr_upload,
                        &mut last_fixture_sequence,
                        &mut last_fixture_generation,
                        turn_bridge_config.asr_realtime_enabled,
                    );
@@ -3740,6 +4097,7 @@
    read_attributes: F,
    upload_slot: &mut Option<RealtimeAsrUpload>,
    last_fixture_sequence: &mut Option<String>,
    last_fixture_generation: &mut Option<u64>,
    realtime_enabled: bool,
) -> (bool, bool, Option<FinishedSpeechTurn>)
where
@@ -3766,6 +4124,7 @@
            read_attributes,
            upload_slot,
            last_fixture_sequence,
            last_fixture_generation,
            realtime_enabled,
        );
    }
@@ -3788,6 +4147,7 @@
    read_attributes: F,
    upload_slot: &mut Option<RealtimeAsrUpload>,
    last_fixture_sequence: &mut Option<String>,
    last_fixture_generation: &mut Option<u64>,
    realtime_enabled: bool,
) -> (bool, bool, Option<FinishedSpeechTurn>)
where
@@ -3814,6 +4174,7 @@
        read_attributes,
        upload_slot,
        last_fixture_sequence,
        last_fixture_generation,
        realtime_enabled,
    )
}
@@ -3827,6 +4188,7 @@
    read_attributes: impl FnOnce() -> std::collections::HashMap<String, String>,
    upload_slot: &mut Option<RealtimeAsrUpload>,
    last_fixture_sequence: &mut Option<String>,
    last_fixture_generation: &mut Option<u64>,
    realtime_enabled: bool,
) {
    let turn_id = format!("turn-{:04}", vad.turn_index);
@@ -3844,9 +4206,11 @@
        }
    };
    if let Some(metadata) = metadata.as_ref() {
        if !fixture_sequence_is_new(
        if !fixture_binding_is_new(
            last_fixture_sequence.as_deref(),
            *last_fixture_generation,
            &metadata.client_fixture_sequence,
            metadata.input_generation,
        ) {
            warn!(call_id = %call_id, trace_id = %trace_id, turn_id = %turn_id,
                audioIngressOriginStatus = "sequence_replayed_or_regressed",
@@ -3866,6 +4230,7 @@
        Ok(upload) => {
            if let Some(metadata) = metadata {
                *last_fixture_sequence = Some(metadata.client_fixture_sequence);
                *last_fixture_generation = Some(metadata.input_generation);
            }
            info!(call_id = %call_id, trace_id = %trace_id, turn_id = %turn_id,
                origin_status, "runtime helper asr_realtime_session_started");
@@ -3893,6 +4258,23 @@
    match (previous_number, current_number) {
        (Some(previous), Some(current)) => current > previous,
        _ => previous != current,
    }
}
fn fixture_binding_is_new(
    previous_sequence: Option<&str>,
    previous_generation: Option<u64>,
    current_sequence: &str,
    current_generation: u64,
) -> bool {
    if !valid_input_generation(current_generation) {
        return false;
    }
    match previous_generation {
        Some(previous) if current_generation < previous => false,
        Some(previous) if current_generation > previous => true,
        Some(_) => fixture_sequence_is_new(previous_sequence, current_sequence),
        None => true,
    }
}
@@ -4654,7 +5036,7 @@
        io::{Read, Write},
        net::TcpListener,
        sync::{
            Arc, Mutex,
            Arc,
            atomic::{AtomicUsize, Ordering},
            mpsc,
        },
@@ -4664,59 +5046,42 @@
    #[derive(Debug)]
    enum PreAudioOrderEvent {
        DataReceived {
            sender: String,
            sequence: String,
        },
        TrackSubscribed {
            participant: String,
            attributes: HashMap<String, String>,
        },
    }
    #[derive(Clone, Default)]
    struct CapturedLogs(Arc<Mutex<Vec<u8>>>);
    struct CapturedLogWriter(Arc<Mutex<Vec<u8>>>);
    impl Write for CapturedLogWriter {
        fn write(&mut self, bytes: &[u8]) -> std::io::Result<usize> {
            self.0.lock().unwrap().extend_from_slice(bytes);
            Ok(bytes.len())
        }
        fn flush(&mut self) -> std::io::Result<()> {
            Ok(())
        }
    }
    impl<'a> tracing_subscriber::fmt::MakeWriter<'a> for CapturedLogs {
        type Writer = CapturedLogWriter;
        fn make_writer(&'a self) -> Self::Writer {
            CapturedLogWriter(self.0.clone())
        }
        DataReceived { sender: String, sequence: String },
        TrackSubscribed { participant: String },
    }
    fn drive_pre_audio_order_test_seam(events: &[PreAudioOrderEvent]) -> Vec<&'static str> {
        let mut pending_sequence = None;
        let call_id = "production-order-call";
        let trace_id = "production-order-trace";
        let mut pending_probe = None;
        let mut effects = Vec::new();
        for event in events {
            match event {
                PreAudioOrderEvent::DataReceived { sender, sequence } if sender == "user-1" => {
                    pending_sequence = Some(sequence.as_str());
                PreAudioOrderEvent::DataReceived { sender, sequence } => {
                    let payload = serde_json::to_vec(&json!({
                        "type": CONTROLLED_FIXTURE_PROBE_TOPIC,
                        "protocolVersion": CONTROLLED_FIXTURE_PROTOCOL_VERSION,
                        "callIdHash": sha256_hex(call_id),
                        "callTraceIdHash": sha256_hex(trace_id),
                        "generation": CONTROLLED_FIXTURE_GENERATION,
                        "clientFixtureSequence": sequence,
                    }))
                    .expect("production probe payload");
                    pending_probe = controlled_fixture_probe(
                        &payload,
                        call_id,
                        trace_id,
                        &ParticipantIdentity(sender.clone()),
                        Some("user-1"),
                    );
                }
                PreAudioOrderEvent::TrackSubscribed {
                    participant,
                    attributes,
                } => {
                    let pending = pending_sequence.is_some();
                    let probe_result = pending_sequence.map(|sequence| {
                        classify_controlled_fixture_attributes(
                            participant,
                PreAudioOrderEvent::TrackSubscribed { participant } => {
                    let pending = pending_probe.is_some();
                    let probe_result = pending_probe.as_ref().map(|probe| {
                        controlled_fixture_probe_binding_decision(
                            probe.sender.as_str(),
                            Some(participant),
                            Some("user-1"),
                            attributes,
                            sequence,
                        )
                        .is_ok()
                    });
@@ -4734,9 +5099,8 @@
                    if observer_started {
                        effects.push("observer_started");
                    }
                    pending_sequence = None;
                    pending_probe = None;
                }
                PreAudioOrderEvent::DataReceived { .. } => {}
            }
        }
        effects
@@ -4770,6 +5134,8 @@
                "clientFixtureSequence".to_string(),
                "fixture-01".to_string(),
            ),
            ("inputGeneration".to_string(), "1".to_string()),
            ("language".to_string(), "ja-JP".to_string()),
        ]);
        let mut starts = Vec::new();
        for (session_index, sequence) in [(1, "fixture-01"), (2, "fixture-02")] {
@@ -4795,6 +5161,7 @@
            let is_in_speech = vad.in_speech;
            assert!(!was_in_speech && is_in_speech);
            attributes.insert("clientFixtureSequence".to_string(), sequence.to_string());
            attributes.insert("language".to_string(), "ja-JP".to_string());
            let metadata = AudioIngressMetadata::from_participant(&attributes)
                .expect("valid participant attributes")
                .expect("controlled fixture metadata");
@@ -4809,6 +5176,7 @@
            let session_json: serde_json::Value =
                serde_json::from_slice(&session_line).expect("session start json");
            assert_eq!(sequence, session_json["clientFixtureSequence"]);
            assert_eq!("ja-JP", session_json["language"]);
            starts.push(metadata.client_fixture_sequence);
            vad.reset_current_turn();
        }
@@ -4901,9 +5269,12 @@
                "clientFixtureSequence".to_string(),
                "fixture-01".to_string(),
            ),
            ("inputGeneration".to_string(), "1".to_string()),
            ("language".to_string(), "ja-JP".to_string()),
        ]);
        let mut upload = None;
        let mut last_fixture_sequence = None;
        let mut last_fixture_generation = None;
        let config = RealtimeAsrConfig {
            enabled: true,
            url: Some(format!("http://{address}/runtime/asr/realtime")),
@@ -4927,6 +5298,7 @@
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(!was && is && turn.is_none());
@@ -4937,6 +5309,8 @@
            "clientFixtureSequence".to_string(),
            "fixture-02".to_string(),
        );
        attrs.insert("inputGeneration".to_string(), "2".to_string());
        attrs.insert("language".to_string(), "zh-CN".to_string());
        let (was, is, turn) = observe_bound_participant_frame(
            "participant-user",
            Some("participant-user"),
@@ -4949,10 +5323,11 @@
            2_000,
            &frame,
            Client::new(),
            config,
            config.clone(),
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(!was && is && turn.is_none());
@@ -4967,6 +5342,16 @@
            .expect("second session request");
        assert!(first_request.contains("\"clientFixtureSequence\":\"fixture-01\""));
        assert!(second_request.contains("\"clientFixtureSequence\":\"fixture-02\""));
        assert!(first_request.contains("\"callId\":\"call-001\""));
        assert!(first_request.contains("\"traceId\":\"trace-001\""));
        assert!(second_request.contains("\"callId\":\"call-001\""));
        assert!(second_request.contains("\"traceId\":\"trace-001\""));
        assert!(first_request.contains("\"inputSourceCategory\":\"controlled_fixture\""));
        assert!(second_request.contains("\"inputSourceCategory\":\"controlled_fixture\""));
        assert!(first_request.contains("\"inputGeneration\":1"));
        assert!(second_request.contains("\"inputGeneration\":2"));
        assert!(first_request.contains("\"language\":\"ja-JP\""));
        assert!(second_request.contains("\"language\":\"zh-CN\""));
        assert!(
            first_request.contains("\"audioIngressOriginStatus\":\"controlled_fixture_bound\"")
        );
@@ -4983,6 +5368,32 @@
        attrs.insert(
            "clientFixtureSequence".to_string(),
            "fixture-03".to_string(),
        );
        attrs.insert("inputGeneration".to_string(), "1".to_string());
        let (_, is_old_generation, old_generation_turn) = observe_bound_participant_frame(
            "participant-user",
            Some("participant-user"),
            &mut vad,
            "call-001",
            "trace-001",
            "participant-user",
            "track-001",
            3,
            3_000,
            &frame,
            Client::new(),
            config.clone(),
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(is_old_generation && old_generation_turn.is_none() && upload.is_none());
        vad.reset_current_turn();
        attrs.insert(
            "clientFixtureSequence".to_string(),
            "fixture-04".to_string(),
        );
        let (_, is_wrong, wrong_turn) = observe_bound_participant_frame(
            "participant-other",
@@ -5006,6 +5417,7 @@
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(!is_wrong && wrong_turn.is_none() && upload.is_none());
@@ -5036,6 +5448,7 @@
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(upload.is_none());
@@ -5062,6 +5475,7 @@
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(upload.is_none());
@@ -5089,6 +5503,7 @@
            || attrs.clone(),
            &mut upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(missing_sequence_turn.is_none() && upload.is_none());
@@ -5122,6 +5537,7 @@
            || attrs,
            &mut invalid_upload,
            &mut last_fixture_sequence,
            &mut last_fixture_generation,
            true,
        );
        assert!(invalid_turn.is_none());
@@ -5353,56 +5769,70 @@
    }
    #[test]
    fn controlled_fixture_probe_failure_log_is_fixed_redacted_and_has_no_audio_effect() {
        let logs = CapturedLogs::default();
        let subscriber = tracing_subscriber::fmt()
            .without_time()
            .with_ansi(false)
            .with_writer(logs.clone())
            .finish();
    fn controlled_fixture_probe_runtime_projection_binds_request_hashes_and_audio_gate() {
        let call_id = "private-call-value";
        let trace_id = "private-trace-value";
        let sequence = "private-sequence-value";
        let call_id_hash = sha256_hex(call_id);
        let trace_id_hash = sha256_hex(trace_id);
        let mut observer_starts = 0;
        tracing::subscriber::with_default(subscriber, || {
            let decision = Err("wrong_source");
            let (ack_result, reject_reason, observed) =
                record_controlled_fixture_attribute_decision(
                    decision,
                    &call_id_hash,
                    &trace_id_hash,
                    CONTROLLED_FIXTURE_GENERATION,
                    sequence,
                );
            record_controlled_fixture_probe_event(
                "audio_observer_blocked",
        let (ack_result, reject_reason, observed) =
            controlled_fixture_ack_classification(Err("wrong_source"));
        let stages = [
            ("data_received", None, None),
            ("attributes_classified", Some(ack_result), reject_reason),
            ("ack_publish_started", Some(ack_result), reject_reason),
            ("ack_publish_completed", Some(ack_result), reject_reason),
            ("audio_observer_blocked", Some(ack_result), reject_reason),
        ];
        for (stage, result, reason) in stages {
            let event = controlled_fixture_probe_event(
                call_id,
                trace_id,
                stage,
                &call_id_hash,
                &trace_id_hash,
                CONTROLLED_FIXTURE_GENERATION,
                sequence,
                observed,
                Some(ack_result),
                reject_reason,
                result,
                reason,
            );
            assert!(!start_observer_after_controlled_fixture_probe(
                true,
                Some(observed),
                || observer_starts += 1,
            ));
        });
        let output = String::from_utf8(logs.0.lock().unwrap().clone()).unwrap();
        assert!(output.contains("ack_result=\"rejected\""));
        assert!(output.contains("reject_reason=\"wrong_source\""));
        assert!(output.contains("observed=false"));
        assert!(output.contains(&sha256_hex(call_id)));
        assert!(output.contains(&sha256_hex(trace_id)));
        assert!(output.contains(&sha256_hex(sequence)));
        assert!(!output.contains(call_id));
        assert!(!output.contains(trace_id));
        assert!(!output.contains(sequence));
            assert_eq!(event["type"], "cv_activity");
            assert_eq!(event["eventName"], "controlled_fixture_attribute_probe");
            assert_eq!(event["extension"]["call_id_hash"], call_id_hash);
            assert_eq!(event["extension"]["trace_id_hash"], trace_id_hash);
            assert_eq!(event["extension"]["stage"], stage);
            let output = event.to_string();
            assert!(!output.contains(sequence));
        }
        assert!(!start_observer_after_controlled_fixture_probe(
            true,
            Some(observed),
            || observer_starts += 1,
        ));
        assert_eq!(observer_starts, 0);
        let (ack_result, reject_reason, observed) = controlled_fixture_ack_classification(Ok(()));
        let allowed = controlled_fixture_probe_event(
            call_id,
            trace_id,
            "audio_observer_allowed",
            &call_id_hash,
            &trace_id_hash,
            CONTROLLED_FIXTURE_GENERATION,
            sequence,
            observed,
            Some(ack_result),
            reject_reason,
        );
        assert_eq!(allowed["extension"]["trace_id_hash"], trace_id_hash);
        assert!(start_observer_after_controlled_fixture_probe(
            true,
            Some(observed),
            || observer_starts += 1,
        ));
        assert_eq!(observer_starts, 1);
    }
    #[test]
@@ -5443,6 +5873,7 @@
            call_trace_id_hash: request_trace_hash.to_string(),
            generation: CONTROLLED_FIXTURE_GENERATION,
            sequence: "fixture-01".to_string(),
            received_at: Instant::now(),
            expires_at: Instant::now() + CONTROLLED_FIXTURE_PROBE_TTL,
        };
@@ -5483,6 +5914,8 @@
        let mut acknowledged = HashSet::new();
        let probe_result = complete_controlled_fixture_ack_publish(
            async { Err::<(), ()>(()) },
            "runtime-call-publish-failure",
            "runtime-trace-publish-failure",
            true,
            "observed",
            None,
@@ -5499,7 +5932,7 @@
        let mut speaking_starts = 0;
        assert!(!start_observer_after_controlled_fixture_probe(
            true,
            Some(probe_result),
            Some(probe_result.observed),
            || {
                observer_starts += 1;
                session_starts += 1;
@@ -5507,7 +5940,13 @@
                speaking_starts += 1;
            },
        ));
        assert!(!probe_result);
        assert_eq!(
            probe_result,
            ControlledFixtureAckPublishOutcome {
                observed: false,
                published: false,
            }
        );
        assert!(acknowledged.is_empty());
        assert_eq!(observer_starts, 0);
        assert_eq!(session_starts, 0);
@@ -5516,6 +5955,8 @@
        let observed_result = complete_controlled_fixture_ack_publish(
            async { Ok::<(), ()>(()) },
            "runtime-call-publish-success",
            "runtime-trace-publish-success",
            true,
            "observed",
            None,
@@ -5529,11 +5970,17 @@
        let mut successful_observer_starts = 0;
        assert!(start_observer_after_controlled_fixture_probe(
            true,
            Some(observed_result),
            Some(observed_result.observed),
            || successful_observer_starts += 1,
        ));
        assert!(observed_result);
        assert!(acknowledged.contains("fixture-02"));
        assert_eq!(
            observed_result,
            ControlledFixtureAckPublishOutcome {
                observed: true,
                published: true,
            }
        );
        assert!(acknowledged.contains(&(CONTROLLED_FIXTURE_GENERATION, "fixture-02".to_string())));
        assert_eq!(successful_observer_starts, 1);
    }
@@ -5570,6 +6017,49 @@
    }
    #[tokio::test]
    async fn production_probe_waits_for_generation_attribute_before_binding() {
        let received_at = Instant::now();
        let probe = PendingControlledFixtureProbe {
            sender: ParticipantIdentity("user-1".to_string()),
            call_id_hash: "call-hash".to_string(),
            call_trace_id_hash: "trace-hash".to_string(),
            generation: 2,
            sequence: "fixture-02".to_string(),
            received_at,
            expires_at: received_at + CONTROLLED_FIXTURE_PROBE_TTL,
        };
        let expected = HashMap::from([
            (
                "inputSourceCategory".to_string(),
                "controlled_fixture".to_string(),
            ),
            (
                "clientFixtureSequence".to_string(),
                "fixture-02".to_string(),
            ),
            ("inputGeneration".to_string(), "2".to_string()),
        ]);
        let mut reads = 0;
        let result = observe_controlled_fixture_probe_attributes(
            probe.expires_at,
            "user-1",
            Some("user-1"),
            &probe,
            || {
                reads += 1;
                if reads == 1 {
                    HashMap::new()
                } else {
                    expected.clone()
                }
            },
        )
        .await;
        assert_eq!(result, Ok(()));
        assert_eq!(reads, 2);
    }
    #[tokio::test]
    async fn production_attribute_observation_rejects_wrong_sequence_without_audio_effect() {
        let attributes = HashMap::from([
            (
@@ -5597,6 +6087,267 @@
            || observer_starts += 1,
        ));
        assert_eq!(observer_starts, 0);
    }
    #[tokio::test]
    async fn production_post_expiry_observation_records_bounded_visibility_without_second_ack() {
        let started_at = Instant::now();
        let active = Arc::new(AtomicBool::new(true));
        let expected = HashMap::from([
            (
                "inputSourceCategory".to_string(),
                "controlled_fixture".to_string(),
            ),
            (
                "clientFixtureSequence".to_string(),
                "fixture-01".to_string(),
            ),
        ]);
        let mut acknowledged = HashSet::new();
        let expired_ack = complete_controlled_fixture_ack_publish(
            async { Ok::<(), ()>(()) },
            "runtime-call-post-expiry",
            "runtime-trace-post-expiry",
            false,
            "timeout",
            Some("expired"),
            "call-post-expiry",
            "trace-post-expiry",
            CONTROLLED_FIXTURE_GENERATION,
            "fixture-01",
            &mut acknowledged,
        )
        .await;
        assert_eq!(
            expired_ack,
            ControlledFixtureAckPublishOutcome {
                observed: false,
                published: true,
            }
        );
        let evidence = observe_controlled_fixture_post_expiry_views(
            started_at,
            started_at + CONTROLLED_FIXTURE_POST_EXPIRY_WINDOW,
            "user-1",
            Some("user-1"),
            "fixture-01",
            active,
            || {
                if started_at.elapsed() >= Duration::from_millis(300) {
                    expected.clone()
                } else {
                    HashMap::new()
                }
            },
            || Some(("user-1".to_string(), HashMap::new())),
        )
        .await;
        assert_eq!(acknowledged.len(), 1);
        assert_eq!(
            evidence,
            Some(ControlledFixtureVisibilityEvidence {
                first_visible_bucket: "250_500ms",
                visibility_source: "participant_attributes_poll",
                visibility_result: "held_visible",
                binding_matched: true,
            })
        );
        let never_started_at = Instant::now();
        assert_eq!(
            observe_controlled_fixture_post_expiry_views(
                never_started_at,
                never_started_at + Duration::from_millis(40),
                "user-1",
                Some("user-1"),
                "fixture-01",
                Arc::new(AtomicBool::new(true)),
                HashMap::new,
                || Some(("user-1".to_string(), HashMap::new())),
            )
            .await,
            Some(ControlledFixtureVisibilityEvidence {
                first_visible_bucket: "never_visible_within_observation_window",
                visibility_source: "held_and_current_room_lookup",
                visibility_result: "unavailable_both",
                binding_matched: true,
            })
        );
        assert_eq!(
            observe_controlled_fixture_post_expiry_views(
                Instant::now(),
                Instant::now() + Duration::from_millis(50),
                "cross-call-user",
                Some("user-1"),
                "fixture-01",
                Arc::new(AtomicBool::new(true)),
                || expected.clone(),
                || Some(("user-1".to_string(), expected.clone())),
            )
            .await,
            None
        );
        let inactive = Arc::new(AtomicBool::new(false));
        assert_eq!(
            observe_controlled_fixture_post_expiry_views(
                Instant::now(),
                Instant::now() + Duration::from_millis(50),
                "user-1",
                Some("user-1"),
                "fixture-01",
                inactive,
                HashMap::new,
                || Some(("user-1".to_string(), HashMap::new())),
            )
            .await,
            None
        );
        assert_eq!(acknowledged.len(), 1);
        let probe = PendingControlledFixtureProbe {
            sender: ParticipantIdentity("user-1".to_string()),
            call_id_hash: "call-post-expiry".to_string(),
            call_trace_id_hash: "trace-post-expiry".to_string(),
            generation: CONTROLLED_FIXTURE_GENERATION,
            sequence: "fixture-01".to_string(),
            received_at: started_at,
            expires_at: started_at + CONTROLLED_FIXTURE_PROBE_TTL,
        };
        let event = controlled_fixture_visibility_event(
            "runtime-call-post-expiry",
            "runtime-trace-post-expiry",
            &probe,
            &evidence.unwrap(),
        );
        let extension = event["extension"].as_object().unwrap();
        let mut keys = extension.keys().map(String::as_str).collect::<Vec<_>>();
        keys.sort_unstable();
        assert_eq!(
            keys,
            vec![
                "binding_matched",
                "call_id_hash",
                "evidence_count",
                "first_visible_bucket",
                "generation",
                "sequence_hash",
                "stage",
                "trace_id_hash",
                "visibility_result",
                "visibility_source",
            ]
        );
        let encoded = event.to_string();
        for forbidden in [
            "\"participant\":",
            "\"room\":",
            "\"track\":",
            "\"payload\":",
            "\"audio\":",
        ] {
            assert!(!encoded.contains(forbidden));
        }
    }
    #[tokio::test]
    async fn production_post_expiry_observation_distinguishes_held_stale_from_current_room_view() {
        let started_at = Instant::now();
        let current_attributes = HashMap::from([
            (
                "inputSourceCategory".to_string(),
                "controlled_fixture".to_string(),
            ),
            (
                "clientFixtureSequence".to_string(),
                "fixture-01".to_string(),
            ),
        ]);
        let mut acknowledged = HashSet::new();
        let expired_ack = complete_controlled_fixture_ack_publish(
            async { Ok::<(), ()>(()) },
            "runtime-call-current-view",
            "runtime-trace-current-view",
            false,
            "timeout",
            Some("expired"),
            "call-current-view",
            "trace-current-view",
            CONTROLLED_FIXTURE_GENERATION,
            "fixture-01",
            &mut acknowledged,
        )
        .await;
        let evidence = observe_controlled_fixture_post_expiry_views(
            started_at,
            started_at + Duration::from_millis(100),
            "user-1",
            Some("user-1"),
            "fixture-01",
            Arc::new(AtomicBool::new(true)),
            HashMap::new,
            || Some(("user-1".to_string(), current_attributes.clone())),
        )
        .await;
        assert_eq!(
            expired_ack,
            ControlledFixtureAckPublishOutcome {
                observed: false,
                published: true,
            }
        );
        assert_eq!(acknowledged.len(), 1);
        assert_eq!(
            evidence,
            Some(ControlledFixtureVisibilityEvidence {
                first_visible_bucket: "lte_250ms",
                visibility_source: "current_room_lookup",
                visibility_result: "held_stale_current_visible",
                binding_matched: true,
            })
        );
        let mut observer_starts = 0;
        assert!(!start_observer_after_controlled_fixture_probe(
            true,
            Some(expired_ack.observed),
            || observer_starts += 1,
        ));
        assert_eq!(observer_starts, 0);
        for current_view in [
            None,
            Some(("cross-call-user".to_string(), current_attributes.clone())),
            Some((
                "user-1".to_string(),
                HashMap::from([
                    (
                        "inputSourceCategory".to_string(),
                        "controlled_fixture".to_string(),
                    ),
                    (
                        "clientFixtureSequence".to_string(),
                        "fixture-old".to_string(),
                    ),
                ]),
            )),
        ] {
            assert_eq!(
                observe_controlled_fixture_post_expiry_views(
                    Instant::now(),
                    Instant::now() + Duration::from_millis(20),
                    "user-1",
                    Some("user-1"),
                    "fixture-01",
                    Arc::new(AtomicBool::new(true)),
                    HashMap::new,
                    || current_view.clone(),
                )
                .await,
                None
            );
        }
    }
    #[test]
@@ -5658,24 +6409,13 @@
    #[test]
    fn production_event_order_probe_then_track_publishes_ack_before_observer() {
        let attributes = HashMap::from([
            (
                "inputSourceCategory".to_string(),
                "controlled_fixture".to_string(),
            ),
            (
                "clientFixtureSequence".to_string(),
                "fixture-01".to_string(),
            ),
        ]);
        let effects = drive_pre_audio_order_test_seam(&[
            PreAudioOrderEvent::DataReceived {
                sender: "user-1".to_string(),
                sequence: "fixture-01".to_string(),
                sequence: "1".to_string(),
            },
            PreAudioOrderEvent::TrackSubscribed {
                participant: "user-1".to_string(),
                attributes,
            },
        ]);
        assert_eq!(effects, ["ack_observed", "observer_started"]);
@@ -5683,19 +6423,13 @@
    #[test]
    fn production_event_order_negative_probe_has_no_observer_or_session_effect() {
        let mut invalid = HashMap::new();
        invalid.insert(
            "inputSourceCategory".to_string(),
            "ordinary_mic".to_string(),
        );
        let effects = drive_pre_audio_order_test_seam(&[
            PreAudioOrderEvent::DataReceived {
                sender: "user-1".to_string(),
                sequence: "fixture-01".to_string(),
                sequence: "1".to_string(),
            },
            PreAudioOrderEvent::TrackSubscribed {
                participant: "user-1".to_string(),
                attributes: invalid,
                participant: "cross-call-user".to_string(),
            },
        ]);
        assert!(effects.is_empty());