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Yesuah 2026-06-04 05:15:46 +08:00 committed by GitHub
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@ -187,6 +187,46 @@ struct Args {
#[arg(long)] #[arg(long)]
calibrate: bool, calibrate: bool,
// ─── ADR-115 §3.8 — MQTT publisher (HA-DISCO) ──────────────────────────
#[arg(long, env = "RUVIEW_MQTT")]
mqtt: bool,
#[arg(long, env = "RUVIEW_MQTT_HOST", default_value = "localhost")]
mqtt_host: String,
#[arg(long, env = "RUVIEW_MQTT_PORT")]
mqtt_port: Option<u16>,
#[arg(long, env = "RUVIEW_MQTT_USERNAME")]
mqtt_username: Option<String>,
#[arg(long, default_value = "MQTT_PASSWORD")]
mqtt_password_env: String,
#[arg(long, env = "RUVIEW_MQTT_CLIENT_ID")]
mqtt_client_id: Option<String>,
#[arg(long, env = "RUVIEW_MQTT_PREFIX", default_value = "homeassistant")]
mqtt_prefix: String,
#[arg(long, env = "RUVIEW_MQTT_TLS")]
mqtt_tls: bool,
#[arg(long, value_name = "PATH")]
mqtt_ca_file: Option<PathBuf>,
#[arg(long, value_name = "PATH")]
mqtt_client_cert: Option<PathBuf>,
#[arg(long, value_name = "PATH")]
mqtt_client_key: Option<PathBuf>,
#[arg(long, default_value = "600")]
mqtt_refresh_secs: u64,
#[arg(long, default_value = "0.2")]
mqtt_rate_vitals: f64,
#[arg(long, default_value = "1.0")]
mqtt_rate_motion: f64,
#[arg(long, default_value = "1.0")]
mqtt_rate_count: f64,
#[arg(long, default_value = "0.1")]
mqtt_rate_rssi: f64,
#[arg(long)]
mqtt_publish_pose: bool,
#[arg(long, default_value = "1.0")]
mqtt_rate_pose: f64,
#[arg(long, env = "RUVIEW_PRIVACY_MODE")]
privacy_mode: bool,
// --------------------------------------------------------------- // ---------------------------------------------------------------
// ADR-102: Edge Module Registry — surface the canonical Cognitum // ADR-102: Edge Module Registry — surface the canonical Cognitum
// cog catalog via `GET /api/v1/edge/registry`. // cog catalog via `GET /api/v1/edge/registry`.
@ -901,6 +941,8 @@ struct AppStateInner {
// (not replacing) the window-aggregated `tx` / `/ws/sensing` pipeline. // (not replacing) the window-aggregated `tx` / `/ws/sensing` pipeline.
intro: wifi_densepose_sensing_server::introspection::IntrospectionState, intro: wifi_densepose_sensing_server::introspection::IntrospectionState,
intro_tx: broadcast::Sender<String>, intro_tx: broadcast::Sender<String>,
#[cfg(feature = "mqtt")]
vitals_tx: Option<broadcast::Sender<wifi_densepose_sensing_server::mqtt::state::VitalsSnapshot>>,
total_detections: u64, total_detections: u64,
start_time: std::time::Instant, start_time: std::time::Instant,
/// Vital sign detector (processes CSI frames to estimate HR/RR). /// Vital sign detector (processes CSI frames to estimate HR/RR).
@ -5661,6 +5703,31 @@ async fn simulated_data_task(state: SharedState, tick_ms: u64) {
if let Ok(json) = serde_json::to_string(&update) { if let Ok(json) = serde_json::to_string(&update) {
let _ = s.tx.send(json); let _ = s.tx.send(json);
} }
#[cfg(feature = "mqtt")]
if let Some(ref vtx) = s.vitals_tx {
if vtx.receiver_count() > 0 {
use wifi_densepose_sensing_server::mqtt::state::VitalsSnapshot;
let vs = &s.latest_vitals;
let snap = VitalsSnapshot {
node_id: "ruview".to_string(),
timestamp_ms: std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap_or_default()
.as_millis() as i64,
presence: update.classification.presence,
fall_detected: false,
motion: s.smoothed_motion,
motion_energy: update.features.motion_band_power,
presence_score: s.smoothed_person_score,
breathing_rate_bpm: vs.breathing_rate_bpm,
heartrate_bpm: vs.heart_rate_bpm,
n_persons: s.person_count() as u32,
rssi_dbm: update.nodes.first().map(|n| n.rssi_dbm),
vital_confidence: (vs.breathing_confidence + vs.heartbeat_confidence) / 2.0,
};
let _ = vtx.send(snap);
}
}
s.latest_update = Some(update); s.latest_update = Some(update);
} }
} }
@ -5692,6 +5759,34 @@ async fn broadcast_tick_task(state: SharedState, tick_ms: u64) {
let _ = s.tx.send(json); let _ = s.tx.send(json);
} }
} }
// ADR-115: feed the MQTT publisher (compiled in only when
// --features mqtt is active; the field and this block are
// stripped entirely in the default feature set).
#[cfg(feature = "mqtt")]
if let Some(ref vtx) = s.vitals_tx {
if vtx.receiver_count() > 0 {
use wifi_densepose_sensing_server::mqtt::state::VitalsSnapshot;
let vs = &s.latest_vitals;
let snap = VitalsSnapshot {
node_id: "ruview".to_string(),
timestamp_ms: std::time::SystemTime::now()
.duration_since(std::time::UNIX_EPOCH)
.unwrap_or_default()
.as_millis() as i64,
presence: update.classification.presence,
fall_detected: false,
motion: s.smoothed_motion,
motion_energy: update.features.motion_band_power,
presence_score: s.smoothed_person_score,
breathing_rate_bpm: vs.breathing_rate_bpm,
heartrate_bpm: vs.heart_rate_bpm,
n_persons: s.person_count() as u32,
rssi_dbm: update.nodes.first().map(|n| n.rssi_dbm),
vital_confidence: (vs.breathing_confidence + vs.heartbeat_confidence) / 2.0,
};
let _ = vtx.send(snap);
}
}
} }
} }
} }
@ -6630,6 +6725,8 @@ async fn main() {
tx, tx,
intro: wifi_densepose_sensing_server::introspection::IntrospectionState::new(), intro: wifi_densepose_sensing_server::introspection::IntrospectionState::new(),
intro_tx, intro_tx,
#[cfg(feature = "mqtt")]
vitals_tx: None,
total_detections: 0, total_detections: 0,
start_time: std::time::Instant::now(), start_time: std::time::Instant::now(),
vital_detector: VitalSignDetector::new(vital_sample_rate), vital_detector: VitalSignDetector::new(vital_sample_rate),
@ -6727,6 +6824,80 @@ async fn main() {
} }
} }
// ADR-115: spawn the MQTT publisher when --mqtt / RUVIEW_MQTT=true is set.
// The publisher task owns connection lifecycle, HA discovery, and per-entity
// state publication. Errors during connect are retried internally by rumqttc.
#[cfg(feature = "mqtt")]
if args.mqtt {
use wifi_densepose_sensing_server::mqtt::{
config::{MqttConfig, PublishRates, TlsConfig},
publisher::{spawn as mqtt_spawn, OwnedDiscoveryBuilder},
state::VitalsSnapshot,
};
let password = std::env::var(&args.mqtt_password_env).ok();
let port = args.mqtt_port.unwrap_or(if args.mqtt_tls { 8883 } else { 1883 });
let tls = if !args.mqtt_tls {
TlsConfig::Off
} else {
match (args.mqtt_ca_file.as_ref(), args.mqtt_client_cert.as_ref(), args.mqtt_client_key.as_ref()) {
(Some(ca), Some(cert), Some(key)) => TlsConfig::MutualTls {
ca_file: ca.clone(), client_cert: cert.clone(), client_key: key.clone(),
},
(Some(ca), None, None) => TlsConfig::PinnedCa { ca_file: ca.clone() },
_ => TlsConfig::SystemTrust,
}
};
let client_id = args.mqtt_client_id.clone()
.unwrap_or_else(|| format!("wifi-densepose-{}", std::process::id()));
let mqtt_cfg = MqttConfig {
host: args.mqtt_host.clone(),
port,
username: args.mqtt_username.clone(),
password,
client_id: client_id.clone(),
discovery_prefix: args.mqtt_prefix.clone(),
tls,
refresh_secs: args.mqtt_refresh_secs,
rates: PublishRates {
vitals_hz: args.mqtt_rate_vitals,
motion_hz: args.mqtt_rate_motion,
count_hz: args.mqtt_rate_count,
rssi_hz: args.mqtt_rate_rssi,
pose_hz: args.mqtt_rate_pose,
},
publish_pose: args.mqtt_publish_pose,
privacy_mode: args.privacy_mode,
};
let can_start = match mqtt_cfg.validate() {
Ok(()) => true,
Err(ref e) if !e.is_fatal() => {
warn!("[mqtt] {e}");
true
}
Err(e) => {
error!("[mqtt] invalid config — MQTT disabled: {e}");
false
}
};
if can_start {
let (vtx, vrx) = broadcast::channel::<VitalsSnapshot>(16);
{
let mut s = state.write().await;
s.vitals_tx = Some(vtx);
}
let builder = OwnedDiscoveryBuilder {
discovery_prefix: mqtt_cfg.discovery_prefix.clone(),
node_id: mqtt_cfg.client_id.clone(),
node_friendly_name: None,
sw_version: env!("CARGO_PKG_VERSION").to_string(),
model: "WiFi-DensePose".to_string(),
via_device: None,
};
mqtt_spawn(Arc::new(mqtt_cfg), builder, vrx);
info!("[mqtt] publisher task spawned — connecting to broker");
}
}
// ADR-050: Parse bind address once, use for all listeners // ADR-050: Parse bind address once, use for all listeners
let bind_ip: std::net::IpAddr = args let bind_ip: std::net::IpAddr = args
.bind_addr .bind_addr