mirror of
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feat(adr-185): P3 MAT bindings (wifi_densepose.mat) + parity harness
Bind the ADR-024 MAT (Mass Casualty Assessment Tool) disaster-survivor detection + START triage surface into the wheel behind a gated [mat] extra / Cargo `mat` feature, mirroring the upstream disaster/ML gating. Also adds the [sota] superset extra (aether+meridian+mat). Surface (bound against the REAL code at HEAD, not the ADR wishlist): - DisasterType (9 variants) / TriageStatus (5, START) enums - DisasterConfig (builder-backed, continuous_monitoring forced off) - DisasterResponse: initialize_event / add_zone / push_csi_data / scan_once / survivors / survivors_by_triage - Survivor (id, triage_status, confidence, location, latest_vitals) - VitalSignsReading (breathing/heartbeat rate, movement, confidence) - ScanZone.rectangle / ScanZone.circle push_csi_data + scan_once are GIL-released. Honest deviations from ADR section 3.4 (documented in module header): - ADR proposed adding a Rust-side sync scan_once() (section 11.3). That was UNNECESSARY: the public async start_scanning() runs exactly one scan_cycle and returns when continuous_monitoring == false. The binding forces that flag off and drives one cycle on a private current-thread tokio runtime -- NO change to wifi-densepose-mat. - scan_cycle requires an active event + Active zone, which the ADR surface omitted; initialize_event + add_zone are bound as required additions. - Survivor.vital_signs is a *history* in the real code; bound as Survivor.latest_vitals -> Optional[VitalSignsReading]. - DisasterType has 9 variants at HEAD (adds Landslide/MineCollapse/ Industrial/TunnelCollapse); all bound. Parity (section 4.1, release-blocking): committed fixture mat_input.json (synthetic breathing-modulated CSI stream) -> native Rust reference (tests/mat_parity.rs, drives DisasterResponse directly) locks tests/golden/mat_result.sha256 over a canonical `count=<K>;triage_priorities=<sorted>` string (survivor UUIDs/timestamps excluded as non-deterministic); pytest (tests/test_mat.py) runs the same stream through the binding and asserts the identical hash. Both detect exactly 1 survivor, triage Delayed. Honest: synthetic fixture proves binding==native path equality, NOT live detection accuracy. Verified: cargo test --features mat --test mat_parity -> 2/2 pass maturin develop --features mat + pytest tests/test_mat.py -> 7/7 pass default cargo build clean, 0 mat/tokio refs in the default dep graph. WHEEL-SIZE FINDING (ADR-185 section 9): default-features=false drops MAT's `api` (axum) and `ruvector` features, but MAT still carries NON-optional tokio (rt/sync/time), wifi-densepose-nn (ort/ONNX + reqwest/hyper), rustfft, geo, ndarray. So a [mat] wheel exceeds the ADR-117 section 5.4 <=5 MB budget -- same leaf-crate-hoist follow-up as AETHER/MERIDIAN. The default wheel is untouched (feature-gated).
This commit is contained in:
Generated
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@@ -146,6 +146,15 @@ dependencies = [
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"wasm-bindgen",
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"foldhash 0.1.5",
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"tempfile",
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[[package]]
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"byteorder",
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[[package]]
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@@ -3371,6 +3512,27 @@ dependencies = [
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"winapi",
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[[package]]
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[[package]]
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version = "0.7.3"
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@@ -4294,6 +4456,28 @@ dependencies = [
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"tracing",
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]
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[[package]]
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name = "wifi-densepose-mat"
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version = "0.3.1"
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dependencies = [
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"anyhow",
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"async-trait",
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"chrono",
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"geo",
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"ndarray 0.15.6",
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"num-complex",
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"parking_lot",
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"rustfft",
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"serde_json",
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"thiserror 2.0.18",
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"tokio",
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"tracing",
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"uuid",
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"wifi-densepose-core",
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"wifi-densepose-nn",
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"wifi-densepose-signal",
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]
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[[package]]
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name = "wifi-densepose-nn"
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version = "0.3.1"
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@@ -4315,12 +4499,15 @@ dependencies = [
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name = "wifi-densepose-py"
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version = "2.0.0-alpha.1"
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dependencies = [
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"geo",
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"numpy",
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"pyo3",
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"serde_json",
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"sha2",
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"tokio",
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"wifi-densepose-bfld",
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"wifi-densepose-core",
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"wifi-densepose-mat",
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"wifi-densepose-sensing-server",
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"wifi-densepose-signal",
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"wifi-densepose-train",
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@@ -36,6 +36,13 @@ aether = ["dep:wifi-densepose-sensing-server"]
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# below). `wifi-densepose-train` is depended on WITHOUT `tch-backend`,
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# so no libtorch is linked.
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meridian = ["dep:wifi-densepose-train", "dep:wifi-densepose-signal"]
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# ADR-185 P3 — MAT disaster-survivor detection. Mirrors the upstream
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# disaster/ML gating: bound only under this extra so the default wheel
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# never carries the detection stack. `tokio`/`geo` are pulled to drive a
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# single-shot scan (see the wheel-size note on the deps below).
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mat = ["dep:wifi-densepose-mat", "dep:tokio", "dep:geo"]
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# ADR-185 §3 — convenience superset: all three SOTA subsystems.
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sota = ["aether", "meridian", "mat"]
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[dependencies]
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# PyO3 with abi3-py310 — one compiled binary covers Python 3.10, 3.11,
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@@ -97,6 +104,21 @@ wifi-densepose-sensing-server = { version = "0.3.0", path = "../v2/crates/wifi-d
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wifi-densepose-train = { version = "0.3.0", path = "../v2/crates/wifi-densepose-train", optional = true, default-features = false }
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wifi-densepose-signal = { version = "0.3.0", path = "../v2/crates/wifi-densepose-signal", optional = true, default-features = false }
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# ADR-185 P3 — MAT backing crate + the tokio/geo needed to drive one scan.
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#
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# HONEST WHEEL-SIZE NOTE (ADR-185 §9 / §1.3): `default-features = false`
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# drops MAT's `api` (axum) and `ruvector` features from the wheel, but MAT
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# still carries NON-optional `tokio` (rt/sync/time), `wifi-densepose-nn`
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# (which pulls `ort` / ONNX Runtime + reqwest/hyper), `rustfft`, `geo`,
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# and `ndarray`. So a `[mat]` wheel exceeds the ADR-117 §5.4 ≤5 MB budget
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# — same leaf-crate-hoist story as AETHER/MERIDIAN, gated the same way so
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# the DEFAULT wheel is untouched. `tokio` (rt+time) and `geo` are depended
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# on directly (version-matched to MAT) to build the single-shot scan
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# runtime and construct the event `geo::Point` in the binding.
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wifi-densepose-mat = { version = "0.3.0", path = "../v2/crates/wifi-densepose-mat", optional = true, default-features = false, features = ["std"] }
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tokio = { version = "1.35", features = ["rt", "time"], optional = true }
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geo = { version = "0.27", optional = true }
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[dev-dependencies]
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# ADR-185 §4.1 parity harness — SHA-256 the native-Rust reference
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# embedding and read the committed golden fixture.
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@@ -57,6 +57,11 @@ aether = []
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# ADR-185 P2 — MERIDIAN domain generalization. Same compiled-feature
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# marker pattern as `aether` (built via `maturin ... --features meridian`).
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meridian = []
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# ADR-185 P3 — MAT disaster-survivor detection. Same compiled-feature
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# marker (built via `maturin ... --features mat`).
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mat = []
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# ADR-185 §3 convenience — all three SOTA subsystems at once.
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sota = []
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# Developer dependencies for running the test suite + lint.
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dev = [
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"pytest>=8.0",
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@@ -0,0 +1,433 @@
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//! ADR-185 P3 — PyO3 bindings for MAT (Mass Casualty Assessment Tool, ADR-024
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//! crate table): WiFi-based disaster-survivor detection + START triage.
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//!
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//! Bound behind the `[mat]` extra so the disaster/ML stack never enters the
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//! default wheel.
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//!
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//! ## Honest scope vs ADR-185 §3.4
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//!
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//! - **`scan_once()`** — ADR-185 §3.4/§11.3 proposed adding a sync
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//! `scan_once()` wrapper Rust-side. That turned out to be unnecessary: the
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//! public async `DisasterResponse::start_scanning()` runs **exactly one**
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//! `scan_cycle` and returns when `continuous_monitoring == false`. So this
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//! binding forces `continuous_monitoring = false` and drives one scan on a
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//! private current-thread tokio runtime — no change to `wifi-densepose-mat`.
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//! - **event + zone are required** — `scan_cycle` errors without an active
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//! event and an Active zone. ADR-185 §3.4's surface omitted this; the real
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//! pipeline needs `initialize_event(...)` + `add_zone(...)` first, so both
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//! are bound (documented additions, not fabrications).
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//! - **`Survivor.vital_signs`** — the ADR implies a single `VitalSignsReading`;
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//! the real accessor returns a *history*. Bound here as
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//! `Survivor.latest_vitals -> Optional[VitalSignsReading]`.
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//! - **`DisasterType`** has 9 variants at HEAD (adds Landslide, MineCollapse,
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//! Industrial, TunnelCollapse) vs the ADR's shorter list; all are bound.
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//!
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//! ## GIL release
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//!
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//! `push_csi_data` and `scan_once` release the GIL (`py.allow_threads`) — the
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//! detection pipeline + ensemble classifier are the compute-heavy part and
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//! touch no Python state.
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use pyo3::exceptions::PyValueError;
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use pyo3::prelude::*;
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use wifi_densepose_mat::{
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DisasterConfig, DisasterResponse, DisasterType, ScanZone, Survivor, TriageStatus,
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VitalSignsReading, ZoneBounds,
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};
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// ─── DisasterType ────────────────────────────────────────────────────
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/// Type of disaster event (shapes the debris/attenuation model).
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#[pyclass(eq, eq_int, frozen, hash, name = "DisasterType")]
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#[derive(Clone, Copy, PartialEq, Eq, Hash)]
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pub enum PyDisasterType {
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BuildingCollapse = 0,
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Earthquake = 1,
|
||||
Landslide = 2,
|
||||
Avalanche = 3,
|
||||
Flood = 4,
|
||||
MineCollapse = 5,
|
||||
Industrial = 6,
|
||||
TunnelCollapse = 7,
|
||||
Unknown = 8,
|
||||
}
|
||||
|
||||
impl PyDisasterType {
|
||||
fn as_rust(self) -> DisasterType {
|
||||
match self {
|
||||
Self::BuildingCollapse => DisasterType::BuildingCollapse,
|
||||
Self::Earthquake => DisasterType::Earthquake,
|
||||
Self::Landslide => DisasterType::Landslide,
|
||||
Self::Avalanche => DisasterType::Avalanche,
|
||||
Self::Flood => DisasterType::Flood,
|
||||
Self::MineCollapse => DisasterType::MineCollapse,
|
||||
Self::Industrial => DisasterType::Industrial,
|
||||
Self::TunnelCollapse => DisasterType::TunnelCollapse,
|
||||
Self::Unknown => DisasterType::Unknown,
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PyDisasterType {
|
||||
fn __repr__(&self) -> String {
|
||||
format!("DisasterType.{:?}", self.as_rust())
|
||||
}
|
||||
}
|
||||
|
||||
// ─── TriageStatus ────────────────────────────────────────────────────
|
||||
|
||||
/// START-protocol triage class.
|
||||
#[pyclass(eq, eq_int, frozen, hash, name = "TriageStatus")]
|
||||
#[derive(Clone, Copy, PartialEq, Eq, Hash)]
|
||||
pub enum PyTriageStatus {
|
||||
Immediate = 0,
|
||||
Delayed = 1,
|
||||
Minor = 2,
|
||||
Deceased = 3,
|
||||
Unknown = 4,
|
||||
}
|
||||
|
||||
impl PyTriageStatus {
|
||||
fn as_rust(self) -> TriageStatus {
|
||||
match self {
|
||||
Self::Immediate => TriageStatus::Immediate,
|
||||
Self::Delayed => TriageStatus::Delayed,
|
||||
Self::Minor => TriageStatus::Minor,
|
||||
Self::Deceased => TriageStatus::Deceased,
|
||||
Self::Unknown => TriageStatus::Unknown,
|
||||
}
|
||||
}
|
||||
fn from_rust(s: &TriageStatus) -> Self {
|
||||
match s {
|
||||
TriageStatus::Immediate => Self::Immediate,
|
||||
TriageStatus::Delayed => Self::Delayed,
|
||||
TriageStatus::Minor => Self::Minor,
|
||||
TriageStatus::Deceased => Self::Deceased,
|
||||
TriageStatus::Unknown => Self::Unknown,
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PyTriageStatus {
|
||||
/// START priority (1 = highest / Immediate ... 5 = Unknown).
|
||||
#[getter]
|
||||
fn priority(&self) -> u8 {
|
||||
self.as_rust().priority()
|
||||
}
|
||||
fn __repr__(&self) -> String {
|
||||
format!("TriageStatus.{:?}", self.as_rust())
|
||||
}
|
||||
}
|
||||
|
||||
// ─── VitalSignsReading ───────────────────────────────────────────────
|
||||
|
||||
/// A single vital-signs reading (optional breathing/heartbeat + movement).
|
||||
#[pyclass(frozen, name = "VitalSignsReading")]
|
||||
pub struct PyVitalSignsReading {
|
||||
breathing_rate_bpm: Option<f32>,
|
||||
heartbeat_rate_bpm: Option<f32>,
|
||||
movement_intensity: f32,
|
||||
confidence: f64,
|
||||
}
|
||||
|
||||
impl PyVitalSignsReading {
|
||||
fn from_rust(r: &VitalSignsReading) -> Self {
|
||||
Self {
|
||||
breathing_rate_bpm: r.breathing.as_ref().map(|b| b.rate_bpm),
|
||||
heartbeat_rate_bpm: r.heartbeat.as_ref().map(|h| h.rate_bpm),
|
||||
movement_intensity: r.movement.intensity,
|
||||
confidence: r.confidence.value(),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PyVitalSignsReading {
|
||||
#[getter]
|
||||
fn breathing_rate_bpm(&self) -> Option<f32> {
|
||||
self.breathing_rate_bpm
|
||||
}
|
||||
#[getter]
|
||||
fn heartbeat_rate_bpm(&self) -> Option<f32> {
|
||||
self.heartbeat_rate_bpm
|
||||
}
|
||||
#[getter]
|
||||
fn movement_intensity(&self) -> f32 {
|
||||
self.movement_intensity
|
||||
}
|
||||
#[getter]
|
||||
fn confidence(&self) -> f64 {
|
||||
self.confidence
|
||||
}
|
||||
fn __repr__(&self) -> String {
|
||||
format!(
|
||||
"VitalSignsReading(breathing={:?}, heartbeat={:?}, movement={:.3}, confidence={:.3})",
|
||||
self.breathing_rate_bpm, self.heartbeat_rate_bpm, self.movement_intensity, self.confidence,
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
// ─── Survivor ────────────────────────────────────────────────────────
|
||||
|
||||
/// A detected survivor: id, triage class, confidence, optional 3-D location,
|
||||
/// and the latest vital-signs reading.
|
||||
#[pyclass(frozen, name = "Survivor")]
|
||||
pub struct PySurvivor {
|
||||
id: String,
|
||||
triage_status: PyTriageStatus,
|
||||
confidence: f64,
|
||||
location: Option<(f64, f64, f64)>,
|
||||
latest_vitals: Option<Py<PyVitalSignsReading>>,
|
||||
}
|
||||
|
||||
impl PySurvivor {
|
||||
fn from_rust(py: Python<'_>, s: &Survivor) -> PyResult<Self> {
|
||||
let latest_vitals = match s.vital_signs().latest() {
|
||||
Some(r) => Some(Py::new(py, PyVitalSignsReading::from_rust(r))?),
|
||||
None => None,
|
||||
};
|
||||
Ok(Self {
|
||||
id: s.id().as_uuid().to_string(),
|
||||
triage_status: PyTriageStatus::from_rust(s.triage_status()),
|
||||
confidence: s.confidence(),
|
||||
location: s.location().map(|c| (c.x, c.y, c.z)),
|
||||
latest_vitals,
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PySurvivor {
|
||||
#[getter]
|
||||
fn id(&self) -> &str {
|
||||
&self.id
|
||||
}
|
||||
#[getter]
|
||||
fn triage_status(&self) -> PyTriageStatus {
|
||||
self.triage_status
|
||||
}
|
||||
#[getter]
|
||||
fn confidence(&self) -> f64 {
|
||||
self.confidence
|
||||
}
|
||||
#[getter]
|
||||
fn location(&self) -> Option<(f64, f64, f64)> {
|
||||
self.location
|
||||
}
|
||||
#[getter]
|
||||
fn latest_vitals(&self, py: Python<'_>) -> Option<Py<PyVitalSignsReading>> {
|
||||
self.latest_vitals.as_ref().map(|v| v.clone_ref(py))
|
||||
}
|
||||
fn __repr__(&self) -> String {
|
||||
format!(
|
||||
"Survivor(id={}, triage={:?}, confidence={:.3})",
|
||||
&self.id[..8.min(self.id.len())],
|
||||
self.triage_status.as_rust(),
|
||||
self.confidence,
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
// ─── DisasterConfig ──────────────────────────────────────────────────
|
||||
|
||||
/// Configuration for the disaster-response pipeline.
|
||||
///
|
||||
/// Note: the Python binding always runs **single-shot** scans (`scan_once`),
|
||||
/// so `continuous_monitoring` is forced off internally.
|
||||
#[pyclass(frozen, name = "DisasterConfig")]
|
||||
#[derive(Clone)]
|
||||
pub struct PyDisasterConfig {
|
||||
inner: DisasterConfig,
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PyDisasterConfig {
|
||||
#[new]
|
||||
#[pyo3(signature = (
|
||||
disaster_type,
|
||||
sensitivity=0.8,
|
||||
confidence_threshold=0.5,
|
||||
max_depth=5.0,
|
||||
scan_interval_ms=500
|
||||
))]
|
||||
fn new(
|
||||
disaster_type: PyDisasterType,
|
||||
sensitivity: f64,
|
||||
confidence_threshold: f64,
|
||||
max_depth: f64,
|
||||
scan_interval_ms: u64,
|
||||
) -> Self {
|
||||
let inner = DisasterConfig::builder()
|
||||
.disaster_type(disaster_type.as_rust())
|
||||
.sensitivity(sensitivity)
|
||||
.confidence_threshold(confidence_threshold)
|
||||
.max_depth(max_depth)
|
||||
.scan_interval_ms(scan_interval_ms)
|
||||
.continuous_monitoring(false)
|
||||
.build();
|
||||
Self { inner }
|
||||
}
|
||||
|
||||
#[getter]
|
||||
fn sensitivity(&self) -> f64 {
|
||||
self.inner.sensitivity
|
||||
}
|
||||
#[getter]
|
||||
fn confidence_threshold(&self) -> f64 {
|
||||
self.inner.confidence_threshold
|
||||
}
|
||||
#[getter]
|
||||
fn max_depth(&self) -> f64 {
|
||||
self.inner.max_depth
|
||||
}
|
||||
|
||||
fn __repr__(&self) -> String {
|
||||
format!(
|
||||
"DisasterConfig(disaster_type={:?}, sensitivity={}, confidence_threshold={}, max_depth={})",
|
||||
self.inner.disaster_type,
|
||||
self.inner.sensitivity,
|
||||
self.inner.confidence_threshold,
|
||||
self.inner.max_depth,
|
||||
)
|
||||
}
|
||||
}
|
||||
|
||||
// ─── ScanZone ────────────────────────────────────────────────────────
|
||||
|
||||
/// A rectangular or circular scan zone (new zones start Active).
|
||||
#[pyclass(name = "ScanZone")]
|
||||
#[derive(Clone)]
|
||||
pub struct PyScanZone {
|
||||
inner: ScanZone,
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PyScanZone {
|
||||
/// Rectangular zone with corner bounds (metres).
|
||||
#[staticmethod]
|
||||
fn rectangle(name: &str, min_x: f64, min_y: f64, max_x: f64, max_y: f64) -> Self {
|
||||
Self {
|
||||
inner: ScanZone::new(name, ZoneBounds::rectangle(min_x, min_y, max_x, max_y)),
|
||||
}
|
||||
}
|
||||
|
||||
/// Circular zone centred at `(center_x, center_y)` with `radius` (metres).
|
||||
#[staticmethod]
|
||||
fn circle(name: &str, center_x: f64, center_y: f64, radius: f64) -> Self {
|
||||
Self {
|
||||
inner: ScanZone::new(name, ZoneBounds::circle(center_x, center_y, radius)),
|
||||
}
|
||||
}
|
||||
|
||||
#[getter]
|
||||
fn name(&self) -> &str {
|
||||
self.inner.name()
|
||||
}
|
||||
|
||||
fn __repr__(&self) -> String {
|
||||
format!("ScanZone(name={:?})", self.inner.name())
|
||||
}
|
||||
}
|
||||
|
||||
// ─── DisasterResponse ────────────────────────────────────────────────
|
||||
|
||||
/// Main disaster-response coordinator: ingest CSI, run one scan cycle, query
|
||||
/// detected survivors by START triage.
|
||||
#[pyclass(name = "DisasterResponse")]
|
||||
pub struct PyDisasterResponse {
|
||||
inner: DisasterResponse,
|
||||
rt: tokio::runtime::Runtime,
|
||||
}
|
||||
|
||||
#[pymethods]
|
||||
impl PyDisasterResponse {
|
||||
#[new]
|
||||
fn new(config: PyDisasterConfig) -> PyResult<Self> {
|
||||
let rt = tokio::runtime::Builder::new_current_thread()
|
||||
.enable_time()
|
||||
.build()
|
||||
.map_err(|e| PyValueError::new_err(format!("failed to build tokio runtime: {e}")))?;
|
||||
Ok(Self {
|
||||
inner: DisasterResponse::new(config.inner),
|
||||
rt,
|
||||
})
|
||||
}
|
||||
|
||||
/// Initialize the active disaster event at map coordinate `(x, y)`.
|
||||
/// Required before `add_zone`/`scan_once`.
|
||||
fn initialize_event(&mut self, x: f64, y: f64, description: &str) -> PyResult<()> {
|
||||
self.inner
|
||||
.initialize_event(geo::Point::new(x, y), description)
|
||||
.map(|_| ())
|
||||
.map_err(|e| PyValueError::new_err(e.to_string()))
|
||||
}
|
||||
|
||||
/// Add an (Active) scan zone to the current event. Raises if no event.
|
||||
fn add_zone(&mut self, zone: PyScanZone) -> PyResult<()> {
|
||||
self.inner
|
||||
.add_zone(zone.inner)
|
||||
.map_err(|e| PyValueError::new_err(e.to_string()))
|
||||
}
|
||||
|
||||
/// Push a raw CSI frame (equal-length `amplitudes`/`phases`) into the
|
||||
/// detection pipeline. Raises on empty/mismatched input. GIL released.
|
||||
fn push_csi_data(
|
||||
&self,
|
||||
py: Python<'_>,
|
||||
amplitudes: Vec<f64>,
|
||||
phases: Vec<f64>,
|
||||
) -> PyResult<()> {
|
||||
py.allow_threads(|| self.inner.push_csi_data(&litudes, &phases))
|
||||
.map_err(|e| PyValueError::new_err(e.to_string()))
|
||||
}
|
||||
|
||||
/// Run exactly one scan cycle over the buffered CSI (detection → ensemble
|
||||
/// → localization → triage). Requires an initialized event with an Active
|
||||
/// zone. GIL released during the scan.
|
||||
fn scan_once(&mut self, py: Python<'_>) -> PyResult<()> {
|
||||
let rt = &self.rt;
|
||||
let inner = &mut self.inner;
|
||||
py.allow_threads(|| rt.block_on(inner.start_scanning()))
|
||||
.map_err(|e| PyValueError::new_err(e.to_string()))
|
||||
}
|
||||
|
||||
/// All detected survivors.
|
||||
fn survivors(&self, py: Python<'_>) -> PyResult<Vec<PySurvivor>> {
|
||||
self.inner
|
||||
.survivors()
|
||||
.into_iter()
|
||||
.map(|s| PySurvivor::from_rust(py, s))
|
||||
.collect()
|
||||
}
|
||||
|
||||
/// Survivors filtered by START triage class.
|
||||
fn survivors_by_triage(
|
||||
&self,
|
||||
py: Python<'_>,
|
||||
status: PyTriageStatus,
|
||||
) -> PyResult<Vec<PySurvivor>> {
|
||||
self.inner
|
||||
.survivors_by_triage(status.as_rust())
|
||||
.into_iter()
|
||||
.map(|s| PySurvivor::from_rust(py, s))
|
||||
.collect()
|
||||
}
|
||||
|
||||
fn __repr__(&self) -> String {
|
||||
"DisasterResponse()".to_string()
|
||||
}
|
||||
}
|
||||
|
||||
pub fn register(m: &Bound<'_, PyModule>) -> PyResult<()> {
|
||||
m.add_class::<PyDisasterType>()?;
|
||||
m.add_class::<PyTriageStatus>()?;
|
||||
m.add_class::<PyVitalSignsReading>()?;
|
||||
m.add_class::<PySurvivor>()?;
|
||||
m.add_class::<PyDisasterConfig>()?;
|
||||
m.add_class::<PyScanZone>()?;
|
||||
m.add_class::<PyDisasterResponse>()?;
|
||||
Ok(())
|
||||
}
|
||||
@@ -20,6 +20,8 @@ mod bindings {
|
||||
#[cfg(feature = "aether")]
|
||||
pub mod aether;
|
||||
pub mod bfld;
|
||||
#[cfg(feature = "mat")]
|
||||
pub mod mat;
|
||||
#[cfg(feature = "meridian")]
|
||||
pub mod meridian;
|
||||
pub mod keypoint;
|
||||
@@ -51,6 +53,8 @@ fn build_features() -> Vec<&'static str> {
|
||||
feats.push("p6-aether-bindings"); // ADR-185 P1 — AETHER contrastive embeddings
|
||||
#[cfg(feature = "meridian")]
|
||||
feats.push("p6-meridian-bindings"); // ADR-185 P2 — MERIDIAN domain generalization
|
||||
#[cfg(feature = "mat")]
|
||||
feats.push("p6-mat-bindings"); // ADR-185 P3 — MAT disaster survivor detection
|
||||
feats
|
||||
}
|
||||
|
||||
@@ -106,5 +110,10 @@ fn wifi_densepose_native(m: &Bound<'_, PyModule>) -> PyResult<()> {
|
||||
#[cfg(feature = "meridian")]
|
||||
bindings::meridian::register(m)?;
|
||||
|
||||
// ADR-185 P3 — MAT disaster-survivor detection + START triage. Gated
|
||||
// behind `mat`, mirroring the upstream disaster/ML stack gating.
|
||||
#[cfg(feature = "mat")]
|
||||
bindings::mat::register(m)?;
|
||||
|
||||
Ok(())
|
||||
}
|
||||
|
||||
File diff suppressed because one or more lines are too long
@@ -0,0 +1 @@
|
||||
ae46351e28c01161c3c20f1a3134d8e32fbbef0cda2fdb9c3a27984da0ce026d
|
||||
@@ -0,0 +1,126 @@
|
||||
//! ADR-185 §4.1 — MAT bit-for-bit parity: native-Rust reference half.
|
||||
//!
|
||||
//! Drives the canonical `wifi-densepose-mat` `DisasterResponse` pipeline
|
||||
//! DIRECTLY (no PyO3) over the committed `tests/golden/mat_input.json` CSI
|
||||
//! stream and locks the SHA-256 of a canonical result string
|
||||
//! (`count=<K>;triage_priorities=<sorted>`) into
|
||||
//! `tests/golden/mat_result.sha256`.
|
||||
//!
|
||||
//! Only the survivor **count** and **triage classes** are hashed — survivor
|
||||
//! UUIDs and event timestamps are non-deterministic and deliberately
|
||||
//! excluded, so the hash captures exactly the "identical triage +
|
||||
//! survivor count for a fixed CSI stream" invariant of ADR-185 §4.1.
|
||||
//!
|
||||
//! Honesty note: the fixture is a synthetic breathing-modulated stream, so
|
||||
//! this proves the Python binding drives the real pipeline byte-identically
|
||||
//! to native Rust — it is NOT a detection-accuracy claim on real rubble.
|
||||
//!
|
||||
//! Regenerate (only on an intentional Rust change): delete the .sha256 and
|
||||
//! re-run `cargo test --features mat --test mat_parity`.
|
||||
#![cfg(feature = "mat")]
|
||||
|
||||
use std::fs;
|
||||
use std::path::PathBuf;
|
||||
|
||||
use serde_json::Value;
|
||||
use sha2::{Digest, Sha256};
|
||||
use wifi_densepose_mat::{DisasterConfig, DisasterResponse, DisasterType, ScanZone, ZoneBounds};
|
||||
|
||||
fn golden_dir() -> PathBuf {
|
||||
PathBuf::from(env!("CARGO_MANIFEST_DIR"))
|
||||
.join("tests")
|
||||
.join("golden")
|
||||
}
|
||||
|
||||
fn fixture() -> Value {
|
||||
let raw = fs::read_to_string(golden_dir().join("mat_input.json"))
|
||||
.expect("read mat_input.json fixture");
|
||||
serde_json::from_str(&raw).expect("parse mat_input.json")
|
||||
}
|
||||
|
||||
/// Build the response identically to the Python binding's default
|
||||
/// construction and run one scan over the fixture CSI stream. Returns the
|
||||
/// canonical `count=<K>;triage_priorities=<sorted>` string.
|
||||
fn mat_canonical_result(fx: &Value) -> String {
|
||||
let config = DisasterConfig::builder()
|
||||
.disaster_type(DisasterType::Earthquake)
|
||||
.sensitivity(0.9)
|
||||
.confidence_threshold(0.1)
|
||||
.max_depth(5.0)
|
||||
.continuous_monitoring(false)
|
||||
.build();
|
||||
let mut resp = DisasterResponse::new(config);
|
||||
resp.initialize_event(geo::Point::new(0.0, 0.0), "parity-fixture")
|
||||
.expect("initialize_event");
|
||||
resp.add_zone(ScanZone::new(
|
||||
"Zone A",
|
||||
ZoneBounds::rectangle(0.0, 0.0, 50.0, 30.0),
|
||||
))
|
||||
.expect("add_zone");
|
||||
|
||||
for frame in fx["stream"].as_array().unwrap() {
|
||||
let amp: Vec<f64> = frame["amplitude"]
|
||||
.as_array()
|
||||
.unwrap()
|
||||
.iter()
|
||||
.map(|x| x.as_f64().unwrap())
|
||||
.collect();
|
||||
let ph: Vec<f64> = frame["phase"]
|
||||
.as_array()
|
||||
.unwrap()
|
||||
.iter()
|
||||
.map(|x| x.as_f64().unwrap())
|
||||
.collect();
|
||||
resp.push_csi_data(&, &ph).expect("push_csi_data");
|
||||
}
|
||||
|
||||
let rt = tokio::runtime::Builder::new_current_thread()
|
||||
.enable_time()
|
||||
.build()
|
||||
.unwrap();
|
||||
rt.block_on(resp.start_scanning()).expect("scan");
|
||||
|
||||
let survivors = resp.survivors();
|
||||
let mut priorities: Vec<u8> = survivors
|
||||
.iter()
|
||||
.map(|s| s.triage_status().priority())
|
||||
.collect();
|
||||
priorities.sort_unstable();
|
||||
format!("count={};triage_priorities={:?}", survivors.len(), priorities)
|
||||
}
|
||||
|
||||
fn sha256_hex(s: &str) -> String {
|
||||
let mut hasher = Sha256::new();
|
||||
hasher.update(s.as_bytes());
|
||||
hasher
|
||||
.finalize()
|
||||
.iter()
|
||||
.map(|b| format!("{b:02x}"))
|
||||
.collect()
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn native_mat_result_is_deterministic() {
|
||||
let fx = fixture();
|
||||
// Two independent runs must agree (survivor count + triage classes are
|
||||
// deterministic; UUIDs/timestamps are excluded from the canonical form).
|
||||
assert_eq!(mat_canonical_result(&fx), mat_canonical_result(&fx));
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn native_mat_matches_committed_golden() {
|
||||
let canon = mat_canonical_result(&fixture());
|
||||
let got = sha256_hex(&canon);
|
||||
let path = golden_dir().join("mat_result.sha256");
|
||||
match fs::read_to_string(&path) {
|
||||
Ok(expected) => assert_eq!(
|
||||
got,
|
||||
expected.trim(),
|
||||
"native MAT result drifted from committed golden (canonical form: {canon})"
|
||||
),
|
||||
Err(_) => {
|
||||
fs::write(&path, &got).expect("write golden sha256");
|
||||
panic!("no committed golden found; wrote {got} for [{canon}]. Re-run to verify.");
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,108 @@
|
||||
"""ADR-185 P3 — MAT binding tests, incl. the §4.1 bit-for-bit parity gate.
|
||||
|
||||
The parity test drives the same committed CSI stream through the binding's
|
||||
DisasterResponse pipeline and asserts the survivor count + triage classes
|
||||
(as a SHA-256 of a canonical string) match the native-Rust golden. A
|
||||
mismatch is a release blocker.
|
||||
"""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
import hashlib
|
||||
import json
|
||||
from pathlib import Path
|
||||
|
||||
import pytest
|
||||
|
||||
from wifi_densepose import mat
|
||||
|
||||
GOLDEN = Path(__file__).parent / "golden"
|
||||
|
||||
|
||||
def fixture() -> dict:
|
||||
return json.loads((GOLDEN / "mat_input.json").read_text())
|
||||
|
||||
|
||||
def build_response() -> mat.DisasterResponse:
|
||||
cfg = mat.DisasterConfig(
|
||||
mat.DisasterType.Earthquake,
|
||||
sensitivity=0.9,
|
||||
confidence_threshold=0.1,
|
||||
max_depth=5.0,
|
||||
)
|
||||
resp = mat.DisasterResponse(cfg)
|
||||
resp.initialize_event(0.0, 0.0, "parity-fixture")
|
||||
resp.add_zone(mat.ScanZone.rectangle("Zone A", 0.0, 0.0, 50.0, 30.0))
|
||||
return resp
|
||||
|
||||
|
||||
def run_scan(resp: mat.DisasterResponse) -> None:
|
||||
for frame in fixture()["stream"]:
|
||||
resp.push_csi_data(frame["amplitude"], frame["phase"])
|
||||
resp.scan_once()
|
||||
|
||||
|
||||
# ─── enums / config ──────────────────────────────────────────────────
|
||||
|
||||
def test_triage_priority_order() -> None:
|
||||
assert mat.TriageStatus.Immediate.priority == 1
|
||||
assert mat.TriageStatus.Delayed.priority == 2
|
||||
assert mat.TriageStatus.Unknown.priority == 5
|
||||
|
||||
|
||||
def test_disaster_config_fields() -> None:
|
||||
cfg = mat.DisasterConfig(mat.DisasterType.Flood, sensitivity=1.5, confidence_threshold=0.3)
|
||||
assert cfg.sensitivity == 1.0 # clamped to [0, 1]
|
||||
assert abs(cfg.confidence_threshold - 0.3) < 1e-9
|
||||
|
||||
|
||||
# ─── pipeline behaviour ──────────────────────────────────────────────
|
||||
|
||||
def test_scan_requires_event() -> None:
|
||||
resp = mat.DisasterResponse(mat.DisasterConfig(mat.DisasterType.Unknown))
|
||||
# No initialize_event / add_zone -> scan_cycle errors "No active event".
|
||||
with pytest.raises(ValueError):
|
||||
resp.scan_once()
|
||||
|
||||
|
||||
def test_push_csi_rejects_mismatched_lengths() -> None:
|
||||
resp = build_response()
|
||||
with pytest.raises(ValueError):
|
||||
resp.push_csi_data([1.0, 2.0], [1.0])
|
||||
|
||||
|
||||
def test_scan_detects_survivor_from_breathing_stream() -> None:
|
||||
resp = build_response()
|
||||
run_scan(resp)
|
||||
survivors = resp.survivors()
|
||||
# The synthetic breathing-modulated stream trips one detection (matches
|
||||
# the native-Rust reference).
|
||||
assert len(survivors) == 1
|
||||
s = survivors[0]
|
||||
assert isinstance(s.id, str) and len(s.id) > 0
|
||||
assert s.triage_status == mat.TriageStatus.Delayed
|
||||
assert 0.0 <= s.confidence <= 1.0
|
||||
# survivors_by_triage is consistent with the survivor's own class.
|
||||
assert len(resp.survivors_by_triage(mat.TriageStatus.Delayed)) == 1
|
||||
assert len(resp.survivors_by_triage(mat.TriageStatus.Immediate)) == 0
|
||||
|
||||
|
||||
# ─── §4.1 bit-for-bit parity gate (release-blocking) ─────────────────
|
||||
|
||||
def test_bit_for_bit_parity_with_native_rust() -> None:
|
||||
resp = build_response()
|
||||
run_scan(resp)
|
||||
survivors = resp.survivors()
|
||||
priorities = sorted(s.triage_status.priority for s in survivors)
|
||||
canon = f"count={len(survivors)};triage_priorities={priorities}"
|
||||
got = hashlib.sha256(canon.encode()).hexdigest()
|
||||
expected = (GOLDEN / "mat_result.sha256").read_text().strip()
|
||||
assert got == expected, (
|
||||
f"Python MAT result diverged from native-Rust golden "
|
||||
f"(canonical form: {canon}; {got} != {expected})"
|
||||
)
|
||||
|
||||
|
||||
def test_base_wheel_import_error_message() -> None:
|
||||
src = Path(mat.__file__).read_text()
|
||||
assert "pip install wifi-densepose[mat]" in src
|
||||
@@ -0,0 +1,59 @@
|
||||
"""MAT — Mass Casualty Assessment Tool (ADR-024 crate, ADR-185 P3).
|
||||
|
||||
WiFi-based disaster-survivor detection and START-protocol triage from CSI:
|
||||
ingest CSI frames, run a scan cycle, and query detected survivors by triage.
|
||||
|
||||
Available **only** when the wheel was built with the ``[mat]`` extra::
|
||||
|
||||
pip install wifi-densepose[mat]
|
||||
|
||||
Quick start::
|
||||
|
||||
from wifi_densepose.mat import DisasterConfig, DisasterResponse, DisasterType, ScanZone
|
||||
|
||||
cfg = DisasterConfig(DisasterType.Earthquake, sensitivity=0.9, confidence_threshold=0.1)
|
||||
resp = DisasterResponse(cfg)
|
||||
resp.initialize_event(0.0, 0.0, "Building A") # required before scanning
|
||||
resp.add_zone(ScanZone.rectangle("North Wing", 0.0, 0.0, 50.0, 30.0))
|
||||
for amp, phase in csi_stream:
|
||||
resp.push_csi_data(amp, phase)
|
||||
resp.scan_once() # one detection cycle
|
||||
for s in resp.survivors():
|
||||
print(s.id, s.triage_status, s.confidence, s.location)
|
||||
|
||||
Honest scope (ADR-185 §3.4): the ADR's Rust-side `scan_once()` wrapper was
|
||||
unnecessary — this binding drives one cycle of the public async
|
||||
`start_scanning()` (with `continuous_monitoring` forced off) on an internal
|
||||
runtime. `initialize_event` + `add_zone` are required before `scan_once`.
|
||||
`Survivor.latest_vitals` returns the latest reading (the Rust accessor is a
|
||||
history). The detection pipeline is real but unvalidated on live rubble.
|
||||
"""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
from wifi_densepose import _native
|
||||
|
||||
# MAT symbols are compiled into `_native` only under the Rust `mat` feature.
|
||||
if not hasattr(_native, "DisasterResponse"):
|
||||
raise ImportError(
|
||||
"wifi_densepose.mat is not available in this wheel. "
|
||||
"It requires the 'mat' extra: pip install wifi-densepose[mat]"
|
||||
)
|
||||
|
||||
DisasterType = _native.DisasterType
|
||||
TriageStatus = _native.TriageStatus
|
||||
DisasterConfig = _native.DisasterConfig
|
||||
DisasterResponse = _native.DisasterResponse
|
||||
ScanZone = _native.ScanZone
|
||||
Survivor = _native.Survivor
|
||||
VitalSignsReading = _native.VitalSignsReading
|
||||
|
||||
__all__ = [
|
||||
"DisasterType",
|
||||
"TriageStatus",
|
||||
"DisasterConfig",
|
||||
"DisasterResponse",
|
||||
"ScanZone",
|
||||
"Survivor",
|
||||
"VitalSignsReading",
|
||||
]
|
||||
@@ -0,0 +1,92 @@
|
||||
"""Type stubs for the MAT bindings (ADR-185 P3).
|
||||
|
||||
Present only when the wheel is built with the ``[mat]`` extra.
|
||||
"""
|
||||
|
||||
from __future__ import annotations
|
||||
|
||||
import enum
|
||||
|
||||
class DisasterType(enum.Enum):
|
||||
BuildingCollapse = 0
|
||||
Earthquake = 1
|
||||
Landslide = 2
|
||||
Avalanche = 3
|
||||
Flood = 4
|
||||
MineCollapse = 5
|
||||
Industrial = 6
|
||||
TunnelCollapse = 7
|
||||
Unknown = 8
|
||||
def __repr__(self) -> str: ...
|
||||
|
||||
class TriageStatus(enum.Enum):
|
||||
Immediate = 0
|
||||
Delayed = 1
|
||||
Minor = 2
|
||||
Deceased = 3
|
||||
Unknown = 4
|
||||
@property
|
||||
def priority(self) -> int: ...
|
||||
def __repr__(self) -> str: ...
|
||||
|
||||
class VitalSignsReading:
|
||||
@property
|
||||
def breathing_rate_bpm(self) -> float | None: ...
|
||||
@property
|
||||
def heartbeat_rate_bpm(self) -> float | None: ...
|
||||
@property
|
||||
def movement_intensity(self) -> float: ...
|
||||
@property
|
||||
def confidence(self) -> float: ...
|
||||
def __repr__(self) -> str: ...
|
||||
|
||||
class Survivor:
|
||||
@property
|
||||
def id(self) -> str: ...
|
||||
@property
|
||||
def triage_status(self) -> TriageStatus: ...
|
||||
@property
|
||||
def confidence(self) -> float: ...
|
||||
@property
|
||||
def location(self) -> tuple[float, float, float] | None: ...
|
||||
@property
|
||||
def latest_vitals(self) -> VitalSignsReading | None: ...
|
||||
def __repr__(self) -> str: ...
|
||||
|
||||
class DisasterConfig:
|
||||
def __init__(
|
||||
self,
|
||||
disaster_type: DisasterType,
|
||||
sensitivity: float = ...,
|
||||
confidence_threshold: float = ...,
|
||||
max_depth: float = ...,
|
||||
scan_interval_ms: int = ...,
|
||||
) -> None: ...
|
||||
@property
|
||||
def sensitivity(self) -> float: ...
|
||||
@property
|
||||
def confidence_threshold(self) -> float: ...
|
||||
@property
|
||||
def max_depth(self) -> float: ...
|
||||
def __repr__(self) -> str: ...
|
||||
|
||||
class ScanZone:
|
||||
@staticmethod
|
||||
def rectangle(
|
||||
name: str, min_x: float, min_y: float, max_x: float, max_y: float
|
||||
) -> ScanZone: ...
|
||||
@staticmethod
|
||||
def circle(name: str, center_x: float, center_y: float, radius: float) -> ScanZone: ...
|
||||
@property
|
||||
def name(self) -> str: ...
|
||||
def __repr__(self) -> str: ...
|
||||
|
||||
class DisasterResponse:
|
||||
def __init__(self, config: DisasterConfig) -> None: ...
|
||||
def initialize_event(self, x: float, y: float, description: str) -> None: ...
|
||||
def add_zone(self, zone: ScanZone) -> None: ...
|
||||
def push_csi_data(self, amplitudes: list[float], phases: list[float]) -> None: ...
|
||||
def scan_once(self) -> None: ...
|
||||
def survivors(self) -> list[Survivor]: ...
|
||||
def survivors_by_triage(self, status: TriageStatus) -> list[Survivor]: ...
|
||||
def __repr__(self) -> str: ...
|
||||
Reference in New Issue
Block a user