matter_controller/controller.rs
1//! `MatterController` — the public entry point. A cheap, cloneable handle
2//! over the owning actor task (a crate-internal `tokio` task).
3
4use std::sync::Arc;
5
6use matter_commissioning::driver::AsyncDatagram;
7use matter_commissioning::{NocRng, SystemNocRng};
8use matter_transport::Discovery;
9use tokio::sync::{mpsc, oneshot};
10
11use crate::actor::{Actor, Command};
12use crate::builder::MatterControllerBuilder;
13use crate::error::Error;
14use crate::fabric::FabricConfig;
15use crate::node::Node;
16use crate::node_info::NodeInfo;
17use crate::snapshot;
18use crate::state::ControllerState;
19use crate::store::ControllerStore;
20use crate::trust::AttestationTrust;
21
22/// `BasicInformation` cluster id (Matter §11.1) — read post-commission for the
23/// device's `VendorID`/`ProductID`. Sourced from the generated cluster
24/// definitions so it stays tied to the codegen source of truth.
25const BASIC_INFORMATION_CLUSTER: u32 = matter_clusters::gen::basic_information::CLUSTER_ID;
26/// `BasicInformation.VendorID` attribute id.
27const BASIC_INFO_ATTR_VENDOR_ID: u32 =
28 matter_clusters::gen::basic_information::attribute_id::VENDOR_ID;
29/// `BasicInformation.ProductID` attribute id.
30const BASIC_INFO_ATTR_PRODUCT_ID: u32 =
31 matter_clusters::gen::basic_information::attribute_id::PRODUCT_ID;
32
33const COMMAND_CHANNEL_DEPTH: usize = 32;
34
35/// Addresses to advertise for a self-hosted operational service (OTA provider,
36/// ICD check-in listener). A wildcard bind (`[::]`) reports an unspecified
37/// `local_addr` that a peer cannot resolve to anything routable, so substitute
38/// the host's real routable address(es); fall back to the bind address only if
39/// none can be found (e.g. fully offline).
40fn advertise_addrs(local: std::net::SocketAddr) -> Vec<std::net::IpAddr> {
41 if local.ip().is_unspecified() {
42 let real = matter_transport::local_advertise_addrs();
43 if real.is_empty() {
44 vec![local.ip()]
45 } else {
46 real
47 }
48 } else {
49 vec![local.ip()]
50 }
51}
52
53/// The high-level Matter controller. Cloneable; all clones talk to one
54/// owning task.
55#[derive(Clone)]
56pub struct MatterController {
57 tx: mpsc::Sender<Command>,
58 /// Retained so the OTA provider server ([`Self::serve_provider_once`]) can
59 /// load the stable, committed operational identity without routing through
60 /// the actor (the identity is minted once and never mutated after).
61 store: Arc<dyn ControllerStore>,
62}
63
64impl MatterController {
65 /// Begin configuring a controller (attestation trust, admin vendor id).
66 #[must_use]
67 pub fn builder(store: Arc<dyn ControllerStore>) -> MatterControllerBuilder {
68 MatterControllerBuilder::new(store)
69 }
70
71 /// Open a controller with default settings and **no** attestation trust —
72 /// sufficient for operating already-commissioned devices, but `commission`
73 /// will return [`Error::NoTrust`]. Use [`Self::builder`] to commission.
74 ///
75 /// # Errors
76 ///
77 /// As [`MatterControllerBuilder::build`].
78 pub async fn open(store: Arc<dyn ControllerStore>) -> Result<Self, Error> {
79 Self::spawn_default(store, None, crate::builder::DEFAULT_ADMIN_VENDOR_ID, None).await
80 }
81
82 pub(crate) async fn spawn_default(
83 store: Arc<dyn ControllerStore>,
84 trust: Option<AttestationTrust>,
85 admin_vendor_id: u16,
86 multicast_if: Option<u32>,
87 ) -> Result<Self, Error> {
88 let transport =
89 matter_transport::TokioUdpTransport::bind_with_multicast_if(0, multicast_if)
90 .await
91 .map_err(|e| Error::Operational(format!("bind: {e}")))?;
92 let discovery = matter_transport::MdnsSdDiscovery::new()
93 .map_err(|e| Error::Operational(format!("mdns: {e}")))?;
94 Self::with_components_and_multicast_if(
95 store,
96 transport,
97 discovery,
98 Arc::new(SystemNocRng),
99 trust,
100 admin_vendor_id,
101 multicast_if,
102 )
103 }
104
105 /// Construct over caller-supplied transport + discovery (used by tests to
106 /// inject `InMemoryDatagram` + a mock `Discovery`).
107 ///
108 /// # Errors
109 ///
110 /// [`Error::Store`] / [`Error::Snapshot`] if the persisted snapshot is
111 /// unreadable.
112 #[cfg(test)] // production construction goes through `with_components_and_multicast_if`.
113 pub(crate) fn with_components<T, D>(
114 store: Arc<dyn ControllerStore>,
115 transport: T,
116 discovery: D,
117 rng: Arc<dyn NocRng>,
118 trust: Option<AttestationTrust>,
119 admin_vendor_id: u16,
120 ) -> Result<Self, Error>
121 where
122 T: AsyncDatagram + Send + Sync + 'static,
123 D: Discovery + Send + 'static,
124 {
125 Self::with_components_and_multicast_if(
126 store,
127 transport,
128 discovery,
129 rng,
130 trust,
131 admin_vendor_id,
132 None,
133 )
134 }
135
136 #[allow(clippy::too_many_arguments)] // Component-injection seam; mirrors Actor::new.
137 pub(crate) fn with_components_and_multicast_if<T, D>(
138 store: Arc<dyn ControllerStore>,
139 transport: T,
140 discovery: D,
141 rng: Arc<dyn NocRng>,
142 trust: Option<AttestationTrust>,
143 admin_vendor_id: u16,
144 multicast_if: Option<u32>,
145 ) -> Result<Self, Error>
146 where
147 // `Sync` because the spawned actor future holds `&self.transport`
148 // across awaits (inside `run_case`/`secured_round_trip`); `Send` so the
149 // future can be `tokio::spawn`ed onto the multi-thread runtime.
150 T: AsyncDatagram + Send + Sync + 'static,
151 D: Discovery + Send + 'static,
152 {
153 let state = match store.load()? {
154 Some(bytes) => snapshot::deserialize(&bytes)?,
155 None => ControllerState::default(),
156 };
157 let (tx, rx) = mpsc::channel(COMMAND_CHANNEL_DEPTH);
158 let actor = Actor::new(
159 transport,
160 discovery,
161 store.clone(),
162 rng,
163 state,
164 trust,
165 admin_vendor_id,
166 )
167 .with_multicast_if(multicast_if);
168 tokio::spawn(actor.run(rx));
169 Ok(Self { tx, store })
170 }
171
172 /// Serve the OTA **provider** role once: advertise our operational service,
173 /// accept one inbound CASE session, and dispatch up to `max_invokes`
174 /// server-side `InvokeRequest`s through `handler`, then withdraw the
175 /// advertisement. `handler` maps a parsed request to the encoded
176 /// `InvokeResponse` bytes (e.g. via `matter_interaction::build_invoke_response_*`).
177 ///
178 /// The server runs on its **own** freshly-bound UDP socket and its own mDNS
179 /// daemon — it does not touch the client actor (the long-running accept is
180 /// kept off the proven request/MRP loop). It authenticates as our persisted
181 /// operational identity (the M8 commissioner NOC/IPK/root).
182 ///
183 /// This ships the generic provider plumbing; the OTA `QueryImage` handler
184 /// and the BDX transfer build on it. Note: advertising a wildcard-bound
185 /// address may not be routable to a foreign requestor — see the runbook
186 /// for the interface-selection caveat (the automated validation is the
187 /// in-process loopback test).
188 ///
189 /// # Errors
190 ///
191 /// [`Error::NotCommissioned`] if no fabric exists; [`Error::Operational`] on
192 /// bind / mDNS / clock failure; otherwise any CASE-accept or dispatch error
193 /// from [`crate::provider_server::ProviderServer`].
194 #[cfg(feature = "unstable-provider")]
195 pub async fn serve_provider_once<H>(
196 &self,
197 port: u16,
198 handler: H,
199 max_invokes: usize,
200 ) -> Result<usize, Error>
201 where
202 H: FnMut(&matter_interaction::ParsedInvokeRequest) -> Vec<u8>,
203 {
204 use crate::provider_server::{build_operational_service, ProviderServer};
205
206 // 1. Load our persisted fabric + build the responder identity.
207 let state = match self.store.load()? {
208 Some(bytes) => snapshot::deserialize(&bytes)?,
209 None => return Err(Error::NotCommissioned("no fabric to serve from".into())),
210 };
211 let fabric = state
212 .fabrics
213 .first()
214 .ok_or_else(|| Error::NotCommissioned("no fabric to serve from".into()))?;
215 let (credentials, roots, compressed) = crate::credentials::operational_credentials(fabric)?;
216 let node_id = fabric.commissioner.node_id;
217 let now = crate::actor::current_matter_time()?;
218
219 // 2. Bind our own socket + advertise the operational service.
220 let socket = matter_transport::TokioUdpTransport::bind(port)
221 .await
222 .map_err(|e| Error::Operational(format!("provider bind: {e}")))?;
223 let local = socket
224 .socket()
225 .local_addr()
226 .map_err(|e| Error::Operational(format!("provider local_addr: {e}")))?;
227 let mut discovery = matter_transport::MdnsSdDiscovery::new()
228 .map_err(|e| Error::Operational(format!("provider mdns: {e}")))?;
229 let service =
230 build_operational_service(compressed, node_id, advertise_addrs(local), local.port());
231 matter_transport::Discovery::publish(&mut discovery, &service)?;
232
233 // 3. Accept one session + dispatch up to `max_invokes` invokes.
234 let result = ProviderServer::new(
235 socket,
236 vec![credentials],
237 roots,
238 /* base_session_id */ 0x01,
239 now,
240 )
241 .accept_and_dispatch_once(handler, max_invokes)
242 .await;
243
244 // 4. Withdraw the advertisement regardless of outcome.
245 let _ = matter_transport::Discovery::unpublish(
246 &mut discovery,
247 &service.instance_name,
248 matter_transport::ServiceKind::Operational,
249 );
250 result
251 }
252
253 /// Announce ourselves as an OTA provider to `target_node_id`, advertise our
254 /// operational service, and serve `image` over the full OTA flow (the
255 /// requestor resolves us, opens CASE, queries, BDX-downloads, applies, and
256 /// — possibly after rebooting into the new image — sends
257 /// `NotifyUpdateApplied`). Returns once `NotifyUpdateApplied` is received.
258 ///
259 /// `software_version` is offered in `QueryImageResponse` (must exceed the
260 /// requestor's current version for it to update — and match the version
261 /// baked into the `.ota` header for a live requestor). `port` binds the
262 /// provider socket (0 = ephemeral). The image is served verbatim over BDX
263 /// (unsigned; the requestor parses the `OTAImageHeader`).
264 ///
265 /// Because a real requestor reboots into the new image before notifying,
266 /// the call may block for an extended period. Callers should bound the wait
267 /// with [`tokio::time::timeout`]. Each accepted CASE session's resumption
268 /// record is persisted immediately via an internal sink (best-effort: a
269 /// failed store only costs a future fast path).
270 ///
271 /// # Errors
272 ///
273 /// [`Error::NotCommissioned`] if no fabric exists; [`Error::Operational`] on
274 /// bind / mDNS / clock failure; otherwise any announce or serve error.
275 pub async fn serve_ota(
276 &self,
277 target_node_id: u64,
278 image: Vec<u8>,
279 software_version: u32,
280 port: u16,
281 ) -> Result<(), Error> {
282 // 960 keeps each BDX DataBlock (block + counter + BDX/IM framing) under
283 // the transport's 1024-byte secured-payload budget — correct for Wi-Fi
284 // and IP. For a Thread-routed requestor use
285 // [`Self::serve_ota_with_block_size`] with ~512: at 960 a single block
286 // spans ~a dozen 802.15.4 fragments that must ALL arrive, so a smaller
287 // block cuts the per-block loss probability on the mesh (BDX-4).
288 self.serve_ota_with_block_size(target_node_id, image, software_version, port, 960)
289 .await
290 }
291
292 /// [`Self::serve_ota`] with an explicit BDX `max_block_size`. Pass a smaller
293 /// value (~512) for a Thread-routed requestor so each block fits fewer
294 /// 6LoWPAN fragments; 960 is the Wi-Fi/IP default (see [`Self::serve_ota`]).
295 ///
296 /// # Errors
297 ///
298 /// Same as [`Self::serve_ota`].
299 pub async fn serve_ota_with_block_size(
300 &self,
301 target_node_id: u64,
302 image: Vec<u8>,
303 software_version: u32,
304 port: u16,
305 max_block_size: u16,
306 ) -> Result<(), Error> {
307 use crate::provider_server::{build_operational_service, ProviderServer};
308
309 // Credential pool: one identity per CASE accept (first session +
310 // post-reboot session + retry slack — see the spec).
311 const PROVIDER_CREDENTIAL_POOL: usize = 4;
312
313 // Identity + offer.
314 let state = match self.store.load()? {
315 Some(bytes) => snapshot::deserialize(&bytes)?,
316 None => return Err(Error::NotCommissioned("no fabric to serve from".into())),
317 };
318 let fabric = state
319 .fabrics
320 .first()
321 .ok_or_else(|| Error::NotCommissioned("no fabric to serve from".into()))?;
322 let mut pool = Vec::with_capacity(PROVIDER_CREDENTIAL_POOL);
323
324 let mut roots_compressed = None;
325 for _ in 0..PROVIDER_CREDENTIAL_POOL {
326 let (c, r, comp) = crate::credentials::operational_credentials(fabric)?;
327 pool.push(c);
328 roots_compressed = Some((r, comp));
329 }
330 let (roots, compressed) =
331 roots_compressed.ok_or_else(|| Error::Operational("empty credential pool".into()))?;
332 let node_id = fabric.commissioner.node_id;
333 let now = crate::actor::current_matter_time()?;
334 let offer = matter_ota::ImageOffer {
335 software_version,
336 software_version_string: software_version.to_string(),
337 image_uri: format!("bdx://{node_id:016X}/fw.ota"),
338 update_token: vec![0xAB; 16],
339 };
340
341 // Bind + advertise.
342 let socket = matter_transport::TokioUdpTransport::bind(port)
343 .await
344 .map_err(|e| Error::Operational(format!("provider bind: {e}")))?;
345 let local = socket
346 .socket()
347 .local_addr()
348 .map_err(|e| Error::Operational(format!("provider local_addr: {e}")))?;
349 let mut discovery = matter_transport::MdnsSdDiscovery::new()
350 .map_err(|e| Error::Operational(format!("provider mdns: {e}")))?;
351 let service =
352 build_operational_service(compressed, node_id, advertise_addrs(local), local.port());
353 matter_transport::Discovery::publish(&mut discovery, &service)?;
354
355 // Announce FIRST (a client invoke to the device over a fresh CASE
356 // connect), and only then build the server: the requestor's QueryImage
357 // Sigma1 requests RESUMPTION of the session the announce just
358 // established, so the server must be seeded with the resumption
359 // record that connect persisted — which exists only after the
360 // announce completes. The provider socket is already bound and
361 // advertised above, so a Sigma1 arriving in the gap merely waits in
362 // the socket buffer (and chip MRP-retransmits it regardless).
363 let node = self.node(target_node_id);
364 let announce_res = node
365 .announce_ota_provider(node_id, crate::builder::DEFAULT_ADMIN_VENDOR_ID, 0)
366 .await;
367 if let Err(e) = announce_res {
368 let _ = matter_transport::Discovery::unpublish(
369 &mut discovery,
370 &service.instance_name,
371 matter_transport::ServiceKind::Operational,
372 );
373 return Err(e);
374 }
375
376 // Fetch the announce connect's resumption record from live actor
377 // state (guaranteed present: the announce rode that session). A
378 // missing/corrupt record only costs the fast path — the server then
379 // declines and falls back to a full handshake.
380 let records = match self.resumption_record_for(target_node_id).await {
381 Ok(Some(r)) => vec![r],
382 Ok(None) | Err(_) => Vec::new(),
383 };
384
385 let sink_controller = self.clone();
386 let server = ProviderServer::new(socket, pool, roots, /* base_session_id */ 0x01, now)
387 .with_resumption_records(records)
388 .with_expected_peer(target_node_id)
389 .with_record_sink(Box::new(move |record| {
390 let c = sink_controller.clone();
391 tokio::spawn(async move {
392 // Best-effort: a failed store only costs a future fast path.
393 let node = record.peer.node_id;
394 let _ = c.store_resumption_record(node, &record).await;
395 });
396 }));
397 // `max_block_size` must keep each BDX DataBlock (block + 4-byte counter
398 // + BDX/IM framing) under the transport's 1024-byte secured-payload
399 // budget — 960 is the Wi-Fi/IP default (1024 overflows by 14 bytes once
400 // framed); a Thread caller passes ~512 (BDX-4).
401 let serve_res = server.serve_ota_once(offer, image, max_block_size).await;
402
403 let _ = matter_transport::Discovery::unpublish(
404 &mut discovery,
405 &service.instance_name,
406 matter_transport::ServiceKind::Operational,
407 );
408
409 serve_res?;
410 Ok(())
411 }
412
413 /// Advertise our operational service and listen for ONE inbound Check-In
414 /// from a registered ICD, verify it against the stored registration key
415 /// (enforcing counter monotonicity), and return it — the caller then
416 /// re-establishes a session and reads/subscribes / `stay_active_request`s
417 /// while the device is briefly active.
418 ///
419 /// Runs on its **own** freshly-bound UDP socket + mDNS daemon, off the
420 /// client actor. Requires at least one registration from
421 /// [`Node::register_icd_client`](crate::Node::register_icd_client).
422 ///
423 /// # Errors
424 ///
425 /// [`Error::NotCommissioned`] if no fabric exists; [`Error::Operational`] if
426 /// no ICD clients are registered, on bind / mDNS failure, or if no
427 /// verifiable Check-In arrives before the internal frame budget is reached.
428 pub async fn listen_for_checkin_once(
429 &self,
430 port: u16,
431 ) -> Result<crate::icd_listener::CheckIn, Error> {
432 use crate::provider_server::build_operational_service;
433
434 // Load registrations + advertising identity from the persisted fabric.
435 let state = match self.store.load()? {
436 Some(bytes) => snapshot::deserialize(&bytes)?,
437 None => return Err(Error::NotCommissioned("no fabric to listen from".into())),
438 };
439 let fabric = state
440 .fabrics
441 .first()
442 .ok_or_else(|| Error::NotCommissioned("no fabric to listen from".into()))?;
443 let registrations = fabric.icd_clients.clone();
444 if registrations.is_empty() {
445 return Err(Error::Operational(
446 "no registered ICD clients to listen for".into(),
447 ));
448 }
449 let (_creds, _roots, compressed) = crate::credentials::operational_credentials(fabric)?;
450 let node_id = fabric.commissioner.node_id;
451
452 // Bind our own socket + advertise (so a registered ICD can resolve us).
453 let socket = matter_transport::TokioUdpTransport::bind(port)
454 .await
455 .map_err(|e| Error::Operational(format!("ICD listener bind: {e}")))?;
456 let local = socket
457 .socket()
458 .local_addr()
459 .map_err(|e| Error::Operational(format!("ICD listener local_addr: {e}")))?;
460 let mut discovery = matter_transport::MdnsSdDiscovery::new()
461 .map_err(|e| Error::Operational(format!("ICD listener mdns: {e}")))?;
462 let service =
463 build_operational_service(compressed, node_id, advertise_addrs(local), local.port());
464 matter_transport::Discovery::publish(&mut discovery, &service)?;
465
466 // Listen for one verifiable Check-In (generous frame budget for noise).
467 let result = crate::icd_listener::recv_checkin_once(&socket, ®istrations, 256).await;
468
469 let _ = matter_transport::Discovery::unpublish(
470 &mut discovery,
471 &service.instance_name,
472 matter_transport::ServiceKind::Operational,
473 );
474 result
475 }
476
477 /// Create and persist a new fabric (mints the stable commissioner
478 /// identity). Returns the new fabric id.
479 ///
480 /// # Errors
481 ///
482 /// [`Error::ControllerStopped`] if the task has stopped; otherwise any
483 /// minting / persistence error.
484 pub async fn create_fabric(&self, cfg: FabricConfig) -> Result<u64, Error> {
485 let (reply, rx) = oneshot::channel();
486 self.tx
487 .send(Command::CreateFabric { cfg, reply })
488 .await
489 .map_err(|_| Error::ControllerStopped)?;
490 rx.await.map_err(|_| Error::ControllerStopped)?
491 }
492
493 /// Commission a device from a QR (`MT:...`) or manual pairing code, bring it
494 /// onto the controller's fabric, and persist it. Returns a [`NodeInfo`] for
495 /// the commissioned device.
496 ///
497 /// After the device is on the fabric, a best-effort `BasicInformation` read
498 /// captures its `VendorID`/`ProductID` into the returned `NodeInfo` and
499 /// persists them on the device entry. That read is best-effort: if it fails,
500 /// commissioning still succeeds and `NodeInfo::vendor_id`/`product_id` are
501 /// left `None` (re-readable later via [`Self::nodes`]).
502 ///
503 /// `label` is an opaque, caller-supplied string (e.g. a friendly name like
504 /// `"kitchen plug"`) persisted on the device's entry atomically with the
505 /// rest of the commissioning result — a crash after this call returns
506 /// either sees the fully-commissioned device with its label, or nothing
507 /// at all, never a device missing its label. Pass `None` if you have no
508 /// label to attach yet; it can be left unset.
509 ///
510 /// # Errors
511 ///
512 /// [`Error::NoTrust`] if no attestation trust was configured,
513 /// [`Error::SetupCode`] if the code is invalid, [`Error::ControllerStopped`]
514 /// if the task stopped, or any driver/commissioning error.
515 pub async fn commission(
516 &self,
517 setup_code: &str,
518 label: Option<String>,
519 ) -> Result<NodeInfo, Error> {
520 let setup_payload = parse_setup_code(setup_code)?;
521 let (reply, rx) = oneshot::channel();
522 self.tx
523 .send(Command::Commission {
524 setup_payload,
525 label,
526 reply,
527 })
528 .await
529 .map_err(|_| Error::ControllerStopped)?;
530 let mut info = rx.await.map_err(|_| Error::ControllerStopped)??;
531 self.capture_basic_info(&mut info).await;
532 Ok(info)
533 }
534
535 /// Commission a Wi-Fi or Thread device over **BLE/BTP** (feature `ble`):
536 /// scan for the device by discriminator, open a BTP session, run PASE and
537 /// every pre-operational stage (attestation, NOC install, network
538 /// provisioning) over BTP, then complete the operational CASE session over
539 /// IP once the device joins the operational network. Brings the device
540 /// onto the controller's fabric, persists it, and returns a [`NodeInfo`]
541 /// (including a best-effort `BasicInformation` `VendorID`/`ProductID`
542 /// capture, exactly as [`Self::commission`]).
543 ///
544 /// `network` selects which provisioning sub-flow runs after `AddNOC`:
545 /// [`NetworkCredentials::WiFi`](matter_commissioning::NetworkCredentials::WiFi)
546 /// or
547 /// [`NetworkCredentials::Thread`](matter_commissioning::NetworkCredentials::Thread).
548 /// Some network credentials are **required** for a BLE-only device with no
549 /// operational connectivity yet — a BLE-only device with no network to
550 /// join is unprovisionable;
551 /// [`NetworkCredentials::AlreadyOnNetwork`](matter_commissioning::NetworkCredentials::AlreadyOnNetwork)
552 /// only makes sense for a device that already has operational connectivity
553 /// independent of BLE (e.g. Ethernet).
554 ///
555 /// **Requires macOS Bluetooth permission (TCC).** The first call
556 /// instantiates `CoreBluetooth` and may raise the one-time Bluetooth prompt,
557 /// attributed to the terminal application — see
558 /// `docs/runbooks/ble-commissioning.md`.
559 ///
560 /// `label` is the same opaque, caller-supplied string as
561 /// [`Self::commission`]'s — persisted on the device's entry atomically
562 /// with the rest of the commissioning result. Pass `None` if you have no
563 /// label to attach yet.
564 ///
565 /// # Errors
566 ///
567 /// [`Error::NoTrust`] if no attestation trust was configured,
568 /// [`Error::SetupCode`] if the code is invalid, [`Error::ControllerStopped`]
569 /// if the task stopped (including a btleplug-internal panic in the spawned
570 /// commission task), [`Error::Operational`] for a BLE-layer failure (no
571 /// adapter / denied permission, scan timeout, connect, GATT, or BTP
572 /// handshake), or any driver/commissioning error.
573 #[cfg(feature = "ble")]
574 pub async fn commission_ble(
575 &self,
576 setup_code: &str,
577 network: matter_commissioning::NetworkCredentials,
578 label: Option<String>,
579 ) -> Result<NodeInfo, Error> {
580 let setup_payload = parse_setup_code(setup_code)?;
581 let (reply, rx) = oneshot::channel();
582 self.tx
583 .send(Command::CommissionBle {
584 setup_payload,
585 network,
586 label,
587 reply,
588 })
589 .await
590 .map_err(|_| Error::ControllerStopped)?;
591 let mut info = rx.await.map_err(|_| Error::ControllerStopped)??;
592 self.capture_basic_info(&mut info).await;
593 Ok(info)
594 }
595
596 /// Best-effort: read `VendorID`/`ProductID` from the device's
597 /// `BasicInformation` cluster (endpoint 0) and persist them onto the node's
598 /// stored entry, filling `info.vendor_id`/`info.product_id`.
599 ///
600 /// Deliberately infallible from the caller's view: commissioning has
601 /// already succeeded and the device is on the fabric, so a flaky metadata
602 /// read (or a device that answers something unexpected) must never turn a
603 /// completed commission into an error. On any failure the ids stay `None`
604 /// and can be re-read later.
605 async fn capture_basic_info(&self, info: &mut NodeInfo) {
606 let node = self.node(info.node_id);
607 let paths = [
608 crate::ReadPath::concrete(0, BASIC_INFORMATION_CLUSTER, BASIC_INFO_ATTR_VENDOR_ID),
609 crate::ReadPath::concrete(0, BASIC_INFORMATION_CLUSTER, BASIC_INFO_ATTR_PRODUCT_ID),
610 ];
611 let Ok(reports) = node.read(&paths).await else {
612 return;
613 };
614 let mut vendor_id = None;
615 let mut product_id = None;
616 for (path, value) in &reports {
617 let crate::Value::Uint(n) = value else {
618 continue;
619 };
620 let Ok(n16) = u16::try_from(*n) else { continue };
621 if path.attribute == BASIC_INFO_ATTR_VENDOR_ID {
622 vendor_id = Some(n16);
623 } else if path.attribute == BASIC_INFO_ATTR_PRODUCT_ID {
624 product_id = Some(n16);
625 }
626 }
627 if vendor_id.is_none() && product_id.is_none() {
628 return;
629 }
630 info.vendor_id = vendor_id;
631 info.product_id = product_id;
632 // Persist best-effort — a store failure here only means a future
633 // `nodes()` re-reads `None`; it does not fail the commission.
634 let (reply, rx) = oneshot::channel();
635 if self
636 .tx
637 .send(Command::SetNodeVidPid {
638 node_id: info.node_id,
639 vendor_id,
640 product_id,
641 reply,
642 })
643 .await
644 .is_ok()
645 {
646 let _ = rx.await;
647 }
648 }
649
650 /// Enumerate every node this controller has commissioned, across all
651 /// fabrics, as typed [`NodeInfo`]. Replaces the need to deserialize the
652 /// on-disk snapshot to discover node ids and metadata.
653 ///
654 /// # Errors
655 ///
656 /// [`Error::ControllerStopped`] if the owning task has stopped.
657 pub async fn nodes(&self) -> Result<Vec<NodeInfo>, Error> {
658 let (reply, rx) = oneshot::channel();
659 self.tx
660 .send(Command::ListNodes { reply })
661 .await
662 .map_err(|_| Error::ControllerStopped)?;
663 rx.await.map_err(|_| Error::ControllerStopped)
664 }
665
666 /// Forget a node: drop ALL of the controller's own state for it — the
667 /// persisted device record, any cached CASE session, and its resumption
668 /// data — WITHOUT contacting the device. Use this to reclaim a node that is
669 /// unreachable or already factory-reset (where `remove_fabric` cannot run).
670 ///
671 /// Returns `true` if a node was found and removed, `false` if no such node
672 /// was commissioned. This does NOT remove the controller's fabric from the
673 /// device; a still-live device keeps its NOC until it is reset or its fabric
674 /// removed via `Node::remove_fabric`.
675 ///
676 /// # Errors
677 ///
678 /// [`Error::ControllerStopped`] if the task stopped, or a store error while
679 /// persisting the removal.
680 pub async fn forget_node(&self, node_id: u64) -> Result<bool, Error> {
681 let (reply, rx) = oneshot::channel();
682 self.tx
683 .send(Command::ForgetNode { node_id, reply })
684 .await
685 .map_err(|_| Error::ControllerStopped)?;
686 rx.await.map_err(|_| Error::ControllerStopped)?
687 }
688
689 /// Handle addressing a device by node id (single-fabric).
690 #[must_use]
691 pub fn node(&self, node_id: u64) -> Node {
692 Node {
693 tx: self.tx.clone(),
694 node_id,
695 }
696 }
697
698 /// Create a group key set on the controller's fabric: mints a fresh 16-byte
699 /// epoch key from the CSPRNG, persists a `GroupKeySetConfig` under
700 /// `key_set_id`, and returns the [`GroupKeySet`](crate::GroupKeySet) so the caller can program
701 /// it onto each member device via
702 /// [`Node::write_group_key_set`](crate::Node::write_group_key_set) and map a
703 /// group to it. The key set is stored durably before this returns, so the
704 /// controller can encrypt outbound group messages for it immediately
705 /// (see [`Self::invoke_group`]).
706 ///
707 /// `epoch_start_time` is the Matter-epoch start time recorded in the
708 /// returned `GroupKeySet` (the device-side `KeySetWrite` echoes it).
709 ///
710 /// # Errors
711 ///
712 /// [`Error::NotCommissioned`] if no single fabric exists,
713 /// [`Error::ControllerStopped`] if the task has stopped, or any
714 /// CSPRNG / persistence error.
715 pub async fn create_group(
716 &self,
717 key_set_id: u16,
718 epoch_start_time: u64,
719 ) -> Result<crate::GroupKeySet, Error> {
720 let (reply, rx) = oneshot::channel();
721 self.tx
722 .send(Command::CreateGroup {
723 key_set_id,
724 epoch_start_time,
725 reply,
726 })
727 .await
728 .map_err(|_| Error::ControllerStopped)?;
729 rx.await.map_err(|_| Error::ControllerStopped)?
730 }
731
732 /// Fire-and-forget multicast group invoke: send `path`/`fields` to every
733 /// device in `group_id`, encrypted with the operational group key derived
734 /// from the persisted `key_set_id`. Returns as soon as the datagram is sent
735 /// — group commands are unacknowledged, so there is no response.
736 ///
737 /// The caller supplies `key_set_id` (the key set the group was bound to when
738 /// it was created): the controller's persisted `group_keys` are keyed by
739 /// key set id, avoiding a separate group→key-set map. The outbound group
740 /// message counter is bumped and persisted **before** the send so a counter
741 /// is never reused across a crash.
742 ///
743 /// Real multicast delivery requires the host network to route the Matter
744 /// site-local group address; on a host without it the send still succeeds at
745 /// the socket layer (the bytes are correct — see the loopback test).
746 ///
747 /// # Errors
748 ///
749 /// [`Error::GroupNotProvisioned`] if `key_set_id` has no persisted key set,
750 /// [`Error::NotCommissioned`] if no single fabric exists,
751 /// [`Error::Operational`] on counter exhaustion or send failure,
752 /// [`Error::ControllerStopped`] if the task has stopped, or any
753 /// crypto / persistence error.
754 pub async fn invoke_group(
755 &self,
756 group_id: u16,
757 key_set_id: u16,
758 path: crate::CommandPath,
759 fields: crate::Value,
760 ) -> Result<(), Error> {
761 let fields_tlv = crate::node::value_to_tlv(&fields)?;
762 let (reply, rx) = oneshot::channel();
763 self.tx
764 .send(Command::InvokeGroup {
765 group_id,
766 key_set_id,
767 path,
768 fields_tlv,
769 reply,
770 })
771 .await
772 .map_err(|_| Error::ControllerStopped)?;
773 rx.await.map_err(|_| Error::ControllerStopped)?
774 }
775
776 #[cfg(test)]
777 pub(crate) async fn session_count(&self) -> usize {
778 let (reply, rx) = oneshot::channel();
779 if self.tx.send(Command::SessionCount { reply }).await.is_err() {
780 return 0;
781 }
782 rx.await.unwrap_or(0)
783 }
784
785 /// Fetch the stored CASE resumption record for `node_id` from the actor's
786 /// live state (deserialized; `None` if the device has none). Used by
787 /// [`Self::serve_ota`] to let the provider server accept the requestor's
788 /// resumption attempt.
789 ///
790 /// # Errors
791 ///
792 /// [`Error::ControllerStopped`] if the owning task stopped,
793 /// [`Error::NotCommissioned`] if no sole fabric exists, or a
794 /// [`Error::Snapshot`]/[`Error::Codec`]/[`Error::Cert`] deserialization
795 /// failure for a corrupt stored record.
796 pub(crate) async fn resumption_record_for(
797 &self,
798 node_id: u64,
799 ) -> Result<Option<matter_crypto::ResumptionRecord>, Error> {
800 let (reply, rx) = oneshot::channel();
801 self.tx
802 .send(Command::ResumptionRecordFor { node_id, reply })
803 .await
804 .map_err(|_| Error::ControllerStopped)?;
805 let bytes = rx.await.map_err(|_| Error::ControllerStopped)??;
806 match bytes {
807 Some(b) => Ok(Some(crate::resumption::deserialize_record(&b)?)),
808 None => Ok(None),
809 }
810 }
811
812 /// Store `record` as the CASE resumption record for `node_id` (replacing
813 /// any prior one; best-effort persist). Invoked by [`Self::serve_ota`]'s
814 /// provider server's `record_sink`, once per completed CASE accept.
815 ///
816 /// # Errors
817 ///
818 /// [`Error::ControllerStopped`] if the owning task stopped,
819 /// [`Error::NotCommissioned`] if no sole fabric exists, or
820 /// [`Error::Operational`] if the device has no entry on the fabric.
821 pub(crate) async fn store_resumption_record(
822 &self,
823 node_id: u64,
824 record: &matter_crypto::ResumptionRecord,
825 ) -> Result<(), Error> {
826 let record_bytes = crate::resumption::serialize_record(record)?;
827 let (reply, rx) = oneshot::channel();
828 self.tx
829 .send(Command::StoreResumptionRecord {
830 node_id,
831 record_bytes,
832 reply,
833 })
834 .await
835 .map_err(|_| Error::ControllerStopped)?;
836 rx.await.map_err(|_| Error::ControllerStopped)?
837 }
838}
839
840/// Parse a QR (`MT:...`) or manual pairing code into a [`matter_commissioning::SetupPayload`].
841///
842/// QR codes are identified by the `MT:` prefix (Matter Core Spec §5.1.3.1).
843/// Anything else is treated as a manual pairing code.
844///
845/// # Errors
846///
847/// Returns [`Error::SetupCode`] if the string is not a valid QR or manual code.
848fn parse_setup_code(code: &str) -> Result<matter_commissioning::SetupPayload, Error> {
849 let trimmed = code.trim();
850 let parsed = if trimmed.starts_with("MT:") {
851 matter_commissioning::parse_qr(trimmed)
852 } else {
853 matter_commissioning::parse_manual_code(trimmed)
854 };
855 parsed.map_err(|e| Error::SetupCode(format!("{e:?}")))
856}