hidpp/receiver/unifying.rs
1//! Implements the Unifying Receiver.
2//!
3//! Unifying is a versatile receiver that can pair up to 6 devices using the
4//! 2.4 GHz eQuad radio protocol. It uses HID++ 1.0 registers for receiver
5//! control; paired devices speak HID++ 2.0 once addressed via their slot index.
6//!
7//! The register layout for device enumeration (`0xB5/0x5N`, `0xB5/0x6N`) is
8//! identical to Bolt's. The device-kind encoding differs from Bolt at values 5+
9//! (see [`DeviceKind`]).
10
11use std::sync::Arc;
12
13use num_enum::{FromPrimitive, IntoPrimitive, TryFromPrimitive};
14
15use crate::{
16 channel::{HidppChannel, MessageListenerGuard},
17 emitter::EventEmitter,
18 protocol::v10,
19 receiver::{RECEIVER_DEVICE_INDEX, ReceiverError},
20};
21
22/// All USB vendor & product ID pairs that are known to identify Unifying
23/// receivers.
24///
25/// `046d:c537` is the Nano receiver bundled with the G602;
26/// `046d:c539` is the Lightspeed gaming receiver; `046d:c53f` is the Lightspeed
27/// nano receiver (bundled with G-series wireless mice such as the G305);
28/// `046d:c547` is the Lightspeed receiver bundled with newer G-series devices
29/// such as the G915 keyboard and the G502 X LIGHTSPEED; `046d:c54d` ships with
30/// the PRO X SUPERLIGHT 2 DEX. All answer the same
31/// HID++ 1.0 registers (pairing count, connection state, pairing information)
32/// as Unifying receivers. Callers that surface a user-facing receiver name
33/// label Lightspeed PIDs separately (see `openlogi-hid`).
34/// `0xc53f` was verified against a G305 (paired device wpid `0x4074`);
35/// `0xc547` against a G915 (paired device wpid `0x407c`); `0xc54d` against a
36/// PRO X SUPERLIGHT 2 DEX.
37pub const VPID_PAIRS: &[(u16, u16)] = &[
38 (0x046d, 0xc52b),
39 (0x046d, 0xc532),
40 (0x046d, 0xc537),
41 (0x046d, 0xc539),
42 (0x046d, 0xc53f),
43 (0x046d, 0xc547),
44 (0x046d, 0xc54d),
45];
46
47/// All known registers of the Unifying receiver.
48#[derive(Clone, Copy, PartialEq, Eq, Hash, Debug, IntoPrimitive, TryFromPrimitive)]
49#[cfg_attr(feature = "serde", derive(serde::Serialize))]
50#[non_exhaustive]
51#[repr(u8)]
52pub enum Register {
53 /// Controls which notifications the receiver emits. Wireless device-arrival
54 /// (`0x41`) events are only re-broadcast while wireless notifications are
55 /// enabled here; see [`Receiver::set_wireless_notifications`].
56 Notifications = 0x00,
57
58 /// Enables or disables wireless device-connection notifications; also used
59 /// to read the pairing count and to trigger device-arrival events.
60 Connections = 0x02,
61
62 /// Provides information about the receiver and paired devices. It uses
63 /// sub-registers, as defined in [`InfoSubRegister`], to differentiate
64 /// between different kinds of information.
65 ReceiverInfo = 0xb5,
66}
67
68/// Represents the known sub-registers of the [`Register::ReceiverInfo`]
69/// register.
70#[derive(Clone, Copy, PartialEq, Eq, Hash, Debug, IntoPrimitive, TryFromPrimitive)]
71#[cfg_attr(feature = "serde", derive(serde::Serialize))]
72#[non_exhaustive]
73#[repr(u8)]
74pub enum InfoSubRegister {
75 /// Provides general information about the receiver (serial number, pairing
76 /// slot count).
77 ReceiverInfo = 0x03,
78
79 /// Provides information about a specific paired device. The device index
80 /// (4 bits) must be added to this base address to form the actual
81 /// sub-register: `0x50 | (device_index & 0x0f)`.
82 DevicePairingInformation = 0x50,
83
84 /// Provides the codename of a specific paired device. The device index (4
85 /// bits) must be added: `0x60 | (device_index & 0x0f)`.
86 ///
87 /// NOTE: `0x60` is the *Bolt* base. Wire-verified Unifying receivers store
88 /// names at base `0x40 + (n-1)` instead, so name reads go directly through
89 /// `read_codename_unifying` in `inventory.rs` rather than this constant —
90 /// don't reuse `DeviceCodename` for Unifying name reads.
91 DeviceCodename = 0x60,
92}
93
94/// Implements the Unifying wireless receiver.
95#[derive(Clone)]
96pub struct Receiver {
97 chan: Arc<HidppChannel>,
98 emitter: Arc<EventEmitter<Event>>,
99 _listener: Arc<MessageListenerGuard>,
100}
101
102impl Receiver {
103 /// Tries to initialize a new [`Receiver`] from a raw HID++ channel.
104 ///
105 /// Returns [`ReceiverError::UnknownReceiver`] when the channel's VID/PID
106 /// doesn't match any known Unifying receiver.
107 pub fn new(chan: Arc<HidppChannel>) -> Result<Self, ReceiverError> {
108 if !VPID_PAIRS.contains(&(chan.vendor_id, chan.product_id)) {
109 return Err(ReceiverError::UnknownReceiver);
110 }
111
112 let emitter = Arc::new(EventEmitter::new());
113
114 let listener = chan.add_msg_listener_guarded({
115 let emitter = Arc::clone(&emitter);
116 move |raw, matched| {
117 // A report already matched to an outgoing request is a
118 // response, not a notification.
119 if matched {
120 return;
121 }
122
123 if let Some(event) = decode_notification(&v10::Message::from(raw)) {
124 emitter.emit(event);
125 }
126 }
127 });
128
129 Ok(Receiver {
130 _listener: Arc::new(listener),
131 chan,
132 emitter,
133 })
134 }
135
136 /// Creates a new listener for receiving receiver events.
137 #[must_use]
138 pub fn listen(&self) -> async_channel::Receiver<Event> {
139 self.emitter.create_receiver()
140 }
141
142 /// Counts the number of devices currently paired to this receiver.
143 /// Offline (sleeping) devices are included since pairings are persistent.
144 pub async fn count_pairings(&self) -> Result<u8, ReceiverError> {
145 let response = self
146 .chan
147 .read_register(
148 RECEIVER_DEVICE_INDEX,
149 Register::Connections.into(),
150 [0u8; 3],
151 )
152 .await?;
153
154 Ok(response[1])
155 }
156
157 /// Enables or disables wireless device-connection notifications.
158 ///
159 /// The receiver only re-broadcasts `0x41` device-arrival events (the source
160 /// for [`Self::trigger_device_arrival`]) while this is on. With it off the
161 /// trigger write is ACK'd but emits nothing — which is why a paired, online
162 /// device can fail to enumerate. Solaar enables this before listing.
163 ///
164 /// Read-modify-write of just the `WIRELESS` bit so it can't clobber other
165 /// flags already set on register `0x00` — notably `SOFTWARE_PRESENT` (0x08),
166 /// which the pairing flow enables (`pairing.rs` writes `[0x00, 0x09, 0x00]`)
167 /// and a concurrent inventory poll would otherwise drop.
168 pub async fn set_wireless_notifications(&self, enabled: bool) -> Result<(), ReceiverError> {
169 // Notification flags are a 3-byte big-endian word; the receiver-reporting
170 // bits live in byte 1 (WIRELESS = 0x000100, SOFTWARE_PRESENT = 0x000800).
171 const WIRELESS: u8 = 0x01;
172 let mut flags = self
173 .chan
174 .read_register(
175 RECEIVER_DEVICE_INDEX,
176 Register::Notifications.into(),
177 [0; 3],
178 )
179 .await?;
180 if enabled {
181 flags[1] |= WIRELESS;
182 } else {
183 flags[1] &= !WIRELESS;
184 }
185 self.chan
186 .write_register(RECEIVER_DEVICE_INDEX, Register::Notifications.into(), flags)
187 .await?;
188
189 Ok(())
190 }
191
192 /// Triggers device-arrival notifications for all currently connected
193 /// devices. Used to enumerate online devices at startup.
194 pub async fn trigger_device_arrival(&self) -> Result<(), ReceiverError> {
195 self.chan
196 .write_register(
197 RECEIVER_DEVICE_INDEX,
198 Register::Connections.into(),
199 [0x02, 0x00, 0x00],
200 )
201 .await?;
202
203 Ok(())
204 }
205
206 /// Provides general information about the receiver (serial number and
207 /// pairing slot count).
208 pub async fn get_receiver_info(&self) -> Result<ReceiverInfo, ReceiverError> {
209 let response = self
210 .chan
211 .read_long_register(
212 RECEIVER_DEVICE_INDEX,
213 Register::ReceiverInfo.into(),
214 [InfoSubRegister::ReceiverInfo.into(), 0, 0],
215 )
216 .await?;
217
218 Ok(ReceiverInfo {
219 serial_number: hex::encode_upper(&response[1..=4]),
220 pairing_slots: response[6],
221 })
222 }
223
224 /// Retrieves the pairing information for the device at `device_index`
225 /// (1-based slot number).
226 pub async fn get_device_pairing_information(
227 &self,
228 device_index: u8,
229 ) -> Result<DevicePairingInformation, ReceiverError> {
230 let response = self
231 .chan
232 .read_long_register(
233 RECEIVER_DEVICE_INDEX,
234 Register::ReceiverInfo.into(),
235 [
236 u8::from(InfoSubRegister::DevicePairingInformation) | (device_index & 0x0f),
237 0x00,
238 0x00,
239 ],
240 )
241 .await?;
242
243 Ok(DevicePairingInformation {
244 wpid: u16::from_le_bytes([response[2], response[3]]),
245 // Kind is identity-only: an unrecognised nibble folds to
246 // `Unknown` instead of failing the whole pairing-info read.
247 kind: DeviceKind::from(response[1] & 0x0f),
248 encrypted: response[1] & (1 << 4) != 0,
249 online: response[1] & (1 << 6) == 0,
250 unit_id: [response[4], response[5], response[6], response[7]],
251 })
252 }
253
254 /// Provides the unique ID of the receiver (serial number).
255 pub async fn get_unique_id(&self) -> Result<String, ReceiverError> {
256 self.get_receiver_info().await.map(|i| i.serial_number)
257 }
258}
259
260/// The sub-id of the only notification this receiver emits: a paired device
261/// came online.
262const DEVICE_CONNECTION_SUB_ID: u8 = 0x41;
263
264/// Decodes an unsolicited receiver message into the event it carries, or
265/// `None` for a report this crate does not model.
266///
267/// Kept separate from the message listener in [`Receiver::new`] so the wire
268/// layout is reachable from tests without a HID channel behind it.
269fn decode_notification(msg: &v10::Message) -> Option<Event> {
270 let header = msg.header();
271 if header.sub_id != DEVICE_CONNECTION_SUB_ID {
272 return None;
273 }
274 let payload = msg.extend_payload();
275
276 // A connection notification is addressed to the device's own slot, which
277 // is the only place that index is reported.
278 Some(Event::DeviceConnection(DeviceConnection {
279 index: header.device_index,
280 // Kind is identity-only; an unrecognised nibble folds to `Unknown` —
281 // dropping the event would hide the device entirely, since arrival
282 // notifications are the only device source on this path.
283 kind: DeviceKind::from(payload[1] & 0x0f),
284 encrypted: payload[1] & (1 << 4) != 0,
285 online: payload[1] & (1 << 6) == 0,
286 wpid: u16::from_le_bytes([payload[2], payload[3]]),
287 }))
288}
289
290/// Represents some general information about a Unifying receiver.
291#[derive(Clone, PartialEq, Eq, Hash, Debug)]
292#[cfg_attr(feature = "serde", derive(serde::Serialize))]
293#[non_exhaustive]
294pub struct ReceiverInfo {
295 /// Receiver serial number.
296 pub serial_number: String,
297 /// Number of available pairing slots.
298 pub pairing_slots: u8,
299}
300
301/// Represents information about a paired device as read from the pairing
302/// register.
303#[derive(Clone, Copy, PartialEq, Eq, Hash, Debug)]
304#[cfg_attr(feature = "serde", derive(serde::Serialize))]
305#[non_exhaustive]
306pub struct DevicePairingInformation {
307 /// Wireless product ID of the paired device.
308 pub wpid: u16,
309 /// Device kind reported by the receiver.
310 pub kind: DeviceKind,
311 /// Whether the link is encrypted.
312 pub encrypted: bool,
313 /// Whether the device is currently online.
314 pub online: bool,
315 /// Device unit ID.
316 pub unit_id: [u8; 4],
317}
318
319/// Represents the kind of a device paired to a Unifying receiver.
320///
321/// The encoding matches Bolt for values 1–4; from 5 onwards Unifying uses a
322/// shifted table (Remote=5, Trackball=6, Touchpad=7) while Bolt reserves those
323/// values and places them at 7–9.
324#[derive(Clone, Copy, PartialEq, Eq, Hash, Debug, IntoPrimitive, FromPrimitive)]
325#[cfg_attr(feature = "serde", derive(serde::Serialize))]
326#[non_exhaustive]
327#[repr(u8)]
328pub enum DeviceKind {
329 /// Unknown device kind — also the fold target for values this crate
330 /// does not model (kind is identity-only and must never drop an event).
331 #[num_enum(default)]
332 Unknown = 0x00,
333 /// Keyboard device.
334 Keyboard = 0x01,
335 /// Mouse device.
336 Mouse = 0x02,
337 /// Numeric keypad device.
338 Numpad = 0x03,
339 /// Presenter device.
340 Presenter = 0x04,
341 /// Remote-control device.
342 Remote = 0x05,
343 /// Trackball device.
344 Trackball = 0x06,
345 /// Touchpad device.
346 Touchpad = 0x07,
347}
348
349/// Represents a device-connection event fired by the receiver when a paired
350/// device comes online (or in response to [`Receiver::trigger_device_arrival`]).
351#[derive(Clone, Copy, PartialEq, Eq, Hash, Debug)]
352#[cfg_attr(feature = "serde", derive(serde::Serialize))]
353#[non_exhaustive]
354pub struct DeviceConnection {
355 /// Slot index (1-based) of the device.
356 pub index: u8,
357 /// Device kind reported by the receiver.
358 pub kind: DeviceKind,
359 /// Whether the link is encrypted.
360 pub encrypted: bool,
361 /// Whether the device is currently online.
362 pub online: bool,
363 /// Wireless product ID of the device.
364 pub wpid: u16,
365}
366
367/// Represents an event emitted by the Unifying receiver.
368#[derive(Clone, PartialEq, Eq, Hash, Debug)]
369#[cfg_attr(feature = "serde", derive(serde::Serialize))]
370#[non_exhaustive]
371pub enum Event {
372 /// Fired whenever a paired device connects or reconnects, and for all
373 /// online devices in response to [`Receiver::trigger_device_arrival`].
374 DeviceConnection(DeviceConnection),
375}
376
377#[cfg(test)]
378mod tests {
379 use super::{DeviceConnection, DeviceKind, Event, decode_notification};
380 use crate::protocol::v10::{Message, MessageHeader};
381
382 /// Builds the long notification the receiver broadcasts, with `payload`
383 /// laid out exactly as the 17 bytes following the header.
384 fn notification(device_index: u8, sub_id: u8, payload: [u8; 17]) -> Message {
385 Message::Long(
386 MessageHeader {
387 device_index,
388 sub_id,
389 },
390 payload,
391 )
392 }
393
394 #[test]
395 fn device_connection_reads_the_slot_from_the_header() {
396 // The header byte is the only place the slot is reported.
397 let mut payload = [0u8; 17];
398 payload[1] = 0x02; // mouse, not encrypted, online
399 payload[2] = 0x74;
400 payload[3] = 0x40;
401
402 assert_eq!(
403 decode_notification(¬ification(5, 0x41, payload)).unwrap(),
404 Event::DeviceConnection(DeviceConnection {
405 index: 5,
406 kind: DeviceKind::Mouse,
407 encrypted: false,
408 online: true,
409 wpid: 0x4074,
410 })
411 );
412 }
413
414 #[test]
415 fn encryption_sits_on_bit_4_unlike_bolt() {
416 // Unifying reports link encryption on bit 4; Bolt uses bit 5. Reading
417 // Bolt's bit here would report every encrypted link as plaintext.
418 let connection = |status: u8| {
419 let mut payload = [0u8; 17];
420 payload[1] = status;
421 match decode_notification(¬ification(1, 0x41, payload)) {
422 Some(Event::DeviceConnection(connection)) => connection,
423 other => panic!("expected a device connection, got {other:?}"),
424 }
425 };
426
427 assert!(connection(1 << 4).encrypted);
428 assert!(!connection(1 << 5).encrypted);
429 }
430
431 #[test]
432 fn bit_6_is_set_when_the_device_is_offline() {
433 let mut payload = [0u8; 17];
434 payload[1] = 1 << 6;
435
436 let Some(Event::DeviceConnection(connection)) =
437 decode_notification(¬ification(1, 0x41, payload))
438 else {
439 panic!("expected a device connection");
440 };
441 assert!(!connection.online);
442 }
443
444 #[test]
445 fn device_kind_uses_the_unifying_table_not_bolts() {
446 // Unifying and Bolt agree up to 4 and diverge from 5 on: `5` is a
447 // remote here but reserved on Bolt, which places its remote at 7.
448 let kind = |nibble: u8| {
449 let mut payload = [0u8; 17];
450 payload[1] = nibble;
451 match decode_notification(¬ification(1, 0x41, payload)) {
452 Some(Event::DeviceConnection(connection)) => connection.kind,
453 other => panic!("expected a device connection, got {other:?}"),
454 }
455 };
456
457 assert_eq!(kind(0x05), DeviceKind::Remote);
458 assert_eq!(kind(0x06), DeviceKind::Trackball);
459 assert_eq!(kind(0x07), DeviceKind::Touchpad);
460 }
461
462 #[test]
463 fn unmodelled_device_kind_folds_to_unknown_instead_of_dropping_the_event() {
464 // Losing the event would hide the device from enumeration entirely,
465 // and arrival notifications are the only device source on this path.
466 let mut payload = [0u8; 17];
467 payload[1] = 0x0d;
468
469 let Some(Event::DeviceConnection(connection)) =
470 decode_notification(¬ification(1, 0x41, payload))
471 else {
472 panic!("an unknown kind must still produce an event");
473 };
474 assert_eq!(connection.kind, DeviceKind::Unknown);
475 }
476
477 #[test]
478 fn other_sub_ids_are_dropped() {
479 assert_eq!(decode_notification(¬ification(1, 0x40, [0u8; 17])), None);
480 assert_eq!(decode_notification(¬ification(1, 0x4f, [0u8; 17])), None);
481 }
482
483 #[test]
484 fn short_notifications_decode_from_the_zero_padded_payload() {
485 let short = Message::Short(
486 MessageHeader {
487 device_index: 2,
488 sub_id: 0x41,
489 },
490 [0x00, 0x01, 0x74, 0x40],
491 );
492
493 assert_eq!(
494 decode_notification(&short).unwrap(),
495 Event::DeviceConnection(DeviceConnection {
496 index: 2,
497 kind: DeviceKind::Keyboard,
498 encrypted: false,
499 online: true,
500 wpid: 0x4074,
501 })
502 );
503 }
504}