mx_remote/types/status.rs
1// Author: Lars Op den Kamp (lars@opdenkamp-it.nl)
2// Copyright (c) 2026 Op den Kamp IT Solutions
3
4//! Device and bay state.
5
6use core::fmt;
7
8use crate::wire::{BayStatus, BayUid, FirmwareType, MxrSignalType};
9
10/// The high-level state of a device or bay on the network.
11#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
12pub enum DeviceStatus {
13 /// Reachable and reporting.
14 #[default]
15 Online,
16 /// Has stopped answering.
17 Offline,
18 /// Announced a reboot.
19 Rebooting,
20 /// Still coming up.
21 Booting,
22 /// Present but not participating.
23 Inactive,
24}
25
26impl fmt::Display for DeviceStatus {
27 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
28 f.write_str(match self {
29 Self::Online => "Online",
30 Self::Offline => "Offline",
31 Self::Rebooting => "Rebooting",
32 Self::Booting => "Booting",
33 Self::Inactive => "Inactive",
34 })
35 }
36}
37
38/// The CEC power state of a device connected to a bay.
39#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
40pub enum PowerStatus {
41 /// The device has not reported a power state.
42 #[default]
43 Unknown,
44 /// Powered on.
45 On,
46 /// Powered off.
47 Off,
48}
49
50impl fmt::Display for PowerStatus {
51 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
52 f.write_str(match self {
53 Self::On => "on",
54 Self::Off => "off",
55 Self::Unknown => "unknown",
56 })
57 }
58}
59
60/// The connect / signal-detect state reported for a bay.
61#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
62pub enum ConnectStatus {
63 /// The device has not reported a connect state.
64 #[default]
65 Unknown,
66 /// Something is attached.
67 Connected,
68 /// Nothing is attached.
69 Disconnected,
70}
71
72impl fmt::Display for ConnectStatus {
73 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
74 f.write_str(match self {
75 Self::Connected => "connected",
76 Self::Disconnected => "disconnected",
77 Self::Unknown => "unknown",
78 })
79 }
80}
81
82/// The visibility state of a bay.
83#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
84pub enum HiddenStatus {
85 /// The device has not reported a visibility.
86 #[default]
87 Unknown,
88 /// Hidden from the user interface.
89 Hidden,
90 /// Shown in the user interface.
91 Visible,
92}
93
94impl fmt::Display for HiddenStatus {
95 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
96 f.write_str(match self {
97 Self::Hidden => "hidden",
98 Self::Visible => "visible",
99 Self::Unknown => "unknown",
100 })
101 }
102}
103
104/// The value that means "leave this one alone" in a volume or mute field.
105///
106/// It is not a level and not a mute state. A device reads it as "do not
107/// change", and the right channel additionally as "no such channel", so a
108/// decoder that surfaces it as a volume of 255 or as a muted pair reports a
109/// setting the sender was declining to touch.
110pub const VOLUME_UNCHANGED: u8 = 0xFF;
111
112/// The per-channel mute bitfield: bit 0 is left, bit 1 is right.
113#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
114pub struct MuteStatus(u8);
115
116impl MuteStatus {
117 /// Wraps the raw wire byte.
118 pub const fn from_wire(value: u8) -> Self {
119 Self(value)
120 }
121
122 /// Returns the raw wire byte.
123 pub const fn to_wire(self) -> u8 {
124 self.0
125 }
126
127 /// Whether the left channel is muted.
128 pub const fn left(self) -> bool {
129 self.0 & (1 << 0) != 0
130 }
131
132 /// Whether the right channel is muted.
133 pub const fn right(self) -> bool {
134 self.0 & (1 << 1) != 0
135 }
136
137 /// Whether either channel is muted.
138 pub const fn muted(self) -> bool {
139 self.0 != 0
140 }
141}
142
143/// The volume and mute state of a bay.
144///
145/// A `None` field is one the device did not report, which is distinct from a
146/// reported zero.
147#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
148pub struct VolumeMuteStatus {
149 /// Left channel volume, as a percentage.
150 pub volume_left: Option<u8>,
151 /// Right channel volume, as a percentage.
152 pub volume_right: Option<u8>,
153 /// Whether the left channel is muted.
154 pub muted_left: Option<bool>,
155 /// Whether the right channel is muted.
156 pub muted_right: Option<bool>,
157}
158
159impl VolumeMuteStatus {
160 /// The combined left/right volume percentage, or zero when neither channel
161 /// reported one.
162 pub fn volume(&self) -> u8 {
163 match (self.volume_left, self.volume_right) {
164 (Some(l), Some(r)) => ((u16::from(l) + u16::from(r)) / 2) as u8,
165 (Some(l), None) => l,
166 (None, Some(r)) => r,
167 (None, None) => 0,
168 }
169 }
170
171 /// The combined mute state, or `None` when neither channel reported one.
172 pub fn muted(&self) -> Option<bool> {
173 match (self.muted_left, self.muted_right) {
174 (None, None) => None,
175 (l, r) => Some(l.unwrap_or(false) || r.unwrap_or(false)),
176 }
177 }
178
179 /// Encodes the 3-byte `[volume_left, volume_right, muted]` field. A channel
180 /// that reported no volume is sent the combined one.
181 pub(crate) fn wire(&self) -> [u8; 3] {
182 [
183 self.volume_left.unwrap_or_else(|| self.volume()),
184 self.volume_right.unwrap_or_else(|| self.volume()),
185 self.muted_value(),
186 ]
187 }
188
189 /// Encodes the mute field: a per-channel bitmask, or
190 /// [`VOLUME_UNCHANGED`] where neither channel says.
191 ///
192 /// Not knowing is not the same as knowing it is unmuted. Zero is what a
193 /// device is told to unmute by, so sending it for a caller who named no
194 /// mute state would unmute a bay they only meant to set the volume of.
195 fn muted_value(&self) -> u8 {
196 match self.muted() {
197 None => VOLUME_UNCHANGED,
198 Some(false) => 0,
199 Some(true) => match (
200 self.muted_left.unwrap_or(false),
201 self.muted_right.unwrap_or(false),
202 ) {
203 (true, true) => 3,
204 (true, false) => 1,
205 _ => 2,
206 },
207 }
208 }
209}
210
211/// What a bay signal status report carries beyond the signal-detected flag and
212/// the human-readable signal type.
213#[derive(Clone, Copy, Debug, Default, PartialEq)]
214pub struct BaySignalDetails {
215 /// Frame rate in Hz, already corrected for a 1000/1001 clock.
216 pub frame_rate: f64,
217 /// TMDS clock rate in Hz.
218 pub tmds_clock: u32,
219 /// The bay status word from the report's bay block.
220 pub status: BayStatus,
221 /// The signal type the bay is scaling to.
222 pub scaling: MxrSignalType,
223 /// Video clock rate in Hz.
224 pub clock_rate: u32,
225 /// The audio alongside the video, absent when the report carried no audio
226 /// block.
227 pub audio: Option<BayAudioDetails>,
228}
229
230/// The audio a bay signal report describes.
231#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
232pub struct BayAudioDetails {
233 /// How the stream is encoded: 0 unknown, 1 L-PCM, 2 high bit rate.
234 pub format: u8,
235 /// Channel count.
236 pub channels: u8,
237 /// Sample rate in Hz.
238 pub sample_rate: u32,
239 /// The coding type the source claims in its CTA-861 audio infoframe, and
240 /// `None` where it sent no infoframe at all.
241 ///
242 /// The two are worth keeping apart: a source sending no infoframe leaves
243 /// this field zero, and zero is also what a source claiming "refer to the
244 /// stream header" writes into it.
245 pub coding: Option<u8>,
246}
247
248/// A firmware component reported by a device.
249#[derive(Clone, Debug, Default, PartialEq, Eq)]
250pub struct FirmwareVersion {
251 /// Which component this describes.
252 pub firmware_type: FirmwareType,
253 /// Build timestamp, in seconds since the Unix epoch.
254 pub timestamp: u32,
255 /// Human-readable version string.
256 pub version: String,
257 /// Source revision hash.
258 pub hash: u32,
259}
260
261impl fmt::Display for FirmwareVersion {
262 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
263 write!(
264 f,
265 "firmware {} version {} hash {}",
266 self.firmware_type, self.version, self.hash
267 )
268 }
269}
270
271/// Whether an output bay mirrors another device's output, and which one.
272///
273/// The default is "not mirroring".
274#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
275pub struct BayMirrorStatus {
276 /// The bay being mirrored, or `None` when this bay mirrors nothing.
277 pub target: Option<BayUid>,
278}
279
280impl BayMirrorStatus {
281 /// Reports whether this bay mirrors another.
282 pub const fn is_mirroring(&self) -> bool {
283 self.target.is_some()
284 }
285}
286
287/// One device in a topology report.
288#[derive(Clone, Copy, Debug, Default, PartialEq, Eq)]
289pub struct TopologyEntry {
290 /// The device this entry describes.
291 pub uid: crate::wire::DeviceUid,
292 /// Bitmask of the devices it is connected to.
293 pub mask: u32,
294}
295
296/// The audio return channel a bay is carrying.
297#[derive(Clone, Copy, Debug, Default, PartialEq, Eq, PartialOrd, Ord, Hash)]
298pub enum ArcStatus {
299 /// No audio is being returned.
300 #[default]
301 Inactive,
302 /// Returned over HDMI.
303 Hdmi,
304 /// Returned over optical.
305 Optical,
306 /// Returned over analogue.
307 Analog,
308}
309
310impl fmt::Display for ArcStatus {
311 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
312 f.write_str(match self {
313 Self::Inactive => "Inactive",
314 Self::Hdmi => "HDMI",
315 Self::Optical => "optical",
316 Self::Analog => "analog",
317 })
318 }
319}