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mx_remote/wire/
tx.rs

1// Author: Lars Op den Kamp (lars@opdenkamp-it.nl)
2// Copyright (c) 2026 Op den Kamp IT Solutions
3
4//! The transmit path: the protocol-floor gate, and the only way through it.
5
6use std::fmt;
7use std::io;
8
9use super::conn::Conn;
10use super::frame::build_frame;
11use super::opcode::{stamp_for, Opcode};
12use super::uid::DeviceUid;
13
14/// Why a frame was not sent.
15#[derive(Debug)]
16#[non_exhaustive]
17pub enum SendError {
18    /// The addressed device speaks a protocol older than the opcode requires.
19    ///
20    /// A receiver silently drops any frame stamped above its own version, with
21    /// no NAK, so sending anyway would report success and change nothing.
22    ProtocolTooOld {
23        /// Serial number of the addressed device.
24        serial: String,
25        /// The opcode that was refused.
26        opcode: u16,
27        /// The protocol version the device reports.
28        have: u16,
29        /// The version the opcode requires.
30        need: u16,
31    },
32    /// The opcode has no entry in the protocol table, so there is no version
33    /// to stamp it with.
34    ///
35    /// Nothing this library sends can reach this: every opcode it declares has
36    /// an entry, and a test holds that true. It exists so that adding one
37    /// without an entry fails at the send rather than going out stamped with a
38    /// guess.
39    UnknownOpcode {
40        /// The opcode that has no entry.
41        opcode: u16,
42    },
43    /// The client is not connected, because it was never started or has been
44    /// closed.
45    NotConnected,
46    /// The socket write failed.
47    Io(io::Error),
48}
49
50impl fmt::Display for SendError {
51    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
52        match self {
53            Self::ProtocolTooOld {
54                serial,
55                opcode,
56                have,
57                need,
58            } => write!(
59                f,
60                "{serial} reports protocol {have:#04x}, opcode {opcode:#04x} needs {need:#04x}"
61            ),
62            Self::UnknownOpcode { opcode } => {
63                write!(f, "opcode {opcode:#04x} has no protocol table entry")
64            }
65            Self::NotConnected => write!(f, "not connected"),
66            Self::Io(e) => write!(f, "{e}"),
67        }
68    }
69}
70
71impl std::error::Error for SendError {
72    fn source(&self) -> Option<&(dyn std::error::Error + 'static)> {
73        match self {
74            Self::Io(e) => Some(e),
75            _ => None,
76        }
77    }
78}
79
80impl From<io::Error> for SendError {
81    fn from(e: io::Error) -> Self {
82        Self::Io(e)
83    }
84}
85
86/// What the protocol floor is checked against.
87///
88/// A device reports the highest protocol version it can decode in its hello.
89pub(crate) trait ProtocolTarget {
90    /// Serial number, for the error message.
91    fn serial(&self) -> &str;
92    /// The version the device reports, or zero when it has not said.
93    fn supported_protocol(&self) -> u16;
94}
95
96/// Who a frame is addressed to.
97///
98/// Naming the recipient is a separate decision from building the payload,
99/// because the addressed device is a payload uid at an offset that differs per
100/// opcode while the opcode itself sits at a fixed place in the header. This is
101/// an enumeration rather than an `Option` so that a frame with no single
102/// recipient says so, instead of looking like one whose sender did not bother.
103#[derive(Clone, Debug)]
104pub(crate) enum Addressee {
105    /// Addressed to one device, whose protocol floor is checked.
106    Device {
107        /// Serial number, for the error message.
108        serial: String,
109        /// The version the device reports.
110        protocol: u16,
111    },
112    /// No single recipient: discovery, hello, the monitoring pulse and the
113    /// signal-status request that asks every bay on the network to report.
114    Broadcast,
115}
116
117impl Addressee {
118    /// Addresses a frame to a device.
119    pub(crate) fn device(target: &dyn ProtocolTarget) -> Self {
120        Self::Device {
121            serial: target.serial().to_owned(),
122            protocol: target.supported_protocol(),
123        }
124    }
125}
126
127/// A tap on the transmit path.
128#[cfg(test)]
129pub(crate) type TxTap = std::sync::Arc<dyn Fn(&[u8]) + Send + Sync>;
130
131/// The transmit side of a client: the socket, and this client's own identifier.
132///
133/// [`Tx::send`] is the only path from an opcode to the wire. It is the gate
134/// that refuses a frame the target cannot decode, and it can be the gate
135/// because the two things it sits between - the frame constructor and the
136/// socket write - are both private to this module and unreachable from
137/// anywhere else in the crate.
138#[derive(Default)]
139pub(crate) struct Tx {
140    conn: Option<std::sync::Arc<Conn>>,
141    /// Captures each frame that passes the gate. Frames are assembled inside
142    /// the method that sends them and cannot be reached any other way, so this
143    /// is how a test reads back what would go on the wire.
144    #[cfg(test)]
145    tap: Option<TxTap>,
146}
147
148impl Tx {
149    /// Replaces the socket.
150    pub(crate) fn set_conn(&mut self, conn: Option<Conn>) {
151        self.conn = conn.map(std::sync::Arc::new);
152    }
153
154    /// A handle on the socket that outlives this lock.
155    ///
156    /// The receive thread parks in the kernel for as long as its read timeout,
157    /// and must not hold the transmit lock while it does or every send would
158    /// wait behind it. Holding a share of the socket instead also settles what
159    /// a reconfiguration does to a thread already reading: the old socket stays
160    /// open until that read returns, so its descriptor cannot be reissued to
161    /// something else underneath it.
162    pub(crate) fn conn(&self) -> Option<std::sync::Arc<Conn>> {
163        self.conn.clone()
164    }
165
166    #[cfg(test)]
167    pub(crate) fn set_tap(&mut self, tap: TxTap) {
168        self.tap = Some(tap);
169    }
170
171    /// Builds a frame and writes it to the wire, unless `to` cannot decode it.
172    ///
173    /// The frame is stamped with the version the opcode itself needs rather
174    /// than the version this library speaks, so a device that caps lower still
175    /// accepts every opcode it does understand. The gate compares against that
176    /// same stamp: a receiver drops what is stamped above its own version, so
177    /// checking anything else would leave the hole the gate exists to close.
178    pub(crate) fn send(
179        &self,
180        to: &Addressee,
181        uid: DeviceUid,
182        opcode: Opcode,
183        payload: &[u8],
184    ) -> Result<usize, SendError> {
185        let need = stamp_for(opcode).ok_or(SendError::UnknownOpcode { opcode: opcode.0 })?;
186        if let Addressee::Device { serial, protocol } = to {
187            // A device that has not reported a version is let through: not
188            // knowing is not the same as knowing it is too old.
189            if *protocol != 0 && *protocol < need {
190                return Err(SendError::ProtocolTooOld {
191                    serial: serial.clone(),
192                    opcode: opcode.0,
193                    have: *protocol,
194                    need,
195                });
196            }
197        }
198
199        let frame = build_frame(uid, opcode, need, payload);
200        #[cfg(test)]
201        if let Some(tap) = &self.tap {
202            tap(&frame);
203        }
204        let conn = self.conn.as_ref().ok_or(SendError::NotConnected)?;
205        Ok(conn.send(&frame)?)
206    }
207}