net-ppp: take serial port and config in run(), allow calling it multiple times.
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2303382dfd
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@ -74,6 +74,18 @@ impl<'d, const MTU: usize> Runner<'d, MTU> {
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)
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)
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}
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}
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pub fn borrow_split(&mut self) -> (StateRunner<'_>, RxRunner<'_, MTU>, TxRunner<'_, MTU>) {
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(
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StateRunner { shared: self.shared },
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RxRunner {
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rx_chan: self.rx_chan.borrow(),
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},
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TxRunner {
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tx_chan: self.tx_chan.borrow(),
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},
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)
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}
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pub fn state_runner(&self) -> StateRunner<'d> {
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pub fn state_runner(&self) -> StateRunner<'d> {
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StateRunner { shared: self.shared }
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StateRunner { shared: self.shared }
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}
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}
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@ -13,6 +13,7 @@ use embassy_net_driver_channel as ch;
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use embassy_net_driver_channel::driver::LinkState;
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use embassy_net_driver_channel::driver::LinkState;
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use embedded_io_async::{BufRead, Write, WriteAllError};
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use embedded_io_async::{BufRead, Write, WriteAllError};
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use ppproto::pppos::{BufferFullError, PPPoS, PPPoSAction};
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use ppproto::pppos::{BufferFullError, PPPoS, PPPoSAction};
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pub use ppproto::Config;
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const MTU: usize = 1500;
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const MTU: usize = 1500;
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@ -36,37 +37,44 @@ impl<const N_RX: usize, const N_TX: usize> State<N_RX, N_TX> {
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/// Background runner for the driver.
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/// Background runner for the driver.
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///
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///
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/// You must call `.run()` in a background task for the driver to operate.
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/// You must call `.run()` in a background task for the driver to operate.
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pub struct Runner<'d, R: BufRead, W: Write> {
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pub struct Runner<'d> {
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ch: ch::Runner<'d, MTU>,
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ch: ch::Runner<'d, MTU>,
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r: R,
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w: W,
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}
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}
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/// Error returned by [`Runner::run`].
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/// Error returned by [`Runner::run`].
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#[derive(Debug)]
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#[derive(Debug)]
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#[cfg_attr(feature = "defmt", derive(defmt::Format))]
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#[cfg_attr(feature = "defmt", derive(defmt::Format))]
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pub enum RunError<RE, WE> {
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pub enum RunError<E> {
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/// Reading from the serial port failed.
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/// Reading from the serial port failed.
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Read(RE),
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Read(E),
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/// Writing to the serial port failed.
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/// Writing to the serial port failed.
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Write(WE),
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Write(E),
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/// Writing to the serial port wrote zero bytes, indicating it can't accept more data.
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/// Writing to the serial port wrote zero bytes, indicating it can't accept more data.
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WriteZero,
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WriteZero,
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/// Writing to the serial got EOF.
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/// Writing to the serial got EOF.
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Eof,
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Eof,
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}
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}
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impl<'d, R: BufRead, W: Write> Runner<'d, R, W> {
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impl<'d> Runner<'d> {
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/// You must call this in a background task for the driver to operate.
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/// You must call this in a background task for the driver to operate.
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pub async fn run(mut self) -> Result<Infallible, RunError<R::Error, W::Error>> {
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///
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let config = ppproto::Config {
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/// If reading/writing to the underlying serial port fails, the link state
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username: b"myuser",
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/// is set to Down and the error is returned.
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password: b"mypass",
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///
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};
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/// It is allowed to cancel this function's future (i.e. drop it). This will terminate
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/// the PPP connection and set the link state to Down.
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///
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/// After this function returns or is canceled, you can call it again to establish
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/// a new PPP connection.
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pub async fn run<RW: BufRead + Write>(
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&mut self,
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mut rw: RW,
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config: ppproto::Config<'_>,
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) -> Result<Infallible, RunError<RW::Error>> {
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let mut ppp = PPPoS::new(config);
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let mut ppp = PPPoS::new(config);
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ppp.open().unwrap();
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ppp.open().unwrap();
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let (state_chan, mut rx_chan, mut tx_chan) = self.ch.split();
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let (state_chan, mut rx_chan, mut tx_chan) = self.ch.borrow_split();
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state_chan.set_link_state(LinkState::Down);
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state_chan.set_link_state(LinkState::Down);
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let _ondrop = OnDrop::new(|| state_chan.set_link_state(LinkState::Down));
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let _ondrop = OnDrop::new(|| state_chan.set_link_state(LinkState::Down));
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@ -80,7 +88,7 @@ impl<'d, R: BufRead, W: Write> Runner<'d, R, W> {
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let buf = rx_chan.rx_buf().await;
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let buf = rx_chan.rx_buf().await;
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let rx_data = match needs_poll {
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let rx_data = match needs_poll {
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true => &[][..],
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true => &[][..],
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false => match self.r.fill_buf().await {
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false => match rw.fill_buf().await {
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Ok(rx_data) if rx_data.len() == 0 => return Err(RunError::Eof),
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Ok(rx_data) if rx_data.len() == 0 => return Err(RunError::Eof),
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Ok(rx_data) => rx_data,
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Ok(rx_data) => rx_data,
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Err(e) => return Err(RunError::Read(e)),
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Err(e) => return Err(RunError::Read(e)),
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@ -95,7 +103,7 @@ impl<'d, R: BufRead, W: Write> Runner<'d, R, W> {
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let (buf, rx_data) = r?;
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let (buf, rx_data) = r?;
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let n = ppp.consume(rx_data, &mut rx_buf);
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let n = ppp.consume(rx_data, &mut rx_buf);
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self.r.consume(n);
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rw.consume(n);
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match ppp.poll(&mut tx_buf, &mut rx_buf) {
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match ppp.poll(&mut tx_buf, &mut rx_buf) {
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PPPoSAction::None => {}
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PPPoSAction::None => {}
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@ -104,7 +112,7 @@ impl<'d, R: BufRead, W: Write> Runner<'d, R, W> {
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buf[..pkt.len()].copy_from_slice(pkt);
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buf[..pkt.len()].copy_from_slice(pkt);
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rx_chan.rx_done(pkt.len());
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rx_chan.rx_done(pkt.len());
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}
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}
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PPPoSAction::Transmit(n) => match self.w.write_all(&tx_buf[..n]).await {
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PPPoSAction::Transmit(n) => match rw.write_all(&tx_buf[..n]).await {
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Ok(()) => {}
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Ok(()) => {}
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Err(WriteAllError::WriteZero) => return Err(RunError::WriteZero),
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Err(WriteAllError::WriteZero) => return Err(RunError::WriteZero),
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Err(WriteAllError::Other(e)) => return Err(RunError::Write(e)),
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Err(WriteAllError::Other(e)) => return Err(RunError::Write(e)),
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@ -118,7 +126,7 @@ impl<'d, R: BufRead, W: Write> Runner<'d, R, W> {
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}
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}
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Either::Second(pkt) => {
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Either::Second(pkt) => {
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match ppp.send(pkt, &mut tx_buf) {
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match ppp.send(pkt, &mut tx_buf) {
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Ok(n) => match self.w.write_all(&tx_buf[..n]).await {
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Ok(n) => match rw.write_all(&tx_buf[..n]).await {
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Ok(()) => {}
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Ok(()) => {}
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Err(WriteAllError::WriteZero) => return Err(RunError::WriteZero),
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Err(WriteAllError::WriteZero) => return Err(RunError::WriteZero),
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Err(WriteAllError::Other(e)) => return Err(RunError::Write(e)),
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Err(WriteAllError::Other(e)) => return Err(RunError::Write(e)),
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@ -137,13 +145,9 @@ impl<'d, R: BufRead, W: Write> Runner<'d, R, W> {
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/// This returns two structs:
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/// This returns two structs:
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/// - a `Device` that you must pass to the `embassy-net` stack.
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/// - a `Device` that you must pass to the `embassy-net` stack.
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/// - a `Runner`. You must call `.run()` on it in a background task.
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/// - a `Runner`. You must call `.run()` on it in a background task.
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pub fn new<'a, const N_RX: usize, const N_TX: usize, R: BufRead, W: Write>(
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pub fn new<'a, const N_RX: usize, const N_TX: usize>(state: &'a mut State<N_RX, N_TX>) -> (Device<'a>, Runner<'a>) {
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state: &'a mut State<N_RX, N_TX>,
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r: R,
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w: W,
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) -> (Device<'a>, Runner<'a, R, W>) {
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let (runner, device) = ch::new(&mut state.ch_state, ch::driver::HardwareAddress::Ip);
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let (runner, device) = ch::new(&mut state.ch_state, ch::driver::HardwareAddress::Ip);
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(device, Runner { ch: runner, r, w })
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(device, Runner { ch: runner })
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}
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}
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struct OnDrop<F: FnOnce()> {
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struct OnDrop<F: FnOnce()> {
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