2024-01-31 17:16:10 +08:00
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use crate::device::sys_timer;
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2024-02-02 14:07:25 +08:00
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use core::cell::RefCell;
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use cortex_m::interrupt::{CriticalSection, Mutex};
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2024-01-31 17:16:10 +08:00
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use log::{debug, info, warn};
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use smoltcp::{
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iface::{
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self, Interface, SocketHandle, SocketSet, SocketStorage
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},
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socket::tcp::{State, SocketBuffer, Socket},
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wire::{EthernetAddress, IpAddress, IpCidr, Ipv4Address, Ipv4Cidr},
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time::Instant,
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};
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use stm32_eth::{
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Parts, EthPins, PartsIn,
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dma::{
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TxRingEntry, RxRingEntry, EthernetDMA
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}};
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use stm32f4xx_hal::{
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gpio::{gpioa::*, gpiob::*, gpioc::*, Alternate, Input},
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rcc::Clocks,
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interrupt,
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};
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const IPV4_ADDR: (u8, u8, u8, u8) = (192, 168, 1, 132);
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const IP_INIT: IpCidr = IpCidr::Ipv4(Ipv4Cidr::new(
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Ipv4Address::new(IPV4_ADDR.0, IPV4_ADDR.1, IPV4_ADDR.2, IPV4_ADDR.3),
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24,
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));
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const ADDRESS: (IpAddress, u16) = (
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IpAddress::Ipv4(Ipv4Address::new(
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IPV4_ADDR.0,
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IPV4_ADDR.1,
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IPV4_ADDR.2,
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IPV4_ADDR.3,
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)),
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1337,
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);
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const MAC: [u8; 6] = [0x02, 0x5f, 0x25, 0x37, 0x93, 0x0e];
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2024-02-02 14:07:25 +08:00
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/// Interrupt pending flag: set by the `ETH` interrupt handler, should
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/// be cleared before polling the interface.
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static NET_PENDING: Mutex<RefCell<bool>> = Mutex::new(RefCell::new(false));
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static mut INCOMING_BYTE: [u8; 512] = [0; 512];
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2024-01-31 17:16:10 +08:00
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pub struct ServerHandle {
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socket_handle: SocketHandle,
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socket_set: SocketSet<'static>,
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iface: EthInterface,
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dma: EthernetDMA<'static, 'static>,
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}
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pub type EthernetPins =
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EthPins<PA1<Input>, PA7<Input>, PB11<Input>, PB12<Input>, PB13<Input>, PC4<Input>, PC5<Input>>;
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pub struct EthernetMgmtPins {
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pub mdio: PA2<Alternate<11>>,
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pub mdc: PC1<Alternate<11>>,
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}
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pub type EthInterface = Interface;
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static mut RX_RING: Option<[RxRingEntry; 8]> = None;
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static mut TX_RING: Option<[TxRingEntry; 2]> = None;
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static mut SOCKET_STORAGE: Option<[SocketStorage<'static>; 1]> = None;
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static mut TCP_SOCKET_STORAGE : Option<TcpSocketStorage> = None;
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#[derive(Copy, Clone)]
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pub struct TcpSocketStorage {
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rx_storage: [u8; 2048],
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tx_storage: [u8; 2048],
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}
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impl TcpSocketStorage {
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const fn new() -> Self {
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Self {
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rx_storage: [0; 2048],
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tx_storage: [0; 2048],
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}
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}
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}
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fn now_fn() -> smoltcp::time::Instant {
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Instant::from_millis(i64::from(sys_timer::now()))
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}
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static mut SERVER_HANDLE : Option<ServerHandle> = None;
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impl ServerHandle {
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pub fn new (eth_pins: EthernetPins,
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eth_mgmt_pins: EthernetMgmtPins,
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ethernet_parts_in: PartsIn,
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clocks: Clocks,
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) {
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let rx_ring = unsafe { RX_RING.get_or_insert(Default::default()) };
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let tx_ring = unsafe { TX_RING.get_or_insert(Default::default()) };
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let tcp_socket_storage = unsafe { TCP_SOCKET_STORAGE.get_or_insert(TcpSocketStorage::new()) };
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let socket_storage = unsafe { SOCKET_STORAGE.get_or_insert([SocketStorage::EMPTY; 1]) };
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let Parts {
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mut dma,
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mac,
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#[cfg(feature = "ptp")]
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..
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} = stm32_eth::new_with_mii(
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ethernet_parts_in,
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&mut rx_ring[..],
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&mut tx_ring[..],
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clocks,
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eth_pins,
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eth_mgmt_pins.mdio,
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eth_mgmt_pins.mdc
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).unwrap();
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let mut routes = smoltcp::iface::Routes::new();
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routes
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.add_default_ipv4_route(Ipv4Address::new(192, 168, 1, 1))
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.ok();
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dma.enable_interrupt();
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let rx_buffer = SocketBuffer::new(&mut tcp_socket_storage.rx_storage[..]);
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let tx_buffer = SocketBuffer::new(&mut tcp_socket_storage.tx_storage[..]);
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let socket = Socket::new(rx_buffer, tx_buffer);
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let config = iface::Config::new(EthernetAddress::from_bytes(&MAC).into());
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let mut iface = Interface::new(config, &mut &mut dma, smoltcp::time::Instant::ZERO);
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iface.set_hardware_addr(EthernetAddress(MAC).into());
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iface.update_ip_addrs(|addr| {
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addr.push(IP_INIT).unwrap();
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});
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let mut sockets = SocketSet::new(&mut socket_storage[..]);
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let tcp_handle = sockets.add(socket);
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let socket = sockets.get_mut::<Socket>(tcp_handle);
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socket.listen(ADDRESS).ok();
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iface.poll(Instant::from_millis(i64::from(sys_timer::now())), &mut &mut dma, &mut sockets);
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let server = ServerHandle {
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socket_handle: tcp_handle,
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socket_set: sockets,
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iface: iface,
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dma: dma,
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};
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if let Ok(mut phy) = EthernetPhy::from_miim(mac, 0) {
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info!(
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"Resetting PHY as an extra step. Type: {}",
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phy.ident_string()
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);
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phy.phy_init();
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} else {
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info!("Not resetting unsupported PHY.");
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}
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unsafe {
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SERVER_HANDLE = Some(server);
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}
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}
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2024-02-02 14:07:25 +08:00
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pub fn echo(&mut self, buffer: &mut [u8]) {
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2024-01-31 17:16:10 +08:00
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self.iface.poll(now_fn(), &mut &mut self.dma, &mut self.socket_set);
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let socket = self.socket_set.get_mut::<Socket>(self.socket_handle);
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if let Ok(recv_bytes) = socket.recv_slice(buffer) {
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if recv_bytes > 0 {
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socket.send_slice(&buffer[..recv_bytes]).ok();
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info!("Echoed {} bytes.", recv_bytes);
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}
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}
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if !socket.is_listening() && !socket.is_open() || socket.state() == State::CloseWait {
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socket.abort();
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socket.listen(ADDRESS).ok();
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warn!("Disconnected... Reopening listening socket.");
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}
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self.iface.poll(now_fn(), &mut &mut self.dma, &mut self.socket_set);
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}
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2024-02-02 14:07:25 +08:00
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pub fn recv(&mut self, buffer: &mut [u8])-> Result<usize, smoltcp::socket::tcp::RecvError> {
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self.iface.poll(now_fn(), &mut &mut self.dma, &mut self.socket_set);
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let socket = self.socket_set.get_mut::<Socket>(self.socket_handle);
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socket.recv_slice(buffer)
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}
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pub fn send(&mut self, buffer: &mut [u8], num_bytes: usize) {
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let socket = self.socket_set.get_mut::<Socket>(self.socket_handle);
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if num_bytes > 0 {
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socket.send_slice(&buffer[..num_bytes]).ok();
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info!("Sent {} bytes.", num_bytes);
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}
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// Send bytes out
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self.iface.poll(now_fn(), &mut &mut self.dma, &mut self.socket_set);
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}
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pub fn poll_socket_status(&mut self)-> bool {
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let socket = self.socket_set.get_mut::<Socket>(self.socket_handle);
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if !socket.is_listening() && !socket.is_open() || socket.state() == State::CloseWait {
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socket.abort();
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socket.listen(ADDRESS).ok();
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info!("Disconnected... Reopening listening socket.");
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return false;
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} else if socket.state() == State::Closed || socket.state() == State::Closing {
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return false;
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}
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return true;
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}
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2024-01-31 17:16:10 +08:00
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}
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use ieee802_3_miim::{
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phy::{
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lan87xxa::{LAN8720A, LAN8742A},
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BarePhy, KSZ8081R,
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},
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Miim, Pause, Phy,
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};
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/// An ethernet PHY
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pub enum EthernetPhy<M: Miim> {
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/// LAN8720A
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LAN8720A(LAN8720A<M>),
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/// LAN8742A
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LAN8742A(LAN8742A<M>),
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/// KSZ8081R
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KSZ8081R(KSZ8081R<M>),
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}
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impl<M: Miim> Phy<M> for EthernetPhy<M> {
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fn best_supported_advertisement(&self) -> ieee802_3_miim::AutoNegotiationAdvertisement {
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unimplemented!()
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}
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fn get_miim(&mut self) -> &mut M {
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match self {
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EthernetPhy::LAN8720A(phy) => phy.get_miim(),
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EthernetPhy::LAN8742A(phy) => phy.get_miim(),
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EthernetPhy::KSZ8081R(phy) => phy.get_miim(),
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}
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}
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fn get_phy_addr(&self) -> u8 {
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match self {
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EthernetPhy::LAN8720A(phy) => phy.get_phy_addr(),
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EthernetPhy::LAN8742A(phy) => phy.get_phy_addr(),
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EthernetPhy::KSZ8081R(phy) => phy.get_phy_addr(),
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}
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}
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}
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impl<M: Miim> EthernetPhy<M> {
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/// Attempt to create one of the known PHYs from the given
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/// MIIM.
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///
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/// Returns an error if the PHY does not support the extended register
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/// set, or if the PHY's identifier does not correspond to a known PHY.
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pub fn from_miim(miim: M, phy_addr: u8) -> Result<Self, M> {
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let mut bare = BarePhy::new(miim, phy_addr, Pause::NoPause);
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let phy_ident = if let Some(id) = bare.phy_ident() {
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id.raw_u32()
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} else {
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return Err(bare.release());
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};
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let miim = bare.release();
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match phy_ident & 0xFFFFFFF0 {
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0x0007C0F0 => Ok(Self::LAN8720A(LAN8720A::new(miim, phy_addr))),
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0x0007C130 => Ok(Self::LAN8742A(LAN8742A::new(miim, phy_addr))),
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0x00221560 => Ok(Self::KSZ8081R(KSZ8081R::new(miim, phy_addr))),
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_ => Err(miim),
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}
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}
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/// Get a string describing the type of PHY
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pub const fn ident_string(&self) -> &'static str {
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match self {
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EthernetPhy::LAN8720A(_) => "LAN8720A",
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EthernetPhy::LAN8742A(_) => "LAN8742A",
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EthernetPhy::KSZ8081R(_) => "KSZ8081R",
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}
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}
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/// Initialize the PHY
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pub fn phy_init(&mut self) {
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match self {
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EthernetPhy::LAN8720A(phy) => phy.phy_init(),
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EthernetPhy::LAN8742A(phy) => phy.phy_init(),
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EthernetPhy::KSZ8081R(phy) => {
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phy.set_autonegotiation_advertisement(phy.best_supported_advertisement());
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}
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}
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}
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#[allow(dead_code)]
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pub fn speed(&mut self) -> Option<ieee802_3_miim::phy::PhySpeed> {
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match self {
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EthernetPhy::LAN8720A(phy) => phy.link_speed(),
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EthernetPhy::LAN8742A(phy) => phy.link_speed(),
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EthernetPhy::KSZ8081R(phy) => phy.link_speed(),
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}
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}
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#[allow(dead_code)]
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pub fn release(self) -> M {
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match self {
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EthernetPhy::LAN8720A(phy) => phy.release(),
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EthernetPhy::LAN8742A(phy) => phy.release(),
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EthernetPhy::KSZ8081R(phy) => phy.release(),
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}
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}
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}
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2024-02-02 14:07:25 +08:00
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pub fn eth_send(buffer: &mut [u8], num_bytes: usize) {
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unsafe {
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if let Some(ref mut server_handle ) = SERVER_HANDLE {
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server_handle.send(buffer, num_bytes);
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}
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else {
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panic!("eth_send is called before init");
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}
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}
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}
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pub fn eth_recv(buffer: &mut [u8])-> usize{
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unsafe {
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if let Some(ref mut server_handle ) = SERVER_HANDLE {
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match server_handle.recv(buffer){
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Ok(recv_bytes) => {return recv_bytes}
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Err(err) => {
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debug!("TCP Recv Error: {}", err);
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return 0
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}
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};
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}
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else {
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panic!("eth_send is called before init");
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}
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}
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}
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pub fn eth_is_socket_active() -> bool {
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unsafe {
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if let Some(ref mut server_handle ) = SERVER_HANDLE {
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server_handle.poll_socket_status()
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}
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else {
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panic!("eth_is_socket_active is called before init");
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}
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}
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}
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2024-01-31 17:16:10 +08:00
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/// Potentially wake up from `wfi()`, set the interrupt pending flag,
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/// clear interrupt flags.
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|
|
#[interrupt]
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|
|
|
fn ETH() {
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|
|
|
let interrupt_reason = stm32_eth::eth_interrupt_handler();
|
2024-02-02 14:07:25 +08:00
|
|
|
cortex_m::interrupt::free(|cs| {
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|
|
|
*NET_PENDING.borrow(cs)
|
|
|
|
.borrow_mut() = true;
|
|
|
|
});
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|
|
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|
2024-01-31 17:16:10 +08:00
|
|
|
debug!("Ethernet Interrupt{:?}", interrupt_reason);
|
2024-02-02 14:07:25 +08:00
|
|
|
}
|
|
|
|
|
|
|
|
/// Has an interrupt occurred since last call to `clear_pending()`?
|
|
|
|
pub fn is_pending(cs: &CriticalSection) -> bool {
|
|
|
|
*NET_PENDING.borrow(cs)
|
|
|
|
.borrow()
|
|
|
|
}
|
|
|
|
|
|
|
|
/// Clear the interrupt pending flag before polling the interface for
|
|
|
|
/// data.
|
|
|
|
pub fn clear_pending(cs: &CriticalSection) {
|
|
|
|
*NET_PENDING.borrow(cs)
|
|
|
|
.borrow_mut() = false;
|
2024-01-31 17:16:10 +08:00
|
|
|
}
|