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@ -33,6 +33,10 @@ mod timer;
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mod led;
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mod led;
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use led::Led;
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use led::Led;
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/// Interval at which to sample the ADC input and broadcast to all
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/// clients.
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///
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/// This should be a multiple of the `TIMER_RATE`.
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const OUTPUT_INTERVAL: u32 = 1000;
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const OUTPUT_INTERVAL: u32 = 1000;
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#[cfg(not(feature = "semihosting"))]
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#[cfg(not(feature = "semihosting"))]
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@ -55,6 +59,7 @@ fn init_log() {
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init(logger).expect("set logger");
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init(logger).expect("set logger");
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}
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}
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/// Initialization and main loop
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#[entry]
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#[entry]
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fn main() -> ! {
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fn main() -> ! {
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init_log();
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init_log();
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12
src/net.rs
12
src/net.rs
@ -21,8 +21,11 @@ static mut TX_RING: Option<[RingEntry<TxDescriptor>; 2]> = None;
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// TODO: generate one from device id
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// TODO: generate one from device id
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const SRC_MAC: [u8; 6] = [0x00, 0x00, 0xDE, 0xAD, 0xBE, 0xEF];
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const SRC_MAC: [u8; 6] = [0x00, 0x00, 0xDE, 0xAD, 0xBE, 0xEF];
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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 NET_PENDING: Mutex<RefCell<bool>> = Mutex::new(RefCell::new(false));
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/// Run callback `f` with ethernet driver and TCP/IP stack
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pub fn run<F>(nvic: &mut NVIC, ethernet_mac: ETHERNET_MAC, ethernet_dma: ETHERNET_DMA, f: F)
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pub fn run<F>(nvic: &mut NVIC, ethernet_mac: ETHERNET_MAC, ethernet_dma: ETHERNET_DMA, f: F)
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where
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where
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F: FnOnce(EthernetInterface<&mut stm32_eth::Eth<'static, 'static>>),
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F: FnOnce(EthernetInterface<&mut stm32_eth::Eth<'static, 'static>>),
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@ -33,12 +36,14 @@ where
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let tx_ring = unsafe {
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let tx_ring = unsafe {
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TX_RING.get_or_insert(Default::default())
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TX_RING.get_or_insert(Default::default())
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};
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};
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// Ethernet driver
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let mut eth_dev = Eth::new(
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let mut eth_dev = Eth::new(
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ethernet_mac, ethernet_dma,
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ethernet_mac, ethernet_dma,
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&mut rx_ring[..], &mut tx_ring[..]
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&mut rx_ring[..], &mut tx_ring[..]
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);
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);
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eth_dev.enable_interrupt(nvic);
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eth_dev.enable_interrupt(nvic);
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// IP stack
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let local_addr = IpAddress::v4(192, 168, 69, 3);
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let local_addr = IpAddress::v4(192, 168, 69, 3);
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let mut ip_addrs = [IpCidr::new(local_addr, 24)];
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let mut ip_addrs = [IpCidr::new(local_addr, 24)];
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let mut neighbor_storage = [None; 16];
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let mut neighbor_storage = [None; 16];
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@ -53,8 +58,8 @@ where
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f(iface);
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f(iface);
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}
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}
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/// Wake up from `wfi()`, clear interrupt flags,
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/// Potentially wake up from `wfi()`, set the interrupt pending flag,
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/// and TODO: set pending flag
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/// clear interrupt flags.
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#[interrupt]
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#[interrupt]
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fn ETH() {
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fn ETH() {
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cortex_m::interrupt::free(|cs| {
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cortex_m::interrupt::free(|cs| {
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@ -66,11 +71,14 @@ fn ETH() {
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stm32_eth::eth_interrupt_handler(&p.ETHERNET_DMA);
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stm32_eth::eth_interrupt_handler(&p.ETHERNET_DMA);
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}
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}
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/// Has an interrupt occurred since last call to `clear_pending()`?
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pub fn is_pending(cs: &CriticalSection) -> bool {
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pub fn is_pending(cs: &CriticalSection) -> bool {
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*NET_PENDING.borrow(cs)
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*NET_PENDING.borrow(cs)
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.borrow()
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.borrow()
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}
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}
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/// Clear the interrupt pending flag before polling the interface for
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/// data.
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pub fn clear_pending(cs: &CriticalSection) {
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pub fn clear_pending(cs: &CriticalSection) {
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*NET_PENDING.borrow(cs)
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*NET_PENDING.borrow(cs)
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.borrow_mut() = false;
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.borrow_mut() = false;
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@ -8,6 +8,9 @@ use smoltcp::{
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const TCP_PORT: u16 = 23;
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const TCP_PORT: u16 = 23;
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/// Number of server sockets and therefore concurrent client
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/// sessions. Many data structures in `Server::run()` correspond to
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/// this const.
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const SOCKET_COUNT: usize = 8;
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const SOCKET_COUNT: usize = 8;
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const TCP_RX_BUFFER_SIZE: usize = 2048;
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const TCP_RX_BUFFER_SIZE: usize = 2048;
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@ -105,6 +108,7 @@ impl<'a, 'b> Server<'a, 'b> {
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}
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}
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}
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}
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/// Reusing the `fmt::Write` trait just for `write!()` convenience
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impl<'a, 's> fmt::Write for Server<'a, 's> {
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impl<'a, 's> fmt::Write for Server<'a, 's> {
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/// Write to all connected clients
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/// Write to all connected clients
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fn write_str(&mut self, slice: &str) -> fmt::Result {
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fn write_str(&mut self, slice: &str) -> fmt::Result {
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@ -8,18 +8,20 @@ use stm32f4xx_hal::{
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stm32::SYST,
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stm32::SYST,
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};
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};
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/// rate in Hz
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/// Rate in Hz
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const TIMER_RATE: u32 = 10;
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const TIMER_RATE: u32 = 10;
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/// interval duration in milliseconds
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/// Interval duration in milliseconds
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const TIMER_DELTA: u32 = 1000 / TIMER_RATE;
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const TIMER_DELTA: u32 = 1000 / TIMER_RATE;
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/// Elapsed time in milliseconds
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/// Elapsed time in milliseconds
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static TIMER_MS: Mutex<RefCell<u32>> = Mutex::new(RefCell::new(0));
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static TIMER_MS: Mutex<RefCell<u32>> = Mutex::new(RefCell::new(0));
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/// Setup SysTick exception
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pub fn setup(syst: SYST, clocks: Clocks) {
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pub fn setup(syst: SYST, clocks: Clocks) {
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let mut timer = Timer::syst(syst, TIMER_RATE.hz(), clocks);
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let mut timer = Timer::syst(syst, TIMER_RATE.hz(), clocks);
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timer.listen(TimerEvent::TimeOut);
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timer.listen(TimerEvent::TimeOut);
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}
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}
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/// SysTick exception (Timer)
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#[exception]
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#[exception]
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fn SysTick() {
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fn SysTick() {
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cortex_m::interrupt::free(|cs| {
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cortex_m::interrupt::free(|cs| {
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@ -28,6 +30,7 @@ fn SysTick() {
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});
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});
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}
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}
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/// Obtain current time in milliseconds
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pub fn now() -> MilliSeconds {
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pub fn now() -> MilliSeconds {
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let ms = cortex_m::interrupt::free(|cs| {
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let ms = cortex_m::interrupt::free(|cs| {
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*TIMER_MS.borrow(cs)
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*TIMER_MS.borrow(cs)
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