forked from M-Labs/humpback-dds
295 lines
8.6 KiB
Rust
295 lines
8.6 KiB
Rust
#![no_std]
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#![no_main]
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#[macro_use]
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extern crate log;
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use smoltcp as net;
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use stm32h7xx_hal::ethernet;
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use stm32h7xx_hal::{gpio::Speed, prelude::*, spi, pac};
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use embedded_hal::{
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blocking::spi::Transfer,
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digital::v2::OutputPin,
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};
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use heapless::{consts, String};
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use cortex_m;
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use cortex_m_rt::{
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entry,
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exception,
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};
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use rtic::cyccnt::{Instant, U32Ext};
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use minimq::{
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embedded_nal::{IpAddr, Ipv4Addr, TcpStack, SocketAddr, Mode},
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MqttClient, QoS
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};
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use firmware::nal_tcp_client::{NetworkStack, NetStorage, NetworkInterface};
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use firmware::{
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cpld::{
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CPLD,
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},
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scpi::{
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HelloWorldCommand,
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Channel0SwitchCommand,
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Channel1SwitchCommand,
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Channel2SwitchCommand,
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Channel3SwitchCommand,
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Channel0AttenuationCommand,
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Channel1AttenuationCommand,
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Channel2AttenuationCommand,
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Channel3AttenuationCommand,
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ClockSourceCommand,
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ClockDivisionCommand,
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},
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Urukul, scpi_root, recursive_scpi_tree, scpi_tree
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};
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use firmware::translation::MqttScpiTranslator;
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use scpi::prelude::*;
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use scpi::ieee488::commands::*;
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use scpi::scpi::commands::*;
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use scpi::{
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ieee488_cls,
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ieee488_ese,
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ieee488_esr,
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ieee488_idn,
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ieee488_opc,
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ieee488_rst,
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ieee488_sre,
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ieee488_stb,
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ieee488_tst,
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ieee488_wai,
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scpi_crate_version,
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scpi_status,
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scpi_system,
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};
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use scpi::Context;
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#[path = "util/logger.rs"]
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mod logger;
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static mut NET_STORE: NetStorage = NetStorage {
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// Placeholder for the real IP address, which is initialized at runtime.
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ip_addrs: [net::wire::IpCidr::Ipv6(
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net::wire::Ipv6Cidr::SOLICITED_NODE_PREFIX,
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)],
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neighbor_cache: [None; 8],
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routes_cache: [None; 8],
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};
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#[link_section = ".sram3.eth"]
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static mut DES_RING: ethernet::DesRing = ethernet::DesRing::new();
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macro_rules! add_socket {
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($sockets:ident, $tx_storage:ident, $rx_storage:ident) => {
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let mut $rx_storage = [0; 4096];
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let mut $tx_storage = [0; 4096];
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let tcp_socket = {
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let tx_buffer = net::socket::TcpSocketBuffer::new(&mut $tx_storage[..]);
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let rx_buffer = net::socket::TcpSocketBuffer::new(&mut $rx_storage[..]);
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net::socket::TcpSocket::new(tx_buffer, rx_buffer)
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};
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let _handle = $sockets.add(tcp_socket);
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};
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}
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#[entry]
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fn main() -> ! {
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let mut cp = cortex_m::Peripherals::take().unwrap();
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let dp = pac::Peripherals::take().unwrap();
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cp.DWT.enable_cycle_counter();
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// Enable SRAM3 for the descriptor ring.
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dp.RCC.ahb2enr.modify(|_, w| w.sram3en().set_bit());
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// Reset RCC clock
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dp.RCC.rsr.write(|w| w.rmvf().set_bit());
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let pwr = dp.PWR.constrain();
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let vos = pwr.freeze();
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let rcc = dp.RCC.constrain();
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let ccdr = rcc
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.use_hse(8.mhz())
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.sysclk(400.mhz())
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.hclk(200.mhz())
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.pll1_q_ck(48.mhz()) // for SPI
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.pll1_r_ck(400.mhz()) // for TRACECK
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.freeze(vos, &dp.SYSCFG);
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unsafe {
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logger::enable_itm(&dp.DBGMCU, &mut cp.DCB, &mut cp.ITM);
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}
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logger::init();
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let mut delay = cp.SYST.delay(ccdr.clocks);
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let gpioa = dp.GPIOA.split(ccdr.peripheral.GPIOA);
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let gpiob = dp.GPIOB.split(ccdr.peripheral.GPIOB);
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let gpioc = dp.GPIOC.split(ccdr.peripheral.GPIOC);
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let gpiod = dp.GPIOD.split(ccdr.peripheral.GPIOD);
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let gpioe = dp.GPIOE.split(ccdr.peripheral.GPIOE);
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let gpiof = dp.GPIOF.split(ccdr.peripheral.GPIOF);
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let gpiog = dp.GPIOG.split(ccdr.peripheral.GPIOG);
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// Configure ethernet IO
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{
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let _rmii_refclk = gpioa.pa1.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_mdio = gpioa.pa2.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_mdc = gpioc.pc1.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_crs_dv = gpioa.pa7.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_rxd0 = gpioc.pc4.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_rxd1 = gpioc.pc5.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_tx_en = gpiog.pg11.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_txd0 = gpiog.pg13.into_alternate_af11().set_speed(Speed::VeryHigh);
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let _rmii_txd1 = gpiob.pb13.into_alternate_af11().set_speed(Speed::VeryHigh);
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}
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// Configure ethernet
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let mac_addr = net::wire::EthernetAddress([0xAC, 0x6F, 0x7A, 0xDE, 0xD6, 0xC8]);
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let (eth_dma, mut eth_mac) = unsafe {
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ethernet::new_unchecked(
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dp.ETHERNET_MAC,
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dp.ETHERNET_MTL,
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dp.ETHERNET_DMA,
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&mut DES_RING,
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mac_addr.clone(),
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)
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};
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unsafe { ethernet::enable_interrupt() }
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let store = unsafe { &mut NET_STORE };
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store.ip_addrs[0] = net::wire::IpCidr::new(net::wire::IpAddress::v4(192, 168, 1, 200), 24);
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let neighbor_cache = net::iface::NeighborCache::new(&mut store.neighbor_cache[..]);
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let mut net_interface = net::iface::EthernetInterfaceBuilder::new(eth_dma)
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.ethernet_addr(mac_addr)
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.neighbor_cache(neighbor_cache)
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.ip_addrs(&mut store.ip_addrs[..])
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.finalize();
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/*
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* Using SPI1, AF5
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* SCLK -> PA5
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* MOSI -> PB5
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* MISO -> PA6
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* CS -> 0: PB12, 1: PA15, 2: PC7
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* I/O_Update -> PB15
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*/
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let sclk = gpioa.pa5.into_alternate_af5();
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let mosi = gpiob.pb5.into_alternate_af5();
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let miso = gpioa.pa6.into_alternate_af5();
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let (cs0, cs1, cs2) = (
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gpiob.pb12.into_push_pull_output(),
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gpioa.pa15.into_push_pull_output(),
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gpioc.pc7.into_push_pull_output(),
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);
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let io_update = gpiob.pb15.into_push_pull_output();
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let spi = dp.SPI1.spi(
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(sclk, miso, mosi),
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spi::MODE_0,
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3.mhz(),
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ccdr.peripheral.SPI1,
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&ccdr.clocks,
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);
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let cpld = CPLD::new(spi, (cs0, cs1, cs2), io_update);
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let parts = cpld.split();
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let mut urukul = Urukul::new(
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parts.spi1, parts.spi2, parts.spi3, parts.spi4, parts.spi5, parts.spi6, parts.spi7,
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[25_000_000, 25_000_000, 25_000_000, 25_000_000]
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);
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cp.SCB.invalidate_icache();
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cp.SCB.enable_icache();
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// Define SCPI tree
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let tree = scpi_tree!();
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// Device was declared in prior
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let mut errors = ArrayErrorQueue::<[Error; 10]>::new();
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let mut context = Context::new(&mut urukul, &mut errors, tree);
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//Response bytebuffer
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let mut buf = ArrayVecFormatter::<[u8; 256]>::new();
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// SCPI configs END
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// Time unit in ms
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let mut time: u32 = 0;
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// Cycle counter for 1 ms
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// This effectively provides a conversion from rtic unit to ms
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let mut next_ms = Instant::now();
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next_ms += 400_000.cycles();
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let mut socket_set_entries: [_; 8] = Default::default();
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let mut sockets = net::socket::SocketSet::new(&mut socket_set_entries[..]);
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add_socket!(sockets, rx_storage, tx_storage);
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let tcp_stack = NetworkStack::new(&mut net_interface, sockets);
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// Case dealt: Ethernet connection break down, neither side has timeout
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// Limitation: Timeout inequality will cause TCP socket state to desync
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// Probably fixed in latest smoltcp commit
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let mut client = MqttClient::<consts::U256, _>::new(
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IpAddr::V4(Ipv4Addr::new(192, 168, 1, 125)),
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"Nucleo",
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tcp_stack,
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)
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.unwrap();
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let mut tick = false;
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let mut has_subscribed = false;
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loop {
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// Update time accumulator in ms
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// Tick once every ms
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if Instant::now() > next_ms {
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tick = true;
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time += 1;
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next_ms += 400_000.cycles();
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}
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// eth Poll if necessary
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// Do not poll if eth link is down
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if tick && client.network_stack.update_delay(time) == 0 && eth_mac.phy_poll_link() {
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client.network_stack.update(time);
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}
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let connection = client
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.poll(|_client, topic, message, _properties| match topic {
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topic => {
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info!("On '{:?}', received: {:?}", topic, message);
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context.run_with_mqtt(topic.as_bytes(), &mut buf);
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},
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}).is_ok();
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if connection && !has_subscribed && tick {
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match client.subscribe("Urukul/Control", &[]) {
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Ok(()) => has_subscribed = true,
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Err(minimq::Error::NotReady) => {},
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e => warn!("{:?}", e),
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};
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}
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if connection && tick && (time % 3000) == 0 {
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info!("Feedback from print publish: {:?}", client
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.publish("Channel1/Switch", "Hello, World!".as_bytes(), QoS::AtMostOnce, &[]));
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}
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// Reset tick flag
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tick = false;
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}
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} |