2023-06-06 02:28:00 +02:00
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#![no_std]
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#![no_main]
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#![feature(type_alias_impl_trait)]
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#[path = "../common.rs"]
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mod common;
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use cyw43_pio::PioSpi;
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use defmt::{assert, panic, *};
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use embassy_executor::Spawner;
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use embassy_futures::join::join;
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use embassy_net::tcp::TcpSocket;
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use embassy_net::{Config, Ipv4Address, Stack, StackResources};
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use embassy_rp::gpio::{Level, Output};
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use embassy_rp::peripherals::{DMA_CH0, PIN_23, PIN_25, PIO0};
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use embassy_rp::pio::Pio;
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use embassy_rp::rom_data;
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use embassy_time::{with_timeout, Duration, Timer};
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use static_cell::make_static;
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use {defmt_rtt as _, panic_probe as _};
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teleprobe_meta::timeout!(120);
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#[embassy_executor::task]
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async fn wifi_task(
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runner: cyw43::Runner<'static, Output<'static, PIN_23>, PioSpi<'static, PIN_25, PIO0, 0, DMA_CH0>>,
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) -> ! {
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runner.run().await
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}
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#[embassy_executor::task]
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async fn net_task(stack: &'static Stack<cyw43::NetDriver<'static>>) -> ! {
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stack.run().await
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}
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#[embassy_executor::main]
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async fn main(spawner: Spawner) {
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info!("Hello World!");
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let p = embassy_rp::init(Default::default());
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// needed for reading the firmware from flash via XIP.
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unsafe {
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rom_data::flash_exit_xip();
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rom_data::flash_enter_cmd_xip();
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}
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// cyw43 firmware needs to be flashed manually:
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// probe-rs-cli download 43439A0.bin --format bin --chip RP2040 --base-address 0x101c0000
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// probe-rs-cli download 43439A0_clm.bin --format bin --chip RP2040 --base-address 0x101f8000
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let fw = unsafe { core::slice::from_raw_parts(0x101c0000 as *const u8, 224190) };
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let clm = unsafe { core::slice::from_raw_parts(0x101f8000 as *const u8, 4752) };
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let pwr = Output::new(p.PIN_23, Level::Low);
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let cs = Output::new(p.PIN_25, Level::High);
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let mut pio = Pio::new(p.PIO0);
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let spi = PioSpi::new(&mut pio.common, pio.sm0, pio.irq0, cs, p.PIN_24, p.PIN_29, p.DMA_CH0);
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let state = make_static!(cyw43::State::new());
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let (net_device, mut control, runner) = cyw43::new(state, pwr, spi, fw).await;
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unwrap!(spawner.spawn(wifi_task(runner)));
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control.init(clm).await;
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control
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.set_power_management(cyw43::PowerManagementMode::PowerSave)
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.await;
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2023-06-08 19:37:11 +02:00
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let config = Config::dhcpv4(Default::default());
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2023-06-06 02:28:00 +02:00
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//let config = embassy_net::Config::Static(embassy_net::Config {
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// address: Ipv4Cidr::new(Ipv4Address::new(192, 168, 69, 2), 24),
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// dns_servers: Vec::new(),
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// gateway: Some(Ipv4Address::new(192, 168, 69, 1)),
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//});
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// Generate random seed
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let seed = 0x0123_4567_89ab_cdef; // chosen by fair dice roll. guarenteed to be random.
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// Init network stack
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let stack = &*make_static!(Stack::new(
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net_device,
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config,
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make_static!(StackResources::<2>::new()),
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seed
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));
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unwrap!(spawner.spawn(net_task(stack)));
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loop {
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match control.join_wpa2(WIFI_NETWORK, WIFI_PASSWORD).await {
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Ok(_) => break,
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Err(err) => {
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panic!("join failed with status={}", err.status);
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}
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}
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}
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info!("Waiting for DHCP up...");
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2023-06-08 19:37:11 +02:00
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while stack.config_v4().is_none() {
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2023-06-06 02:28:00 +02:00
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Timer::after(Duration::from_millis(100)).await;
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}
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info!("IP addressing up!");
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let down = test_download(stack).await;
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let up = test_upload(stack).await;
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let updown = test_upload_download(stack).await;
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assert!(down > TEST_EXPECTED_DOWNLOAD_KBPS);
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assert!(up > TEST_EXPECTED_UPLOAD_KBPS);
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assert!(updown > TEST_EXPECTED_UPLOAD_DOWNLOAD_KBPS);
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info!("Test OK");
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cortex_m::asm::bkpt();
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}
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// Test-only wifi network, no internet access!
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const WIFI_NETWORK: &str = "EmbassyTest";
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const WIFI_PASSWORD: &str = "V8YxhKt5CdIAJFud";
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const TEST_DURATION: usize = 10;
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const TEST_EXPECTED_DOWNLOAD_KBPS: usize = 500;
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const TEST_EXPECTED_UPLOAD_KBPS: usize = 500;
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const TEST_EXPECTED_UPLOAD_DOWNLOAD_KBPS: usize = 400;
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const RX_BUFFER_SIZE: usize = 4096;
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const TX_BUFFER_SIZE: usize = 4096;
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const SERVER_ADDRESS: Ipv4Address = Ipv4Address::new(192, 168, 2, 2);
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const DOWNLOAD_PORT: u16 = 4321;
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const UPLOAD_PORT: u16 = 4322;
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const UPLOAD_DOWNLOAD_PORT: u16 = 4323;
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async fn test_download(stack: &'static Stack<cyw43::NetDriver<'static>>) -> usize {
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info!("Testing download...");
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let mut rx_buffer = [0; RX_BUFFER_SIZE];
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let mut tx_buffer = [0; TX_BUFFER_SIZE];
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let mut socket = TcpSocket::new(stack, &mut rx_buffer, &mut tx_buffer);
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socket.set_timeout(Some(Duration::from_secs(10)));
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info!("connecting to {:?}:{}...", SERVER_ADDRESS, DOWNLOAD_PORT);
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if let Err(e) = socket.connect((SERVER_ADDRESS, DOWNLOAD_PORT)).await {
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error!("connect error: {:?}", e);
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return 0;
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}
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info!("connected, testing...");
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let mut rx_buf = [0; 4096];
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let mut total: usize = 0;
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with_timeout(Duration::from_secs(TEST_DURATION as _), async {
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loop {
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match socket.read(&mut rx_buf).await {
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Ok(0) => {
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error!("read EOF");
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return 0;
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}
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Ok(n) => total += n,
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Err(e) => {
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error!("read error: {:?}", e);
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return 0;
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}
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}
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}
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})
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.await
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.ok();
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let kbps = (total + 512) / 1024 / TEST_DURATION;
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info!("download: {} kB/s", kbps);
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kbps
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}
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async fn test_upload(stack: &'static Stack<cyw43::NetDriver<'static>>) -> usize {
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info!("Testing upload...");
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let mut rx_buffer = [0; RX_BUFFER_SIZE];
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let mut tx_buffer = [0; TX_BUFFER_SIZE];
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let mut socket = TcpSocket::new(stack, &mut rx_buffer, &mut tx_buffer);
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socket.set_timeout(Some(Duration::from_secs(10)));
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info!("connecting to {:?}:{}...", SERVER_ADDRESS, UPLOAD_PORT);
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if let Err(e) = socket.connect((SERVER_ADDRESS, UPLOAD_PORT)).await {
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error!("connect error: {:?}", e);
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return 0;
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}
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info!("connected, testing...");
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let buf = [0; 4096];
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let mut total: usize = 0;
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with_timeout(Duration::from_secs(TEST_DURATION as _), async {
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loop {
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match socket.write(&buf).await {
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Ok(0) => {
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error!("write zero?!??!?!");
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return 0;
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}
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Ok(n) => total += n,
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Err(e) => {
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error!("write error: {:?}", e);
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return 0;
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}
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}
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}
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})
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.await
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.ok();
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let kbps = (total + 512) / 1024 / TEST_DURATION;
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info!("upload: {} kB/s", kbps);
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kbps
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}
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async fn test_upload_download(stack: &'static Stack<cyw43::NetDriver<'static>>) -> usize {
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info!("Testing upload+download...");
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let mut rx_buffer = [0; RX_BUFFER_SIZE];
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let mut tx_buffer = [0; TX_BUFFER_SIZE];
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let mut socket = TcpSocket::new(stack, &mut rx_buffer, &mut tx_buffer);
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socket.set_timeout(Some(Duration::from_secs(10)));
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info!("connecting to {:?}:{}...", SERVER_ADDRESS, UPLOAD_DOWNLOAD_PORT);
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if let Err(e) = socket.connect((SERVER_ADDRESS, UPLOAD_DOWNLOAD_PORT)).await {
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error!("connect error: {:?}", e);
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return 0;
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}
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info!("connected, testing...");
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let (mut reader, mut writer) = socket.split();
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let tx_buf = [0; 4096];
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let mut rx_buf = [0; 4096];
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let mut total: usize = 0;
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let tx_fut = async {
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loop {
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match writer.write(&tx_buf).await {
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Ok(0) => {
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error!("write zero?!??!?!");
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return 0;
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}
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Ok(_) => {}
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Err(e) => {
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error!("write error: {:?}", e);
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return 0;
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}
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}
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}
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};
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let rx_fut = async {
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loop {
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match reader.read(&mut rx_buf).await {
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Ok(0) => {
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error!("read EOF");
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return 0;
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}
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Ok(n) => total += n,
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Err(e) => {
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error!("read error: {:?}", e);
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return 0;
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}
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}
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}
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};
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with_timeout(Duration::from_secs(TEST_DURATION as _), join(tx_fut, rx_fut))
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.await
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.ok();
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let kbps = (total + 512) / 1024 / TEST_DURATION;
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info!("upload+download: {} kB/s", kbps);
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kbps
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}
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