2022-04-06 02:37:17 +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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use core::mem;
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2022-06-12 22:15:44 +02:00
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2022-04-06 02:37:17 +02:00
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use defmt::{info, panic, unwrap};
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2022-08-17 23:40:16 +02:00
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use embassy_executor::Spawner;
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2023-03-05 22:36:53 +01:00
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use embassy_nrf::usb::vbus_detect::HardwareVbusDetect;
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use embassy_nrf::usb::Driver;
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use embassy_nrf::{bind_interrupts, pac, peripherals, usb};
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2022-09-26 13:00:21 +02:00
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use embassy_usb::class::cdc_acm::{CdcAcmClass, State};
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2022-04-06 04:04:11 +02:00
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use embassy_usb::driver::EndpointError;
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2022-04-16 02:17:24 +02:00
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use embassy_usb::{Builder, Config, UsbDevice};
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2022-08-22 15:51:44 +02:00
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use static_cell::StaticCell;
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2022-06-12 22:15:44 +02:00
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use {defmt_rtt as _, panic_probe as _};
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2022-04-06 02:37:17 +02:00
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2023-03-05 22:36:53 +01:00
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bind_interrupts!(struct Irqs {
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USBD => usb::InterruptHandler<peripherals::USBD>;
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POWER_CLOCK => usb::vbus_detect::InterruptHandler;
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});
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macro_rules! singleton {
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($val:expr) => {{
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type T = impl Sized;
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static STATIC_CELL: StaticCell<T> = StaticCell::new();
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let (x,) = STATIC_CELL.init(($val,));
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x
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}};
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}
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2023-02-01 00:48:33 +01:00
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type MyDriver = Driver<'static, peripherals::USBD, HardwareVbusDetect>;
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2022-04-06 02:37:17 +02:00
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2022-07-29 21:58:35 +02:00
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#[embassy_executor::task]
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2022-04-06 02:37:17 +02:00
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async fn usb_task(mut device: UsbDevice<'static, MyDriver>) {
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device.run().await;
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}
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2022-07-29 21:58:35 +02:00
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#[embassy_executor::task]
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2022-04-06 02:37:17 +02:00
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async fn echo_task(mut class: CdcAcmClass<'static, MyDriver>) {
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loop {
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class.wait_connection().await;
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info!("Connected");
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let _ = echo(&mut class).await;
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info!("Disconnected");
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}
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}
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2022-07-29 21:58:35 +02:00
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#[embassy_executor::main]
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2022-08-17 18:49:55 +02:00
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async fn main(spawner: Spawner) {
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let p = embassy_nrf::init(Default::default());
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2022-04-06 02:37:17 +02:00
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let clock: pac::CLOCK = unsafe { mem::transmute(()) };
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info!("Enabling ext hfosc...");
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clock.tasks_hfclkstart.write(|w| unsafe { w.bits(1) });
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while clock.events_hfclkstarted.read().bits() != 1 {}
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2023-03-05 22:36:53 +01:00
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2022-04-06 02:37:17 +02:00
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// Create the driver, from the HAL.
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2023-03-05 22:36:53 +01:00
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let driver = Driver::new(p.USBD, Irqs, HardwareVbusDetect::new(Irqs));
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2022-04-06 02:37:17 +02:00
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// Create embassy-usb Config
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2022-04-24 22:46:45 +02:00
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let mut config = Config::new(0xc0de, 0xcafe);
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config.manufacturer = Some("Embassy");
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config.product = Some("USB-serial example");
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config.serial_number = Some("12345678");
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config.max_power = 100;
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config.max_packet_size_0 = 64;
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2022-04-06 02:37:17 +02:00
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2023-05-08 23:25:01 +02:00
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// Required for windows compatibility.
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2022-05-12 07:59:33 +02:00
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// https://developer.nordicsemi.com/nRF_Connect_SDK/doc/1.9.1/kconfig/CONFIG_CDC_ACM_IAD.html#help
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config.device_class = 0xEF;
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config.device_sub_class = 0x02;
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config.device_protocol = 0x01;
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config.composite_with_iads = true;
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2023-03-05 22:36:53 +01:00
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let state = singleton!(State::new());
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2022-04-06 02:37:17 +02:00
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// Create embassy-usb DeviceBuilder using the driver and config.
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2022-04-16 02:17:24 +02:00
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let mut builder = Builder::new(
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2022-04-06 02:37:17 +02:00
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driver,
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config,
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2023-03-05 22:36:53 +01:00
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&mut singleton!([0; 256])[..],
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&mut singleton!([0; 256])[..],
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&mut singleton!([0; 256])[..],
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&mut singleton!([0; 128])[..],
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&mut singleton!([0; 128])[..],
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2022-04-06 02:37:17 +02:00
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);
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// Create classes on the builder.
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2023-03-05 22:36:53 +01:00
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let class = CdcAcmClass::new(&mut builder, state, 64);
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2022-04-06 02:37:17 +02:00
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// Build the builder.
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2022-04-10 21:41:51 +02:00
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let usb = builder.build();
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2022-04-06 02:37:17 +02:00
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unwrap!(spawner.spawn(usb_task(usb)));
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unwrap!(spawner.spawn(echo_task(class)));
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}
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struct Disconnected {}
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2022-04-06 04:04:11 +02:00
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impl From<EndpointError> for Disconnected {
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fn from(val: EndpointError) -> Self {
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2022-04-06 02:37:17 +02:00
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match val {
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2022-04-06 04:04:11 +02:00
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EndpointError::BufferOverflow => panic!("Buffer overflow"),
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EndpointError::Disabled => Disconnected {},
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2022-04-06 02:37:17 +02:00
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}
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}
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}
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async fn echo(class: &mut CdcAcmClass<'static, MyDriver>) -> Result<(), Disconnected> {
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let mut buf = [0; 64];
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loop {
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let n = class.read_packet(&mut buf).await?;
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let data = &buf[..n];
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info!("data: {:x}", data);
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class.write_packet(data).await?;
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}
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}
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