usb: Move USB handling to separate module

This commit is contained in:
2026-07-13 08:34:37 -05:00
parent 4bca6857b4
commit 937b3312eb
3 changed files with 199 additions and 147 deletions

View File

@@ -10,7 +10,7 @@ use embassy_usb::{
};
use usbd_hid::descriptor::KeyboardReport;
use crate::HID_PROTOCOL_MODE;
use crate::usb::HID_PROTOCOL_MODE;
const WRITE_N: usize = 8;

View File

@@ -3,10 +3,10 @@
mod heartbeat;
mod keyboard;
mod usb;
use crate::heartbeat::heartbeat;
use crate::keyboard::Keyboard;
use core::sync::atomic::{AtomicBool, AtomicU8, Ordering};
use defmt::*;
use embassy_executor::Spawner;
use embassy_futures::join::join;
@@ -14,12 +14,6 @@ use embassy_rp::bind_interrupts;
use embassy_rp::gpio::{Input, Level, Output, Pull};
use embassy_rp::peripherals::USB;
use embassy_rp::usb::{Driver, InterruptHandler};
use embassy_usb::class::hid::{
HidBootProtocol, HidProtocolMode, HidReaderWriter, HidSubclass, ReportId, RequestHandler, State,
};
use embassy_usb::control::OutResponse;
use embassy_usb::{Builder, Config, Handler};
use usbd_hid::descriptor::{KeyboardReport, SerializedDescriptor};
use {defmt_rtt as _, panic_probe as _};
@@ -27,59 +21,14 @@ bind_interrupts!(struct Irqs {
USBCTRL_IRQ => InterruptHandler<USB>;
});
static HID_PROTOCOL_MODE: AtomicU8 = AtomicU8::new(HidProtocolMode::Boot as u8);
#[embassy_executor::main]
async fn main(_spawner: Spawner) {
let p = embassy_rp::init(Default::default());
// Create the driver, from the HAL.
let driver = Driver::new(p.USB, Irqs);
// Create embassy-usb Config
let mut config = Config::new(0xc0de, 0xcafe);
config.manufacturer = Some("Nicholas Mello");
config.product = Some("Pi Pico Arcade Keyboard");
config.serial_number = Some("00000001");
config.max_power = 100;
config.max_packet_size_0 = 64;
config.composite_with_iads = false;
config.device_class = 0;
config.device_sub_class = 0;
config.device_protocol = 0;
// Create embassy-usb DeviceBuilder using the driver and config.
// It needs some buffers for building the descriptors.
let mut config_descriptor = [0; 256];
let mut bos_descriptor = [0; 256];
// You can also add a Microsoft OS descriptor.
let mut msos_descriptor = [0; 256];
let mut control_buf = [0; 64];
let mut request_handler = MyRequestHandler {};
let mut device_handler = MyDeviceHandler::new();
let mut state = State::new();
let mut builder = Builder::new(
driver,
config,
&mut config_descriptor,
&mut bos_descriptor,
&mut msos_descriptor,
&mut control_buf,
);
builder.handler(&mut device_handler);
// Create classes on the builder.
let config = embassy_usb::class::hid::Config {
report_descriptor: KeyboardReport::desc(),
request_handler: None,
poll_ms: 60,
max_packet_size: 64,
hid_subclass: HidSubclass::Boot,
hid_boot_protocol: HidBootProtocol::Keyboard,
};
let hid = HidReaderWriter::<_, 1, 8>::new(&mut builder, &mut state, config);
let mut usb_buf = usb::UsbKeyboardBuf::new();
let (usbkey, writer) = usb::UsbKeyboard::create_usb(&mut usb_buf, driver);
// Set up the signal pin that will be used to trigger the keyboard.
let mut signal_pin = Input::new(p.PIN_16, Pull::None);
@@ -87,8 +36,6 @@ async fn main(_spawner: Spawner) {
// Enable the schmitt trigger to slightly debounce.
signal_pin.set_schmitt(true);
let (reader, writer) = hid.split();
let mut keyboard = Keyboard::<_, 1>::new(writer);
match keyboard.add_key(signal_pin, 'a') {
Ok(()) => info!("Key 'a' registered"),
@@ -97,95 +44,7 @@ async fn main(_spawner: Spawner) {
}
}
let out_fut = async {
reader.run(false, &mut request_handler).await;
};
let mut usb = builder.build();
let led = Output::new(p.PIN_25, Level::Low);
join(
join(usb.run(), heartbeat(led)),
join(keyboard.process(), out_fut),
)
.await;
}
struct MyRequestHandler {}
impl RequestHandler for MyRequestHandler {
fn get_report(&mut self, id: ReportId, _buf: &mut [u8]) -> Option<usize> {
info!("Get report for {:?}", id);
None
}
fn set_report(&mut self, id: ReportId, data: &[u8]) -> OutResponse {
info!("Set report for {:?}: {=[u8]}", id, data);
OutResponse::Accepted
}
fn get_protocol(&self) -> HidProtocolMode {
let protocol = HidProtocolMode::from(HID_PROTOCOL_MODE.load(Ordering::Relaxed));
info!("The current HID protocol mode is: {}", protocol);
protocol
}
fn set_protocol(&mut self, protocol: HidProtocolMode) -> OutResponse {
info!("Switching to HID protocol mode: {}", protocol);
HID_PROTOCOL_MODE.store(protocol as u8, Ordering::Relaxed);
OutResponse::Accepted
}
fn set_idle_ms(&mut self, id: Option<ReportId>, dur: u32) {
info!("Set idle rate for {:?} to {:?}", id, dur);
}
fn get_idle_ms(&mut self, id: Option<ReportId>) -> Option<u32> {
info!("Get idle rate for {:?}", id);
None
}
}
struct MyDeviceHandler {
configured: AtomicBool,
}
impl MyDeviceHandler {
fn new() -> Self {
MyDeviceHandler {
configured: AtomicBool::new(false),
}
}
}
impl Handler for MyDeviceHandler {
fn enabled(&mut self, enabled: bool) {
self.configured.store(false, Ordering::Relaxed);
if enabled {
info!("Device enabled");
} else {
info!("Device disabled");
}
}
fn reset(&mut self) {
self.configured.store(false, Ordering::Relaxed);
info!("Bus reset, the Vbus current limit is 100mA");
}
fn addressed(&mut self, addr: u8) {
self.configured.store(false, Ordering::Relaxed);
info!("USB address set to: {}", addr);
}
fn configured(&mut self, configured: bool) {
self.configured.store(configured, Ordering::Relaxed);
if configured {
info!(
"Device configured, it may now draw up to the configured current limit from Vbus."
)
} else {
info!("Device is no longer configured, the Vbus current limit is 100mA.");
}
}
join(join(usbkey.run(), heartbeat(led)), keyboard.process()).await;
}

193
src/usb.rs Normal file
View File

@@ -0,0 +1,193 @@
use core::cell::OnceCell;
use core::sync::atomic::{AtomicBool, AtomicU8, Ordering};
use defmt::*;
use embassy_futures::join::join;
use embassy_rp::peripherals::USB;
use embassy_rp::usb::Driver;
use embassy_usb::UsbDevice;
use embassy_usb::class::hid::{
HidBootProtocol, HidProtocolMode, HidReader, HidReaderWriter, HidSubclass, HidWriter, ReportId,
RequestHandler, State,
};
use embassy_usb::control::OutResponse;
use embassy_usb::{Builder, Config, Handler};
use usbd_hid::descriptor::{KeyboardReport, SerializedDescriptor};
pub static HID_PROTOCOL_MODE: AtomicU8 = AtomicU8::new(HidProtocolMode::Boot as u8);
pub struct UsbKeyboardBuf<'d> {
// Create embassy-usb DeviceBuilder using the driver and config.
// It needs some buffers for building the descriptors.
config_descriptor: [u8; 256],
bos_descriptor: [u8; 256],
// You can also add a Microsoft OS descriptor.
msos_descriptor: [u8; 256],
control_buf: [u8; 64],
state: OnceCell<State<'d>>,
device_handler: OnceCell<MyDeviceHandler>,
}
impl<'d> UsbKeyboardBuf<'d> {
pub const fn new() -> Self {
Self {
config_descriptor: [0; 256],
bos_descriptor: [0; 256],
msos_descriptor: [0; 256],
control_buf: [0; 64],
state: OnceCell::new(),
device_handler: OnceCell::new(),
}
}
}
pub struct UsbKeyboard<'d> {
usb: UsbDevice<'d, Driver<'d, USB>>,
reader: HidReader<'d, Driver<'d, USB>, 1>,
}
impl<'d> UsbKeyboard<'d> {
// HidWriter<'_, Driver<'_, USB>, 8>
pub fn create_usb(
buf: &'d mut UsbKeyboardBuf<'d>,
driver: Driver<'d, USB>,
) -> (Self, HidWriter<'d, Driver<'d, USB>, 8>) {
// Create embassy-usb Config
let mut config = Config::new(0xc0de, 0xcafe);
config.manufacturer = Some("Nicholas Mello");
config.product = Some("Pi Pico Arcade Keyboard");
config.serial_number = Some("00000001");
config.max_power = 100;
config.max_packet_size_0 = 64;
config.composite_with_iads = false;
config.device_class = 0;
config.device_sub_class = 0;
config.device_protocol = 0;
if buf.state.set(State::new()).is_err() {
defmt::panic!("USB State already initalized");
}
let mut builder = Builder::new(
driver,
config,
&mut buf.config_descriptor,
&mut buf.bos_descriptor,
&mut buf.msos_descriptor,
&mut buf.control_buf,
);
if buf.device_handler.set(MyDeviceHandler::new()).is_err() {
defmt::panic!("USB Device Handler already initialized");
}
builder.handler(buf.device_handler.get_mut().unwrap());
// Create classes on the builder.
let config = embassy_usb::class::hid::Config {
report_descriptor: KeyboardReport::desc(),
request_handler: None,
poll_ms: 60,
max_packet_size: 64,
hid_subclass: HidSubclass::Boot,
hid_boot_protocol: HidBootProtocol::Keyboard,
};
let hid =
HidReaderWriter::<_, 1, 8>::new(&mut builder, buf.state.get_mut().unwrap(), config);
let (reader, writer) = hid.split();
let usb = builder.build();
(Self { usb, reader }, writer)
}
pub async fn run(mut self) {
let mut request_handler = MyRequestHandler {};
let out_fut = async {
self.reader.run(false, &mut request_handler).await;
};
join(self.usb.run(), out_fut).await;
}
}
struct MyRequestHandler {}
impl RequestHandler for MyRequestHandler {
fn get_report(&mut self, id: ReportId, _buf: &mut [u8]) -> Option<usize> {
info!("Get report for {:?}", id);
None
}
fn set_report(&mut self, id: ReportId, data: &[u8]) -> OutResponse {
info!("Set report for {:?}: {=[u8]}", id, data);
OutResponse::Accepted
}
fn get_protocol(&self) -> HidProtocolMode {
let protocol = HidProtocolMode::from(HID_PROTOCOL_MODE.load(Ordering::Relaxed));
info!("The current HID protocol mode is: {}", protocol);
protocol
}
fn set_protocol(&mut self, protocol: HidProtocolMode) -> OutResponse {
info!("Switching to HID protocol mode: {}", protocol);
HID_PROTOCOL_MODE.store(protocol as u8, Ordering::Relaxed);
OutResponse::Accepted
}
fn set_idle_ms(&mut self, id: Option<ReportId>, dur: u32) {
info!("Set idle rate for {:?} to {:?}", id, dur);
}
fn get_idle_ms(&mut self, id: Option<ReportId>) -> Option<u32> {
info!("Get idle rate for {:?}", id);
None
}
}
struct MyDeviceHandler {
configured: AtomicBool,
}
impl MyDeviceHandler {
fn new() -> Self {
MyDeviceHandler {
configured: AtomicBool::new(false),
}
}
}
impl Handler for MyDeviceHandler {
fn enabled(&mut self, enabled: bool) {
self.configured.store(false, Ordering::Relaxed);
if enabled {
info!("Device enabled");
} else {
info!("Device disabled");
}
}
fn reset(&mut self) {
self.configured.store(false, Ordering::Relaxed);
info!("Bus reset, the Vbus current limit is 100mA");
}
fn addressed(&mut self, addr: u8) {
self.configured.store(false, Ordering::Relaxed);
info!("USB address set to: {}", addr);
}
fn configured(&mut self, configured: bool) {
self.configured.store(configured, Ordering::Relaxed);
if configured {
info!(
"Device configured, it may now draw up to the configured current limit from Vbus."
)
} else {
info!("Device is no longer configured, the Vbus current limit is 100mA.");
}
}
}