2023-11-07 09:05:10 +01:00
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//! This example shows how to use USB (Universal Serial Bus) in the RP2040 chip.
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//!
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//! This creates a USB serial port that echos.
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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 defmt::info;
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use embassy_executor::Spawner;
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use embassy_rp::bind_interrupts;
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use embassy_rp::peripherals::USB;
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use embassy_rp::usb::{Driver, InterruptHandler};
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use embassy_usb::control::{InResponse, OutResponse, Recipient, Request, RequestType};
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use embassy_usb::msos::{self, windows_version};
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use embassy_usb::types::InterfaceNumber;
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use embassy_usb::{Builder, Config, Handler};
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use {defmt_rtt as _, panic_probe as _};
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// This is a randomly generated GUID to allow clients on Windows to find our device
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const DEVICE_INTERFACE_GUIDS: &[&str] = &["{AFB9A6FB-30BA-44BC-9232-806CFC875321}"];
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bind_interrupts!(struct Irqs {
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USBCTRL_IRQ => InterruptHandler<USB>;
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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 there!");
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let p = embassy_rp::init(Default::default());
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// Create the driver, from the HAL.
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let driver = Driver::new(p.USB, Irqs);
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// Create embassy-usb Config
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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 raw 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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// // Required for windows compatibility.
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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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// Create embassy-usb DeviceBuilder using the driver and config.
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// It needs some buffers for building the descriptors.
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let mut device_descriptor = [0; 256];
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let mut config_descriptor = [0; 256];
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let mut bos_descriptor = [0; 256];
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let mut msos_descriptor = [0; 256];
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let mut control_buf = [0; 64];
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let mut handler = ControlHandler {
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if_num: InterfaceNumber(0),
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};
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let mut builder = Builder::new(
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driver,
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config,
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&mut device_descriptor,
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&mut config_descriptor,
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&mut bos_descriptor,
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&mut msos_descriptor,
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&mut control_buf,
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);
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2023-11-07 09:10:18 +01:00
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// Add the Microsoft OS Descriptor (MSOS/MOD) descriptor.
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// We tell Windows that this entire device is compatible with the "WINUSB" feature,
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// which causes it to use the built-in WinUSB driver automatically, which in turn
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// can be used by libusb/rusb software without needing a custom driver or INF file.
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// In principle you might want to call msos_feature() just on a specific function,
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// if your device also has other functions that still use standard class drivers.
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2023-11-07 09:05:10 +01:00
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builder.msos_descriptor(windows_version::WIN8_1, 0);
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builder.msos_feature(msos::CompatibleIdFeatureDescriptor::new("WINUSB", ""));
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builder.msos_feature(msos::RegistryPropertyFeatureDescriptor::new(
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"DeviceInterfaceGUIDs",
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msos::PropertyData::RegMultiSz(DEVICE_INTERFACE_GUIDS),
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));
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// Add a vendor-specific function (class 0xFF), and corresponding interface,
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// that uses our custom handler.
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let mut function = builder.function(0xFF, 0, 0);
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let mut interface = function.interface();
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let _alt = interface.alt_setting(0xFF, 0, 0, None);
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handler.if_num = interface.interface_number();
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drop(function);
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builder.handler(&mut handler);
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// Build the builder.
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let mut usb = builder.build();
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// Run the USB device.
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usb.run().await;
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}
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/// Handle CONTROL endpoint requests and responses. For many simple requests and responses
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/// you can get away with only using the control endpoint.
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struct ControlHandler {
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if_num: InterfaceNumber,
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}
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impl Handler for ControlHandler {
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/// Respond to HostToDevice control messages, where the host sends us a command and
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/// optionally some data, and we can only acknowledge or reject it.
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fn control_out<'a>(&'a mut self, req: Request, buf: &'a [u8]) -> Option<OutResponse> {
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// Log the request before filtering to help with debugging.
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info!("Got control_out, request={}, buf={:a}", req, buf);
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// Only handle Vendor request types to an Interface.
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if req.request_type != RequestType::Vendor || req.recipient != Recipient::Interface {
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return None;
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}
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// Ignore requests to other interfaces.
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if req.index != self.if_num.0 as u16 {
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return None;
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}
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// Accept request 100, value 200, reject others.
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if req.request == 100 && req.value == 200 {
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Some(OutResponse::Accepted)
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} else {
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Some(OutResponse::Rejected)
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}
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}
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/// Respond to DeviceToHost control messages, where the host requests some data from us.
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fn control_in<'a>(&'a mut self, req: Request, buf: &'a mut [u8]) -> Option<InResponse<'a>> {
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info!("Got control_in, request={}", req);
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// Only handle Vendor request types to an Interface.
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if req.request_type != RequestType::Vendor || req.recipient != Recipient::Interface {
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return None;
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}
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// Ignore requests to other interfaces.
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if req.index != self.if_num.0 as u16 {
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return None;
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}
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// Respond "hello" to request 101, value 201, when asked for 5 bytes, otherwise reject.
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if req.request == 101 && req.value == 201 && req.length == 5 {
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buf[..5].copy_from_slice(b"hello");
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Some(InResponse::Accepted(&buf[..5]))
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} else {
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Some(InResponse::Rejected)
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}
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}
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}
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