custom_interface_device_split/
custom_interface_device_split.rs1use bytes::BytesMut;
9use std::{
10 io::ErrorKind,
11 sync::{
12 atomic::{AtomicBool, Ordering},
13 Arc,
14 },
15 thread,
16 time::Duration,
17};
18
19use usb_gadget::{
20 default_udc,
21 function::custom::{Custom, Endpoint, EndpointDirection, EndpointReceiver, EndpointSender, Event, Interface},
22 Class, Config, Gadget, Id, OsDescriptor, Strings, WebUsb,
23};
24
25fn main() {
26 env_logger::init();
27
28 let existing = std::env::var("EXISTING_FFS").ok();
29 let register_only = std::env::var("REGISTER_ONLY").ok().is_some();
30
31 let (ep1_rx, ep1_dir) = EndpointDirection::host_to_device();
32 let (ep2_tx, ep2_dir) = EndpointDirection::device_to_host();
33
34 let mut builder = Custom::builder();
35
36 if register_only {
37 builder.ffs_no_init = true;
40 builder.ffs_uid = Some(std::env::var("SUDO_UID").unwrap().parse().unwrap());
41 builder.ffs_gid = Some(std::env::var("SUDO_GID").unwrap().parse().unwrap());
42 } else {
43 builder = builder.with_interface(
44 Interface::new(Class::vendor_specific(1, 2), "custom interface")
45 .with_endpoint(Endpoint::bulk(ep1_dir))
46 .with_endpoint(Endpoint::bulk(ep2_dir)),
47 );
48 }
49
50 let (reg, custom) = if let Some(ref path) = existing {
51 (None, builder.existing(path).unwrap())
52 } else {
53 let (mut custom, handle) = builder.build();
54
55 usb_gadget::remove_all().expect("cannot remove all gadgets");
56
57 let udc = default_udc().expect("cannot get UDC");
58 let gadget = Gadget::new(
59 Class::vendor_specific(255, 3),
60 Id::new(6, 0x11),
61 Strings::new("manufacturer", "custom USB interface", "serial_number"),
62 )
63 .with_config(Config::new("config").with_function(handle))
64 .with_os_descriptor(OsDescriptor::microsoft())
65 .with_web_usb(WebUsb::new(0xf1, "http://webusb.org"));
66
67 let reg = gadget.register().expect("cannot register gadget");
68
69 if register_only {
70 let ffs_dir = custom.ffs_dir().unwrap();
71 println!("FunctionFS dir mounted at {}", ffs_dir.display());
72 println!("You can now run this program again as unprivileged user:");
73 println!("EXISTING_FFS={} {}", ffs_dir.display(), std::env::args().next().unwrap());
74
75 let mut ep1_path = ffs_dir.clone();
76 ep1_path.push("ep1");
77 while std::fs::metadata(&ep1_path).is_err() {
78 thread::sleep(Duration::from_secs(1));
79 }
80
81 println!("Detected ep1 in FunctionFS dir, this means descriptors have been written to ep0.");
82 println!("Now binding gadget to UDC (making it active)...");
83 }
84
85 reg.bind(Some(&udc)).expect("cannot bind to UDC");
86
87 println!("Custom function at {}", custom.status().unwrap().path().unwrap().display());
88 println!();
89
90 (Some(reg), custom)
91 };
92
93 if register_only {
94 println!("Waiting for the gadget to become unbound. If you stop the other process, this will happen automatically.");
95 while reg.as_ref().unwrap().udc().unwrap().is_some() {
96 thread::sleep(Duration::from_secs(1));
97 }
98 } else {
99 if existing.is_some() {
100 println!("The FunctionFS setup is done, you can type 'yes' in the other process and hit <ENTER>");
101 }
102 run(ep1_rx, ep2_tx, custom);
103 }
104
105 if let Some(reg) = reg {
106 println!("Unregistering");
107 reg.remove().unwrap();
108 }
109}
110
111fn run(mut ep1_rx: EndpointReceiver, mut ep2_tx: EndpointSender, mut custom: Custom) {
112 let ep1_control = ep1_rx.control().unwrap();
113 println!("ep1 unclaimed: {:?}", ep1_control.unclaimed_fifo());
114 println!("ep1 real address: {}", ep1_control.real_address().unwrap());
115 println!("ep1 descriptor: {:?}", ep1_control.descriptor().unwrap());
116 println!();
117
118 let ep2_control = ep2_tx.control().unwrap();
119 println!("ep2 unclaimed: {:?}", ep2_control.unclaimed_fifo());
120 println!("ep2 real address: {}", ep2_control.real_address().unwrap());
121 println!("ep2 descriptor: {:?}", ep2_control.descriptor().unwrap());
122 println!();
123
124 let stop = Arc::new(AtomicBool::new(false));
125
126 thread::scope(|s| {
127 s.spawn(|| {
128 let size = ep1_rx.max_packet_size().unwrap();
129 let mut b = 0;
130 while !stop.load(Ordering::Relaxed) {
131 let data = ep1_rx
132 .recv_timeout(BytesMut::with_capacity(size), Duration::from_secs(1))
133 .expect("recv failed");
134 match data {
135 Some(data) => {
136 println!("received {} bytes: {data:x?}", data.len());
137 if !data.iter().all(|x| *x == b) {
138 panic!("wrong data received");
139 }
140 b = b.wrapping_add(1);
141 }
142 None => {
143 println!("receive empty");
144 }
145 }
146 }
147 });
148
149 s.spawn(|| {
150 let size = ep2_tx.max_packet_size().unwrap();
151 let mut b = 0u8;
152 while !stop.load(Ordering::Relaxed) {
153 let data = vec![b; size];
154 match ep2_tx.send_timeout(data.into(), Duration::from_secs(1)) {
155 Ok(()) => {
156 println!("sent data {b} of size {size} bytes");
157 b = b.wrapping_add(1);
158 }
159 Err(err) if err.kind() == ErrorKind::TimedOut => println!("send timeout"),
160 Err(err) => panic!("send failed: {err}"),
161 }
162 }
163 });
164
165 s.spawn(|| {
166 let mut ctrl_data = Vec::new();
167
168 while !stop.load(Ordering::Relaxed) {
169 if let Some(event) = custom.event_timeout(Duration::from_secs(1)).expect("event failed") {
170 println!("Event: {event:?}");
171 match event {
172 Event::SetupHostToDevice(req) => {
173 if req.ctrl_req().request == 255 {
174 println!("Stopping");
175 stop.store(true, Ordering::Relaxed);
176 }
177 ctrl_data = req.recv_all().unwrap();
178 println!("Control data: {ctrl_data:x?}");
179 }
180 Event::SetupDeviceToHost(req) => {
181 println!("Replying with data");
182 req.send(&ctrl_data).unwrap();
183 }
184 _ => (),
185 }
186 } else {
187 println!("no event");
188 }
189 }
190 });
191 });
192}