1use std::{net::Shutdown, num::NonZeroU32};
2
3use compio_buf::{IoBufExt, IoBufMutExt};
4use rustix::{
5 io::close,
6 net::{
7 AddressFamily, Protocol, RecvAncillaryBuffer, SendAncillaryBuffer, SocketAddrAny,
8 SocketType, acceptfrom_with, bind, connect, listen, recv, recvfrom, recvmsg, send, sendmsg,
9 sendmsg_addr, sendto, shutdown, socket_with,
10 },
11};
12
13use crate::{PollFirst, sys::op::*};
14
15impl<S: AsFd> Accept<S> {
16 pub(crate) fn call(&mut self) -> io::Result<usize> {
17 let (owned, addr) = acceptfrom_with(self.fd.as_fd(), SOCKET_FLAG)?;
18 let fd = owned.as_raw_fd();
19 let socket: Socket2 = owned.into();
20
21 if cfg!(apple) {
22 socket.set_cloexec(true)?;
23 socket.set_nonblocking(true)?;
24 }
25
26 copy_addr_from(&mut self.buffer, &mut self.addr_len, addr);
27 self.accepted_fd = Some(socket);
28
29 Ok(fd as usize)
30 }
31}
32
33impl<S: AsFd> Connect<S> {
34 pub(crate) fn call(&self) -> io::Result<usize> {
35 connect(&self.fd, &SockAddrArg(&self.addr))?;
36 Ok(0)
37 }
38}
39
40impl<T: IoBuf, S: AsFd> Send<T, S> {
41 pub(crate) fn call(&mut self) -> io::Result<usize> {
42 send(self.fd.as_fd(), self.buffer.as_init(), self.flags).map_err(Into::into)
43 }
44}
45
46impl<T: IoBuf, S: AsFd> SendTo<T, S> {
47 pub(crate) fn call(&self) -> io::Result<usize> {
48 sendto(
49 self.header.fd.as_fd(),
50 self.buffer.as_init(),
51 self.header.flags,
52 &SockAddrArg(&self.header.addr),
53 )
54 .map_err(Into::into)
55 }
56}
57
58impl<T: IoVectoredBuf, S: AsFd> SendVectored<T, S> {
59 pub(crate) fn call(&self, control: &mut SendVectoredControl) -> io::Result<usize> {
60 let mut anc = SendAncillaryBuffer::default();
61
62 sendmsg(
63 self.fd.as_fd(),
64 io_slice(&control.slices),
65 &mut anc,
66 self.flags,
67 )
68 .map_err(Into::into)
69 }
70}
71
72impl<T: IoVectoredBuf, S: AsFd> SendToVectored<T, S> {
73 pub(crate) fn call(&mut self, control: &mut SendMsgControl) -> io::Result<usize> {
74 let addr = SockAddrArg(&self.header.addr);
75 let mut anc = SendAncillaryBuffer::default();
76 let buf = io_slice(&control.slices);
77
78 sendmsg_addr(
79 self.header.fd.as_fd(),
80 &addr,
81 buf,
82 &mut anc,
83 self.header.flags,
84 )
85 .map_err(Into::into)
86 }
87}
88
89impl<T: IoVectoredBuf, C: IoBuf, S: AsFd> SendMsg<T, C, S> {
90 pub(crate) fn call(&mut self, control: &mut SendMsgControl) -> io::Result<usize> {
91 syscall!(libc::sendmsg(
94 self.fd.as_fd().as_raw_fd(),
95 &control.msg,
96 self.flags.bits() as _,
97 ))
98 }
99}
100
101impl<T: IoBufMut, S: AsFd> Recv<T, S> {
102 pub(crate) fn call(&mut self) -> io::Result<usize> {
103 let (_, len) = recv(self.fd.as_fd(), self.buffer.as_uninit(), self.flags)?;
104
105 Ok(len)
106 }
107}
108
109impl<T: IoVectoredBufMut, S: AsFd> RecvVectored<T, S> {
110 pub(crate) fn call(&mut self, control: &mut RecvVectoredControl) -> io::Result<usize> {
111 let res = recvmsg(
112 self.fd.as_fd(),
113 io_slice_mut(&mut control.slices),
114 &mut RecvAncillaryBuffer::default(),
115 self.flags,
116 )?;
117
118 Ok(res.bytes.min(self.buffer.total_capacity()))
120 }
121}
122
123impl<S: AsFd> RecvFromHeader<S> {
124 pub fn set_addr(&mut self, addr: Option<SocketAddrAny>) {
125 copy_addr_from(&mut self.addr, &mut self.addr_len, addr)
126 }
127}
128
129impl<T: IoBufMut, S: AsFd> RecvFrom<T, S> {
130 pub(crate) fn call(&mut self) -> io::Result<usize> {
131 let (_, len, addr) = recvfrom(&self.header.fd, self.buffer.as_uninit(), self.header.flags)?;
132
133 self.header.set_addr(addr);
134
135 Ok(len.min(self.buffer.buf_capacity()))
136 }
137}
138
139impl<T: IoVectoredBufMut, C: IoBufMut, S: AsFd> RecvMsg<T, C, S> {
140 pub(crate) fn call(&mut self, control: &mut RecvMsgControl) -> io::Result<usize> {
141 let res = syscall!(libc::recvmsg(
142 self.header.fd.as_fd().as_raw_fd(),
143 &raw mut control.msg,
144 self.header.flags.bits() as _,
145 ))?;
146
147 self.update_control(control);
148
149 Ok(res)
150 }
151}
152
153impl<T: IoVectoredBufMut, S: AsFd> RecvFromVectored<T, S> {
154 pub(crate) fn call(&mut self, control: &mut RecvMsgControl) -> io::Result<usize> {
155 let res = recvmsg(
156 &self.header.fd,
157 io_slice_mut(&mut control.slices),
158 &mut RecvAncillaryBuffer::default(),
159 self.header.flags,
160 )?;
161
162 self.header.set_addr(res.address);
163
164 Ok(res.bytes)
165 }
166}
167
168pub struct CreateSocket {
170 pub(crate) domain: AddressFamily,
171 pub(crate) socket_type: SocketType,
172 pub(crate) protocol: Option<Protocol>,
173 pub(crate) opened_fd: Option<Socket2>,
174}
175
176impl CreateSocket {
177 pub fn new(domain: i32, socket_type: i32, protocol: i32) -> Self {
179 let domain = AddressFamily::from_raw(domain as _);
180 let socket_type = SocketType::from_raw(socket_type as _);
181 let protocol = NonZeroU32::new(protocol as _).map(Protocol::from_raw);
182
183 Self {
184 domain,
185 socket_type,
186 protocol,
187 opened_fd: None,
188 }
189 }
190
191 pub(crate) fn call(&mut self) -> io::Result<usize> {
192 let owned = socket_with(self.domain, self.socket_type, SOCKET_FLAG, self.protocol)?;
193 let fd = owned.as_raw_fd();
194 let socket: Socket2 = owned.into();
195
196 #[cfg(apple)]
197 {
198 socket.set_cloexec(true)?;
199 socket.set_nosigpipe(true)?;
200 socket.set_nonblocking(true)?;
201 }
202
203 self.opened_fd = Some(socket);
204 Ok(fd as _)
205 }
206}
207
208impl IntoInner for CreateSocket {
209 type Inner = Socket2;
210
211 fn into_inner(self) -> Self::Inner {
212 self.opened_fd.expect("socket not created")
213 }
214}
215
216pub struct Bind<S> {
218 pub(crate) fd: S,
219 pub(crate) addr: SockAddr,
220}
221
222impl<S> Bind<S> {
223 pub fn new(fd: S, addr: SockAddr) -> Self {
225 Self { fd, addr }
226 }
227}
228
229impl<S: AsFd> Bind<S> {
230 pub(crate) fn call(&self) -> io::Result<usize> {
231 bind(self.fd.as_fd(), &SockAddrArg(&self.addr))?;
232 Ok(0)
233 }
234}
235
236pub struct Listen<S> {
238 pub(crate) fd: S,
239 pub(crate) backlog: i32,
240}
241
242impl<S> Listen<S> {
243 pub fn new(fd: S, backlog: i32) -> Self {
245 Self { fd, backlog }
246 }
247}
248
249impl<S: AsFd> Listen<S> {
250 pub(crate) fn call(&self) -> io::Result<usize> {
251 listen(self.fd.as_fd(), self.backlog)?;
252 Ok(0)
253 }
254}
255
256pub struct ShutdownSocket<S> {
258 pub(crate) fd: S,
259 pub(crate) how: Shutdown,
260}
261
262impl<S> ShutdownSocket<S> {
263 pub fn new(fd: S, how: Shutdown) -> Self {
265 Self { fd, how }
266 }
267}
268
269impl<S: AsFd> ShutdownSocket<S> {
270 #[cfg(io_uring)]
271 pub(crate) fn how(&self) -> i32 {
272 match self.how {
273 Shutdown::Write => libc::SHUT_WR,
274 Shutdown::Read => libc::SHUT_RD,
275 Shutdown::Both => libc::SHUT_RDWR,
276 }
277 }
278
279 pub(crate) fn call(&mut self) -> io::Result<usize> {
280 let how = match self.how {
281 Shutdown::Write => rustix::net::Shutdown::Write,
282 Shutdown::Read => rustix::net::Shutdown::Read,
283 Shutdown::Both => rustix::net::Shutdown::Both,
284 };
285 shutdown(&self.fd, how)?;
286 Ok(0)
287 }
288}
289
290impl CloseSocket {
291 pub(crate) fn call(&mut self) -> io::Result<usize> {
292 unsafe { close(self.fd.as_raw_fd()) };
293 Ok(0)
294 }
295}
296
297pub struct Accept<S> {
299 pub(crate) fd: S,
300 pub(crate) buffer: SockAddrStorage,
301 pub(crate) addr_len: socklen_t,
302 pub(crate) accepted_fd: Option<Socket2>,
303 pub(crate) poll_first: bool,
304}
305
306impl<S> Accept<S> {
307 pub fn new(fd: S) -> Self {
309 let buffer = SockAddrStorage::zeroed();
310 let addr_len = buffer.size_of();
311 Self {
312 fd,
313 buffer,
314 addr_len,
315 accepted_fd: None,
316 poll_first: false,
317 }
318 }
319}
320
321impl<S> PollFirst for Accept<S> {
322 fn poll_first(&mut self) {
323 self.poll_first = true;
324 }
325}
326
327impl<S> IntoInner for Accept<S> {
328 type Inner = (Socket2, SockAddr);
329
330 fn into_inner(mut self) -> Self::Inner {
331 let socket = self.accepted_fd.take().expect("socket not accepted");
332 (socket, unsafe { SockAddr::new(self.buffer, self.addr_len) })
333 }
334}
335
336#[doc(hidden)]
337pub struct RecvVectoredControl {
338 pub(crate) msg: libc::msghdr,
339 #[allow(dead_code)]
340 pub(crate) slices: Vec<SysSlice>,
341}
342
343impl Default for RecvVectoredControl {
344 fn default() -> Self {
345 Self {
346 msg: unsafe { std::mem::zeroed() },
347 slices: Vec::new(),
348 }
349 }
350}
351
352impl<T: IoVectoredBufMut, S> RecvVectored<T, S> {
353 pub(crate) fn init_control(&mut self, ctrl: &mut RecvVectoredControl) {
354 ctrl.slices = self.buffer.sys_slices_mut();
355 ctrl.msg.msg_iov = ctrl.slices.as_mut_ptr() as _;
356 ctrl.msg.msg_iovlen = ctrl.slices.len() as _;
357 }
358}
359
360#[doc(hidden)]
361pub struct SendVectoredControl {
362 pub(crate) msg: libc::msghdr,
363 #[allow(dead_code)]
364 pub(crate) slices: Vec<SysSlice>,
365}
366
367impl Default for SendVectoredControl {
368 fn default() -> Self {
369 Self {
370 msg: unsafe { std::mem::zeroed() },
371 slices: Vec::new(),
372 }
373 }
374}
375
376impl<T: IoVectoredBuf, S> SendVectored<T, S> {
377 pub(crate) fn init_control(&mut self, ctrl: &mut SendVectoredControl) {
378 ctrl.slices = self.buffer.sys_slices();
379 ctrl.msg.msg_iov = ctrl.slices.as_ptr() as _;
380 ctrl.msg.msg_iovlen = ctrl.slices.len() as _;
381 }
382}
383
384#[doc(hidden)]
385pub struct SendMsgControl {
386 pub(crate) msg: libc::msghdr,
387 #[allow(dead_code)]
388 pub(crate) slices: Multi<SysSlice>,
389}
390
391impl<S: AsFd> SendToHeader<S> {
392 #[allow(dead_code)]
393 pub(crate) fn create_control(
394 &mut self,
395 ctrl: &mut SendMsgControl,
396 slices: impl Into<Multi<SysSlice>>,
397 ) {
398 ctrl.msg.msg_name = self.addr.as_ptr() as _;
399 ctrl.msg.msg_namelen = self.addr.len();
400 ctrl.slices = slices.into();
401 ctrl.msg.msg_iov = ctrl.slices.as_mut_ptr() as _;
402 ctrl.msg.msg_iovlen = ctrl.slices.len() as _;
403 }
404}
405
406impl Default for SendMsgControl {
407 fn default() -> Self {
408 Self {
409 msg: unsafe { std::mem::zeroed() },
410 slices: Multi::new(),
411 }
412 }
413}
414
415impl<T: IoVectoredBuf, C: IoBuf, S> SendMsg<T, C, S> {
416 pub(crate) fn init_control(&mut self, ctrl: &mut SendMsgControl) {
417 ctrl.slices = self.buffer.sys_slices().into();
418 match self.addr.as_ref() {
419 Some(addr) => {
420 ctrl.msg.msg_name = addr.as_ptr() as _;
421 ctrl.msg.msg_namelen = addr.len();
422 }
423 None => {
424 ctrl.msg.msg_name = std::ptr::null_mut();
425 ctrl.msg.msg_namelen = 0;
426 }
427 }
428 ctrl.msg.msg_iov = ctrl.slices.as_ptr() as _;
429 ctrl.msg.msg_iovlen = ctrl.slices.len() as _;
430 ctrl.msg.msg_control = self.control.buf_ptr() as _;
431 ctrl.msg.msg_controllen = self.control.buf_len() as _;
432 }
433}
434
435#[doc(hidden)]
436pub struct RecvMsgControl {
437 pub(crate) msg: libc::msghdr,
438 #[allow(dead_code)]
439 pub(crate) slices: Multi<SysSlice>,
440}
441
442impl Default for RecvMsgControl {
443 fn default() -> Self {
444 Self {
445 msg: unsafe { std::mem::zeroed() },
446 slices: Multi::new(),
447 }
448 }
449}
450
451impl<T: IoVectoredBufMut, C: IoBufMut, S> RecvMsg<T, C, S> {
452 pub(crate) fn init_control(&mut self, ctrl: &mut RecvMsgControl) {
453 ctrl.slices = Multi::from_vec(self.buffer.sys_slices_mut());
454 ctrl.msg.msg_name = &raw mut self.header.addr as _;
455 ctrl.msg.msg_namelen = self.header.addr.size_of() as _;
456 ctrl.msg.msg_iov = ctrl.slices.as_mut_ptr() as _;
457 ctrl.msg.msg_iovlen = ctrl.slices.len() as _;
458 ctrl.msg.msg_control = self.control.buf_mut_ptr() as _;
459 ctrl.msg.msg_controllen = self.control.buf_capacity() as _;
460 }
461
462 pub(crate) fn update_control(&mut self, control: &RecvMsgControl) {
463 self.header.addr_len = control.msg.msg_namelen as _;
464 self.control_len = control.msg.msg_controllen as _;
465 self.return_flags = ReturnFlags::from_bits_retain(control.msg.msg_flags as _);
466 }
467}