cap-async-std 0.1.0

Capability-oriented version of async-std
Documentation
#![allow(missing_docs)] // TODO: add docs

use crate::net::{TcpListener, TcpStream, ToSocketAddrs, UdpSocket};
use async_std::{io, net};
use cap_primitives::net::NO_SOCKET_ADDRS;

// FIXME: lots more to do here

pub struct Catalog {
    cap: cap_primitives::net::Catalog,
}

impl Catalog {
    #[inline]
    pub async fn bind_tcp_listener<A: ToSocketAddrs>(&self, addr: A) -> io::Result<TcpListener> {
        let addrs = addr.to_socket_addrs().await?;

        let mut last_err = None;
        for addr in addrs {
            self.cap.check_addr(&addr)?;
            // TODO: when compiling for WASI, use WASI-specific methods instead
            match net::TcpListener::bind(addr).await {
                Ok(tcp_listener) => return Ok(TcpListener::from_std(tcp_listener)),
                Err(e) => last_err = Some(e),
            }
        }
        match last_err {
            Some(e) => Err(e),
            None => Err(net::TcpListener::bind(NO_SOCKET_ADDRS).await.unwrap_err()),
        }
    }

    #[inline]
    pub async fn connect_tcp_stream<A: ToSocketAddrs>(&self, addr: A) -> io::Result<TcpStream> {
        let addrs = addr.to_socket_addrs().await?;

        let mut last_err = None;
        for addr in addrs {
            self.cap.check_addr(&addr)?;
            // TODO: when compiling for WASI, use WASI-specific methods instead
            match net::TcpStream::connect(addr).await {
                Ok(tcp_stream) => return Ok(TcpStream::from_std(tcp_stream)),
                Err(e) => last_err = Some(e),
            }
        }
        match last_err {
            Some(e) => Err(e),
            None => Err(net::TcpStream::connect(NO_SOCKET_ADDRS).await.unwrap_err()),
        }
    }

    // async_std doesn't have `connect_timeout`.

    #[inline]
    pub async fn bind_udp_socket<A: ToSocketAddrs>(&self, addr: A) -> io::Result<UdpSocket> {
        let addrs = addr.to_socket_addrs().await?;

        let mut last_err = None;
        for addr in addrs {
            self.cap.check_addr(&addr)?;
            match net::UdpSocket::bind(addr).await {
                Ok(udp_socket) => return Ok(UdpSocket::from_std(udp_socket)),
                Err(e) => last_err = Some(e),
            }
        }
        match last_err {
            Some(e) => Err(e),
            None => Err(net::UdpSocket::bind(NO_SOCKET_ADDRS).await.unwrap_err()),
        }
    }

    #[inline]
    pub async fn send_to_udp_socket_addr<A: ToSocketAddrs>(
        &self,
        udp_socket: &UdpSocket,
        buf: &[u8],
        addr: A,
    ) -> io::Result<usize> {
        let mut addrs = addr.to_socket_addrs().await?;

        // `UdpSocket::send_to` only sends to the first address.
        let addr = match addrs.next() {
            None => return Err(net::UdpSocket::bind(NO_SOCKET_ADDRS).await.unwrap_err()),
            Some(addr) => addr,
        };
        self.cap.check_addr(&addr)?;
        udp_socket.std.send_to(buf, addr).await
    }

    #[inline]
    pub async fn connect_udp_socket<A: ToSocketAddrs>(
        &self,
        udp_socket: &UdpSocket,
        addr: A,
    ) -> io::Result<()> {
        let addrs = addr.to_socket_addrs().await?;

        let mut last_err = None;
        for addr in addrs {
            self.cap.check_addr(&addr)?;
            match udp_socket.std.connect(addr).await {
                Ok(()) => return Ok(()),
                Err(e) => last_err = Some(e),
            }
        }
        match last_err {
            Some(e) => Err(e),
            None => Err(net::UdpSocket::bind(NO_SOCKET_ADDRS).await.unwrap_err()),
        }
    }
}