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poll_read_buf.rs
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poll_read_buf.rs
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use bytes::BufMut;
use futures_core::ready;
use std::io;
use std::pin::Pin;
use std::task::{Context, Poll};
use tokio::io::{AsyncRead, ReadBuf};
/// Try to read data from an `AsyncRead` into an implementer of the [`Buf`] trait.
///
/// [`Buf`]: bytes::Buf
///
/// # Example
///
/// ```
/// use bytes::{Bytes, BytesMut};
/// use tokio::stream;
/// use tokio::io::Result;
/// use tokio_util::io::{StreamReader, poll_read_buf};
/// use futures::future::poll_fn;
/// use std::pin::Pin;
/// # #[tokio::main]
/// # async fn main() -> std::io::Result<()> {
///
/// // Create a reader from an iterator. This particular reader will always be
/// // ready.
/// let mut read = StreamReader::new(stream::iter(vec![Result::Ok(Bytes::from_static(&[0, 1, 2, 3]))]));
///
/// let mut buf = BytesMut::new();
/// let mut reads = 0;
///
/// loop {
/// reads += 1;
/// let n = poll_fn(|cx| poll_read_buf(Pin::new(&mut read), cx, &mut buf)).await?;
///
/// if n == 0 {
/// break;
/// }
/// }
///
/// // one or more reads might be necessary.
/// assert!(reads >= 1);
/// assert_eq!(&buf[..], &[0, 1, 2, 3]);
/// # Ok(())
/// # }
/// ```
pub fn poll_read_buf<R, B>(
read: Pin<&mut R>,
cx: &mut Context<'_>,
buf: &mut B,
) -> Poll<io::Result<usize>>
where
R: AsyncRead,
B: BufMut,
{
if !buf.has_remaining_mut() {
return Poll::Ready(Ok(0));
}
let n = {
let mut buf = ReadBuf::uninit(buf.bytes_mut());
ready!(read.poll_read(cx, &mut buf)?);
buf.filled().len()
};
// Safety: This is guaranteed to be the number of initialized (and read)
// bytes due to the invariants provided by `ReadBuf::filled`.
unsafe {
buf.advance_mut(n);
}
Poll::Ready(Ok(n))
}