LCOV - code coverage report
Current view: top level - proxy/src/sasl - stream.rs (source / functions) Coverage Total Hit
Test: 3eba1babe267649f8cebefc91c236589db030548.info Lines: 100.0 % 39 39
Test Date: 2024-11-22 12:36:12 Functions: 33.3 % 45 15

            Line data    Source code
       1              : //! Abstraction for the string-oriented SASL protocols.
       2              : 
       3              : use std::io;
       4              : 
       5              : use tokio::io::{AsyncRead, AsyncWrite};
       6              : use tracing::info;
       7              : 
       8              : use super::messages::ServerMessage;
       9              : use super::Mechanism;
      10              : use crate::stream::PqStream;
      11              : 
      12              : /// Abstracts away all peculiarities of the libpq's protocol.
      13              : pub(crate) struct SaslStream<'a, S> {
      14              :     /// The underlying stream.
      15              :     stream: &'a mut PqStream<S>,
      16              :     /// Current password message we received from client.
      17              :     current: bytes::Bytes,
      18              :     /// First SASL message produced by client.
      19              :     first: Option<&'a str>,
      20              : }
      21              : 
      22              : impl<'a, S> SaslStream<'a, S> {
      23           12 :     pub(crate) fn new(stream: &'a mut PqStream<S>, first: &'a str) -> Self {
      24           12 :         Self {
      25           12 :             stream,
      26           12 :             current: bytes::Bytes::new(),
      27           12 :             first: Some(first),
      28           12 :         }
      29           12 :     }
      30              : }
      31              : 
      32              : impl<S: AsyncRead + Unpin> SaslStream<'_, S> {
      33              :     // Receive a new SASL message from the client.
      34           23 :     async fn recv(&mut self) -> io::Result<&str> {
      35           23 :         if let Some(first) = self.first.take() {
      36           12 :             return Ok(first);
      37           11 :         }
      38              : 
      39           11 :         self.current = self.stream.read_password_message().await?;
      40           11 :         let s = std::str::from_utf8(&self.current)
      41           11 :             .map_err(|_| io::Error::new(io::ErrorKind::InvalidData, "bad encoding"))?;
      42              : 
      43           11 :         Ok(s)
      44           23 :     }
      45              : }
      46              : 
      47              : impl<S: AsyncWrite + Unpin> SaslStream<'_, S> {
      48              :     // Send a SASL message to the client.
      49           17 :     async fn send(&mut self, msg: &ServerMessage<&str>) -> io::Result<()> {
      50           17 :         self.stream.write_message(&msg.to_reply()).await?;
      51           17 :         Ok(())
      52           17 :     }
      53              : }
      54              : 
      55              : /// SASL authentication outcome.
      56              : /// It's much easier to match on those two variants
      57              : /// than to peek into a noisy protocol error type.
      58              : #[must_use = "caller must explicitly check for success"]
      59              : pub(crate) enum Outcome<R> {
      60              :     /// Authentication succeeded and produced some value.
      61              :     Success(R),
      62              :     /// Authentication failed (reason attached).
      63              :     Failure(&'static str),
      64              : }
      65              : 
      66              : impl<S: AsyncRead + AsyncWrite + Unpin> SaslStream<'_, S> {
      67              :     /// Perform SASL message exchange according to the underlying algorithm
      68              :     /// until user is either authenticated or denied access.
      69           12 :     pub(crate) async fn authenticate<M: Mechanism>(
      70           12 :         mut self,
      71           12 :         mut mechanism: M,
      72           12 :     ) -> super::Result<Outcome<M::Output>> {
      73              :         loop {
      74           23 :             let input = self.recv().await?;
      75           23 :             let step = mechanism.exchange(input).map_err(|error| {
      76            5 :                 info!(?error, "error during SASL exchange");
      77            5 :                 error
      78           23 :             })?;
      79              : 
      80              :             use super::Step;
      81           18 :             return Ok(match step {
      82           11 :                 Step::Continue(moved_mechanism, reply) => {
      83           11 :                     self.send(&ServerMessage::Continue(&reply)).await?;
      84           11 :                     mechanism = moved_mechanism;
      85           11 :                     continue;
      86              :                 }
      87            6 :                 Step::Success(result, reply) => {
      88            6 :                     self.send(&ServerMessage::Final(&reply)).await?;
      89            6 :                     Outcome::Success(result)
      90              :                 }
      91            1 :                 Step::Failure(reason) => Outcome::Failure(reason),
      92              :             });
      93              :         }
      94           12 :     }
      95              : }
        

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