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https://github.com/denoland/deno.git
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4e1abb4f3a
To better reflect changes in error types in JS from #3662 this PR changes default error type used in ops from "ErrBox" to "OpError". "OpError" is a type that can be sent over to JSON; it has all information needed to construct error in JavaScript. That made "GetErrorKind" trait useless and so it was removed altogether. To provide compatibility with previous use of "ErrBox" an implementation of "From<ErrBox> for OpError" was added, however, it is an escape hatch and ops implementors should strive to use "OpError" directly.
340 lines
9.2 KiB
Rust
340 lines
9.2 KiB
Rust
use super::dispatch_minimal::MinimalOp;
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use crate::http_util::HttpBody;
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use crate::op_error::OpError;
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use crate::ops::minimal_op;
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use crate::state::State;
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use deno_core::*;
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use futures::future::FutureExt;
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use futures::ready;
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use std::future::Future;
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use std::pin::Pin;
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use std::task::Context;
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use std::task::Poll;
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use tokio::io::{AsyncRead, AsyncWrite};
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use tokio::net::TcpStream;
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use tokio_rustls::client::TlsStream as ClientTlsStream;
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use tokio_rustls::server::TlsStream as ServerTlsStream;
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#[cfg(not(windows))]
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use std::os::unix::io::FromRawFd;
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#[cfg(windows)]
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use std::os::windows::io::FromRawHandle;
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#[cfg(windows)]
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extern crate winapi;
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lazy_static! {
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/// Due to portability issues on Windows handle to stdout is created from raw file descriptor.
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/// The caveat of that approach is fact that when this handle is dropped underlying
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/// file descriptor is closed - that is highly not desirable in case of stdout.
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/// That's why we store this global handle that is then cloned when obtaining stdio
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/// for process. In turn when resource table is dropped storing reference to that handle,
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/// the handle itself won't be closed (so Deno.core.print) will still work.
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static ref STDOUT_HANDLE: std::fs::File = {
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#[cfg(not(windows))]
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let stdout = unsafe { std::fs::File::from_raw_fd(1) };
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#[cfg(windows)]
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let stdout = unsafe {
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std::fs::File::from_raw_handle(winapi::um::processenv::GetStdHandle(
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winapi::um::winbase::STD_OUTPUT_HANDLE,
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))
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};
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stdout
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};
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}
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pub fn init(i: &mut Isolate, s: &State) {
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i.register_op(
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"read",
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s.core_op(minimal_op(s.stateful_minimal_op(op_read))),
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);
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i.register_op(
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"write",
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s.core_op(minimal_op(s.stateful_minimal_op(op_write))),
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);
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}
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pub fn get_stdio() -> (StreamResource, StreamResource, StreamResource) {
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let stdin = StreamResource::Stdin(tokio::io::stdin());
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let stdout = StreamResource::Stdout({
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let stdout = STDOUT_HANDLE
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.try_clone()
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.expect("Unable to clone stdout handle");
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tokio::fs::File::from_std(stdout)
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});
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let stderr = StreamResource::Stderr(tokio::io::stderr());
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(stdin, stdout, stderr)
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}
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pub enum StreamResource {
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Stdin(tokio::io::Stdin),
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Stdout(tokio::fs::File),
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Stderr(tokio::io::Stderr),
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FsFile(tokio::fs::File),
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TcpStream(tokio::net::TcpStream),
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ServerTlsStream(Box<ServerTlsStream<TcpStream>>),
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ClientTlsStream(Box<ClientTlsStream<TcpStream>>),
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HttpBody(Box<HttpBody>),
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ChildStdin(tokio::process::ChildStdin),
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ChildStdout(tokio::process::ChildStdout),
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ChildStderr(tokio::process::ChildStderr),
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}
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/// `DenoAsyncRead` is the same as the `tokio_io::AsyncRead` trait
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/// but uses an `OpError` error instead of `std::io:Error`
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pub trait DenoAsyncRead {
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fn poll_read(
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&mut self,
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cx: &mut Context,
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buf: &mut [u8],
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) -> Poll<Result<usize, OpError>>;
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}
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impl DenoAsyncRead for StreamResource {
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fn poll_read(
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&mut self,
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cx: &mut Context,
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buf: &mut [u8],
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) -> Poll<Result<usize, OpError>> {
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use StreamResource::*;
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let mut f: Pin<Box<dyn AsyncRead>> = match self {
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FsFile(f) => Box::pin(f),
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Stdin(f) => Box::pin(f),
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TcpStream(f) => Box::pin(f),
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ClientTlsStream(f) => Box::pin(f),
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ServerTlsStream(f) => Box::pin(f),
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ChildStdout(f) => Box::pin(f),
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ChildStderr(f) => Box::pin(f),
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HttpBody(f) => Box::pin(f),
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_ => return Err(OpError::bad_resource()).into(),
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};
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let v = ready!(f.as_mut().poll_read(cx, buf))?;
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Ok(v).into()
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}
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}
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#[derive(Debug, PartialEq)]
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enum IoState {
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Pending,
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Flush,
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Done,
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}
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/// Tries to read some bytes directly into the given `buf` in asynchronous
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/// manner, returning a future type.
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///
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/// The returned future will resolve to both the I/O stream and the buffer
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/// as well as the number of bytes read once the read operation is completed.
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pub fn read<T>(state: &State, rid: ResourceId, buf: T) -> Read<T>
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where
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T: AsMut<[u8]>,
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{
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Read {
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rid,
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buf,
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io_state: IoState::Pending,
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state: state.clone(),
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}
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}
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/// A future which can be used to easily read available number of bytes to fill
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/// a buffer.
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///
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/// Created by the [`read`] function.
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pub struct Read<T> {
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rid: ResourceId,
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buf: T,
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io_state: IoState,
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state: State,
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}
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impl<T> Future for Read<T>
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where
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T: AsMut<[u8]> + Unpin,
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{
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type Output = Result<i32, OpError>;
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fn poll(self: Pin<&mut Self>, cx: &mut Context) -> Poll<Self::Output> {
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let inner = self.get_mut();
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if inner.io_state == IoState::Done {
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panic!("poll a Read after it's done");
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}
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let mut state = inner.state.borrow_mut();
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let resource = state
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.resource_table
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.get_mut::<StreamResource>(inner.rid)
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.ok_or_else(OpError::bad_resource)?;
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let nread = ready!(resource.poll_read(cx, &mut inner.buf.as_mut()[..]))?;
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inner.io_state = IoState::Done;
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Poll::Ready(Ok(nread as i32))
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}
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}
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fn no_buffer_specified() -> OpError {
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OpError::type_error("no buffer specified".to_string())
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}
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pub fn op_read(
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state: &State,
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rid: i32,
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zero_copy: Option<ZeroCopyBuf>,
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) -> Pin<Box<MinimalOp>> {
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debug!("read rid={}", rid);
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let zero_copy = match zero_copy {
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None => return futures::future::err(no_buffer_specified()).boxed_local(),
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Some(buf) => buf,
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};
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let fut = read(state, rid as u32, zero_copy);
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fut.boxed_local()
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}
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/// `DenoAsyncWrite` is the same as the `tokio_io::AsyncWrite` trait
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/// but uses an `OpError` error instead of `std::io:Error`
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pub trait DenoAsyncWrite {
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fn poll_write(
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&mut self,
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cx: &mut Context,
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buf: &[u8],
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) -> Poll<Result<usize, OpError>>;
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fn poll_close(&mut self, cx: &mut Context) -> Poll<Result<(), OpError>>;
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fn poll_flush(&mut self, cx: &mut Context) -> Poll<Result<(), OpError>>;
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}
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impl DenoAsyncWrite for StreamResource {
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fn poll_write(
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&mut self,
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cx: &mut Context,
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buf: &[u8],
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) -> Poll<Result<usize, OpError>> {
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use StreamResource::*;
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let mut f: Pin<Box<dyn AsyncWrite>> = match self {
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FsFile(f) => Box::pin(f),
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Stdout(f) => Box::pin(f),
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Stderr(f) => Box::pin(f),
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TcpStream(f) => Box::pin(f),
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ClientTlsStream(f) => Box::pin(f),
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ServerTlsStream(f) => Box::pin(f),
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ChildStdin(f) => Box::pin(f),
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_ => return Err(OpError::bad_resource()).into(),
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};
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let v = ready!(f.as_mut().poll_write(cx, buf))?;
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Ok(v).into()
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}
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fn poll_flush(&mut self, cx: &mut Context) -> Poll<Result<(), OpError>> {
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use StreamResource::*;
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let mut f: Pin<Box<dyn AsyncWrite>> = match self {
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FsFile(f) => Box::pin(f),
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Stdout(f) => Box::pin(f),
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Stderr(f) => Box::pin(f),
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TcpStream(f) => Box::pin(f),
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ClientTlsStream(f) => Box::pin(f),
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ServerTlsStream(f) => Box::pin(f),
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ChildStdin(f) => Box::pin(f),
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_ => return Err(OpError::bad_resource()).into(),
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};
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ready!(f.as_mut().poll_flush(cx))?;
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Ok(()).into()
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}
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fn poll_close(&mut self, _cx: &mut Context) -> Poll<Result<(), OpError>> {
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unimplemented!()
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}
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}
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/// A future used to write some data to a stream.
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pub struct Write<T> {
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rid: ResourceId,
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buf: T,
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io_state: IoState,
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state: State,
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nwritten: i32,
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}
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/// Creates a future that will write some of the buffer `buf` to
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/// the stream resource with `rid`.
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///
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/// Any error which happens during writing will cause both the stream and the
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/// buffer to get destroyed.
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pub fn write<T>(state: &State, rid: ResourceId, buf: T) -> Write<T>
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where
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T: AsRef<[u8]>,
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{
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Write {
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rid,
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buf,
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io_state: IoState::Pending,
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state: state.clone(),
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nwritten: 0,
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}
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}
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/// This is almost the same implementation as in tokio, difference is
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/// that error type is `OpError` instead of `std::io::Error`.
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impl<T> Future for Write<T>
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where
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T: AsRef<[u8]> + Unpin,
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{
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type Output = Result<i32, OpError>;
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fn poll(self: Pin<&mut Self>, cx: &mut Context) -> Poll<Self::Output> {
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let inner = self.get_mut();
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if inner.io_state == IoState::Done {
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panic!("poll a Read after it's done");
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}
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if inner.io_state == IoState::Pending {
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let mut state = inner.state.borrow_mut();
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let resource = state
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.resource_table
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.get_mut::<StreamResource>(inner.rid)
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.ok_or_else(OpError::bad_resource)?;
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let nwritten = ready!(resource.poll_write(cx, inner.buf.as_ref()))?;
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inner.io_state = IoState::Flush;
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inner.nwritten = nwritten as i32;
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}
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// TODO(bartlomieju): this step was added during upgrade to Tokio 0.2
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// and the reasons for the need to explicitly flush are not fully known.
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// Figure out why it's needed and preferably remove it.
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// https://github.com/denoland/deno/issues/3565
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if inner.io_state == IoState::Flush {
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let mut state = inner.state.borrow_mut();
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let resource = state
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.resource_table
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.get_mut::<StreamResource>(inner.rid)
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.ok_or_else(OpError::bad_resource)?;
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ready!(resource.poll_flush(cx))?;
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inner.io_state = IoState::Done;
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}
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Poll::Ready(Ok(inner.nwritten))
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}
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}
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pub fn op_write(
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state: &State,
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rid: i32,
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zero_copy: Option<ZeroCopyBuf>,
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) -> Pin<Box<MinimalOp>> {
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debug!("write rid={}", rid);
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let zero_copy = match zero_copy {
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None => return futures::future::err(no_buffer_specified()).boxed_local(),
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Some(buf) => buf,
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};
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let fut = write(state, rid as u32, zero_copy);
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fut.boxed_local()
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}
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