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denoland-deno/core/examples/http_bench_bin_ops.rs

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// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
#[macro_use]
extern crate log;
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use deno_core::js_check;
use deno_core::BufVec;
use deno_core::JsRuntime;
use deno_core::Op;
use deno_core::OpState;
use deno_core::ZeroCopyBuf;
use futures::future::poll_fn;
use futures::future::FutureExt;
use futures::future::TryFuture;
use futures::future::TryFutureExt;
use std::cell::RefCell;
use std::convert::TryInto;
use std::env;
use std::fmt::Debug;
use std::io::Error;
use std::io::ErrorKind;
use std::mem::size_of;
use std::net::SocketAddr;
use std::pin::Pin;
use std::ptr;
use std::rc::Rc;
use tokio::io::AsyncRead;
use tokio::io::AsyncWrite;
use tokio::net::TcpListener;
use tokio::net::TcpStream;
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use tokio::runtime;
struct Logger;
impl log::Log for Logger {
fn enabled(&self, metadata: &log::Metadata) -> bool {
metadata.level() <= log::max_level()
}
fn log(&self, record: &log::Record) {
if self.enabled(record.metadata()) {
println!("{} - {}", record.level(), record.args());
}
}
fn flush(&self) {}
}
#[derive(Copy, Clone, Debug, PartialEq)]
struct Record {
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promise_id: u32,
rid: u32,
result: i32,
}
type RecordBuf = [u8; size_of::<Record>()];
impl From<&[u8]> for Record {
fn from(buf: &[u8]) -> Self {
assert_eq!(buf.len(), size_of::<RecordBuf>());
unsafe { *(buf as *const _ as *const RecordBuf) }.into()
}
}
impl From<RecordBuf> for Record {
fn from(buf: RecordBuf) -> Self {
unsafe {
#[allow(clippy::cast_ptr_alignment)]
ptr::read_unaligned(&buf as *const _ as *const Self)
}
}
}
impl From<Record> for RecordBuf {
fn from(record: Record) -> Self {
unsafe { ptr::read(&record as *const _ as *const Self) }
}
}
fn create_isolate() -> JsRuntime {
let mut isolate = JsRuntime::new(Default::default());
register_op_bin_sync(&mut isolate, "listen", op_listen);
register_op_bin_sync(&mut isolate, "close", op_close);
register_op_bin_async(&mut isolate, "accept", op_accept);
register_op_bin_async(&mut isolate, "read", op_read);
register_op_bin_async(&mut isolate, "write", op_write);
isolate
}
fn op_listen(
state: &mut OpState,
_rid: u32,
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_bufs: &mut [ZeroCopyBuf],
) -> Result<u32, Error> {
debug!("listen");
let addr = "127.0.0.1:4544".parse::<SocketAddr>().unwrap();
let std_listener = std::net::TcpListener::bind(&addr)?;
let listener = TcpListener::from_std(std_listener)?;
let rid = state.resource_table.add("tcpListener", Box::new(listener));
Ok(rid)
}
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fn op_close(
state: &mut OpState,
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rid: u32,
_bufs: &mut [ZeroCopyBuf],
) -> Result<u32, Error> {
debug!("close rid={}", rid);
state
.resource_table
.close(rid)
.map(|_| 0)
.ok_or_else(bad_resource_id)
}
async fn op_accept(
state: Rc<RefCell<OpState>>,
rid: u32,
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_bufs: BufVec,
) -> Result<u32, Error> {
debug!("accept rid={}", rid);
poll_fn(move |cx| {
let resource_table = &mut state.borrow_mut().resource_table;
let listener = resource_table
.get_mut::<TcpListener>(rid)
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.ok_or_else(bad_resource_id)?;
listener.poll_accept(cx).map_ok(|(stream, _addr)| {
resource_table.add("tcpStream", Box::new(stream))
})
})
.await
}
fn op_read(
state: Rc<RefCell<OpState>>,
rid: u32,
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bufs: BufVec,
) -> impl TryFuture<Ok = usize, Error = Error> {
assert_eq!(bufs.len(), 1, "Invalid number of arguments");
let mut buf = bufs[0].clone();
debug!("read rid={}", rid);
poll_fn(move |cx| {
let resource_table = &mut state.borrow_mut().resource_table;
let stream = resource_table
.get_mut::<TcpStream>(rid)
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.ok_or_else(bad_resource_id)?;
Pin::new(stream).poll_read(cx, &mut buf)
})
}
fn op_write(
state: Rc<RefCell<OpState>>,
rid: u32,
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bufs: BufVec,
) -> impl TryFuture<Ok = usize, Error = Error> {
assert_eq!(bufs.len(), 1, "Invalid number of arguments");
let buf = bufs[0].clone();
debug!("write rid={}", rid);
poll_fn(move |cx| {
let resource_table = &mut state.borrow_mut().resource_table;
let stream = resource_table
.get_mut::<TcpStream>(rid)
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.ok_or_else(bad_resource_id)?;
Pin::new(stream).poll_write(cx, &buf)
})
}
fn register_op_bin_sync<F>(
isolate: &mut JsRuntime,
name: &'static str,
op_fn: F,
) where
F: Fn(&mut OpState, u32, &mut [ZeroCopyBuf]) -> Result<u32, Error> + 'static,
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{
let base_op_fn = move |state: Rc<RefCell<OpState>>, mut bufs: BufVec| -> Op {
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let record = Record::from(bufs[0].as_ref());
let is_sync = record.promise_id == 0;
assert!(is_sync);
let zero_copy_bufs = &mut bufs[1..];
let result: i32 =
match op_fn(&mut state.borrow_mut(), record.rid, zero_copy_bufs) {
Ok(r) => r as i32,
Err(_) => -1,
};
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let buf = RecordBuf::from(Record { result, ..record })[..].into();
Op::Sync(buf)
};
isolate.register_op(name, base_op_fn);
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}
fn register_op_bin_async<F, R>(
isolate: &mut JsRuntime,
name: &'static str,
op_fn: F,
) where
F: Fn(Rc<RefCell<OpState>>, u32, BufVec) -> R + Copy + 'static,
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R: TryFuture,
R::Ok: TryInto<i32>,
<R::Ok as TryInto<i32>>::Error: Debug,
{
let base_op_fn = move |state: Rc<RefCell<OpState>>, bufs: BufVec| -> Op {
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let mut bufs_iter = bufs.into_iter();
let record_buf = bufs_iter.next().unwrap();
let zero_copy_bufs = bufs_iter.collect::<BufVec>();
let record = Record::from(record_buf.as_ref());
let is_sync = record.promise_id == 0;
assert!(!is_sync);
let fut = async move {
let op = op_fn(state, record.rid, zero_copy_bufs);
let result = op
.map_ok(|r| r.try_into().expect("op result does not fit in i32"))
.unwrap_or_else(|_| -1)
.await;
RecordBuf::from(Record { result, ..record })[..].into()
};
Op::Async(fut.boxed_local())
};
isolate.register_op(name, base_op_fn);
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}
fn bad_resource_id() -> Error {
Error::new(ErrorKind::NotFound, "bad resource id")
}
fn main() {
log::set_logger(&Logger).unwrap();
log::set_max_level(
env::args()
.find(|a| a == "-D")
.map(|_| log::LevelFilter::Debug)
.unwrap_or(log::LevelFilter::Warn),
);
// NOTE: `--help` arg will display V8 help and exit
deno_core::v8_set_flags(env::args().collect());
let mut isolate = create_isolate();
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let mut runtime = runtime::Builder::new()
.basic_scheduler()
.enable_all()
.build()
.unwrap();
let future = async move {
isolate
.execute(
"http_bench_bin_ops.js",
include_str!("http_bench_bin_ops.js"),
)
.unwrap();
isolate.await
};
js_check(runtime.block_on(future));
}
#[test]
fn test_record_from() {
let expected = Record {
promise_id: 1,
rid: 3,
result: 4,
};
let buf = RecordBuf::from(expected);
if cfg!(target_endian = "little") {
assert_eq!(buf, [1u8, 0, 0, 0, 3, 0, 0, 0, 4, 0, 0, 0]);
}
let actual = Record::from(buf);
assert_eq!(actual, expected);
}