mirror of
https://github.com/denoland/deno.git
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fec1b2a5a4
- Improves op performance. - Handle op-metadata (errors, promise IDs) explicitly in the op-layer vs per op-encoding (aka: out-of-payload). - Remove shared queue & custom "asyncHandlers", all async values are returned in batches via js_recv_cb. - The op-layer should be thought of as simple function calls with little indirection or translation besides the conceptually straightforward serde_v8 bijections. - Preserve concepts of json/bin/min as semantic groups of their inputs/outputs instead of their op-encoding strategy, preserving these groups will also facilitate partial transitions over to v8 Fast API for the "min" and "bin" groups
171 lines
5.2 KiB
Rust
171 lines
5.2 KiB
Rust
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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use deno_core::serde::Serialize;
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#[derive(Default, Debug)]
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pub struct RuntimeMetrics {
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pub ops: HashMap<&'static str, OpMetrics>,
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}
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impl RuntimeMetrics {
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pub fn combined_metrics(&self) -> OpMetrics {
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let mut total = OpMetrics::default();
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for metrics in self.ops.values() {
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total.ops_dispatched += metrics.ops_dispatched;
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total.ops_dispatched_sync += metrics.ops_dispatched_sync;
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total.ops_dispatched_async += metrics.ops_dispatched_async;
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total.ops_dispatched_async_unref += metrics.ops_dispatched_async_unref;
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total.ops_completed += metrics.ops_completed;
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total.ops_completed_sync += metrics.ops_completed_sync;
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total.ops_completed_async += metrics.ops_completed_async;
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total.ops_completed_async_unref += metrics.ops_completed_async_unref;
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total.bytes_sent_control += metrics.bytes_sent_control;
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total.bytes_sent_data += metrics.bytes_sent_data;
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total.bytes_received += metrics.bytes_received;
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}
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total
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}
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}
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#[derive(Default, Debug, Serialize)]
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#[serde(rename_all = "camelCase")]
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pub struct OpMetrics {
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pub ops_dispatched: u64,
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pub ops_dispatched_sync: u64,
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pub ops_dispatched_async: u64,
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pub ops_dispatched_async_unref: u64,
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pub ops_completed: u64,
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pub ops_completed_sync: u64,
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pub ops_completed_async: u64,
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pub ops_completed_async_unref: u64,
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pub bytes_sent_control: u64,
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pub bytes_sent_data: u64,
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pub bytes_received: u64,
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}
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impl OpMetrics {
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fn op_dispatched(
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&mut self,
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bytes_sent_control: usize,
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bytes_sent_data: usize,
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) {
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self.ops_dispatched += 1;
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self.bytes_sent_control += bytes_sent_control as u64;
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self.bytes_sent_data += bytes_sent_data as u64;
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}
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fn op_completed(&mut self, bytes_received: usize) {
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self.ops_completed += 1;
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self.bytes_received += bytes_received as u64;
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}
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pub fn op_sync(
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&mut self,
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bytes_sent_control: usize,
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bytes_sent_data: usize,
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bytes_received: usize,
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) {
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self.ops_dispatched_sync += 1;
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self.op_dispatched(bytes_sent_control, bytes_sent_data);
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self.ops_completed_sync += 1;
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self.op_completed(bytes_received);
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}
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pub fn op_dispatched_async(
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&mut self,
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bytes_sent_control: usize,
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bytes_sent_data: usize,
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) {
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self.ops_dispatched_async += 1;
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self.op_dispatched(bytes_sent_control, bytes_sent_data)
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}
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pub fn op_dispatched_async_unref(
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&mut self,
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bytes_sent_control: usize,
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bytes_sent_data: usize,
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) {
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self.ops_dispatched_async_unref += 1;
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self.op_dispatched(bytes_sent_control, bytes_sent_data)
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}
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pub fn op_completed_async(&mut self, bytes_received: usize) {
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self.ops_completed_async += 1;
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self.op_completed(bytes_received);
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}
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pub fn op_completed_async_unref(&mut self, bytes_received: usize) {
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self.ops_completed_async_unref += 1;
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self.op_completed(bytes_received);
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}
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}
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use deno_core::Op;
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use deno_core::OpFn;
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use std::collections::HashMap;
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pub fn metrics_op(name: &'static str, op_fn: Box<OpFn>) -> Box<OpFn> {
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Box::new(move |op_state, payload, buf| -> Op {
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// TODOs:
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// * The 'bytes' metrics seem pretty useless, especially now that the
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// distinction between 'control' and 'data' buffers has become blurry.
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// * Tracking completion of async ops currently makes us put the boxed
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// future into _another_ box. Keeping some counters may not be expensive
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// in itself, but adding a heap allocation for every metric seems bad.
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// TODO: remove this, doesn't make a ton of sense
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let bytes_sent_control = 0;
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let bytes_sent_data = match buf {
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Some(ref b) => b.len(),
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None => 0,
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};
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let op = (op_fn)(op_state.clone(), payload, buf);
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let op_state_ = op_state.clone();
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let mut s = op_state.borrow_mut();
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let runtime_metrics = s.borrow_mut::<RuntimeMetrics>();
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let metrics = if let Some(metrics) = runtime_metrics.ops.get_mut(name) {
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metrics
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} else {
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runtime_metrics.ops.insert(name, OpMetrics::default());
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runtime_metrics.ops.get_mut(name).unwrap()
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};
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use deno_core::futures::future::FutureExt;
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match op {
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Op::Sync(buf) => {
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metrics.op_sync(bytes_sent_control, bytes_sent_data, 0);
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Op::Sync(buf)
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}
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Op::Async(fut) => {
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metrics.op_dispatched_async(bytes_sent_control, bytes_sent_data);
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let fut = fut
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.inspect(move |_resp| {
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let mut s = op_state_.borrow_mut();
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let runtime_metrics = s.borrow_mut::<RuntimeMetrics>();
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let metrics = runtime_metrics.ops.get_mut(name).unwrap();
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metrics.op_completed_async(0);
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})
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.boxed_local();
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Op::Async(fut)
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}
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Op::AsyncUnref(fut) => {
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metrics.op_dispatched_async_unref(bytes_sent_control, bytes_sent_data);
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let fut = fut
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.inspect(move |_resp| {
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let mut s = op_state_.borrow_mut();
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let runtime_metrics = s.borrow_mut::<RuntimeMetrics>();
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let metrics = runtime_metrics.ops.get_mut(name).unwrap();
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metrics.op_completed_async_unref(0);
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})
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.boxed_local();
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Op::AsyncUnref(fut)
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}
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other => other,
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}
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})
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}
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