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https://github.com/denoland/deno.git
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394 lines
11 KiB
Rust
394 lines
11 KiB
Rust
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
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use super::dispatch_json::{Deserialize, JsonOp, Value};
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use crate::deno_error::bad_resource;
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use crate::deno_error::js_check;
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use crate::deno_error::DenoError;
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use crate::deno_error::ErrorKind;
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use crate::deno_error::GetErrorKind;
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use crate::fmt_errors::JSError;
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use crate::ops::json_op;
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use crate::startup_data;
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use crate::state::ThreadSafeState;
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use crate::worker::Worker;
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use deno_core::*;
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use futures;
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use futures::channel::mpsc;
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use futures::future::FutureExt;
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use futures::future::TryFutureExt;
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use futures::sink::SinkExt;
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use futures::stream::StreamExt;
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use std;
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use std::convert::From;
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use std::future::Future;
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use std::pin::Pin;
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use std::sync::atomic::Ordering;
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use std::task::Context;
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use std::task::Poll;
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pub fn init(i: &mut Isolate, s: &ThreadSafeState) {
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i.register_op(
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"create_worker",
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s.core_op(json_op(s.stateful_op(op_create_worker))),
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);
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i.register_op(
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"host_get_worker_loaded",
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s.core_op(json_op(s.stateful_op(op_host_get_worker_loaded))),
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);
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i.register_op(
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"host_poll_worker",
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s.core_op(json_op(s.stateful_op(op_host_poll_worker))),
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);
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i.register_op(
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"host_close_worker",
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s.core_op(json_op(s.stateful_op(op_host_close_worker))),
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);
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i.register_op(
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"host_resume_worker",
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s.core_op(json_op(s.stateful_op(op_host_resume_worker))),
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);
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i.register_op(
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"host_post_message",
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s.core_op(json_op(s.stateful_op(op_host_post_message))),
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);
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i.register_op(
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"host_get_message",
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s.core_op(json_op(s.stateful_op(op_host_get_message))),
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);
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// TODO: make sure these two ops are only accessible to appropriate Worker
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i.register_op(
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"worker_post_message",
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s.core_op(json_op(s.stateful_op(op_worker_post_message))),
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);
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i.register_op(
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"worker_get_message",
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s.core_op(json_op(s.stateful_op(op_worker_get_message))),
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);
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i.register_op("metrics", s.core_op(json_op(s.stateful_op(op_metrics))));
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}
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struct GetMessageFuture {
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state: ThreadSafeState,
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}
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impl Future for GetMessageFuture {
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type Output = Option<Buf>;
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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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let mut channels = inner.state.worker_channels.lock().unwrap();
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let receiver = &mut channels.receiver;
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receiver.poll_next_unpin(cx)
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}
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}
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/// Get message from host as guest worker
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fn op_worker_get_message(
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state: &ThreadSafeState,
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_args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let op = GetMessageFuture {
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state: state.clone(),
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};
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let op = async move {
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let maybe_buf = op.await;
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debug!("op_worker_get_message");
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Ok(json!({ "data": maybe_buf }))
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};
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Ok(JsonOp::Async(op.boxed()))
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}
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/// Post message to host as guest worker
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fn op_worker_post_message(
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state: &ThreadSafeState,
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_args: Value,
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data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let d = Vec::from(data.unwrap().as_ref()).into_boxed_slice();
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let mut channels = state.worker_channels.lock().unwrap();
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let sender = &mut channels.sender;
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futures::executor::block_on(sender.send(d))
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.map_err(|e| DenoError::new(ErrorKind::Other, e.to_string()))?;
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Ok(JsonOp::Sync(json!({})))
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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struct CreateWorkerArgs {
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specifier: String,
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include_deno_namespace: bool,
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has_source_code: bool,
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source_code: String,
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}
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/// Create worker as the host
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fn op_create_worker(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: CreateWorkerArgs = serde_json::from_value(args)?;
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let specifier = args.specifier.as_ref();
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// Only include deno namespace if requested AND current worker
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// has included namespace (to avoid escalation).
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let include_deno_namespace =
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args.include_deno_namespace && state.include_deno_namespace;
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let has_source_code = args.has_source_code;
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let source_code = args.source_code;
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let parent_state = state.clone();
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// TODO(bartlomieju): Isn't this wrong?
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let mut module_specifier = ModuleSpecifier::resolve_url_or_path(specifier)?;
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if !has_source_code {
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if let Some(referrer) = parent_state.main_module.as_ref() {
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let referrer = referrer.clone().to_string();
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module_specifier = ModuleSpecifier::resolve_import(specifier, &referrer)?;
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}
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}
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let (int, ext) = ThreadSafeState::create_channels();
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let child_state = ThreadSafeState::new(
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state.global_state.clone(),
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Some(parent_state.permissions.clone()), // by default share with parent
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Some(module_specifier.clone()),
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include_deno_namespace,
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int,
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)?;
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// TODO: add a new option to make child worker not sharing permissions
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// with parent (aka .clone(), requests from child won't reflect in parent)
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let name = format!("USER-WORKER-{}", specifier);
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let deno_main_call = format!("denoMain({})", include_deno_namespace);
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let mut worker =
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Worker::new(name, startup_data::deno_isolate_init(), child_state, ext);
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js_check(worker.execute(&deno_main_call));
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js_check(worker.execute("workerMain()"));
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let worker_id = parent_state.add_child_worker(worker.clone());
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// Has provided source code, execute immediately.
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if has_source_code {
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js_check(worker.execute(&source_code));
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return Ok(JsonOp::Sync(json!({"id": worker_id, "loaded": true})));
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}
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let (mut sender, receiver) = mpsc::channel::<Result<(), ErrBox>>(1);
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// TODO(bartlomieju): this future should be spawned on the separate thread,
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// dedicated to that worker
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let fut = async move {
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let result = worker
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.execute_mod_async(&module_specifier, None, false)
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.await;
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sender.send(result).await.expect("Failed to send message");
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}
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.boxed();
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tokio::spawn(fut);
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let mut table = state.loading_workers.lock().unwrap();
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table.insert(worker_id, receiver);
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Ok(JsonOp::Sync(json!({"id": worker_id, "loaded": false})))
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}
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struct WorkerPollFuture {
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state: ThreadSafeState,
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rid: ResourceId,
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}
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impl Future for WorkerPollFuture {
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type Output = Result<(), ErrBox>;
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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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let mut workers_table = inner.state.workers.lock().unwrap();
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let maybe_worker = workers_table.get_mut(&inner.rid);
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if maybe_worker.is_none() {
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return Poll::Ready(Ok(()));
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}
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match maybe_worker.unwrap().poll_unpin(cx) {
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Poll::Ready(Err(e)) => Poll::Ready(Err(e)),
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Poll::Ready(Ok(_)) => Poll::Ready(Ok(())),
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Poll::Pending => Poll::Pending,
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}
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}
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}
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fn serialize_worker_result(result: Result<(), ErrBox>) -> Value {
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if let Err(error) = result {
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match error.kind() {
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ErrorKind::JSError => {
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let error = error.downcast::<JSError>().unwrap();
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let exception: V8Exception = error.into();
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json!({"error": {
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"message": exception.message,
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"fileName": exception.script_resource_name,
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"lineNumber": exception.line_number,
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"columnNumber": exception.start_column,
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}})
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}
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_ => json!({"error": {
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"message": error.to_string(),
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}}),
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}
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} else {
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json!({"ok": true})
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}
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}
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#[derive(Deserialize)]
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struct WorkerArgs {
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id: i32,
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}
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fn op_host_get_worker_loaded(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: WorkerArgs = serde_json::from_value(args)?;
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let id = args.id as u32;
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let mut table = state.loading_workers.lock().unwrap();
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let mut receiver = table.remove(&id).unwrap();
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let op = async move {
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let result = receiver.next().await.unwrap();
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Ok(serialize_worker_result(result))
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};
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Ok(JsonOp::Async(op.boxed()))
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}
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fn op_host_poll_worker(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: WorkerArgs = serde_json::from_value(args)?;
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let id = args.id as u32;
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let state_ = state.clone();
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let future = WorkerPollFuture {
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state: state.clone(),
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rid: id,
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};
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let op = async move {
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let result = future.await;
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if result.is_err() {
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let mut workers_table = state_.workers.lock().unwrap();
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let worker = workers_table.get_mut(&id).unwrap();
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worker.clear_exception();
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}
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Ok(serialize_worker_result(result))
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};
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Ok(JsonOp::Async(op.boxed()))
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}
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fn op_host_close_worker(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: WorkerArgs = serde_json::from_value(args)?;
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let id = args.id as u32;
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let state_ = state.clone();
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let mut workers_table = state_.workers.lock().unwrap();
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let maybe_worker = workers_table.remove(&id);
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if let Some(worker) = maybe_worker {
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let mut channels = worker.state.worker_channels.lock().unwrap();
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channels.sender.close_channel();
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channels.receiver.close();
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};
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Ok(JsonOp::Sync(json!({})))
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}
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fn op_host_resume_worker(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: WorkerArgs = serde_json::from_value(args)?;
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let id = args.id as u32;
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let state_ = state.clone();
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let mut workers_table = state_.workers.lock().unwrap();
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let worker = workers_table.get_mut(&id).unwrap();
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js_check(worker.execute("workerMain()"));
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Ok(JsonOp::Sync(json!({})))
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}
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#[derive(Deserialize)]
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struct HostGetMessageArgs {
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id: i32,
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}
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/// Get message from guest worker as host
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fn op_host_get_message(
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state: &ThreadSafeState,
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args: Value,
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_data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: HostGetMessageArgs = serde_json::from_value(args)?;
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let id = args.id as u32;
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let mut table = state.workers.lock().unwrap();
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// TODO: don't return bad resource anymore
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let worker = table.get_mut(&id).ok_or_else(bad_resource)?;
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let fut = worker.get_message();
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let op = async move {
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let maybe_buf = fut.await.unwrap();
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Ok(json!({ "data": maybe_buf }))
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};
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Ok(JsonOp::Async(op.boxed()))
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}
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#[derive(Deserialize)]
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struct HostPostMessageArgs {
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id: i32,
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}
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/// Post message to guest worker as host
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fn op_host_post_message(
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state: &ThreadSafeState,
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args: Value,
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data: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let args: HostPostMessageArgs = serde_json::from_value(args)?;
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let id = args.id as u32;
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let msg = Vec::from(data.unwrap().as_ref()).into_boxed_slice();
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debug!("post message to worker {}", id);
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let mut table = state.workers.lock().unwrap();
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// TODO: don't return bad resource anymore
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let worker = table.get_mut(&id).ok_or_else(bad_resource)?;
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let fut = worker
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.post_message(msg)
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.map_err(|e| DenoError::new(ErrorKind::Other, e.to_string()));
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futures::executor::block_on(fut)?;
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Ok(JsonOp::Sync(json!({})))
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}
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fn op_metrics(
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state: &ThreadSafeState,
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_args: Value,
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_zero_copy: Option<PinnedBuf>,
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) -> Result<JsonOp, ErrBox> {
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let m = &state.metrics;
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Ok(JsonOp::Sync(json!({
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"opsDispatched": m.ops_dispatched.load(Ordering::SeqCst) as u64,
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"opsCompleted": m.ops_completed.load(Ordering::SeqCst) as u64,
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"bytesSentControl": m.bytes_sent_control.load(Ordering::SeqCst) as u64,
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"bytesSentData": m.bytes_sent_data.load(Ordering::SeqCst) as u64,
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"bytesReceived": m.bytes_received.load(Ordering::SeqCst) as u64
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})))
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}
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