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https://github.com/denoland/deno.git
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6261c89e04
Add support for transferring `MessagePort`s between workers.
564 lines
17 KiB
Rust
564 lines
17 KiB
Rust
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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use crate::colors;
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use crate::inspector_server::InspectorServer;
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use crate::js;
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use crate::metrics;
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use crate::ops;
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use crate::permissions::Permissions;
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use crate::tokio_util::create_basic_runtime;
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use deno_broadcast_channel::InMemoryBroadcastChannel;
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use deno_core::error::AnyError;
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use deno_core::error::JsError;
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use deno_core::futures::channel::mpsc;
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use deno_core::futures::future::poll_fn;
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use deno_core::futures::future::FutureExt;
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use deno_core::futures::stream::StreamExt;
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use deno_core::located_script_name;
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use deno_core::serde::Deserialize;
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use deno_core::serde::Serialize;
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use deno_core::serde_json;
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use deno_core::serde_json::json;
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use deno_core::v8;
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use deno_core::CancelHandle;
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use deno_core::Extension;
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use deno_core::GetErrorClassFn;
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use deno_core::JsErrorCreateFn;
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use deno_core::JsRuntime;
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use deno_core::ModuleId;
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use deno_core::ModuleLoader;
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use deno_core::ModuleSpecifier;
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use deno_core::RuntimeOptions;
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use deno_web::create_entangled_message_port;
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use deno_web::BlobUrlStore;
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use deno_web::MessagePort;
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use log::debug;
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use std::cell::RefCell;
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use std::env;
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use std::fmt;
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use std::rc::Rc;
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use std::sync::atomic::AtomicBool;
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use std::sync::atomic::Ordering;
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use std::sync::Arc;
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use std::task::Context;
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use std::task::Poll;
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#[derive(
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Debug, Default, Copy, Clone, PartialEq, Eq, Hash, Serialize, Deserialize,
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)]
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pub struct WorkerId(u32);
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impl fmt::Display for WorkerId {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(f, "worker-{}", self.0)
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}
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}
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impl WorkerId {
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pub fn next(&self) -> Option<WorkerId> {
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self.0.checked_add(1).map(WorkerId)
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}
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}
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/// Events that are sent to host from child
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/// worker.
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pub enum WorkerControlEvent {
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Error(AnyError),
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TerminalError(AnyError),
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Close,
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}
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use deno_core::serde::Serializer;
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impl Serialize for WorkerControlEvent {
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fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
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where
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S: Serializer,
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{
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let type_id = match &self {
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WorkerControlEvent::TerminalError(_) => 1_i32,
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WorkerControlEvent::Error(_) => 2_i32,
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WorkerControlEvent::Close => 3_i32,
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};
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match self {
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WorkerControlEvent::TerminalError(error)
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| WorkerControlEvent::Error(error) => {
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let value = match error.downcast_ref::<JsError>() {
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Some(js_error) => json!({
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"message": js_error.message,
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"fileName": js_error.script_resource_name,
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"lineNumber": js_error.line_number,
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"columnNumber": js_error.start_column,
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}),
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None => json!({
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"message": error.to_string(),
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}),
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};
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Serialize::serialize(&(type_id, value), serializer)
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}
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_ => Serialize::serialize(&(type_id, ()), serializer),
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}
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}
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}
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// Channels used for communication with worker's parent
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#[derive(Clone)]
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pub struct WebWorkerInternalHandle {
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sender: mpsc::Sender<WorkerControlEvent>,
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pub port: Rc<MessagePort>,
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pub cancel: Rc<CancelHandle>,
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terminated: Arc<AtomicBool>,
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isolate_handle: v8::IsolateHandle,
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}
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impl WebWorkerInternalHandle {
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/// Post WorkerEvent to parent as a worker
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pub fn post_event(&self, event: WorkerControlEvent) -> Result<(), AnyError> {
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let mut sender = self.sender.clone();
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// If the channel is closed,
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// the worker must have terminated but the termination message has not yet been received.
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//
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// Therefore just treat it as if the worker has terminated and return.
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if sender.is_closed() {
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self.terminated.store(true, Ordering::SeqCst);
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return Ok(());
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}
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sender.try_send(event)?;
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Ok(())
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}
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/// Check if this worker is terminated or being terminated
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pub fn is_terminated(&self) -> bool {
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self.terminated.load(Ordering::SeqCst)
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}
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/// Terminate the worker
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/// This function will set terminated to true, terminate the isolate and close the message channel
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pub fn terminate(&mut self) {
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self.cancel.cancel();
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// This function can be called multiple times by whomever holds
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// the handle. However only a single "termination" should occur so
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// we need a guard here.
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let already_terminated = self.terminated.swap(true, Ordering::SeqCst);
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if !already_terminated {
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// Stop javascript execution
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self.isolate_handle.terminate_execution();
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}
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// Wake parent by closing the channel
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self.sender.close_channel();
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}
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}
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pub struct SendableWebWorkerHandle {
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port: MessagePort,
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receiver: mpsc::Receiver<WorkerControlEvent>,
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terminated: Arc<AtomicBool>,
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isolate_handle: v8::IsolateHandle,
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}
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impl From<SendableWebWorkerHandle> for WebWorkerHandle {
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fn from(handle: SendableWebWorkerHandle) -> Self {
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WebWorkerHandle {
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receiver: Rc::new(RefCell::new(handle.receiver)),
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port: Rc::new(handle.port),
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terminated: handle.terminated,
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isolate_handle: handle.isolate_handle,
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}
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}
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}
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/// This is the handle to the web worker that the parent thread uses to
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/// communicate with the worker. It is created from a `SendableWebWorkerHandle`
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/// which is sent to the parent thread from the worker thread where it is
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/// created. The reason for this seperation is that the handle first needs to be
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/// `Send` when transferring between threads, and then must be `Clone` when it
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/// has arrived on the parent thread. It can not be both at once without large
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/// amounts of Arc<Mutex> and other fun stuff.
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#[derive(Clone)]
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pub struct WebWorkerHandle {
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pub port: Rc<MessagePort>,
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receiver: Rc<RefCell<mpsc::Receiver<WorkerControlEvent>>>,
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terminated: Arc<AtomicBool>,
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isolate_handle: v8::IsolateHandle,
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}
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impl WebWorkerHandle {
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/// Get the WorkerEvent with lock
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/// Return error if more than one listener tries to get event
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pub async fn get_control_event(
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&self,
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) -> Result<Option<WorkerControlEvent>, AnyError> {
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let mut receiver = self.receiver.borrow_mut();
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Ok(receiver.next().await)
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}
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/// Terminate the worker
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/// This function will set terminated to true, terminate the isolate and close the message channel
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pub fn terminate(self) {
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// This function can be called multiple times by whomever holds
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// the handle. However only a single "termination" should occur so
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// we need a guard here.
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let already_terminated = self.terminated.swap(true, Ordering::SeqCst);
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if !already_terminated {
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// Stop javascript execution
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self.isolate_handle.terminate_execution();
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}
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self.port.disentangle();
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}
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}
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fn create_handles(
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isolate_handle: v8::IsolateHandle,
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) -> (WebWorkerInternalHandle, SendableWebWorkerHandle) {
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let (parent_port, worker_port) = create_entangled_message_port();
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let (ctrl_tx, ctrl_rx) = mpsc::channel::<WorkerControlEvent>(1);
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let terminated = Arc::new(AtomicBool::new(false));
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let internal_handle = WebWorkerInternalHandle {
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sender: ctrl_tx,
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port: Rc::new(parent_port),
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terminated: terminated.clone(),
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isolate_handle: isolate_handle.clone(),
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cancel: CancelHandle::new_rc(),
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};
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let external_handle = SendableWebWorkerHandle {
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receiver: ctrl_rx,
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port: worker_port,
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terminated,
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isolate_handle,
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};
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(internal_handle, external_handle)
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}
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/// This struct is an implementation of `Worker` Web API
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///
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/// Each `WebWorker` is either a child of `MainWorker` or other
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/// `WebWorker`.
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pub struct WebWorker {
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id: WorkerId,
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pub js_runtime: JsRuntime,
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pub name: String,
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internal_handle: WebWorkerInternalHandle,
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pub use_deno_namespace: bool,
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pub main_module: ModuleSpecifier,
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}
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pub struct WebWorkerOptions {
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/// Sets `Deno.args` in JS runtime.
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pub args: Vec<String>,
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pub debug_flag: bool,
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pub unstable: bool,
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pub ca_data: Option<Vec<u8>>,
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pub user_agent: String,
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pub seed: Option<u64>,
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pub module_loader: Rc<dyn ModuleLoader>,
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pub create_web_worker_cb: Arc<ops::worker_host::CreateWebWorkerCb>,
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pub js_error_create_fn: Option<Rc<JsErrorCreateFn>>,
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pub use_deno_namespace: bool,
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pub maybe_inspector_server: Option<Arc<InspectorServer>>,
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pub apply_source_maps: bool,
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/// Sets `Deno.version.deno` in JS runtime.
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pub runtime_version: String,
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/// Sets `Deno.version.typescript` in JS runtime.
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pub ts_version: String,
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/// Sets `Deno.noColor` in JS runtime.
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pub no_color: bool,
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pub get_error_class_fn: Option<GetErrorClassFn>,
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pub blob_url_store: BlobUrlStore,
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pub broadcast_channel: InMemoryBroadcastChannel,
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}
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impl WebWorker {
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pub fn from_options(
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name: String,
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permissions: Permissions,
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main_module: ModuleSpecifier,
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worker_id: WorkerId,
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options: &WebWorkerOptions,
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) -> (Self, SendableWebWorkerHandle) {
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// Permissions: many ops depend on this
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let unstable = options.unstable;
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let perm_ext = Extension::builder()
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.state(move |state| {
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state.put::<Permissions>(permissions.clone());
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state.put(ops::UnstableChecker { unstable });
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Ok(())
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})
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.build();
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let mut extensions: Vec<Extension> = vec![
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// Web APIs
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deno_webidl::init(),
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deno_console::init(),
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deno_url::init(),
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deno_web::init(options.blob_url_store.clone(), Some(main_module.clone())),
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deno_fetch::init::<Permissions>(
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options.user_agent.clone(),
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options.ca_data.clone(),
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None,
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),
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deno_websocket::init::<Permissions>(
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options.user_agent.clone(),
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options.ca_data.clone(),
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),
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deno_broadcast_channel::init(
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options.broadcast_channel.clone(),
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options.unstable,
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),
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deno_crypto::init(options.seed),
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deno_webgpu::init(options.unstable),
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deno_timers::init::<Permissions>(),
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// Metrics
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metrics::init(),
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// Permissions ext (worker specific state)
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perm_ext,
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];
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// Runtime ops that are always initialized for WebWorkers
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let runtime_exts = vec![
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ops::web_worker::init(),
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ops::runtime::init(main_module.clone()),
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ops::worker_host::init(options.create_web_worker_cb.clone()),
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ops::io::init(),
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];
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// Extensions providing Deno.* features
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let deno_ns_exts = if options.use_deno_namespace {
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vec![
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ops::fs_events::init(),
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ops::fs::init(),
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ops::net::init(),
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ops::os::init(),
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ops::http::init(),
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ops::permissions::init(),
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ops::plugin::init(),
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ops::process::init(),
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ops::signal::init(),
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ops::tls::init(),
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ops::tty::init(),
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ops::io::init_stdio(),
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]
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} else {
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vec![]
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};
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// Append exts
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extensions.extend(runtime_exts);
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extensions.extend(deno_ns_exts); // May be empty
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let mut js_runtime = JsRuntime::new(RuntimeOptions {
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module_loader: Some(options.module_loader.clone()),
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startup_snapshot: Some(js::deno_isolate_init()),
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js_error_create_fn: options.js_error_create_fn.clone(),
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get_error_class_fn: options.get_error_class_fn,
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extensions,
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..Default::default()
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});
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if let Some(server) = options.maybe_inspector_server.clone() {
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let inspector = js_runtime.inspector();
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let session_sender = inspector.get_session_sender();
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let deregister_rx = inspector.add_deregister_handler();
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server.register_inspector(session_sender, deregister_rx);
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}
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let (internal_handle, external_handle) = {
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let handle = js_runtime.v8_isolate().thread_safe_handle();
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let (internal_handle, external_handle) = create_handles(handle);
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let op_state = js_runtime.op_state();
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let mut op_state = op_state.borrow_mut();
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op_state.put(internal_handle.clone());
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(internal_handle, external_handle)
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};
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(
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Self {
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id: worker_id,
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js_runtime,
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name,
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internal_handle,
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use_deno_namespace: options.use_deno_namespace,
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main_module,
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},
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external_handle,
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)
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}
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pub fn bootstrap(&mut self, options: &WebWorkerOptions) {
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let runtime_options = json!({
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"args": options.args,
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"applySourceMaps": options.apply_source_maps,
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"debugFlag": options.debug_flag,
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"denoVersion": options.runtime_version,
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"noColor": options.no_color,
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"pid": std::process::id(),
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"ppid": ops::runtime::ppid(),
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"target": env!("TARGET"),
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"tsVersion": options.ts_version,
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"unstableFlag": options.unstable,
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"v8Version": deno_core::v8_version(),
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"location": self.main_module,
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});
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let runtime_options_str =
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serde_json::to_string_pretty(&runtime_options).unwrap();
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// Instead of using name for log we use `worker-${id}` because
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// WebWorkers can have empty string as name.
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let script = format!(
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"bootstrap.workerRuntime({}, \"{}\", {}, \"{}\")",
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runtime_options_str, self.name, options.use_deno_namespace, self.id
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);
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self
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.execute_script(&located_script_name!(), &script)
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.expect("Failed to execute worker bootstrap script");
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}
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/// See [JsRuntime::execute_script](deno_core::JsRuntime::execute_script)
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pub fn execute_script(
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&mut self,
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name: &str,
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source_code: &str,
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) -> Result<(), AnyError> {
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self.js_runtime.execute_script(name, source_code)
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}
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/// Loads and instantiates specified JavaScript module.
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pub async fn preload_module(
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&mut self,
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module_specifier: &ModuleSpecifier,
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) -> Result<ModuleId, AnyError> {
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self.js_runtime.load_module(module_specifier, None).await
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}
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/// Loads, instantiates and executes specified JavaScript module.
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pub async fn execute_module(
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&mut self,
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module_specifier: &ModuleSpecifier,
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) -> Result<(), AnyError> {
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let id = self.preload_module(module_specifier).await?;
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let mut receiver = self.js_runtime.mod_evaluate(id);
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tokio::select! {
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maybe_result = receiver.next() => {
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debug!("received worker module evaluate {:#?}", maybe_result);
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// If `None` is returned it means that runtime was destroyed before
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// evaluation was complete. This can happen in Web Worker when `self.close()`
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// is called at top level.
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maybe_result.unwrap_or(Ok(()))
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}
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event_loop_result = self.run_event_loop(false) => {
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if self.internal_handle.is_terminated() {
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return Ok(());
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}
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event_loop_result?;
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let maybe_result = receiver.next().await;
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maybe_result.unwrap_or(Ok(()))
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}
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}
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}
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pub fn poll_event_loop(
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&mut self,
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cx: &mut Context,
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wait_for_inspector: bool,
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) -> Poll<Result<(), AnyError>> {
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// If awakened because we are terminating, just return Ok
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if self.internal_handle.is_terminated() {
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return Poll::Ready(Ok(()));
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}
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match self.js_runtime.poll_event_loop(cx, wait_for_inspector) {
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Poll::Ready(r) => {
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// If js ended because we are terminating, just return Ok
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if self.internal_handle.is_terminated() {
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return Poll::Ready(Ok(()));
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}
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// In case of an error, pass to parent without terminating worker
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if let Err(e) = r {
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print_worker_error(e.to_string(), &self.name);
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let handle = self.internal_handle.clone();
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handle
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.post_event(WorkerControlEvent::Error(e))
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.expect("Failed to post message to host");
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return Poll::Pending;
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}
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panic!(
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"coding error: either js is polling or the worker is terminated"
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);
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}
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Poll::Pending => Poll::Pending,
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}
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}
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pub async fn run_event_loop(
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&mut self,
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wait_for_inspector: bool,
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) -> Result<(), AnyError> {
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poll_fn(|cx| self.poll_event_loop(cx, wait_for_inspector)).await
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}
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}
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fn print_worker_error(error_str: String, name: &str) {
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eprintln!(
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"{}: Uncaught (in worker \"{}\") {}",
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colors::red_bold("error"),
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name,
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|
error_str.trim_start_matches("Uncaught "),
|
|
);
|
|
}
|
|
|
|
/// This function should be called from a thread dedicated to this worker.
|
|
// TODO(bartlomieju): check if order of actions is aligned to Worker spec
|
|
pub fn run_web_worker(
|
|
mut worker: WebWorker,
|
|
specifier: ModuleSpecifier,
|
|
maybe_source_code: Option<String>,
|
|
) -> Result<(), AnyError> {
|
|
let name = worker.name.to_string();
|
|
|
|
let rt = create_basic_runtime();
|
|
|
|
// TODO(bartlomieju): run following block using "select!"
|
|
// with terminate
|
|
|
|
// Execute provided source code immediately
|
|
let result = if let Some(source_code) = maybe_source_code {
|
|
worker.execute_script(&located_script_name!(), &source_code)
|
|
} else {
|
|
// TODO(bartlomieju): add "type": "classic", ie. ability to load
|
|
// script instead of module
|
|
let load_future = worker.execute_module(&specifier).boxed_local();
|
|
|
|
rt.block_on(load_future)
|
|
};
|
|
|
|
let internal_handle = worker.internal_handle.clone();
|
|
|
|
// If sender is closed it means that worker has already been closed from
|
|
// within using "globalThis.close()"
|
|
if internal_handle.is_terminated() {
|
|
return Ok(());
|
|
}
|
|
|
|
if let Err(e) = result {
|
|
print_worker_error(e.to_string(), &name);
|
|
internal_handle
|
|
.post_event(WorkerControlEvent::TerminalError(e))
|
|
.expect("Failed to post message to host");
|
|
|
|
// Failure to execute script is a terminal error, bye, bye.
|
|
return Ok(());
|
|
}
|
|
|
|
let result = rt.block_on(worker.run_event_loop(true));
|
|
debug!("Worker thread shuts down {}", &name);
|
|
result
|
|
}
|