mirror of
https://github.com/denoland/deno.git
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518 lines
18 KiB
Rust
518 lines
18 KiB
Rust
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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use std::pin::Pin;
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use std::rc::Rc;
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use std::sync::atomic::AtomicI32;
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use std::sync::atomic::Ordering::Relaxed;
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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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use deno_broadcast_channel::InMemoryBroadcastChannel;
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use deno_cache::CreateCache;
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use deno_cache::SqliteBackedCache;
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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::Future;
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use deno_core::located_script_name;
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use deno_core::v8;
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use deno_core::CompiledWasmModuleStore;
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use deno_core::Extension;
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use deno_core::FsModuleLoader;
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use deno_core::GetErrorClassFn;
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use deno_core::JsRuntime;
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use deno_core::LocalInspectorSession;
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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_core::SharedArrayBufferStore;
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use deno_core::Snapshot;
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use deno_core::SourceMapGetter;
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use deno_node::RequireNpmResolver;
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use deno_tls::rustls::RootCertStore;
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use deno_web::BlobStore;
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use log::debug;
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use crate::inspector_server::InspectorServer;
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use crate::js;
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use crate::ops;
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use crate::ops::io::Stdio;
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use crate::permissions::PermissionsContainer;
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use crate::BootstrapOptions;
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pub type FormatJsErrorFn = dyn Fn(&JsError) -> String + Sync + Send;
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#[derive(Clone, Default)]
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pub struct ExitCode(Arc<AtomicI32>);
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impl ExitCode {
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pub fn get(&self) -> i32 {
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self.0.load(Relaxed)
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}
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pub fn set(&mut self, code: i32) {
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self.0.store(code, Relaxed);
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}
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}
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/// This worker is created and used by almost all
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/// subcommands in Deno executable.
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///
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/// It provides ops available in the `Deno` namespace.
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///
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/// All `WebWorker`s created during program execution
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/// are descendants of this worker.
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pub struct MainWorker {
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pub js_runtime: JsRuntime,
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should_break_on_first_statement: bool,
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should_wait_for_inspector_session: bool,
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exit_code: ExitCode,
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}
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pub struct WorkerOptions {
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pub bootstrap: BootstrapOptions,
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/// JsRuntime extensions, not to be confused with ES modules.
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/// Only ops registered by extensions will be initialized. If you need
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/// to execute JS code from extensions, use `extensions_with_js` options
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/// instead.
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pub extensions: Vec<Extension>,
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/// JsRuntime extensions, not to be confused with ES modules.
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/// Ops registered by extensions will be initialized and JS code will be
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/// executed. If you don't need to execute JS code from extensions, use
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/// `extensions` option instead.
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///
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/// This is useful when creating snapshots, in such case you would pass
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/// extensions using `extensions_with_js`, later when creating a runtime
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/// from the snapshot, you would pass these extensions using `extensions`
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/// option.
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pub extensions_with_js: Vec<Extension>,
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/// V8 snapshot that should be loaded on startup.
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pub startup_snapshot: Option<Snapshot>,
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pub unsafely_ignore_certificate_errors: Option<Vec<String>>,
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pub root_cert_store: Option<RootCertStore>,
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pub seed: Option<u64>,
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/// Implementation of `ModuleLoader` which will be
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/// called when V8 requests to load ES modules.
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///
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/// If not provided runtime will error if code being
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/// executed tries to load modules.
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pub module_loader: Rc<dyn ModuleLoader>,
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pub npm_resolver: Option<Rc<dyn RequireNpmResolver>>,
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// Callbacks invoked when creating new instance of WebWorker
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pub create_web_worker_cb: Arc<ops::worker_host::CreateWebWorkerCb>,
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pub web_worker_preload_module_cb: Arc<ops::worker_host::WorkerEventCb>,
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pub web_worker_pre_execute_module_cb: Arc<ops::worker_host::WorkerEventCb>,
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pub format_js_error_fn: Option<Arc<FormatJsErrorFn>>,
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/// Source map reference for errors.
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pub source_map_getter: Option<Box<dyn SourceMapGetter>>,
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pub maybe_inspector_server: Option<Arc<InspectorServer>>,
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// If true, the worker will wait for inspector session and break on first
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// statement of user code. Takes higher precedence than
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// `should_wait_for_inspector_session`.
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pub should_break_on_first_statement: bool,
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// If true, the worker will wait for inspector session before executing
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// user code.
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pub should_wait_for_inspector_session: bool,
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/// Allows to map error type to a string "class" used to represent
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/// error in JavaScript.
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pub get_error_class_fn: Option<GetErrorClassFn>,
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pub cache_storage_dir: Option<std::path::PathBuf>,
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pub origin_storage_dir: Option<std::path::PathBuf>,
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pub blob_store: BlobStore,
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pub broadcast_channel: InMemoryBroadcastChannel,
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/// The store to use for transferring SharedArrayBuffers between isolates.
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/// If multiple isolates should have the possibility of sharing
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/// SharedArrayBuffers, they should use the same [SharedArrayBufferStore]. If
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/// no [SharedArrayBufferStore] is specified, SharedArrayBuffer can not be
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/// serialized.
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pub shared_array_buffer_store: Option<SharedArrayBufferStore>,
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/// The store to use for transferring `WebAssembly.Module` objects between
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/// isolates.
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/// If multiple isolates should have the possibility of sharing
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/// `WebAssembly.Module` objects, they should use the same
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/// [CompiledWasmModuleStore]. If no [CompiledWasmModuleStore] is specified,
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/// `WebAssembly.Module` objects cannot be serialized.
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pub compiled_wasm_module_store: Option<CompiledWasmModuleStore>,
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pub stdio: Stdio,
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}
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impl Default for WorkerOptions {
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fn default() -> Self {
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Self {
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web_worker_preload_module_cb: Arc::new(|_| {
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unimplemented!("web workers are not supported")
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}),
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web_worker_pre_execute_module_cb: Arc::new(|_| {
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unimplemented!("web workers are not supported")
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}),
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create_web_worker_cb: Arc::new(|_| {
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unimplemented!("web workers are not supported")
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}),
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module_loader: Rc::new(FsModuleLoader),
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seed: None,
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unsafely_ignore_certificate_errors: Default::default(),
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should_break_on_first_statement: Default::default(),
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should_wait_for_inspector_session: Default::default(),
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compiled_wasm_module_store: Default::default(),
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shared_array_buffer_store: Default::default(),
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maybe_inspector_server: Default::default(),
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format_js_error_fn: Default::default(),
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get_error_class_fn: Default::default(),
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origin_storage_dir: Default::default(),
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cache_storage_dir: Default::default(),
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broadcast_channel: Default::default(),
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source_map_getter: Default::default(),
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root_cert_store: Default::default(),
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npm_resolver: Default::default(),
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blob_store: Default::default(),
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extensions: Default::default(),
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extensions_with_js: Default::default(),
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startup_snapshot: Default::default(),
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bootstrap: Default::default(),
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stdio: Default::default(),
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}
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}
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}
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impl MainWorker {
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pub fn bootstrap_from_options(
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main_module: ModuleSpecifier,
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permissions: PermissionsContainer,
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options: WorkerOptions,
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) -> Self {
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let bootstrap_options = options.bootstrap.clone();
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let mut worker = Self::from_options(main_module, permissions, options);
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worker.bootstrap(&bootstrap_options);
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worker
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}
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pub fn from_options(
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main_module: ModuleSpecifier,
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permissions: PermissionsContainer,
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mut options: WorkerOptions,
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) -> Self {
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// Permissions: many ops depend on this
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let unstable = options.bootstrap.unstable;
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let enable_testing_features = options.bootstrap.enable_testing_features;
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let perm_ext = Extension::builder("deno_permissions_worker")
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.state(move |state| {
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state.put::<PermissionsContainer>(permissions.clone());
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state.put(ops::UnstableChecker { unstable });
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state.put(ops::TestingFeaturesEnabled(enable_testing_features));
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Ok(())
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})
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.build();
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let exit_code = ExitCode(Arc::new(AtomicI32::new(0)));
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let create_cache = options.cache_storage_dir.map(|storage_dir| {
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let create_cache_fn = move || SqliteBackedCache::new(storage_dir.clone());
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CreateCache(Arc::new(create_cache_fn))
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});
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// Internal modules
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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::<PermissionsContainer>(
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options.blob_store.clone(),
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options.bootstrap.location.clone(),
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),
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deno_fetch::init::<PermissionsContainer>(deno_fetch::Options {
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user_agent: options.bootstrap.user_agent.clone(),
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root_cert_store: options.root_cert_store.clone(),
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unsafely_ignore_certificate_errors: options
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.unsafely_ignore_certificate_errors
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.clone(),
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file_fetch_handler: Rc::new(deno_fetch::FsFetchHandler),
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..Default::default()
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}),
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deno_cache::init::<SqliteBackedCache>(create_cache),
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deno_websocket::init::<PermissionsContainer>(
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options.bootstrap.user_agent.clone(),
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options.root_cert_store.clone(),
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options.unsafely_ignore_certificate_errors.clone(),
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),
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deno_webstorage::init(options.origin_storage_dir.clone()),
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deno_broadcast_channel::init(options.broadcast_channel.clone(), unstable),
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deno_crypto::init(options.seed),
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deno_webgpu::init(unstable),
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// ffi
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deno_ffi::init::<PermissionsContainer>(unstable),
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// Runtime ops
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ops::runtime::init(main_module.clone()),
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ops::worker_host::init(
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options.create_web_worker_cb.clone(),
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options.web_worker_preload_module_cb.clone(),
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options.web_worker_pre_execute_module_cb.clone(),
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options.format_js_error_fn.clone(),
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),
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ops::spawn::init(),
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ops::fs_events::init(),
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ops::fs::init(),
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ops::io::init(),
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ops::io::init_stdio(options.stdio),
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deno_tls::init(),
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deno_net::init::<PermissionsContainer>(
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options.root_cert_store.clone(),
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unstable,
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options.unsafely_ignore_certificate_errors.clone(),
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),
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deno_napi::init::<PermissionsContainer>(unstable),
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deno_node::init::<PermissionsContainer>(options.npm_resolver),
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ops::os::init(exit_code.clone()),
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ops::permissions::init(),
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ops::process::init(),
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ops::signal::init(),
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ops::tty::init(),
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deno_http::init(),
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deno_flash::init::<PermissionsContainer>(unstable),
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ops::http::init(),
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// Permissions ext (worker specific state)
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perm_ext,
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];
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extensions.extend(std::mem::take(&mut options.extensions));
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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(
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options
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.startup_snapshot
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.unwrap_or_else(js::deno_isolate_init),
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),
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source_map_getter: options.source_map_getter,
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get_error_class_fn: options.get_error_class_fn,
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shared_array_buffer_store: options.shared_array_buffer_store.clone(),
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compiled_wasm_module_store: options.compiled_wasm_module_store.clone(),
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extensions,
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extensions_with_js: options.extensions_with_js,
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inspector: options.maybe_inspector_server.is_some(),
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is_main: true,
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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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server.register_inspector(
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main_module.to_string(),
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&mut js_runtime,
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options.should_break_on_first_statement
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|| options.should_wait_for_inspector_session,
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);
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// Put inspector handle into the op state so we can put a breakpoint when
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// executing a CJS entrypoint.
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let op_state = js_runtime.op_state();
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let inspector = js_runtime.inspector();
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op_state.borrow_mut().put(inspector);
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}
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Self {
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js_runtime,
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should_break_on_first_statement: options.should_break_on_first_statement,
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should_wait_for_inspector_session: options
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.should_wait_for_inspector_session,
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exit_code,
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}
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}
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pub fn bootstrap(&mut self, options: &BootstrapOptions) {
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let script = format!("bootstrap.mainRuntime({})", options.as_json());
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self
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.execute_script(&located_script_name!(), &script)
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.expect("Failed to execute 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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script_name: &str,
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source_code: &str,
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) -> Result<v8::Global<v8::Value>, AnyError> {
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self.js_runtime.execute_script(script_name, source_code)
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}
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/// Loads and instantiates specified JavaScript module as "main" module.
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pub async fn preload_main_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
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.js_runtime
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.load_main_module(module_specifier, None)
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.await
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}
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/// Loads and instantiates specified JavaScript module as "side" module.
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pub async fn preload_side_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
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.js_runtime
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.load_side_module(module_specifier, None)
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.await
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}
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/// Executes specified JavaScript module.
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pub async fn evaluate_module(
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&mut self,
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id: ModuleId,
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) -> Result<(), AnyError> {
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self.wait_for_inspector_session();
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let mut receiver = self.js_runtime.mod_evaluate(id);
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tokio::select! {
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// Not using biased mode leads to non-determinism for relatively simple
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// programs.
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biased;
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maybe_result = &mut receiver => {
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debug!("received module evaluate {:#?}", maybe_result);
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maybe_result.expect("Module evaluation result not provided.")
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}
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event_loop_result = self.run_event_loop(false) => {
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event_loop_result?;
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let maybe_result = receiver.await;
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maybe_result.expect("Module evaluation result not provided.")
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}
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}
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}
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/// Loads, instantiates and executes specified JavaScript module.
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pub async fn execute_side_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_side_module(module_specifier).await?;
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self.evaluate_module(id).await
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}
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/// Loads, instantiates and executes specified JavaScript module.
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///
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/// This module will have "import.meta.main" equal to true.
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pub async fn execute_main_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_main_module(module_specifier).await?;
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self.evaluate_module(id).await
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}
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fn wait_for_inspector_session(&mut self) {
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if self.should_break_on_first_statement {
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self
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.js_runtime
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.inspector()
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.borrow_mut()
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.wait_for_session_and_break_on_next_statement();
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} else if self.should_wait_for_inspector_session {
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self.js_runtime.inspector().borrow_mut().wait_for_session();
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}
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}
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/// Create new inspector session. This function panics if Worker
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/// was not configured to create inspector.
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pub async fn create_inspector_session(&mut self) -> LocalInspectorSession {
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self.js_runtime.maybe_init_inspector();
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self.js_runtime.inspector().borrow().create_local_session()
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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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self.js_runtime.poll_event_loop(cx, wait_for_inspector)
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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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self.js_runtime.run_event_loop(wait_for_inspector).await
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}
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/// A utility function that runs provided future concurrently with the event loop.
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///
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/// Useful when using a local inspector session.
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pub async fn with_event_loop<'a, T>(
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&mut self,
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mut fut: Pin<Box<dyn Future<Output = T> + 'a>>,
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) -> T {
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loop {
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tokio::select! {
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biased;
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result = &mut fut => {
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return result;
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}
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_ = self.run_event_loop(false) => {}
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};
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}
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}
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/// Return exit code set by the executed code (either in main worker
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/// or one of child web workers).
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pub fn exit_code(&self) -> i32 {
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self.exit_code.get()
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}
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/// Dispatches "load" event to the JavaScript runtime.
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///
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/// Does not poll event loop, and thus not await any of the "load" event handlers.
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pub fn dispatch_load_event(
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&mut self,
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script_name: &str,
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) -> Result<(), AnyError> {
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self.execute_script(
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script_name,
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// NOTE(@bartlomieju): not using `globalThis` here, because user might delete
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// it. Instead we're using global `dispatchEvent` function which will
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// used a saved reference to global scope.
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"dispatchEvent(new Event('load'))",
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)?;
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Ok(())
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}
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/// Dispatches "unload" event to the JavaScript runtime.
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///
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/// Does not poll event loop, and thus not await any of the "unload" event handlers.
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pub fn dispatch_unload_event(
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&mut self,
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script_name: &str,
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) -> Result<(), AnyError> {
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self.execute_script(
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script_name,
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// NOTE(@bartlomieju): not using `globalThis` here, because user might delete
|
|
// it. Instead we're using global `dispatchEvent` function which will
|
|
// used a saved reference to global scope.
|
|
"dispatchEvent(new Event('unload'))",
|
|
)?;
|
|
Ok(())
|
|
}
|
|
|
|
/// Dispatches "beforeunload" event to the JavaScript runtime. Returns a boolean
|
|
/// indicating if the event was prevented and thus event loop should continue
|
|
/// running.
|
|
pub fn dispatch_beforeunload_event(
|
|
&mut self,
|
|
script_name: &str,
|
|
) -> Result<bool, AnyError> {
|
|
let value = self.js_runtime.execute_script(
|
|
script_name,
|
|
// NOTE(@bartlomieju): not using `globalThis` here, because user might delete
|
|
// it. Instead we're using global `dispatchEvent` function which will
|
|
// used a saved reference to global scope.
|
|
"dispatchEvent(new Event('beforeunload', { cancelable: true }));",
|
|
)?;
|
|
let local_value = value.open(&mut self.js_runtime.handle_scope());
|
|
Ok(local_value.is_false())
|
|
}
|
|
}
|