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denoland-deno/cli/state.rs

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// Copyright 2018-2019 the Deno authors. All rights reserved. MIT license.
use crate::deno_error::permission_denied;
use crate::global_state::ThreadSafeGlobalState;
use crate::global_timer::GlobalTimer;
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use crate::import_map::ImportMap;
use crate::metrics::Metrics;
use crate::ops::JsonOp;
use crate::permissions::DenoPermissions;
use crate::resources;
use crate::resources::ResourceId;
use crate::worker::Worker;
use crate::worker::WorkerChannels;
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use deno::Buf;
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use deno::CoreOp;
use deno::ErrBox;
use deno::Loader;
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use deno::ModuleSpecifier;
use deno::Op;
use deno::PinnedBuf;
use futures::future::Shared;
use futures::Future;
use rand::rngs::StdRng;
use rand::SeedableRng;
use serde_json::Value;
use std;
use std::collections::HashMap;
use std::ops::Deref;
use std::str;
use std::sync::atomic::Ordering;
use std::sync::Arc;
use std::sync::Mutex;
use std::time::Instant;
use tokio::sync::mpsc as async_mpsc;
// TODO: hold references to concrete Workers instead of shared futures of
// those workers?
pub type UserWorkerTable = HashMap<ResourceId, Shared<Worker>>;
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/// Isolate cannot be passed between threads but ThreadSafeState can.
/// ThreadSafeState satisfies Send and Sync. So any state that needs to be
/// accessed outside the main V8 thread should be inside ThreadSafeState.
pub struct ThreadSafeState(Arc<State>);
#[cfg_attr(feature = "cargo-clippy", allow(stutter))]
pub struct State {
pub global_state: ThreadSafeGlobalState,
pub modules: Arc<Mutex<deno::Modules>>,
pub permissions: DenoPermissions,
pub main_module: Option<ModuleSpecifier>,
pub worker_channels: Mutex<WorkerChannels>,
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/// When flags contains a `.import_map_path` option, the content of the
/// import map file will be resolved and set.
pub import_map: Option<ImportMap>,
pub metrics: Metrics,
pub global_timer: Mutex<GlobalTimer>,
pub workers: Mutex<UserWorkerTable>,
pub start_time: Instant,
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/// A reference to this worker's resource.
pub rid: ResourceId,
pub seeded_rng: Option<Mutex<StdRng>>,
pub include_deno_namespace: bool,
}
impl Clone for ThreadSafeState {
fn clone(&self) -> Self {
ThreadSafeState(self.0.clone())
}
}
impl Deref for ThreadSafeState {
type Target = Arc<State>;
fn deref(&self) -> &Self::Target {
&self.0
}
}
impl ThreadSafeState {
/// Wrap core `OpDispatcher` to collect metrics.
pub fn core_op<D>(
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&self,
dispatcher: D,
) -> impl Fn(&[u8], Option<PinnedBuf>) -> CoreOp
where
D: Fn(&[u8], Option<PinnedBuf>) -> CoreOp,
{
let state = self.clone();
move |control: &[u8], zero_copy: Option<PinnedBuf>| -> CoreOp {
let bytes_sent_control = control.len();
let bytes_sent_zero_copy =
zero_copy.as_ref().map(|b| b.len()).unwrap_or(0);
let op = dispatcher(control, zero_copy);
state.metrics_op_dispatched(bytes_sent_control, bytes_sent_zero_copy);
match op {
Op::Sync(buf) => {
state.metrics_op_completed(buf.len());
Op::Sync(buf)
}
Op::Async(fut) => {
let state = state.clone();
let result_fut = Box::new(fut.map(move |buf: Buf| {
state.clone().metrics_op_completed(buf.len());
buf
}));
Op::Async(result_fut)
}
}
}
}
/// This is a special function that provides `state` argument to dispatcher.
///
/// NOTE: This only works with JSON dispatcher.
/// This is a band-aid for transition to `Isolate.register_op` API as most of our
/// ops require `state` argument.
pub fn stateful_op<D>(
&self,
dispatcher: D,
) -> impl Fn(Value, Option<PinnedBuf>) -> Result<JsonOp, ErrBox>
where
D: Fn(&ThreadSafeState, Value, Option<PinnedBuf>) -> Result<JsonOp, ErrBox>,
{
let state = self.clone();
move |args: Value, zero_copy: Option<PinnedBuf>| -> Result<JsonOp, ErrBox> {
dispatcher(&state, args, zero_copy)
}
}
}
impl Loader for ThreadSafeState {
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fn resolve(
&self,
specifier: &str,
referrer: &str,
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is_main: bool,
is_dyn_import: bool,
) -> Result<ModuleSpecifier, ErrBox> {
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if !is_main {
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if let Some(import_map) = &self.import_map {
let result = import_map.resolve(specifier, referrer)?;
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if let Some(r) = result {
return Ok(r);
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}
}
}
let module_specifier =
ModuleSpecifier::resolve_import(specifier, referrer)?;
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if is_dyn_import {
self.check_dyn_import(&module_specifier)?;
}
Ok(module_specifier)
}
/// Given an absolute url, load its source code.
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fn load(
&self,
module_specifier: &ModuleSpecifier,
) -> Box<deno::SourceCodeInfoFuture> {
self.metrics.resolve_count.fetch_add(1, Ordering::SeqCst);
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let module_url_specified = module_specifier.to_string();
let fut = self
.global_state
.fetch_compiled_module(module_specifier)
.map(|compiled_module| deno::SourceCodeInfo {
// Real module name, might be different from initial specifier
// due to redirections.
code: compiled_module.code,
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module_url_specified,
module_url_found: compiled_module.name,
});
Box::new(fut)
}
}
impl ThreadSafeState {
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pub fn new(
global_state: ThreadSafeGlobalState,
main_module: Option<ModuleSpecifier>,
include_deno_namespace: bool,
) -> Result<Self, ErrBox> {
let (worker_in_tx, worker_in_rx) = async_mpsc::channel::<Buf>(1);
let (worker_out_tx, worker_out_rx) = async_mpsc::channel::<Buf>(1);
let internal_channels = WorkerChannels {
sender: worker_out_tx,
receiver: worker_in_rx,
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};
let external_channels = WorkerChannels {
sender: worker_in_tx,
receiver: worker_out_rx,
};
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let mut table = resources::lock_resource_table();
let rid = table.add("worker", Box::new(external_channels));
let import_map: Option<ImportMap> =
match global_state.flags.import_map_path.as_ref() {
None => None,
Some(file_path) => Some(ImportMap::load(file_path)?),
};
let seeded_rng = match global_state.flags.seed {
Some(seed) => Some(Mutex::new(StdRng::seed_from_u64(seed))),
None => None,
};
let modules = Arc::new(Mutex::new(deno::Modules::new()));
let permissions = global_state.permissions.clone();
let state = State {
global_state,
modules,
main_module,
permissions,
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import_map,
worker_channels: Mutex::new(internal_channels),
metrics: Metrics::default(),
global_timer: Mutex::new(GlobalTimer::new()),
workers: Mutex::new(UserWorkerTable::new()),
start_time: Instant::now(),
rid,
seeded_rng,
include_deno_namespace,
};
Ok(ThreadSafeState(Arc::new(state)))
}
#[inline]
pub fn check_read(&self, filename: &str) -> Result<(), ErrBox> {
self.permissions.check_read(filename)
}
#[inline]
pub fn check_write(&self, filename: &str) -> Result<(), ErrBox> {
self.permissions.check_write(filename)
}
#[inline]
pub fn check_env(&self) -> Result<(), ErrBox> {
self.permissions.check_env()
}
#[inline]
pub fn check_net(&self, hostname: &str, port: u16) -> Result<(), ErrBox> {
self.permissions.check_net(hostname, port)
}
#[inline]
pub fn check_net_url(&self, url: &url::Url) -> Result<(), ErrBox> {
self.permissions.check_net_url(url)
}
#[inline]
pub fn check_run(&self) -> Result<(), ErrBox> {
self.permissions.check_run()
}
pub fn check_dyn_import(
self: &Self,
module_specifier: &ModuleSpecifier,
) -> Result<(), ErrBox> {
let u = module_specifier.as_url();
match u.scheme() {
"http" | "https" => {
self.check_net_url(u)?;
Ok(())
}
"file" => {
let filename = u
.to_file_path()
.unwrap()
.into_os_string()
.into_string()
.unwrap();
self.check_read(&filename)?;
Ok(())
}
_ => Err(permission_denied()),
}
}
#[cfg(test)]
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pub fn mock(argv: Vec<String>) -> ThreadSafeState {
let module_specifier = if argv.is_empty() {
None
} else {
let module_specifier = ModuleSpecifier::resolve_url_or_path(&argv[0])
.expect("Invalid entry module");
Some(module_specifier)
};
ThreadSafeState::new(
ThreadSafeGlobalState::mock(argv),
module_specifier,
true,
)
.unwrap()
}
pub fn metrics_op_dispatched(
&self,
bytes_sent_control: usize,
bytes_sent_data: usize,
) {
self.metrics.ops_dispatched.fetch_add(1, Ordering::SeqCst);
self
.metrics
.bytes_sent_control
.fetch_add(bytes_sent_control, Ordering::SeqCst);
self
.metrics
.bytes_sent_data
.fetch_add(bytes_sent_data, Ordering::SeqCst);
}
pub fn metrics_op_completed(&self, bytes_received: usize) {
self.metrics.ops_completed.fetch_add(1, Ordering::SeqCst);
self
.metrics
.bytes_received
.fetch_add(bytes_received, Ordering::SeqCst);
}
}
#[test]
fn thread_safe() {
fn f<S: Send + Sync>(_: S) {}
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f(ThreadSafeState::mock(vec![
String::from("./deno"),
String::from("hello.js"),
]));
}