2019-03-14 19:17:52 -04:00
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// Copyright 2018-2019 the Deno authors. All rights reserved. MIT license.
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2019-06-05 16:35:38 -04:00
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use crate::compiler::compile_async;
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use crate::compiler::ModuleMetaData;
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use crate::deno_dir;
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use crate::flags;
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use crate::global_timer::GlobalTimer;
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use crate::import_map::ImportMap;
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use crate::msg;
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use crate::ops;
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use crate::permissions::DenoPermissions;
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use crate::progress::Progress;
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use crate::resources;
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use crate::resources::ResourceId;
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use crate::worker::Worker;
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use deno::Buf;
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use deno::CoreOp;
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use deno::ErrBox;
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use deno::Loader;
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use deno::ModuleSpecifier;
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use deno::PinnedBuf;
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use futures::future::Either;
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use futures::future::Shared;
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use futures::Future;
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use rand::rngs::StdRng;
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use rand::SeedableRng;
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use std;
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use std::collections::HashMap;
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use std::collections::HashSet;
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use std::env;
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use std::fs;
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use std::ops::Deref;
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use std::sync::atomic::{AtomicUsize, Ordering};
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use std::sync::Arc;
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use std::sync::Mutex;
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use std::time::Instant;
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use tokio::sync::mpsc as async_mpsc;
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pub type WorkerSender = async_mpsc::Sender<Buf>;
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pub type WorkerReceiver = async_mpsc::Receiver<Buf>;
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pub type WorkerChannels = (WorkerSender, WorkerReceiver);
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pub type UserWorkerTable = HashMap<ResourceId, Shared<Worker>>;
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#[derive(Default)]
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pub struct Metrics {
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pub ops_dispatched: AtomicUsize,
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pub ops_completed: AtomicUsize,
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pub bytes_sent_control: AtomicUsize,
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pub bytes_sent_data: AtomicUsize,
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pub bytes_received: AtomicUsize,
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pub resolve_count: AtomicUsize,
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pub compiler_starts: AtomicUsize,
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}
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/// Isolate cannot be passed between threads but ThreadSafeState can.
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/// ThreadSafeState satisfies Send and Sync. So any state that needs to be
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/// accessed outside the main V8 thread should be inside ThreadSafeState.
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pub struct ThreadSafeState(Arc<State>);
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#[cfg_attr(feature = "cargo-clippy", allow(stutter))]
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pub struct State {
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pub modules: Arc<Mutex<deno::Modules>>,
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pub main_module: Option<ModuleSpecifier>,
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pub dir: deno_dir::DenoDir,
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pub argv: Vec<String>,
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pub permissions: DenoPermissions,
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pub flags: flags::DenoFlags,
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/// When flags contains a `.config_path` option, the content of the
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/// configuration file will be resolved and set.
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pub config: Option<Vec<u8>>,
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/// When flags contains a `.config_path` option, the fully qualified path
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/// name of the passed path will be resolved and set.
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pub config_path: Option<String>,
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/// When flags contains a `.import_map_path` option, the content of the
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/// import map file will be resolved and set.
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pub import_map: Option<ImportMap>,
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pub metrics: Metrics,
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pub worker_channels: Mutex<WorkerChannels>,
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pub global_timer: Mutex<GlobalTimer>,
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pub workers: Mutex<UserWorkerTable>,
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pub start_time: Instant,
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/// A reference to this worker's resource.
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pub resource: resources::Resource,
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pub dispatch_selector: ops::OpSelector,
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/// Reference to global progress bar.
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pub progress: Progress,
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pub seeded_rng: Option<Mutex<StdRng>>,
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/// Set of all URLs that have been compiled. This is a hacky way to work
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/// around the fact that --reload will force multiple compilations of the same
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/// module.
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compiled: Mutex<HashSet<String>>,
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}
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impl Clone for ThreadSafeState {
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fn clone(&self) -> Self {
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ThreadSafeState(self.0.clone())
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}
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}
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impl Deref for ThreadSafeState {
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type Target = Arc<State>;
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fn deref(&self) -> &Self::Target {
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&self.0
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}
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}
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impl ThreadSafeState {
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pub fn dispatch(
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&self,
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control: &[u8],
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zero_copy: Option<PinnedBuf>,
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) -> CoreOp {
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ops::dispatch_all(self, control, zero_copy, self.dispatch_selector)
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}
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}
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pub fn fetch_module_meta_data_and_maybe_compile_async(
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state: &ThreadSafeState,
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module_specifier: &ModuleSpecifier,
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) -> impl Future<Item = ModuleMetaData, Error = ErrBox> {
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let state_ = state.clone();
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let use_cache =
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!state_.flags.reload || state_.has_compiled(&module_specifier.to_string());
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let no_fetch = state_.flags.no_fetch;
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state_
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.dir
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.fetch_module_meta_data_async(&module_specifier, use_cache, no_fetch)
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.and_then(move |out| {
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if out.media_type == msg::MediaType::TypeScript
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&& !out.has_output_code_and_source_map()
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{
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debug!(">>>>> compile_sync START");
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Either::A(
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compile_async(state_.clone(), &out)
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.map_err(|e| {
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debug!("compiler error exiting!");
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eprintln!("\n{}", e.to_string());
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std::process::exit(1);
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}).and_then(move |out| {
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debug!(">>>>> compile_sync END");
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Ok(out)
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}),
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)
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} else {
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Either::B(futures::future::ok(out))
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}
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})
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}
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impl Loader for ThreadSafeState {
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fn resolve(
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&self,
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specifier: &str,
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referrer: &str,
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is_root: bool,
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) -> Result<ModuleSpecifier, ErrBox> {
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if !is_root {
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if let Some(import_map) = &self.import_map {
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let result = import_map.resolve(specifier, referrer)?;
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if result.is_some() {
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return Ok(result.unwrap());
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}
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}
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}
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ModuleSpecifier::resolve_import(specifier, referrer).map_err(ErrBox::from)
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}
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/// Given an absolute url, load its source code.
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fn load(
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&self,
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module_specifier: &ModuleSpecifier,
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) -> Box<deno::SourceCodeInfoFuture> {
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self.metrics.resolve_count.fetch_add(1, Ordering::SeqCst);
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Box::new(
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fetch_module_meta_data_and_maybe_compile_async(self, module_specifier)
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.map(|module_meta_data| deno::SourceCodeInfo {
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// Real module name, might be different from initial URL
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// due to redirections.
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code: module_meta_data.js_source(),
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module_name: module_meta_data.module_name,
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}),
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)
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}
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}
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impl ThreadSafeState {
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pub fn new(
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flags: flags::DenoFlags,
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argv_rest: Vec<String>,
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dispatch_selector: ops::OpSelector,
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progress: Progress,
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) -> Self {
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let custom_root = env::var("DENO_DIR").map(String::into).ok();
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let (worker_in_tx, worker_in_rx) = async_mpsc::channel::<Buf>(1);
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let (worker_out_tx, worker_out_rx) = async_mpsc::channel::<Buf>(1);
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let internal_channels = (worker_out_tx, worker_in_rx);
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let external_channels = (worker_in_tx, worker_out_rx);
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let resource = resources::add_worker(external_channels);
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2019-04-29 10:58:31 -04:00
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// take the passed flag and resolve the file name relative to the cwd
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let config_file = match &flags.config_path {
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Some(config_file_name) => {
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debug!("Compiler config file: {}", config_file_name);
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let cwd = std::env::current_dir().unwrap();
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Some(cwd.join(config_file_name))
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}
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_ => None,
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};
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// Convert the PathBuf to a canonicalized string. This is needed by the
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// compiler to properly deal with the configuration.
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let config_path = match &config_file {
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Some(config_file) => Some(
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config_file
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.canonicalize()
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.unwrap()
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.to_str()
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.unwrap()
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.to_owned(),
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),
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_ => None,
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};
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// Load the contents of the configuration file
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let config = match &config_file {
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Some(config_file) => {
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debug!("Attempt to load config: {}", config_file.to_str().unwrap());
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match fs::read(&config_file) {
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Ok(config_data) => Some(config_data.to_owned()),
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_ => panic!(
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"Error retrieving compiler config file at \"{}\"",
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config_file.to_str().unwrap()
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),
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}
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}
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_ => None,
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};
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2019-06-09 09:08:20 -04:00
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let dir =
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deno_dir::DenoDir::new(custom_root, &config, progress.clone()).unwrap();
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let main_module: Option<ModuleSpecifier> = if argv_rest.len() <= 1 {
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None
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} else {
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let root_specifier = argv_rest[1].clone();
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core: clearly define when module lookup is path-based vs URL-based
The rules are now as follows:
* In `import` statements, as mandated by the WHATWG specification,
the import specifier is always treated as a URL.
If it is a relative URL, it must start with either / or ./ or ../
* A script name passed to deno as a command line argument may be either
an absolute URL or a local path.
- If the name starts with a valid URI scheme followed by a colon, e.g.
'http:', 'https:', 'file:', 'foo+bar:', it always interpreted as a
URL (even if Deno doesn't support the indicated protocol).
- Otherwise, the script name is interpreted as a local path. The local
path may be relative, and operating system semantics determine how
it is resolved. Prefixing a relative path with ./ is not required.
2019-07-08 03:55:24 -04:00
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match ModuleSpecifier::resolve_url_or_path(&root_specifier) {
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Ok(specifier) => Some(specifier),
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Err(e) => {
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// TODO: handle unresolvable specifier
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panic!("Unable to resolve root specifier: {:?}", e);
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}
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}
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};
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let mut import_map = None;
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if let Some(file_name) = &flags.import_map_path {
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let base_url = match &main_module {
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Some(module_specifier) => module_specifier.clone(),
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None => unreachable!(),
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};
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match ImportMap::load(&base_url.to_string(), file_name) {
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Ok(map) => import_map = Some(map),
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Err(err) => {
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println!("{:?}", err);
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panic!("Error parsing import map");
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}
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}
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}
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2019-06-11 10:34:39 -04:00
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let mut seeded_rng = None;
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if let Some(seed) = flags.seed {
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seeded_rng = Some(Mutex::new(StdRng::seed_from_u64(seed)));
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};
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2019-06-11 14:35:03 -04:00
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let modules = Arc::new(Mutex::new(deno::Modules::new()));
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ThreadSafeState(Arc::new(State {
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main_module,
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2019-06-11 14:35:03 -04:00
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modules,
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2019-06-09 09:08:20 -04:00
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dir,
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2019-03-14 19:17:52 -04:00
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argv: argv_rest,
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2019-03-19 20:55:59 -04:00
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permissions: DenoPermissions::from_flags(&flags),
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2019-03-14 19:17:52 -04:00
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flags,
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2019-04-29 10:58:31 -04:00
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config,
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config_path,
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2019-06-09 09:08:20 -04:00
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import_map,
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2019-03-14 19:17:52 -04:00
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metrics: Metrics::default(),
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2019-04-08 17:10:00 -04:00
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worker_channels: Mutex::new(internal_channels),
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2019-03-14 19:17:52 -04:00
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global_timer: Mutex::new(GlobalTimer::new()),
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2019-04-01 15:09:59 -04:00
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workers: Mutex::new(UserWorkerTable::new()),
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2019-04-08 16:22:40 -04:00
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start_time: Instant::now(),
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2019-04-08 17:10:00 -04:00
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resource,
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2019-04-11 10:58:31 -04:00
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dispatch_selector,
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2019-05-11 10:23:19 -04:00
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progress,
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2019-06-11 10:34:39 -04:00
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seeded_rng,
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2019-05-20 12:06:57 -04:00
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compiled: Mutex::new(HashSet::new()),
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2019-04-09 13:11:25 -04:00
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}))
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2019-03-14 19:17:52 -04:00
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}
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2019-04-01 15:09:59 -04:00
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/// Read main module from argv
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2019-06-12 15:00:08 -04:00
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pub fn main_module(&self) -> Option<ModuleSpecifier> {
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2019-06-09 09:08:20 -04:00
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match &self.main_module {
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2019-06-12 15:00:08 -04:00
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Some(module_specifier) => Some(module_specifier.clone()),
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2019-06-09 09:08:20 -04:00
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None => None,
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2019-03-14 19:17:52 -04:00
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}
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}
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2019-05-20 12:06:57 -04:00
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pub fn mark_compiled(&self, module_id: &str) {
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let mut c = self.compiled.lock().unwrap();
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c.insert(module_id.to_string());
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}
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pub fn has_compiled(&self, module_id: &str) -> bool {
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let c = self.compiled.lock().unwrap();
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c.contains(module_id)
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}
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2019-03-19 20:55:59 -04:00
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#[inline]
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2019-07-10 18:53:48 -04:00
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pub fn check_read(&self, filename: &str) -> Result<(), ErrBox> {
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2019-03-19 20:55:59 -04:00
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self.permissions.check_read(filename)
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}
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#[inline]
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2019-07-10 18:53:48 -04:00
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pub fn check_write(&self, filename: &str) -> Result<(), ErrBox> {
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2019-03-19 20:55:59 -04:00
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self.permissions.check_write(filename)
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}
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#[inline]
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2019-07-10 18:53:48 -04:00
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pub fn check_env(&self) -> Result<(), ErrBox> {
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2019-03-19 20:55:59 -04:00
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self.permissions.check_env()
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}
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#[inline]
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2019-07-10 18:53:48 -04:00
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pub fn check_net(&self, host_and_port: &str) -> Result<(), ErrBox> {
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2019-05-08 19:20:30 -04:00
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self.permissions.check_net(host_and_port)
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}
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#[inline]
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2019-07-10 18:53:48 -04:00
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pub fn check_net_url(&self, url: url::Url) -> Result<(), ErrBox> {
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2019-05-08 19:20:30 -04:00
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self.permissions.check_net_url(url)
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2019-03-19 20:55:59 -04:00
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}
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#[inline]
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2019-07-10 18:53:48 -04:00
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pub fn check_run(&self) -> Result<(), ErrBox> {
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2019-03-19 20:55:59 -04:00
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self.permissions.check_run()
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}
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2019-03-14 19:17:52 -04:00
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#[cfg(test)]
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2019-06-08 14:42:28 -04:00
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pub fn mock(argv: Vec<String>) -> ThreadSafeState {
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2019-04-21 11:34:18 -04:00
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ThreadSafeState::new(
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flags::DenoFlags::default(),
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argv,
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ops::op_selector_std,
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2019-05-11 10:23:19 -04:00
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Progress::new(),
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2019-04-21 11:34:18 -04:00
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)
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2019-03-14 19:17:52 -04:00
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}
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pub fn metrics_op_dispatched(
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&self,
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bytes_sent_control: usize,
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bytes_sent_data: usize,
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) {
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self.metrics.ops_dispatched.fetch_add(1, Ordering::SeqCst);
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self
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.metrics
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.bytes_sent_control
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.fetch_add(bytes_sent_control, Ordering::SeqCst);
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self
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.metrics
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.bytes_sent_data
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.fetch_add(bytes_sent_data, Ordering::SeqCst);
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}
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pub fn metrics_op_completed(&self, bytes_received: usize) {
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self.metrics.ops_completed.fetch_add(1, Ordering::SeqCst);
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|
self
|
|
|
|
.metrics
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|
.bytes_received
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.fetch_add(bytes_received, Ordering::SeqCst);
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|
}
|
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}
|
2019-04-09 13:11:25 -04:00
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#[test]
|
|
|
|
fn thread_safe() {
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|
|
|
fn f<S: Send + Sync>(_: S) {}
|
2019-06-08 14:42:28 -04:00
|
|
|
f(ThreadSafeState::mock(vec![
|
|
|
|
String::from("./deno"),
|
|
|
|
String::from("hello.js"),
|
|
|
|
]));
|
2019-04-09 13:11:25 -04:00
|
|
|
}
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