mirror of
https://github.com/denoland/deno.git
synced 2024-10-29 08:58:01 -04:00
c3dd19c5d3
This commit removes ProgramState::permissions field. Having permissions parsed from CLI flags stored on globally accessible state object made it easy to mistakenly use these permissions in situations which required "runtime" permissions.
333 lines
10 KiB
Rust
333 lines
10 KiB
Rust
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
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use crate::deno_dir;
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use crate::file_fetcher::SourceFileFetcher;
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use crate::flags;
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use crate::http_cache;
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use crate::import_map::ImportMap;
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use crate::inspector::InspectorServer;
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use crate::lockfile::Lockfile;
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use crate::media_type::MediaType;
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use crate::module_graph::CheckOptions;
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use crate::module_graph::GraphBuilder;
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use crate::module_graph::TranspileOptions;
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use crate::module_graph::TypeLib;
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use crate::permissions::Permissions;
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use crate::source_maps::SourceMapGetter;
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use crate::specifier_handler::FetchHandler;
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use deno_core::error::generic_error;
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use deno_core::error::AnyError;
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use deno_core::url::Url;
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use deno_core::ModuleSpecifier;
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use std::cell::RefCell;
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use std::env;
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use std::rc::Rc;
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use std::sync::Arc;
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use std::sync::Mutex;
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pub fn exit_unstable(api_name: &str) {
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eprintln!(
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"Unstable API '{}'. The --unstable flag must be provided.",
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api_name
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);
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std::process::exit(70);
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}
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// TODO(@kitsonk) probably can refactor this better with the graph.
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pub struct CompiledModule {
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pub code: String,
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pub name: String,
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}
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/// This structure represents state of single "deno" program.
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///
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/// It is shared by all created workers (thus V8 isolates).
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pub struct ProgramState {
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/// Flags parsed from `argv` contents.
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pub flags: flags::Flags,
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pub dir: deno_dir::DenoDir,
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pub file_fetcher: SourceFileFetcher,
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pub lockfile: Option<Arc<Mutex<Lockfile>>>,
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pub maybe_import_map: Option<ImportMap>,
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pub maybe_inspector_server: Option<Arc<InspectorServer>>,
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}
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impl ProgramState {
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pub fn new(flags: flags::Flags) -> Result<Arc<Self>, AnyError> {
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let custom_root = env::var("DENO_DIR").map(String::into).ok();
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let dir = deno_dir::DenoDir::new(custom_root)?;
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let deps_cache_location = dir.root.join("deps");
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let http_cache = http_cache::HttpCache::new(&deps_cache_location);
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let ca_file = flags.ca_file.clone().or_else(|| env::var("DENO_CERT").ok());
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let file_fetcher = SourceFileFetcher::new(
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http_cache,
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!flags.reload,
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flags.cache_blocklist.clone(),
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flags.no_remote,
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flags.cached_only,
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ca_file.as_deref(),
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)?;
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let lockfile = if let Some(filename) = &flags.lock {
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let lockfile = Lockfile::new(filename.clone(), flags.lock_write)?;
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Some(Arc::new(Mutex::new(lockfile)))
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} else {
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None
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};
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let maybe_import_map: Option<ImportMap> =
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match flags.import_map_path.as_ref() {
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None => None,
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Some(file_path) => {
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if !flags.unstable {
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exit_unstable("--import-map")
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}
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Some(ImportMap::load(file_path)?)
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}
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};
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let maybe_inspect_host = flags.inspect.or(flags.inspect_brk);
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let maybe_inspector_server = match maybe_inspect_host {
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Some(host) => Some(Arc::new(InspectorServer::new(host))),
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None => None,
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};
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let program_state = ProgramState {
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dir,
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flags,
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file_fetcher,
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lockfile,
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maybe_import_map,
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maybe_inspector_server,
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};
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Ok(Arc::new(program_state))
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}
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/// This function is called when new module load is
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/// initialized by the JsRuntime. Its resposibility is to collect
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/// all dependencies and if it is required then also perform TS typecheck
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/// and traspilation.
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pub async fn prepare_module_load(
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self: &Arc<Self>,
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specifier: ModuleSpecifier,
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lib: TypeLib,
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runtime_permissions: Permissions,
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is_dynamic: bool,
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maybe_import_map: Option<ImportMap>,
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) -> Result<(), AnyError> {
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let specifier = specifier.clone();
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// Workers are subject to the current runtime permissions. We do the
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// permission check here early to avoid "wasting" time building a module
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// graph for a module that cannot be loaded.
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if lib == TypeLib::DenoWorker || lib == TypeLib::UnstableDenoWorker {
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runtime_permissions.check_specifier(&specifier)?;
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}
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let handler =
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Rc::new(RefCell::new(FetchHandler::new(self, runtime_permissions)?));
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let mut builder =
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GraphBuilder::new(handler, maybe_import_map, self.lockfile.clone());
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builder.add(&specifier, is_dynamic).await?;
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let mut graph = builder.get_graph();
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let debug = self.flags.log_level == Some(log::Level::Debug);
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let maybe_config_path = self.flags.config_path.clone();
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if self.flags.no_check {
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let (stats, maybe_ignored_options) =
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graph.transpile(TranspileOptions {
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debug,
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maybe_config_path,
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reload: self.flags.reload,
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})?;
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debug!("{}", stats);
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if let Some(ignored_options) = maybe_ignored_options {
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eprintln!("{}", ignored_options);
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}
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} else {
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let result_info = graph.check(CheckOptions {
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debug,
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emit: true,
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lib,
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maybe_config_path,
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reload: self.flags.reload,
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})?;
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debug!("{}", result_info.stats);
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if let Some(ignored_options) = result_info.maybe_ignored_options {
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eprintln!("{}", ignored_options);
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}
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if !result_info.diagnostics.is_empty() {
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return Err(generic_error(result_info.diagnostics.to_string()));
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}
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};
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if let Some(ref lockfile) = self.lockfile {
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let g = lockfile.lock().unwrap();
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g.write()?;
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}
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Ok(())
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}
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pub fn fetch_compiled_module(
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&self,
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module_specifier: ModuleSpecifier,
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maybe_referrer: Option<ModuleSpecifier>,
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) -> Result<CompiledModule, AnyError> {
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let out = self
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.file_fetcher
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.fetch_cached_source_file(&module_specifier, Permissions::allow_all())
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.expect("Cached source file doesn't exist");
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let url = out.url.clone();
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let compiled_module = if let Some((code, _)) = self.get_emit(&url) {
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CompiledModule {
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code: String::from_utf8(code).unwrap(),
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name: out.url.to_string(),
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}
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// We expect a compiled source for any non-JavaScript files, except for
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// local files that have an unknown media type and no referrer (root modules
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// that do not have an extension.)
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} else if out.media_type != MediaType::JavaScript
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&& !(out.media_type == MediaType::Unknown
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&& maybe_referrer.is_none()
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&& url.scheme() == "file")
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{
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let message = if let Some(referrer) = maybe_referrer {
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format!("Compiled module not found \"{}\"\n From: {}\n If the source module contains only types, use `import type` and `export type` to import it instead.", module_specifier, referrer)
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} else {
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format!("Compiled module not found \"{}\"\n If the source module contains only types, use `import type` and `export type` to import it instead.", module_specifier)
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};
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info!("{}: {}", crate::colors::yellow("warning"), message);
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CompiledModule {
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code: "".to_string(),
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name: out.url.to_string(),
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}
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} else {
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CompiledModule {
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code: out.source_code,
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name: out.url.to_string(),
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}
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};
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Ok(compiled_module)
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}
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// TODO(@kitsonk) this should be a straight forward API on file_fetcher or
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// whatever future refactors do...
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fn get_emit(&self, url: &Url) -> Option<(Vec<u8>, Option<Vec<u8>>)> {
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match url.scheme() {
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// we should only be looking for emits for schemes that denote external
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// modules, which the disk_cache supports
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"wasm" | "file" | "http" | "https" => (),
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_ => {
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return None;
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}
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}
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let emit_path = self
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.dir
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.gen_cache
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.get_cache_filename_with_extension(&url, "js");
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let emit_map_path = self
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.dir
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.gen_cache
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.get_cache_filename_with_extension(&url, "js.map");
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if let Ok(code) = self.dir.gen_cache.get(&emit_path) {
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let maybe_map = if let Ok(map) = self.dir.gen_cache.get(&emit_map_path) {
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Some(map)
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} else {
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None
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};
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Some((code, maybe_map))
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} else {
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None
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}
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}
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/// Quits the process if the --unstable flag was not provided.
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///
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/// This is intentionally a non-recoverable check so that people cannot probe
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/// for unstable APIs from stable programs.
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pub fn check_unstable(&self, api_name: &str) {
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if !self.flags.unstable {
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exit_unstable(api_name);
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}
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}
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#[cfg(test)]
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pub fn mock(
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argv: Vec<String>,
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maybe_flags: Option<flags::Flags>,
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) -> Arc<ProgramState> {
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ProgramState::new(flags::Flags {
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argv,
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..maybe_flags.unwrap_or_default()
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})
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.unwrap()
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}
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}
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// TODO(@kitsonk) this is only temporary, but should be refactored to somewhere
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// else, like a refactored file_fetcher.
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impl SourceMapGetter for ProgramState {
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fn get_source_map(&self, file_name: &str) -> Option<Vec<u8>> {
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if let Ok(specifier) = ModuleSpecifier::resolve_url(file_name) {
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if let Some((code, maybe_map)) = self.get_emit(&specifier.as_url()) {
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if maybe_map.is_some() {
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maybe_map
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} else {
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let code = String::from_utf8(code).unwrap();
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let lines: Vec<&str> = code.split('\n').collect();
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if let Some(last_line) = lines.last() {
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if last_line
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.starts_with("//# sourceMappingURL=data:application/json;base64,")
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{
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let input = last_line.trim_start_matches(
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"//# sourceMappingURL=data:application/json;base64,",
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);
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let decoded_map = base64::decode(input)
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.expect("Unable to decode source map from emitted file.");
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Some(decoded_map)
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} else {
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None
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}
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} else {
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None
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}
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}
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} else {
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None
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}
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} else {
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None
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}
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}
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fn get_source_line(
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&self,
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file_name: &str,
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line_number: usize,
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) -> Option<String> {
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if let Ok(specifier) = ModuleSpecifier::resolve_url(file_name) {
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self
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.file_fetcher
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.fetch_cached_source_file(&specifier, Permissions::allow_all())
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.map(|out| {
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// Do NOT use .lines(): it skips the terminating empty line.
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// (due to internally using .split_terminator() instead of .split())
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let lines: Vec<&str> = out.source_code.split('\n').collect();
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assert!(lines.len() > line_number);
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lines[line_number].to_string()
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})
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} else {
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None
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}
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}
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}
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#[test]
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fn thread_safe() {
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fn f<S: Send + Sync>(_: S) {}
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f(ProgramState::mock(vec![], None));
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}
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