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https://github.com/denoland/deno.git
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07d1cacd5f
This takes the existing `fmt_error` module from cli and puts it as a public module into `deno_runtime`.
338 lines
10 KiB
Rust
338 lines
10 KiB
Rust
// Copyright 2018-2022 the Deno authors. All rights reserved. MIT license.
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use crate::args::Flags;
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use crate::colors;
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use crate::file_fetcher::get_source_from_data_url;
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use crate::ops;
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use crate::proc_state::ProcState;
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use crate::version;
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use crate::ImportMapResolver;
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use deno_core::anyhow::anyhow;
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use deno_core::anyhow::Context;
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use deno_core::error::type_error;
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use deno_core::error::AnyError;
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use deno_core::futures::FutureExt;
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use deno_core::located_script_name;
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use deno_core::serde::Deserialize;
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use deno_core::serde::Serialize;
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use deno_core::serde_json;
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use deno_core::url::Url;
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use deno_core::v8_set_flags;
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use deno_core::ModuleLoader;
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use deno_core::ModuleSpecifier;
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use deno_graph::source::Resolver;
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use deno_runtime::deno_broadcast_channel::InMemoryBroadcastChannel;
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use deno_runtime::deno_tls::rustls_pemfile;
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use deno_runtime::deno_web::BlobStore;
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use deno_runtime::fmt_errors::format_js_error;
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use deno_runtime::permissions::Permissions;
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use deno_runtime::permissions::PermissionsOptions;
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use deno_runtime::worker::MainWorker;
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use deno_runtime::worker::WorkerOptions;
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use deno_runtime::BootstrapOptions;
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use import_map::parse_from_json;
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use log::Level;
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use std::env::current_exe;
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use std::io::BufReader;
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use std::io::Cursor;
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use std::io::SeekFrom;
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use std::iter::once;
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use std::pin::Pin;
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use std::rc::Rc;
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use std::sync::Arc;
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use tokio::io::{AsyncReadExt, AsyncSeekExt};
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#[derive(Deserialize, Serialize)]
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pub struct Metadata {
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pub argv: Vec<String>,
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pub unstable: bool,
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pub seed: Option<u64>,
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pub permissions: PermissionsOptions,
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pub location: Option<Url>,
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pub v8_flags: Vec<String>,
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pub log_level: Option<Level>,
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pub ca_stores: Option<Vec<String>>,
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pub ca_data: Option<Vec<u8>>,
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pub unsafely_ignore_certificate_errors: Option<Vec<String>>,
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pub maybe_import_map: Option<(Url, String)>,
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pub entrypoint: ModuleSpecifier,
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}
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pub const MAGIC_TRAILER: &[u8; 8] = b"d3n0l4nd";
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/// This function will try to run this binary as a standalone binary
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/// produced by `deno compile`. It determines if this is a standalone
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/// binary by checking for the magic trailer string `D3N0` at EOF-12.
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/// The magic trailer is followed by:
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/// - a u64 pointer to the JS bundle embedded in the binary
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/// - a u64 pointer to JSON metadata (serialized flags) embedded in the binary
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/// These are dereferenced, and the bundle is executed under the configuration
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/// specified by the metadata. If no magic trailer is present, this function
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/// exits with `Ok(None)`.
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pub async fn extract_standalone(
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args: Vec<String>,
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) -> Result<Option<(Metadata, eszip::EszipV2)>, AnyError> {
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let current_exe_path = current_exe()?;
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let file = tokio::fs::File::open(current_exe_path).await?;
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let mut bufreader = tokio::io::BufReader::new(file);
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let trailer_pos = bufreader.seek(SeekFrom::End(-24)).await?;
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let mut trailer = [0; 24];
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bufreader.read_exact(&mut trailer).await?;
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let (magic_trailer, rest) = trailer.split_at(8);
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if magic_trailer != MAGIC_TRAILER {
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return Ok(None);
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}
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let (eszip_archive_pos, rest) = rest.split_at(8);
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let metadata_pos = rest;
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let eszip_archive_pos = u64_from_bytes(eszip_archive_pos)?;
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let metadata_pos = u64_from_bytes(metadata_pos)?;
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let metadata_len = trailer_pos - metadata_pos;
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bufreader.seek(SeekFrom::Start(eszip_archive_pos)).await?;
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let (eszip, loader) = eszip::EszipV2::parse(bufreader)
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.await
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.context("Failed to parse eszip header")?;
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let mut bufreader = loader.await.context("Failed to parse eszip archive")?;
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bufreader.seek(SeekFrom::Start(metadata_pos)).await?;
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let mut metadata = String::new();
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bufreader
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.take(metadata_len)
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.read_to_string(&mut metadata)
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.await
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.context("Failed to read metadata from the current executable")?;
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let mut metadata: Metadata = serde_json::from_str(&metadata).unwrap();
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metadata.argv.append(&mut args[1..].to_vec());
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Ok(Some((metadata, eszip)))
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}
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fn u64_from_bytes(arr: &[u8]) -> Result<u64, AnyError> {
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let fixed_arr: &[u8; 8] = arr
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.try_into()
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.context("Failed to convert the buffer into a fixed-size array")?;
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Ok(u64::from_be_bytes(*fixed_arr))
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}
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struct EmbeddedModuleLoader {
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eszip: eszip::EszipV2,
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maybe_import_map_resolver: Option<ImportMapResolver>,
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}
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impl ModuleLoader for EmbeddedModuleLoader {
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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_main: bool,
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) -> Result<ModuleSpecifier, AnyError> {
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// Try to follow redirects when resolving.
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let referrer = match self.eszip.get_module(referrer) {
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Some(eszip::Module { ref specifier, .. }) => {
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deno_core::resolve_url_or_path(specifier)?
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}
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None => deno_core::resolve_url_or_path(referrer)?,
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};
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self.maybe_import_map_resolver.as_ref().map_or_else(
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|| {
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deno_core::resolve_import(specifier, referrer.as_str())
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.map_err(|err| err.into())
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},
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|r| r.resolve(specifier, &referrer).to_result(),
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)
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}
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fn load(
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&self,
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module_specifier: &ModuleSpecifier,
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_maybe_referrer: Option<ModuleSpecifier>,
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_is_dynamic: bool,
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) -> Pin<Box<deno_core::ModuleSourceFuture>> {
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let module_specifier = module_specifier.clone();
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let is_data_uri = get_source_from_data_url(&module_specifier).ok();
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let module = self
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.eszip
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.get_module(module_specifier.as_str())
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.ok_or_else(|| type_error("Module not found"));
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async move {
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if let Some((source, _)) = is_data_uri {
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return Ok(deno_core::ModuleSource {
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code: source.into_bytes().into_boxed_slice(),
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module_type: deno_core::ModuleType::JavaScript,
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module_url_specified: module_specifier.to_string(),
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module_url_found: module_specifier.to_string(),
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});
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}
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let module = module?;
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let code = module.source().await;
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let code = std::str::from_utf8(&code)
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.map_err(|_| type_error("Module source is not utf-8"))?
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.to_owned();
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Ok(deno_core::ModuleSource {
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code: code.into_bytes().into_boxed_slice(),
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module_type: match module.kind {
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eszip::ModuleKind::JavaScript => deno_core::ModuleType::JavaScript,
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eszip::ModuleKind::Json => deno_core::ModuleType::Json,
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},
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module_url_specified: module_specifier.to_string(),
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module_url_found: module_specifier.to_string(),
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})
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}
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.boxed_local()
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}
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}
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fn metadata_to_flags(metadata: &Metadata) -> Flags {
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let permissions = metadata.permissions.clone();
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Flags {
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argv: metadata.argv.clone(),
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unstable: metadata.unstable,
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seed: metadata.seed,
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location: metadata.location.clone(),
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allow_env: permissions.allow_env,
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allow_hrtime: permissions.allow_hrtime,
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allow_net: permissions.allow_net,
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allow_ffi: permissions.allow_ffi,
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allow_read: permissions.allow_read,
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allow_run: permissions.allow_run,
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allow_write: permissions.allow_write,
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v8_flags: metadata.v8_flags.clone(),
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log_level: metadata.log_level,
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ca_stores: metadata.ca_stores.clone(),
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..Default::default()
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}
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}
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pub async fn run(
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eszip: eszip::EszipV2,
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metadata: Metadata,
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) -> Result<(), AnyError> {
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let flags = metadata_to_flags(&metadata);
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let main_module = &metadata.entrypoint;
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let ps = ProcState::build(flags).await?;
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let permissions = Permissions::from_options(&metadata.permissions)?;
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let blob_store = BlobStore::default();
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let broadcast_channel = InMemoryBroadcastChannel::default();
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let module_loader = Rc::new(EmbeddedModuleLoader {
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eszip,
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maybe_import_map_resolver: metadata.maybe_import_map.map(
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|(base, source)| {
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ImportMapResolver::new(Arc::new(
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parse_from_json(&base, &source).unwrap().import_map,
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))
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},
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),
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});
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let create_web_worker_cb = Arc::new(|_| {
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todo!("Workers are currently not supported in standalone binaries");
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});
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let web_worker_cb = Arc::new(|_| {
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todo!("Workers are currently not supported in standalone binaries");
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});
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// Keep in sync with `main.rs`.
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v8_set_flags(
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once("UNUSED_BUT_NECESSARY_ARG0".to_owned())
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.chain(metadata.v8_flags.iter().cloned())
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.collect::<Vec<_>>(),
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);
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let mut root_cert_store = ps.root_cert_store.clone();
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if let Some(cert) = metadata.ca_data {
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let reader = &mut BufReader::new(Cursor::new(cert));
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match rustls_pemfile::certs(reader) {
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Ok(certs) => {
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root_cert_store.add_parsable_certificates(&certs);
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}
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Err(e) => {
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return Err(anyhow!(
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"Unable to add pem file to certificate store: {}",
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e
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));
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}
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}
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}
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let options = WorkerOptions {
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bootstrap: BootstrapOptions {
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args: metadata.argv,
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cpu_count: std::thread::available_parallelism()
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.map(|p| p.get())
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.unwrap_or(1),
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debug_flag: metadata.log_level.map_or(false, |l| l == Level::Debug),
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enable_testing_features: false,
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location: metadata.location,
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no_color: !colors::use_color(),
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is_tty: colors::is_tty(),
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runtime_version: version::deno(),
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ts_version: version::TYPESCRIPT.to_string(),
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unstable: metadata.unstable,
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user_agent: version::get_user_agent(),
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},
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extensions: ops::cli_exts(ps.clone()),
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unsafely_ignore_certificate_errors: metadata
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.unsafely_ignore_certificate_errors,
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root_cert_store: Some(root_cert_store),
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seed: metadata.seed,
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source_map_getter: None,
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format_js_error_fn: Some(Arc::new(format_js_error)),
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create_web_worker_cb,
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web_worker_preload_module_cb: web_worker_cb.clone(),
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web_worker_pre_execute_module_cb: web_worker_cb,
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maybe_inspector_server: None,
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should_break_on_first_statement: false,
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module_loader,
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npm_resolver: None, // not currently supported
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get_error_class_fn: Some(&get_error_class_name),
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origin_storage_dir: None,
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blob_store,
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broadcast_channel,
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shared_array_buffer_store: None,
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compiled_wasm_module_store: None,
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stdio: Default::default(),
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};
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let mut worker = MainWorker::bootstrap_from_options(
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main_module.clone(),
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permissions,
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options,
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);
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worker.execute_main_module(main_module).await?;
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worker.dispatch_load_event(&located_script_name!())?;
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loop {
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worker.run_event_loop(false).await?;
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if !worker.dispatch_beforeunload_event(&located_script_name!())? {
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break;
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}
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}
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worker.dispatch_unload_event(&located_script_name!())?;
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std::process::exit(0);
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}
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fn get_error_class_name(e: &AnyError) -> &'static str {
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deno_runtime::errors::get_error_class_name(e).unwrap_or_else(|| {
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panic!(
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"Error '{}' contains boxed error of unsupported type:{}",
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e,
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e.chain()
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.map(|e| format!("\n {:?}", e))
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.collect::<String>()
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);
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})
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}
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