mirror of
https://github.com/denoland/deno.git
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8ae17026cb
This commit adds new "deno check" subcommand. Currently it is an alias for "deno cache" with the difference that remote modules don't emit TS diagnostics by default. Prints warning for "deno run" subcommand if "--check" flag is not present and there's no "--no-check" flag. Adds "DENO_FUTURE_CHECK" env variable that allows to opt into new behavior now.
364 lines
11 KiB
Rust
364 lines
11 KiB
Rust
// Copyright 2018-2022 the Deno authors. All rights reserved. MIT license.
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use crate::deno_dir::DenoDir;
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use crate::flags::CompileFlags;
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use crate::flags::DenoSubcommand;
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use crate::flags::Flags;
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use crate::flags::FutureTypeCheckMode;
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use crate::flags::RunFlags;
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use crate::flags::TypeCheckMode;
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use crate::fs_util;
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use crate::standalone::Metadata;
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use crate::standalone::MAGIC_TRAILER;
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use crate::ProcState;
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use deno_core::anyhow::bail;
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use deno_core::anyhow::Context;
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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::resolve_url_or_path;
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use deno_core::serde_json;
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use deno_core::url::Url;
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use deno_graph::ModuleSpecifier;
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use deno_runtime::deno_fetch::reqwest::Client;
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use deno_runtime::permissions::Permissions;
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use std::env;
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use std::fs::read;
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use std::fs::File;
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use std::io::Read;
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use std::io::Seek;
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use std::io::SeekFrom;
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use std::io::Write;
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use std::path::Path;
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use std::path::PathBuf;
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use super::installer::infer_name_from_url;
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pub async fn get_base_binary(
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deno_dir: &DenoDir,
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target: Option<String>,
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) -> Result<Vec<u8>, AnyError> {
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if target.is_none() {
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let path = std::env::current_exe()?;
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return Ok(tokio::fs::read(path).await?);
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}
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let target = target.unwrap_or_else(|| env!("TARGET").to_string());
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let binary_name = format!("deno-{}.zip", target);
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let binary_path_suffix = if crate::version::is_canary() {
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format!("canary/{}/{}", crate::version::GIT_COMMIT_HASH, binary_name)
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} else {
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format!("release/v{}/{}", env!("CARGO_PKG_VERSION"), binary_name)
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};
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let download_directory = deno_dir.root.join("dl");
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let binary_path = download_directory.join(&binary_path_suffix);
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if !binary_path.exists() {
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download_base_binary(&download_directory, &binary_path_suffix).await?;
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}
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let archive_data = tokio::fs::read(binary_path).await?;
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let base_binary_path =
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crate::tools::upgrade::unpack(archive_data, target.contains("windows"))?;
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let base_binary = tokio::fs::read(base_binary_path).await?;
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Ok(base_binary)
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}
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async fn download_base_binary(
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output_directory: &Path,
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binary_path_suffix: &str,
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) -> Result<(), AnyError> {
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let download_url = format!("https://dl.deno.land/{}", binary_path_suffix);
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let client_builder = Client::builder();
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let client = client_builder.build()?;
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println!("Checking {}", &download_url);
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let res = client.get(&download_url).send().await?;
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let binary_content = if res.status().is_success() {
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println!("Download has been found");
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res.bytes().await?.to_vec()
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} else {
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println!("Download could not be found, aborting");
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std::process::exit(1)
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};
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std::fs::create_dir_all(&output_directory)?;
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let output_path = output_directory.join(binary_path_suffix);
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std::fs::create_dir_all(&output_path.parent().unwrap())?;
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tokio::fs::write(output_path, binary_content).await?;
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Ok(())
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}
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/// This functions creates a standalone deno binary by appending a bundle
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/// and magic trailer to the currently executing binary.
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pub async fn create_standalone_binary(
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mut original_bin: Vec<u8>,
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eszip: eszip::EszipV2,
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entrypoint: ModuleSpecifier,
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flags: Flags,
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ps: ProcState,
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) -> Result<Vec<u8>, AnyError> {
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let mut eszip_archive = eszip.into_bytes();
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let ca_data = match &flags.ca_file {
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Some(ca_file) => Some(read(ca_file)?),
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None => None,
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};
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let maybe_import_map: Option<(Url, String)> = match flags
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.import_map_path
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.as_ref()
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{
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None => None,
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Some(import_map_url) => {
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let import_map_specifier = deno_core::resolve_url_or_path(import_map_url)
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.context(format!("Bad URL (\"{}\") for import map.", import_map_url))?;
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let file = ps
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.file_fetcher
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.fetch(&import_map_specifier, &mut Permissions::allow_all())
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.await
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.context(format!(
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"Unable to load '{}' import map",
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import_map_specifier
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))?;
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Some((import_map_specifier, file.source.to_string()))
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}
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};
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let metadata = Metadata {
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argv: flags.argv.clone(),
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unstable: flags.unstable,
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seed: flags.seed,
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location: flags.location.clone(),
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permissions: flags.permissions_options(),
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v8_flags: flags.v8_flags.clone(),
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unsafely_ignore_certificate_errors: flags
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.unsafely_ignore_certificate_errors
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.clone(),
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log_level: flags.log_level,
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ca_stores: flags.ca_stores,
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ca_data,
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entrypoint,
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maybe_import_map,
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};
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let mut metadata = serde_json::to_string(&metadata)?.as_bytes().to_vec();
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let eszip_pos = original_bin.len();
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let metadata_pos = eszip_pos + eszip_archive.len();
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let mut trailer = MAGIC_TRAILER.to_vec();
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trailer.write_all(&eszip_pos.to_be_bytes())?;
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trailer.write_all(&metadata_pos.to_be_bytes())?;
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let mut final_bin = Vec::with_capacity(
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original_bin.len() + eszip_archive.len() + trailer.len(),
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);
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final_bin.append(&mut original_bin);
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final_bin.append(&mut eszip_archive);
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final_bin.append(&mut metadata);
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final_bin.append(&mut trailer);
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Ok(final_bin)
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}
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/// This function writes out a final binary to specified path. If output path
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/// is not already standalone binary it will return error instead.
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pub async fn write_standalone_binary(
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output_path: PathBuf,
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final_bin: Vec<u8>,
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) -> Result<(), AnyError> {
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if output_path.exists() {
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// If the output is a directory, throw error
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if output_path.is_dir() {
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bail!(
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concat!(
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"Could not compile to file '{}' because a directory exists with ",
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"the same name. You can use the `--output <file-path>` flag to ",
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"provide an alternative name."
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),
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output_path.display()
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);
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}
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// Make sure we don't overwrite any file not created by Deno compiler.
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// Check for magic trailer in last 24 bytes.
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let mut has_trailer = false;
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let mut output_file = File::open(&output_path)?;
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// This seek may fail because the file is too small to possibly be
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// `deno compile` output.
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if output_file.seek(SeekFrom::End(-24)).is_ok() {
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let mut trailer = [0; 24];
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output_file.read_exact(&mut trailer)?;
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let (magic_trailer, _) = trailer.split_at(8);
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has_trailer = magic_trailer == MAGIC_TRAILER;
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}
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if !has_trailer {
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bail!(
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concat!(
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"Could not compile to file '{}' because the file already exists ",
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"and cannot be overwritten. Please delete the existing file or ",
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"use the `--output <file-path` flag to provide an alternative name."
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),
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output_path.display()
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);
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}
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// Remove file if it was indeed a deno compiled binary, to avoid corruption
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// (see https://github.com/denoland/deno/issues/10310)
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std::fs::remove_file(&output_path)?;
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} else {
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let output_base = &output_path.parent().unwrap();
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if output_base.exists() && output_base.is_file() {
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bail!(
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concat!(
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"Could not compile to file '{}' because its parent directory ",
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"is an existing file. You can use the `--output <file-path>` flag to ",
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"provide an alternative name.",
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),
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output_base.display(),
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);
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}
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tokio::fs::create_dir_all(output_base).await?;
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}
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tokio::fs::write(&output_path, final_bin).await?;
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#[cfg(unix)]
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{
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use std::os::unix::fs::PermissionsExt;
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let perms = std::fs::Permissions::from_mode(0o777);
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tokio::fs::set_permissions(output_path, perms).await?;
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}
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Ok(())
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}
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/// Transform the flags passed to `deno compile` to flags that would be used at
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/// runtime, as if `deno run` were used.
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/// - Flags that affect module resolution, loading, type checking, etc. aren't
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/// applicable at runtime so are set to their defaults like `false`.
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/// - Other flags are inherited.
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pub fn compile_to_runtime_flags(
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flags: &Flags,
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baked_args: Vec<String>,
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) -> Result<Flags, AnyError> {
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// IMPORTANT: Don't abbreviate any of this to `..flags` or
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// `..Default::default()`. That forces us to explicitly consider how any
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// change to `Flags` should be reflected here.
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Ok(Flags {
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argv: baked_args,
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subcommand: DenoSubcommand::Run(RunFlags {
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script: "placeholder".to_string(),
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}),
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allow_all: flags.allow_all,
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allow_env: flags.allow_env.clone(),
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allow_hrtime: flags.allow_hrtime,
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allow_net: flags.allow_net.clone(),
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allow_ffi: flags.allow_ffi.clone(),
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allow_read: flags.allow_read.clone(),
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allow_run: flags.allow_run.clone(),
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allow_write: flags.allow_write.clone(),
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ca_stores: flags.ca_stores.clone(),
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ca_file: flags.ca_file.clone(),
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cache_blocklist: vec![],
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cache_path: None,
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cached_only: false,
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config_path: None,
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coverage_dir: flags.coverage_dir.clone(),
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enable_testing_features: false,
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ignore: vec![],
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import_map_path: flags.import_map_path.clone(),
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inspect_brk: None,
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inspect: None,
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location: flags.location.clone(),
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lock_write: false,
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lock: None,
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log_level: flags.log_level,
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type_check_mode: TypeCheckMode::All,
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future_type_check_mode: FutureTypeCheckMode::None,
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has_check_flag: false,
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compat: flags.compat,
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unsafely_ignore_certificate_errors: flags
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.unsafely_ignore_certificate_errors
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.clone(),
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no_remote: false,
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no_prompt: flags.no_prompt,
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reload: false,
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repl: false,
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seed: flags.seed,
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unstable: flags.unstable,
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v8_flags: flags.v8_flags.clone(),
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version: false,
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watch: None,
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no_clear_screen: false,
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})
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}
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pub fn resolve_compile_executable_output_path(
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compile_flags: &CompileFlags,
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) -> Result<PathBuf, AnyError> {
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let module_specifier = resolve_url_or_path(&compile_flags.source_file)?;
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compile_flags.output.as_ref().and_then(|output| {
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if fs_util::path_has_trailing_slash(output) {
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let infer_file_name = infer_name_from_url(&module_specifier).map(PathBuf::from)?;
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Some(output.join(infer_file_name))
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} else {
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Some(output.to_path_buf())
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}
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}).or_else(|| {
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infer_name_from_url(&module_specifier).map(PathBuf::from)
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}).ok_or_else(|| generic_error(
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"An executable name was not provided. One could not be inferred from the URL. Aborting.",
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)).map(|output| {
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match &compile_flags.target {
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Some(target) => {
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if target.contains("windows") {
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output.with_extension("exe")
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} else {
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output
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}
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}
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None => {
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if cfg!(windows) && output.extension().unwrap_or_default() != "exe" {
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output.with_extension("exe")
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} else {
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output
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}
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}
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}
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})
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}
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#[cfg(test)]
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mod test {
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pub use super::*;
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#[test]
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fn resolve_compile_executable_output_path_target_linux() {
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let path = resolve_compile_executable_output_path(&CompileFlags {
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source_file: "mod.ts".to_string(),
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output: Some(PathBuf::from("./file")),
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args: Vec::new(),
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target: Some("x86_64-unknown-linux-gnu".to_string()),
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})
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.unwrap();
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// no extension, no matter what the operating system is
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// because the target was specified as linux
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// https://github.com/denoland/deno/issues/9667
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assert_eq!(path.file_name().unwrap(), "file");
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}
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#[test]
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fn resolve_compile_executable_output_path_target_windows() {
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let path = resolve_compile_executable_output_path(&CompileFlags {
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source_file: "mod.ts".to_string(),
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output: Some(PathBuf::from("./file")),
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args: Vec::new(),
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target: Some("x86_64-pc-windows-msvc".to_string()),
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})
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.unwrap();
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assert_eq!(path.file_name().unwrap(), "file.exe");
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}
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}
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