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https://github.com/denoland/deno.git
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13c53d9727
Fixes https://github.com/denoland/deno/issues/25862. npm only makes bin entries executable if they get linked into `.bin`, as we did before this PR. So this PR actually deviates from npm, because it's the only reasonable way to fix this that I can think of. --- The reason this was broken in moment is the following: Moment has dependencies on two typescript versions: 1.8 and 3.1 If you have two packages with conflicting bin entries (i.e. two typescript versions which both have a bin entry `tsc`), in npm it is non-deterministic and undefined which one will end up in `.bin`. npm, due to implementation differences, chooses to put typescript 1.8 into the `.bin` directory, and so `node_modules/typescript/bin/tsc` ends up getting marked executable. We, however, choose typescript 3.2, and so we end up making `node_modules/typescript3/bin/tsc` executable. As part of its tests, moment executes `node_modules/typescript/bin/tsc`. Because we didn't make it executable, this fails. Since the conflict resolution is undefined in npm, instead of trying to match it, I think it makes more sense to just make bin entries executable even if they aren't chosen in the case of a conflict.
363 lines
9.7 KiB
Rust
363 lines
9.7 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use crate::npm::managed::NpmResolutionPackage;
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use deno_core::anyhow::Context;
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use deno_core::error::AnyError;
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use deno_npm::resolution::NpmResolutionSnapshot;
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use deno_npm::NpmPackageId;
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use std::collections::HashMap;
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use std::collections::HashSet;
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use std::collections::VecDeque;
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use std::path::Path;
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use std::path::PathBuf;
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#[derive(Default)]
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pub struct BinEntries<'a> {
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/// Packages that have colliding bin names
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collisions: HashSet<&'a NpmPackageId>,
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seen_names: HashMap<&'a str, &'a NpmPackageId>,
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/// The bin entries
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entries: Vec<(&'a NpmResolutionPackage, PathBuf)>,
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}
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/// Returns the name of the default binary for the given package.
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/// This is the package name without the organization (`@org/`), if any.
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fn default_bin_name(package: &NpmResolutionPackage) -> &str {
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package
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.id
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.nv
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.name
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.rsplit_once('/')
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.map_or(package.id.nv.name.as_str(), |(_, name)| name)
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}
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impl<'a> BinEntries<'a> {
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pub fn new() -> Self {
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Self::default()
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}
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/// Add a new bin entry (package with a bin field)
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pub fn add(
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&mut self,
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package: &'a NpmResolutionPackage,
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package_path: PathBuf,
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) {
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// check for a new collision, if we haven't already
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// found one
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match package.bin.as_ref().unwrap() {
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deno_npm::registry::NpmPackageVersionBinEntry::String(_) => {
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let bin_name = default_bin_name(package);
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if let Some(other) = self.seen_names.insert(bin_name, &package.id) {
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self.collisions.insert(&package.id);
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self.collisions.insert(other);
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}
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}
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deno_npm::registry::NpmPackageVersionBinEntry::Map(entries) => {
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for name in entries.keys() {
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if let Some(other) = self.seen_names.insert(name, &package.id) {
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self.collisions.insert(&package.id);
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self.collisions.insert(other);
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}
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}
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}
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}
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self.entries.push((package, package_path));
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}
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fn for_each_entry(
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&mut self,
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snapshot: &NpmResolutionSnapshot,
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mut already_seen: impl FnMut(
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&Path,
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&str, // bin script
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) -> Result<(), AnyError>,
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mut new: impl FnMut(
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&NpmResolutionPackage,
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&Path,
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&str, // bin name
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&str, // bin script
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) -> Result<(), AnyError>,
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) -> Result<(), AnyError> {
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if !self.collisions.is_empty() {
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// walking the dependency tree to find out the depth of each package
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// is sort of expensive, so we only do it if there's a collision
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sort_by_depth(snapshot, &mut self.entries, &mut self.collisions);
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}
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let mut seen = HashSet::new();
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for (package, package_path) in &self.entries {
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if let Some(bin_entries) = &package.bin {
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match bin_entries {
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deno_npm::registry::NpmPackageVersionBinEntry::String(script) => {
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let name = default_bin_name(package);
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if !seen.insert(name) {
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already_seen(package_path, script)?;
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// we already set up a bin entry with this name
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continue;
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}
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new(package, package_path, name, script)?;
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}
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deno_npm::registry::NpmPackageVersionBinEntry::Map(entries) => {
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for (name, script) in entries {
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if !seen.insert(name) {
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already_seen(package_path, script)?;
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// we already set up a bin entry with this name
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continue;
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}
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new(package, package_path, name, script)?;
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}
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}
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}
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}
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}
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Ok(())
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}
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/// Collect the bin entries into a vec of (name, script path)
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pub fn into_bin_files(
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mut self,
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snapshot: &NpmResolutionSnapshot,
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) -> Vec<(String, PathBuf)> {
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let mut bins = Vec::new();
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self
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.for_each_entry(
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snapshot,
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|_, _| Ok(()),
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|_, package_path, name, script| {
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bins.push((name.to_string(), package_path.join(script)));
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Ok(())
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},
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)
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.unwrap();
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bins
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}
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/// Finish setting up the bin entries, writing the necessary files
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/// to disk.
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pub fn finish(
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mut self,
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snapshot: &NpmResolutionSnapshot,
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bin_node_modules_dir_path: &Path,
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) -> Result<(), AnyError> {
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if !self.entries.is_empty() && !bin_node_modules_dir_path.exists() {
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std::fs::create_dir_all(bin_node_modules_dir_path).with_context(
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|| format!("Creating '{}'", bin_node_modules_dir_path.display()),
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)?;
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}
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self.for_each_entry(
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snapshot,
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|_package_path, _script| {
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#[cfg(unix)]
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{
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let path = _package_path.join(_script);
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make_executable_if_exists(&path)?;
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}
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Ok(())
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},
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|package, package_path, name, script| {
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set_up_bin_entry(
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package,
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name,
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script,
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package_path,
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bin_node_modules_dir_path,
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)
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},
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)?;
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Ok(())
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}
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}
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// walk the dependency tree to find out the depth of each package
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// that has a bin entry, then sort them by depth
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fn sort_by_depth(
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snapshot: &NpmResolutionSnapshot,
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bin_entries: &mut [(&NpmResolutionPackage, PathBuf)],
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collisions: &mut HashSet<&NpmPackageId>,
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) {
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enum Entry<'a> {
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Pkg(&'a NpmPackageId),
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IncreaseDepth,
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}
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let mut seen = HashSet::new();
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let mut depths: HashMap<&NpmPackageId, u64> =
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HashMap::with_capacity(collisions.len());
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let mut queue = VecDeque::new();
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queue.extend(snapshot.top_level_packages().map(Entry::Pkg));
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seen.extend(snapshot.top_level_packages());
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queue.push_back(Entry::IncreaseDepth);
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let mut current_depth = 0u64;
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while let Some(entry) = queue.pop_front() {
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if collisions.is_empty() {
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break;
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}
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let id = match entry {
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Entry::Pkg(id) => id,
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Entry::IncreaseDepth => {
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current_depth += 1;
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if queue.is_empty() {
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break;
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}
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queue.push_back(Entry::IncreaseDepth);
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continue;
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}
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};
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if let Some(package) = snapshot.package_from_id(id) {
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if collisions.remove(&package.id) {
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depths.insert(&package.id, current_depth);
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}
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for dep in package.dependencies.values() {
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if seen.insert(dep) {
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queue.push_back(Entry::Pkg(dep));
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}
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}
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}
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}
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bin_entries.sort_by(|(a, _), (b, _)| {
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depths
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.get(&a.id)
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.unwrap_or(&u64::MAX)
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.cmp(depths.get(&b.id).unwrap_or(&u64::MAX))
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.then_with(|| a.id.nv.cmp(&b.id.nv).reverse())
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});
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}
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pub fn set_up_bin_entry(
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package: &NpmResolutionPackage,
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bin_name: &str,
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#[allow(unused_variables)] bin_script: &str,
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#[allow(unused_variables)] package_path: &Path,
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bin_node_modules_dir_path: &Path,
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) -> Result<(), AnyError> {
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#[cfg(windows)]
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{
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set_up_bin_shim(package, bin_name, bin_node_modules_dir_path)?;
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}
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#[cfg(unix)]
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{
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symlink_bin_entry(
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package,
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bin_name,
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bin_script,
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package_path,
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bin_node_modules_dir_path,
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)?;
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}
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Ok(())
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}
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#[cfg(windows)]
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fn set_up_bin_shim(
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package: &NpmResolutionPackage,
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bin_name: &str,
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bin_node_modules_dir_path: &Path,
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) -> Result<(), AnyError> {
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use std::fs;
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let mut cmd_shim = bin_node_modules_dir_path.join(bin_name);
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cmd_shim.set_extension("cmd");
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let shim = format!("@deno run -A npm:{}/{bin_name} %*", package.id.nv);
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fs::write(&cmd_shim, shim).with_context(|| {
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format!("Can't set up '{}' bin at {}", bin_name, cmd_shim.display())
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})?;
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Ok(())
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}
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#[cfg(unix)]
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/// Make the file at `path` executable if it exists.
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/// Returns `true` if the file exists, `false` otherwise.
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fn make_executable_if_exists(path: &Path) -> Result<bool, AnyError> {
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use std::io;
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use std::os::unix::fs::PermissionsExt;
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let mut perms = match std::fs::metadata(path) {
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Ok(metadata) => metadata.permissions(),
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Err(err) => {
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if err.kind() == io::ErrorKind::NotFound {
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return Ok(false);
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}
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return Err(err.into());
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}
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};
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if perms.mode() & 0o111 == 0 {
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// if the original file is not executable, make it executable
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perms.set_mode(perms.mode() | 0o111);
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std::fs::set_permissions(path, perms).with_context(|| {
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format!("Setting permissions on '{}'", path.display())
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})?;
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}
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Ok(true)
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}
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#[cfg(unix)]
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fn symlink_bin_entry(
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_package: &NpmResolutionPackage,
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bin_name: &str,
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bin_script: &str,
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package_path: &Path,
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bin_node_modules_dir_path: &Path,
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) -> Result<(), AnyError> {
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use std::io;
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use std::os::unix::fs::symlink;
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let link = bin_node_modules_dir_path.join(bin_name);
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let original = package_path.join(bin_script);
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let found = make_executable_if_exists(&original).with_context(|| {
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format!("Can't set up '{}' bin at {}", bin_name, original.display())
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})?;
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if !found {
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log::warn!(
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"{} Trying to set up '{}' bin for \"{}\", but the entry point \"{}\" doesn't exist.",
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deno_terminal::colors::yellow("Warning"),
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bin_name,
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package_path.display(),
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original.display()
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);
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return Ok(());
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}
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let original_relative =
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crate::util::path::relative_path(bin_node_modules_dir_path, &original)
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.unwrap_or(original);
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if let Err(err) = symlink(&original_relative, &link) {
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if err.kind() == io::ErrorKind::AlreadyExists {
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// remove and retry
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std::fs::remove_file(&link).with_context(|| {
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format!(
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"Failed to remove existing bin symlink at {}",
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link.display()
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)
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})?;
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symlink(&original_relative, &link).with_context(|| {
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format!(
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"Can't set up '{}' bin at {}",
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bin_name,
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original_relative.display()
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)
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})?;
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return Ok(());
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}
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return Err(err).with_context(|| {
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format!(
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"Can't set up '{}' bin at {}",
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bin_name,
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original_relative.display()
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)
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});
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}
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Ok(())
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}
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