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136dce67ce
1. Breaks up functionality within `ProcState` into several other structs to break out the responsibilities (`ProcState` is only a data struct now). 2. Moves towards being able to inject dependencies more easily and have functionality only require what it needs. 3. Exposes `Arc<T>` around the "service structs" instead of it being embedded within them. The idea behind embedding them was to reduce the verbosity of needing to pass around `Arc<...>`, but I don't think it was exactly working and as we move more of these structs to be more injectable I don't think the extra verbosity will be a big deal.
494 lines
15 KiB
Rust
494 lines
15 KiB
Rust
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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//! Code for local node_modules resolution.
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use std::borrow::Cow;
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use std::collections::HashSet;
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use std::collections::VecDeque;
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use std::fs;
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use std::path::Path;
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use std::path::PathBuf;
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use std::sync::Arc;
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use crate::util::fs::symlink_dir;
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use crate::util::fs::LaxSingleProcessFsFlag;
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use crate::util::progress_bar::ProgressBar;
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use crate::util::progress_bar::ProgressMessagePrompt;
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use async_trait::async_trait;
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use deno_ast::ModuleSpecifier;
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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::AnyError;
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use deno_core::url::Url;
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use deno_npm::resolution::NpmResolutionSnapshot;
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use deno_npm::NpmPackageCacheFolderId;
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use deno_npm::NpmPackageId;
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use deno_runtime::deno_core::futures;
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use deno_runtime::deno_node::NodePermissions;
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use deno_runtime::deno_node::NodeResolutionMode;
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use deno_runtime::deno_node::PackageJson;
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use tokio::task::JoinHandle;
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use crate::npm::cache::mixed_case_package_name_encode;
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use crate::npm::cache::should_sync_download;
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use crate::npm::resolution::NpmResolution;
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use crate::npm::NpmCache;
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use crate::util::fs::copy_dir_recursive;
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use crate::util::fs::hard_link_dir_recursive;
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use super::common::ensure_registry_read_permission;
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use super::common::types_package_name;
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use super::common::NpmPackageFsResolver;
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/// Resolver that creates a local node_modules directory
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/// and resolves packages from it.
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#[derive(Debug)]
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pub struct LocalNpmPackageResolver {
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cache: Arc<NpmCache>,
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progress_bar: ProgressBar,
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resolution: Arc<NpmResolution>,
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registry_url: Url,
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root_node_modules_path: PathBuf,
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root_node_modules_url: Url,
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}
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impl LocalNpmPackageResolver {
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pub fn new(
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cache: Arc<NpmCache>,
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progress_bar: ProgressBar,
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registry_url: Url,
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node_modules_folder: PathBuf,
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resolution: Arc<NpmResolution>,
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) -> Self {
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Self {
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cache,
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progress_bar,
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resolution,
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registry_url,
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root_node_modules_url: Url::from_directory_path(&node_modules_folder)
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.unwrap(),
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root_node_modules_path: node_modules_folder,
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}
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}
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fn resolve_package_root(&self, path: &Path) -> PathBuf {
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let mut last_found = path;
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loop {
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let parent = last_found.parent().unwrap();
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if parent.file_name().unwrap() == "node_modules" {
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return last_found.to_path_buf();
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} else {
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last_found = parent;
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}
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}
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}
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fn resolve_folder_for_specifier(
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&self,
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specifier: &ModuleSpecifier,
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) -> Result<PathBuf, AnyError> {
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match self.maybe_resolve_folder_for_specifier(specifier) {
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Some(path) => Ok(path),
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None => bail!("could not find npm package for '{}'", specifier),
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}
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}
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fn maybe_resolve_folder_for_specifier(
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&self,
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specifier: &ModuleSpecifier,
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) -> Option<PathBuf> {
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let relative_url = self.root_node_modules_url.make_relative(specifier)?;
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if relative_url.starts_with("../") {
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return None;
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}
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// it's within the directory, so use it
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specifier.to_file_path().ok()
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}
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}
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#[async_trait]
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impl NpmPackageFsResolver for LocalNpmPackageResolver {
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fn root_dir_url(&self) -> &Url {
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&self.root_node_modules_url
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}
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fn node_modules_path(&self) -> Option<PathBuf> {
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Some(self.root_node_modules_path.clone())
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}
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fn package_folder(&self, id: &NpmPackageId) -> Result<PathBuf, AnyError> {
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match self.resolution.resolve_package_cache_folder_id_from_id(id) {
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// package is stored at:
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// node_modules/.deno/<package_cache_folder_id_folder_name>/node_modules/<package_name>
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Some(cache_folder_id) => Ok(
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self
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.root_node_modules_path
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.join(".deno")
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.join(get_package_folder_id_folder_name(&cache_folder_id))
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.join("node_modules")
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.join(&cache_folder_id.nv.name),
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),
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None => bail!(
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"Could not find package information for '{}'",
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id.as_serialized()
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),
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}
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}
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fn resolve_package_folder_from_package(
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&self,
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name: &str,
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referrer: &ModuleSpecifier,
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mode: NodeResolutionMode,
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) -> Result<PathBuf, AnyError> {
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let local_path = self.resolve_folder_for_specifier(referrer)?;
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let package_root_path = self.resolve_package_root(&local_path);
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let mut current_folder = package_root_path.as_path();
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loop {
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current_folder = get_next_node_modules_ancestor(current_folder);
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let sub_dir = join_package_name(current_folder, name);
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if sub_dir.is_dir() {
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// if doing types resolution, only resolve the package if it specifies a types property
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if mode.is_types() && !name.starts_with("@types/") {
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let package_json = PackageJson::load_skip_read_permission::<
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deno_runtime::deno_node::RealFs,
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>(sub_dir.join("package.json"))?;
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if package_json.types.is_some() {
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return Ok(sub_dir);
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}
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} else {
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return Ok(sub_dir);
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}
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}
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// if doing type resolution, check for the existence of a @types package
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if mode.is_types() && !name.starts_with("@types/") {
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let sub_dir =
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join_package_name(current_folder, &types_package_name(name));
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if sub_dir.is_dir() {
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return Ok(sub_dir);
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}
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}
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if current_folder == self.root_node_modules_path {
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bail!(
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"could not find package '{}' from referrer '{}'.",
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name,
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referrer
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);
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}
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}
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}
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fn resolve_package_folder_from_specifier(
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&self,
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specifier: &ModuleSpecifier,
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) -> Result<PathBuf, AnyError> {
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let local_path = self.resolve_folder_for_specifier(specifier)?;
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let package_root_path = self.resolve_package_root(&local_path);
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Ok(package_root_path)
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}
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async fn cache_packages(&self) -> Result<(), AnyError> {
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sync_resolution_with_fs(
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&self.resolution.snapshot(),
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&self.cache,
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&self.progress_bar,
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&self.registry_url,
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&self.root_node_modules_path,
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)
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.await
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}
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fn ensure_read_permission(
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&self,
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permissions: &mut dyn NodePermissions,
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path: &Path,
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) -> Result<(), AnyError> {
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ensure_registry_read_permission(
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permissions,
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&self.root_node_modules_path,
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path,
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)
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}
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}
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/// Creates a pnpm style folder structure.
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async fn sync_resolution_with_fs(
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snapshot: &NpmResolutionSnapshot,
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cache: &Arc<NpmCache>,
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progress_bar: &ProgressBar,
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registry_url: &Url,
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root_node_modules_dir_path: &Path,
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) -> Result<(), AnyError> {
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if snapshot.is_empty() {
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return Ok(()); // don't create the directory
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}
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let deno_local_registry_dir = root_node_modules_dir_path.join(".deno");
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fs::create_dir_all(&deno_local_registry_dir).with_context(|| {
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format!("Creating '{}'", deno_local_registry_dir.display())
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})?;
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let single_process_lock = LaxSingleProcessFsFlag::lock(
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deno_local_registry_dir.join(".deno.lock"),
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// similar message used by cargo build
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"waiting for file lock on node_modules directory",
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)
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.await;
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let pb_clear_guard = progress_bar.clear_guard(); // prevent flickering
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// 1. Write all the packages out the .deno directory.
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//
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// Copy (hardlink in future) <global_registry_cache>/<package_id>/ to
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// node_modules/.deno/<package_folder_id_folder_name>/node_modules/<package_name>
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let sync_download = should_sync_download();
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let mut package_partitions = snapshot.all_packages_partitioned();
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if sync_download {
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// we're running the tests not with --quiet
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// and we want the output to be deterministic
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package_partitions
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.packages
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.sort_by(|a, b| a.pkg_id.cmp(&b.pkg_id));
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}
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let mut handles: Vec<JoinHandle<Result<(), AnyError>>> =
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Vec::with_capacity(package_partitions.packages.len());
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for package in &package_partitions.packages {
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let folder_name =
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get_package_folder_id_folder_name(&package.get_package_cache_folder_id());
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let folder_path = deno_local_registry_dir.join(&folder_name);
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let initialized_file = folder_path.join(".initialized");
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if !cache
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.cache_setting()
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.should_use_for_npm_package(&package.pkg_id.nv.name)
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|| !initialized_file.exists()
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{
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let pb = progress_bar.clone();
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let cache = cache.clone();
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let registry_url = registry_url.clone();
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let package = package.clone();
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let handle = tokio::task::spawn(async move {
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cache
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.ensure_package(&package.pkg_id.nv, &package.dist, ®istry_url)
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.await?;
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let pb_guard = pb.update_with_prompt(
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ProgressMessagePrompt::Initialize,
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&package.pkg_id.nv.to_string(),
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);
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let sub_node_modules = folder_path.join("node_modules");
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let package_path =
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join_package_name(&sub_node_modules, &package.pkg_id.nv.name);
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fs::create_dir_all(&package_path)
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.with_context(|| format!("Creating '{}'", folder_path.display()))?;
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let cache_folder = cache.package_folder_for_name_and_version(
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&package.pkg_id.nv,
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®istry_url,
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);
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// for now copy, but in the future consider hard linking
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copy_dir_recursive(&cache_folder, &package_path)?;
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// write out a file that indicates this folder has been initialized
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fs::write(initialized_file, "")?;
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// finally stop showing the progress bar
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drop(pb_guard); // explicit for clarity
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Ok(())
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});
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if sync_download {
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handle.await??;
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} else {
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handles.push(handle);
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}
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}
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}
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let results = futures::future::join_all(handles).await;
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for result in results {
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result??; // surface the first error
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}
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// 2. Create any "copy" packages, which are used for peer dependencies
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for package in &package_partitions.copy_packages {
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let package_cache_folder_id = package.get_package_cache_folder_id();
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let destination_path = deno_local_registry_dir
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.join(get_package_folder_id_folder_name(&package_cache_folder_id));
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let initialized_file = destination_path.join(".initialized");
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if !initialized_file.exists() {
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let sub_node_modules = destination_path.join("node_modules");
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let package_path =
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join_package_name(&sub_node_modules, &package.pkg_id.nv.name);
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fs::create_dir_all(&package_path).with_context(|| {
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format!("Creating '{}'", destination_path.display())
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})?;
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let source_path = join_package_name(
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&deno_local_registry_dir
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.join(get_package_folder_id_folder_name(
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&package_cache_folder_id.with_no_count(),
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))
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.join("node_modules"),
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&package.pkg_id.nv.name,
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);
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hard_link_dir_recursive(&source_path, &package_path)?;
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// write out a file that indicates this folder has been initialized
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fs::write(initialized_file, "")?;
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}
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}
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let all_packages = package_partitions.into_all();
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// 3. Symlink all the dependencies into the .deno directory.
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//
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// Symlink node_modules/.deno/<package_id>/node_modules/<dep_name> to
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// node_modules/.deno/<dep_id>/node_modules/<dep_package_name>
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for package in &all_packages {
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let sub_node_modules = deno_local_registry_dir
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.join(get_package_folder_id_folder_name(
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&package.get_package_cache_folder_id(),
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))
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.join("node_modules");
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for (name, dep_id) in &package.dependencies {
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let dep_cache_folder_id = snapshot
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.package_from_id(dep_id)
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.unwrap()
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.get_package_cache_folder_id();
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let dep_folder_name =
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get_package_folder_id_folder_name(&dep_cache_folder_id);
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let dep_folder_path = join_package_name(
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&deno_local_registry_dir
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.join(dep_folder_name)
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.join("node_modules"),
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&dep_id.nv.name,
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);
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symlink_package_dir(
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&dep_folder_path,
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&join_package_name(&sub_node_modules, name),
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)?;
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}
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}
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// 4. Create all the packages in the node_modules folder, which are symlinks.
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//
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// Symlink node_modules/<package_name> to
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// node_modules/.deno/<package_id>/node_modules/<package_name>
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let mut found_names = HashSet::new();
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let mut pending_packages = VecDeque::new();
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pending_packages.extend(snapshot.top_level_packages().map(|id| (id, true)));
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while let Some((id, is_top_level)) = pending_packages.pop_front() {
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let root_folder_name = if found_names.insert(id.nv.name.clone()) {
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id.nv.name.clone()
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} else if is_top_level {
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id.nv.to_string()
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} else {
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continue; // skip, already handled
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};
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let package = snapshot.package_from_id(id).unwrap();
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let local_registry_package_path = join_package_name(
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&deno_local_registry_dir
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.join(get_package_folder_id_folder_name(
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&package.get_package_cache_folder_id(),
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))
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.join("node_modules"),
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&id.nv.name,
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);
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symlink_package_dir(
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&local_registry_package_path,
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&join_package_name(root_node_modules_dir_path, &root_folder_name),
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)?;
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for id in package.dependencies.values() {
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pending_packages.push_back((id, false));
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}
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}
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drop(single_process_lock);
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drop(pb_clear_guard);
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Ok(())
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}
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fn get_package_folder_id_folder_name(
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folder_id: &NpmPackageCacheFolderId,
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) -> String {
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let copy_str = if folder_id.copy_index == 0 {
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"".to_string()
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} else {
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format!("_{}", folder_id.copy_index)
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};
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let nv = &folder_id.nv;
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let name = if nv.name.to_lowercase() == nv.name {
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Cow::Borrowed(&nv.name)
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} else {
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Cow::Owned(format!("_{}", mixed_case_package_name_encode(&nv.name)))
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};
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format!("{}@{}{}", name, nv.version, copy_str).replace('/', "+")
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}
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fn symlink_package_dir(
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old_path: &Path,
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new_path: &Path,
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) -> Result<(), AnyError> {
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let new_parent = new_path.parent().unwrap();
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if new_parent.file_name().unwrap() != "node_modules" {
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// create the parent folder that will contain the symlink
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fs::create_dir_all(new_parent)
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.with_context(|| format!("Creating '{}'", new_parent.display()))?;
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}
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// need to delete the previous symlink before creating a new one
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let _ignore = fs::remove_dir_all(new_path);
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#[cfg(windows)]
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return junction_or_symlink_dir(old_path, new_path);
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#[cfg(not(windows))]
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symlink_dir(old_path, new_path)
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}
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#[cfg(windows)]
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fn junction_or_symlink_dir(
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old_path: &Path,
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new_path: &Path,
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) -> Result<(), AnyError> {
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// Use junctions because they're supported on ntfs file systems without
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// needing to elevate privileges on Windows
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match junction::create(old_path, new_path) {
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Ok(()) => Ok(()),
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Err(junction_err) => {
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if cfg!(debug) {
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// When running the tests, junctions should be created, but if not then
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// surface this error.
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log::warn!("Error creating junction. {:#}", junction_err);
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}
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match symlink_dir(old_path, new_path) {
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Ok(()) => Ok(()),
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Err(symlink_err) => bail!(
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concat!(
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"Failed creating junction and fallback symlink in node_modules folder.\n\n",
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"{:#}\n\n{:#}",
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),
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junction_err,
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symlink_err,
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),
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}
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}
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}
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}
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fn join_package_name(path: &Path, package_name: &str) -> PathBuf {
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let mut path = path.to_path_buf();
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// ensure backslashes are used on windows
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for part in package_name.split('/') {
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path = path.join(part);
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}
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path
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}
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|
|
fn get_next_node_modules_ancestor(mut path: &Path) -> &Path {
|
|
loop {
|
|
path = path.parent().unwrap();
|
|
let file_name = path.file_name().unwrap().to_string_lossy();
|
|
if file_name == "node_modules" {
|
|
return path;
|
|
}
|
|
}
|
|
}
|