mirror of
https://github.com/denoland/deno.git
synced 2024-11-21 15:04:11 -05:00
bc8a0e6e68
As suggested in https://github.com/denoland/deno/pull/24355#discussion_r1657875422. I wasn't able to hide the mutex stuff as much as I'd like (ended up just adding an escape hatch `inner()` method that locks the inner mutex), because you can't return references to the inner fields through a mutex. This is mostly motivated by the frozen lockfile changes
366 lines
10 KiB
Rust
366 lines
10 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use std::collections::HashMap;
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use std::collections::HashSet;
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use std::sync::Arc;
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use deno_core::error::AnyError;
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use deno_lockfile::NpmPackageDependencyLockfileInfo;
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use deno_lockfile::NpmPackageLockfileInfo;
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use deno_npm::registry::NpmRegistryApi;
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use deno_npm::resolution::NpmPackagesPartitioned;
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use deno_npm::resolution::NpmResolutionError;
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use deno_npm::resolution::NpmResolutionSnapshot;
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use deno_npm::resolution::NpmResolutionSnapshotPendingResolver;
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use deno_npm::resolution::NpmResolutionSnapshotPendingResolverOptions;
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use deno_npm::resolution::PackageCacheFolderIdNotFoundError;
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use deno_npm::resolution::PackageNotFoundFromReferrerError;
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use deno_npm::resolution::PackageNvNotFoundError;
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use deno_npm::resolution::PackageReqNotFoundError;
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use deno_npm::resolution::ValidSerializedNpmResolutionSnapshot;
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use deno_npm::NpmPackageCacheFolderId;
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use deno_npm::NpmPackageId;
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use deno_npm::NpmResolutionPackage;
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use deno_npm::NpmSystemInfo;
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use deno_semver::package::PackageNv;
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use deno_semver::package::PackageReq;
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use deno_semver::VersionReq;
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use crate::args::CliLockfile;
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use crate::util::sync::SyncReadAsyncWriteLock;
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use super::CliNpmRegistryApi;
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pub struct AddPkgReqsResult {
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/// Results from adding the individual packages.
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///
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/// The indexes of the results correspond to the indexes of the provided
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/// package requirements.
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pub results: Vec<Result<PackageNv, NpmResolutionError>>,
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/// The final result of resolving and caching all the package requirements.
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pub dependencies_result: Result<(), AnyError>,
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}
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/// Handles updating and storing npm resolution in memory where the underlying
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/// snapshot can be updated concurrently. Additionally handles updating the lockfile
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/// based on changes to the resolution.
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///
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/// This does not interact with the file system.
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pub struct NpmResolution {
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api: Arc<CliNpmRegistryApi>,
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snapshot: SyncReadAsyncWriteLock<NpmResolutionSnapshot>,
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maybe_lockfile: Option<Arc<CliLockfile>>,
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}
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impl std::fmt::Debug for NpmResolution {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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let snapshot = self.snapshot.read();
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f.debug_struct("NpmResolution")
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.field("snapshot", &snapshot.as_valid_serialized().as_serialized())
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.finish()
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}
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}
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impl NpmResolution {
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pub fn from_serialized(
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api: Arc<CliNpmRegistryApi>,
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initial_snapshot: Option<ValidSerializedNpmResolutionSnapshot>,
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maybe_lockfile: Option<Arc<CliLockfile>>,
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) -> Self {
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let snapshot =
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NpmResolutionSnapshot::new(initial_snapshot.unwrap_or_default());
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Self::new(api, snapshot, maybe_lockfile)
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}
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pub fn new(
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api: Arc<CliNpmRegistryApi>,
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initial_snapshot: NpmResolutionSnapshot,
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maybe_lockfile: Option<Arc<CliLockfile>>,
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) -> Self {
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Self {
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api,
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snapshot: SyncReadAsyncWriteLock::new(initial_snapshot),
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maybe_lockfile,
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}
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}
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pub async fn add_package_reqs(
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&self,
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package_reqs: &[PackageReq],
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) -> AddPkgReqsResult {
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// only allow one thread in here at a time
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let snapshot_lock = self.snapshot.acquire().await;
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let result = add_package_reqs_to_snapshot(
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&self.api,
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package_reqs,
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self.maybe_lockfile.clone(),
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|| snapshot_lock.read().clone(),
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)
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.await;
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AddPkgReqsResult {
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results: result.results,
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dependencies_result: match result.dep_graph_result {
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Ok(snapshot) => {
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*snapshot_lock.write() = snapshot;
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Ok(())
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}
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Err(err) => Err(err.into()),
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},
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}
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}
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pub async fn set_package_reqs(
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&self,
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package_reqs: &[PackageReq],
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) -> Result<(), AnyError> {
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// only allow one thread in here at a time
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let snapshot_lock = self.snapshot.acquire().await;
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let reqs_set = package_reqs.iter().collect::<HashSet<_>>();
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let snapshot = add_package_reqs_to_snapshot(
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&self.api,
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package_reqs,
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self.maybe_lockfile.clone(),
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|| {
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let snapshot = snapshot_lock.read().clone();
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let has_removed_package = !snapshot
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.package_reqs()
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.keys()
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.all(|req| reqs_set.contains(req));
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// if any packages were removed, we need to completely recreate the npm resolution snapshot
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if has_removed_package {
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snapshot.into_empty()
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} else {
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snapshot
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}
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},
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)
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.await
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.into_result()?;
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*snapshot_lock.write() = snapshot;
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Ok(())
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}
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pub fn resolve_pkg_cache_folder_id_from_pkg_id(
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&self,
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id: &NpmPackageId,
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) -> Option<NpmPackageCacheFolderId> {
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self
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.snapshot
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.read()
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.package_from_id(id)
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.map(|p| p.get_package_cache_folder_id())
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}
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pub fn resolve_pkg_id_from_pkg_cache_folder_id(
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&self,
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id: &NpmPackageCacheFolderId,
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) -> Result<NpmPackageId, PackageCacheFolderIdNotFoundError> {
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self
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.snapshot
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.read()
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.resolve_pkg_from_pkg_cache_folder_id(id)
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.map(|pkg| pkg.id.clone())
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}
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pub fn resolve_package_from_package(
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&self,
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name: &str,
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referrer: &NpmPackageCacheFolderId,
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) -> Result<NpmResolutionPackage, Box<PackageNotFoundFromReferrerError>> {
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self
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.snapshot
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.read()
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.resolve_package_from_package(name, referrer)
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.cloned()
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}
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/// Resolve a node package from a deno module.
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pub fn resolve_pkg_id_from_pkg_req(
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&self,
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req: &PackageReq,
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) -> Result<NpmPackageId, PackageReqNotFoundError> {
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self
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.snapshot
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.read()
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.resolve_pkg_from_pkg_req(req)
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.map(|pkg| pkg.id.clone())
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}
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pub fn resolve_pkg_reqs_from_pkg_id(
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&self,
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id: &NpmPackageId,
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) -> Vec<PackageReq> {
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let snapshot = self.snapshot.read();
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let mut pkg_reqs = snapshot
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.package_reqs()
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.iter()
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.filter(|(_, nv)| *nv == &id.nv)
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.map(|(req, _)| req.clone())
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.collect::<Vec<_>>();
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pkg_reqs.sort(); // be deterministic
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pkg_reqs
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}
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pub fn resolve_pkg_id_from_deno_module(
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&self,
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id: &PackageNv,
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) -> Result<NpmPackageId, PackageNvNotFoundError> {
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self
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.snapshot
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.read()
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.resolve_package_from_deno_module(id)
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.map(|pkg| pkg.id.clone())
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}
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pub fn package_reqs(&self) -> HashMap<PackageReq, PackageNv> {
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self.snapshot.read().package_reqs().clone()
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}
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pub fn all_system_packages(
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&self,
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system_info: &NpmSystemInfo,
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) -> Vec<NpmResolutionPackage> {
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self.snapshot.read().all_system_packages(system_info)
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}
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pub fn all_system_packages_partitioned(
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&self,
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system_info: &NpmSystemInfo,
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) -> NpmPackagesPartitioned {
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self
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.snapshot
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.read()
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.all_system_packages_partitioned(system_info)
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}
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pub fn snapshot(&self) -> NpmResolutionSnapshot {
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self.snapshot.read().clone()
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}
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pub fn serialized_valid_snapshot(
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&self,
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) -> ValidSerializedNpmResolutionSnapshot {
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self.snapshot.read().as_valid_serialized()
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}
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pub fn serialized_valid_snapshot_for_system(
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&self,
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system_info: &NpmSystemInfo,
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) -> ValidSerializedNpmResolutionSnapshot {
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self
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.snapshot
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.read()
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.as_valid_serialized_for_system(system_info)
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}
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}
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async fn add_package_reqs_to_snapshot(
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api: &CliNpmRegistryApi,
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package_reqs: &[PackageReq],
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maybe_lockfile: Option<Arc<CliLockfile>>,
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get_new_snapshot: impl Fn() -> NpmResolutionSnapshot,
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) -> deno_npm::resolution::AddPkgReqsResult {
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let snapshot = get_new_snapshot();
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if package_reqs
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.iter()
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.all(|req| snapshot.package_reqs().contains_key(req))
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{
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log::debug!("Snapshot already up to date. Skipping npm resolution.");
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return deno_npm::resolution::AddPkgReqsResult {
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results: package_reqs
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.iter()
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.map(|req| Ok(snapshot.package_reqs().get(req).unwrap().clone()))
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.collect(),
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dep_graph_result: Ok(snapshot),
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};
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}
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log::debug!(
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/* this string is used in tests */
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"Running npm resolution."
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);
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let pending_resolver = get_npm_pending_resolver(api);
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let result = pending_resolver.add_pkg_reqs(snapshot, package_reqs).await;
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api.clear_memory_cache();
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let result = match &result.dep_graph_result {
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Err(NpmResolutionError::Resolution(err)) if api.mark_force_reload() => {
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log::debug!("{err:#}");
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log::debug!("npm resolution failed. Trying again...");
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// try again
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let snapshot = get_new_snapshot();
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let result = pending_resolver.add_pkg_reqs(snapshot, package_reqs).await;
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api.clear_memory_cache();
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result
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}
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_ => result,
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};
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if let Ok(snapshot) = &result.dep_graph_result {
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if let Some(lockfile) = maybe_lockfile {
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populate_lockfile_from_snapshot(&lockfile, snapshot);
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}
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}
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result
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}
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fn get_npm_pending_resolver(
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api: &CliNpmRegistryApi,
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) -> NpmResolutionSnapshotPendingResolver<CliNpmRegistryApi> {
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NpmResolutionSnapshotPendingResolver::new(
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NpmResolutionSnapshotPendingResolverOptions {
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api,
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// WARNING: When bumping this version, check if anything needs to be
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// updated in the `setNodeOnlyGlobalNames` call in 99_main_compiler.js
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types_node_version_req: Some(
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VersionReq::parse_from_npm("18.0.0 - 18.16.19").unwrap(),
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),
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},
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)
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}
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fn populate_lockfile_from_snapshot(
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lockfile: &CliLockfile,
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snapshot: &NpmResolutionSnapshot,
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) {
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let mut lockfile = lockfile.lock();
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for (package_req, nv) in snapshot.package_reqs() {
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lockfile.insert_package_specifier(
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format!("npm:{}", package_req),
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format!(
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"npm:{}",
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snapshot
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.resolve_package_from_deno_module(nv)
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.unwrap()
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.id
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.as_serialized()
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),
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);
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}
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for package in snapshot.all_packages_for_every_system() {
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lockfile.insert_npm_package(npm_package_to_lockfile_info(package));
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}
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}
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fn npm_package_to_lockfile_info(
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pkg: &NpmResolutionPackage,
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) -> NpmPackageLockfileInfo {
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let dependencies = pkg
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.dependencies
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.iter()
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.map(|(name, id)| NpmPackageDependencyLockfileInfo {
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name: name.clone(),
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id: id.as_serialized(),
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})
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.collect();
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NpmPackageLockfileInfo {
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serialized_id: pkg.id.as_serialized(),
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integrity: pkg.dist.integrity().for_lockfile(),
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dependencies,
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}
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}
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