mirror of
https://github.com/denoland/deno.git
synced 2024-11-29 16:30:56 -05:00
209 lines
5.6 KiB
Rust
209 lines
5.6 KiB
Rust
// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use bytes::Bytes;
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use deno_config::glob::FilePatterns;
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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 sha2::Digest;
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use std::collections::HashSet;
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use std::ffi::OsStr;
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use std::fmt::Write as FmtWrite;
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use std::io::Write;
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use std::path::Path;
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use tar::Header;
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use crate::tools::registry::paths::PackagePath;
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use crate::util::import_map::ImportMapUnfurler;
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use super::diagnostics::PublishDiagnostic;
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use super::diagnostics::PublishDiagnosticsCollector;
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#[derive(Debug, Clone, PartialEq)]
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pub struct PublishableTarballFile {
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pub specifier: Url,
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pub size: usize,
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}
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#[derive(Debug, Clone, PartialEq)]
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pub struct PublishableTarball {
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pub files: Vec<PublishableTarballFile>,
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pub hash: String,
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pub bytes: Bytes,
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}
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pub fn create_gzipped_tarball(
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dir: &Path,
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source_cache: &dyn deno_graph::ParsedSourceStore,
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diagnostics_collector: &PublishDiagnosticsCollector,
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unfurler: &ImportMapUnfurler,
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file_patterns: Option<FilePatterns>,
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) -> Result<PublishableTarball, AnyError> {
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let mut tar = TarGzArchive::new();
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let mut files = vec![];
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let mut paths = HashSet::new();
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let mut iterator = walkdir::WalkDir::new(dir).follow_links(false).into_iter();
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while let Some(entry) = iterator.next() {
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let entry = entry?;
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let path = entry.path();
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let file_type = entry.file_type();
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let matches_pattern = file_patterns
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.as_ref()
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.map(|p| p.matches_path(path))
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.unwrap_or(true);
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if !matches_pattern
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|| path.file_name() == Some(OsStr::new(".git"))
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|| path.file_name() == Some(OsStr::new("node_modules"))
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{
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if file_type.is_dir() {
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iterator.skip_current_dir();
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}
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continue;
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}
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let Ok(specifier) = Url::from_file_path(path) else {
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diagnostics_collector
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.to_owned()
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.push(PublishDiagnostic::InvalidPath {
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path: path.to_path_buf(),
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message: "unable to convert path to url".to_string(),
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});
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continue;
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};
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if file_type.is_file() {
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let Ok(relative_path) = path.strip_prefix(dir) else {
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diagnostics_collector
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.to_owned()
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.push(PublishDiagnostic::InvalidPath {
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path: path.to_path_buf(),
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message: "path is not in publish directory".to_string(),
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});
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continue;
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};
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let path_str = relative_path.components().fold(
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"".to_string(),
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|mut path, component| {
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path.push('/');
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match component {
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std::path::Component::Normal(normal) => {
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path.push_str(&normal.to_string_lossy())
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}
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std::path::Component::CurDir => path.push('.'),
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std::path::Component::ParentDir => path.push_str(".."),
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_ => unreachable!(),
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}
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path
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},
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);
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match PackagePath::new(path_str.clone()) {
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Ok(package_path) => {
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if !paths.insert(package_path) {
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diagnostics_collector.to_owned().push(
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PublishDiagnostic::DuplicatePath {
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path: path.to_path_buf(),
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},
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);
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}
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}
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Err(err) => {
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diagnostics_collector.to_owned().push(
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PublishDiagnostic::InvalidPath {
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path: path.to_path_buf(),
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message: err.to_string(),
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},
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);
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}
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}
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let data = std::fs::read(path).with_context(|| {
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format!("Unable to read file '{}'", entry.path().display())
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})?;
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files.push(PublishableTarballFile {
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specifier: specifier.clone(),
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size: data.len(),
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});
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let content = match source_cache.get_parsed_source(&specifier) {
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Some(parsed_source) => {
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let mut reporter = |diagnostic| {
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diagnostics_collector
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.push(PublishDiagnostic::ImportMapUnfurl(diagnostic));
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};
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let content =
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unfurler.unfurl(&specifier, &parsed_source, &mut reporter);
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content.into_bytes()
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}
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None => data,
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};
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tar
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.add_file(format!(".{}", path_str), &content)
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.with_context(|| {
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format!("Unable to add file to tarball '{}'", entry.path().display())
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})?;
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} else if !file_type.is_dir() {
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diagnostics_collector.push(PublishDiagnostic::UnsupportedFileType {
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specifier,
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kind: if file_type.is_symlink() {
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"symlink".to_owned()
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} else {
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format!("{file_type:?}")
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},
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});
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}
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}
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let v = tar.finish().context("Unable to finish tarball")?;
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let hash_bytes: Vec<u8> = sha2::Sha256::digest(&v).iter().cloned().collect();
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let mut hash = "sha256-".to_string();
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for byte in hash_bytes {
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write!(&mut hash, "{:02x}", byte).unwrap();
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}
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Ok(PublishableTarball {
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files,
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hash,
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bytes: Bytes::from(v),
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})
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}
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struct TarGzArchive {
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builder: tar::Builder<Vec<u8>>,
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}
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impl TarGzArchive {
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pub fn new() -> Self {
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Self {
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builder: tar::Builder::new(Vec::new()),
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}
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}
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pub fn add_file(
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&mut self,
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path: String,
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data: &[u8],
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) -> Result<(), AnyError> {
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let mut header = Header::new_gnu();
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header.set_size(data.len() as u64);
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self.builder.append_data(&mut header, &path, data)?;
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Ok(())
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}
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fn finish(mut self) -> Result<Vec<u8>, AnyError> {
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self.builder.finish()?;
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let bytes = self.builder.into_inner()?;
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let mut gz_bytes = Vec::new();
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let mut encoder = flate2::write::GzEncoder::new(
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&mut gz_bytes,
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flate2::Compression::default(),
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);
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encoder.write_all(&bytes)?;
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encoder.finish()?;
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Ok(gz_bytes)
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}
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}
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