mirror of
https://github.com/uqbar-dao/nectar.git
synced 2024-12-20 23:21:36 +03:00
210 lines
7.0 KiB
Rust
210 lines
7.0 KiB
Rust
use std::process::Command;
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use std::{
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fs, io,
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io::{Read, Write},
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};
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fn run_command(cmd: &mut Command) -> io::Result<()> {
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let status = cmd.status()?;
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if status.success() {
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Ok(())
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} else {
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Err(io::Error::new(io::ErrorKind::Other, "Command failed"))
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}
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}
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fn file_outdated<P1, P2>(input: P1, output: P2) -> io::Result<bool>
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where
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P1: AsRef<std::path::Path>,
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P2: AsRef<std::path::Path>,
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{
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let out_meta = std::fs::metadata(output);
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if let Ok(meta) = out_meta {
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let output_mtime = meta.modified()?;
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// if input file is more recent than our output, we are outdated
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let input_meta = fs::metadata(input)?;
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let input_mtime = input_meta.modified()?;
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Ok(input_mtime > output_mtime)
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} else {
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// output file not found, we are outdated
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Ok(true)
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}
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}
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fn build_app(target_path: &str, name: &str, parent_pkg_path: Option<&str>) {
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let pwd = std::env::current_dir().unwrap();
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let start = std::time::Instant::now();
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// if and only if module's wit is outdated, re-set-up build environment
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if file_outdated(
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format!("{}/target.wasm", pwd.display()),
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format!("{}/target/bindings/{}/target.wasm", target_path, name),
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)
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.unwrap_or(true)
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{
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// create target/bindings directory
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fs::create_dir_all(format!("{}/target/bindings/{}", target_path, name,)).unwrap();
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// copy newly-made target.wasm into target/bindings
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run_command(Command::new("cp").args([
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"target.wasm",
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&format!("{}/target/bindings/{}/", target_path, name,),
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]))
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.unwrap();
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// copy newly-made world into target/bindings
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run_command(Command::new("cp").args([
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"world",
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&format!("{}/target/bindings/{}/", target_path, name,),
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]))
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.unwrap();
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}
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// Build the module targeting wasm32-wasi
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let bash_build_path = &format!("{}/build.sh", target_path);
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if std::path::Path::new(&bash_build_path).exists() {
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let cwd = std::env::current_dir().unwrap();
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std::env::set_current_dir(target_path).unwrap();
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run_command(Command::new("/bin/bash").arg("build.sh")).unwrap();
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std::env::set_current_dir(cwd).unwrap();
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} else {
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run_command(Command::new("cargo").args([
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"+nightly",
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"build",
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"--release",
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"--no-default-features",
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&format!("--manifest-path={}/Cargo.toml", target_path),
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"--target",
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"wasm32-wasi",
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]))
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.unwrap();
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}
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// Adapt module to component with adapter based on wasi_snapshot_preview1.wasm
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run_command(Command::new("wasm-tools").args([
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"component",
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"new",
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&format!("{}/target/wasm32-wasi/release/{}.wasm", target_path, name),
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"-o",
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&format!(
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"{}/target/wasm32-wasi/release/{}_adapted.wasm",
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target_path, name
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),
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"--adapt",
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&format!("{}/wasi_snapshot_preview1.wasm", pwd.display()),
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]))
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.unwrap();
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// Determine the destination for the .wasm file after embedding wit
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let wasm_dest_path = if let Some(parent_pkg) = parent_pkg_path {
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format!("{}/{}.wasm", parent_pkg, name)
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} else {
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let pkg_folder = format!("{}/pkg/", target_path);
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let _ = run_command(Command::new("mkdir").args(["-p", &pkg_folder]));
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format!("{}/{}.wasm", pkg_folder, name)
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};
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// Embed "wit" into the component
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run_command(Command::new("wasm-tools").args([
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"component",
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"embed",
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"wit",
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"--world",
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"process",
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&format!(
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"{}/target/wasm32-wasi/release/{}_adapted.wasm",
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target_path, name
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),
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"-o",
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&wasm_dest_path,
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]))
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.unwrap();
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let end = std::time::Instant::now();
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println!(
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"cargo:warning=building {} took {:?}",
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target_path,
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end.duration_since(start)
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);
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}
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fn main() {
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if std::env::var("SKIP_BUILD_SCRIPT").is_ok() {
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println!("Skipping build script");
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return;
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}
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let pwd = std::env::current_dir().unwrap();
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// Create target.wasm (compiled .wit) & world
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run_command(Command::new("wasm-tools").args([
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"component",
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"wit",
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&format!("{}/wit/", pwd.display()),
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"-o",
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"target.wasm",
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"--wasm",
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]))
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.unwrap();
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run_command(Command::new("touch").args([&format!("{}/world", pwd.display())])).unwrap();
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// Build wasm32-wasi apps.
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let modules_dir = format!("{}/modules", pwd.display());
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for entry in std::fs::read_dir(modules_dir).unwrap() {
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let entry_path = entry.unwrap().path();
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let package_name = entry_path.file_name().unwrap().to_str().unwrap();
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// If Cargo.toml is present, build the app
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let parent_pkg_path = format!("{}/pkg", entry_path.display());
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if entry_path.join("Cargo.toml").exists() {
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build_app(&entry_path.display().to_string(), package_name, None);
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} else if entry_path.is_dir() {
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fs::create_dir_all(&parent_pkg_path).unwrap();
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// Otherwise, consider it a directory containing subdirectories with potential apps
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for sub_entry in std::fs::read_dir(&entry_path).unwrap() {
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let sub_entry_path = sub_entry.unwrap().path();
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if sub_entry_path.join("Cargo.toml").exists() {
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build_app(
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&sub_entry_path.display().to_string(),
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sub_entry_path.file_name().unwrap().to_str().unwrap(),
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Some(&parent_pkg_path),
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);
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}
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}
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}
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// After processing all sub-apps, zip the parent's pkg/ directory
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let writer = std::fs::File::create(format!(
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"{}/target/{}.zip",
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pwd.display(),
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entry_path.file_name().unwrap().to_str().unwrap()
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))
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.unwrap();
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let options = zip::write::FileOptions::default()
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.compression_method(zip::CompressionMethod::Stored)
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.unix_permissions(0o755);
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let mut zip = zip::ZipWriter::new(writer);
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for sub_entry in walkdir::WalkDir::new(&parent_pkg_path) {
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let sub_entry = sub_entry.unwrap();
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let path = sub_entry.path();
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let name = path
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.strip_prefix(std::path::Path::new(&parent_pkg_path))
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.unwrap();
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// Write a directory or file to the ZIP archive
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if path.is_file() {
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zip.start_file(name.to_string_lossy().into_owned(), options)
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.unwrap();
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let mut file = std::fs::File::open(path).unwrap();
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let mut buffer = Vec::new();
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file.read_to_end(&mut buffer).unwrap();
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zip.write_all(&buffer).unwrap();
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} else if !name.as_os_str().is_empty() {
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zip.add_directory(name.to_string_lossy().into_owned(), options)
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.unwrap();
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}
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}
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zip.finish().unwrap();
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}
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}
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