225 lines
7.7 KiB
Rust
225 lines
7.7 KiB
Rust
//! Handles dynamic library loading for proc macro
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use crate::{proc_macro::bridge, rustc_server::TokenStream};
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use std::fs::File;
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use std::path::{Path, PathBuf};
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use goblin::{mach::Mach, Object};
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use libloading::Library;
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use memmap::Mmap;
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use ra_proc_macro::ProcMacroKind;
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use std::io;
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const NEW_REGISTRAR_SYMBOL: &str = "_rustc_proc_macro_decls_";
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fn invalid_data_err(e: impl Into<Box<dyn std::error::Error + Send + Sync>>) -> io::Error {
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io::Error::new(io::ErrorKind::InvalidData, e)
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}
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fn is_derive_registrar_symbol(symbol: &str) -> bool {
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symbol.contains(NEW_REGISTRAR_SYMBOL)
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}
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fn find_registrar_symbol(file: &Path) -> io::Result<Option<String>> {
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let file = File::open(file)?;
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let buffer = unsafe { Mmap::map(&file)? };
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let object = Object::parse(&buffer).map_err(invalid_data_err)?;
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let name = match object {
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Object::Elf(elf) => {
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let symbols = elf.dynstrtab.to_vec().map_err(invalid_data_err)?;
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symbols.into_iter().find(|s| is_derive_registrar_symbol(s)).map(&str::to_owned)
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}
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Object::PE(pe) => pe
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.exports
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.iter()
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.flat_map(|s| s.name)
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.find(|s| is_derive_registrar_symbol(s))
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.map(&str::to_owned),
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Object::Mach(Mach::Binary(binary)) => {
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let exports = binary.exports().map_err(invalid_data_err)?;
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exports
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.iter()
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.map(|s| {
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// In macos doc:
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// https://developer.apple.com/library/archive/documentation/System/Conceptual/ManPages_iPhoneOS/man3/dlsym.3.html
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// Unlike other dyld API's, the symbol name passed to dlsym() must NOT be
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// prepended with an underscore.
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if s.name.starts_with("_") {
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&s.name[1..]
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} else {
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&s.name
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}
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})
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.find(|s| is_derive_registrar_symbol(s))
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.map(&str::to_owned)
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}
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_ => return Ok(None),
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};
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return Ok(name);
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}
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/// Loads dynamic library in platform dependent manner.
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///
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/// For unix, you have to use RTLD_DEEPBIND flag to escape problems described
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/// [here](https://github.com/fedochet/rust-proc-macro-panic-inside-panic-expample)
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/// and [here](https://github.com/rust-lang/rust/issues/60593).
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///
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/// Usage of RTLD_DEEPBIND
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/// [here](https://github.com/fedochet/rust-proc-macro-panic-inside-panic-expample/issues/1)
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///
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/// It seems that on Windows that behaviour is default, so we do nothing in that case.
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#[cfg(windows)]
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fn load_library(file: &Path) -> Result<Library, libloading::Error> {
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Library::new(file)
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}
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#[cfg(unix)]
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fn load_library(file: &Path) -> Result<Library, libloading::Error> {
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use libloading::os::unix::Library as UnixLibrary;
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use std::os::raw::c_int;
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const RTLD_NOW: c_int = 0x00002;
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const RTLD_DEEPBIND: c_int = 0x00008;
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UnixLibrary::open(Some(file), RTLD_NOW | RTLD_DEEPBIND).map(|lib| lib.into())
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}
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struct ProcMacroLibraryLibloading {
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// Hold the dylib to prevent it from unloading
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_lib: Library,
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exported_macros: Vec<bridge::client::ProcMacro>,
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}
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impl ProcMacroLibraryLibloading {
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fn open(file: &Path) -> io::Result<Self> {
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let symbol_name = find_registrar_symbol(file)?.ok_or_else(|| {
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invalid_data_err(format!("Cannot find registrar symbol in file {}", file.display()))
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})?;
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let lib = load_library(file).map_err(invalid_data_err)?;
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let exported_macros = {
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let macros: libloading::Symbol<&&[bridge::client::ProcMacro]> =
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unsafe { lib.get(symbol_name.as_bytes()) }.map_err(invalid_data_err)?;
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macros.to_vec()
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};
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Ok(ProcMacroLibraryLibloading { _lib: lib, exported_macros })
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}
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}
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pub struct Expander {
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inner: ProcMacroLibraryLibloading,
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}
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impl Expander {
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pub fn new(lib: &Path) -> io::Result<Expander> {
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// Some libraries for dynamic loading require canonicalized path even when it is
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// already absolute
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let lib = lib.canonicalize()?;
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let lib = ensure_file_with_lock_free_access(&lib)?;
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let library = ProcMacroLibraryLibloading::open(&lib)?;
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Ok(Expander { inner: library })
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}
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pub fn expand(
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&self,
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macro_name: &str,
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macro_body: &ra_tt::Subtree,
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attributes: Option<&ra_tt::Subtree>,
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) -> Result<ra_tt::Subtree, bridge::PanicMessage> {
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let parsed_body = TokenStream::with_subtree(macro_body.clone());
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let parsed_attributes = attributes
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.map_or(crate::rustc_server::TokenStream::new(), |attr| {
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TokenStream::with_subtree(attr.clone())
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});
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for proc_macro in &self.inner.exported_macros {
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match proc_macro {
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bridge::client::ProcMacro::CustomDerive { trait_name, client, .. }
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if *trait_name == macro_name =>
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{
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let res = client.run(
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&crate::proc_macro::bridge::server::SameThread,
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crate::rustc_server::Rustc::default(),
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parsed_body,
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);
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return res.map(|it| it.subtree);
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}
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bridge::client::ProcMacro::Bang { name, client } if *name == macro_name => {
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let res = client.run(
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&crate::proc_macro::bridge::server::SameThread,
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crate::rustc_server::Rustc::default(),
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parsed_body,
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);
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return res.map(|it| it.subtree);
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}
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bridge::client::ProcMacro::Attr { name, client } if *name == macro_name => {
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let res = client.run(
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&crate::proc_macro::bridge::server::SameThread,
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crate::rustc_server::Rustc::default(),
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parsed_attributes,
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parsed_body,
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);
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return res.map(|it| it.subtree);
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}
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_ => continue,
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}
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}
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Err(bridge::PanicMessage::String("Nothing to expand".to_string()))
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}
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pub fn list_macros(&self) -> Vec<(String, ProcMacroKind)> {
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self.inner
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.exported_macros
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.iter()
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.map(|proc_macro| match proc_macro {
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bridge::client::ProcMacro::CustomDerive { trait_name, .. } => {
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(trait_name.to_string(), ProcMacroKind::CustomDerive)
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}
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bridge::client::ProcMacro::Bang { name, .. } => {
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(name.to_string(), ProcMacroKind::FuncLike)
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}
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bridge::client::ProcMacro::Attr { name, .. } => {
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(name.to_string(), ProcMacroKind::Attr)
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}
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})
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.collect()
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}
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}
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/// Copy the dylib to temp directory to prevent locking in Windows
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#[cfg(windows)]
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fn ensure_file_with_lock_free_access(path: &Path) -> io::Result<PathBuf> {
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use std::{ffi::OsString, time::SystemTime};
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let mut to = std::env::temp_dir();
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let file_name = path.file_name().ok_or_else(|| {
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io::Error::new(
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io::ErrorKind::InvalidInput,
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format!("File path is invalid: {}", path.display()),
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)
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})?;
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// generate a time deps unique number
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let t = SystemTime::now().duration_since(std::time::UNIX_EPOCH).expect("Time went backwards");
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let mut unique_name = OsString::from(t.as_millis().to_string());
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unique_name.push(file_name);
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to.push(unique_name);
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std::fs::copy(path, &to).unwrap();
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Ok(to)
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}
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#[cfg(unix)]
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fn ensure_file_with_lock_free_access(path: &Path) -> io::Result<PathBuf> {
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Ok(path.to_path_buf())
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}
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