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Rollup merge of #131233 - joboet:stdout-before-main, r=tgross35
std: fix stdout-before-main Fixes #130210. Since #124881, `ReentrantLock` uses `ThreadId` to identify threads. This has the unfortunate consequence of breaking uses of `Stdout` before main: Locking the `ReentrantLock` that synchronizes the output will initialize the thread ID before the handle for the main thread is set in `rt::init`. But since that would overwrite the current thread ID, `thread::set_current` triggers an abort. This PR fixes the problem by using the already initialized thread ID for constructing the main thread handle and allowing `set_current` calls that do not change the thread's ID.
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ca3c822068
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@ -102,9 +102,24 @@ unsafe fn init(argc: isize, argv: *const *const u8, sigpipe: u8) {
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sys::init(argc, argv, sigpipe)
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};
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// Set up the current thread to give it the right name.
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let thread = Thread::new_main();
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thread::set_current(thread);
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// Set up the current thread handle to give it the right name.
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//
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// When code running before main uses `ReentrantLock` (for example by
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// using `println!`), the thread ID can become initialized before we
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// create this handle. Since `set_current` fails when the ID of the
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// handle does not match the current ID, we should attempt to use the
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// current thread ID here instead of unconditionally creating a new
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// one. Also see #130210.
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let thread = Thread::new_main(thread::current_id());
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if let Err(_thread) = thread::set_current(thread) {
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// `thread::current` will create a new handle if none has been set yet.
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// Thus, if someone uses it before main, this call will fail. That's a
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// bad idea though, as we then cannot set the main thread name here.
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//
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// FIXME: detect the main thread in `thread::current` and use the
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// correct name there.
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rtabort!("code running before main must not use thread::current");
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}
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}
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/// Clean up the thread-local runtime state. This *should* be run after all other
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@ -110,22 +110,24 @@ mod id {
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}
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}
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/// Sets the thread handle for the current thread.
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///
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/// Aborts if the handle or the ID has been set already.
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pub(crate) fn set_current(thread: Thread) {
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if CURRENT.get() != NONE || id::get().is_some() {
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// Using `panic` here can add ~3kB to the binary size. We have complete
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// control over where this is called, so just abort if there is a bug.
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rtabort!("thread::set_current should only be called once per thread");
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/// Tries to set the thread handle for the current thread. Fails if a handle was
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/// already set or if the thread ID of `thread` would change an already-set ID.
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pub(crate) fn set_current(thread: Thread) -> Result<(), Thread> {
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if CURRENT.get() != NONE {
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return Err(thread);
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}
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id::set(thread.id());
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match id::get() {
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Some(id) if id == thread.id() => {}
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None => id::set(thread.id()),
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_ => return Err(thread),
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}
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// Make sure that `crate::rt::thread_cleanup` will be run, which will
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// call `drop_current`.
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crate::sys::thread_local::guard::enable();
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CURRENT.set(thread.into_raw().cast_mut());
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Ok(())
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}
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/// Gets the id of the thread that invokes it.
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@ -519,9 +519,14 @@ impl Builder {
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let f = MaybeDangling::new(f);
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let main = move || {
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// Immediately store the thread handle to avoid setting it or its ID
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// twice, which would cause an abort.
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set_current(their_thread.clone());
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if let Err(_thread) = set_current(their_thread.clone()) {
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// Both the current thread handle and the ID should not be
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// initialized yet. Since only the C runtime and some of our
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// platform code run before this, this point shouldn't be
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// reachable. Use an abort to save binary size (see #123356).
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rtabort!("something here is badly broken!");
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}
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if let Some(name) = their_thread.cname() {
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imp::Thread::set_name(name);
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}
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@ -1159,9 +1164,6 @@ pub fn park_timeout(dur: Duration) {
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pub struct ThreadId(NonZero<u64>);
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impl ThreadId {
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// DO NOT rely on this value.
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const MAIN_THREAD: ThreadId = ThreadId(unsafe { NonZero::new_unchecked(1) });
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// Generate a new unique thread ID.
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pub(crate) fn new() -> ThreadId {
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#[cold]
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@ -1173,7 +1175,7 @@ impl ThreadId {
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if #[cfg(target_has_atomic = "64")] {
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use crate::sync::atomic::AtomicU64;
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static COUNTER: AtomicU64 = AtomicU64::new(1);
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static COUNTER: AtomicU64 = AtomicU64::new(0);
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let mut last = COUNTER.load(Ordering::Relaxed);
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loop {
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@ -1189,7 +1191,7 @@ impl ThreadId {
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} else {
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use crate::sync::{Mutex, PoisonError};
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static COUNTER: Mutex<u64> = Mutex::new(1);
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static COUNTER: Mutex<u64> = Mutex::new(0);
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let mut counter = COUNTER.lock().unwrap_or_else(PoisonError::into_inner);
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let Some(id) = counter.checked_add(1) else {
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@ -1326,9 +1328,9 @@ impl Thread {
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Self::new_inner(id, ThreadName::Unnamed)
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}
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// Used in runtime to construct main thread
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pub(crate) fn new_main() -> Thread {
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Self::new_inner(ThreadId::MAIN_THREAD, ThreadName::Main)
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/// Constructs the thread handle for the main thread.
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pub(crate) fn new_main(id: ThreadId) -> Thread {
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Self::new_inner(id, ThreadName::Main)
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}
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fn new_inner(id: ThreadId, name: ThreadName) -> Thread {
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@ -0,0 +1,24 @@
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//@ run-pass
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//@ check-run-results
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//@ only-gnu
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//@ only-linux
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//
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// Regression test for #130210.
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// .init_array doesn't work everywhere, so we limit the test to just GNU/Linux.
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use std::ffi::c_int;
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use std::thread;
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#[used]
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#[link_section = ".init_array"]
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static INIT: extern "C" fn(c_int, *const *const u8, *const *const u8) = {
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extern "C" fn init(_argc: c_int, _argv: *const *const u8, _envp: *const *const u8) {
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print!("Hello from before ");
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}
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init
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};
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fn main() {
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println!("{}!", thread::current().name().unwrap());
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}
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@ -0,0 +1 @@
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Hello from before main!
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