2020-12-07 12:16:06 -06:00
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// ignore-windows: Concurrency on Windows is not supported yet.
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// compile-flags: -Zmiri-disable-isolation
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use std::thread::{spawn, sleep};
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use std::ptr::null_mut;
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use std::sync::atomic::{Ordering, AtomicPtr};
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use std::time::Duration;
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#[derive(Copy, Clone)]
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struct EvilSend<T>(pub T);
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unsafe impl<T> Send for EvilSend<T> {}
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unsafe impl<T> Sync for EvilSend<T> {}
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pub fn main() {
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// Shared atomic pointer
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let pointer = AtomicPtr::new(null_mut::<usize>());
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let ptr = EvilSend(&pointer as *const AtomicPtr<usize>);
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// Note: this is scheduler-dependent
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// the operations need to occur in
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// order, otherwise the allocation is
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// not visible to the other-thread to
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// detect the race:
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// 1. stack-allocate
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// 2. read
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// 3. stack-deallocate
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unsafe {
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let j1 = spawn(move || {
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2020-12-07 13:10:01 -06:00
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// Concurrent allocate the memory.
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// Uses relaxed semantics to not generate
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// a release sequence.
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2020-12-07 12:16:06 -06:00
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let pointer = &*ptr.0;
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{
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let mut stack_var = 0usize;
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pointer.store(&mut stack_var as *mut _, Ordering::Release);
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2020-12-09 07:35:42 -06:00
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sleep(Duration::from_millis(200));
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2020-12-07 12:16:06 -06:00
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2020-12-07 17:18:57 -06:00
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} //~ ERROR Data race detected between Deallocate on Thread(id = 1) and Write on Thread(id = 2)
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2020-12-07 12:16:06 -06:00
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});
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let j2 = spawn(move || {
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let pointer = &*ptr.0;
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*pointer.load(Ordering::Acquire) = 3;
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});
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j1.join().unwrap();
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j2.join().unwrap();
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}
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}
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