1 // SPDX-License-Identifier: Apache-2.0 OR MIT 2 3 // inspired by <https://github.com/nbdd0121/pin-init/blob/trunk/examples/pthread_mutex.rs> 4 #![allow(clippy::undocumented_unsafe_blocks)] 5 #![cfg_attr(feature = "alloc", feature(allocator_api))] 6 #![cfg_attr(not(RUSTC_LINT_REASONS_IS_STABLE), feature(lint_reasons))] 7 8 #[cfg(not(windows))] 9 mod pthread_mtx { 10 #[cfg(feature = "alloc")] 11 use core::alloc::AllocError; 12 use core::{ 13 cell::UnsafeCell, 14 marker::PhantomPinned, 15 mem::MaybeUninit, 16 ops::{Deref, DerefMut}, 17 pin::Pin, 18 }; 19 use pin_init::*; 20 use std::convert::Infallible; 21 22 #[pin_data(PinnedDrop)] 23 pub struct PThreadMutex<T> { 24 #[pin] 25 raw: UnsafeCell<libc::pthread_mutex_t>, 26 data: UnsafeCell<T>, 27 #[pin] 28 pin: PhantomPinned, 29 } 30 31 unsafe impl<T: Send> Send for PThreadMutex<T> {} 32 unsafe impl<T: Send> Sync for PThreadMutex<T> {} 33 34 #[pinned_drop] 35 impl<T> PinnedDrop for PThreadMutex<T> { 36 fn drop(self: Pin<&mut Self>) { 37 unsafe { 38 libc::pthread_mutex_destroy(self.raw.get()); 39 } 40 } 41 } 42 43 #[derive(Debug)] 44 pub enum Error { 45 #[allow(dead_code)] 46 IO(std::io::Error), 47 Alloc, 48 } 49 50 impl From<Infallible> for Error { 51 fn from(e: Infallible) -> Self { 52 match e {} 53 } 54 } 55 56 #[cfg(feature = "alloc")] 57 impl From<AllocError> for Error { 58 fn from(_: AllocError) -> Self { 59 Self::Alloc 60 } 61 } 62 63 impl<T> PThreadMutex<T> { 64 pub fn new(data: T) -> impl PinInit<Self, Error> { 65 fn init_raw() -> impl PinInit<UnsafeCell<libc::pthread_mutex_t>, Error> { 66 let init = |slot: *mut UnsafeCell<libc::pthread_mutex_t>| { 67 // we can cast, because `UnsafeCell` has the same layout as T. 68 let slot: *mut libc::pthread_mutex_t = slot.cast(); 69 let mut attr = MaybeUninit::uninit(); 70 let attr = attr.as_mut_ptr(); 71 // SAFETY: ptr is valid 72 let ret = unsafe { libc::pthread_mutexattr_init(attr) }; 73 if ret != 0 { 74 return Err(Error::IO(std::io::Error::from_raw_os_error(ret))); 75 } 76 // SAFETY: attr is initialized 77 let ret = unsafe { 78 libc::pthread_mutexattr_settype(attr, libc::PTHREAD_MUTEX_NORMAL) 79 }; 80 if ret != 0 { 81 // SAFETY: attr is initialized 82 unsafe { libc::pthread_mutexattr_destroy(attr) }; 83 return Err(Error::IO(std::io::Error::from_raw_os_error(ret))); 84 } 85 // SAFETY: slot is valid 86 unsafe { slot.write(libc::PTHREAD_MUTEX_INITIALIZER) }; 87 // SAFETY: attr and slot are valid ptrs and attr is initialized 88 let ret = unsafe { libc::pthread_mutex_init(slot, attr) }; 89 // SAFETY: attr was initialized 90 unsafe { libc::pthread_mutexattr_destroy(attr) }; 91 if ret != 0 { 92 return Err(Error::IO(std::io::Error::from_raw_os_error(ret))); 93 } 94 Ok(()) 95 }; 96 // SAFETY: mutex has been initialized 97 unsafe { pin_init_from_closure(init) } 98 } 99 try_pin_init!(Self { 100 data: UnsafeCell::new(data), 101 raw <- init_raw(), 102 pin: PhantomPinned, 103 }? Error) 104 } 105 106 pub fn lock(&self) -> PThreadMutexGuard<'_, T> { 107 // SAFETY: raw is always initialized 108 unsafe { libc::pthread_mutex_lock(self.raw.get()) }; 109 PThreadMutexGuard { mtx: self } 110 } 111 } 112 113 pub struct PThreadMutexGuard<'a, T> { 114 mtx: &'a PThreadMutex<T>, 115 } 116 117 impl<T> Drop for PThreadMutexGuard<'_, T> { 118 fn drop(&mut self) { 119 // SAFETY: raw is always initialized 120 unsafe { libc::pthread_mutex_unlock(self.mtx.raw.get()) }; 121 } 122 } 123 124 impl<T> Deref for PThreadMutexGuard<'_, T> { 125 type Target = T; 126 127 fn deref(&self) -> &Self::Target { 128 unsafe { &*self.mtx.data.get() } 129 } 130 } 131 132 impl<T> DerefMut for PThreadMutexGuard<'_, T> { 133 fn deref_mut(&mut self) -> &mut Self::Target { 134 unsafe { &mut *self.mtx.data.get() } 135 } 136 } 137 } 138 139 #[cfg_attr(test, test)] 140 fn main() { 141 #[cfg(all(any(feature = "std", feature = "alloc"), not(windows)))] 142 { 143 use core::pin::Pin; 144 use pin_init::*; 145 use pthread_mtx::*; 146 use std::{ 147 sync::Arc, 148 thread::{sleep, Builder}, 149 time::Duration, 150 }; 151 let mtx: Pin<Arc<PThreadMutex<usize>>> = Arc::try_pin_init(PThreadMutex::new(0)).unwrap(); 152 let mut handles = vec![]; 153 let thread_count = 20; 154 let workload = 1_000_000; 155 for i in 0..thread_count { 156 let mtx = mtx.clone(); 157 handles.push( 158 Builder::new() 159 .name(format!("worker #{i}")) 160 .spawn(move || { 161 for _ in 0..workload { 162 *mtx.lock() += 1; 163 } 164 println!("{i} halfway"); 165 sleep(Duration::from_millis((i as u64) * 10)); 166 for _ in 0..workload { 167 *mtx.lock() += 1; 168 } 169 println!("{i} finished"); 170 }) 171 .expect("should not fail"), 172 ); 173 } 174 for h in handles { 175 h.join().expect("thread panicked"); 176 } 177 println!("{:?}", &*mtx.lock()); 178 assert_eq!(*mtx.lock(), workload * thread_count * 2); 179 } 180 } 181