1use crate::import::{Arc, AtomicBool, Ordering, UnsafeCell};
25use core::error::Error;
26use crossbeam_utils::CachePadded;
27use std::{fmt::Debug, sync::atomic::AtomicUsize};
28
29pub fn spsc<T>(capacity: usize) -> (Sender<T>, Receiver<T>) {
40 if !is_power_of_two(capacity) {
41 panic!("The SIZE must be a power of 2")
42 }
43
44 let chan = Arc::new(Spsc::new(capacity));
45
46 let r = Receiver::new(chan.clone());
47 let w = Sender::new(chan);
48
49 (w, r)
50}
51
52const fn is_power_of_two(x: usize) -> bool {
53 let c = x.wrapping_sub(1);
54 (x != 0) && (x != 1) && ((x & c) == 0)
55}
56
57#[derive(Clone, Debug, PartialEq)]
61pub enum SendError<T> {
62 NoSpaceLeft(T),
64 ReceiverSideDropped(T),
66}
67impl<T: Debug> Error for SendError<T> {}
68impl<T> core::fmt::Display for SendError<T> {
69 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
70 match self {
71 SendError::NoSpaceLeft(_) => write!(f, "No space left in the SPSC queue."),
72 SendError::ReceiverSideDropped(_) => {
73 write!(f, "Receiver side of the SPSC queue dropped.")
74 }
75 }
76 }
77}
78impl<T> SendError<T> {
79 pub fn into_value(self) -> T {
81 match self {
82 SendError::NoSpaceLeft(val) => val,
83 SendError::ReceiverSideDropped(val) => val,
84 }
85 }
86}
87
88#[derive(Clone, Debug, PartialEq)]
90pub enum TryRecvError {
91 Empty,
93 Disconnected,
95}
96impl Error for TryRecvError {}
97impl core::fmt::Display for TryRecvError {
98 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
99 match self {
100 TryRecvError::Empty => write!(f, "No data available in the SPSC queue."),
101 TryRecvError::Disconnected => {
102 write!(f, "Sender side of the SPSC queue dropped.")
103 }
104 }
105 }
106}
107
108#[derive(Debug)]
109struct Slot<T> {
110 value: UnsafeCell<Option<T>>,
111 occupied: CachePadded<AtomicBool>,
112}
113impl<T> Slot<T> {
114 fn new() -> Self {
115 Self {
116 value: UnsafeCell::new(None),
117 occupied: CachePadded::new(false.into()),
118 }
119 }
120}
121
122#[derive(Debug)]
123struct Spsc<T> {
124 mem: Box<[Slot<T>]>,
125 mask: usize,
128 read: CachePadded<AtomicUsize>,
129 write: CachePadded<AtomicUsize>,
130}
131
132impl<T> Spsc<T> {
133 fn new(size: usize) -> Self {
134 let mut buffer = Vec::with_capacity(size);
135 for _ in 0..size {
136 buffer.push(Slot::new());
137 }
138 let buffer: Box<[Slot<T>]> = buffer.into_boxed_slice();
139 Spsc {
140 mem: buffer,
141 mask: size - 1,
142 read: CachePadded::new(0.into()),
143 write: CachePadded::new(0.into()),
144 }
145 }
146
147 #[inline]
148 fn capacity(&self) -> usize {
149 self.mask + 1
150 }
151
152 #[inline]
153 fn len(&self) -> usize {
154 self.write
155 .load(Ordering::Relaxed)
156 .saturating_sub(self.read.load(Ordering::Relaxed))
157 }
158}
159
160#[derive(Debug)]
162pub struct Receiver<T> {
163 spsc: Arc<Spsc<T>>,
164}
165unsafe impl<T: Send> Send for Receiver<T> {}
166unsafe impl<T: Send> Sync for Receiver<T> {}
167
168impl<T> Receiver<T> {
169 fn new(spsc: Arc<Spsc<T>>) -> Self {
170 Receiver { spsc }
171 }
172}
173
174impl<T> Receiver<T> {
175 pub fn try_recv(&mut self) -> Result<T, TryRecvError> {
181 let read = self.spsc.read.load(Ordering::Relaxed);
182 let rpos = read & self.spsc.mask;
183 let slot = unsafe { self.spsc.mem.get_unchecked(rpos) };
184 if !slot.occupied.load(Ordering::Acquire) {
185 if Arc::strong_count(&self.spsc) < 2 {
186 Err(TryRecvError::Disconnected)
187 } else {
188 Err(TryRecvError::Empty)
189 }
190 } else {
191 #[cfg(not(loom))]
192 let val = unsafe { slot.value.get().replace(None) };
193 #[cfg(loom)]
194 let val = unsafe { slot.value.get_mut().with(|ptr| ptr.replace(None)) };
195
196 slot.occupied.store(false, Ordering::Release);
197 self.spsc
199 .read
200 .store(read.wrapping_add(1), Ordering::Relaxed);
201 Ok(val.ok_or(TryRecvError::Empty)?)
202 }
203 }
204 #[cfg(not(loom))] pub fn peek(&self) -> Option<&T> {
207 let rpos = self.spsc.read.load(Ordering::Relaxed) & self.spsc.mask;
208 let slot = unsafe { self.spsc.mem.get_unchecked(rpos) };
209 if !slot.occupied.load(Ordering::Acquire) {
210 None
211 } else {
212 let val = unsafe { &*slot.value.get() };
213 val.as_ref()
214 }
215 }
216
217 #[inline]
219 pub fn capacity(&self) -> usize {
220 self.spsc.capacity()
222 }
223
224 #[inline]
231 pub fn len(&self) -> usize {
232 self.spsc.len()
233 }
234
235 #[inline]
242 pub fn is_empty(&self) -> bool {
243 self.spsc.len() == 0
244 }
245}
246
247#[derive(Debug)]
249pub struct Sender<T> {
250 spsc: Arc<Spsc<T>>,
251}
252unsafe impl<T: Send> Send for Sender<T> {}
253unsafe impl<T: Send> Sync for Sender<T> {}
254impl<T> Sender<T> {
255 fn new(spsc: Arc<Spsc<T>>) -> Self {
256 Sender { spsc }
257 }
258}
259
260impl<T> Sender<T> {
261 pub fn try_send(&mut self, data: T) -> Result<(), SendError<T>> {
267 let write = self.spsc.write.load(Ordering::Relaxed);
268 let wpos = write & self.spsc.mask;
269
270 if Arc::strong_count(&self.spsc) < 2 {
271 return Err(SendError::ReceiverSideDropped(data));
272 }
273
274 let slot = unsafe { self.spsc.mem.get_unchecked(wpos) };
275 if slot.occupied.load(Ordering::Acquire) {
276 Err(SendError::NoSpaceLeft(data))
277 } else {
278 #[cfg(not(loom))]
279 unsafe {
280 slot.value.get().write(Some(data))
281 };
282 #[cfg(loom)]
283 unsafe {
284 slot.value.get_mut().with(|ptr| ptr.write(Some(data)))
285 };
286 slot.occupied.store(true, Ordering::Release);
287 self.spsc
288 .write
289 .store(write.wrapping_add(1), Ordering::Relaxed);
290 Ok(())
291 }
292 }
293
294 #[inline]
296 pub fn capacity(&self) -> usize {
297 self.spsc.capacity()
299 }
300
301 #[inline]
308 pub fn len(&self) -> usize {
309 self.spsc.len()
310 }
311
312 #[inline]
319 pub fn is_empty(&self) -> bool {
320 self.spsc.len() == 0
321 }
322}
323
324#[cfg(not(loom))]
325#[cfg(test)]
326mod test {
327 #[cfg(loom)]
328 use loom::thread;
329 #[cfg(not(loom))]
330 use std::thread;
331
332 use super::*;
333
334 #[test]
335 fn smoke() {
336 let (mut w, mut r) = spsc(4);
337 w.try_send(vec![0; 15]).unwrap();
338 w.try_send(vec![0; 16]).unwrap();
339 w.try_send(vec![0; 17]).unwrap();
340 w.try_send(vec![0; 18]).unwrap();
341
342 assert_eq!(r.try_recv(), Ok(vec![0; 15]));
343 assert_eq!(r.try_recv(), Ok(vec![0; 16]));
344 assert_eq!(r.try_recv(), Ok(vec![0; 17]));
345 assert_eq!(r.try_recv(), Ok(vec![0; 18]));
346 }
347
348 #[test]
349 fn test_is_power_of_two() {
350 assert!(!is_power_of_two(0));
351 assert!(!is_power_of_two(1));
352 assert!(is_power_of_two(2));
353 assert!(!is_power_of_two(3));
354 assert!(is_power_of_two(4));
355 assert!(!is_power_of_two(5));
356 assert!(!is_power_of_two(6));
357 assert!(!is_power_of_two(7));
358 assert!(is_power_of_two(8));
359 assert!(!is_power_of_two(9));
360
361 assert!(!is_power_of_two(15));
362 assert!(is_power_of_two(16));
363 assert!(!is_power_of_two(17));
364
365 assert!(!is_power_of_two(31));
366 assert!(is_power_of_two(32));
367 assert!(!is_power_of_two(33));
368 }
369
370 #[test]
371 fn test_drop_read_side() {
372 let (mut write, read) = spsc::<i32>(4);
373
374 assert_eq!(write.try_send(1), Ok(()));
375 assert_eq!(write.len(), 1);
376 assert_eq!(write.try_send(2), Ok(()));
377 assert_eq!(write.len(), 2);
378 drop(read);
379 assert_eq!(write.try_send(3), Err(SendError::ReceiverSideDropped(3)));
380 assert_eq!(write.len(), 2);
381 assert_eq!(write.try_send(4), Err(SendError::ReceiverSideDropped(4)));
382 assert_eq!(write.len(), 2);
383 assert_eq!(write.try_send(5), Err(SendError::ReceiverSideDropped(5)));
384 assert_eq!(write.len(), 2);
385 }
386
387 #[test]
388 fn test_drop_write_side() {
389 let (mut write, mut read) = spsc::<i32>(4);
390
391 write.try_send(0).unwrap();
392 write.try_send(1).unwrap();
393 assert_eq!(read.try_recv(), Ok(0));
394 drop(write);
395 assert_eq!(read.try_recv(), Ok(1));
396 }
397
398 #[test]
399 fn test_full_empty() {
400 let (mut write, mut read) = spsc::<i32>(4);
401 assert_eq!(write.try_send(1), Ok(()));
402 assert_eq!(write.len(), 1);
403 assert_eq!(write.try_send(2), Ok(()));
404 assert_eq!(write.len(), 2);
405 assert_eq!(write.try_send(3), Ok(()));
406 assert_eq!(write.len(), 3);
407 assert_eq!(write.try_send(4), Ok(()));
408 assert_eq!(write.len(), 4);
409 assert_eq!(write.try_send(5), Err(SendError::NoSpaceLeft(5)));
410 assert_eq!(write.len(), 4);
411
412 assert_eq!(read.try_recv(), Ok(1));
413 assert_eq!(write.len(), 3);
414 assert_eq!(write.try_send(6), Ok(()));
415 assert_eq!(write.len(), 4);
416 assert_eq!(read.try_recv(), Ok(2));
417 assert_eq!(write.len(), 3);
418 assert_eq!(read.try_recv(), Ok(3));
419 assert_eq!(write.len(), 2);
420 assert_eq!(read.try_recv(), Ok(4));
421 assert_eq!(write.len(), 1);
422 assert_eq!(read.try_recv(), Ok(6));
423 assert_eq!(read.try_recv(), Err(TryRecvError::Empty));
424 }
425
426 #[test]
427 fn test_drop_one_side() {
428 let (mut write, read) = spsc::<i32>(4);
429 assert_eq!(write.try_send(1), Ok(()));
430 assert_eq!(write.len(), 1);
431 assert_eq!(write.try_send(2), Ok(()));
432 assert_eq!(write.len(), 2);
433 drop(read);
434 assert_eq!(write.try_send(3), Err(SendError::ReceiverSideDropped(3)));
435 assert_eq!(write.len(), 2);
436 assert_eq!(write.try_send(4), Err(SendError::ReceiverSideDropped(4)));
437 assert_eq!(write.len(), 2);
438 assert_eq!(write.try_send(5), Err(SendError::ReceiverSideDropped(5)));
439 assert_eq!(write.len(), 2);
440 }
441
442 #[test]
443 fn test_peek() {
444 let (mut w, mut r) = spsc(4);
445 w.try_send(vec![0; 15]).unwrap();
446 w.try_send(vec![0; 16]).unwrap();
447 w.try_send(vec![0; 17]).unwrap();
448 w.try_send(vec![0; 18]).unwrap();
449
450 assert_eq!(r.peek(), Some(&vec![0; 15]));
451 assert_eq!(r.try_recv(), Ok(vec![0; 15]));
452 assert_eq!(r.peek(), Some(&vec![0; 16]));
453 assert_eq!(r.try_recv(), Ok(vec![0; 16]));
454 assert_eq!(r.peek(), Some(&vec![0; 17]));
455 assert_eq!(r.try_recv(), Ok(vec![0; 17]));
456 assert_eq!(r.peek(), Some(&vec![0; 18]));
457 assert_eq!(r.peek(), Some(&vec![0; 18]));
458 assert_eq!(r.peek(), Some(&vec![0; 18]));
459 assert_eq!(r.try_recv(), Ok(vec![0; 18]));
460 assert_eq!(r.peek(), None);
461 }
462
463 #[test]
464 fn test_peek_threaded() {
465 let (mut sender, mut receiver) = spsc(4);
466
467 let writer_thread = thread::spawn(move || {
468 thread::park();
469 for i in 0..4 {
470 assert_eq!(sender.try_send([i; 50]), Ok(()));
471 }
472 });
473 let reader_thread = thread::spawn(move || {
474 thread::park();
475 let mut i = 0;
476 while i < 4 {
477 if let Some(val) = receiver.peek() {
478 let first_entry = val[0];
479 for entry in val {
480 assert_eq!(*entry, first_entry);
481 }
482 let val = receiver.try_recv().unwrap();
483 let first_entry = val[0];
484 for entry in val {
485 assert_eq!(entry, first_entry);
486 }
487 i += 1;
488 }
489 }
490 });
491 writer_thread.thread().unpark();
492 reader_thread.thread().unpark();
493 assert!(writer_thread.join().is_ok());
494 assert!(reader_thread.join().is_ok());
495 }
496}