Commit Graph
30 Commits
Author SHA1 Message Date
Alex Gaynor ee04abe797 bench: add remote_spawn benchmark for inject queue contention (#7944) 2026-03-11 10:13:39 +01:00
Alex Gaynor be99e7aa04 benches: add spawn_blocking concurrency benchmark (#7748) 2025-12-03 10:20:50 +01:00
Alice Ryhl 2506c9fa99 benches: revert "properly gate unix benches" (#7412)
This reverts commit 933fa498d0.
2025-06-21 14:52:04 +02:00
Tim Vilgot Mikael Fredenberg 933fa498d0 benches: properly gate unix benches (#7392) 2025-06-11 10:07:34 +02:00
Jeff Vander Stoep 193c1574a1 examples: update rand crate to 0.9.1 (#7371) 2025-05-28 11:32:24 +00:00
Taiki Endo 7f09959b0a chore: use [lints] to address unexpected_cfgs lint (#7124) 2025-01-25 17:46:21 +01:00
Alice Ryhl ebe241647e ci: use cargo deny (#6931) 2024-10-23 18:48:07 +02:00
Tim Vilgot Mikael Fredenberg feb742c58e chore: replace num_cpus with available_parallelism (#6709) 2024-07-22 23:15:23 +02:00
Weijia Jiang f6eb1ee196 time: lazily init timers on first poll (#6512) 2024-05-03 15:37:52 +02:00
Sergei Fomin 7536132065 sync: use AtomicBool in broadcast channel future (#6298) 2024-01-27 18:52:55 +00:00
Weijia Jiang 3a4aef17b2 runtime: reduce the lock contention in task spawn (#6001) 2023-12-07 10:45:07 +00:00
M.Amin Rayej b046c0dcbb benches: use criterion instead of bencher (#5981) 2023-09-10 16:42:53 +02:00
Taiki Endo af6c87a045 chore: upgrade remaining 2018 edition crates to 2021 edition (#5788) 2023-06-12 02:21:50 +09:00
Carl Lerche 93bde0870f rt: use task::Inject with current_thread scheduler (#5702)
Previously, the current_thread scheduler used its own injection queue
instead of sharing the same one as the multi-threaded scheduler. This
patch updates the current_thread scheduler to use the same injection
queue as the multi-threaded one (`task::Inject`).

`task::Inject` includes an optimization where it does not need to
acquire the mutex if the queue is empty.
2023-05-21 00:08:00 +00:00
Tymoteusz Wiśniewski db543639e1 sync: reduce contention in Notify (#5503) 2023-04-19 13:07:10 +02:00
Carl Lerche ee1c940709 time: Improve Instant::now() perf with test-util (#5513)
The test-util feature flag is only intended to be used with tests.
However, it is possible to enable it in release mode accidentally. This
patch reduces the overhead of `Instant::now()` when the `test-util`
feature flag is enabled but `time::pause()` is not called.

The optimization is implemented by adding a static atomic flag that
tracks if `time::pause()` has ever been called. In `Instant::now()`, the
atomic flag is first checked before the thread-local and mutex are
accessed.
2023-02-27 10:21:42 -08:00
tijsvd d7abdbb315 benches: mutex contention in watch::Receiver bench (#5472) 2023-02-18 14:51:08 +00:00
Christopher Hunt e106c4d32b benches: benchmark for things in block_on (#5440)
This additional benchmark exercises a common request/reply pattern using an MPSC for requests along with a oneshot payload as a reply mechanism. When used in a current threaded scenario, the bench is 17 times faster on my machine than when using the multi-threaded runtime and one worker thread. Not only that, but if I increase the number of worker threads to 6, performance degrades further.

Does this suggest a scheduling problem with the multi-threaded runtime?

No matter what, hopefully the benchmarks are a useful addition.
2023-02-14 23:05:10 +00:00
Simon Farnsworth 6bdcb813c6 io: make copy continue filling the buffer when writer stalls (#5066) 2022-10-03 12:58:21 +02:00
Toby Lawrence 4b6bb1d9a7 chore(util): start v0.7 release cycle (#4313)
* chore(util): start v0.7 release cycle

Signed-off-by: Toby Lawrence <[email protected]>
2021-12-10 13:16:17 -05:00
Taiki Endo 17c7ce616c benches: fix build error (#3769) 2021-05-09 22:26:20 +09:00
Stefan Sydow 177522cd43 benchmark: add file reading benchmarks (#3013) 2021-05-05 21:49:00 +02:00
Carl Lerche 473ddaa277 chore: prepare for Tokio 1.0 work (#3238) 2020-12-09 09:42:05 -08:00
Carl Lerche 97c2c4203c chore: automate running benchmarks (#3140)
Uses Github actions to run benchmarks.
2020-11-13 19:30:52 -08:00
Ivan Petkov 7ae5b7bd4f signal: move driver to runtime thread (#2835)
Refactors the signal infrastructure to move the driver to the runtime
thread. This follows the model put forth by the I/O driver and time
driver.
2020-09-22 15:40:44 -07:00
Carl Lerche 6ccefb77e2 chore: prepare for v0.3 breaking changes (#2747)
Bug fixes will be applied to the v0.2.x branch.
2020-08-07 20:27:53 -07:00
Eliza Weisman acf8a7da7a sync: new internal semaphore based on intrusive lists (#2325)
## Motivation

Many of Tokio's synchronization primitives (`RwLock`, `Mutex`,
`Semaphore`, and the bounded MPSC channel) are based on the internal
semaphore implementation, called `semaphore_ll`. This semaphore type
provides a lower-level internal API for the semaphore implementation
than the public `Semaphore` type, and supports "batch" operations, where
waiters may acquire more than one permit at a time, and batches of
permits may be released back to the semaphore.

Currently, `semaphore_ll` uses an atomic singly-linked list for the
waiter queue. The linked list implementation is specific to the
semaphore. This implementation therefore requires a heap allocation for
every waiter in the queue. These allocations are owned by the semaphore,
rather than by the task awaiting permits from the semaphore. Critically,
they are only _deallocated_ when permits are released back to the
semaphore, at which point it dequeues as many waiters from the front of
the queue as can be satisfied with the released permits. If a task
attempts to acquire permits from the semaphore and is cancelled (such as
by timing out), their waiter nodes remain in the list until they are
dequeued while releasing permits. In cases where large numbers of tasks
are cancelled while waiting for permits, this results in extremely high
memory use for the semaphore (see #2237).

## Solution

@Matthias247 has proposed that Tokio adopt the approach used in his
`futures-intrusive` crate: using an _intrusive_ linked list to store the
wakers of tasks waiting on a synchronization primitive. In an intrusive
list, each list node is stored as part of the entry that node
represents, rather than in a heap allocation that owns the entry.
Because futures must be pinned in order to be polled, the necessary
invariant of such a list --- that entries may not move while in the list
--- may be upheld by making the waiter node `!Unpin`. In this approach,
the waiter node can be stored inline in the future, rather than
requiring  separate heap allocation, and cancelled futures may remove
their nodes from the list.

This branch adds a new semaphore implementation that uses the intrusive
list added to Tokio in #2210. The implementation is essentially a hybrid
of the old `semaphore_ll` and the semaphore used in `futures-intrusive`:
while a `Mutex` around the wait list is necessary, since the intrusive
list is not thread-safe, the permit state is stored outside of the mutex
and updated atomically. 

The mutex is acquired only when accessing the wait list — if a task 
can acquire sufficient permits without waiting, it does not need to
acquire the lock. When releasing permits, we iterate over the wait
list from the end of the queue until we run out of permits to release,
and split off all the nodes that received enough permits to wake up
into a separate list. Then, we can drain the new list and notify those
wakers *after* releasing the lock. Because the split operation only
modifies the pointers on the head node of the split-off list and the
new tail node of the old list, it is O(1) and does not require an
allocation to return a variable length number of waiters to notify.


Because of the intrusive list invariants, the API provided by the new
`batch_semaphore` is somewhat different than that of `semaphore_ll`. In
particular, the `Permit` type has been removed. This type was primarily
intended allow the reuse of a wait list node allocated on the heap.
Since the intrusive list means we can avoid heap-allocating waiters,
this is no longer necessary. Instead, acquiring permits is done by
polling an `Acquire` future returned by the `Semaphore` type. The use of
a future here ensures that the waiter node is always pinned while
waiting to acquire permits, and that a reference to the semaphore is
available to remove the waiter if the future is cancelled.
Unfortunately, the current implementation of the bounded MPSC requires a
`poll_acquire` operation, and has methods that call it while outside of
a pinned context. Therefore, I've left the old `semaphore_ll`
implementation in place to be used by the bounded MPSC, and updated the
`Mutex`, `RwLock`, and `Semaphore` APIs to use the new implementation.
Hopefully, a subsequent change can update the bounded MPSC to use the
new semaphore as well.

Fixes #2237

Signed-off-by: Eliza Weisman <[email protected]>
2020-03-23 13:45:48 -07:00
Carl Lerche a78b1c65cc rt: cleanup and simplify scheduler (scheduler v2.5) (#2273)
A refactor of the scheduler internals focusing on simplifying and
reducing unsafety. There are no fundamental logic changes.

* The state transitions of the core task component are refined and
reduced.
* `basic_scheduler` has most unsafety removed.
* `local_set` has most unsafety removed.
* `threaded_scheduler` limits most unsafety to its queue implementation.
2020-03-05 10:31:37 -08:00
Lucio Franco 4a24c7063b sync: add mpsc benchmark (#2166) 2020-01-27 20:48:35 -08:00
Carl Lerche 50b91c0247 chore: move benches to separate crate (#2028)
This allows the `benches` crate to depend on `tokio` with all feature
flags. This is a similar strategy used for `examples`.
2019-12-24 20:53:20 -08:00