Skip to main content

TonIO

TonIO is a multi-threaded async runtime for free-threaded Python, built in Rust on top of the mio crate, and inspired by tinyio, trio and tokio.

Warning: TonIO is currently a work in progress and in alpha state. The APIs are subtle to breaking changes.

Note: TonIO is available on free-threaded Python and Unix systems only.

TonIO supports both using yield and the more canonical async/await notations, with the latter being available as part of the tonio.colored module. Following code snippets show both the usages.

Warning: despite the fact TonIO supports async and await notations, it's not compatible with any asyncio object like futures and tasks. The TonIO-Monkey project provides patches for some popular asyncio packages.

In a nutshell

yield syntax

import tonio

def wait_and_add(x: int) -> int:
    yield tonio.sleep(1)
    return x + 1

def foo():
    four, five = yield tonio.spawn(
        wait_and_add(3), 
        wait_and_add(4)
    )
    return four, five

out = tonio.run(foo())
assert out == (4, 5)

await syntax

import tonio.colored as tonio

async def wait_and_add(x: int) -> int:
    await tonio.sleep(1)
    return x + 1

async def foo():
    four, five = await tonio.spawn(
        wait_and_add(3), 
        wait_and_add(4)
    )
    return four, five

out = tonio.run(foo())
assert out == (4, 5)

Usage

Entrypoint

Every TonIO program consist of an entrypoint, which should be passed to the run method:

yield syntax

import tonio

def main():
    yield
    print("Hello world")

tonio.run(main())

await syntax

import tonio.colored as tonio

async def main():
    await tonio.yield_now()
    print("Hellow world")

tonio.run(main())

TonIO also provides a main decorator, thus we can rewrite the previous example as:

yield syntax

import tonio

@tonio.main
def main():
    yield
    print("Hello world")

main()

await syntax

import tonio.colored as tonio

@tonio.main
async def main():
    await tonio.yield_now()
    print("Hello world")

main()

Note: as you can see the colored module provides the additional yield_now coroutine, a quick way to define a suspension point, given you cannot just yield as in the non-colored notation.

Note: both run and main can only be called once per program. To run the runtime multiple times in the same program, follow the section below.

Manually managing the runtime

TonIO also provides the runtime function, to manually manage the runtime lifecycle:

import tonio

def _run1():
    ...

async def _run2():
    ...

def main():
    runtime = tonio.runtime()
    runtime.run_until_complete(_run1())
    runtime.run_until_complete(_run2())

Runtime options

The run, main and runtime methods accept options, specifically:

option name description default
context enable contextvars usage in coroutines False
signals list of signals to listen to
threads Number of runtime threads # of CPU cores
blocking_threadpool_size Maximum number of blocking threads 128
blocking_threadpool_idle_ttl Idle timeout for blocking threads (in seconds) 30

Events

The core object in TonIO is Event. It's basically a wrapper around an atomic boolean flag, initialised with False. Event provides the following methods:

  • is_set(): return the value of the flag
  • set(): set the flag to True
  • clear(): set the flag to False
  • wait(timeout=None): returns a coroutine you can yield on that unblocks when the flag is set to True or the timeout expires. Timeout is in seconds.

yield syntax

import tonio

@tonio.main
def main():
    event = tonio.Event()

    def setter():
        yield tonio.sleep(1)
        event.set()

    tonio.spawn(setter())
    yield event.wait()

await syntax

import tonio.colored as tonio

@tonio.main
async def main():
    event = tonio.Event()

    async def setter():
        await tonio.sleep(1)
        event.set()

    tonio.spawn(setter())
    await event.wait()

Spawning tasks

TonIO provides the spawn method to schedule new coroutines onto the runtime:

yield syntax

import tonio

def doubv(v):
    yield
    return v * 2

@tonio.main
def main():
    parallel = tonio.spawn(doubv(2), doubv(3))
    v3 = yield doubv(4)
    v1, v2 = yield parallel
    print([v1, v2, v3])

await syntax

import tonio.colored as tonio

async def doubv(v):
    await tonio.yield_now()
    return v * 2

@tonio.main
async def main():
    parallel = tonio.spawn(doubv(2), doubv(3))
    v3 = await doubv(4)
    v1, v2 = await parallel
    print([v1, v2, v3])

Coroutines passed to spawn get schedule onto the runtime immediately. Using yield or await on the return value of spawn just waits for the coroutines to complete and retreive the results.

Blocking tasks

TonIO provides the spawn_blocking method to schedule blocking operations onto the runtime:

yield syntax

import tonio

def read_file(path):
    with open(file, "r") as f:
        return f.read()

@tonio.main
def main():
    file_data = yield tonio.spawn_blocking(
        read_file, 
        "sometext.txt"
    )

await syntax

import tonio.colored as tonio

def read_file(path):
    with open(file, "r") as f:
        return f.read()

@tonio.main
async def main():
    file_data = await tonio.spawn_blocking(
        read_file, 
        "sometext.txt"
    )

Running tasks from synchronous contexts

TonIO provides the block_on method to spawn coroutines from a synchronous context. It works the same way of spawn, except it accepts a single coroutine and it blocks the current thread until the coroutine is completed.

Warning: using block_on from within a coroutine might produce a runtime deadlock.

Map utilities

TonIO provides the map and map_blocking utilities to spawn the same operation with an iterable of parameters:

yield syntax

import tonio

accum = []

def task(no):
    yield tonio.sleep(0.5)
    accum.append(no * 2)

@tonio.main
def main():
    yield tonio.map(task, range(4))

await syntax

import tonio.colored as tonio

accum = []

async def task(no):
    await tonio.sleep(0.5)
    accum.append(no * 2)

@tonio.main
async def main():
    await tonio.map(task, range(4))

Completion-based iterators

TonIO provides the as_completed utility to iterate over task results based on completion order:

yield syntax

import tonio

def _sleep(v):
    yield tonio.sleep(v)
    return v

@tonio.main
def main():
    vals = []
    for task in tonio.as_completed(
        _sleep(0.5),
        _sleep(0.1),
        _sleep(0.3),
    ):
        vals.append(yield task)

await syntax

import tonio.colored as tonio

async def _sleep(v):
    await tonio.sleep(v)
    return v

@tonio.main
async def main():
    vals = []
    async for val in tonio.as_completed(
        _sleep(0.5),
        _sleep(0.1),
        _sleep(0.3),
    ):
        vals.append(val)

Scopes and cancellations

TonIO provides a scope context, that lets you cancel work spawned within it:

yield syntax

import tonio

def slow_push(target, sleep):
    yield tonio.sleep(sleep)
    target.append(True)

@tonio.main
def main():
    values = []
    with tonio.scope() as scope:
        scope.spawn(_slow_push(values, 0.1))
        scope.spawn(_slow_push(values, 2))
        yield tonio.sleep(0.2)
        scope.cancel()
    yield scope()
    assert len(values) == 1

await syntax

import tonio.colored as tonio

async def slow_push(target, sleep):
    await tonio.sleep(sleep)
    target.append(True)

@tonio.main
async def main():
    values = []
    async with tonio.scope() as scope:
        scope.spawn(_slow_push(values, 0.1))
        scope.spawn(_slow_push(values, 2))
        await tonio.sleep(0.2)
        scope.cancel()
    assert len(values) == 1

When you yield on the scope, it will wait for all the spawned coroutines to end. If the scope was canceled, then all the pending coroutines will be canceled.

Note: as you can see, the colored version of scope doesn't require to be awaited, as it will yield when exiting the context.

Select first completing task

TonIO also provides a select utility to cancel remaining work on the first completing task:

yield syntax

import tonio

def slow_push(target, sleep):
    yield tonio.sleep(sleep)
    target.append(True)

@tonio.main
def main():
    values = []
    yield tonio.select(
        _slow_push(values, 0.1),
        _slow_push(values, 2)
    )
    assert len(values) == 1

await syntax

import tonio.colored as tonio

async def slow_push(target, sleep):
    await tonio.sleep(sleep)
    target.append(True)

@tonio.main
async def main():
    values = []
    await tonio.select(
        _slow_push(values, 0.1),
        _slow_push(values, 2)
    )
    assert len(values) == 1
  • tonio.time.time(): a function returning the runtime's clock (in seconds, microsecond resolution)
  • tonio.time.sleep(delay): a coroutine you can yield on to sleep (delay is in seconds)
  • tonio.time.timeout(coro, timeout): a coroutine you can yield on returning a tuple (output, success). If the coroutine succeeds in the given time then the pair (output, True) is returned. Otherwise this will return (None, False).

Note: time.sleep is also exported to the main tonio module.

Note: all of the above functions are also present in tonio.colored.time module.

Scheduling work

TonIO provides the time.interval function to create interval objects you can yield on a scheduled basis:

yield syntax

import tonio
from tonio import time

def some_task():
    ...

def scheduler():
    interval = time.interval(1)
    while True:
        yield interval.tick()
        tonio.spawn(some_task())

@tonio.main
def main():
    tonio.spawn(scheduler())
    # do some other work

await syntax

import tonio.colored as tonio
from tonio.colored import time

async def some_task():
    ...

async def scheduler():
    interval = time.interval(1)
    while True:
        await interval.tick()
        tonio.spawn(some_task())

@tonio.main
async def main():
    tonio.spawn(scheduler())
    # do some other work

The interval method first argument is the interval in seconds resolution, and the method also accepts an optional at argument, to delay the first execution at a specific time (from the runtime's clock perspective):

from tonio import time

# tick every 500ms, with the first tick happening in 5 seconds from now
interval = time.interval(0.5, time.time() + 5)

Synchronization primitives

Synchronization primitives are exposed in the tonio.sync module.

Lock

Implements a classic mutex, or a non-reentrant, single-owner lock for coroutines:

yield syntax

import tonio
from tonio import sync

@tonio.main
def main():
    # counter can't go above 1
    counter = 0

    def _count(lock):
        nonlocal counter
        with (yield lock()):
            counter += 1
            yield
            counter -= 1
    
    lock = sync.Lock()
    yield tonio.spawn(*[
        _count(lock)
        for _ in range(10)
    ])

await syntax

import tonio.colored as tonio
from tonio.colored import sync

@tonio.main
async def main():
    # counter can't go above 1
    counter = 0

    async def _count(lock):
        nonlocal counter
        async with lock:
            counter += 1
            await tonio.yield_now()
            counter -= 1
    
    lock = sync.Lock()
    await tonio.spawn(*[
        _count(lock)
        for _ in range(10)
    ])

The Lock object also implements an or_raise method, that will immediately fail when the lock cannot be acquired:

from tonio.exceptions import WouldBlock

try:
    with lock.or_raise():
        ...
except WouldBlock:
    ...

Semaphore

A semaphore for coroutines:

yield syntax

import tonio
from tonio import sync

@tonio.main
def main():
    # counter can't go above 2
    counter = 0

    def _count(semaphore):
        nonlocal counter
        with (yield semaphore()):
            counter += 1
            yield
            counter -= 1
    
    semaphore = sync.Semaphore(2)
    yield tonio.spawn(*[
        _count(semaphore)
        for _ in range(10)
    ])

await syntax

import tonio.colored as tonio
from tonio.colored import sync

@tonio.main
async def main():
    # counter can't go above 2
    counter = 0

    async def _count(semaphore):
        nonlocal counter
        async with semaphore:
            counter += 1
            await tonio.yield_now()
            counter -= 1
    
    semaphore = sync.Semaphore(2)
    await tonio.spawn(*[
        _count(semaphore)
        for _ in range(10)
    ])

As for locks, the Semaphore object also implements an or_raise method, that will immediately fail when the lock cannot be acquired:

from tonio.exceptions import WouldBlock

try:
    with semaphore.or_raise():
        ...
except WouldBlock:
    ...

The Semaphore object also implements a tokens method, that returns the number of available tokens.

Barrier

A barrier for coroutines:

yield syntax

import tonio
from tonio import sync

@tonio.main
def main():
    barrier = sync.Barrier(3)
    count = 0

    def _start_at_3():
        nonlocal count
        count += 1
        i = yield barrier.wait()
        assert count == 3
        return i

    yield tonio.spawn(*[
        _start_at_3()
        for _ in range(3)
    ])

await syntax

import tonio.colored as tonio
from tonio.colored import sync

@tonio.main
async def main():
    barrier = sync.Barrier(3)
    count = 0

    async def _start_at_3():
        nonlocal count
        count += 1
        i = await barrier.wait()
        assert count == 3
        return i

    await tonio.spawn(*[
        _start_at_3()
        for _ in range(3)
    ])

The Barrier object also implements a value method, which returns the current value of the barrier.

Channels

Multi-producer multi-consumer channels for inter-coroutine communication.

The tonio.sync.channel module provides both a channel and an unbounded constructors.
The main difference between bounded and unbounded channels, as the names suggest, is that while the first will suspend sending messages once the specified length is reached, and it will resume accepting messages once the existing buffer is consumed, the latter will always accept new messages. That's also why, the sender part of a bounded channel is async, while in the unbounded is not.

Bounded channel

yield syntax

import tonio
from tonio import sync
from tonio.sync import channel

def producer(sender, barrier, offset):
    for i in range(20):
        message = offset + 1
        yield sender.send(message)
    yield barrier.wait()

def consumer(receiver):
    while True:
        try:
            message = yield receiver.receive()
            print(message)
        except Exception:
            break

@tonio.main
def main():
    def close(sender, barrier):
        yield barrier.wait()
        sender.close()

    sender, receiver = channel.channel(2)
    barrier = sync.Barrier(3)
    yield tonio.spawn(*[
        producer(sender, barrier, 100),
        producer(sender, barrier, 200),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        close(sender, barrier),
    ])

await syntax

import tonio.colored as tonio
from tonio.colored import sync
from tonio.colored.sync import channel

async def producer(sender, barrier, offset):
    for i in range(20):
        message = offset + 1
        await sender.send(message)
    await barrier.wait()

async def consumer(receiver):
    while True:
        try:
            message = await receiver.receive()
            print(message)
        except Exception:
            break

@tonio.main
async def main():
    async def close(sender, barrier):
        await barrier.wait()
        sender.close()

    sender, receiver = channel.channel(2)
    barrier = sync.Barrier(3)
    await tonio.spawn(*[
        producer(sender, barrier, 100),
        producer(sender, barrier, 200),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        close(sender, barrier),
    ])
Unbounded channel

yield syntax

import tonio
from tonio import sync
from tonio.sync import channel

def producer(sender, barrier, offset):
    for i in range(20):
        message = offset + 1
        sender.send(message)
    yield barrier.wait()

def consumer(receiver):
    while True:
        try:
            message = yield receiver.receive()
            print(message)
        except Exception:
            break

@tonio.main
def main():
    def close(sender, barrier):
        yield barrier.wait()
        sender.close()

    sender, receiver = channel.unbounded()
    barrier = sync.Barrier(3)
    yield tonio.spawn(*[
        producer(sender, barrier, 100),
        producer(sender, barrier, 200),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        close(sender, barrier),
    ])

await syntax

import tonio.colored as tonio
from tonio.colored import sync
from tonio.colored.sync import channel

async def producer(sender, barrier, offset):
    for i in range(20):
        message = offset + 1
        sender.send(message)
    await barrier.wait()

async def consumer(receiver):
    while True:
        try:
            message = await receiver.receive()
            print(message)
        except Exception:
            break

@tonio.main
async def main():
    async def close(sender, barrier):
        await barrier.wait()
        sender.close()

    sender, receiver = channel.unbounded()
    barrier = sync.Barrier(3)
    await tonio.spawn(*[
        producer(sender, barrier, 100),
        producer(sender, barrier, 200),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        consumer(receiver),
        close(sender, barrier),
    ])

Network module

Network primitives are exposed under the tonio.net module.

Streams

The high-level network primitives in TonIO are centered aroud the SocketStream and SocketListener objects.

The SocketListener object implements an accept coroutine which returns a SocketStream object.
The SocketStream object implements the send_all and receive_some coroutines to send and receive data.
Both objects implement a close method to shutdown the underlying socket.

You can create and interact with the above objects using some high-level helpers in the net module, specifically:

  • open_tcp_stream: a coroutine to open a SocketStream connected to a TCP endpoint
  • open_unix_socket: a coroutine to open a SocketStream connected to a Unix socket
  • open_tcp_listeners: a coroutine to initialise SocketListener objects
  • open_unix_listener: a coroutine to initialise a SocketListener on a Unix socket path
  • serve_listeners: a coroutine to spawn SocketListener accept loops targeting a handler
  • serve_tcp: a coroutine that joins open_tcp_listeners and serve_listeners in one call
  • serve_unix: a coroutine that joins open_unix_listener and serve_listeners in one call

yield syntax

from tonio.net import open_tcp_stream, serve_tcp

def server():
    yield serve_tcp(
        server_handle, 
        host='127.0.0.1', 
        port=8000
    )

def server_handle(stream):
    # receive some data
    data = yield stream.receive_some()

def client():
    stream = yield open_tcp_stream(
        host='127.0.0.1', 
        port=8000
    )
    # send some data
    yield stream.send_all("message")

await syntax

from tonio.colored.net import open_tcp_stream, serve_tcp

async def server():
    await serve_tcp(
        server_handle, 
        host='127.0.0.1', 
        port=8000
    )

async def server_handle(stream):
    # receive some data
    data = await stream.receive_some()

async def client():
    stream = await open_tcp_stream(
        host='127.0.0.1', 
        port=8000
    )
    # send some data
    await stream.send_all("message")

Unix domain sockets use the same objects, with serve_unix and open_unix_socket:

yield syntax

from tonio.net import open_unix_socket, serve_unix

def server():
    yield serve_unix(
        server_handle, 
        '/tmp/app.sock', 
        mode=0o600
    )

def client():
    stream = yield open_unix_socket(
        '/tmp/app.sock'
    )
    yield stream.send_all("message")

await syntax

from tonio.colored.net import open_unix_socket, serve_unix

async def server():
    await serve_unix(
        server_handle, 
        '/tmp/app.sock', 
        mode=0o600
    )

async def client():
    stream = await open_unix_socket(
        '/tmp/app.sock'
    )
    await stream.send_all("message")

TLS streams

TonIO implement TLS wrappers around the streaming APIs through primitives in the tonio.net.tls module.

TonIO provides the TLSStream and TLSListener object wrappers and the following high-level helpers:

  • open_tls_over_tcp_stream: a coroutine to open a TLSStream wrapping a TCP SocketStream
  • open_tls_over_tcp_listeners: a coroutine to initialise TLSListener objects
  • serve_tls_over_tcp: a coroutine that joins open_tls_over_tcp_listeners and serve_listeners in one call

Low-level sockets

The tonio.net.socket module provides TonIO's basic low-level networking API.
Generally, the API exposed by this module mirrors the standard library socket module.

TonIO socket objects are overall very similar to the standard library socket objects, with the main difference being that blocking methods become coroutines.

yield syntax

import tonio
from tonio.net import socket

def server():
    sock = socket.socket()
    with sock:
        yield sock.bind(('127.0.0.1', 8000))
        sock.listen()

        while True:
            client, _ = yield sock.accept()
            tonio.spawn(server_handle(client))

def server_handle(connection):
    with connection:
        # receive some data
        data = yield connection.recv(4096)

def client():
    sock = socket.socket()
    with sock:
        yield sock.connect(('127.0.0.1', 8000))
        yield sock.send("message")

await syntax

import tonio.colored as tonio
from tonio.colored.net import socket

async def server():
    sock = socket.socket()
    with sock:
        await sock.bind(('127.0.0.1', 8000))
        sock.listen()

        while True:
            client, _ = await sock.accept()
            tonio.spawn(server_handle(client))

async def server_handle(connection):
    with connection:
        # receive some data
        data = await connection.recv(4096)

async def client():
    sock = socket.socket()
    with sock:
        await sock.connect(('127.0.0.1', 8000))
        await sock.send("message")

Filesystem module

TonIO's fs module exposes async API for filesystem operations (that are run in the blocking thread-pool). It provides open, a Path class mirroring pathlib.Path, and wrap_file to adopt an already-open file object.

yield syntax

import tonio
import tonio.fs as fs

def main():
    f = yield fs.open('data.txt', 'w')
    yield f.write('hello')
    yield f.close()

    path = fs.Path('data.txt')
    if (yield path.exists()):
        print((yield path.read_text()))

    for entry in (yield fs.Path('.').iterdir()):
        print(entry.name)

await syntax

import tonio.colored as tonio
import tonio.colored.fs as fs

async def main():
    async with await fs.open('data.txt', 'w') as f:
        await f.write('hello')

    path = fs.Path('data.txt')
    if await path.exists():
        print(await path.read_text())

    for entry in await fs.Path('.').iterdir():
        print(entry.name)

Operations that touch the filesystem are asynchronous; everything else stays synchronous.

Note: methods returning several paths (iterdir, glob, rglob, walk) are resolved in a single hop and give back a list. Since walk is fully materialised, mutating its dirnames does not prune the traversal, unlike pathlib.Path.walk.

Reading a file line by line differs between the two flavours. The await syntax supports async for and async with, neither of which the yield syntax can express:

yield syntax

def read_lines(path):
    f = yield fs.open(path, 'r')
    try:
        while True:
            line = yield f.readline()
            if not line:
                break
            print(line)
    finally:
        yield f.close()

await syntax

async def read_lines(path):
    async with await fs.open(path, 'r') as f:
        async for line in f:
            print(line)

Subprocesses

TonIO exposes two coroutines to run child processes: run_process for the common "run it and collect the outcome" case, and open_process for interacting with a process while it runs. Both spawn the process on the blocking thread-pool.

run_process returns a subprocess.CompletedProcess and accepts:

  • stdin: bytes to feed to the child (defaults to b'', meaning "close stdin immediately"), or a file descriptor/subprocess constant
  • capture_stdout / capture_stderr: when true, the relevant stream is collected and available on the result
  • check: when true (the default), a non-zero exit code raises subprocess.CalledProcessError

Any other keyword argument is forwarded to subprocess.Popen.

yield syntax

import tonio

def main():
    result = yield tonio.run_process(
        ['echo', 'hello'],
        capture_stdout=True
    )
    print(result.returncode)
    print(result.stdout)

await syntax

import tonio.colored as tonio

async def main():
    result = await tonio.run_process(
        ['echo', 'hello'],
        capture_stdout=True
    )
    print(result.returncode)
    print(result.stdout)

open_process returns a Process object instead, giving access to the running child. Passing subprocess.PIPE for stdin, stdout or stderr exposes the corresponding pipe as a stream on the process object, implementing the same send_all and receive_some coroutines of network streams:

yield syntax

import subprocess
import tonio

def main():
    proc = yield tonio.open_process(
        ['cat'],
        stdin=subprocess.PIPE,
        stdout=subprocess.PIPE
    )
    yield proc.stdin.send_all(b'hello')
    proc.stdin.close()
    data = yield proc.stdout.receive_some()
    code = yield proc.wait()

await syntax

import subprocess
import tonio.colored as tonio

async def main():
    proc = await tonio.open_process(
        ['cat'],
        stdin=subprocess.PIPE,
        stdout=subprocess.PIPE
    )
    await proc.stdin.send_all(b'hello')
    proc.stdin.close()
    data = await proc.stdout.receive_some()
    code = await proc.wait()

The Process object exposes:

  • args and pid: the command and the process identifier
  • stdin, stdout, stderr: the piped streams, or None when not piped
  • stdio: a (stdin, stdout) tuple, when both are piped
  • returncode and poll(): the exit code, or None while the process is still running
  • wait: a coroutine waiting for the process to exit, returning its exit code
  • send_signal, terminate, kill: synchronous methods to signal the process

Note: unlike run_process, open_process does not reap the child for you: remember to wait on it — possibly after a kill — otherwise the child outlives your task.

Note: processes in TonIO only communicate over unbuffered byte streams: the universal_newlines, text, encoding, errors and bufsize options of subprocess are not supported.

Signals

TonIO provides a context manager to catch signals.

The usage of such context manager requires to first configure the runtime to listen for such signals:

yield syntax

import signal
import tonio
from tonio.time import interval

def sig_handle():
    with tonio.signal_receiver(
        signal.SIGHUP, 
        signal.SIGUSR1
    ) as sigs:
        for ev in sigs:
            sig = yield ev
            if sig == signal.SIGHUP:
                ...

@tonio.main(
    signals=[signal.SIGHUP, signal.SIGUSR1]
)
def main():
    tonio.spawn(sig_handle())
    ticker = interval(1)
    while True:
        yield ticker.tick()

await syntax

import signal
import tonio.colored as tonio
from tonio.colored.time import interval

async def sig_handle():
    with tonio.signal_receiver(
        signal.SIGHUP, 
        signal.SIGUSR1
    ) as sigs:
        async for sig in sigs:
            if sig == signal.SIGHUP:
                ...

@tonio.main(
    signals=[signal.SIGHUP, signal.SIGUSR1]
)
async def main():
    tonio.spawn(sig_handle())
    ticker = interval(1)
    while True:
        await ticker.tick()

Libraries built on TonIO

In addition to the patches provided by the TonIO-Monkey project, the following libraries target TonIO natively:

License

TonIO is released under the BSD License.

Metadata

Release files for tonio 0.9.11

For a detailed explanation of source distributions (sdists) and built distributions (wheels), please see the package formats documentation.

Source distribution (sdist)

Source distribution for tonio 0.9.11
File Size Uploaded
tonio-0.9.11.tar.gz 90.6 kB Details

Built distributions (wheels)

Table of built distributions (wheels) for tonio 0.9.11
File
tonio-0.9.11-cp315-cp315t-musllinux_1_1_x86_64.whl CPython 3.15 CPython 3.15 free-threading Linux musl 1.1+ x86-64 Details
tonio-0.9.11-cp315-cp315t-musllinux_1_1_armv7l.whl CPython 3.15 CPython 3.15 free-threading Linux musl 1.1+ ARMv7l Details
tonio-0.9.11-cp315-cp315t-musllinux_1_1_aarch64.whl CPython 3.15 CPython 3.15 free-threading Linux musl 1.1+ ARM64 Details
tonio-0.9.11-cp315-cp315t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.15 CPython 3.15 free-threading Linux glibc 2.17+ x86-64 Details
tonio-0.9.11-cp315-cp315t-manylinux_2_17_armv7l.manylinux2014_armv7l.whl CPython 3.15 CPython 3.15 free-threading Linux glibc 2.17+ ARMv7l Details
tonio-0.9.11-cp315-cp315t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.15 CPython 3.15 free-threading Linux glibc 2.17+ ARM64 Details
tonio-0.9.11-cp315-cp315t-manylinux_2_12_i686.manylinux2010_i686.whl CPython 3.15 CPython 3.15 free-threading Linux glibc 2.12+ x86-32 Details
tonio-0.9.11-cp315-cp315t-macosx_11_0_arm64.whl CPython 3.15 CPython 3.15 free-threading macOS 11.0+ ARM64 Details
tonio-0.9.11-cp315-cp315t-macosx_10_12_x86_64.whl CPython 3.15 CPython 3.15 free-threading macOS 10.12+ x86-64 Details
tonio-0.9.11-cp314-cp314t-musllinux_1_1_x86_64.whl CPython 3.14 CPython 3.14 free-threading Linux musl 1.1+ x86-64 Details
tonio-0.9.11-cp314-cp314t-musllinux_1_1_armv7l.whl CPython 3.14 CPython 3.14 free-threading Linux musl 1.1+ ARMv7l Details
tonio-0.9.11-cp314-cp314t-musllinux_1_1_aarch64.whl CPython 3.14 CPython 3.14 free-threading Linux musl 1.1+ ARM64 Details
tonio-0.9.11-cp314-cp314t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ x86-64 Details
tonio-0.9.11-cp314-cp314t-manylinux_2_17_armv7l.manylinux2014_armv7l.whl CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ ARMv7l Details
tonio-0.9.11-cp314-cp314t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ ARM64 Details
tonio-0.9.11-cp314-cp314t-manylinux_2_12_i686.manylinux2010_i686.whl CPython 3.14 CPython 3.14 free-threading Linux glibc 2.12+ x86-32 Details
tonio-0.9.11-cp314-cp314t-macosx_11_0_arm64.whl CPython 3.14 CPython 3.14 free-threading macOS 11.0+ ARM64 Details
tonio-0.9.11-cp314-cp314t-macosx_10_12_x86_64.whl CPython 3.14 CPython 3.14 free-threading macOS 10.12+ x86-64 Details

Total release size: 8.8 MB

Release files / tonio-0.9.11.tar.gz

Download URL tonio-0.9.11.tar.gz
Size 90.6 kB
Tags Source
SHA-256 checksum
How to use checksums
af740db5957749b460518704e432622401d85c0506fa60acd668d46d5d006c95
BLAKE2b-256 checksum
How to use checksums
adb2a04dda542d72fd28ec632e171182835df0e5493701ef44b609cac83e03c2
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-musllinux_1_1_x86_64.whl

Download URL tonio-0.9.11-cp315-cp315t-musllinux_1_1_x86_64.whl
Size 638.3 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux musl 1.1+ x86-64
SHA-256 checksum
How to use checksums
4b3aaa36f511659781a6711aa2c606ee8f9842351bfc784546ea70e0edd4acb1
BLAKE2b-256 checksum
How to use checksums
116a08a4e18e8e62c30e890260058e2cf283333e59f51737adee383e0235851d
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-musllinux_1_1_armv7l.whl

Download URL tonio-0.9.11-cp315-cp315t-musllinux_1_1_armv7l.whl
Size 697.6 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux musl 1.1+ ARMv7l
SHA-256 checksum
How to use checksums
96a7ac64e5888ee40edbab1007c6b09960be86b20dcaf58aab89768cce68e0cd
BLAKE2b-256 checksum
How to use checksums
5bf661d3cd08ad09c91b8abceadf3684c0cc579a8dc6d56e1358554b17939f68
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-musllinux_1_1_aarch64.whl

Download URL tonio-0.9.11-cp315-cp315t-musllinux_1_1_aarch64.whl
Size 587.4 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux musl 1.1+ ARM64
SHA-256 checksum
How to use checksums
90c44f679094148ff494af1505e39e838a4a7194a0b7a2502ec17e4aa61c61bc
BLAKE2b-256 checksum
How to use checksums
f660cfe174c39aee1dbb2ca8031bf6423a5ed7dc63db1298d915ab7c6986cfb1
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl

Download URL tonio-0.9.11-cp315-cp315t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Size 424.5 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux glibc 2.17+ x86-64
SHA-256 checksum
How to use checksums
d5ee9e848973c8a910f5e82777446d29d51925a74cf0d7ddd7c886048f6f687e
BLAKE2b-256 checksum
How to use checksums
140b393e038b71dad4ff11c239d8ed8ec99cbdc211d2eeb962afd26637bf631e
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-manylinux_2_17_armv7l.manylinux2014_armv7l.whl

Download URL tonio-0.9.11-cp315-cp315t-manylinux_2_17_armv7l.manylinux2014_armv7l.whl
Size 419.8 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux glibc 2.17+ ARMv7l
SHA-256 checksum
How to use checksums
8a186e0f7e403ff0c505509dff317cd19d16230709b3fb11d27370d39d3a232b
BLAKE2b-256 checksum
How to use checksums
811234c005fa0393bd028d00244cd5a36ffd61a15d943539e28b9aada7b86f33
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl

Download URL tonio-0.9.11-cp315-cp315t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Size 409.1 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux glibc 2.17+ ARM64
SHA-256 checksum
How to use checksums
a11d8e5ba192b490fcf21841e6d7c8ae79548419ebc21f51c5aeed67aed497c6
BLAKE2b-256 checksum
How to use checksums
03ad8c5d8ea42f1165d8f7621cd3781bd9042af26a1a022c3f5dd23a8d051d92
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-manylinux_2_12_i686.manylinux2010_i686.whl

Download URL tonio-0.9.11-cp315-cp315t-manylinux_2_12_i686.manylinux2010_i686.whl
Size 447.5 kB
Tags CPython 3.15 CPython 3.15 free-threading Linux glibc 2.12+ x86-32
SHA-256 checksum
How to use checksums
7682be03a94fc1e6d76d75b2c63d651e5777595f8b409ba909c3c37feb1bcd82
BLAKE2b-256 checksum
How to use checksums
be28ca49a58ab0ea29e0282d74fa2b8ef2f9eeb8ecbd737c68bbc1fb549ebb21
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-macosx_11_0_arm64.whl

Download URL tonio-0.9.11-cp315-cp315t-macosx_11_0_arm64.whl
Size 365.7 kB
Tags CPython 3.15 CPython 3.15 free-threading macOS 11.0+ ARM64
SHA-256 checksum
How to use checksums
fe57551d66d0db6d245b0a4dceb7bb95502fc022b238f6054d38c4a909a6376d
BLAKE2b-256 checksum
How to use checksums
411f478faaf3d3b795c964df87535e632473c23572905a63e7c87e7753beb9b7
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp315-cp315t-macosx_10_12_x86_64.whl

Download URL tonio-0.9.11-cp315-cp315t-macosx_10_12_x86_64.whl
Size 386.9 kB
Tags CPython 3.15 CPython 3.15 free-threading macOS 10.12+ x86-64
SHA-256 checksum
How to use checksums
065850fdb8fd91467206fa01af06dcfb4b54e5013b13f147f0e5bb43a33f981b
BLAKE2b-256 checksum
How to use checksums
9be53951cfb461e3b7b228f8e289e58a9571b21e23f41cae5074d1025888a253
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-musllinux_1_1_x86_64.whl

Download URL tonio-0.9.11-cp314-cp314t-musllinux_1_1_x86_64.whl
Size 638.4 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux musl 1.1+ x86-64
SHA-256 checksum
How to use checksums
6d1cd7de6665e513e9f3d20fbcb36347276cc0a91d77bb59776fc6406d2baec0
BLAKE2b-256 checksum
How to use checksums
594aedb19f19a12778b3c404b41073a5a9d026dc71de2073f265c6d8fdaa6874
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-musllinux_1_1_armv7l.whl

Download URL tonio-0.9.11-cp314-cp314t-musllinux_1_1_armv7l.whl
Size 697.4 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux musl 1.1+ ARMv7l
SHA-256 checksum
How to use checksums
c72ab784daec0933e00560a1b9b3d1ab66a4ea845a5a6c0a875d0871749da310
BLAKE2b-256 checksum
How to use checksums
e5f99a8ec96d6bcb955d6b0bf90473bddc7e23ba2dc74eaf837b8e0b82f5c53d
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-musllinux_1_1_aarch64.whl

Download URL tonio-0.9.11-cp314-cp314t-musllinux_1_1_aarch64.whl
Size 587.5 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux musl 1.1+ ARM64
SHA-256 checksum
How to use checksums
e3bfbeb4d7eaebeff233853a4f3874be3ce7591d87d8a27dd773d3e4e6b5d1fa
BLAKE2b-256 checksum
How to use checksums
cb9f62b5abde8019e2d56cc3da316b81145246985456a85f707d0ca5e136cf3b
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl

Download URL tonio-0.9.11-cp314-cp314t-manylinux_2_17_x86_64.manylinux2014_x86_64.whl
Size 424.6 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ x86-64
SHA-256 checksum
How to use checksums
2dba4e9cb4b30f97c1396c7b15fb58b5d359fed333d0628be85befacb5549929
BLAKE2b-256 checksum
How to use checksums
5e6ada3df88ae6be31e0faec9217d0c100947a621a5bc5fb8a980b7749aa800d
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-manylinux_2_17_armv7l.manylinux2014_armv7l.whl

Download URL tonio-0.9.11-cp314-cp314t-manylinux_2_17_armv7l.manylinux2014_armv7l.whl
Size 419.6 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ ARMv7l
SHA-256 checksum
How to use checksums
1a1572a72a48f3788c1e85ee7b44e3f8c67fbd9e1e055a5be7f7fe0cee875ecd
BLAKE2b-256 checksum
How to use checksums
ff68ac0b7e95b85c61ce29458e391058dcb30939add556dc50fea95eb0612b46
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl

Download URL tonio-0.9.11-cp314-cp314t-manylinux_2_17_aarch64.manylinux2014_aarch64.whl
Size 408.9 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux glibc 2.17+ ARM64
SHA-256 checksum
How to use checksums
8015fd4070b5efbe8486907b24a6d830a234de5e42af210cf4c1b21e5c481e46
BLAKE2b-256 checksum
How to use checksums
4917920a35fe12b13a7be1e5208f96b38252562b94b112fbabe20a3924f30832
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-manylinux_2_12_i686.manylinux2010_i686.whl

Download URL tonio-0.9.11-cp314-cp314t-manylinux_2_12_i686.manylinux2010_i686.whl
Size 447.3 kB
Tags CPython 3.14 CPython 3.14 free-threading Linux glibc 2.12+ x86-32
SHA-256 checksum
How to use checksums
155b59bf7c6f6c59cc01720e2498e0927bc8e7321de7954eeec938dd2da08ca5
BLAKE2b-256 checksum
How to use checksums
241d936d625b2f643df4b6b900059320c512335a2905903d5f8435e38f0d787a
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-macosx_11_0_arm64.whl

Download URL tonio-0.9.11-cp314-cp314t-macosx_11_0_arm64.whl
Size 365.8 kB
Tags CPython 3.14 CPython 3.14 free-threading macOS 11.0+ ARM64
SHA-256 checksum
How to use checksums
91317b3ef48d7616f7f050bcdffc0b51878868c5bb47cd1efdfa0e4002fd6229
BLAKE2b-256 checksum
How to use checksums
4267ea70234feb4bebb40147b2e1be73a066d60c293e36eb47a42ed2a268b3f9
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release files / tonio-0.9.11-cp314-cp314t-macosx_10_12_x86_64.whl

Download URL tonio-0.9.11-cp314-cp314t-macosx_10_12_x86_64.whl
Size 387.0 kB
Tags CPython 3.14 CPython 3.14 free-threading macOS 10.12+ x86-64
SHA-256 checksum
How to use checksums
f7df2b93499ce55ada0b554344597ffbc517bb800d3a7b70841f0e3146e555a6
BLAKE2b-256 checksum
How to use checksums
a45745633d987fa682a9e5926a074e03d322d7d9f10acbf0deb67b2edc0290c3
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
Yes
Uploaded via twine/7.0.0 CPython/3.13.14

Provenance

Provenance describes where a file came from. On PyPI, provenance is shared via attestations, which provide a verifiable record of the build or publishing details. View details, limitations and caveats.

PyPI Publish Attestation

PyPI verified that this artifact, at this checksum, originated from the publisher listed below.

Signed by GitHub Actions, verified by PyPI on Aug 21, 2026.

Transparency log

Release history Release notifications | RSS feed

This release

0.9.11 This release

19 release files

0.9.9

19 release files

0.9.8

19 release files

0.9.7

19 release files

0.9.2

19 release files

0.9.1

19 release files

0.9.0

19 release files

0.8.3

19 release files

0.8.2

19 release files

0.8.1

19 release files

0.8.0

19 release files

0.7.2

19 release files

0.7.0

19 release files

0.3.0

19 release files

0.2.1

19 release files

0.1.0

19 release files

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page