Instant::now (#381)
Currently, the timer uses a `Now` trait to abstract the source of time. This allows time to be mocked out. However, the current implementation has a number of limitations as represented by #288 and #296. The main issues are that `Now` requires `&mut self` which prevents a value from being easily used in a concurrent environment. Also, when wanting to write code that is abstract over the source of time, generics get out of hand. This patch provides an alternate solution. A new type, `Clock` is provided which defaults to `Instant::now` as the source of time, but allows configuring the actual source using a new iteration of the `Now` trait. This time, `Now` is `Send + Sync + 'static`. Internally, `Clock` stores the now value in an `Arc<Now>` value, which introduces dynamism and allows `Clock` values to be cloned and be `Sync`. Also, the current clock can be set for the current execution context using the `with_default` pattern. Because using the `Instant::now` will be the most common case by far, it is special cased in order to avoid the need to allocate an `Arc` and use dynamic dispatch.
Tokio
A runtime for writing reliable, asynchronous, and slim applications with the Rust programming language. It is:
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Fast: Tokio's zero-cost abstractions give you bare-metal performance.
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Reliable: Tokio leverages Rust's ownership, type system, and concurrency model to reduce bugs and ensure thread safety.
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Scalable: Tokio has a minimal footprint, and handles backpressure and cancellation naturally.
Website | Guides | API Docs | Chat
The API docs for the master branch are published here.
Overview
Tokio is an event-driven, non-blocking I/O platform for writing asynchronous applications with the Rust programming language. At a high level, it provides a few major components:
- A multithreaded, work-stealing based task scheduler.
- A reactor backed by the operating system's event queue (epoll, kqueue, IOCP, etc...).
- Asynchronous TCP and UDP sockets.
These components provide the runtime components necessary for building an asynchronous application.
Example
A basic TCP echo server with Tokio:
extern crate tokio;
use tokio::prelude::*;
use tokio::io::copy;
use tokio::net::TcpListener;
fn main() {
// Bind the server's socket.
let addr = "127.0.0.1:12345".parse().unwrap();
let listener = TcpListener::bind(&addr)
.expect("unable to bind TCP listener");
// Pull out a stream of sockets for incoming connections
let server = listener.incoming()
.map_err(|e| eprintln!("accept failed = {:?}", e))
.for_each(|sock| {
// Split up the reading and writing parts of the
// socket.
let (reader, writer) = sock.split();
// A future that echos the data and returns how
// many bytes were copied...
let bytes_copied = copy(reader, writer);
// ... after which we'll print what happened.
let handle_conn = bytes_copied.map(|amt| {
println!("wrote {:?} bytes", amt)
}).map_err(|err| {
eprintln!("IO error {:?}", err)
});
// Spawn the future as a concurrent task.
tokio::spawn(handle_conn)
});
// Start the Tokio runtime
tokio::run(server);
}
More examples can be found here.
Project layout
The tokio crate, found at the root, is primarily intended for use by
application developers. Library authors should depend on the sub crates, which
have greater guarantees of stability.
The crates included as part of Tokio are:
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tokio-executor: Task execution related traits and utilities. -
tokio-fs: Filesystem (and standard in / out) APIs. -
tokio-io: Asynchronous I/O related traits and utilities. -
tokio-reactor: Event loop that drives I/O resources (like TCP and UDP sockets). -
tokio-tcp: TCP bindings for use withtokio-ioandtokio-reactor. -
tokio-threadpool: Schedules the execution of futures across a pool of threads. -
tokio-timer: Time related APIs. -
tokio-udp: UDP bindings for use withtokio-ioandtokio-reactor. -
tokio-uds: Unix Domain Socket bindings for use withtokio-ioandtokio-reactor.
License
This project is licensed under the MIT license.
Contribution
Unless you explicitly state otherwise, any contribution intentionally submitted for inclusion in Tokio by you, shall be licensed as MIT, without any additional terms or conditions.