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actix-net/actix-rt/src/builder.rs

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use std::borrow::Cow;
use std::future::Future;
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use std::io;
use tokio::sync::mpsc::unbounded_channel;
use tokio::sync::oneshot::{channel, Receiver};
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use tokio::task::LocalSet;
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use crate::arbiter::{Arbiter, SystemArbiter};
use crate::runtime::Runtime;
use crate::system::System;
/// Builder struct for a actix runtime.
///
/// Either use `Builder::build` to create a system and start actors.
/// Alternatively, use `Builder::run` to start the tokio runtime and
/// run a function in its context.
pub struct Builder {
/// Name of the System. Defaults to "actix" if unset.
name: Cow<'static, str>,
/// Whether the Arbiter will stop the whole System on uncaught panic. Defaults to false.
stop_on_panic: bool,
}
impl Builder {
pub(crate) fn new() -> Self {
Builder {
name: Cow::Borrowed("actix"),
stop_on_panic: false,
}
}
/// Sets the name of the System.
pub fn name<T: Into<String>>(mut self, name: T) -> Self {
self.name = Cow::Owned(name.into());
self
}
/// Sets the option 'stop_on_panic' which controls whether the System is stopped when an
/// uncaught panic is thrown from a worker thread.
///
/// Defaults to false.
pub fn stop_on_panic(mut self, stop_on_panic: bool) -> Self {
self.stop_on_panic = stop_on_panic;
self
}
/// Create new System.
///
/// This method panics if it can not create tokio runtime
pub fn build(self) -> SystemRunner {
self.create_runtime(|| {})
}
/// Create new System that can run asynchronously.
///
/// This method panics if it cannot start the system arbiter
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pub(crate) fn build_async(self, local: &LocalSet) -> AsyncSystemRunner {
self.create_async_runtime(local)
}
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/// This function will start tokio runtime and will finish once the
/// `System::stop()` message get called.
/// Function `f` get called within tokio runtime context.
pub fn run<F>(self, f: F) -> io::Result<()>
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where
F: FnOnce(),
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{
self.create_runtime(f).run()
}
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fn create_async_runtime(self, local: &LocalSet) -> AsyncSystemRunner {
let (stop_tx, stop) = channel();
let (sys_sender, sys_receiver) = unbounded_channel();
let system =
System::construct(sys_sender, Arbiter::new_system(local), self.stop_on_panic);
// system arbiter
let arb = SystemArbiter::new(stop_tx, sys_receiver);
// start the system arbiter
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let _ = local.spawn_local(arb);
AsyncSystemRunner { stop, system }
}
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fn create_runtime<F>(self, f: F) -> SystemRunner
where
F: FnOnce(),
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{
let (stop_tx, stop) = channel();
let (sys_sender, sys_receiver) = unbounded_channel();
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let rt = Runtime::new().unwrap();
let system = System::construct(
sys_sender,
Arbiter::new_system(rt.local()),
self.stop_on_panic,
);
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// system arbiter
let arb = SystemArbiter::new(stop_tx, sys_receiver);
rt.spawn(arb);
// init system arbiter and run configuration method
rt.block_on(async { f() });
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SystemRunner { rt, stop, system }
}
}
#[derive(Debug)]
pub(crate) struct AsyncSystemRunner {
stop: Receiver<i32>,
system: System,
}
impl AsyncSystemRunner {
/// This function will start event loop and returns a future that
/// resolves once the `System::stop()` function is called.
Migrate actix-net to std::future (#64) * Migrate actix-codec, actix-rt, and actix-threadpool to std::future * update to latest tokio alpha and futures-rs * Migrate actix-service to std::future, This is a squash of ~8 commits, since it included a lot of experimentation. To see the commits, look into the semtexzv/std-future-service-tmp branch. * update futures-rs and tokio * Migrate actix-threadpool to std::future (#59) * Migrate actix-threadpool to std::future * Cosmetic refactor - turn log::error! into log::warn! as it doesn't throw any error - add Clone and Copy impls for Cancelled making it cheap to operate with - apply rustfmt * Bump up crate version to 0.2.0 and pre-fill its changelog * Disable patching 'actix-threadpool' crate in global workspace as unnecessary * Revert patching and fix 'actix-rt' * Migrate actix-rt to std::future (#47) * remove Pin from Service::poll_ready(); simplify combinators api; make code compile * disable tests * update travis config * refactor naming * drop IntoFuture trait * Migrate actix-server to std::future (#50) Still not finished, this is more WIP, this is an aggregation of several commits, which can be found in semtexzv/std-future-server-tmp branch * update actix-server * rename Factor to ServiceFactory * start server worker in start mehtod * update actix-utils * remove IntoTransform trait * Migrate actix-server::ssl::nativetls to std futures (#61) * Refactor 'nativetls' module * Migrate 'actix-server-config' to std futures - remove "uds" feature - disable features by default * Switch NativeTlsAcceptor to use 'tokio-tls' crate * Bikeshed features names and remove unnecessary dependencies for 'actix-server-config' crate * update openssl impl * migrate actix-connect to std::future * migrate actix-ioframe to std::future * update version to alpha.1 * fix boxed service * migrate server rustls support * migratte openssl and rustls connecttors * store the thread's handle with arbiter (#62) * update ssl connect tests * restore service tests * update readme
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pub(crate) fn run_nonblocking(self) -> impl Future<Output = Result<(), io::Error>> + Send {
let AsyncSystemRunner { stop, .. } = self;
// run loop
async {
match stop.await {
Ok(code) => {
if code != 0 {
Err(io::Error::new(
io::ErrorKind::Other,
format!("Non-zero exit code: {}", code),
))
} else {
Ok(())
}
}
Err(e) => Err(io::Error::new(io::ErrorKind::Other, e)),
Migrate actix-net to std::future (#64) * Migrate actix-codec, actix-rt, and actix-threadpool to std::future * update to latest tokio alpha and futures-rs * Migrate actix-service to std::future, This is a squash of ~8 commits, since it included a lot of experimentation. To see the commits, look into the semtexzv/std-future-service-tmp branch. * update futures-rs and tokio * Migrate actix-threadpool to std::future (#59) * Migrate actix-threadpool to std::future * Cosmetic refactor - turn log::error! into log::warn! as it doesn't throw any error - add Clone and Copy impls for Cancelled making it cheap to operate with - apply rustfmt * Bump up crate version to 0.2.0 and pre-fill its changelog * Disable patching 'actix-threadpool' crate in global workspace as unnecessary * Revert patching and fix 'actix-rt' * Migrate actix-rt to std::future (#47) * remove Pin from Service::poll_ready(); simplify combinators api; make code compile * disable tests * update travis config * refactor naming * drop IntoFuture trait * Migrate actix-server to std::future (#50) Still not finished, this is more WIP, this is an aggregation of several commits, which can be found in semtexzv/std-future-server-tmp branch * update actix-server * rename Factor to ServiceFactory * start server worker in start mehtod * update actix-utils * remove IntoTransform trait * Migrate actix-server::ssl::nativetls to std futures (#61) * Refactor 'nativetls' module * Migrate 'actix-server-config' to std futures - remove "uds" feature - disable features by default * Switch NativeTlsAcceptor to use 'tokio-tls' crate * Bikeshed features names and remove unnecessary dependencies for 'actix-server-config' crate * update openssl impl * migrate actix-connect to std::future * migrate actix-ioframe to std::future * update version to alpha.1 * fix boxed service * migrate server rustls support * migratte openssl and rustls connecttors * store the thread's handle with arbiter (#62) * update ssl connect tests * restore service tests * update readme
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}
}
}
}
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/// Helper object that runs System's event loop
#[must_use = "SystemRunner must be run"]
#[derive(Debug)]
pub struct SystemRunner {
rt: Runtime,
stop: Receiver<i32>,
system: System,
}
impl SystemRunner {
/// This function will start event loop and will finish once the
/// `System::stop()` function is called.
pub fn run(self) -> io::Result<()> {
let SystemRunner { rt, stop, .. } = self;
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// run loop
match rt.block_on(stop) {
Ok(code) => {
if code != 0 {
Err(io::Error::new(
io::ErrorKind::Other,
format!("Non-zero exit code: {}", code),
))
} else {
Ok(())
}
}
Err(e) => Err(io::Error::new(io::ErrorKind::Other, e)),
}
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}
/// Execute a future and wait for result.
#[inline]
pub fn block_on<F: Future>(&self, fut: F) -> F::Output {
self.rt.block_on(fut)
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}
}