##// END OF EJS Templates
dirstate-tree: optimize HashMap lookups with raw_entry_mut...
dirstate-tree: optimize HashMap lookups with raw_entry_mut This switches to using `HashMap` from the hashbrown crate, in order to use its `raw_entry_mut` method. The standard library’s `HashMap` is also based on this same crate, but `raw_entry_mut` is not yet stable there: https://github.com/rust-lang/rust/issues/56167 Using version 0.9 because 0.10 is yanked and 0.11 requires Rust 1.49 This replaces in `DirstateMap::get_or_insert_node` a call to `HashMap<K, V>::entry` with `K = WithBasename<Cow<'on_disk, HgPath>>`. `entry` takes and consumes an "owned" `key: K` parameter, in case a new entry ends up inserted. This key is converted by `to_cow` from a value that borrows the `'path` lifetime. When this function is called by `Dirstate::new_v1`, `'path` is in fact the same as `'on_disk` so `to_cow` can return an owned key that contains `Cow::Borrowed`. For other callers, `to_cow` needs to create a `Cow::Owned` and thus make a costly heap memory allocation. This is wasteful if this key was already present in the map. Even when inserting a new node this is typically the case for its ancestor nodes (assuming most directories have numerous descendants). Differential Revision: https://phab.mercurial-scm.org/D12317

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uihandler.rs
94 lines | 2.7 KiB | application/rls-services+xml | RustLexer
// Copyright 2018 Yuya Nishihara <yuya@tcha.org>
//
// This software may be used and distributed according to the terms of the
// GNU General Public License version 2 or any later version.
use async_trait::async_trait;
use std::io;
use std::os::unix::io::AsRawFd;
use std::os::unix::process::ExitStatusExt;
use std::process::Stdio;
use tokio;
use tokio::process::{Child, ChildStdin, Command};
use crate::message::CommandSpec;
use crate::procutil;
/// Callback to process shell command requests received from server.
#[async_trait]
pub trait SystemHandler {
type PagerStdin: AsRawFd;
/// Handles pager command request.
///
/// Returns the pipe to be attached to the server if the pager is spawned.
async fn spawn_pager(
&mut self,
spec: &CommandSpec,
) -> io::Result<Self::PagerStdin>;
/// Handles system command request.
///
/// Returns command exit code (positive) or signal number (negative).
async fn run_system(&mut self, spec: &CommandSpec) -> io::Result<i32>;
}
/// Default cHg implementation to process requests received from server.
pub struct ChgUiHandler {
pager: Option<Child>,
}
impl ChgUiHandler {
pub fn new() -> ChgUiHandler {
ChgUiHandler { pager: None }
}
/// Waits until the pager process exits.
pub async fn wait_pager(&mut self) -> io::Result<()> {
if let Some(p) = self.pager.take() {
p.await?;
}
Ok(())
}
}
#[async_trait]
impl SystemHandler for ChgUiHandler {
type PagerStdin = ChildStdin;
async fn spawn_pager(
&mut self,
spec: &CommandSpec,
) -> io::Result<Self::PagerStdin> {
let mut pager =
new_shell_command(&spec).stdin(Stdio::piped()).spawn()?;
let pin = pager.stdin.take().unwrap();
procutil::set_blocking_fd(pin.as_raw_fd())?;
// TODO: if pager exits, notify the server with SIGPIPE immediately.
// otherwise the server won't get SIGPIPE if it does not write
// anything. (issue5278)
// kill(peerpid, SIGPIPE);
self.pager = Some(pager);
Ok(pin)
}
async fn run_system(&mut self, spec: &CommandSpec) -> io::Result<i32> {
let status = new_shell_command(&spec).spawn()?.await?;
let code = status
.code()
.or_else(|| status.signal().map(|n| -n))
.expect("either exit code or signal should be set");
Ok(code)
}
}
fn new_shell_command(spec: &CommandSpec) -> Command {
let mut builder = Command::new("/bin/sh");
builder
.arg("-c")
.arg(&spec.command)
.current_dir(&spec.current_dir)
.env_clear()
.envs(spec.envs.iter().cloned());
builder
}