2021-01-10 21:59:07 -05:00
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// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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2020-09-05 20:34:02 -04:00
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2021-01-14 23:32:27 -05:00
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use super::io::ChildStderrResource;
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use super::io::ChildStdinResource;
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use super::io::ChildStdoutResource;
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use super::io::StdFileResource;
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2020-09-19 19:17:35 -04:00
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use crate::permissions::Permissions;
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2020-09-14 12:48:57 -04:00
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use deno_core::error::bad_resource_id;
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use deno_core::error::type_error;
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use deno_core::error::AnyError;
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2021-05-02 19:22:57 -04:00
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use deno_core::op_async;
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use deno_core::op_sync;
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2020-12-16 11:14:12 -05:00
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use deno_core::AsyncMutFuture;
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use deno_core::AsyncRefCell;
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use deno_core::Extension;
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use deno_core::OpState;
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use deno_core::RcRef;
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use deno_core::Resource;
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use deno_core::ResourceId;
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2020-09-16 12:43:08 -04:00
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use serde::Deserialize;
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use serde::Serialize;
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use std::borrow::Cow;
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use std::cell::RefCell;
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2020-08-18 12:30:13 -04:00
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use std::rc::Rc;
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2019-12-30 08:57:17 -05:00
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use tokio::process::Command;
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2019-08-14 11:03:02 -04:00
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#[cfg(unix)]
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use std::os::unix::process::ExitStatusExt;
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2021-05-02 19:22:57 -04:00
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pub fn init() -> Extension {
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Extension::builder()
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.ops(vec![
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("op_run", op_sync(op_run)),
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("op_run_status", op_async(op_run_status)),
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("op_kill", op_sync(op_kill)),
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])
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.build()
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}
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fn clone_file(
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state: &mut OpState,
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rid: ResourceId,
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) -> Result<std::fs::File, AnyError> {
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StdFileResource::with(state, rid, move |r| match r {
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Ok(std_file) => std_file.try_clone().map_err(AnyError::from),
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Err(_) => Err(bad_resource_id()),
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})
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}
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fn subprocess_stdio_map(s: &str) -> Result<std::process::Stdio, AnyError> {
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match s {
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"inherit" => Ok(std::process::Stdio::inherit()),
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"piped" => Ok(std::process::Stdio::piped()),
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"null" => Ok(std::process::Stdio::null()),
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_ => Err(type_error("Invalid resource for stdio")),
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}
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}
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#[derive(Deserialize)]
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#[serde(rename_all = "camelCase")]
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pub struct RunArgs {
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cmd: Vec<String>,
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cwd: Option<String>,
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clear_env: bool,
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env: Vec<(String, String)>,
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stdin: String,
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stdout: String,
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stderr: String,
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stdin_rid: ResourceId,
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stdout_rid: ResourceId,
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stderr_rid: ResourceId,
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}
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struct ChildResource {
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child: AsyncRefCell<tokio::process::Child>,
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}
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impl Resource for ChildResource {
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fn name(&self) -> Cow<str> {
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"child".into()
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}
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}
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impl ChildResource {
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fn borrow_mut(self: Rc<Self>) -> AsyncMutFuture<tokio::process::Child> {
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RcRef::map(self, |r| &r.child).borrow_mut()
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}
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}
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#[derive(Serialize)]
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#[serde(rename_all = "camelCase")]
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// TODO(@AaronO): maybe find a more descriptive name or a convention for return structs
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struct RunInfo {
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rid: ResourceId,
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pid: Option<u32>,
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stdin_rid: Option<ResourceId>,
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stdout_rid: Option<ResourceId>,
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stderr_rid: Option<ResourceId>,
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}
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fn op_run(
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state: &mut OpState,
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run_args: RunArgs,
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_: (),
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) -> Result<RunInfo, AnyError> {
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let args = run_args.cmd;
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state.borrow_mut::<Permissions>().run.check(&args[0])?;
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let env = run_args.env;
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let cwd = run_args.cwd;
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let mut c = Command::new(args.get(0).unwrap());
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(1..args.len()).for_each(|i| {
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let arg = args.get(i).unwrap();
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c.arg(arg);
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});
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cwd.map(|d| c.current_dir(d));
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if run_args.clear_env {
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super::check_unstable(state, "Deno.run.clearEnv");
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c.env_clear();
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}
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for (key, value) in &env {
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c.env(key, value);
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}
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// TODO: make this work with other resources, eg. sockets
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if !run_args.stdin.is_empty() {
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c.stdin(subprocess_stdio_map(run_args.stdin.as_ref())?);
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} else {
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let file = clone_file(state, run_args.stdin_rid)?;
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c.stdin(file);
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}
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if !run_args.stdout.is_empty() {
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c.stdout(subprocess_stdio_map(run_args.stdout.as_ref())?);
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} else {
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let file = clone_file(state, run_args.stdout_rid)?;
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c.stdout(file);
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}
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if !run_args.stderr.is_empty() {
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c.stderr(subprocess_stdio_map(run_args.stderr.as_ref())?);
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} else {
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let file = clone_file(state, run_args.stderr_rid)?;
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c.stderr(file);
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}
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// We want to kill child when it's closed
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c.kill_on_drop(true);
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// Spawn the command.
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let mut child = c.spawn()?;
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let pid = child.id();
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let stdin_rid = match child.stdin.take() {
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Some(child_stdin) => {
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let rid = state
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.resource_table
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.add(ChildStdinResource::from(child_stdin));
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Some(rid)
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}
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None => None,
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};
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let stdout_rid = match child.stdout.take() {
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Some(child_stdout) => {
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let rid = state
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.resource_table
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.add(ChildStdoutResource::from(child_stdout));
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Some(rid)
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}
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None => None,
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};
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let stderr_rid = match child.stderr.take() {
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Some(child_stderr) => {
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let rid = state
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.resource_table
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.add(ChildStderrResource::from(child_stderr));
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Some(rid)
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}
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None => None,
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};
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let child_resource = ChildResource {
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child: AsyncRefCell::new(child),
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};
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let child_rid = state.resource_table.add(child_resource);
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Ok(RunInfo {
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rid: child_rid,
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pid,
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stdin_rid,
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stdout_rid,
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stderr_rid,
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})
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}
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#[derive(Serialize)]
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#[serde(rename_all = "camelCase")]
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struct RunStatus {
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got_signal: bool,
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exit_code: i32,
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exit_signal: i32,
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}
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async fn op_run_status(
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state: Rc<RefCell<OpState>>,
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rid: ResourceId,
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_: (),
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) -> Result<RunStatus, AnyError> {
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let resource = state
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.borrow_mut()
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.resource_table
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.get::<ChildResource>(rid)
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.ok_or_else(bad_resource_id)?;
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let mut child = resource.borrow_mut().await;
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let run_status = child.wait().await?;
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let code = run_status.code();
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#[cfg(unix)]
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let signal = run_status.signal();
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#[cfg(not(unix))]
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let signal = None;
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code
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.or(signal)
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.expect("Should have either an exit code or a signal.");
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let got_signal = signal.is_some();
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Ok(RunStatus {
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got_signal,
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exit_code: code.unwrap_or(-1),
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exit_signal: signal.unwrap_or(-1),
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})
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}
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2020-12-13 13:45:53 -05:00
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#[cfg(unix)]
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pub fn kill(pid: i32, signo: i32) -> Result<(), AnyError> {
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use nix::sys::signal::{kill as unix_kill, Signal};
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use nix::unistd::Pid;
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use std::convert::TryFrom;
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let sig = Signal::try_from(signo)?;
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unix_kill(Pid::from_raw(pid), Option::Some(sig)).map_err(AnyError::from)
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}
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#[cfg(not(unix))]
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pub fn kill(pid: i32, signal: i32) -> Result<(), AnyError> {
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use std::io::Error;
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use std::io::ErrorKind::NotFound;
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use winapi::shared::minwindef::DWORD;
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use winapi::shared::minwindef::FALSE;
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use winapi::shared::minwindef::TRUE;
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use winapi::shared::winerror::ERROR_INVALID_PARAMETER;
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use winapi::um::errhandlingapi::GetLastError;
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use winapi::um::handleapi::CloseHandle;
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use winapi::um::processthreadsapi::OpenProcess;
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use winapi::um::processthreadsapi::TerminateProcess;
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use winapi::um::winnt::PROCESS_TERMINATE;
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const SIGINT: i32 = 2;
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const SIGKILL: i32 = 9;
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const SIGTERM: i32 = 15;
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if !matches!(signal, SIGINT | SIGKILL | SIGTERM) {
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Err(type_error("unsupported signal"))
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} else if pid <= 0 {
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Err(type_error("unsupported pid"))
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} else {
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let handle = unsafe { OpenProcess(PROCESS_TERMINATE, FALSE, pid as DWORD) };
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if handle.is_null() {
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let err = match unsafe { GetLastError() } {
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ERROR_INVALID_PARAMETER => Error::from(NotFound), // Invalid `pid`.
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errno => Error::from_raw_os_error(errno as i32),
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};
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Err(err.into())
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} else {
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let r = unsafe { TerminateProcess(handle, 1) };
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unsafe { CloseHandle(handle) };
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match r {
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FALSE => Err(Error::last_os_error().into()),
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TRUE => Ok(()),
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_ => unreachable!(),
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}
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}
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}
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}
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2019-08-26 08:50:21 -04:00
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#[derive(Deserialize)]
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struct KillArgs {
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pid: i32,
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signo: i32,
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2019-08-14 11:03:02 -04:00
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}
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2021-05-08 08:37:42 -04:00
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fn op_kill(state: &mut OpState, args: KillArgs, _: ()) -> Result<(), AnyError> {
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2020-09-26 14:26:51 -04:00
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super::check_unstable(state, "Deno.kill");
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2021-04-11 22:15:43 -04:00
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state.borrow_mut::<Permissions>().run.check_all()?;
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2019-08-14 11:03:02 -04:00
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2019-08-26 08:50:21 -04:00
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kill(args.pid, args.signo)?;
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2021-04-05 12:40:24 -04:00
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Ok(())
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2019-08-14 11:03:02 -04:00
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}
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