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Add SPDX-License-Identifier for all existing codes. Fixes: #2 Signed-off-by: bin liu <bin@hyper.sh>
174 lines
5.7 KiB
Rust
174 lines
5.7 KiB
Rust
// Copyright (c) 2018 Levente Kurusa
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//
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// SPDX-License-Identifier: Apache-2.0 or MIT
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//
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//! This module contains the implementation of the `cpuacct` cgroup subsystem.
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//!
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//! See the Kernel's documentation for more information about this subsystem, found at:
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//! [Documentation/cgroup-v1/cpuacct.txt](https://www.kernel.org/doc/Documentation/cgroup-v1/cpuacct.txt)
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use std::fs::File;
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use std::io::{Read, Write};
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use std::path::PathBuf;
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use crate::error::*;
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use crate::error::ErrorKind::*;
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use crate::{ControllIdentifier, ControllerInternal, Controllers, Resources, Subsystem};
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/// A controller that allows controlling the `cpuacct` subsystem of a Cgroup.
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///
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/// In essence, this control group provides accounting (hence the name `cpuacct`) for CPU usage of
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/// the tasks in the control group.
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#[derive(Debug, Clone)]
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pub struct CpuAcctController {
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base: PathBuf,
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path: PathBuf,
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}
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/// Represents the statistics retrieved from the control group.
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pub struct CpuAcct {
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/// Divides the time used by the tasks into `user` time and `system` time.
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pub stat: String,
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/// Total CPU time (in nanoseconds) spent by the tasks.
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pub usage: u64,
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/// Total CPU time (in nanoseconds) spent by the tasks, broken down by CPU and by whether the
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/// time spent is `user` time or `system` time.
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///
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/// An example is as follows:
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/// ```text
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/// cpu user system
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/// 0 8348363768 0
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/// 1 8324369100 0
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/// 2 8598185449 0
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/// 3 8648262473 0
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/// ```
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pub usage_all: String,
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/// CPU time (in nanoseconds) spent by the tasks, broken down by each CPU.
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/// Times spent in each CPU are separated by a space.
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pub usage_percpu: String,
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/// As for `usage_percpu`, but the `system` time spent.
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pub usage_percpu_sys: String,
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/// As for `usage_percpu`, but the `user` time spent.
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pub usage_percpu_user: String,
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/// CPU time (in nanoseconds) spent by the tasks that counted for `system` time.
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pub usage_sys: u64,
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/// CPU time (in nanoseconds) spent by the tasks that counted for `user` time.
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pub usage_user: u64,
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}
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impl ControllerInternal for CpuAcctController {
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fn control_type(&self) -> Controllers {
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Controllers::CpuAcct
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}
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fn get_path(&self) -> &PathBuf {
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&self.path
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}
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fn get_path_mut(&mut self) -> &mut PathBuf {
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&mut self.path
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}
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fn get_base(&self) -> &PathBuf {
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&self.base
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}
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fn apply(&self, _res: &Resources) -> Result<()> {
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Ok(())
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}
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}
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impl ControllIdentifier for CpuAcctController {
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fn controller_type() -> Controllers {
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Controllers::CpuAcct
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}
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}
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impl<'a> From<&'a Subsystem> for &'a CpuAcctController {
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fn from(sub: &'a Subsystem) -> &'a CpuAcctController {
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unsafe {
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match sub {
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Subsystem::CpuAcct(c) => c,
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_ => {
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assert_eq!(1, 0);
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::std::mem::uninitialized()
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}
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}
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}
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}
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}
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fn read_u64_from(mut file: File) -> Result<u64> {
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let mut string = String::new();
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let res = file.read_to_string(&mut string);
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match res {
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Ok(_) => match string.trim().parse() {
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Ok(e) => Ok(e),
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Err(e) => Err(Error::with_cause(ParseError, e)),
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},
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Err(e) => Err(Error::with_cause(ReadFailed, e)),
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}
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}
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fn read_string_from(mut file: File) -> Result<String> {
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let mut string = String::new();
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match file.read_to_string(&mut string) {
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Ok(_) => Ok(string.trim().to_string()),
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Err(e) => Err(Error::with_cause(ReadFailed, e)),
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}
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}
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impl CpuAcctController {
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/// Contructs a new `CpuAcctController` with `oroot` serving as the root of the control group.
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pub fn new(oroot: PathBuf) -> Self {
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let mut root = oroot;
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root.push(Self::controller_type().to_string());
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Self {
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base: root.clone(),
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path: root,
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}
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}
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/// Gathers the statistics that are available in the control group into a `CpuAcct` structure.
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pub fn cpuacct(&self) -> CpuAcct {
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CpuAcct {
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stat: self
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.open_path("cpuacct.stat", false)
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.and_then(|file| read_string_from(file))
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.unwrap_or("".to_string()),
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usage: self
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.open_path("cpuacct.usage", false)
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.and_then(|file| read_u64_from(file))
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.unwrap_or(0),
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usage_all: self
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.open_path("cpuacct.usage_all", false)
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.and_then(|file| read_string_from(file))
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.unwrap_or("".to_string()),
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usage_percpu: self
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.open_path("cpuacct.usage_percpu", false)
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.and_then(|file| read_string_from(file))
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.unwrap_or("".to_string()),
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usage_percpu_sys: self
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.open_path("cpuacct.usage_percpu_sys", false)
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.and_then(|file| read_string_from(file))
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.unwrap_or("".to_string()),
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usage_percpu_user: self
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.open_path("cpuacct.usage_percpu_user", false)
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.and_then(|file| read_string_from(file))
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.unwrap_or("".to_string()),
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usage_sys: self
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.open_path("cpuacct.usage_sys", false)
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.and_then(|file| read_u64_from(file))
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.unwrap_or(0),
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usage_user: self
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.open_path("cpuacct.usage_user", false)
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.and_then(|file| read_u64_from(file))
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.unwrap_or(0),
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}
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}
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/// Reset the statistics the kernel has gathered about the control group.
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pub fn reset(&self) -> Result<()> {
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self.open_path("cpuacct.usage", true)
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.and_then(|mut file| file.write_all(b"0").map_err(|e| Error::with_cause(WriteFailed, e)))
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}
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}
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