mirror of
https://github.com/kata-containers/cgroups-rs.git
synced 2026-08-05 02:13:23 +00:00
Delete check_support and stop detecting subsystems by finding in the root folders because the detecting method is not accurate. Signed-off-by: Tim Zhang <tim@hyper.sh>
256 lines
8.0 KiB
Rust
256 lines
8.0 KiB
Rust
// Copyright (c) 2018 Levente Kurusa
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// Copyright (c) 2020 Ant Group
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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 represents the various control group hierarchies the Linux kernel supports.
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//!
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//! Currently, we only support the cgroupv1 hierarchy, but in the future we will add support for
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//! the Unified Hierarchy.
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use procinfo::pid::{mountinfo_self, Mountinfo};
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use std::fs;
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use std::path::PathBuf;
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use crate::blkio::BlkIoController;
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use crate::cpu::CpuController;
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use crate::cpuacct::CpuAcctController;
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use crate::cpuset::CpuSetController;
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use crate::devices::DevicesController;
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use crate::freezer::FreezerController;
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use crate::hugetlb::HugeTlbController;
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use crate::memory::MemController;
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use crate::net_cls::NetClsController;
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use crate::net_prio::NetPrioController;
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use crate::perf_event::PerfEventController;
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use crate::pid::PidController;
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use crate::rdma::RdmaController;
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use crate::systemd::SystemdController;
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use crate::{Controllers, Hierarchy, Subsystem};
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use crate::cgroup::Cgroup;
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/// The standard, original cgroup implementation. Often referred to as "cgroupv1".
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pub struct V1 {
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mountinfo: Vec<Mountinfo>,
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}
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pub struct V2 {
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root: String,
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}
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impl Hierarchy for V1 {
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fn v2(&self) -> bool {
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false
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}
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fn subsystems(&self) -> Vec<Subsystem> {
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let mut subs = vec![];
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// The cgroup writeback feature requires cooperation between memcgs and blkcgs
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// To avoid exceptions, we should add_task for blkcg before memcg(push BlkIo before Mem)
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// For more Information: https://www.alibabacloud.com/help/doc-detail/155509.htm
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if let Some(root) = self.get_mount_point(Controllers::BlkIo) {
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subs.push(Subsystem::BlkIo(BlkIoController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Mem) {
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subs.push(Subsystem::Mem(MemController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Pids) {
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subs.push(Subsystem::Pid(PidController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::CpuSet) {
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subs.push(Subsystem::CpuSet(CpuSetController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::CpuAcct) {
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subs.push(Subsystem::CpuAcct(CpuAcctController::new(root)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Cpu) {
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subs.push(Subsystem::Cpu(CpuController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Devices) {
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subs.push(Subsystem::Devices(DevicesController::new(root)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Freezer) {
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subs.push(Subsystem::Freezer(FreezerController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::NetCls) {
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subs.push(Subsystem::NetCls(NetClsController::new(root)));
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}
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if let Some(root) = self.get_mount_point(Controllers::PerfEvent) {
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subs.push(Subsystem::PerfEvent(PerfEventController::new(root)));
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}
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if let Some(root) = self.get_mount_point(Controllers::NetPrio) {
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subs.push(Subsystem::NetPrio(NetPrioController::new(root)));
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}
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if let Some(root) = self.get_mount_point(Controllers::HugeTlb) {
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subs.push(Subsystem::HugeTlb(HugeTlbController::new(root, false)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Rdma) {
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subs.push(Subsystem::Rdma(RdmaController::new(root)));
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}
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if let Some(root) = self.get_mount_point(Controllers::Systemd) {
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subs.push(Subsystem::Systemd(SystemdController::new(root, false)));
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}
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subs
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}
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fn root_control_group(&self) -> Cgroup {
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let b: &dyn Hierarchy = self as &dyn Hierarchy;
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Cgroup::load(&*b, "".to_string())
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}
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fn root(&self) -> PathBuf {
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self.mountinfo
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.iter()
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.find_map(|m| {
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if m.fs_type.0 == "cgroup" {
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return Some(m.mount_point.parent().unwrap());
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}
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None
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})
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.unwrap()
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.to_path_buf()
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}
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}
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impl Hierarchy for V2 {
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fn v2(&self) -> bool {
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true
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}
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fn subsystems(&self) -> Vec<Subsystem> {
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let p = format!("{}/{}", UNIFIED_MOUNTPOINT, "cgroup.controllers");
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let ret = fs::read_to_string(p.as_str());
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if ret.is_err() {
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return vec![];
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}
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let mut subs = vec![];
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let controllers = ret.unwrap().trim().to_string();
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let controller_list: Vec<&str> = controllers.split(' ').collect();
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for s in controller_list {
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match s {
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"cpu" => {
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subs.push(Subsystem::Cpu(CpuController::new(self.root(), true)));
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}
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"io" => {
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subs.push(Subsystem::BlkIo(BlkIoController::new(self.root(), true)));
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}
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"cpuset" => {
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subs.push(Subsystem::CpuSet(CpuSetController::new(self.root(), true)));
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}
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"memory" => {
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subs.push(Subsystem::Mem(MemController::new(self.root(), true)));
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}
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"pids" => {
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subs.push(Subsystem::Pid(PidController::new(self.root(), true)));
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}
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"freezer" => {
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subs.push(Subsystem::Freezer(FreezerController::new(
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self.root(),
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true,
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)));
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}
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"hugetlb" => {
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subs.push(Subsystem::HugeTlb(HugeTlbController::new(
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self.root(),
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true,
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)));
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}
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_ => {}
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}
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}
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subs
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}
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fn root_control_group(&self) -> Cgroup {
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let b: &dyn Hierarchy = self as &dyn Hierarchy;
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Cgroup::load(&*b, "".to_string())
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}
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fn root(&self) -> PathBuf {
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PathBuf::from(self.root.clone())
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}
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}
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impl V1 {
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/// Finds where control groups are mounted to and returns a hierarchy in which control groups
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/// can be created.
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pub fn new() -> V1 {
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V1 {
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mountinfo: mountinfo_self().unwrap(),
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}
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}
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pub fn get_mount_point(&self, controller: Controllers) -> Option<PathBuf> {
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self.mountinfo.iter().find_map(|m| {
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if m.fs_type.0 == "cgroup" && m.super_opts.contains(&controller.to_string()) {
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return Some(m.mount_point.clone());
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}
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None
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})
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}
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}
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impl V2 {
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/// Finds where control groups are mounted to and returns a hierarchy in which control groups
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/// can be created.
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pub fn new() -> V2 {
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V2 {
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root: String::from(UNIFIED_MOUNTPOINT),
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}
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}
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}
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pub const UNIFIED_MOUNTPOINT: &'static str = "/sys/fs/cgroup";
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#[cfg(all(target_os = "linux", not(target_env = "musl")))]
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pub fn is_cgroup2_unified_mode() -> bool {
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use nix::sys::statfs;
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let path = std::path::Path::new(UNIFIED_MOUNTPOINT);
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let fs_stat = statfs::statfs(path);
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if fs_stat.is_err() {
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return false;
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}
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// FIXME notwork, nix will not compile CGROUP2_SUPER_MAGIC because not(target_env = "musl")
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fs_stat.unwrap().filesystem_type() == statfs::CGROUP2_SUPER_MAGIC
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}
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pub const INIT_CGROUP_PATHS: &'static str = "/proc/1/cgroup";
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#[cfg(all(target_os = "linux", target_env = "musl"))]
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pub fn is_cgroup2_unified_mode() -> bool {
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let lines = fs::read_to_string(INIT_CGROUP_PATHS);
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if lines.is_err() {
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return false;
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}
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for line in lines.unwrap().lines() {
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let fields: Vec<&str> = line.split(':').collect();
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if fields.len() != 3 {
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continue;
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}
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if fields[0] != "0" {
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return false;
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}
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}
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true
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}
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pub fn auto() -> Box<dyn Hierarchy> {
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if is_cgroup2_unified_mode() {
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Box::new(V2::new())
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} else {
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Box::new(V1::new())
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}
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}
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