mirror of
https://github.com/moby/moby.git
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409bbdc321
enable resource limitation by disabling cgroup v1 warnings resource limitation still doesn't work with rootless mode (even with systemd mode) Signed-off-by: Akihiro Suda <akihiro.suda.cz@hco.ntt.co.jp>
332 lines
10 KiB
Go
332 lines
10 KiB
Go
package sysinfo // import "github.com/docker/docker/pkg/sysinfo"
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import (
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"fmt"
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"io/ioutil"
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"os"
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"path"
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"strings"
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"github.com/opencontainers/runc/libcontainer/cgroups"
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"github.com/sirupsen/logrus"
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"golang.org/x/sys/unix"
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)
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func findCgroupMountpoints() (map[string]string, error) {
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cgMounts, err := cgroups.GetCgroupMounts(false)
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if err != nil {
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return nil, fmt.Errorf("Failed to parse cgroup information: %v", err)
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}
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mps := make(map[string]string)
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for _, m := range cgMounts {
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for _, ss := range m.Subsystems {
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mps[ss] = m.Mountpoint
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}
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}
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return mps, nil
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}
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type infoCollector func(info *SysInfo, cgMounts map[string]string) (warnings []string)
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// New returns a new SysInfo, using the filesystem to detect which features
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// the kernel supports. If `quiet` is `false` warnings are printed in logs
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// whenever an error occurs or misconfigurations are present.
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func New(quiet bool) *SysInfo {
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var ops []infoCollector
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var warnings []string
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sysInfo := &SysInfo{}
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cgMounts, err := findCgroupMountpoints()
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if err != nil {
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logrus.Warn(err)
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} else {
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ops = append(ops, []infoCollector{
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applyMemoryCgroupInfo,
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applyCPUCgroupInfo,
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applyBlkioCgroupInfo,
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applyCPUSetCgroupInfo,
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applyPIDSCgroupInfo,
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applyDevicesCgroupInfo,
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}...)
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}
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ops = append(ops, []infoCollector{
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applyNetworkingInfo,
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applyAppArmorInfo,
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applySeccompInfo,
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applyCgroupNsInfo,
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}...)
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for _, o := range ops {
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w := o(sysInfo, cgMounts)
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warnings = append(warnings, w...)
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}
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if cgroups.IsCgroup2UnifiedMode() {
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warnings = append(warnings, "Your system is running cgroup v2 (unsupported)")
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}
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if !quiet {
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for _, w := range warnings {
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logrus.Warn(w)
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}
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}
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return sysInfo
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}
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// applyMemoryCgroupInfo reads the memory information from the memory cgroup mount point.
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func applyMemoryCgroupInfo(info *SysInfo, cgMounts map[string]string) []string {
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if cgroups.IsCgroup2UnifiedMode() {
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// TODO: check cgroup2 info correctly
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info.MemoryLimit = true
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info.SwapLimit = true
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info.MemoryReservation = true
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info.OomKillDisable = true
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info.MemorySwappiness = true
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return nil
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}
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var warnings []string
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mountPoint, ok := cgMounts["memory"]
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if !ok {
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warnings = append(warnings, "Your kernel does not support cgroup memory limit")
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return warnings
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}
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info.MemoryLimit = ok
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info.SwapLimit = cgroupEnabled(mountPoint, "memory.memsw.limit_in_bytes")
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if !info.SwapLimit {
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warnings = append(warnings, "Your kernel does not support swap memory limit")
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}
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info.MemoryReservation = cgroupEnabled(mountPoint, "memory.soft_limit_in_bytes")
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if !info.MemoryReservation {
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warnings = append(warnings, "Your kernel does not support memory reservation")
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}
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info.OomKillDisable = cgroupEnabled(mountPoint, "memory.oom_control")
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if !info.OomKillDisable {
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warnings = append(warnings, "Your kernel does not support oom control")
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}
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info.MemorySwappiness = cgroupEnabled(mountPoint, "memory.swappiness")
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if !info.MemorySwappiness {
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warnings = append(warnings, "Your kernel does not support memory swappiness")
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}
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info.KernelMemory = cgroupEnabled(mountPoint, "memory.kmem.limit_in_bytes")
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if !info.KernelMemory {
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warnings = append(warnings, "Your kernel does not support kernel memory limit")
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}
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info.KernelMemoryTCP = cgroupEnabled(mountPoint, "memory.kmem.tcp.limit_in_bytes")
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if !info.KernelMemoryTCP {
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warnings = append(warnings, "Your kernel does not support kernel memory TCP limit")
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}
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return warnings
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}
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// applyCPUCgroupInfo reads the cpu information from the cpu cgroup mount point.
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func applyCPUCgroupInfo(info *SysInfo, cgMounts map[string]string) []string {
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if cgroups.IsCgroup2UnifiedMode() {
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// TODO: check cgroup2 info correctly
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info.CPUShares = true
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info.CPUCfsPeriod = true
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info.CPUCfsQuota = true
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info.CPURealtimePeriod = true
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info.CPURealtimeRuntime = true
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return nil
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}
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var warnings []string
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mountPoint, ok := cgMounts["cpu"]
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if !ok {
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warnings = append(warnings, "Unable to find cpu cgroup in mounts")
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return warnings
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}
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info.CPUShares = cgroupEnabled(mountPoint, "cpu.shares")
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if !info.CPUShares {
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warnings = append(warnings, "Your kernel does not support cgroup cpu shares")
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}
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info.CPUCfsPeriod = cgroupEnabled(mountPoint, "cpu.cfs_period_us")
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if !info.CPUCfsPeriod {
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warnings = append(warnings, "Your kernel does not support cgroup cfs period")
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}
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info.CPUCfsQuota = cgroupEnabled(mountPoint, "cpu.cfs_quota_us")
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if !info.CPUCfsQuota {
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warnings = append(warnings, "Your kernel does not support cgroup cfs quotas")
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}
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info.CPURealtimePeriod = cgroupEnabled(mountPoint, "cpu.rt_period_us")
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if !info.CPURealtimePeriod {
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warnings = append(warnings, "Your kernel does not support cgroup rt period")
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}
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info.CPURealtimeRuntime = cgroupEnabled(mountPoint, "cpu.rt_runtime_us")
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if !info.CPURealtimeRuntime {
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warnings = append(warnings, "Your kernel does not support cgroup rt runtime")
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}
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return warnings
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}
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// applyBlkioCgroupInfo reads the blkio information from the blkio cgroup mount point.
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func applyBlkioCgroupInfo(info *SysInfo, cgMounts map[string]string) []string {
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if cgroups.IsCgroup2UnifiedMode() {
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// TODO: check cgroup2 info correctly
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info.BlkioWeight = true
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info.BlkioReadBpsDevice = true
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info.BlkioWriteBpsDevice = true
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info.BlkioReadIOpsDevice = true
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info.BlkioWriteIOpsDevice = true
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return nil
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}
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var warnings []string
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mountPoint, ok := cgMounts["blkio"]
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if !ok {
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warnings = append(warnings, "Unable to find blkio cgroup in mounts")
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return warnings
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}
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info.BlkioWeight = cgroupEnabled(mountPoint, "blkio.weight")
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if !info.BlkioWeight {
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warnings = append(warnings, "Your kernel does not support cgroup blkio weight")
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}
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info.BlkioWeightDevice = cgroupEnabled(mountPoint, "blkio.weight_device")
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if !info.BlkioWeightDevice {
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warnings = append(warnings, "Your kernel does not support cgroup blkio weight_device")
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}
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info.BlkioReadBpsDevice = cgroupEnabled(mountPoint, "blkio.throttle.read_bps_device")
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if !info.BlkioReadBpsDevice {
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warnings = append(warnings, "Your kernel does not support cgroup blkio throttle.read_bps_device")
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}
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info.BlkioWriteBpsDevice = cgroupEnabled(mountPoint, "blkio.throttle.write_bps_device")
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if !info.BlkioWriteBpsDevice {
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warnings = append(warnings, "Your kernel does not support cgroup blkio throttle.write_bps_device")
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}
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info.BlkioReadIOpsDevice = cgroupEnabled(mountPoint, "blkio.throttle.read_iops_device")
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if !info.BlkioReadIOpsDevice {
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warnings = append(warnings, "Your kernel does not support cgroup blkio throttle.read_iops_device")
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}
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info.BlkioWriteIOpsDevice = cgroupEnabled(mountPoint, "blkio.throttle.write_iops_device")
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if !info.BlkioWriteIOpsDevice {
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warnings = append(warnings, "Your kernel does not support cgroup blkio throttle.write_iops_device")
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}
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return warnings
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}
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// applyCPUSetCgroupInfo reads the cpuset information from the cpuset cgroup mount point.
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func applyCPUSetCgroupInfo(info *SysInfo, cgMounts map[string]string) []string {
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if cgroups.IsCgroup2UnifiedMode() {
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// TODO: check cgroup2 info correctly
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info.Cpuset = true
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return nil
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}
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var warnings []string
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mountPoint, ok := cgMounts["cpuset"]
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if !ok {
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warnings = append(warnings, "Unable to find cpuset cgroup in mounts")
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return warnings
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}
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info.Cpuset = ok
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var err error
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cpus, err := ioutil.ReadFile(path.Join(mountPoint, "cpuset.cpus"))
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if err != nil {
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return warnings
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}
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info.Cpus = strings.TrimSpace(string(cpus))
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mems, err := ioutil.ReadFile(path.Join(mountPoint, "cpuset.mems"))
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if err != nil {
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return warnings
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}
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info.Mems = strings.TrimSpace(string(mems))
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return warnings
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}
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// applyPIDSCgroupInfo reads the pids information from the pids cgroup mount point.
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func applyPIDSCgroupInfo(info *SysInfo, _ map[string]string) []string {
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if cgroups.IsCgroup2UnifiedMode() {
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// TODO: check cgroup2 info correctly
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info.PidsLimit = true
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return nil
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}
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var warnings []string
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_, err := cgroups.FindCgroupMountpoint("", "pids")
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if err != nil {
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warnings = append(warnings, err.Error())
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return warnings
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}
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info.PidsLimit = true
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return warnings
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}
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// applyDevicesCgroupInfo reads the pids information from the devices cgroup mount point.
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func applyDevicesCgroupInfo(info *SysInfo, cgMounts map[string]string) []string {
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if cgroups.IsCgroup2UnifiedMode() {
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// TODO: check cgroup2 info correctly
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info.CgroupDevicesEnabled = true
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return nil
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}
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var warnings []string
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_, ok := cgMounts["devices"]
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info.CgroupDevicesEnabled = ok
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return warnings
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}
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// applyNetworkingInfo adds networking information to the info.
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func applyNetworkingInfo(info *SysInfo, _ map[string]string) []string {
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var warnings []string
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info.IPv4ForwardingDisabled = !readProcBool("/proc/sys/net/ipv4/ip_forward")
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info.BridgeNFCallIPTablesDisabled = !readProcBool("/proc/sys/net/bridge/bridge-nf-call-iptables")
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info.BridgeNFCallIP6TablesDisabled = !readProcBool("/proc/sys/net/bridge/bridge-nf-call-ip6tables")
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return warnings
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}
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// applyAppArmorInfo adds AppArmor information to the info.
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func applyAppArmorInfo(info *SysInfo, _ map[string]string) []string {
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var warnings []string
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if _, err := os.Stat("/sys/kernel/security/apparmor"); !os.IsNotExist(err) {
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if _, err := ioutil.ReadFile("/sys/kernel/security/apparmor/profiles"); err == nil {
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info.AppArmor = true
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}
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}
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return warnings
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}
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// applyCgroupNsInfo adds cgroup namespace information to the info.
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func applyCgroupNsInfo(info *SysInfo, _ map[string]string) []string {
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var warnings []string
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if _, err := os.Stat("/proc/self/ns/cgroup"); !os.IsNotExist(err) {
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info.CgroupNamespaces = true
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}
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return warnings
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}
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// applySeccompInfo checks if Seccomp is supported, via CONFIG_SECCOMP.
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func applySeccompInfo(info *SysInfo, _ map[string]string) []string {
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var warnings []string
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// Check if Seccomp is supported, via CONFIG_SECCOMP.
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if err := unix.Prctl(unix.PR_GET_SECCOMP, 0, 0, 0, 0); err != unix.EINVAL {
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// Make sure the kernel has CONFIG_SECCOMP_FILTER.
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if err := unix.Prctl(unix.PR_SET_SECCOMP, unix.SECCOMP_MODE_FILTER, 0, 0, 0); err != unix.EINVAL {
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info.Seccomp = true
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}
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}
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return warnings
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}
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func cgroupEnabled(mountPoint, name string) bool {
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_, err := os.Stat(path.Join(mountPoint, name))
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return err == nil
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}
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func readProcBool(path string) bool {
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val, err := ioutil.ReadFile(path)
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if err != nil {
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return false
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}
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return strings.TrimSpace(string(val)) == "1"
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}
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