mirror of https://github.com/k3s-io/k3s
301 lines
8.3 KiB
Go
301 lines
8.3 KiB
Go
// Copyright 2016 Google Inc. All Rights Reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package common
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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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"strconv"
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"strings"
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"time"
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"github.com/google/cadvisor/container"
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info "github.com/google/cadvisor/info/v1"
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"github.com/google/cadvisor/utils"
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"github.com/karrick/godirwalk"
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"github.com/pkg/errors"
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"k8s.io/klog"
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)
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func DebugInfo(watches map[string][]string) map[string][]string {
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out := make(map[string][]string)
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lines := make([]string, 0, len(watches))
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for containerName, cgroupWatches := range watches {
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lines = append(lines, fmt.Sprintf("%s:", containerName))
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for _, cg := range cgroupWatches {
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lines = append(lines, fmt.Sprintf("\t%s", cg))
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}
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}
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out["Inotify watches"] = lines
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return out
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}
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func GetSpec(cgroupPaths map[string]string, machineInfoFactory info.MachineInfoFactory, hasNetwork, hasFilesystem bool) (info.ContainerSpec, error) {
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var spec info.ContainerSpec
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// Assume unified hierarchy containers.
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// Get the lowest creation time from all hierarchies as the container creation time.
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now := time.Now()
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lowestTime := now
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for _, cgroupPath := range cgroupPaths {
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// The modified time of the cgroup directory changes whenever a subcontainer is created.
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// eg. /docker will have creation time matching the creation of latest docker container.
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// Use clone_children as a workaround as it isn't usually modified. It is only likely changed
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// immediately after creating a container.
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cgroupPath = path.Join(cgroupPath, "cgroup.clone_children")
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fi, err := os.Stat(cgroupPath)
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if err == nil && fi.ModTime().Before(lowestTime) {
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lowestTime = fi.ModTime()
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}
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}
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if lowestTime != now {
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spec.CreationTime = lowestTime
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}
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// Get machine info.
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mi, err := machineInfoFactory.GetMachineInfo()
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if err != nil {
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return spec, err
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}
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// CPU.
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cpuRoot, ok := cgroupPaths["cpu"]
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if ok {
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if utils.FileExists(cpuRoot) {
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spec.HasCpu = true
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spec.Cpu.Limit = readUInt64(cpuRoot, "cpu.shares")
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spec.Cpu.Period = readUInt64(cpuRoot, "cpu.cfs_period_us")
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quota := readString(cpuRoot, "cpu.cfs_quota_us")
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if quota != "" && quota != "-1" {
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val, err := strconv.ParseUint(quota, 10, 64)
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if err != nil {
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klog.Errorf("GetSpec: Failed to parse CPUQuota from %q: %s", path.Join(cpuRoot, "cpu.cfs_quota_us"), err)
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}
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spec.Cpu.Quota = val
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}
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}
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}
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// Cpu Mask.
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// This will fail for non-unified hierarchies. We'll return the whole machine mask in that case.
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cpusetRoot, ok := cgroupPaths["cpuset"]
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if ok {
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if utils.FileExists(cpusetRoot) {
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spec.HasCpu = true
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mask := readString(cpusetRoot, "cpuset.cpus")
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spec.Cpu.Mask = utils.FixCpuMask(mask, mi.NumCores)
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}
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}
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// Memory
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memoryRoot, ok := cgroupPaths["memory"]
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if ok {
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if utils.FileExists(memoryRoot) {
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spec.HasMemory = true
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spec.Memory.Limit = readUInt64(memoryRoot, "memory.limit_in_bytes")
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spec.Memory.SwapLimit = readUInt64(memoryRoot, "memory.memsw.limit_in_bytes")
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spec.Memory.Reservation = readUInt64(memoryRoot, "memory.soft_limit_in_bytes")
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}
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}
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spec.HasNetwork = hasNetwork
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spec.HasFilesystem = hasFilesystem
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if blkioRoot, ok := cgroupPaths["blkio"]; ok && utils.FileExists(blkioRoot) {
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spec.HasDiskIo = true
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}
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return spec, nil
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}
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func readString(dirpath string, file string) string {
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cgroupFile := path.Join(dirpath, file)
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// Read
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out, err := ioutil.ReadFile(cgroupFile)
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if err != nil {
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// Ignore non-existent files
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if !os.IsNotExist(err) {
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klog.Errorf("readString: Failed to read %q: %s", cgroupFile, err)
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}
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return ""
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}
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return strings.TrimSpace(string(out))
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}
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func readUInt64(dirpath string, file string) uint64 {
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out := readString(dirpath, file)
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if out == "" {
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return 0
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}
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val, err := strconv.ParseUint(out, 10, 64)
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if err != nil {
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klog.Errorf("readUInt64: Failed to parse int %q from file %q: %s", out, path.Join(dirpath, file), err)
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return 0
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}
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return val
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}
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// Lists all directories under "path" and outputs the results as children of "parent".
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func ListDirectories(dirpath string, parent string, recursive bool, output map[string]struct{}) error {
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buf := make([]byte, godirwalk.DefaultScratchBufferSize)
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return listDirectories(dirpath, parent, recursive, output, buf)
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}
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func listDirectories(dirpath string, parent string, recursive bool, output map[string]struct{}, buf []byte) error {
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dirents, err := godirwalk.ReadDirents(dirpath, buf)
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if err != nil {
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// Ignore if this hierarchy does not exist.
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if os.IsNotExist(errors.Cause(err)) {
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err = nil
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}
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return err
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}
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for _, dirent := range dirents {
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// We only grab directories.
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if !dirent.IsDir() {
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continue
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}
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dirname := dirent.Name()
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name := path.Join(parent, dirname)
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output[name] = struct{}{}
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// List subcontainers if asked to.
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if recursive {
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err := listDirectories(path.Join(dirpath, dirname), name, true, output, buf)
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if err != nil {
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return err
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}
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}
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}
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return nil
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}
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func MakeCgroupPaths(mountPoints map[string]string, name string) map[string]string {
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cgroupPaths := make(map[string]string, len(mountPoints))
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for key, val := range mountPoints {
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cgroupPaths[key] = path.Join(val, name)
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}
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return cgroupPaths
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}
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func CgroupExists(cgroupPaths map[string]string) bool {
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// If any cgroup exists, the container is still alive.
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for _, cgroupPath := range cgroupPaths {
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if utils.FileExists(cgroupPath) {
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return true
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}
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}
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return false
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}
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func ListContainers(name string, cgroupPaths map[string]string, listType container.ListType) ([]info.ContainerReference, error) {
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containers := make(map[string]struct{})
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for _, cgroupPath := range cgroupPaths {
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err := ListDirectories(cgroupPath, name, listType == container.ListRecursive, containers)
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if err != nil {
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return nil, err
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}
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}
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// Make into container references.
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ret := make([]info.ContainerReference, 0, len(containers))
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for cont := range containers {
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ret = append(ret, info.ContainerReference{
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Name: cont,
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})
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}
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return ret, nil
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}
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// AssignDeviceNamesToDiskStats assigns the Device field on the provided DiskIoStats by looking up
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// the device major and minor identifiers in the provided device namer.
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func AssignDeviceNamesToDiskStats(namer DeviceNamer, stats *info.DiskIoStats) {
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assignDeviceNamesToPerDiskStats(
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namer,
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stats.IoMerged,
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stats.IoQueued,
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stats.IoServiceBytes,
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stats.IoServiceTime,
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stats.IoServiced,
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stats.IoTime,
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stats.IoWaitTime,
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stats.Sectors,
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)
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}
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// assignDeviceNamesToPerDiskStats looks up device names for the provided stats, caching names
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// if necessary.
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func assignDeviceNamesToPerDiskStats(namer DeviceNamer, diskStats ...[]info.PerDiskStats) {
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devices := make(deviceIdentifierMap)
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for _, stats := range diskStats {
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for i, stat := range stats {
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stats[i].Device = devices.Find(stat.Major, stat.Minor, namer)
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}
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}
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}
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// DeviceNamer returns string names for devices by their major and minor id.
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type DeviceNamer interface {
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// DeviceName returns the name of the device by its major and minor ids, or false if no
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// such device is recognized.
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DeviceName(major, minor uint64) (string, bool)
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}
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type MachineInfoNamer info.MachineInfo
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func (n *MachineInfoNamer) DeviceName(major, minor uint64) (string, bool) {
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for _, info := range n.DiskMap {
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if info.Major == major && info.Minor == minor {
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return "/dev/" + info.Name, true
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}
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}
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for _, info := range n.Filesystems {
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if info.DeviceMajor == major && info.DeviceMinor == minor {
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return info.Device, true
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}
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}
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return "", false
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}
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type deviceIdentifier struct {
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major uint64
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minor uint64
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}
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type deviceIdentifierMap map[deviceIdentifier]string
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// Find locates the device name by device identifier out of from, caching the result as necessary.
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func (m deviceIdentifierMap) Find(major, minor uint64, namer DeviceNamer) string {
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d := deviceIdentifier{major, minor}
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if s, ok := m[d]; ok {
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return s
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}
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s, _ := namer.DeviceName(major, minor)
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m[d] = s
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return s
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}
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