456 lines
11 KiB
Go
456 lines
11 KiB
Go
package procstat
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import (
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"bytes"
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"fmt"
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"io/ioutil"
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"os/exec"
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"path/filepath"
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"strconv"
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"time"
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"github.com/influxdata/telegraf"
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"github.com/influxdata/telegraf/plugins/inputs"
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"github.com/shirou/gopsutil/process"
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)
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var (
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defaultPIDFinder = NewPgrep
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defaultProcess = NewProc
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)
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type PID int32
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type Procstat struct {
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PidFinder string `toml:"pid_finder"`
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PidFile string `toml:"pid_file"`
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Exe string
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Pattern string
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Prefix string
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CmdLineTag bool `toml:"cmdline_tag"`
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ProcessName string
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User string
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SystemdUnit string
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CGroup string `toml:"cgroup"`
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PidTag bool
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WinService string `toml:"win_service"`
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finder PIDFinder
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createPIDFinder func() (PIDFinder, error)
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procs map[PID]Process
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createProcess func(PID) (Process, error)
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}
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var sampleConfig = `
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## PID file to monitor process
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pid_file = "/var/run/nginx.pid"
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## executable name (ie, pgrep <exe>)
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# exe = "nginx"
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## pattern as argument for pgrep (ie, pgrep -f <pattern>)
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# pattern = "nginx"
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## user as argument for pgrep (ie, pgrep -u <user>)
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# user = "nginx"
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## Systemd unit name
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# systemd_unit = "nginx.service"
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## CGroup name or path
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# cgroup = "systemd/system.slice/nginx.service"
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## Windows service name
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# win_service = ""
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## override for process_name
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## This is optional; default is sourced from /proc/<pid>/status
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# process_name = "bar"
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## Field name prefix
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# prefix = ""
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## When true add the full cmdline as a tag.
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# cmdline_tag = false
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## Add PID as a tag instead of a field; useful to differentiate between
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## processes whose tags are otherwise the same. Can create a large number
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## of series, use judiciously.
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# pid_tag = false
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## Method to use when finding process IDs. Can be one of 'pgrep', or
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## 'native'. The pgrep finder calls the pgrep executable in the PATH while
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## the native finder performs the search directly in a manor dependent on the
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## platform. Default is 'pgrep'
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# pid_finder = "pgrep"
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`
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func (_ *Procstat) SampleConfig() string {
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return sampleConfig
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}
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func (_ *Procstat) Description() string {
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return "Monitor process cpu and memory usage"
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}
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func (p *Procstat) Gather(acc telegraf.Accumulator) error {
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if p.createPIDFinder == nil {
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switch p.PidFinder {
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case "native":
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p.createPIDFinder = NewNativeFinder
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case "pgrep":
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p.createPIDFinder = NewPgrep
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default:
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p.PidFinder = "pgrep"
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p.createPIDFinder = defaultPIDFinder
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}
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}
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if p.createProcess == nil {
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p.createProcess = defaultProcess
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}
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pids, tags, err := p.findPids(acc)
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if err != nil {
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fields := map[string]interface{}{
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"pid_count": 0,
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"running": 0,
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"result_code": 1,
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}
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tags := map[string]string{
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"pid_finder": p.PidFinder,
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"result": "lookup_error",
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}
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acc.AddFields("procstat_lookup", fields, tags)
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return err
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}
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procs, err := p.updateProcesses(pids, tags, p.procs)
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if err != nil {
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acc.AddError(fmt.Errorf("E! Error: procstat getting process, exe: [%s] pidfile: [%s] pattern: [%s] user: [%s] %s",
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p.Exe, p.PidFile, p.Pattern, p.User, err.Error()))
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}
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p.procs = procs
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for _, proc := range p.procs {
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p.addMetric(proc, acc)
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}
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fields := map[string]interface{}{
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"pid_count": len(pids),
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"running": len(procs),
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"result_code": 0,
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}
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tags["pid_finder"] = p.PidFinder
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tags["result"] = "success"
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acc.AddFields("procstat_lookup", fields, tags)
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return nil
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}
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// Add metrics a single Process
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func (p *Procstat) addMetric(proc Process, acc telegraf.Accumulator) {
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var prefix string
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if p.Prefix != "" {
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prefix = p.Prefix + "_"
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}
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fields := map[string]interface{}{}
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//If process_name tag is not already set, set to actual name
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if _, nameInTags := proc.Tags()["process_name"]; !nameInTags {
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name, err := proc.Name()
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if err == nil {
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proc.Tags()["process_name"] = name
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}
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}
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//If user tag is not already set, set to actual name
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if _, ok := proc.Tags()["user"]; !ok {
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user, err := proc.Username()
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if err == nil {
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proc.Tags()["user"] = user
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}
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}
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//If pid is not present as a tag, include it as a field.
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if _, pidInTags := proc.Tags()["pid"]; !pidInTags {
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fields["pid"] = int32(proc.PID())
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}
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//If cmd_line tag is true and it is not already set add cmdline as a tag
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if p.CmdLineTag {
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if _, ok := proc.Tags()["cmdline"]; !ok {
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Cmdline, err := proc.Cmdline()
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if err == nil {
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proc.Tags()["cmdline"] = Cmdline
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}
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}
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}
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numThreads, err := proc.NumThreads()
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if err == nil {
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fields[prefix+"num_threads"] = numThreads
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}
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fds, err := proc.NumFDs()
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if err == nil {
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fields[prefix+"num_fds"] = fds
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}
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ctx, err := proc.NumCtxSwitches()
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if err == nil {
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fields[prefix+"voluntary_context_switches"] = ctx.Voluntary
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fields[prefix+"involuntary_context_switches"] = ctx.Involuntary
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}
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faults, err := proc.PageFaults()
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if err == nil {
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fields[prefix+"minor_faults"] = faults.MinorFaults
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fields[prefix+"major_faults"] = faults.MajorFaults
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fields[prefix+"child_minor_faults"] = faults.ChildMinorFaults
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fields[prefix+"child_major_faults"] = faults.ChildMajorFaults
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}
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io, err := proc.IOCounters()
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if err == nil {
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fields[prefix+"read_count"] = io.ReadCount
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fields[prefix+"write_count"] = io.WriteCount
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fields[prefix+"read_bytes"] = io.ReadBytes
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fields[prefix+"write_bytes"] = io.WriteBytes
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}
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cpu_time, err := proc.Times()
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if err == nil {
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fields[prefix+"cpu_time_user"] = cpu_time.User
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fields[prefix+"cpu_time_system"] = cpu_time.System
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fields[prefix+"cpu_time_idle"] = cpu_time.Idle
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fields[prefix+"cpu_time_nice"] = cpu_time.Nice
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fields[prefix+"cpu_time_iowait"] = cpu_time.Iowait
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fields[prefix+"cpu_time_irq"] = cpu_time.Irq
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fields[prefix+"cpu_time_soft_irq"] = cpu_time.Softirq
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fields[prefix+"cpu_time_steal"] = cpu_time.Steal
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fields[prefix+"cpu_time_guest"] = cpu_time.Guest
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fields[prefix+"cpu_time_guest_nice"] = cpu_time.GuestNice
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}
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cpu_perc, err := proc.Percent(time.Duration(0))
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if err == nil {
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fields[prefix+"cpu_usage"] = cpu_perc
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}
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mem, err := proc.MemoryInfo()
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if err == nil {
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fields[prefix+"memory_rss"] = mem.RSS
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fields[prefix+"memory_vms"] = mem.VMS
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fields[prefix+"memory_swap"] = mem.Swap
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fields[prefix+"memory_data"] = mem.Data
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fields[prefix+"memory_stack"] = mem.Stack
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fields[prefix+"memory_locked"] = mem.Locked
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}
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rlims, err := proc.RlimitUsage(true)
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if err == nil {
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for _, rlim := range rlims {
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var name string
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switch rlim.Resource {
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case process.RLIMIT_CPU:
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name = "cpu_time"
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case process.RLIMIT_DATA:
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name = "memory_data"
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case process.RLIMIT_STACK:
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name = "memory_stack"
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case process.RLIMIT_RSS:
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name = "memory_rss"
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case process.RLIMIT_NOFILE:
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name = "num_fds"
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case process.RLIMIT_MEMLOCK:
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name = "memory_locked"
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case process.RLIMIT_AS:
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name = "memory_vms"
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case process.RLIMIT_LOCKS:
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name = "file_locks"
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case process.RLIMIT_SIGPENDING:
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name = "signals_pending"
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case process.RLIMIT_NICE:
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name = "nice_priority"
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case process.RLIMIT_RTPRIO:
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name = "realtime_priority"
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default:
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continue
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}
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fields[prefix+"rlimit_"+name+"_soft"] = rlim.Soft
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fields[prefix+"rlimit_"+name+"_hard"] = rlim.Hard
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if name != "file_locks" { // gopsutil doesn't currently track the used file locks count
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fields[prefix+name] = rlim.Used
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}
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}
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}
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acc.AddFields("procstat", fields, proc.Tags())
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}
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// Update monitored Processes
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func (p *Procstat) updateProcesses(pids []PID, tags map[string]string, prevInfo map[PID]Process) (map[PID]Process, error) {
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procs := make(map[PID]Process, len(prevInfo))
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for _, pid := range pids {
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info, ok := prevInfo[pid]
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if ok {
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// Assumption: if a process has no name, it probably does not exist
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if name, _ := info.Name(); name == "" {
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continue
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}
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procs[pid] = info
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} else {
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proc, err := p.createProcess(pid)
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if err != nil {
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// No problem; process may have ended after we found it
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continue
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}
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// Assumption: if a process has no name, it probably does not exist
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if name, _ := proc.Name(); name == "" {
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continue
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}
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procs[pid] = proc
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// Add initial tags
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for k, v := range tags {
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proc.Tags()[k] = v
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}
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// Add pid tag if needed
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if p.PidTag {
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proc.Tags()["pid"] = strconv.Itoa(int(pid))
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}
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if p.ProcessName != "" {
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proc.Tags()["process_name"] = p.ProcessName
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}
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}
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}
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return procs, nil
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}
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// Create and return PIDGatherer lazily
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func (p *Procstat) getPIDFinder() (PIDFinder, error) {
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if p.finder == nil {
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f, err := p.createPIDFinder()
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if err != nil {
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return nil, err
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}
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p.finder = f
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}
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return p.finder, nil
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}
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// Get matching PIDs and their initial tags
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func (p *Procstat) findPids(acc telegraf.Accumulator) ([]PID, map[string]string, error) {
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var pids []PID
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tags := make(map[string]string)
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var err error
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f, err := p.getPIDFinder()
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if err != nil {
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return nil, nil, err
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}
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if p.PidFile != "" {
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pids, err = f.PidFile(p.PidFile)
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tags = map[string]string{"pidfile": p.PidFile}
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} else if p.Exe != "" {
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pids, err = f.Pattern(p.Exe)
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tags = map[string]string{"exe": p.Exe}
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} else if p.Pattern != "" {
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pids, err = f.FullPattern(p.Pattern)
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tags = map[string]string{"pattern": p.Pattern}
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} else if p.User != "" {
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pids, err = f.Uid(p.User)
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tags = map[string]string{"user": p.User}
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} else if p.SystemdUnit != "" {
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pids, err = p.systemdUnitPIDs()
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tags = map[string]string{"systemd_unit": p.SystemdUnit}
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} else if p.CGroup != "" {
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pids, err = p.cgroupPIDs()
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tags = map[string]string{"cgroup": p.CGroup}
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} else if p.WinService != "" {
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pids, err = p.winServicePIDs()
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tags = map[string]string{"win_service": p.WinService}
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} else {
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err = fmt.Errorf("Either exe, pid_file, user, pattern, systemd_unit, cgroup, or win_service must be specified")
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}
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return pids, tags, err
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}
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// execCommand is so tests can mock out exec.Command usage.
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var execCommand = exec.Command
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func (p *Procstat) systemdUnitPIDs() ([]PID, error) {
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var pids []PID
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cmd := execCommand("systemctl", "show", p.SystemdUnit)
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out, err := cmd.Output()
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if err != nil {
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return nil, err
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}
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for _, line := range bytes.Split(out, []byte{'\n'}) {
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kv := bytes.SplitN(line, []byte{'='}, 2)
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if len(kv) != 2 {
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continue
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}
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if !bytes.Equal(kv[0], []byte("MainPID")) {
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continue
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}
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if len(kv[1]) == 0 {
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return nil, nil
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}
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pid, err := strconv.Atoi(string(kv[1]))
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if err != nil {
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return nil, fmt.Errorf("invalid pid '%s'", kv[1])
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}
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pids = append(pids, PID(pid))
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}
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return pids, nil
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}
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func (p *Procstat) cgroupPIDs() ([]PID, error) {
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var pids []PID
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procsPath := p.CGroup
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if procsPath[0] != '/' {
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procsPath = "/sys/fs/cgroup/" + procsPath
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}
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procsPath = filepath.Join(procsPath, "cgroup.procs")
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out, err := ioutil.ReadFile(procsPath)
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if err != nil {
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return nil, err
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}
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for _, pidBS := range bytes.Split(out, []byte{'\n'}) {
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if len(pidBS) == 0 {
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continue
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}
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pid, err := strconv.Atoi(string(pidBS))
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if err != nil {
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return nil, fmt.Errorf("invalid pid '%s'", pidBS)
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}
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pids = append(pids, PID(pid))
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}
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return pids, nil
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}
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func (p *Procstat) winServicePIDs() ([]PID, error) {
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var pids []PID
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pid, err := queryPidWithWinServiceName(p.WinService)
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if err != nil {
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return pids, err
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}
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pids = append(pids, PID(pid))
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return pids, nil
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}
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func init() {
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inputs.Add("procstat", func() telegraf.Input {
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return &Procstat{}
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})
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}
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