352 lines
7.8 KiB
Go
352 lines
7.8 KiB
Go
package ping
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import (
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"context"
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"errors"
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"math"
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"net"
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"os/exec"
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"runtime"
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"sync"
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"time"
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"github.com/glinton/ping"
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"github.com/influxdata/telegraf"
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"github.com/influxdata/telegraf/internal"
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"github.com/influxdata/telegraf/plugins/inputs"
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)
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// HostPinger is a function that runs the "ping" function using a list of
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// passed arguments. This can be easily switched with a mocked ping function
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// for unit test purposes (see ping_test.go)
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type HostPinger func(binary string, timeout float64, args ...string) (string, error)
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type Ping struct {
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wg sync.WaitGroup
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// Interval at which to ping (ping -i <INTERVAL>)
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PingInterval float64 `toml:"ping_interval"`
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// Number of pings to send (ping -c <COUNT>)
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Count int
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// Per-ping timeout, in seconds. 0 means no timeout (ping -W <TIMEOUT>)
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Timeout float64
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// Ping deadline, in seconds. 0 means no deadline. (ping -w <DEADLINE>)
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Deadline int
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// Interface or source address to send ping from (ping -I/-S <INTERFACE/SRC_ADDR>)
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Interface string
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// URLs to ping
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Urls []string
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// Method defines how to ping (native or exec)
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Method string
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// Ping executable binary
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Binary string
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// Arguments for ping command. When arguments is not empty, system binary will be used and
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// other options (ping_interval, timeout, etc) will be ignored
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Arguments []string
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// Whether to resolve addresses using ipv6 or not.
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IPv6 bool
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// host ping function
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pingHost HostPinger
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// listenAddr is the address associated with the interface defined.
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listenAddr string
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}
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func (*Ping) Description() string {
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return "Ping given url(s) and return statistics"
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}
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const sampleConfig = `
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## List of urls to ping
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urls = ["example.org"]
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## Number of pings to send per collection (ping -c <COUNT>)
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# count = 1
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## Interval, in s, at which to ping. 0 == default (ping -i <PING_INTERVAL>)
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# ping_interval = 1.0
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## Per-ping timeout, in s. 0 == no timeout (ping -W <TIMEOUT>)
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# timeout = 1.0
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## Total-ping deadline, in s. 0 == no deadline (ping -w <DEADLINE>)
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# deadline = 10
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## Interface or source address to send ping from (ping -I[-S] <INTERFACE/SRC_ADDR>)
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# interface = ""
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## How to ping. "native" doesn't have external dependencies, while "exec" depends on 'ping'.
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# method = "exec"
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## Specify the ping executable binary, default is "ping"
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# binary = "ping"
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## Arguments for ping command. When arguments is not empty, system binary will be used and
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## other options (ping_interval, timeout, etc) will be ignored.
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# arguments = ["-c", "3"]
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## Use only ipv6 addresses when resolving hostnames.
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# ipv6 = false
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`
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func (*Ping) SampleConfig() string {
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return sampleConfig
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}
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func (p *Ping) Gather(acc telegraf.Accumulator) error {
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if p.Interface != "" && p.listenAddr != "" {
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p.listenAddr = getAddr(p.Interface)
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}
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for _, ip := range p.Urls {
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_, err := net.LookupHost(ip)
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if err != nil {
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acc.AddFields("ping", map[string]interface{}{"result_code": 1}, map[string]string{"ip": ip})
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acc.AddError(err)
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return nil
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}
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if p.Method == "native" {
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p.wg.Add(1)
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go func(ip string) {
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defer p.wg.Done()
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p.pingToURLNative(ip, acc)
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}(ip)
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} else {
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p.wg.Add(1)
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go func(ip string) {
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defer p.wg.Done()
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p.pingToURL(ip, acc)
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}(ip)
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}
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}
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p.wg.Wait()
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return nil
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}
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func getAddr(iface string) string {
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if addr := net.ParseIP(iface); addr != nil {
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return addr.String()
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}
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ifaces, err := net.Interfaces()
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if err != nil {
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return ""
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}
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var ip net.IP
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for i := range ifaces {
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if ifaces[i].Name == iface {
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addrs, err := ifaces[i].Addrs()
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if err != nil {
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return ""
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}
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if len(addrs) > 0 {
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switch v := addrs[0].(type) {
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case *net.IPNet:
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ip = v.IP
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case *net.IPAddr:
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ip = v.IP
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}
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if len(ip) == 0 {
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return ""
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}
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return ip.String()
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}
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}
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}
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return ""
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}
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func hostPinger(binary string, timeout float64, args ...string) (string, error) {
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bin, err := exec.LookPath(binary)
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if err != nil {
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return "", err
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}
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c := exec.Command(bin, args...)
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out, err := internal.CombinedOutputTimeout(c,
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time.Second*time.Duration(timeout+5))
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return string(out), err
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}
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func (p *Ping) pingToURLNative(destination string, acc telegraf.Accumulator) {
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ctx := context.Background()
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network := "ip4"
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if p.IPv6 {
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network = "ip6"
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}
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host, err := net.ResolveIPAddr(network, destination)
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if err != nil {
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acc.AddFields("ping", map[string]interface{}{"result_code": 1}, map[string]string{"url": destination})
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acc.AddError(err)
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return
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}
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interval := p.PingInterval
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if interval < 0.2 {
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interval = 0.2
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}
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timeout := p.Timeout
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if timeout == 0 {
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timeout = 5
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}
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tick := time.NewTicker(time.Duration(interval * float64(time.Second)))
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defer tick.Stop()
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if p.Deadline > 0 {
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var cancel context.CancelFunc
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ctx, cancel = context.WithTimeout(ctx, time.Duration(p.Deadline)*time.Second)
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defer cancel()
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}
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resps := make(chan *ping.Response)
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rsps := []*ping.Response{}
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r := &sync.WaitGroup{}
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r.Add(1)
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go func() {
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for res := range resps {
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rsps = append(rsps, res)
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}
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r.Done()
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}()
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wg := &sync.WaitGroup{}
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c := ping.Client{}
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var i int
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for i = 0; i < p.Count; i++ {
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select {
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case <-ctx.Done():
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goto finish
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case <-tick.C:
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ctx, cancel := context.WithTimeout(ctx, time.Duration(timeout*float64(time.Second)))
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defer cancel()
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wg.Add(1)
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go func(seq int) {
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defer wg.Done()
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resp, err := c.Do(ctx, &ping.Request{
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Dst: net.ParseIP(host.String()),
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Src: net.ParseIP(p.listenAddr),
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Seq: seq,
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})
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if err != nil {
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acc.AddFields("ping", map[string]interface{}{"result_code": 2}, map[string]string{"url": destination})
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acc.AddError(err)
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return
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}
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resps <- resp
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}(i + 1)
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}
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}
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finish:
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wg.Wait()
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close(resps)
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r.Wait()
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tags, fields := onFin(i, rsps, destination)
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acc.AddFields("ping", fields, tags)
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}
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func onFin(packetsSent int, resps []*ping.Response, destination string) (map[string]string, map[string]interface{}) {
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packetsRcvd := len(resps)
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tags := map[string]string{"url": destination}
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fields := map[string]interface{}{
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"result_code": 0,
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"packets_transmitted": packetsSent,
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"packets_received": packetsRcvd,
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}
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if packetsSent == 0 {
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return tags, fields
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}
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if packetsRcvd == 0 {
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fields["percent_packet_loss"] = float64(100)
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return tags, fields
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}
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fields["percent_packet_loss"] = float64(packetsSent-packetsRcvd) / float64(packetsSent) * 100
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ttl := resps[0].TTL
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var min, max, avg, total time.Duration
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min = resps[0].RTT
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max = resps[0].RTT
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for _, res := range resps {
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if res.RTT < min {
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min = res.RTT
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}
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if res.RTT > max {
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max = res.RTT
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}
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total += res.RTT
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}
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avg = total / time.Duration(packetsRcvd)
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var sumsquares time.Duration
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for _, res := range resps {
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sumsquares += (res.RTT - avg) * (res.RTT - avg)
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}
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stdDev := time.Duration(math.Sqrt(float64(sumsquares / time.Duration(packetsRcvd))))
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// Set TTL only on supported platform. See golang.org/x/net/ipv4/payload_cmsg.go
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switch runtime.GOOS {
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case "aix", "darwin", "dragonfly", "freebsd", "linux", "netbsd", "openbsd", "solaris":
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fields["ttl"] = ttl
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}
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fields["minimum_response_ms"] = float64(min.Nanoseconds()) / float64(time.Millisecond)
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fields["average_response_ms"] = float64(avg.Nanoseconds()) / float64(time.Millisecond)
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fields["maximum_response_ms"] = float64(max.Nanoseconds()) / float64(time.Millisecond)
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fields["standard_deviation_ms"] = float64(stdDev.Nanoseconds()) / float64(time.Millisecond)
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return tags, fields
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}
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// Init ensures the plugin is configured correctly.
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func (p *Ping) Init() error {
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if p.Count < 1 {
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return errors.New("bad number of packets to transmit")
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}
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return nil
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}
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func init() {
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inputs.Add("ping", func() telegraf.Input {
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return &Ping{
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pingHost: hostPinger,
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PingInterval: 1.0,
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Count: 1,
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Timeout: 1.0,
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Deadline: 10,
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Method: "exec",
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Binary: "ping",
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Arguments: []string{},
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}
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})
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}
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