454 lines
11 KiB
Go
454 lines
11 KiB
Go
package syslog
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import (
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"crypto/tls"
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"fmt"
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"io"
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"net"
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"net/url"
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"os"
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"strings"
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"sync"
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"time"
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"unicode"
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"github.com/influxdata/go-syslog"
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"github.com/influxdata/go-syslog/nontransparent"
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"github.com/influxdata/go-syslog/octetcounting"
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"github.com/influxdata/go-syslog/rfc5424"
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"github.com/influxdata/telegraf"
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"github.com/influxdata/telegraf/internal"
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tlsConfig "github.com/influxdata/telegraf/internal/tls"
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"github.com/influxdata/telegraf/plugins/inputs"
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)
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const defaultReadTimeout = time.Second * 5
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const ipMaxPacketSize = 64 * 1024
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// Syslog is a syslog plugin
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type Syslog struct {
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tlsConfig.ServerConfig
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Address string `toml:"server"`
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KeepAlivePeriod *internal.Duration
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MaxConnections int
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ReadTimeout *internal.Duration
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Framing Framing
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Trailer nontransparent.TrailerType
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BestEffort bool
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Separator string `toml:"sdparam_separator"`
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now func() time.Time
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lastTime time.Time
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mu sync.Mutex
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wg sync.WaitGroup
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io.Closer
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isStream bool
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tcpListener net.Listener
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tlsConfig *tls.Config
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connections map[string]net.Conn
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connectionsMu sync.Mutex
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udpListener net.PacketConn
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}
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var sampleConfig = `
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## Specify an ip or hostname with port - eg., tcp://localhost:6514, tcp://10.0.0.1:6514
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## Protocol, address and port to host the syslog receiver.
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## If no host is specified, then localhost is used.
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## If no port is specified, 6514 is used (RFC5425#section-4.1).
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server = "tcp://:6514"
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## TLS Config
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# tls_allowed_cacerts = ["/etc/telegraf/ca.pem"]
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# tls_cert = "/etc/telegraf/cert.pem"
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# tls_key = "/etc/telegraf/key.pem"
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## Period between keep alive probes.
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## 0 disables keep alive probes.
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## Defaults to the OS configuration.
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## Only applies to stream sockets (e.g. TCP).
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# keep_alive_period = "5m"
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## Maximum number of concurrent connections (default = 0).
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## 0 means unlimited.
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## Only applies to stream sockets (e.g. TCP).
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# max_connections = 1024
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## Read timeout is the maximum time allowed for reading a single message (default = 5s).
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## 0 means unlimited.
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# read_timeout = "5s"
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## The framing technique with which it is expected that messages are transported (default = "octet-counting").
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## Whether the messages come using the octect-counting (RFC5425#section-4.3.1, RFC6587#section-3.4.1),
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## or the non-transparent framing technique (RFC6587#section-3.4.2).
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## Must be one of "octect-counting", "non-transparent".
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# framing = "octet-counting"
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## The trailer to be expected in case of non-trasparent framing (default = "LF").
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## Must be one of "LF", or "NUL".
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# trailer = "LF"
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## Whether to parse in best effort mode or not (default = false).
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## By default best effort parsing is off.
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# best_effort = false
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## Character to prepend to SD-PARAMs (default = "_").
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## A syslog message can contain multiple parameters and multiple identifiers within structured data section.
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## Eg., [id1 name1="val1" name2="val2"][id2 name1="val1" nameA="valA"]
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## For each combination a field is created.
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## Its name is created concatenating identifier, sdparam_separator, and parameter name.
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# sdparam_separator = "_"
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`
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// SampleConfig returns sample configuration message
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func (s *Syslog) SampleConfig() string {
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return sampleConfig
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}
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// Description returns the plugin description
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func (s *Syslog) Description() string {
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return "Accepts syslog messages following RFC5424 format with transports as per RFC5426, RFC5425, or RFC6587"
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}
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// Gather ...
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func (s *Syslog) Gather(_ telegraf.Accumulator) error {
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return nil
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}
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// Start starts the service.
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func (s *Syslog) Start(acc telegraf.Accumulator) error {
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s.mu.Lock()
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defer s.mu.Unlock()
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scheme, host, err := getAddressParts(s.Address)
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if err != nil {
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return err
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}
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s.Address = host
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switch scheme {
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case "tcp", "tcp4", "tcp6", "unix", "unixpacket":
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s.isStream = true
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case "udp", "udp4", "udp6", "ip", "ip4", "ip6", "unixgram":
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s.isStream = false
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default:
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return fmt.Errorf("unknown protocol '%s' in '%s'", scheme, s.Address)
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}
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if scheme == "unix" || scheme == "unixpacket" || scheme == "unixgram" {
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os.Remove(s.Address)
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}
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if s.isStream {
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l, err := net.Listen(scheme, s.Address)
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if err != nil {
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return err
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}
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s.Closer = l
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s.tcpListener = l
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s.tlsConfig, err = s.TLSConfig()
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if err != nil {
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return err
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}
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s.wg.Add(1)
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go s.listenStream(acc)
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} else {
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l, err := net.ListenPacket(scheme, s.Address)
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if err != nil {
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return err
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}
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s.Closer = l
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s.udpListener = l
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s.wg.Add(1)
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go s.listenPacket(acc)
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}
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if scheme == "unix" || scheme == "unixpacket" || scheme == "unixgram" {
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s.Closer = unixCloser{path: s.Address, closer: s.Closer}
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}
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return nil
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}
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// Stop cleans up all resources
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func (s *Syslog) Stop() {
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s.mu.Lock()
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defer s.mu.Unlock()
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if s.Closer != nil {
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s.Close()
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}
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s.wg.Wait()
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}
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// getAddressParts returns the address scheme and host
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// it also sets defaults for them when missing
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// when the input address does not specify the protocol it returns an error
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func getAddressParts(a string) (string, string, error) {
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parts := strings.SplitN(a, "://", 2)
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if len(parts) != 2 {
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return "", "", fmt.Errorf("missing protocol within address '%s'", a)
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}
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u, _ := url.Parse(a)
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switch u.Scheme {
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case "unix", "unixpacket", "unixgram":
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return parts[0], parts[1], nil
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}
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var host string
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if u.Hostname() != "" {
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host = u.Hostname()
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}
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host += ":"
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if u.Port() == "" {
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host += "6514"
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} else {
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host += u.Port()
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}
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return u.Scheme, host, nil
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}
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func (s *Syslog) listenPacket(acc telegraf.Accumulator) {
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defer s.wg.Done()
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b := make([]byte, ipMaxPacketSize)
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var p syslog.Machine
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if s.BestEffort {
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p = rfc5424.NewParser(rfc5424.WithBestEffort())
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} else {
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p = rfc5424.NewParser()
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}
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for {
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n, _, err := s.udpListener.ReadFrom(b)
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if err != nil {
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if !strings.HasSuffix(err.Error(), ": use of closed network connection") {
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acc.AddError(err)
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}
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break
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}
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message, err := p.Parse(b[:n])
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if message != nil {
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acc.AddFields("syslog", fields(message, s), tags(message), s.time())
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}
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if err != nil {
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acc.AddError(err)
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}
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}
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}
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func (s *Syslog) listenStream(acc telegraf.Accumulator) {
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defer s.wg.Done()
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s.connections = map[string]net.Conn{}
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for {
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conn, err := s.tcpListener.Accept()
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if err != nil {
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if !strings.HasSuffix(err.Error(), ": use of closed network connection") {
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acc.AddError(err)
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}
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break
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}
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var tcpConn, _ = conn.(*net.TCPConn)
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if s.tlsConfig != nil {
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conn = tls.Server(conn, s.tlsConfig)
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}
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s.connectionsMu.Lock()
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if s.MaxConnections > 0 && len(s.connections) >= s.MaxConnections {
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s.connectionsMu.Unlock()
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conn.Close()
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continue
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}
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s.connections[conn.RemoteAddr().String()] = conn
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s.connectionsMu.Unlock()
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if err := s.setKeepAlive(tcpConn); err != nil {
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acc.AddError(fmt.Errorf("unable to configure keep alive (%s): %s", s.Address, err))
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}
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go s.handle(conn, acc)
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}
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s.connectionsMu.Lock()
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for _, c := range s.connections {
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c.Close()
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}
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s.connectionsMu.Unlock()
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}
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func (s *Syslog) removeConnection(c net.Conn) {
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s.connectionsMu.Lock()
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delete(s.connections, c.RemoteAddr().String())
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s.connectionsMu.Unlock()
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}
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func (s *Syslog) handle(conn net.Conn, acc telegraf.Accumulator) {
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defer func() {
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s.removeConnection(conn)
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conn.Close()
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}()
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var p syslog.Parser
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emit := func(r *syslog.Result) {
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s.store(*r, acc)
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if s.ReadTimeout != nil && s.ReadTimeout.Duration > 0 {
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conn.SetReadDeadline(time.Now().Add(s.ReadTimeout.Duration))
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}
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}
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// Create parser options
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opts := []syslog.ParserOption{
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syslog.WithListener(emit),
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}
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if s.BestEffort {
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opts = append(opts, syslog.WithBestEffort())
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}
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// Select the parser to use depeding on transport framing
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if s.Framing == OctetCounting {
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// Octet counting transparent framing
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p = octetcounting.NewParser(opts...)
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} else {
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// Non-transparent framing
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opts = append(opts, nontransparent.WithTrailer(s.Trailer))
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p = nontransparent.NewParser(opts...)
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}
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p.Parse(conn)
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if s.ReadTimeout != nil && s.ReadTimeout.Duration > 0 {
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conn.SetReadDeadline(time.Now().Add(s.ReadTimeout.Duration))
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}
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}
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func (s *Syslog) setKeepAlive(c *net.TCPConn) error {
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if s.KeepAlivePeriod == nil {
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return nil
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}
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if s.KeepAlivePeriod.Duration == 0 {
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return c.SetKeepAlive(false)
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}
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if err := c.SetKeepAlive(true); err != nil {
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return err
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}
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return c.SetKeepAlivePeriod(s.KeepAlivePeriod.Duration)
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}
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func (s *Syslog) store(res syslog.Result, acc telegraf.Accumulator) {
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if res.Error != nil {
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acc.AddError(res.Error)
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}
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if res.Message != nil {
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acc.AddFields("syslog", fields(res.Message, s), tags(res.Message), s.time())
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}
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}
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func tags(msg syslog.Message) map[string]string {
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ts := map[string]string{}
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// Not checking assuming a minimally valid message
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ts["severity"] = *msg.SeverityShortLevel()
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ts["facility"] = *msg.FacilityLevel()
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if msg.Hostname() != nil {
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ts["hostname"] = *msg.Hostname()
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}
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if msg.Appname() != nil {
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ts["appname"] = *msg.Appname()
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}
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return ts
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}
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func fields(msg syslog.Message, s *Syslog) map[string]interface{} {
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// Not checking assuming a minimally valid message
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flds := map[string]interface{}{
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"version": msg.Version(),
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}
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flds["severity_code"] = int(*msg.Severity())
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flds["facility_code"] = int(*msg.Facility())
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if msg.Timestamp() != nil {
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flds["timestamp"] = (*msg.Timestamp()).UnixNano()
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}
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if msg.ProcID() != nil {
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flds["procid"] = *msg.ProcID()
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}
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if msg.MsgID() != nil {
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flds["msgid"] = *msg.MsgID()
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}
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if msg.Message() != nil {
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flds["message"] = strings.TrimRightFunc(*msg.Message(), func(r rune) bool {
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return unicode.IsSpace(r)
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})
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}
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if msg.StructuredData() != nil {
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for sdid, sdparams := range *msg.StructuredData() {
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if len(sdparams) == 0 {
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// When SD-ID does not have params we indicate its presence with a bool
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flds[sdid] = true
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continue
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}
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for name, value := range sdparams {
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// Using whitespace as separator since it is not allowed by the grammar within SDID
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flds[sdid+s.Separator+name] = value
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}
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}
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}
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return flds
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}
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type unixCloser struct {
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path string
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closer io.Closer
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}
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func (uc unixCloser) Close() error {
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err := uc.closer.Close()
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os.Remove(uc.path) // ignore error
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return err
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}
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func (s *Syslog) time() time.Time {
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t := s.now()
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if t == s.lastTime {
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t = t.Add(time.Nanosecond)
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}
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s.lastTime = t
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return t
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}
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func getNanoNow() time.Time {
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return time.Unix(0, time.Now().UnixNano())
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}
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func init() {
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receiver := &Syslog{
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Address: ":6514",
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now: getNanoNow,
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ReadTimeout: &internal.Duration{
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Duration: defaultReadTimeout,
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},
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Framing: OctetCounting,
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Trailer: nontransparent.LF,
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Separator: "_",
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}
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inputs.Add("syslog", func() telegraf.Input { return receiver })
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}
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