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output.go
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output.go
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package main
import (
"bufio"
"bytes"
"compress/zlib"
"encoding/binary"
"encoding/json"
"fmt"
"io"
"log"
"os"
"os/signal"
"sync/atomic"
"syscall"
"time"
)
const (
gelfChunkSize = 1300
)
var (
gelfMsgID uint64
)
func openOrStdout(filename string, timeFormat string) *os.File {
outName := filename
if timeFormat != "" {
outName = fmt.Sprintf("%s.%s", filename, time.Now().Format(timeFormat))
}
out, err := os.OpenFile(outName, os.O_APPEND|os.O_CREATE|os.O_RDWR, 0600)
if nil != err {
log.Printf("[minisv] Error opening output log (%s), using stdout: %v\n",
outName, err)
return os.Stdout
}
return out
}
func sendGrayLogUDPMessage(message string, serviceName string, graylog grayLogConfig) error {
if graylog.socket == nil {
return nil
}
hostname, _ := os.Hostname()
if hostname == "" {
hostname = "minisv" // graylog rejects messages without hostname
}
msg := map[string]interface{}{
"version": "1.1",
"host": hostname,
"short_message": message,
"timestamp": float64(time.Now().UnixNano()) / 1000000000.0,
"level": graylog.Level,
"_service": serviceName,
}
for k, v := range graylog.AddFields {
msg[k] = v
}
data, err := json.Marshal(msg)
if err != nil {
return fmt.Errorf("error encoding graylog json message: %w", err)
}
if len(data) > 1400 { // with IP and UDP headers this will be more than 1500 bytes
var buf bytes.Buffer
cdata := zlib.NewWriter(&buf)
_, err := cdata.Write(data)
if err == nil {
err = cdata.Close()
if err == nil {
data = buf.Bytes()
}
}
}
// if message is small enough
if len(data) < 1401 {
_, err = graylog.socket.Write(data)
if err != nil {
return fmt.Errorf("error sending graylog UDP message: %w", err)
}
return nil
}
if len(data) > 65000 { // what is actual limit for graylog/udp?..
return fmt.Errorf("log message is too long for graylog (%d bytes)", len(data))
}
// if no we need to send in chunks...
header := [12]byte{0x1e, 0x0f}
binary.BigEndian.PutUint64(header[2:10], atomic.AddUint64(&gelfMsgID, 1))
chunks := byte(len(data) / gelfChunkSize)
if len(data)%gelfChunkSize > 0 {
chunks++
}
header[11] = chunks
for i := 0; i < len(data); i += gelfChunkSize {
if i+gelfChunkSize < len(data) {
_, err = graylog.socket.Write(append(header[:], data[i:i+gelfChunkSize]...))
} else {
_, err = graylog.socket.Write(append(header[:], data[i:]...))
}
if err != nil {
return fmt.Errorf("error sending graylog UDP message: %w", err)
}
header[10]++
}
return nil
}
func logWithRotation(filename string, timeSuffixFormat string, rotate chan bool,
timeFormat string, serviceName string, graylog grayLogConfig) io.WriteCloser {
reader, writer := io.Pipe()
bufread := bufio.NewReader(reader)
bufchan := make(chan string, 100)
go func() {
defer close(bufchan)
var err error
var str string
for nil == err {
str, err = bufread.ReadString('\n')
if nil == err {
bufchan <- str
}
}
}()
go func() {
out := openOrStdout(filename, timeSuffixFormat)
for {
select {
case <-rotate:
if os.Stdout != out {
if err := out.Close(); nil != err {
log.Println("Error closing output: ", err)
}
}
out = openOrStdout(filename, timeSuffixFormat)
case str, ok := <-bufchan:
if !ok {
if os.Stdout != out {
if err := out.Close(); nil != err {
log.Println("Error closing output: ", err)
}
}
return
}
var err error
if timeFormat != "" {
_, err = out.WriteString(
fmt.Sprintf("%s: %s", time.Now().Format(timeFormat), str))
} else {
_, err = out.WriteString(str)
}
if nil != err {
log.Println("Error writing to output file: ", err)
}
sendGrayLogUDPMessage(str, serviceName, graylog)
}
}
}()
return writer
}
func rotateLogs() {
config := aConfig.Load()
for name := range config.Tasks {
if !config.Tasks[name].OneTime {
select {
case config.Tasks[name].fSignal <- true:
default:
}
}
}
}
func rotateOnHUP() {
hupChan := make(chan os.Signal, 1)
signal.Notify(hupChan, syscall.SIGHUP)
for range hupChan {
rotateLogs()
}
}
func rotateEveryPeriod() {
config := aConfig.Load()
if nil == config.LogReopen {
return
}
every := time.Duration(*config.LogReopen)
// if no value present in config
if every == 0 {
return
}
log.Println("Rotate logs every ", every)
// align time in so ugly way :)
time.Sleep(time.Until(time.Now().Truncate(every).Add(every)))
go rotateLogs()
ticker := time.NewTicker(every)
for range ticker.C {
go rotateLogs()
}
}