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package main
import (
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"crypto/tls"
"fmt"
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"os"
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"os/signal"
"syscall"
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log "github.com/sirupsen/logrus"
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"github.com/spf13/cobra"
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"github.com/netbirdio/netbird/encryption"
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"github.com/netbirdio/netbird/relay/server"
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"github.com/netbirdio/netbird/util"
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)
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var (
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listenAddress string
// in HA every peer connect to a common domain, the instance domain has been distributed during the p2p connection
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// it is a domain:port or ip:port
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exposedAddress string
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letsencryptDataDir string
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letsencryptDomains [ ] string
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tlsCertFile string
tlsKeyFile string
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authSecret string
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rootCmd = & cobra . Command {
Use : "relay" ,
Short : "Relay service" ,
Long : "Relay service for Netbird agents" ,
Run : execute ,
}
)
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func init ( ) {
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_ = util . InitLog ( "trace" , "console" )
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rootCmd . PersistentFlags ( ) . StringVarP ( & listenAddress , "listen-address" , "l" , ":443" , "listen address" )
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rootCmd . PersistentFlags ( ) . StringVarP ( & exposedAddress , "exposed-address" , "e" , "" , "instance domain address (or ip) and port, it will be distributes between peers" )
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rootCmd . PersistentFlags ( ) . StringVarP ( & letsencryptDataDir , "letsencrypt-data-dir" , "d" , "" , "a directory to store Let's Encrypt data. Required if Let's Encrypt is enabled." )
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rootCmd . PersistentFlags ( ) . StringArrayVarP ( & letsencryptDomains , "letsencrypt-domains" , "a" , nil , "list of domains to issue Let's Encrypt certificate for. Enables TLS using Let's Encrypt. Will fetch and renew certificate, and run the server with TLS" )
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rootCmd . PersistentFlags ( ) . StringVarP ( & tlsCertFile , "tls-cert-file" , "c" , "" , "" )
rootCmd . PersistentFlags ( ) . StringVarP ( & tlsKeyFile , "tls-key-file" , "k" , "" , "" )
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rootCmd . PersistentFlags ( ) . StringVarP ( & authSecret , "auth-secret" , "s" , "" , "log level" )
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}
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func waitForExitSignal ( ) {
osSigs := make ( chan os . Signal , 1 )
signal . Notify ( osSigs , syscall . SIGINT , syscall . SIGTERM )
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<- osSigs
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}
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func execute ( cmd * cobra . Command , args [ ] string ) {
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if exposedAddress == "" {
log . Errorf ( "exposed address is required" )
os . Exit ( 1 )
}
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if authSecret == "" {
log . Errorf ( "auth secret is required" )
os . Exit ( 1 )
}
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srvListenerCfg := server . ListenerConfig {
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Address : listenAddress ,
}
if hasLetsEncrypt ( ) {
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tlsCfg , err := setupTLSCertManager ( )
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if err != nil {
log . Errorf ( "%s" , err )
os . Exit ( 1 )
}
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srvListenerCfg . TLSConfig = tlsCfg
} else if hasCertConfig ( ) {
tlsCfg , err := encryption . LoadTLSConfig ( tlsCertFile , tlsKeyFile )
if err != nil {
log . Errorf ( "%s" , err )
os . Exit ( 1 )
}
srvListenerCfg . TLSConfig = tlsCfg
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}
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tlsSupport := srvListenerCfg . TLSConfig != nil
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srv := server . NewServer ( exposedAddress , tlsSupport , authSecret )
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log . Infof ( "server will be available on: %s" , srv . InstanceURL ( ) )
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err := srv . Listen ( srvListenerCfg )
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if err != nil {
log . Errorf ( "failed to bind server: %s" , err )
os . Exit ( 1 )
}
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waitForExitSignal ( )
err = srv . Close ( )
if err != nil {
log . Errorf ( "failed to close server: %s" , err )
os . Exit ( 1 )
}
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}
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func hasCertConfig ( ) bool {
return tlsCertFile != "" && tlsKeyFile != ""
}
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func hasLetsEncrypt ( ) bool {
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return letsencryptDataDir != "" && letsencryptDomains != nil && len ( letsencryptDomains ) > 0
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}
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func setupTLSCertManager ( ) ( * tls . Config , error ) {
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certManager , err := encryption . CreateCertManager ( letsencryptDataDir , letsencryptDomains ... )
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if err != nil {
return nil , fmt . Errorf ( "failed creating LetsEncrypt cert manager: %v" , err )
}
return certManager . TLSConfig ( ) , nil
}
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func main ( ) {
err := rootCmd . Execute ( )
if err != nil {
os . Exit ( 1 )
}
}