246 lines
7.5 KiB
Go
246 lines
7.5 KiB
Go
package main
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import (
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"crypto/tls"
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"flag"
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"fmt"
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"log"
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"net"
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"net/http"
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"os"
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"path/filepath"
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"strings"
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"time"
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"github.com/coreos/go-systemd/v22/activation"
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"golang.org/x/crypto/acme"
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"golang.org/x/crypto/acme/autocert"
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"golang.org/x/crypto/bcrypt"
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)
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var (
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home, _ = os.UserHomeDir()
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version = "undefined"
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)
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func perror(msg string) {
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fmt.Fprintln(os.Stderr, "")
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fmt.Fprintln(os.Stderr, msg)
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}
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func arg_fail(msg string) {
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perror(msg)
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perror("Usage:")
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flag.PrintDefaults()
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os.Exit(2)
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}
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type CSVArg []string
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func (a *CSVArg) Set(s string) error {
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*a = strings.Split(s, ",")
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return nil
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}
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func (a *CSVArg) String() string {
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if a == nil {
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return "<nil>"
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}
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if *a == nil {
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return "<empty>"
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}
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return strings.Join(*a, ",")
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}
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type CLIArgs struct {
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bind_address string
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auth string
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verbosity int
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timeout time.Duration
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cert, key, cafile string
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list_ciphers bool
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ciphers string
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disableHTTP2 bool
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showVersion bool
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autocert bool
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autocertWhitelist CSVArg
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autocertDir string
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autocertACME string
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autocertEmail string
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autocertHTTP string
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passwd string
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passwdCost int
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positionalArgs []string
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proxy []string
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sourceIPHints string
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userIPHints bool
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}
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func parse_args() CLIArgs {
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var args CLIArgs
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flag.StringVar(&args.bind_address, "bind-address", ":8080", "HTTP proxy listen address. Set empty value to use systemd socket activation.")
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flag.StringVar(&args.auth, "auth", "none://", "auth parameters")
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flag.IntVar(&args.verbosity, "verbosity", 20, "logging verbosity "+
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"(10 - debug, 20 - info, 30 - warning, 40 - error, 50 - critical)")
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flag.DurationVar(&args.timeout, "timeout", 10*time.Second, "timeout for network operations")
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flag.StringVar(&args.cert, "cert", "", "enable TLS and use certificate")
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flag.StringVar(&args.key, "key", "", "key for TLS certificate")
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flag.StringVar(&args.cafile, "cafile", "", "CA file to authenticate clients with certificates")
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flag.BoolVar(&args.list_ciphers, "list-ciphers", false, "list ciphersuites")
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flag.StringVar(&args.ciphers, "ciphers", "", "colon-separated list of enabled ciphers")
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flag.BoolVar(&args.disableHTTP2, "disable-http2", false, "disable HTTP2")
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flag.BoolVar(&args.showVersion, "version", false, "show program version and exit")
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flag.BoolVar(&args.autocert, "autocert", false, "issue TLS certificates automatically")
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flag.Var(&args.autocertWhitelist, "autocert-whitelist", "restrict autocert domains to this comma-separated list")
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flag.StringVar(&args.autocertDir, "autocert-dir", filepath.Join(home, ".dumbproxy", "autocert"), "path to autocert cache")
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flag.StringVar(&args.autocertACME, "autocert-acme", autocert.DefaultACMEDirectory, "custom ACME endpoint")
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flag.StringVar(&args.autocertEmail, "autocert-email", "", "email used for ACME registration")
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flag.StringVar(&args.autocertHTTP, "autocert-http", "", "listen address for HTTP-01 challenges handler of ACME")
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flag.StringVar(&args.passwd, "passwd", "", "update given htpasswd file and add/set password for username. "+
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"Username and password can be passed as positional arguments or requested interactively")
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flag.IntVar(&args.passwdCost, "passwd-cost", bcrypt.MinCost, "bcrypt password cost (for -passwd mode)")
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flag.Func("proxy", "upstream proxy URL. Can be repeated multiple times to chain proxies. Examples: socks5h://127.0.0.1:9050; https://user:password@example.com:443", func(p string) error {
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args.proxy = append(args.proxy, p)
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return nil
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})
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flag.StringVar(&args.sourceIPHints, "ip-hints", "", "a comma-separated list of source addresses to use on dial attempts. \"$lAddr\" gets expanded to local address of connection. Example: \"10.0.0.1,fe80::2,$lAddr,0.0.0.0,::\"")
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flag.BoolVar(&args.userIPHints, "user-ip-hints", false, "allow IP hints to be specified by user in X-Src-IP-Hints header")
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flag.Parse()
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args.positionalArgs = flag.Args()
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return args
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}
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func run() int {
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args := parse_args()
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if args.showVersion {
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fmt.Println(version)
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return 0
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}
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if args.list_ciphers {
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list_ciphers()
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return 0
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}
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if args.passwd != "" {
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if err := passwd(args.passwd, args.passwdCost, args.positionalArgs...); err != nil {
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log.Fatalf("can't set password: %v", err)
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}
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return 0
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}
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logWriter := NewLogWriter(os.Stderr)
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defer logWriter.Close()
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mainLogger := NewCondLogger(log.New(logWriter, "MAIN : ",
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log.LstdFlags|log.Lshortfile),
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args.verbosity)
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proxyLogger := NewCondLogger(log.New(logWriter, "PROXY : ",
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log.LstdFlags|log.Lshortfile),
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args.verbosity)
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authLogger := NewCondLogger(log.New(logWriter, "AUTH : ",
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log.LstdFlags|log.Lshortfile),
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args.verbosity)
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auth, err := NewAuth(args.auth, authLogger)
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if err != nil {
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mainLogger.Critical("Failed to instantiate auth provider: %v", err)
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return 3
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}
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defer auth.Stop()
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var dialer Dialer = NewBoundDialer(new(net.Dialer), args.sourceIPHints)
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for _, proxyURL := range args.proxy {
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newDialer, err := proxyDialerFromURL(proxyURL, dialer)
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if err != nil {
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mainLogger.Critical("Failed to create dialer for proxy %q: %v", proxyURL, err)
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return 3
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}
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dialer = newDialer
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}
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server := http.Server{
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Addr: args.bind_address,
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Handler: NewProxyHandler(args.timeout, auth, maybeWrapWithContextDialer(dialer), args.userIPHints, proxyLogger),
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ErrorLog: log.New(logWriter, "HTTPSRV : ", log.LstdFlags|log.Lshortfile),
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ReadTimeout: 0,
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ReadHeaderTimeout: 0,
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WriteTimeout: 0,
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IdleTimeout: 0,
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}
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if args.disableHTTP2 {
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server.TLSNextProto = make(map[string]func(*http.Server, *tls.Conn, http.Handler))
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}
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mainLogger.Info("Starting proxy server...")
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var listener net.Listener
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if args.bind_address == "" {
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// socket activation
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listeners, err := activation.Listeners()
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if err != nil {
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mainLogger.Critical("socket activation failed: %v", err)
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return 3
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}
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if len(listeners) != 1 {
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mainLogger.Critical("socket activation failed: unexpected number of listeners: %d",
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len(listeners))
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return 3
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}
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if listeners[0] == nil {
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mainLogger.Critical("socket activation failed: nil listener returned")
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return 3
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}
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listener = listeners[0]
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} else {
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newListener, err := net.Listen("tcp", args.bind_address)
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if err != nil {
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mainLogger.Critical("listen failed: %v", err)
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return 3
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}
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listener = newListener
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}
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if args.cert != "" {
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cfg, err1 := makeServerTLSConfig(args.cert, args.key, args.cafile, args.ciphers, !args.disableHTTP2)
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if err1 != nil {
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mainLogger.Critical("TLS config construction failed: %v", err1)
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return 3
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}
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listener = tls.NewListener(listener, cfg)
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} else if args.autocert {
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m := &autocert.Manager{
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Cache: autocert.DirCache(args.autocertDir),
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Prompt: autocert.AcceptTOS,
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Client: &acme.Client{DirectoryURL: args.autocertACME},
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Email: args.autocertEmail,
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}
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if args.autocertWhitelist != nil {
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m.HostPolicy = autocert.HostWhitelist([]string(args.autocertWhitelist)...)
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}
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if args.autocertHTTP != "" {
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go func() {
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log.Fatalf("HTTP-01 ACME challenge server stopped: %v",
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http.ListenAndServe(args.autocertHTTP, m.HTTPHandler(nil)))
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}()
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}
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cfg := m.TLSConfig()
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cfg, err = updateServerTLSConfig(cfg, args.cafile, args.ciphers, !args.disableHTTP2)
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if err != nil {
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mainLogger.Critical("TLS config construction failed: %v", err)
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return 3
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}
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listener = tls.NewListener(listener, cfg)
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}
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mainLogger.Info("Proxy server started.")
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err = server.Serve(listener)
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mainLogger.Critical("Server terminated with a reason: %v", err)
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mainLogger.Info("Shutting down...")
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return 0
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}
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func main() {
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os.Exit(run())
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}
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