2015-01-30 14:52:18 +08:00
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// Package server implements a configurable, general-purpose web server.
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// It relies on configurations obtained from the adjacent config package
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// and can execute middleware as defined by the adjacent middleware package.
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2015-01-14 03:43:45 +08:00
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package server
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import (
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2015-04-16 04:11:32 +08:00
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"crypto/tls"
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2015-06-02 13:22:11 +08:00
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"crypto/x509"
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2015-03-30 12:01:42 +08:00
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"fmt"
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2015-06-02 13:22:11 +08:00
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"io/ioutil"
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2015-01-14 03:43:45 +08:00
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"log"
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2015-04-16 04:11:32 +08:00
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"net"
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2015-01-14 03:43:45 +08:00
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"net/http"
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2015-03-26 23:52:03 +08:00
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"os"
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"os/signal"
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2015-01-14 03:43:45 +08:00
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2015-09-25 20:10:03 +08:00
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"golang.org/x/net/http2"
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2015-01-14 03:43:45 +08:00
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)
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// Server represents an instance of a server, which serves
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// static content at a particular address (host and port).
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type Server struct {
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2015-04-22 06:00:16 +08:00
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HTTP2 bool // temporary while http2 is not in std lib (TODO: remove flag when part of std lib)
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address string // the actual address for net.Listen to listen on
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tls bool // whether this server is serving all HTTPS hosts or not
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vhosts map[string]virtualHost // virtual hosts keyed by their address
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2015-01-14 03:43:45 +08:00
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}
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2015-04-16 04:11:32 +08:00
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// New creates a new Server which will bind to addr and serve
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// the sites/hosts configured in configs. This function does
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// not start serving.
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2015-07-12 02:00:11 +08:00
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func New(addr string, configs []Config) (*Server, error) {
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var tls bool
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if len(configs) > 0 {
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tls = configs[0].TLS.Enabled
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}
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2015-04-16 04:11:32 +08:00
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s := &Server{
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address: addr,
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tls: tls,
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vhosts: make(map[string]virtualHost),
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2015-01-14 03:43:45 +08:00
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}
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2015-04-16 04:11:32 +08:00
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for _, conf := range configs {
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if _, exists := s.vhosts[conf.Host]; exists {
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2015-06-08 08:49:17 +08:00
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return nil, fmt.Errorf("cannot serve %s - host already defined for address %s", conf.Address(), s.address)
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2015-04-16 04:11:32 +08:00
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}
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2015-01-22 05:10:52 +08:00
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2015-04-16 04:11:32 +08:00
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vh := virtualHost{config: conf}
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2015-01-14 03:43:45 +08:00
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2015-04-16 04:11:32 +08:00
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// Build middleware stack
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err := vh.buildStack()
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2015-03-29 06:37:37 +08:00
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if err != nil {
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2015-04-16 04:11:32 +08:00
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return nil, err
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2015-03-29 06:37:37 +08:00
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}
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2015-04-16 04:11:32 +08:00
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s.vhosts[conf.Host] = vh
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2015-01-14 03:43:45 +08:00
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}
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2015-04-16 04:11:32 +08:00
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return s, nil
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}
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2015-01-22 05:10:52 +08:00
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2015-04-16 04:11:32 +08:00
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// Serve starts the server. It blocks until the server quits.
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func (s *Server) Serve() error {
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2015-03-17 01:44:54 +08:00
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server := &http.Server{
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2015-04-16 04:11:32 +08:00
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Addr: s.address,
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2015-03-17 01:44:54 +08:00
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Handler: s,
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}
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2015-04-10 00:08:22 +08:00
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if s.HTTP2 {
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// TODO: This call may not be necessary after HTTP/2 is merged into std lib
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http2.ConfigureServer(server, nil)
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}
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2015-03-17 01:44:54 +08:00
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2015-04-16 04:11:32 +08:00
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for _, vh := range s.vhosts {
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2015-04-25 10:08:14 +08:00
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// Execute startup functions now
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2015-04-16 04:11:32 +08:00
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for _, start := range vh.config.Startup {
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err := start()
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2015-03-26 23:52:03 +08:00
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if err != nil {
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2015-04-16 04:11:32 +08:00
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return err
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2015-03-26 23:52:03 +08:00
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}
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}
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2015-04-25 10:08:14 +08:00
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// Execute shutdown commands on exit
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2015-04-16 04:11:32 +08:00
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if len(vh.config.Shutdown) > 0 {
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2015-08-02 03:08:31 +08:00
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go func(vh virtualHost) {
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// Wait for signal
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2015-04-16 04:11:32 +08:00
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interrupt := make(chan os.Signal, 1)
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2015-10-15 13:45:28 +08:00
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signal.Notify(interrupt, os.Interrupt, os.Kill) // TODO: syscall.SIGQUIT? (Ctrl+\, Unix-only)
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2015-04-16 04:11:32 +08:00
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<-interrupt
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2015-08-02 03:08:31 +08:00
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// Run callbacks
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exitCode := 0
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2015-04-16 04:11:32 +08:00
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for _, shutdownFunc := range vh.config.Shutdown {
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err := shutdownFunc()
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if err != nil {
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2015-08-02 03:08:31 +08:00
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exitCode = 1
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log.Println(err)
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2015-04-16 04:11:32 +08:00
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}
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}
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2015-08-02 03:08:31 +08:00
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os.Exit(exitCode) // BUG: Other shutdown goroutines might be running; use sync.WaitGroup
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}(vh)
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2015-04-16 04:11:32 +08:00
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}
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}
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if s.tls {
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2015-05-04 20:53:54 +08:00
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var tlsConfigs []TLSConfig
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2015-04-16 04:11:32 +08:00
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for _, vh := range s.vhosts {
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tlsConfigs = append(tlsConfigs, vh.config.TLS)
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}
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return ListenAndServeTLSWithSNI(server, tlsConfigs)
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2015-01-14 03:43:45 +08:00
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}
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2015-05-25 10:52:34 +08:00
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return server.ListenAndServe()
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2015-01-14 03:43:45 +08:00
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}
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2015-09-11 11:52:49 +08:00
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// copy from net/http/transport.go
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func cloneTLSConfig(cfg *tls.Config) *tls.Config {
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if cfg == nil {
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return &tls.Config{}
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}
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return &tls.Config{
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Rand: cfg.Rand,
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Time: cfg.Time,
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Certificates: cfg.Certificates,
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NameToCertificate: cfg.NameToCertificate,
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GetCertificate: cfg.GetCertificate,
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RootCAs: cfg.RootCAs,
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NextProtos: cfg.NextProtos,
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ServerName: cfg.ServerName,
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ClientAuth: cfg.ClientAuth,
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ClientCAs: cfg.ClientCAs,
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InsecureSkipVerify: cfg.InsecureSkipVerify,
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CipherSuites: cfg.CipherSuites,
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PreferServerCipherSuites: cfg.PreferServerCipherSuites,
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SessionTicketsDisabled: cfg.SessionTicketsDisabled,
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SessionTicketKey: cfg.SessionTicketKey,
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ClientSessionCache: cfg.ClientSessionCache,
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MinVersion: cfg.MinVersion,
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MaxVersion: cfg.MaxVersion,
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CurvePreferences: cfg.CurvePreferences,
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}
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}
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2015-04-16 04:11:32 +08:00
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// ListenAndServeTLSWithSNI serves TLS with Server Name Indication (SNI) support, which allows
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// multiple sites (different hostnames) to be served from the same address. This method is
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// adapted directly from the std lib's net/http ListenAndServeTLS function, which was
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// written by the Go Authors. It has been modified to support multiple certificate/key pairs.
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2015-05-04 20:53:54 +08:00
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func ListenAndServeTLSWithSNI(srv *http.Server, tlsConfigs []TLSConfig) error {
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2015-04-16 04:11:32 +08:00
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addr := srv.Addr
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if addr == "" {
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addr = ":https"
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}
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2015-09-11 11:52:49 +08:00
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config := cloneTLSConfig(srv.TLSConfig)
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2015-04-16 04:11:32 +08:00
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if config.NextProtos == nil {
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config.NextProtos = []string{"http/1.1"}
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}
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// Here we diverge from the stdlib a bit by loading multiple certs/key pairs
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// then we map the server names to their certs
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var err error
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config.Certificates = make([]tls.Certificate, len(tlsConfigs))
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for i, tlsConfig := range tlsConfigs {
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config.Certificates[i], err = tls.LoadX509KeyPair(tlsConfig.Certificate, tlsConfig.Key)
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if err != nil {
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return err
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}
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}
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config.BuildNameToCertificate()
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2015-05-21 14:06:53 +08:00
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// Customize our TLS configuration
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2015-05-19 03:38:21 +08:00
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config.MinVersion = tlsConfigs[0].ProtocolMinVersion
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config.MaxVersion = tlsConfigs[0].ProtocolMaxVersion
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config.CipherSuites = tlsConfigs[0].Ciphers
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2015-05-22 00:37:39 +08:00
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config.PreferServerCipherSuites = tlsConfigs[0].PreferServerCipherSuites
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2015-05-05 11:25:29 +08:00
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2015-06-02 13:22:11 +08:00
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// TLS client authentication, if user enabled it
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err = setupClientAuth(tlsConfigs, config)
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2015-04-16 04:11:32 +08:00
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if err != nil {
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return err
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}
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2015-06-02 13:22:11 +08:00
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// Create listener and we're on our way
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conn, err := net.Listen("tcp", addr)
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if err != nil {
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return err
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}
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2015-04-16 04:11:32 +08:00
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tlsListener := tls.NewListener(conn, config)
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2015-06-02 13:22:11 +08:00
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2015-04-16 04:11:32 +08:00
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return srv.Serve(tlsListener)
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}
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2015-06-02 13:22:11 +08:00
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// setupClientAuth sets up TLS client authentication only if
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// any of the TLS configs specified at least one cert file.
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func setupClientAuth(tlsConfigs []TLSConfig, config *tls.Config) error {
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var clientAuth bool
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for _, cfg := range tlsConfigs {
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if len(cfg.ClientCerts) > 0 {
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clientAuth = true
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break
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}
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}
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if clientAuth {
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pool := x509.NewCertPool()
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for _, cfg := range tlsConfigs {
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for _, caFile := range cfg.ClientCerts {
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caCrt, err := ioutil.ReadFile(caFile) // Anyone that gets a cert from Matt Holt can connect
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if err != nil {
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return err
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}
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if !pool.AppendCertsFromPEM(caCrt) {
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2015-06-08 08:49:17 +08:00
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return fmt.Errorf("error loading client certificate '%s': no certificates were successfully parsed", caFile)
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2015-06-02 13:22:11 +08:00
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}
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}
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}
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config.ClientCAs = pool
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config.ClientAuth = tls.RequireAndVerifyClientCert
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}
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return nil
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}
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2015-04-16 04:11:32 +08:00
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// ServeHTTP is the entry point for every request to the address that s
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// is bound to. It acts as a multiplexer for the requests hostname as
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// defined in the Host header so that the correct virtualhost
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// (configuration and middleware stack) will handle the request.
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2015-01-14 03:43:45 +08:00
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func (s *Server) ServeHTTP(w http.ResponseWriter, r *http.Request) {
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2015-03-27 12:52:27 +08:00
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defer func() {
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2015-03-29 06:37:37 +08:00
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// In case the user doesn't enable error middleware, we still
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// need to make sure that we stay alive up here
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2015-03-27 12:52:27 +08:00
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if rec := recover(); rec != nil {
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2015-03-29 06:37:37 +08:00
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http.Error(w, http.StatusText(http.StatusInternalServerError),
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http.StatusInternalServerError)
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2015-03-27 12:52:27 +08:00
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}
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}()
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2015-03-30 12:01:42 +08:00
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2015-04-16 04:11:32 +08:00
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host, _, err := net.SplitHostPort(r.Host)
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if err != nil {
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host = r.Host // oh well
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2015-03-30 12:01:42 +08:00
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}
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2015-01-14 03:43:45 +08:00
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2015-04-29 05:31:42 +08:00
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// Try the host as given, or try falling back to 0.0.0.0 (wildcard)
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if _, ok := s.vhosts[host]; !ok {
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if _, ok2 := s.vhosts["0.0.0.0"]; ok2 {
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host = "0.0.0.0"
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2015-06-10 13:07:32 +08:00
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} else if _, ok2 := s.vhosts[""]; ok2 {
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host = ""
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2015-04-29 05:31:42 +08:00
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}
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}
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2015-04-16 04:11:32 +08:00
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if vh, ok := s.vhosts[host]; ok {
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2015-04-27 13:09:26 +08:00
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w.Header().Set("Server", "Caddy")
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2015-04-16 04:11:32 +08:00
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status, _ := vh.stack.ServeHTTP(w, r)
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2015-01-14 03:43:45 +08:00
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2015-04-16 04:11:32 +08:00
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// Fallback error response in case error handling wasn't chained in
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if status >= 400 {
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2015-06-16 00:17:09 +08:00
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DefaultErrorFunc(w, r, status)
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2015-04-16 04:11:32 +08:00
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}
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} else {
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w.WriteHeader(http.StatusNotFound)
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fmt.Fprintf(w, "No such host at %s", s.address)
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2015-01-14 03:43:45 +08:00
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}
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}
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2015-06-16 00:17:09 +08:00
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2015-10-10 06:35:34 +08:00
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// DefaultErrorFunc responds to an HTTP request with a simple description
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// of the specified HTTP status code.
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2015-06-16 00:17:09 +08:00
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func DefaultErrorFunc(w http.ResponseWriter, r *http.Request, status int) {
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w.WriteHeader(status)
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fmt.Fprintf(w, "%d %s", status, http.StatusText(status))
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}
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