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https://github.com/rclone/rclone.git
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0df7466d2b
This change addresses two issues with commands that re-used flags from common packages: 1) cobra.Command definitions did not include the command specific prefix in doc strings. 2) Command specific flag prefixes were added after generating command doc strings.
471 lines
14 KiB
Go
471 lines
14 KiB
Go
// Package http provides a registration interface for http services
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package http
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import (
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"bytes"
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"context"
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"crypto/tls"
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"crypto/x509"
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"errors"
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"fmt"
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"html/template"
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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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"sync"
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"time"
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"github.com/go-chi/chi/v5"
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"github.com/rclone/rclone/fs/config/flags"
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"github.com/rclone/rclone/lib/atexit"
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"github.com/spf13/pflag"
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)
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// Help returns text describing the http server to add to the command
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// help.
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func Help(prefix string) string {
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help := `
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### Server options
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Use ` + "`--{{ .Prefix }}addr`" + ` to specify which IP address and port the server should
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listen on, eg ` + "`--{{ .Prefix }}addr 1.2.3.4:8000` or `--{{ .Prefix }}addr :8080`" + ` to listen to all
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IPs. By default it only listens on localhost. You can use port
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:0 to let the OS choose an available port.
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If you set ` + "`--{{ .Prefix }}addr`" + ` to listen on a public or LAN accessible IP address
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then using Authentication is advised - see the next section for info.
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You can use a unix socket by setting the url to ` + "`unix:///path/to/socket`" + `
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or just by using an absolute path name. Note that unix sockets bypass the
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authentication - this is expected to be done with file system permissions.
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` + "`--{{ .Prefix }}addr`" + ` may be repeated to listen on multiple IPs/ports/sockets.
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` + "`--{{ .Prefix }}server-read-timeout` and `--{{ .Prefix }}server-write-timeout`" + ` can be used to
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control the timeouts on the server. Note that this is the total time
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for a transfer.
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` + "`--{{ .Prefix }}max-header-bytes`" + ` controls the maximum number of bytes the server will
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accept in the HTTP header.
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` + "`--{{ .Prefix }}baseurl`" + ` controls the URL prefix that rclone serves from. By default
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rclone will serve from the root. If you used ` + "`--{{ .Prefix }}baseurl \"/rclone\"`" + ` then
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rclone would serve from a URL starting with "/rclone/". This is
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useful if you wish to proxy rclone serve. Rclone automatically
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inserts leading and trailing "/" on ` + "`--{{ .Prefix }}baseurl`" + `, so ` + "`--{{ .Prefix }}baseurl \"rclone\"`" + `,
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` + "`--{{ .Prefix }}baseurl \"/rclone\"` and `--{{ .Prefix }}baseurl \"/rclone/\"`" + ` are all treated
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identically.
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#### TLS (SSL)
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By default this will serve over http. If you want you can serve over
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https. You will need to supply the ` + "`--{{ .Prefix }}cert` and `--{{ .Prefix }}key`" + ` flags.
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If you wish to do client side certificate validation then you will need to
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supply ` + "`--{{ .Prefix }}client-ca`" + ` also.
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` + "`--{{ .Prefix }}cert`" + ` should be a either a PEM encoded certificate or a concatenation
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of that with the CA certificate. ` + "`--k{{ .Prefix }}ey`" + ` should be the PEM encoded
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private key and ` + "`--{{ .Prefix }}client-ca`" + ` should be the PEM encoded client
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certificate authority certificate.
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--{{ .Prefix }}min-tls-version is minimum TLS version that is acceptable. Valid
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values are "tls1.0", "tls1.1", "tls1.2" and "tls1.3" (default
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"tls1.0").
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`
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tmpl, err := template.New("server help").Parse(help)
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if err != nil {
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log.Fatal("Fatal error parsing template", err)
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}
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data := struct {
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Prefix string
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}{
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Prefix: prefix,
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}
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buf := &bytes.Buffer{}
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err = tmpl.Execute(buf, data)
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if err != nil {
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log.Fatal("Fatal error executing template", err)
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}
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return buf.String()
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}
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// Middleware function signature required by chi.Router.Use()
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type Middleware func(http.Handler) http.Handler
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// Config contains options for the http Server
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type Config struct {
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ListenAddr []string // Port to listen on
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BaseURL string // prefix to strip from URLs
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ServerReadTimeout time.Duration // Timeout for server reading data
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ServerWriteTimeout time.Duration // Timeout for server writing data
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MaxHeaderBytes int // Maximum size of request header
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TLSCert string // Path to TLS PEM key (concatenation of certificate and CA certificate)
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TLSKey string // Path to TLS PEM Private key
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TLSCertBody []byte // TLS PEM key (concatenation of certificate and CA certificate) body, ignores TLSCert
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TLSKeyBody []byte // TLS PEM Private key body, ignores TLSKey
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ClientCA string // Client certificate authority to verify clients with
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MinTLSVersion string // MinTLSVersion contains the minimum TLS version that is acceptable.
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}
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// AddFlagsPrefix adds flags for the httplib
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func (cfg *Config) AddFlagsPrefix(flagSet *pflag.FlagSet, prefix string) {
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flags.StringArrayVarP(flagSet, &cfg.ListenAddr, prefix+"addr", "", cfg.ListenAddr, "IPaddress:Port or :Port to bind server to")
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flags.DurationVarP(flagSet, &cfg.ServerReadTimeout, prefix+"server-read-timeout", "", cfg.ServerReadTimeout, "Timeout for server reading data")
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flags.DurationVarP(flagSet, &cfg.ServerWriteTimeout, prefix+"server-write-timeout", "", cfg.ServerWriteTimeout, "Timeout for server writing data")
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flags.IntVarP(flagSet, &cfg.MaxHeaderBytes, prefix+"max-header-bytes", "", cfg.MaxHeaderBytes, "Maximum size of request header")
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flags.StringVarP(flagSet, &cfg.TLSCert, prefix+"cert", "", cfg.TLSCert, "TLS PEM key (concatenation of certificate and CA certificate)")
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flags.StringVarP(flagSet, &cfg.TLSKey, prefix+"key", "", cfg.TLSKey, "TLS PEM Private key")
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flags.StringVarP(flagSet, &cfg.ClientCA, prefix+"client-ca", "", cfg.ClientCA, "Client certificate authority to verify clients with")
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flags.StringVarP(flagSet, &cfg.BaseURL, prefix+"baseurl", "", cfg.BaseURL, "Prefix for URLs - leave blank for root")
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flags.StringVarP(flagSet, &cfg.MinTLSVersion, prefix+"min-tls-version", "", cfg.MinTLSVersion, "Minimum TLS version that is acceptable")
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}
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// AddHTTPFlagsPrefix adds flags for the httplib
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func AddHTTPFlagsPrefix(flagSet *pflag.FlagSet, prefix string, cfg *Config) {
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cfg.AddFlagsPrefix(flagSet, prefix)
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}
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// DefaultCfg is the default values used for Config
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func DefaultCfg() Config {
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return Config{
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ListenAddr: []string{"127.0.0.1:8080"},
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ServerReadTimeout: 1 * time.Hour,
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ServerWriteTimeout: 1 * time.Hour,
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MaxHeaderBytes: 4096,
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MinTLSVersion: "tls1.0",
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}
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}
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type instance struct {
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url string
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listener net.Listener
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httpServer *http.Server
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}
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func (s instance) serve(wg *sync.WaitGroup) {
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defer wg.Done()
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err := s.httpServer.Serve(s.listener)
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if err != http.ErrServerClosed && err != nil {
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log.Printf("%s: unexpected error: %s", s.listener.Addr(), err.Error())
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}
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}
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// Server contains info about the running http server
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type Server struct {
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wg sync.WaitGroup
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mux chi.Router
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tlsConfig *tls.Config
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instances []instance
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auth AuthConfig
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cfg Config
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template *TemplateConfig
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htmlTemplate *template.Template
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usingAuth bool // set if we are using auth middleware
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atexitHandle atexit.FnHandle
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}
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// Option allows customizing the server
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type Option func(*Server)
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// WithAuth option initializes the appropriate auth middleware
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func WithAuth(cfg AuthConfig) Option {
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return func(s *Server) {
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s.auth = cfg
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}
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}
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// WithConfig option applies the Config to the server, overriding defaults
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func WithConfig(cfg Config) Option {
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return func(s *Server) {
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s.cfg = cfg
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}
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}
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// WithTemplate option allows the parsing of a template
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func WithTemplate(cfg TemplateConfig) Option {
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return func(s *Server) {
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s.template = &cfg
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}
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}
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// NewServer instantiates a new http server using provided listeners and options
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// This function is provided if the default http server does not meet a services requirements and should not generally be used
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// A http server can listen using multiple listeners. For example, a listener for port 80, and a listener for port 443.
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// tlsListeners are ignored if opt.TLSKey is not provided
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func NewServer(ctx context.Context, options ...Option) (*Server, error) {
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s := &Server{
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mux: chi.NewRouter(),
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cfg: DefaultCfg(),
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}
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// Make sure default logger is logging where everything else is
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// middleware.DefaultLogger = middleware.RequestLogger(&middleware.DefaultLogFormatter{Logger: log.Default(), NoColor: true})
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// Log requests
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// s.mux.Use(middleware.Logger)
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for _, opt := range options {
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opt(s)
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}
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// Build base router
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s.mux.MethodNotAllowed(func(w http.ResponseWriter, _ *http.Request) {
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http.Error(w, http.StatusText(http.StatusMethodNotAllowed), http.StatusMethodNotAllowed)
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})
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s.mux.NotFound(func(w http.ResponseWriter, _ *http.Request) {
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http.Error(w, http.StatusText(http.StatusNotFound), http.StatusNotFound)
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})
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// Ignore passing "/" for BaseURL
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s.cfg.BaseURL = strings.Trim(s.cfg.BaseURL, "/")
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if s.cfg.BaseURL != "" {
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s.cfg.BaseURL = "/" + s.cfg.BaseURL
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s.mux.Use(MiddlewareStripPrefix(s.cfg.BaseURL))
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}
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s.initAuth()
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err := s.initTemplate()
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if err != nil {
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return nil, err
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}
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err = s.initTLS()
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if err != nil {
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return nil, err
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}
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for _, addr := range s.cfg.ListenAddr {
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var url string
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var network = "tcp"
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var tlsCfg *tls.Config
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if strings.HasPrefix(addr, "unix://") || filepath.IsAbs(addr) {
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network = "unix"
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addr = strings.TrimPrefix(addr, "unix://")
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url = addr
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} else if strings.HasPrefix(addr, "tls://") || (len(s.cfg.ListenAddr) == 1 && s.tlsConfig != nil) {
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tlsCfg = s.tlsConfig
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addr = strings.TrimPrefix(addr, "tls://")
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}
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var listener net.Listener
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if tlsCfg == nil {
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listener, err = net.Listen(network, addr)
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} else {
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listener, err = tls.Listen(network, addr, tlsCfg)
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}
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if err != nil {
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return nil, err
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}
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if network == "tcp" {
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var secure string
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if tlsCfg != nil {
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secure = "s"
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}
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url = fmt.Sprintf("http%s://%s%s/", secure, listener.Addr().String(), s.cfg.BaseURL)
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}
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ii := instance{
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url: url,
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listener: listener,
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httpServer: &http.Server{
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Handler: s.mux,
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ReadTimeout: s.cfg.ServerReadTimeout,
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WriteTimeout: s.cfg.ServerWriteTimeout,
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MaxHeaderBytes: s.cfg.MaxHeaderBytes,
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ReadHeaderTimeout: 10 * time.Second, // time to send the headers
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IdleTimeout: 60 * time.Second, // time to keep idle connections open
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TLSConfig: tlsCfg,
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BaseContext: NewBaseContext(ctx, url),
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},
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}
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s.instances = append(s.instances, ii)
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}
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return s, nil
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}
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func (s *Server) initAuth() {
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if s.auth.CustomAuthFn != nil {
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s.usingAuth = true
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s.mux.Use(MiddlewareAuthCustom(s.auth.CustomAuthFn, s.auth.Realm))
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return
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}
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if s.auth.HtPasswd != "" {
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s.usingAuth = true
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s.mux.Use(MiddlewareAuthHtpasswd(s.auth.HtPasswd, s.auth.Realm))
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return
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}
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if s.auth.BasicUser != "" {
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s.usingAuth = true
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s.mux.Use(MiddlewareAuthBasic(s.auth.BasicUser, s.auth.BasicPass, s.auth.Realm, s.auth.Salt))
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return
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}
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s.usingAuth = false
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}
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func (s *Server) initTemplate() error {
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if s.template == nil {
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return nil
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}
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var err error
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s.htmlTemplate, err = GetTemplate(s.template.Path)
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if err != nil {
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err = fmt.Errorf("failed to get template: %w", err)
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}
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return err
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}
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var (
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// ErrInvalidMinTLSVersion - hard coded errors, allowing for easier testing
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ErrInvalidMinTLSVersion = errors.New("invalid value for --min-tls-version")
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// ErrTLSBodyMismatch - hard coded errors, allowing for easier testing
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ErrTLSBodyMismatch = errors.New("need both TLSCertBody and TLSKeyBody to use TLS")
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// ErrTLSFileMismatch - hard coded errors, allowing for easier testing
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ErrTLSFileMismatch = errors.New("need both --cert and --key to use TLS")
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// ErrTLSParseCA - hard coded errors, allowing for easier testing
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ErrTLSParseCA = errors.New("unable to parse client certificate authority")
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)
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func (s *Server) initTLS() error {
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if s.cfg.TLSCert == "" && s.cfg.TLSKey == "" && len(s.cfg.TLSCertBody) == 0 && len(s.cfg.TLSKeyBody) == 0 {
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return nil
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}
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if (len(s.cfg.TLSCertBody) > 0) != (len(s.cfg.TLSKeyBody) > 0) {
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return ErrTLSBodyMismatch
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}
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if (s.cfg.TLSCert != "") != (s.cfg.TLSKey != "") {
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return ErrTLSFileMismatch
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}
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var cert tls.Certificate
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var err error
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if len(s.cfg.TLSCertBody) > 0 {
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cert, err = tls.X509KeyPair(s.cfg.TLSCertBody, s.cfg.TLSKeyBody)
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} else {
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cert, err = tls.LoadX509KeyPair(s.cfg.TLSCert, s.cfg.TLSKey)
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}
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if err != nil {
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return err
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}
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var minTLSVersion uint16
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switch s.cfg.MinTLSVersion {
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case "tls1.0":
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minTLSVersion = tls.VersionTLS10
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case "tls1.1":
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minTLSVersion = tls.VersionTLS11
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case "tls1.2":
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minTLSVersion = tls.VersionTLS12
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case "tls1.3":
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minTLSVersion = tls.VersionTLS13
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default:
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return fmt.Errorf("%w: %s", ErrInvalidMinTLSVersion, s.cfg.MinTLSVersion)
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}
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s.tlsConfig = &tls.Config{
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MinVersion: minTLSVersion,
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Certificates: []tls.Certificate{cert},
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}
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if s.cfg.ClientCA != "" {
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// if !useTLS {
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// err := errors.New("can't use --client-ca without --cert and --key")
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// log.Fatalf(err.Error())
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// }
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certpool := x509.NewCertPool()
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pem, err := os.ReadFile(s.cfg.ClientCA)
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if err != nil {
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return err
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}
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if !certpool.AppendCertsFromPEM(pem) {
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return ErrTLSParseCA
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}
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s.tlsConfig.ClientCAs = certpool
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s.tlsConfig.ClientAuth = tls.RequireAndVerifyClientCert
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}
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return nil
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}
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// Serve starts the HTTP server on each listener
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func (s *Server) Serve() {
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s.wg.Add(len(s.instances))
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for _, ii := range s.instances {
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// TODO: decide how/when to log listening url
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// log.Printf("listening on %s", ii.url)
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go ii.serve(&s.wg)
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}
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// Install an atexit handler to shutdown gracefully
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s.atexitHandle = atexit.Register(func() { _ = s.Shutdown() })
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}
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// Wait blocks while the server is serving requests
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func (s *Server) Wait() {
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s.wg.Wait()
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}
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// Router returns the server base router
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func (s *Server) Router() chi.Router {
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return s.mux
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}
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// Time to wait to Shutdown an HTTP server
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const gracefulShutdownTime = 10 * time.Second
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// Shutdown gracefully shuts down the server
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func (s *Server) Shutdown() error {
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// Stop the atexit handler
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if s.atexitHandle != nil {
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atexit.Unregister(s.atexitHandle)
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s.atexitHandle = nil
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}
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for _, ii := range s.instances {
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expiry := time.Now().Add(gracefulShutdownTime)
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ctx, cancel := context.WithDeadline(context.Background(), expiry)
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if err := ii.httpServer.Shutdown(ctx); err != nil {
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log.Printf("error shutting down server: %s", err)
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}
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cancel()
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}
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s.wg.Wait()
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return nil
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}
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// HTMLTemplate returns the parsed template, if WithTemplate option was passed.
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func (s *Server) HTMLTemplate() *template.Template {
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return s.htmlTemplate
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}
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// URLs returns all configured URLS
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func (s *Server) URLs() []string {
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var out []string
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for _, ii := range s.instances {
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if ii.listener.Addr().Network() == "unix" {
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continue
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}
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out = append(out, ii.url)
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}
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return out
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}
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// UsingAuth returns true if authentication is required
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func (s *Server) UsingAuth() bool {
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return s.usingAuth
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}
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