mirror of
https://git.sr.ht/~adnano/go-gemini
synced 2024-11-23 12:42:13 +01:00
454 lines
12 KiB
Go
454 lines
12 KiB
Go
package gmi
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import (
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"bufio"
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"crypto/tls"
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"errors"
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"io"
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"log"
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"net"
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"net/url"
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"os"
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"path/filepath"
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"sort"
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"strconv"
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"strings"
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"time"
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)
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// Server errors.
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var (
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ErrBodyNotAllowed = errors.New("gemini: response status code does not allow for body")
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ErrNotAFile = errors.New("gemini: not a file")
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)
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// Server is a Gemini server.
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type Server struct {
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// Addr specifies the address that the server should listen on.
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// If Addr is empty, the server will listen on the address ":1965".
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Addr string
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// Certificate provides a TLS certificate for use by the server.
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// Using a self-signed certificate is recommended.
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Certificate tls.Certificate
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// Handler specifies the Handler for requests.
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// If Handler is not set, the server will error.
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Handler Handler
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}
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// ListenAndServe listens for requests at the server's configured address.
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func (s *Server) ListenAndServe() error {
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addr := s.Addr
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if addr == "" {
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addr = ":1965"
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}
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ln, 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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defer ln.Close()
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config := &tls.Config{
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InsecureSkipVerify: true,
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MinVersion: tls.VersionTLS12,
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Certificates: []tls.Certificate{s.Certificate},
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ClientAuth: tls.RequestClientCert,
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}
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tlsListener := tls.NewListener(ln, config)
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return s.Serve(tlsListener)
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}
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// Serve listens for requests on the provided listener.
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func (s *Server) Serve(l net.Listener) error {
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var tempDelay time.Duration // how long to sleep on accept failure
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for {
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rw, err := l.Accept()
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if err != nil {
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// If this is a temporary error, sleep
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if ne, ok := err.(net.Error); ok && ne.Temporary() {
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if tempDelay == 0 {
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tempDelay = 5 * time.Millisecond
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} else {
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tempDelay *= 2
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}
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if max := 1 * time.Second; tempDelay > max {
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tempDelay = max
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}
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log.Printf("gemini: Accept error: %v; retrying in %v", err, tempDelay)
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time.Sleep(tempDelay)
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continue
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}
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// Otherwise, return the error
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return err
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}
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tempDelay = 0
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go s.respond(rw)
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}
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}
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// ResponseWriter is used by a Gemini handler to construct a Gemini response.
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type ResponseWriter struct {
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w *bufio.Writer
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bodyAllowed bool
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wroteHeader bool
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mimetype string
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}
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func newResponseWriter(conn net.Conn) *ResponseWriter {
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return &ResponseWriter{
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w: bufio.NewWriter(conn),
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}
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}
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// WriteHeader writes the response header.
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// If the header has already been written, WriteHeader does nothing.
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//
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// Meta contains more information related to the response status.
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// For successful responses, Meta should contain the mimetype of the response.
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// For failure responses, Meta should contain a short description of the failure.
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// Meta should not be longer than 1024 bytes.
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func (r *ResponseWriter) WriteHeader(status int, meta string) {
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if r.wroteHeader {
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return
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}
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r.w.WriteString(strconv.Itoa(status))
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r.w.WriteByte(' ')
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r.w.WriteString(meta)
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r.w.Write(crlf)
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// Only allow body to be written on successful status codes.
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if status/10 == StatusClassSuccess {
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r.bodyAllowed = true
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}
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r.wroteHeader = true
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}
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// SetMimetype sets the mimetype that will be written for a successful response.
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// The provided mimetype will only be used if Write is called without calling
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// WriteHeader.
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// If the mimetype is not set, it will default to "text/gemini".
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func (r *ResponseWriter) SetMimetype(mimetype string) {
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r.mimetype = mimetype
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}
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// Write writes the response body.
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// If the response status does not allow for a response body, Write returns
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// ErrBodyNotAllowed.
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//
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// If WriteHeader has not yet been called, Write calls
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// WriteHeader(StatusSuccess, mimetype) where mimetype is the mimetype set in
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// SetMimetype. If no mimetype is set, a default of "text/gemini" will be used.
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func (r *ResponseWriter) Write(b []byte) (int, error) {
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if !r.wroteHeader {
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mimetype := r.mimetype
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if mimetype == "" {
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mimetype = "text/gemini"
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}
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r.WriteHeader(StatusSuccess, mimetype)
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}
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if !r.bodyAllowed {
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return 0, ErrBodyNotAllowed
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}
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return r.w.Write(b)
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}
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// respond responds to a connection.
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func (s *Server) respond(conn net.Conn) {
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r := bufio.NewReader(conn)
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rw := newResponseWriter(conn)
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// Read requested URL
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rawurl, err := r.ReadString('\r')
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if err != nil {
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return
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}
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// Read terminating line feed
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if b, err := r.ReadByte(); err != nil {
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return
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} else if b != '\n' {
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rw.WriteHeader(StatusBadRequest, "Bad request")
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}
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// Trim carriage return
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rawurl = rawurl[:len(rawurl)-1]
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// Ensure URL is valid
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if len(rawurl) > 1024 {
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rw.WriteHeader(StatusBadRequest, "Bad request")
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} else if url, err := url.Parse(rawurl); err != nil || url.User != nil {
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// Note that we return an error status if User is specified in the URL
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rw.WriteHeader(StatusBadRequest, "Bad request")
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} else {
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// Gather information about the request
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req := &Request{
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URL: url,
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RemoteAddr: conn.RemoteAddr(),
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TLS: conn.(*tls.Conn).ConnectionState(),
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}
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s.Handler.Serve(rw, req)
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}
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rw.w.Flush()
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conn.Close()
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}
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// A Handler responds to a Gemini request.
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type Handler interface {
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// Serve accepts a Request and constructs a Response.
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Serve(*ResponseWriter, *Request)
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}
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// Input responds to the request with a request for input using the given prompt.
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func Input(rw *ResponseWriter, req *Request, prompt string) {
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rw.WriteHeader(StatusInput, prompt)
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}
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// InputHandler returns a simple handler that responds to each request with
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// a request for input.
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func InputHandler(prompt string) Handler {
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return HandlerFunc(func(rw *ResponseWriter, req *Request) {
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Input(rw, req, prompt)
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})
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}
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// Redirect replies to the request with a redirect to the given URL.
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func Redirect(rw *ResponseWriter, req *Request, url string) {
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rw.WriteHeader(StatusRedirect, url)
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}
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// RedirectHandler returns a simple handler that responds to each request with
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// a redirect to the given URL.
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// If permanent is true, the handler will respond with a permanent redirect.
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func RedirectHandler(url string) Handler {
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return HandlerFunc(func(rw *ResponseWriter, req *Request) {
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Redirect(rw, req, url)
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})
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}
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// PermanentRedirect replies to the request with a permanent redirect to the given URL.
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func PermanentRedirect(rw *ResponseWriter, req *Request, url string) {
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rw.WriteHeader(StatusRedirectPermanent, url)
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}
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// PermanentRedirectHandler returns a simple handler that responds to each request with
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// a redirect to the given URL.
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// If permanent is true, the handler will respond with a permanent redirect.
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func PermanentRedirectHandler(url string) Handler {
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return HandlerFunc(func(rw *ResponseWriter, req *Request) {
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PermanentRedirect(rw, req, url)
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})
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}
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// Sensitive responds to the request with a request for sensitive input
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// using the given prompt.
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func SensitiveInput(rw *ResponseWriter, req *Request, prompt string) {
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rw.WriteHeader(StatusSensitiveInput, prompt)
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}
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// SensitiveInputHandler returns a simpler handler that responds to each request
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// with a request for sensitive input.
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func SensitiveInputHandler(prompt string) Handler {
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return HandlerFunc(func(rw *ResponseWriter, req *Request) {
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SensitiveInput(rw, req, prompt)
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})
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}
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// CertificateRequired responds to the request with the CertificateRequired
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// status code.
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func CertificateRequired(rw *ResponseWriter, req *Request) {
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rw.WriteHeader(StatusCertificateRequired, "Certificate required")
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}
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// CertificateNotAuthorized responds to the request with
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// the CertificateNotAuthorized status code.
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func CertificateNotAuthorized(rw *ResponseWriter, req *Request) {
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rw.WriteHeader(StatusCertificateNotAuthorized, "Certificate not authorized")
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}
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// NotFound replies to the request with the NotFound status code.
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func NotFound(rw *ResponseWriter, req *Request) {
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rw.WriteHeader(StatusNotFound, "Not found")
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}
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// NotFoundHandler returns a simple handler that responds to each request with
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// the status code NotFound.
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func NotFoundHandler() Handler {
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return HandlerFunc(NotFound)
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}
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// Gone replies to the request with the Gone status code.
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func Gone(rw *ResponseWriter, req *Request) {
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rw.WriteHeader(StatusGone, "Gone")
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}
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// GoneHandler returns a simple handler that responds to each request with
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// the status code Gone.
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func GoneHandler() Handler {
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return HandlerFunc(Gone)
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}
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// ServeMux is a Gemini request multiplexer.
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// It matches the URL of each incoming request against a list of registered
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// patterns and calls the handler for the pattern that most closesly matches
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// the URL.
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type ServeMux struct {
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entries []muxEntry
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}
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type muxEntry struct {
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u *url.URL
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handler Handler
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}
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func (m *ServeMux) match(url *url.URL) Handler {
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for _, e := range m.entries {
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if (e.u.Scheme == "" || url.Scheme == e.u.Scheme) &&
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(e.u.Host == "" || url.Host == e.u.Host) &&
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strings.HasPrefix(url.Path, e.u.Path) {
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return e.handler
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}
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}
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return nil
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}
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// Handle registers a Handler for the given pattern.
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func (m *ServeMux) Handle(pattern string, handler Handler) {
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url, err := url.Parse(pattern)
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if err != nil {
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panic(err)
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}
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// Trim trailing slash from URL path
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if len(url.Path) != 0 && url.Path[len(url.Path)-1] == '/' {
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url.Path = url.Path[:len(url.Path)-1]
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}
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e := muxEntry{
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url,
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handler,
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}
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m.entries = appendSorted(m.entries, e)
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}
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// HandleFunc registers a HandlerFunc for the given pattern.
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func (m *ServeMux) HandleFunc(pattern string, handlerFunc func(*ResponseWriter, *Request)) {
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handler := HandlerFunc(handlerFunc)
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m.Handle(pattern, handler)
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}
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// Serve responds to the request with the appropriate handler.
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func (m *ServeMux) Serve(rw *ResponseWriter, req *Request) {
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h := m.match(req.URL)
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if h == nil {
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NotFound(rw, req)
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return
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}
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h.Serve(rw, req)
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}
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// appendSorted appends the entry e in the proper place in entries.
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func appendSorted(es []muxEntry, e muxEntry) []muxEntry {
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n := len(es)
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// sort by length
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i := sort.Search(n, func(i int) bool {
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// Sort entries by length.
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// - Entries with a scheme take preference over entries without.
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// - Entries with a host take preference over entries without.
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// - Longer paths take preference over shorter paths.
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return (es[i].u.Scheme == "" || (e.u.Scheme != "" && len(es[i].u.Scheme) < len(e.u.Scheme))) &&
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(es[i].u.Host == "" || (e.u.Host != "" && len(es[i].u.Host) < len(e.u.Host))) &&
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len(es[i].u.Path) < len(e.u.Path)
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})
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if i == n {
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return append(es, e)
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}
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// we now know that i points at where we want to insert
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es = append(es, muxEntry{}) // try to grow the slice in place, any entry works.
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copy(es[i+1:], es[i:]) // Move shorter entries down
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es[i] = e
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return es
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}
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// A wrapper around a bare function that implements Handler.
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type HandlerFunc func(*ResponseWriter, *Request)
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func (f HandlerFunc) Serve(rw *ResponseWriter, req *Request) {
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f(rw, req)
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}
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// ServeDir serves files from a directory.
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type ServeDir struct {
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path string // path to the directory
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}
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// FileServer takes a filesystem and returns a handler which uses that filesystem.
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// The returned Handler rejects requests containing '..' in them.
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func FileServer(fsys FS) Handler {
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return fsHandler{
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fsys,
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}
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}
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type fsHandler struct {
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FS
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}
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func (fsys fsHandler) Serve(rw *ResponseWriter, req *Request) {
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// Reject requests with '..' in them
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if containsDotDot(req.URL.Path) {
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NotFound(rw, req)
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return
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}
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f, err := fsys.Open(req.URL.Path)
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if err != nil {
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NotFound(rw, req)
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return
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}
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// TODO: detect mimetype
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rw.SetMimetype("text/gemini")
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// Copy file to response writer
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io.Copy(rw, f)
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}
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func containsDotDot(v string) bool {
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if !strings.Contains(v, "..") {
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return false
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}
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for _, ent := range strings.FieldsFunc(v, isSlashRune) {
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if ent == ".." {
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return true
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}
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}
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return false
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}
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func isSlashRune(r rune) bool { return r == '/' || r == '\\' }
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// TODO: replace with fs.FS when available
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type FS interface {
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Open(name string) (File, error)
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}
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// TODO: replace with fs.File when available
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type File interface {
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Stat() (os.FileInfo, error)
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Read([]byte) (int, error)
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Close() error
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}
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// Dir implements FS using the native filesystem restricted to a specific directory.
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type Dir string
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func (d Dir) Open(name string) (File, error) {
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path := filepath.Join(string(d), name)
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f, err := os.OpenFile(path, os.O_RDONLY, 0644)
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if err != nil {
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return nil, err
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}
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if stat, err := f.Stat(); err == nil {
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if !stat.Mode().IsRegular() {
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return nil, ErrNotAFile
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}
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}
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return f, nil
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}
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