2020-10-20 15:26:55 +00:00
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package wsutil
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import (
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"bufio"
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"bytes"
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"context"
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"io"
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"io/ioutil"
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"net"
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"net/http"
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"github.com/gobwas/ws"
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)
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// DebugDialer is a wrapper around ws.Dialer. It tracks i/o of WebSocket
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// handshake. That is, it gives ability to receive copied HTTP request and
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// response bytes that made inside Dialer.Dial().
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//
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// Note that it must not be used in production applications that requires
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// Dial() to be efficient.
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type DebugDialer struct {
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// Dialer contains WebSocket connection establishment options.
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Dialer ws.Dialer
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// OnRequest and OnResponse are the callbacks that will be called with the
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// HTTP request and response respectively.
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OnRequest, OnResponse func([]byte)
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}
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// Dial connects to the url host and upgrades connection to WebSocket. It makes
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// it by calling d.Dialer.Dial().
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func (d *DebugDialer) Dial(ctx context.Context, urlstr string) (conn net.Conn, br *bufio.Reader, hs ws.Handshake, err error) {
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// Need to copy Dialer to prevent original object mutation.
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dialer := d.Dialer
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var (
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reqBuf bytes.Buffer
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resBuf bytes.Buffer
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resContentLength int64
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)
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userWrap := dialer.WrapConn
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dialer.WrapConn = func(c net.Conn) net.Conn {
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if userWrap != nil {
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c = userWrap(c)
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}
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// Save the pointer to the raw connection.
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conn = c
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var (
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r io.Reader = conn
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w io.Writer = conn
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)
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if d.OnResponse != nil {
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r = &prefetchResponseReader{
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source: conn,
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buffer: &resBuf,
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contentLength: &resContentLength,
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}
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}
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if d.OnRequest != nil {
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w = io.MultiWriter(conn, &reqBuf)
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}
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return rwConn{conn, r, w}
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}
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_, br, hs, err = dialer.Dial(ctx, urlstr)
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if onRequest := d.OnRequest; onRequest != nil {
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onRequest(reqBuf.Bytes())
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}
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if onResponse := d.OnResponse; onResponse != nil {
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// We must split response inside buffered bytes from other received
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// bytes from server.
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p := resBuf.Bytes()
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n := bytes.Index(p, headEnd)
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h := n + len(headEnd) // Head end index.
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n = h + int(resContentLength) // Body end index.
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onResponse(p[:n])
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if br != nil {
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// If br is non-nil, then it mean two things. First is that
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// handshake is OK and server has sent additional bytes – probably
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// immediate sent frames (or weird but possible response body).
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// Second, the bad one, is that br buffer's source is now rwConn
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// instance from above WrapConn call. It is incorrect, so we must
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// fix it.
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var r io.Reader = conn
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if len(p) > h {
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// Buffer contains more than just HTTP headers bytes.
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r = io.MultiReader(
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bytes.NewReader(p[h:]),
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conn,
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)
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}
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br.Reset(r)
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// Must make br.Buffered() to be non-zero.
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br.Peek(len(p[h:]))
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}
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}
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return conn, br, hs, err
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}
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type rwConn struct {
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net.Conn
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r io.Reader
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w io.Writer
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}
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func (rwc rwConn) Read(p []byte) (int, error) {
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return rwc.r.Read(p)
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}
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2024-10-17 20:09:39 +00:00
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2020-10-20 15:26:55 +00:00
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func (rwc rwConn) Write(p []byte) (int, error) {
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return rwc.w.Write(p)
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}
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var headEnd = []byte("\r\n\r\n")
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type prefetchResponseReader struct {
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source io.Reader // Original connection source.
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reader io.Reader // Wrapped reader used to read from by clients.
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buffer *bytes.Buffer
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contentLength *int64
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}
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func (r *prefetchResponseReader) Read(p []byte) (int, error) {
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if r.reader == nil {
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resp, err := http.ReadResponse(bufio.NewReader(
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io.TeeReader(r.source, r.buffer),
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), nil)
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if err == nil {
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*r.contentLength, _ = io.Copy(ioutil.Discard, resp.Body)
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resp.Body.Close()
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}
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bts := r.buffer.Bytes()
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r.reader = io.MultiReader(
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bytes.NewReader(bts),
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r.source,
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)
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}
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return r.reader.Read(p)
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}
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