502 lines
12 KiB
Go
502 lines
12 KiB
Go
// Copyright 2015 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// +build !plan9,!solaris
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/*
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The h2i command is an interactive HTTP/2 console.
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Usage:
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$ h2i [flags] <hostname>
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Interactive commands in the console: (all parts case-insensitive)
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ping [data]
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settings ack
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settings FOO=n BAR=z
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headers (open a new stream by typing HTTP/1.1)
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*/
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package main
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import (
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"bufio"
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"bytes"
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"crypto/tls"
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"errors"
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"flag"
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"fmt"
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"io"
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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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"regexp"
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"strconv"
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"strings"
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"golang.org/x/crypto/ssh/terminal"
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"golang.org/x/net/http2"
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"golang.org/x/net/http2/hpack"
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)
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// Flags
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var (
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flagNextProto = flag.String("nextproto", "h2,h2-14", "Comma-separated list of NPN/ALPN protocol names to negotiate.")
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flagInsecure = flag.Bool("insecure", false, "Whether to skip TLS cert validation")
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flagSettings = flag.String("settings", "empty", "comma-separated list of KEY=value settings for the initial SETTINGS frame. The magic value 'empty' sends an empty initial settings frame, and the magic value 'omit' causes no initial settings frame to be sent.")
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)
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type command struct {
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run func(*h2i, []string) error // required
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// complete optionally specifies tokens (case-insensitive) which are
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// valid for this subcommand.
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complete func() []string
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}
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var commands = map[string]command{
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"ping": {run: (*h2i).cmdPing},
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"settings": {
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run: (*h2i).cmdSettings,
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complete: func() []string {
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return []string{
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"ACK",
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http2.SettingHeaderTableSize.String(),
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http2.SettingEnablePush.String(),
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http2.SettingMaxConcurrentStreams.String(),
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http2.SettingInitialWindowSize.String(),
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http2.SettingMaxFrameSize.String(),
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http2.SettingMaxHeaderListSize.String(),
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}
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},
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},
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"quit": {run: (*h2i).cmdQuit},
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"headers": {run: (*h2i).cmdHeaders},
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}
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func usage() {
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fmt.Fprintf(os.Stderr, "Usage: h2i <hostname>\n\n")
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flag.PrintDefaults()
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}
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// withPort adds ":443" if another port isn't already present.
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func withPort(host string) string {
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if _, _, err := net.SplitHostPort(host); err != nil {
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return net.JoinHostPort(host, "443")
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}
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return host
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}
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// h2i is the app's state.
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type h2i struct {
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host string
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tc *tls.Conn
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framer *http2.Framer
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term *terminal.Terminal
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// owned by the command loop:
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streamID uint32
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hbuf bytes.Buffer
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henc *hpack.Encoder
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// owned by the readFrames loop:
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peerSetting map[http2.SettingID]uint32
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hdec *hpack.Decoder
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}
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func main() {
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flag.Usage = usage
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flag.Parse()
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if flag.NArg() != 1 {
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usage()
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os.Exit(2)
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}
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log.SetFlags(0)
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host := flag.Arg(0)
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app := &h2i{
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host: host,
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peerSetting: make(map[http2.SettingID]uint32),
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}
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app.henc = hpack.NewEncoder(&app.hbuf)
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if err := app.Main(); err != nil {
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if app.term != nil {
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app.logf("%v\n", err)
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} else {
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fmt.Fprintf(os.Stderr, "%v\n", err)
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}
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os.Exit(1)
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}
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fmt.Fprintf(os.Stdout, "\n")
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}
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func (app *h2i) Main() error {
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cfg := &tls.Config{
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ServerName: app.host,
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NextProtos: strings.Split(*flagNextProto, ","),
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InsecureSkipVerify: *flagInsecure,
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}
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hostAndPort := withPort(app.host)
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log.Printf("Connecting to %s ...", hostAndPort)
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tc, err := tls.Dial("tcp", hostAndPort, cfg)
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if err != nil {
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return fmt.Errorf("Error dialing %s: %v", withPort(app.host), err)
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}
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log.Printf("Connected to %v", tc.RemoteAddr())
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defer tc.Close()
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if err := tc.Handshake(); err != nil {
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return fmt.Errorf("TLS handshake: %v", err)
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}
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if !*flagInsecure {
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if err := tc.VerifyHostname(app.host); err != nil {
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return fmt.Errorf("VerifyHostname: %v", err)
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}
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}
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state := tc.ConnectionState()
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log.Printf("Negotiated protocol %q", state.NegotiatedProtocol)
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if !state.NegotiatedProtocolIsMutual || state.NegotiatedProtocol == "" {
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return fmt.Errorf("Could not negotiate protocol mutually")
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}
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if _, err := io.WriteString(tc, http2.ClientPreface); err != nil {
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return err
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}
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app.framer = http2.NewFramer(tc, tc)
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oldState, err := terminal.MakeRaw(0)
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if err != nil {
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return err
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}
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defer terminal.Restore(0, oldState)
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var screen = struct {
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io.Reader
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io.Writer
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}{os.Stdin, os.Stdout}
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app.term = terminal.NewTerminal(screen, "h2i> ")
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lastWord := regexp.MustCompile(`.+\W(\w+)$`)
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app.term.AutoCompleteCallback = func(line string, pos int, key rune) (newLine string, newPos int, ok bool) {
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if key != '\t' {
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return
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}
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if pos != len(line) {
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// TODO: we're being lazy for now, only supporting tab completion at the end.
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return
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}
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// Auto-complete for the command itself.
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if !strings.Contains(line, " ") {
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var name string
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name, _, ok = lookupCommand(line)
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if !ok {
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return
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}
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return name, len(name), true
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}
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_, c, ok := lookupCommand(line[:strings.IndexByte(line, ' ')])
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if !ok || c.complete == nil {
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return
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}
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if strings.HasSuffix(line, " ") {
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app.logf("%s", strings.Join(c.complete(), " "))
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return line, pos, true
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}
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m := lastWord.FindStringSubmatch(line)
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if m == nil {
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return line, len(line), true
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}
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soFar := m[1]
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var match []string
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for _, cand := range c.complete() {
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if len(soFar) > len(cand) || !strings.EqualFold(cand[:len(soFar)], soFar) {
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continue
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}
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match = append(match, cand)
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}
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if len(match) == 0 {
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return
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}
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if len(match) > 1 {
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// TODO: auto-complete any common prefix
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app.logf("%s", strings.Join(match, " "))
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return line, pos, true
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}
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newLine = line[:len(line)-len(soFar)] + match[0]
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return newLine, len(newLine), true
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}
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errc := make(chan error, 2)
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go func() { errc <- app.readFrames() }()
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go func() { errc <- app.readConsole() }()
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return <-errc
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}
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func (app *h2i) logf(format string, args ...interface{}) {
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fmt.Fprintf(app.term, format+"\n", args...)
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}
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func (app *h2i) readConsole() error {
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if s := *flagSettings; s != "omit" {
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var args []string
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if s != "empty" {
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args = strings.Split(s, ",")
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}
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_, c, ok := lookupCommand("settings")
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if !ok {
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panic("settings command not found")
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}
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c.run(app, args)
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}
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for {
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line, err := app.term.ReadLine()
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if err == io.EOF {
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return nil
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}
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if err != nil {
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return fmt.Errorf("terminal.ReadLine: %v", err)
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}
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f := strings.Fields(line)
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if len(f) == 0 {
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continue
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}
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cmd, args := f[0], f[1:]
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if _, c, ok := lookupCommand(cmd); ok {
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err = c.run(app, args)
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} else {
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app.logf("Unknown command %q", line)
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}
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if err == errExitApp {
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return nil
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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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}
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}
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func lookupCommand(prefix string) (name string, c command, ok bool) {
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prefix = strings.ToLower(prefix)
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if c, ok = commands[prefix]; ok {
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return prefix, c, ok
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}
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for full, candidate := range commands {
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if strings.HasPrefix(full, prefix) {
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if c.run != nil {
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return "", command{}, false // ambiguous
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}
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c = candidate
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name = full
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}
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}
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return name, c, c.run != nil
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}
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var errExitApp = errors.New("internal sentinel error value to quit the console reading loop")
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func (a *h2i) cmdQuit(args []string) error {
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if len(args) > 0 {
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a.logf("the QUIT command takes no argument")
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return nil
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}
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return errExitApp
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}
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func (a *h2i) cmdSettings(args []string) error {
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if len(args) == 1 && strings.EqualFold(args[0], "ACK") {
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return a.framer.WriteSettingsAck()
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}
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var settings []http2.Setting
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for _, arg := range args {
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if strings.EqualFold(arg, "ACK") {
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a.logf("Error: ACK must be only argument with the SETTINGS command")
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return nil
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}
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eq := strings.Index(arg, "=")
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if eq == -1 {
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a.logf("Error: invalid argument %q (expected SETTING_NAME=nnnn)", arg)
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return nil
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}
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sid, ok := settingByName(arg[:eq])
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if !ok {
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a.logf("Error: unknown setting name %q", arg[:eq])
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return nil
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}
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val, err := strconv.ParseUint(arg[eq+1:], 10, 32)
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if err != nil {
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a.logf("Error: invalid argument %q (expected SETTING_NAME=nnnn)", arg)
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return nil
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}
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settings = append(settings, http2.Setting{
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ID: sid,
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Val: uint32(val),
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})
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}
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a.logf("Sending: %v", settings)
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return a.framer.WriteSettings(settings...)
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}
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func settingByName(name string) (http2.SettingID, bool) {
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for _, sid := range [...]http2.SettingID{
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http2.SettingHeaderTableSize,
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http2.SettingEnablePush,
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http2.SettingMaxConcurrentStreams,
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http2.SettingInitialWindowSize,
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http2.SettingMaxFrameSize,
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http2.SettingMaxHeaderListSize,
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} {
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if strings.EqualFold(sid.String(), name) {
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return sid, true
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}
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}
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return 0, false
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}
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func (app *h2i) cmdPing(args []string) error {
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if len(args) > 1 {
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app.logf("invalid PING usage: only accepts 0 or 1 args")
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return nil // nil means don't end the program
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}
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var data [8]byte
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if len(args) == 1 {
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copy(data[:], args[0])
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} else {
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copy(data[:], "h2i_ping")
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}
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return app.framer.WritePing(false, data)
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}
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func (app *h2i) cmdHeaders(args []string) error {
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if len(args) > 0 {
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app.logf("Error: HEADERS doesn't yet take arguments.")
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// TODO: flags for restricting window size, to force CONTINUATION
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// frames.
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return nil
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}
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var h1req bytes.Buffer
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app.term.SetPrompt("(as HTTP/1.1)> ")
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defer app.term.SetPrompt("h2i> ")
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for {
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line, err := app.term.ReadLine()
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if err != nil {
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return err
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}
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h1req.WriteString(line)
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h1req.WriteString("\r\n")
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if line == "" {
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break
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}
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}
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req, err := http.ReadRequest(bufio.NewReader(&h1req))
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if err != nil {
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app.logf("Invalid HTTP/1.1 request: %v", err)
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return nil
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}
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if app.streamID == 0 {
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app.streamID = 1
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} else {
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app.streamID += 2
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}
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app.logf("Opening Stream-ID %d:", app.streamID)
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hbf := app.encodeHeaders(req)
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if len(hbf) > 16<<10 {
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app.logf("TODO: h2i doesn't yet write CONTINUATION frames. Copy it from transport.go")
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return nil
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}
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return app.framer.WriteHeaders(http2.HeadersFrameParam{
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StreamID: app.streamID,
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BlockFragment: hbf,
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EndStream: req.Method == "GET" || req.Method == "HEAD", // good enough for now
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EndHeaders: true, // for now
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})
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}
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func (app *h2i) readFrames() error {
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for {
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f, err := app.framer.ReadFrame()
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if err != nil {
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return fmt.Errorf("ReadFrame: %v", err)
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}
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app.logf("%v", f)
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switch f := f.(type) {
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case *http2.PingFrame:
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app.logf(" Data = %q", f.Data)
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case *http2.SettingsFrame:
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f.ForeachSetting(func(s http2.Setting) error {
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app.logf(" %v", s)
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app.peerSetting[s.ID] = s.Val
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return nil
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})
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case *http2.WindowUpdateFrame:
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app.logf(" Window-Increment = %v\n", f.Increment)
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case *http2.GoAwayFrame:
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app.logf(" Last-Stream-ID = %d; Error-Code = %v (%d)\n", f.LastStreamID, f.ErrCode, f.ErrCode)
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case *http2.DataFrame:
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app.logf(" %q", f.Data())
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case *http2.HeadersFrame:
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if f.HasPriority() {
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app.logf(" PRIORITY = %v", f.Priority)
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}
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if app.hdec == nil {
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// TODO: if the user uses h2i to send a SETTINGS frame advertising
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// something larger, we'll need to respect SETTINGS_HEADER_TABLE_SIZE
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// and stuff here instead of using the 4k default. But for now:
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tableSize := uint32(4 << 10)
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app.hdec = hpack.NewDecoder(tableSize, app.onNewHeaderField)
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}
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app.hdec.Write(f.HeaderBlockFragment())
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}
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}
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}
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// called from readLoop
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func (app *h2i) onNewHeaderField(f hpack.HeaderField) {
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if f.Sensitive {
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app.logf(" %s = %q (SENSITIVE)", f.Name, f.Value)
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}
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app.logf(" %s = %q", f.Name, f.Value)
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}
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func (app *h2i) encodeHeaders(req *http.Request) []byte {
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app.hbuf.Reset()
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// TODO(bradfitz): figure out :authority-vs-Host stuff between http2 and Go
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host := req.Host
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if host == "" {
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host = req.URL.Host
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}
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path := req.URL.Path
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if path == "" {
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path = "/"
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}
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app.writeHeader(":authority", host) // probably not right for all sites
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app.writeHeader(":method", req.Method)
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app.writeHeader(":path", path)
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app.writeHeader(":scheme", "https")
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for k, vv := range req.Header {
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lowKey := strings.ToLower(k)
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if lowKey == "host" {
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continue
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}
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for _, v := range vv {
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app.writeHeader(lowKey, v)
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}
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}
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return app.hbuf.Bytes()
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}
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func (app *h2i) writeHeader(name, value string) {
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app.henc.WriteField(hpack.HeaderField{Name: name, Value: value})
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app.logf(" %s = %s", name, value)
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}
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