mirror of https://gogs.blitter.com/RLabs/xs
303 lines
7.1 KiB
Go
303 lines
7.1 KiB
Go
// hkexsh client
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//
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// Copyright (c) 2017-2018 Russell Magee
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// Licensed under the terms of the MIT license (see LICENSE.mit in this
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// distribution)
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//
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// golang implementation by Russ Magee (rmagee_at_gmail.com)
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package main
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import (
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"flag"
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"fmt"
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"io"
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"io/ioutil"
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"log"
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"os"
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"os/exec"
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"os/signal"
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"os/user"
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"strings"
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"sync"
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"syscall"
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"time"
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hkexsh "blitter.com/go/hkexsh"
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isatty "github.com/mattn/go-isatty"
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)
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type cmdSpec struct {
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op []byte
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who []byte
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cmd []byte
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authCookie []byte
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status int
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}
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// get terminal size using 'stty' command
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// (Most portable btwn Linux and MSYS/win32, but
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// TODO: remove external dep on 'stty' utility)
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func getTermSize() (rows int, cols int, err error) {
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cmd := exec.Command("stty", "size")
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cmd.Stdin = os.Stdin
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out, err := cmd.Output()
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//fmt.Printf("out: %#v\n", string(out))
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//fmt.Printf("err: %#v\n", err)
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fmt.Sscanf(string(out), "%d %d\n", &rows, &cols)
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if err != nil {
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log.Fatal(err)
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}
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return
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}
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// Demo of a simple client that dials up to a simple test server to
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// send data.
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//
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// While conforming to the basic net.Conn interface HKex.Conn has extra
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// capabilities designed to allow apps to define connection options,
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// encryption/hmac settings and operations across the encrypted channel.
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//
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// Initial setup is the same as using plain net.Dial(), but one may
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// specify extra extension tags (strings) to set the cipher and hmac
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// setting desired; as well as the intended operation mode for the
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// connection (app-specific, passed through to the server to use or
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// ignore at its discretion).
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func main() {
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var wg sync.WaitGroup
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var dbg bool
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var cAlg string
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var hAlg string
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var server string
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var cmdStr string
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var altUser string
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var authCookie string
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isInteractive := false
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flag.StringVar(&cAlg, "c", "C_AES_256", "cipher [\"C_AES_256\" | \"C_TWOFISH_128\" | \"C_BLOWFISH_64\"]")
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flag.StringVar(&hAlg, "h", "H_SHA256", "hmac [\"H_SHA256\"]")
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flag.StringVar(&server, "s", "localhost:2000", "server hostname/address[:port]")
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flag.StringVar(&cmdStr, "x", "", "command to run (default empty - interactive shell)")
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flag.StringVar(&altUser, "u", "", "specify alternate user")
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flag.StringVar(&authCookie, "a", "", "auth cookie (MultiCheese3999(tm) 2FA cookie")
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flag.BoolVar(&dbg, "d", false, "debug logging")
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flag.Parse()
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if dbg {
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log.SetOutput(os.Stdout)
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} else {
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log.SetOutput(ioutil.Discard)
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}
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conn, err := hkexsh.Dial("tcp", server, cAlg, hAlg)
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if err != nil {
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fmt.Println("Err!")
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panic(err)
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}
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defer conn.Close()
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// From this point on, conn is a secure encrypted channel
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rows := 0
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cols := 0
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// Set stdin in raw mode if it's an interactive session
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// TODO: send flag to server side indicating this
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// affects shell command used
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var oldState *hkexsh.State
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if isatty.IsTerminal(os.Stdin.Fd()) {
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oldState, err = hkexsh.MakeRaw(int(os.Stdin.Fd()))
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if err != nil {
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panic(err)
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}
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defer func() { _ = hkexsh.Restore(int(os.Stdin.Fd()), oldState) }() // Best effort.
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} else {
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log.Println("NOT A TTY")
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}
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var uname string
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if len(altUser) == 0 {
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u, _ := user.Current()
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uname = u.Username
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} else {
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uname = altUser
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}
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var op []byte
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if len(cmdStr) == 0 {
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op = []byte{'s'}
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isInteractive = true
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} else if cmdStr == "-" {
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op = []byte{'c'}
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cmdStdin, err := ioutil.ReadAll(os.Stdin)
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if err != nil {
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panic(err)
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}
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cmdStr = strings.Trim(string(cmdStdin), "\r\n")
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} else {
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op = []byte{'c'}
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}
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if len(authCookie) == 0 {
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fmt.Printf("Gimme cookie:")
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ab, err := hkexsh.ReadPassword(int(os.Stdin.Fd()))
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fmt.Printf("\r\n")
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if err != nil {
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panic(err)
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}
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authCookie = string(ab)
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}
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rec := &cmdSpec{
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op: op,
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who: []byte(uname),
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cmd: []byte(cmdStr),
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authCookie: []byte(authCookie),
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status: 0}
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_, err = fmt.Fprintf(conn, "%d %d %d %d\n",
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len(rec.op), len(rec.who), len(rec.cmd), len(rec.authCookie))
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_, err = conn.Write(rec.op)
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_, err = conn.Write(rec.who)
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_, err = conn.Write(rec.cmd)
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_, err = conn.Write(rec.authCookie)
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//client reader (from server) goroutine
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wg.Add(1)
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go func() {
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// By deferring a call to wg.Done(),
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// each goroutine guarantees that it marks
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// its direction's stream as finished.
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//
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// Whichever direction's goroutine finishes first
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// will call wg.Done() once more, explicitly, to
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// hang up on the other side, so that this client
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// exits immediately on an EOF from either side.
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defer wg.Done()
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// io.Copy() expects EOF so this will
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// exit with inerr == nil
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_, inerr := io.Copy(os.Stdout, conn)
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if inerr != nil {
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if inerr.Error() != "EOF" {
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fmt.Println(inerr)
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_ = hkexsh.Restore(int(os.Stdin.Fd()), oldState) // Best effort.
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os.Exit(1)
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}
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}
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if isInteractive {
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log.Println("[Got EOF]")
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wg.Done() // server hung up, close WaitGroup to exit client
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}
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}()
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m := &sync.Mutex{}
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if isInteractive {
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// Handle pty resizes (notify server side)
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ch := make(chan os.Signal, 1)
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signal.Notify(ch, syscall.SIGWINCH)
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wg.Add(1)
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go func() {
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defer wg.Done()
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for range ch {
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// Query client's term size so we can communicate it to server
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// pty after interactive session starts
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rows, cols, err = getTermSize()
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log.Printf("[rows %v cols %v]\n", rows, cols)
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if err != nil {
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panic(err)
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}
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termSzPacket := fmt.Sprintf("%d %d", rows, cols)
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m.Lock()
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conn.WritePacket([]byte(termSzPacket), hkexsh.CSOTermSize)
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m.Unlock()
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}
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}()
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ch <- syscall.SIGWINCH // Initial resize.
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// client chaffing goroutine
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wg.Add(1)
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go func() {
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defer wg.Done()
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for {
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m.Lock()
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conn.WritePacket([]byte("CHAFF"), hkexsh.CSOChaff)
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m.Unlock()
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time.Sleep(10 * time.Millisecond)
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}
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}()
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// client writer (to server) goroutine
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wg.Add(1)
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go func() {
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defer wg.Done()
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// io.Copy() expects EOF so this will
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// exit with outerr == nil
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//!_, outerr := io.Copy(conn, os.Stdin)
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_, outerr := func(m *sync.Mutex, conn *hkexsh.Conn, r io.Reader) (w int64, e error) {
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return safeCopy(m, conn, r)
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}(m, conn, os.Stdin)
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if outerr != nil {
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log.Println(outerr)
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if outerr.Error() != "EOF" {
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fmt.Println(outerr)
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_ = hkexsh.Restore(int(os.Stdin.Fd()), oldState) // Best effort.
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os.Exit(2)
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}
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}
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log.Println("[Sent EOF]")
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wg.Done() // client hung up, close WaitGroup to exit client
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}()
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}
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// Wait until both stdin and stdout goroutines finish
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wg.Wait()
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}
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func safeCopy(m *sync.Mutex, dst io.Writer, src io.Reader) (written int64, err error) {
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// // If the reader has a WriteTo method, use it to do the copy.
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// // Avoids an allocation and a copy.
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// if wt, ok := src.(io.WriterTo); ok {
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// return wt.WriteTo(dst)
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// }
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// // Similarly, if the writer has a ReadFrom method, use it to do the copy.
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// if rt, ok := dst.(io.ReaderFrom); ok {
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// return rt.ReadFrom(src)
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// }
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buf := make([]byte, 32*1024)
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for {
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nr, er := src.Read(buf)
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if nr > 0 {
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m.Lock()
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nw, ew := dst.Write(buf[0:nr])
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m.Unlock()
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if nw > 0 {
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written += int64(nw)
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}
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if ew != nil {
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err = ew
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break
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}
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if nr != nw {
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err = io.ErrShortWrite
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break
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}
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}
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if er != nil {
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if er != io.EOF {
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err = er
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}
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break
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}
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}
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return written, err
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}
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