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454 lines
12 KiB
Go
454 lines
12 KiB
Go
// Copyright (c) 2022 Tailscale Inc & 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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// This file contains the code for the incubator process.
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// Taiscaled launches the incubator as the same user as it was launched as.
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// The incbuator then registers a new session with the OS, sets its own UID to
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// the specified `--uid`` and then lauches the requested `--cmd`.
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//go:build linux || (darwin && !ios)
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// +build linux darwin,!ios
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package tailssh
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import (
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"context"
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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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"log/syslog"
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"os"
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"os/exec"
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"os/user"
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"path/filepath"
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"runtime"
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"strings"
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"syscall"
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"github.com/creack/pty"
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"github.com/tailscale/ssh"
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"github.com/u-root/u-root/pkg/termios"
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gossh "golang.org/x/crypto/ssh"
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"golang.org/x/sys/unix"
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"tailscale.com/cmd/tailscaled/childproc"
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"tailscale.com/types/logger"
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)
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func init() {
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childproc.Add("ssh", beIncubator)
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}
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var ptyName = func(f *os.File) (string, error) {
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return "", fmt.Errorf("unimplemented")
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}
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// maybeStartLoginSession starts a new login session for the specified UID.
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// On success, it may return a non-nil close func which must be closed to
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// release the session.
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// See maybeStartLoginSessionLinux.
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var maybeStartLoginSession = func(logf logger.Logf, uid uint32, localUser, remoteUser, remoteHost, tty string) (close func() error, err error) {
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return nil, nil
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}
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// newIncubatorCommand returns a new exec.Cmd configured with
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// `tailscaled be-child ssh` as the entrypoint.
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//
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// If ss.srv.tailscaledPath is empty, this method is equivalent to
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// exec.CommandContext.
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func (ss *sshSession) newIncubatorCommand(ctx context.Context, name string, args []string) *exec.Cmd {
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if ss.srv.tailscaledPath == "" {
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return exec.CommandContext(ctx, name, args...)
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}
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lu := ss.localUser
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ci := ss.connInfo
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remoteUser := ci.uprof.LoginName
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if len(ci.node.Tags) > 0 {
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remoteUser = strings.Join(ci.node.Tags, ",")
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}
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incubatorArgs := []string{
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"be-child",
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"ssh",
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"--uid=" + lu.Uid,
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"--local-user=" + lu.Username,
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"--remote-user=" + remoteUser,
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"--remote-ip=" + ci.src.IP().String(),
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"--cmd=" + name,
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"--has-tty=false", // updated in-place by startWithPTY
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"--tty-name=", // updated in-place by startWithPTY
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}
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if len(args) > 0 {
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incubatorArgs = append(incubatorArgs, "--")
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incubatorArgs = append(incubatorArgs, args...)
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}
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return exec.CommandContext(ctx, ss.srv.tailscaledPath, incubatorArgs...)
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}
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const debugIncubator = false
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// beIncubator is the entrypoint to the `tailscaled be-child ssh` subcommand.
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// It is responsible for informing the system of a new login session for the user.
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// This is sometimes necessary for mounting home directories and decrypting file
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// systems.
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//
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// Taiscaled launches the incubator as the same user as it was launched as.
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// The incbuator then registers a new session with the OS, sets its own UID to
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// the specified `--uid`` and then lauches the requested `--cmd`.
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func beIncubator(args []string) error {
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var (
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flags = flag.NewFlagSet("", flag.ExitOnError)
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uid = flags.Uint64("uid", 0, "the uid of local-user")
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localUser = flags.String("local-user", "", "the user to run as")
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remoteUser = flags.String("remote-user", "", "the remote user/tags")
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remoteIP = flags.String("remote-ip", "", "the remote Tailscale IP")
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ttyName = flags.String("tty-name", "", "the tty name (pts/3)")
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hasTTY = flags.Bool("has-tty", false, "is the output attached to a tty")
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cmdName = flags.String("cmd", "", "the cmd to launch")
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)
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if err := flags.Parse(args); err != nil {
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return err
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}
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cmdArgs := flags.Args()
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logf := logger.Discard
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if debugIncubator {
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// We don't own stdout or stderr, so the only place we can log is syslog.
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if sl, err := syslog.New(syslog.LOG_INFO|syslog.LOG_DAEMON, "tailscaled-ssh"); err == nil {
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logf = log.New(sl, "", 0).Printf
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}
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}
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euid := uint64(os.Geteuid())
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// Inform the system that we are about to log someone in.
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// We can only do this if we are running as root.
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// This is best effort to still allow running on machines where
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// we don't support starting session, e.g. darwin.
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sessionCloser, err := maybeStartLoginSession(logf, uint32(*uid), *localUser, *remoteUser, *remoteIP, *ttyName)
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if err == nil && sessionCloser != nil {
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defer sessionCloser()
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}
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if euid != *uid {
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// Switch users if required before starting the desired process.
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if err := syscall.Setuid(int(*uid)); err != nil {
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logf(err.Error())
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os.Exit(1)
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}
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}
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cmd := exec.Command(*cmdName, cmdArgs...)
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cmd.Stdin = os.Stdin
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cmd.Stdout = os.Stdout
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cmd.Stderr = os.Stderr
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cmd.Env = os.Environ()
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if *hasTTY {
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// If we were launched with a tty then we should
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// mark that as the ctty of the child. However,
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// as the ctty is being passed from the parent
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// we set the child to foreground instead which
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// also passes the ctty.
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// However, we can not do this if never had a tty to
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// begin with.
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cmd.SysProcAttr = &syscall.SysProcAttr{
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Foreground: true,
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}
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}
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return cmd.Run()
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}
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// launchProcess launches an incubator process for the provided session.
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// It is responsible for configuring the process execution environment.
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// The caller can wait for the process to exit by calling cmd.Wait().
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//
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// It sets ss.cmd, stdin, stdout, and stderr.
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func (ss *sshSession) launchProcess(ctx context.Context) error {
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shell := loginShell(ss.localUser.Uid)
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var args []string
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if rawCmd := ss.RawCommand(); rawCmd != "" {
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args = append(args, "-c", rawCmd)
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} else {
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args = append(args, "-l") // login shell
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}
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ci := ss.connInfo
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cmd := ss.newIncubatorCommand(ctx, shell, args)
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cmd.Dir = ss.localUser.HomeDir
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cmd.Env = append(cmd.Env, envForUser(ss.localUser)...)
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cmd.Env = append(cmd.Env, ss.Environ()...)
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cmd.Env = append(cmd.Env,
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fmt.Sprintf("SSH_CLIENT=%s %d %d", ci.src.IP(), ci.src.Port(), ci.dst.Port()),
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fmt.Sprintf("SSH_CONNECTION=%s %d %s %d", ci.src.IP(), ci.src.Port(), ci.dst.IP(), ci.dst.Port()),
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)
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ss.cmd = cmd
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if ss.agentListener != nil {
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cmd.Env = append(cmd.Env, fmt.Sprintf("SSH_AUTH_SOCK=%s", ss.agentListener.Addr()))
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}
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ptyReq, winCh, isPty := ss.Pty()
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if !isPty {
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ss.logf("starting non-pty command: %+v", cmd.Args)
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return ss.startWithStdPipes()
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}
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ss.ptyReq = &ptyReq
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ss.logf("starting pty command: %+v", cmd.Args)
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pty, err := ss.startWithPTY()
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if err != nil {
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return err
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}
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go resizeWindow(pty, winCh)
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ss.stdout = pty // no stderr for a pty
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ss.stdin = pty
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return nil
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}
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func resizeWindow(f *os.File, winCh <-chan ssh.Window) {
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for win := range winCh {
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unix.IoctlSetWinsize(int(f.Fd()), syscall.TIOCSWINSZ, &unix.Winsize{
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Row: uint16(win.Height),
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Col: uint16(win.Width),
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})
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}
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}
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// opcodeShortName is a mapping of SSH opcode
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// to mnemonic names expected by the termios packaage.
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// These are meant to be platform independent.
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var opcodeShortName = map[uint8]string{
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gossh.VINTR: "intr",
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gossh.VQUIT: "quit",
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gossh.VERASE: "erase",
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gossh.VKILL: "kill",
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gossh.VEOF: "eof",
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gossh.VEOL: "eol",
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gossh.VEOL2: "eol2",
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gossh.VSTART: "start",
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gossh.VSTOP: "stop",
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gossh.VSUSP: "susp",
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gossh.VDSUSP: "dsusp",
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gossh.VREPRINT: "rprnt",
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gossh.VWERASE: "werase",
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gossh.VLNEXT: "lnext",
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gossh.VFLUSH: "flush",
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gossh.VSWTCH: "swtch",
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gossh.VSTATUS: "status",
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gossh.VDISCARD: "discard",
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gossh.IGNPAR: "ignpar",
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gossh.PARMRK: "parmrk",
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gossh.INPCK: "inpck",
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gossh.ISTRIP: "istrip",
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gossh.INLCR: "inlcr",
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gossh.IGNCR: "igncr",
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gossh.ICRNL: "icrnl",
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gossh.IUCLC: "iuclc",
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gossh.IXON: "ixon",
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gossh.IXANY: "ixany",
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gossh.IXOFF: "ixoff",
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gossh.IMAXBEL: "imaxbel",
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gossh.IUTF8: "iutf8",
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gossh.ISIG: "isig",
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gossh.ICANON: "icanon",
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gossh.XCASE: "xcase",
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gossh.ECHO: "echo",
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gossh.ECHOE: "echoe",
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gossh.ECHOK: "echok",
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gossh.ECHONL: "echonl",
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gossh.NOFLSH: "noflsh",
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gossh.TOSTOP: "tostop",
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gossh.IEXTEN: "iexten",
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gossh.ECHOCTL: "echoctl",
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gossh.ECHOKE: "echoke",
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gossh.PENDIN: "pendin",
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gossh.OPOST: "opost",
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gossh.OLCUC: "olcuc",
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gossh.ONLCR: "onlcr",
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gossh.OCRNL: "ocrnl",
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gossh.ONOCR: "onocr",
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gossh.ONLRET: "onlret",
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gossh.CS7: "cs7",
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gossh.CS8: "cs8",
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gossh.PARENB: "parenb",
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gossh.PARODD: "parodd",
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gossh.TTY_OP_ISPEED: "tty_op_ispeed",
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gossh.TTY_OP_OSPEED: "tty_op_ospeed",
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}
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// startWithPTY starts cmd with a psuedo-terminal attached to Stdin, Stdout and Stderr.
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func (ss *sshSession) startWithPTY() (ptyFile *os.File, err error) {
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ptyReq := ss.ptyReq
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cmd := ss.cmd
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if cmd == nil {
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return nil, errors.New("nil ss.cmd")
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}
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if ptyReq == nil {
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return nil, errors.New("nil ss.ptyReq")
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}
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var tty *os.File
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ptyFile, tty, err = pty.Open()
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if err != nil {
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err = fmt.Errorf("pty.Open: %w", err)
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return
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}
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defer func() {
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if err != nil {
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ptyFile.Close()
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tty.Close()
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}
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}()
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ptyRawConn, err := tty.SyscallConn()
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if err != nil {
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return nil, fmt.Errorf("SyscallConn: %w", err)
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}
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var ctlErr error
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if err := ptyRawConn.Control(func(fd uintptr) {
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// Load existing PTY settings to modify them & save them back.
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tios, err := termios.GTTY(int(fd))
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if err != nil {
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ctlErr = fmt.Errorf("GTTY: %w", err)
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return
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}
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// Set the rows & cols to those advertised from the ptyReq frame
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// received over SSH.
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tios.Row = int(ptyReq.Window.Height)
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tios.Col = int(ptyReq.Window.Width)
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for c, v := range ptyReq.Modes {
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if c == gossh.TTY_OP_ISPEED {
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tios.Ispeed = int(v)
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continue
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}
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if c == gossh.TTY_OP_OSPEED {
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tios.Ospeed = int(v)
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continue
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}
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k, ok := opcodeShortName[c]
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if !ok {
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ss.logf("unknown opcode: %d", c)
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continue
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}
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if _, ok := tios.CC[k]; ok {
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tios.CC[k] = uint8(v)
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continue
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}
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if _, ok := tios.Opts[k]; ok {
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tios.Opts[k] = v > 0
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continue
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}
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ss.logf("unsupported opcode: %v(%d)=%v", k, c, v)
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}
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// Save PTY settings.
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if _, err := tios.STTY(int(fd)); err != nil {
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ctlErr = fmt.Errorf("STTY: %w", err)
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return
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}
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}); err != nil {
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return nil, fmt.Errorf("ptyRawConn.Control: %w", err)
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}
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if ctlErr != nil {
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return nil, fmt.Errorf("ptyRawConn.Control func: %w", ctlErr)
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}
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cmd.SysProcAttr = &syscall.SysProcAttr{
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Setctty: true,
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Setsid: true,
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}
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updateStringInSlice(cmd.Args, "--has-tty=false", "--has-tty=true")
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if ptyName, err := ptyName(ptyFile); err == nil {
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updateStringInSlice(cmd.Args, "--tty-name=", "--tty-name="+ptyName)
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fullPath := filepath.Join("/dev", ptyName)
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cmd.Env = append(cmd.Env, fmt.Sprintf("SSH_TTY=%s", fullPath))
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}
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if ptyReq.Term != "" {
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cmd.Env = append(cmd.Env, fmt.Sprintf("TERM=%s", ptyReq.Term))
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}
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cmd.Stdin = tty
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cmd.Stdout = tty
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cmd.Stderr = tty
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if err = cmd.Start(); err != nil {
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return
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}
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return ptyFile, nil
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}
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// startWithStdPipes starts cmd with os.Pipe for Stdin, Stdout and Stderr.
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func (ss *sshSession) startWithStdPipes() (err error) {
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var stdin io.WriteCloser
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var stdout, stderr io.ReadCloser
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defer func() {
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if err != nil {
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for _, c := range []io.Closer{stdin, stdout, stderr} {
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if c != nil {
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c.Close()
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}
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}
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}
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}()
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cmd := ss.cmd
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if cmd == nil {
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return errors.New("nil cmd")
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}
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stdin, err = cmd.StdinPipe()
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if err != nil {
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return err
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}
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stdout, err = cmd.StdoutPipe()
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if err != nil {
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return err
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}
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stderr, err = cmd.StderrPipe()
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if err != nil {
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return err
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}
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if err := cmd.Start(); err != nil {
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return err
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}
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ss.stdin = stdin
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ss.stdout = stdout
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ss.stderr = stderr
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return nil
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}
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func loginShell(uid string) string {
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switch runtime.GOOS {
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case "linux":
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out, _ := exec.Command("getent", "passwd", uid).Output()
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// out is "root:x:0:0:root:/root:/bin/bash"
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f := strings.SplitN(string(out), ":", 10)
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if len(f) > 6 {
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return strings.TrimSpace(f[6]) // shell
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}
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}
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if e := os.Getenv("SHELL"); e != "" {
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return e
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}
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return "/bin/bash"
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}
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func envForUser(u *user.User) []string {
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return []string{
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fmt.Sprintf("SHELL=" + loginShell(u.Uid)),
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fmt.Sprintf("USER=" + u.Username),
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fmt.Sprintf("HOME=" + u.HomeDir),
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}
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}
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// updateStringInSlice mutates ss to change the first occurrence of a
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// to b.
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func updateStringInSlice(ss []string, a, b string) {
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for i, s := range ss {
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if s == a {
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ss[i] = b
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return
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}
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}
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}
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