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// xsd server
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//
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// Copyright (c) 2017-2019 Russell Magee
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// Licensed under the terms of the MIT license (see LICENSE.mit in this
// distribution)
//
// golang implementation by Russ Magee (rmagee_at_gmail.com)
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package main
import (
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"bytes"
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"crypto/rand"
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"encoding/binary"
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"encoding/hex"
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"errors"
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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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"path"
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"strings"
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"sync"
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"syscall"
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"unsafe"
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"blitter.com/go/goutmp"
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xs "blitter.com/go/xs"
"blitter.com/go/xs/logger"
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"blitter.com/go/xs/xsnet"
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"github.com/kr/pty"
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)
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var (
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version string
gitCommit string // set in -ldflags by build
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useSysLogin bool
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kcpMode string // set to a valid KCP BlockCrypt alg tag to use rather than TCP
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// Log - syslog output (with no -d)
Log * logger . Writer
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)
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func ioctl ( fd , request , argp uintptr ) error {
if _ , _ , e := syscall . Syscall6 ( syscall . SYS_IOCTL , fd , request , argp , 0 , 0 , 0 ) ; e != 0 {
return e
}
return nil
}
func ptsName ( fd uintptr ) ( string , error ) {
var n uintptr
err := ioctl ( fd , syscall . TIOCGPTN , uintptr ( unsafe . Pointer ( & n ) ) )
if err != nil {
return "" , err
}
return fmt . Sprintf ( "/dev/pts/%d" , n ) , nil
}
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/* -------------------------------------------------------------- */
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// Perform a client->server copy
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func runClientToServerCopyAs ( who , ttype string , conn * xsnet . Conn , fpath string , chaffing bool ) ( exitStatus uint32 , err error ) {
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u , _ := user . Lookup ( who ) // nolint: gosec
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var uid , gid uint32
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fmt . Sscanf ( u . Uid , "%d" , & uid ) // nolint: gosec,errcheck
fmt . Sscanf ( u . Gid , "%d" , & gid ) // nolint: gosec,errcheck
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log . Println ( "uid:" , uid , "gid:" , gid )
// Need to clear server's env and set key vars of the
// target user. This isn't perfect (TERM doesn't seem to
// work 100%; ANSI/xterm colour isn't working even
// if we set "xterm" or "ansi" here; and line count
// reported by 'stty -a' defaults to 24 regardless
// of client shell window used to run client.
// Investigate -- rlm 2018-01-26)
os . Clearenv ( )
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os . Setenv ( "HOME" , u . HomeDir ) // nolint: gosec,errcheck
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os . Setenv ( "TERM" , ttype ) // nolint: gosec,errcheck
os . Setenv ( "HKEXSH" , "1" ) // nolint: gosec,errcheck
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var c * exec . Cmd
cmdName := "/bin/tar"
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var destDir string
if path . IsAbs ( fpath ) {
destDir = fpath
} else {
destDir = path . Join ( u . HomeDir , fpath )
}
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cmdArgs := [ ] string { "-xz" , "-C" , destDir }
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// NOTE the lack of quotes around --xform option's sed expression.
// When args are passed in exec() format, no quoting is required
// (as this isn't input from a shell) (right? -rlm 20180823)
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//cmdArgs := []string{"-x", "-C", destDir, `--xform=s#.*/\(.*\)#\1#`}
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c = exec . Command ( cmdName , cmdArgs ... ) // nolint: gosec
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c . Dir = destDir
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//If os.Clearenv() isn't called by server above these will be seen in the
//client's session env.
//c.Env = []string{"HOME=" + u.HomeDir, "SUDO_GID=", "SUDO_UID=", "SUDO_USER=", "SUDO_COMMAND=", "MAIL=", "LOGNAME="+who}
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//c.Dir = u.HomeDir
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c . SysProcAttr = & syscall . SysProcAttr { }
c . SysProcAttr . Credential = & syscall . Credential { Uid : uid , Gid : gid }
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c . Stdin = conn
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c . Stdout = os . Stdout
c . Stderr = os . Stderr
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if chaffing {
conn . EnableChaff ( )
}
defer conn . DisableChaff ( )
defer conn . ShutdownChaff ( )
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// Start the command (no pty)
log . Printf ( "[%v %v]\n" , cmdName , cmdArgs )
err = c . Start ( ) // returns immediately
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/////////////
// NOTE: There is, apparently, a bug in Go stdlib here. Start()
// can actually return immediately, on a command which *does*
// start but exits quickly, with c.Wait() error
// "c.Wait status: exec: not started".
// As in this example, attempting a client->server copy to
// a nonexistent remote dir (it's tar exiting right away, exitStatus
// 2, stderr
// /bin/tar -xz -C /home/someuser/nosuchdir
// stderr: fork/exec /bin/tar: no such file or directory
//
// In this case, c.Wait() won't give us the real
// exit status (is it lost?).
/////////////
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if err != nil {
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log . Println ( "cmd exited immediately. Cannot get cmd.Wait().ExitStatus()" )
err = errors . New ( "cmd exited prematurely" )
//exitStatus = uint32(254)
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exitStatus = xsnet . CSEExecFail
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} else {
if err := c . Wait ( ) ; err != nil {
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//fmt.Println("*** c.Wait() done ***")
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if exiterr , ok := err . ( * exec . ExitError ) ; ok {
// The program has exited with an exit code != 0
// This works on both Unix and Windows. Although package
// syscall is generally platform dependent, WaitStatus is
// defined for both Unix and Windows and in both cases has
// an ExitStatus() method with the same signature.
if status , ok := exiterr . Sys ( ) . ( syscall . WaitStatus ) ; ok {
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exitStatus = uint32 ( status . ExitStatus ( ) )
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//err = errors.New("cmd returned nonzero status")
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log . Printf ( "Exit Status: %d\n" , exitStatus )
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}
}
}
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log . Println ( "*** client->server cp finished ***" )
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}
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return
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}
// Perform a server->client copy
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func runServerToClientCopyAs ( who , ttype string , conn * xsnet . Conn , srcPath string , chaffing bool ) ( exitStatus uint32 , err error ) {
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u , err := user . Lookup ( who )
if err != nil {
exitStatus = 1
return
}
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var uid , gid uint32
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_ , _ = fmt . Sscanf ( u . Uid , "%d" , & uid ) // nolint: gosec
_ , _ = fmt . Sscanf ( u . Gid , "%d" , & gid ) // nolint: gosec
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log . Println ( "uid:" , uid , "gid:" , gid )
// Need to clear server's env and set key vars of the
// target user. This isn't perfect (TERM doesn't seem to
// work 100%; ANSI/xterm colour isn't working even
// if we set "xterm" or "ansi" here; and line count
// reported by 'stty -a' defaults to 24 regardless
// of client shell window used to run client.
// Investigate -- rlm 2018-01-26)
os . Clearenv ( )
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_ = os . Setenv ( "HOME" , u . HomeDir ) // nolint: gosec
_ = os . Setenv ( "TERM" , ttype ) // nolint: gosec
_ = os . Setenv ( "HKEXSH" , "1" ) // nolint: gosec
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var c * exec . Cmd
cmdName := "/bin/tar"
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if ! path . IsAbs ( srcPath ) {
srcPath = fmt . Sprintf ( "%s%c%s" , u . HomeDir , os . PathSeparator , srcPath )
}
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srcDir , srcBase := path . Split ( srcPath )
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cmdArgs := [ ] string { "-cz" , "-C" , srcDir , "-f" , "-" , srcBase }
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c = exec . Command ( cmdName , cmdArgs ... ) // nolint: gosec
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//If os.Clearenv() isn't called by server above these will be seen in the
//client's session env.
//c.Env = []string{"HOME=" + u.HomeDir, "SUDO_GID=", "SUDO_UID=", "SUDO_USER=", "SUDO_COMMAND=", "MAIL=", "LOGNAME="+who}
c . Dir = u . HomeDir
c . SysProcAttr = & syscall . SysProcAttr { }
c . SysProcAttr . Credential = & syscall . Credential { Uid : uid , Gid : gid }
c . Stdout = conn
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// Stderr sinkholing (or buffering to something other than stdout)
// is important. Any extraneous output to tarpipe messes up remote
// side as it's expecting pure tar data.
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// (For example, if user specifies abs paths, tar outputs
// "Removing leading '/' from path names")
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stdErrBuffer := new ( bytes . Buffer )
c . Stderr = stdErrBuffer
//c.Stderr = nil
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if chaffing {
conn . EnableChaff ( )
}
//defer conn.Close()
defer conn . DisableChaff ( )
defer conn . ShutdownChaff ( )
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// Start the command (no pty)
log . Printf ( "[%v %v]\n" , cmdName , cmdArgs )
err = c . Start ( ) // returns immediately
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if err != nil {
log . Printf ( "Command finished with error: %v" , err )
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return xsnet . CSEExecFail , err // !?
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}
if err := c . Wait ( ) ; err != nil {
//fmt.Println("*** c.Wait() done ***")
if exiterr , ok := err . ( * exec . ExitError ) ; ok {
// The program has exited with an exit code != 0
// This works on both Unix and Windows. Although package
// syscall is generally platform dependent, WaitStatus is
// defined for both Unix and Windows and in both cases has
// an ExitStatus() method with the same signature.
if status , ok := exiterr . Sys ( ) . ( syscall . WaitStatus ) ; ok {
exitStatus = uint32 ( status . ExitStatus ( ) )
if len ( stdErrBuffer . Bytes ( ) ) > 0 {
log . Print ( stdErrBuffer )
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}
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log . Printf ( "Exit Status: %d" , exitStatus )
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}
}
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}
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//fmt.Println("*** server->client cp finished ***")
return
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}
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// Run a command (via default shell) as a specific user
//
// Uses ptys to support commands which expect a terminal.
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// nolint: gocyclo
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func runShellAs ( who , hname , ttype , cmd string , interactive bool , conn * xsnet . Conn , chaffing bool ) ( exitStatus uint32 , err error ) {
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var wg sync . WaitGroup
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u , err := user . Lookup ( who )
if err != nil {
exitStatus = 1
return
}
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var uid , gid uint32
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_ , _ = fmt . Sscanf ( u . Uid , "%d" , & uid ) // nolint: gosec
_ , _ = fmt . Sscanf ( u . Gid , "%d" , & gid ) // nolint: gosec
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log . Println ( "uid:" , uid , "gid:" , gid )
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// Need to clear server's env and set key vars of the
// target user. This isn't perfect (TERM doesn't seem to
// work 100%; ANSI/xterm colour isn't working even
// if we set "xterm" or "ansi" here; and line count
// reported by 'stty -a' defaults to 24 regardless
// of client shell window used to run client.
// Investigate -- rlm 2018-01-26)
os . Clearenv ( )
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_ = os . Setenv ( "HOME" , u . HomeDir ) // nolint: gosec
_ = os . Setenv ( "TERM" , ttype ) // nolint: gosec
_ = os . Setenv ( "HKEXSH" , "1" ) // nolint: gosec
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var c * exec . Cmd
if interactive {
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if useSysLogin {
// Use the server's login binary (post-auth
// which is still done via our own bcrypt file)
// Things UNIX login does, like print the 'motd',
// and use the shell specified by /etc/passwd, will be done
// automagically, at the cost of another external tool
// dependency.
//
c = exec . Command ( "/bin/login" , "-f" , "-p" , who ) // nolint: gosec
} else {
c = exec . Command ( "/bin/bash" , "-i" , "-l" ) // nolint: gosec
}
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} else {
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c = exec . Command ( "/bin/bash" , "-c" , cmd ) // nolint: gosec
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}
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//If os.Clearenv() isn't called by server above these will be seen in the
//client's session env.
//c.Env = []string{"HOME=" + u.HomeDir, "SUDO_GID=", "SUDO_UID=", "SUDO_USER=", "SUDO_COMMAND=", "MAIL=", "LOGNAME="+who}
c . Dir = u . HomeDir
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c . SysProcAttr = & syscall . SysProcAttr { }
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if useSysLogin {
// If using server's login binary, drop to user creds
// is taken care of by it.
c . SysProcAttr . Credential = & syscall . Credential { }
} else {
c . SysProcAttr . Credential = & syscall . Credential { Uid : uid , Gid : gid }
}
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// Start the command with a pty.
ptmx , err := pty . Start ( c ) // returns immediately with ptmx file
if err != nil {
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log . Println ( err )
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return xsnet . CSEPtyExecFail , err
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}
// Make sure to close the pty at the end.
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// #gv:s/label=\"runShellAs\$1\"/label=\"deferPtmxClose\"/
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defer func ( ) {
//logger.LogDebug(fmt.Sprintf("[Exited process was %d]", c.Process.Pid))
_ = ptmx . Close ( )
} ( ) // nolint: gosec
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// get pty info for system accounting (who, lastlog)
pts , pe := ptsName ( ptmx . Fd ( ) )
if pe != nil {
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return xsnet . CSEPtyGetNameFail , err
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}
utmpx := goutmp . Put_utmp ( who , pts , hname )
defer func ( ) { goutmp . Unput_utmp ( utmpx ) } ( )
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goutmp . Put_lastlog_entry ( "xs" , who , pts , hname )
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log . Printf ( "[%s]\n" , cmd )
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if err != nil {
log . Printf ( "Command finished with error: %v" , err )
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} else {
// Watch for term resizes
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// #gv:s/label=\"runShellAs\$2\"/label=\"termResizeWatcher\"/
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go func ( ) {
for sz := range conn . WinCh {
log . Printf ( "[Setting term size to: %v %v]\n" , sz . Rows , sz . Cols )
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pty . Setsize ( ptmx , & pty . Winsize { Rows : sz . Rows , Cols : sz . Cols } ) // nolint: gosec,errcheck
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}
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log . Println ( "*** WinCh goroutine done ***" )
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} ( )
// Copy stdin to the pty.. (bgnd goroutine)
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// #gv:s/label=\"runShellAs\$3\"/label=\"stdinToPtyWorker\"/
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go func ( ) {
_ , e := io . Copy ( ptmx , conn )
if e != nil {
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log . Println ( "** stdin->pty ended **:" , e . Error ( ) )
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} else {
log . Println ( "*** stdin->pty goroutine done ***" )
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}
} ( )
if chaffing {
conn . EnableChaff ( )
}
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// #gv:s/label=\"runShellAs\$4\"/label=\"deferChaffShutdown\"/
defer func ( ) {
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conn . DisableChaff ( )
conn . ShutdownChaff ( )
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} ( )
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// ..and the pty to stdout.
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// This may take some time exceeding that of the
// actual command's lifetime, so the c.Wait() below
// must synchronize with the completion of this goroutine
// to ensure all stdout data gets to the client before
// connection is closed.
wg . Add ( 1 )
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// #gv:s/label=\"runShellAs\$5\"/label=\"ptyToStdoutWorker\"/
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go func ( ) {
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defer wg . Done ( )
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_ , e := io . Copy ( conn , ptmx )
if e != nil {
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log . Println ( "** pty->stdout ended **:" , e . Error ( ) )
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} else {
// The above io.Copy() will exit when the command attached
// to the pty exits
log . Println ( "*** pty->stdout goroutine done ***" )
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}
} ( )
if err := c . Wait ( ) ; err != nil {
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//fmt.Println("*** c.Wait() done ***")
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if exiterr , ok := err . ( * exec . ExitError ) ; ok {
// The program has exited with an exit code != 0
// This works on both Unix and Windows. Although package
// syscall is generally platform dependent, WaitStatus is
// defined for both Unix and Windows and in both cases has
// an ExitStatus() method with the same signature.
if status , ok := exiterr . Sys ( ) . ( syscall . WaitStatus ) ; ok {
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exitStatus = uint32 ( status . ExitStatus ( ) )
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log . Printf ( "Exit Status: %d" , exitStatus )
}
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}
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conn . SetStatus ( xsnet . CSOType ( exitStatus ) )
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} else {
logger . LogDebug ( "*** Main proc has exited. ***" )
// Background jobs still may be running; close the
// pty anyway, so the client can return before
// wg.Wait() below completes (Issue #18)
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if interactive {
_ = ptmx . Close ( )
}
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}
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wg . Wait ( ) // Wait on pty->stdout completion to client
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}
return
}
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// GenAuthToken generates a pseudorandom auth token for a specific
// user from a specific host to allow non-interactive logins.
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func GenAuthToken ( who string , connhost string ) string {
//tokenA, e := os.Hostname()
//if e != nil {
// tokenA = "badhost"
//}
tokenA := connhost
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tokenB := make ( [ ] byte , 64 )
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_ , _ = rand . Read ( tokenB ) // nolint: gosec
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return fmt . Sprintf ( "%s:%s" , tokenA , hex . EncodeToString ( tokenB ) )
}
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var (
aKEXAlgs allowedKEXAlgs
aCipherAlgs allowedCipherAlgs
aHMACAlgs allowedHMACAlgs
)
type allowedKEXAlgs [ ] string // TODO
type allowedCipherAlgs [ ] string // TODO
type allowedHMACAlgs [ ] string // TODO
func ( a allowedKEXAlgs ) allowed ( k xsnet . KEXAlg ) bool {
for i := 0 ; i < len ( a ) ; i ++ {
if a [ i ] == "KEX_all" || a [ i ] == k . String ( ) {
return true
}
}
return false
}
func ( a * allowedKEXAlgs ) String ( ) string {
return fmt . Sprintf ( "allowedKEXAlgs: %v" , * a )
}
func ( a * allowedKEXAlgs ) Set ( value string ) error {
* a = append ( * a , strings . TrimSpace ( value ) )
return nil
}
func ( a allowedCipherAlgs ) allowed ( c xsnet . CSCipherAlg ) bool {
for i := 0 ; i < len ( a ) ; i ++ {
if a [ i ] == "C_all" || a [ i ] == c . String ( ) {
return true
}
}
return false
}
func ( a * allowedCipherAlgs ) String ( ) string {
return fmt . Sprintf ( "allowedCipherAlgs: %v" , * a )
}
func ( a * allowedCipherAlgs ) Set ( value string ) error {
* a = append ( * a , strings . TrimSpace ( value ) )
return nil
}
func ( a allowedHMACAlgs ) allowed ( h xsnet . CSHmacAlg ) bool {
for i := 0 ; i < len ( a ) ; i ++ {
if a [ i ] == "H_all" || a [ i ] == h . String ( ) {
return true
}
}
return false
}
func ( a * allowedHMACAlgs ) String ( ) string {
return fmt . Sprintf ( "allowedHMACAlgs: %v" , * a )
}
func ( a * allowedHMACAlgs ) Set ( value string ) error {
* a = append ( * a , strings . TrimSpace ( value ) )
return nil
}
// Main server that listens and spawns goroutines for each
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// connecting client to serve interactive or file copy sessions
// and any requested tunnels.
// Note that this server does not do UNIX forks of itself to give
// each client its own separate manager process, so if the main
// daemon dies, all clients will be rudely disconnected.
// Consider this when planning to restart or upgrade in-place an installation.
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// TODO: reduce gocyclo
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func main ( ) {
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var vopt bool
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var chaffEnabled bool
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var chaffFreqMin uint
var chaffFreqMax uint
var chaffBytesMax uint
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var dbg bool
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var laddr string
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var useSystemPasswd bool
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flag . BoolVar ( & vopt , "v" , false , "show version" )
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flag . StringVar ( & laddr , "l" , ":2000" , "interface[:port] to listen" )
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flag . StringVar ( & kcpMode , "K" , "unused" , ` set to one of ["KCP_NONE","KCP_AES", "KCP_BLOWFISH", "KCP_CAST5", "KCP_SM4", "KCP_SALSA20", "KCP_SIMPLEXOR", "KCP_TEA", "KCP_3DES", "KCP_TWOFISH", "KCP_XTEA"] to use KCP (github.com/xtaci/kcp-go) reliable UDP instead of TCP ` )
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flag . BoolVar ( & useSysLogin , "L" , false , "use system login" )
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flag . BoolVar ( & chaffEnabled , "e" , true , "enable chaff pkts" )
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flag . UintVar ( & chaffFreqMin , "f" , 100 , "chaff pkt freq min (msecs)" )
flag . UintVar ( & chaffFreqMax , "F" , 5000 , "chaff pkt freq max (msecs)" )
flag . UintVar ( & chaffBytesMax , "B" , 64 , "chaff pkt size max (bytes)" )
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flag . BoolVar ( & useSystemPasswd , "s" , true , "use system shadow passwds" )
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flag . BoolVar ( & dbg , "d" , false , "debug logging" )
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flag . Var ( & aKEXAlgs , "aK" , ` List of allowed KEX algs (eg. 'KEXAlgA KEXAlgB ... KEXAlgN') (default allow all) ` )
flag . Var ( & aCipherAlgs , "aC" , ` List of allowed ciphers (eg. 'CipherAlgA CipherAlgB ... CipherAlgN') (default allow all) ` )
flag . Var ( & aHMACAlgs , "aH" , ` List of allowed HMACs (eg. 'HMACAlgA HMACAlgB ... HMACAlgN') (default allow all) ` )
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flag . Parse ( )
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if vopt {
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fmt . Printf ( "version %s (%s)\n" , version , gitCommit )
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os . Exit ( 0 )
}
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{
me , e := user . Current ( )
if e != nil || me . Uid != "0" {
log . Fatal ( "Must run as root." )
}
}
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// Enforce some sane min/max vals on chaff flags
if chaffFreqMin < 2 {
chaffFreqMin = 2
}
if chaffFreqMax == 0 {
chaffFreqMax = chaffFreqMin + 1
}
if chaffBytesMax == 0 || chaffBytesMax > 4096 {
chaffBytesMax = 64
}
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Log , _ = logger . New ( logger . LOG_DAEMON | logger . LOG_DEBUG | logger . LOG_NOTICE | logger . LOG_ERR , "xsd" ) // nolint: gosec
xsnet . Init ( dbg , "xsd" , logger . LOG_DAEMON | logger . LOG_DEBUG | logger . LOG_NOTICE | logger . LOG_ERR )
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if dbg {
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log . SetOutput ( Log )
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} else {
log . SetOutput ( ioutil . Discard )
}
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// Set up allowed algs, if specified (default allow all)
if len ( aKEXAlgs ) == 0 {
aKEXAlgs = [ ] string { "KEX_all" }
}
logger . LogNotice ( fmt . Sprintf ( "Allowed KEXAlgs: %v\n" , aKEXAlgs ) ) // nolint: gosec,errcheck
if len ( aCipherAlgs ) == 0 {
aCipherAlgs = [ ] string { "C_all" }
}
logger . LogNotice ( fmt . Sprintf ( "Allowed CipherAlgs: %v\n" , aCipherAlgs ) ) // nolint: gosec,errcheck
if len ( aHMACAlgs ) == 0 {
aHMACAlgs = [ ] string { "H_all" }
}
logger . LogNotice ( fmt . Sprintf ( "Allowed HMACAlgs: %v\n" , aHMACAlgs ) ) // nolint: gosec,errcheck
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// Set up handler for daemon signalling
exitCh := make ( chan os . Signal , 1 )
signal . Notify ( exitCh , os . Signal ( syscall . SIGTERM ) , os . Signal ( syscall . SIGINT ) , os . Signal ( syscall . SIGHUP ) , os . Signal ( syscall . SIGUSR1 ) , os . Signal ( syscall . SIGUSR2 ) )
go func ( ) {
for {
sig := <- exitCh
switch sig . String ( ) {
case "terminated" :
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logger . LogNotice ( fmt . Sprintf ( "[Got signal: %s]" , sig ) ) // nolint: gosec,errcheck
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signal . Reset ( )
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syscall . Kill ( 0 , syscall . SIGTERM ) // nolint: gosec,errcheck
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case "interrupt" :
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logger . LogNotice ( fmt . Sprintf ( "[Got signal: %s]" , sig ) ) // nolint: gosec,errcheck
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signal . Reset ( )
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syscall . Kill ( 0 , syscall . SIGINT ) // nolint: gosec,errcheck
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case "hangup" :
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logger . LogNotice ( fmt . Sprintf ( "[Got signal: %s - nop]" , sig ) ) // nolint:gosec,errcheck
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default :
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logger . LogNotice ( fmt . Sprintf ( "[Got signal: %s - ignored]" , sig ) ) // nolint: gosec,errcheck
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}
}
} ( )
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proto := "tcp"
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if kcpMode != "unused" {
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proto = "kcp"
}
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l , err := xsnet . Listen ( proto , laddr , kcpMode )
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if err != nil {
log . Fatal ( err )
}
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defer l . Close ( ) // nolint: errcheck
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log . Println ( "Serving on" , laddr )
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for {
// Wait for a connection.
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// Then check if client-proposed algs are allowed
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conn , err := l . Accept ( )
if err != nil {
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log . Printf ( "Accept() got error(%v), hanging up.\n" , err )
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} else if ! aKEXAlgs . allowed ( conn . KEX ( ) ) {
log . Printf ( "Accept() rejected for banned KEX alg %d, hanging up.\n" , conn . KEX ( ) )
conn . SetStatus ( xsnet . CSEKEXAlgDenied )
conn . Close ( )
} else if ! aCipherAlgs . allowed ( conn . CAlg ( ) ) {
log . Printf ( "Accept() rejected for banned Cipher alg %d, hanging up.\n" , conn . CAlg ( ) )
conn . SetStatus ( xsnet . CSECipherAlgDenied )
conn . Close ( )
} else if ! aHMACAlgs . allowed ( conn . HAlg ( ) ) {
log . Printf ( "Accept() rejected for banned HMAC alg %d, hanging up.\n" , conn . HAlg ( ) )
conn . SetStatus ( xsnet . CSEHMACAlgDenied )
conn . Close ( )
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} else {
log . Println ( "Accepted client" )
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// Set up chaffing to client
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// Will only start when runShellAs() is called
// after stdin/stdout are hooked up
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conn . SetupChaff ( chaffFreqMin , chaffFreqMax , chaffBytesMax ) // configure server->client chaffing
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// Handle the connection in a new goroutine.
// The loop then returns to accepting, so that
// multiple connections may be served concurrently.
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go func ( hc * xsnet . Conn ) ( e error ) {
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defer hc . Close ( ) // nolint: errcheck
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//We use io.ReadFull() here to guarantee we consume
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//just the data we want for the xs.Session, and no more.
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//Otherwise data will be sitting in the channel that isn't
//passed down to the command handlers.
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var rec xs . Session
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var len1 , len2 , len3 , len4 , len5 , len6 uint32
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n , err := fmt . Fscanf ( hc , "%d %d %d %d %d %d\n" , & len1 , & len2 , & len3 , & len4 , & len5 , & len6 )
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log . Printf ( "xs.Session read:%d %d %d %d %d %d\n" , len1 , len2 , len3 , len4 , len5 , len6 )
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if err != nil || n < 6 {
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log . Println ( "[Bad xs.Session fmt]" )
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return err
}
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tmp := make ( [ ] byte , len1 )
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_ , err = io . ReadFull ( hc , tmp )
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if err != nil {
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log . Println ( "[Bad xs.Session.Op]" )
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return err
}
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rec . SetOp ( tmp )
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tmp = make ( [ ] byte , len2 )
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_ , err = io . ReadFull ( hc , tmp )
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if err != nil {
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log . Println ( "[Bad xs.Session.Who]" )
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return err
}
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rec . SetWho ( tmp )
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tmp = make ( [ ] byte , len3 )
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_ , err = io . ReadFull ( hc , tmp )
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if err != nil {
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log . Println ( "[Bad xs.Session.ConnHost]" )
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return err
}
rec . SetConnHost ( tmp )
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tmp = make ( [ ] byte , len4 )
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_ , err = io . ReadFull ( hc , tmp )
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if err != nil {
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log . Println ( "[Bad xs.Session.TermType]" )
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return err
}
rec . SetTermType ( tmp )
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tmp = make ( [ ] byte , len5 )
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_ , err = io . ReadFull ( hc , tmp )
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if err != nil {
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log . Println ( "[Bad xs.Session.Cmd]" )
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return err
}
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rec . SetCmd ( tmp )
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tmp = make ( [ ] byte , len6 )
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_ , err = io . ReadFull ( hc , tmp )
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if err != nil {
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log . Println ( "[Bad xs.Session.AuthCookie]" )
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return err
}
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rec . SetAuthCookie ( tmp )
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log . Printf ( "[xs.Session: op:%c who:%s connhost:%s cmd:%s auth:****]\n" ,
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rec . Op ( ) [ 0 ] , string ( rec . Who ( ) ) , string ( rec . ConnHost ( ) ) , string ( rec . Cmd ( ) ) )
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var valid bool
var allowedCmds string // Currently unused
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if xs . AuthUserByToken ( string ( rec . Who ( ) ) , string ( rec . ConnHost ( ) ) , string ( rec . AuthCookie ( true ) ) ) {
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valid = true
} else {
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if useSystemPasswd {
//var passErr error
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valid , _ /*passErr*/ = xs . VerifyPass ( ioutil . ReadFile , string ( rec . Who ( ) ) , string ( rec . AuthCookie ( true ) ) )
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} else {
valid , allowedCmds = xs . AuthUserByPasswd ( string ( rec . Who ( ) ) , string ( rec . AuthCookie ( true ) ) , "/etc/xs.passwd" )
}
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}
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// Security scrub
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rec . ClearAuthCookie ( )
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// Tell client if auth was valid
if valid {
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hc . Write ( [ ] byte { 1 } ) // nolint: gosec,errcheck
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} else {
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logger . LogNotice ( fmt . Sprintln ( "Invalid user" , string ( rec . Who ( ) ) ) ) // nolint: errcheck,gosec
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hc . Write ( [ ] byte { 0 } ) // nolint: gosec,errcheck
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return
}
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log . Printf ( "[allowedCmds:%s]\n" , allowedCmds )
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if rec . Op ( ) [ 0 ] == 'A' {
// Generate automated login token
addr := hc . RemoteAddr ( )
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hname := goutmp . GetHost ( addr . String ( ) )
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logger . LogNotice ( fmt . Sprintf ( "[Generating autologin token for [%s@%s]]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
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token := GenAuthToken ( string ( rec . Who ( ) ) , string ( rec . ConnHost ( ) ) )
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tokenCmd := fmt . Sprintf ( "echo \"%s\" | tee -a ~/.xs_id" , token )
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cmdStatus , runErr := runShellAs ( string ( rec . Who ( ) ) , hname , string ( rec . TermType ( ) ) , tokenCmd , false , hc , chaffEnabled )
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// Returned hopefully via an EOF or exit/logout;
// Clear current op so user can enter next, or EOF
rec . SetOp ( [ ] byte { 0 } )
if runErr != nil {
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logger . LogErr ( fmt . Sprintf ( "[Error generating autologin token for %s@%s]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
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} else {
log . Printf ( "[Autologin token generation completed for %s@%s, status %d]\n" , rec . Who ( ) , hname , cmdStatus )
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hc . SetStatus ( xsnet . CSOType ( cmdStatus ) )
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}
} else if rec . Op ( ) [ 0 ] == 'c' {
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// Non-interactive command
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addr := hc . RemoteAddr ( )
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hname := goutmp . GetHost ( addr . String ( ) )
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logger . LogNotice ( fmt . Sprintf ( "[Running command for [%s@%s]]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
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cmdStatus , runErr := runShellAs ( string ( rec . Who ( ) ) , hname , string ( rec . TermType ( ) ) , string ( rec . Cmd ( ) ) , false , hc , chaffEnabled )
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// Returned hopefully via an EOF or exit/logout;
// Clear current op so user can enter next, or EOF
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rec . SetOp ( [ ] byte { 0 } )
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if runErr != nil {
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logger . LogErr ( fmt . Sprintf ( "[Error spawning cmd for %s@%s]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
2018-06-29 23:54:20 +00:00
} else {
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logger . LogNotice ( fmt . Sprintf ( "[Command completed for %s@%s, status %d]\n" , rec . Who ( ) , hname , cmdStatus ) ) // nolint: gosec,errcheck
2019-10-30 03:34:09 +00:00
hc . SetStatus ( xsnet . CSOType ( cmdStatus ) )
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}
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} else if rec . Op ( ) [ 0 ] == 's' {
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// Interactive session
2018-06-30 02:23:11 +00:00
addr := hc . RemoteAddr ( )
2018-10-02 18:03:10 +00:00
hname := goutmp . GetHost ( addr . String ( ) )
2018-11-25 18:24:10 +00:00
logger . LogNotice ( fmt . Sprintf ( "[Running shell for [%s@%s]]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
2018-06-28 00:32:26 +00:00
2019-07-05 03:27:49 +00:00
cmdStatus , runErr := runShellAs ( string ( rec . Who ( ) ) , hname , string ( rec . TermType ( ) ) , string ( rec . Cmd ( ) ) , true , hc , chaffEnabled )
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// Returned hopefully via an EOF or exit/logout;
// Clear current op so user can enter next, or EOF
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rec . SetOp ( [ ] byte { 0 } )
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if runErr != nil {
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Log . Err ( fmt . Sprintf ( "[Error spawning shell for %s@%s]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
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} else {
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logger . LogNotice ( fmt . Sprintf ( "[Shell completed for %s@%s, status %d]\n" , rec . Who ( ) , hname , cmdStatus ) ) // nolint: gosec,errcheck
2019-10-30 03:34:09 +00:00
hc . SetStatus ( xsnet . CSOType ( cmdStatus ) )
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}
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} else if rec . Op ( ) [ 0 ] == 'D' {
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// File copy (destination) operation - client copy to server
log . Printf ( "[Client->Server copy]\n" )
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addr := hc . RemoteAddr ( )
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hname := goutmp . GetHost ( addr . String ( ) )
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logger . LogNotice ( fmt . Sprintf ( "[Running copy for [%s@%s]]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
cmdStatus , runErr := runClientToServerCopyAs ( string ( rec . Who ( ) ) , string ( rec . TermType ( ) ) , hc , string ( rec . Cmd ( ) ) , chaffEnabled )
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// Returned hopefully via an EOF or exit/logout;
// Clear current op so user can enter next, or EOF
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rec . SetOp ( [ ] byte { 0 } )
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if runErr != nil {
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logger . LogErr ( fmt . Sprintf ( "[Error running cp for %s@%s]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
2018-08-23 18:03:19 +00:00
} else {
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logger . LogNotice ( fmt . Sprintf ( "[Command completed for %s@%s, status %d]\n" , rec . Who ( ) , hname , cmdStatus ) ) // nolint: gosec,errcheck
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}
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hc . SetStatus ( xsnet . CSOType ( cmdStatus ) )
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// Send CSOExitStatus *before* client closes channel
s := make ( [ ] byte , 4 )
binary . BigEndian . PutUint32 ( s , cmdStatus )
log . Printf ( "** cp writing closeStat %d at Close()\n" , cmdStatus )
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hc . WritePacket ( s , xsnet . CSOExitStatus ) // nolint: gosec,errcheck
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} else if rec . Op ( ) [ 0 ] == 'S' {
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// File copy (src) operation - server copy to client
log . Printf ( "[Server->Client copy]\n" )
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addr := hc . RemoteAddr ( )
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hname := goutmp . GetHost ( addr . String ( ) )
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logger . LogNotice ( fmt . Sprintf ( "[Running copy for [%s@%s]]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
cmdStatus , runErr := runServerToClientCopyAs ( string ( rec . Who ( ) ) , string ( rec . TermType ( ) ) , hc , string ( rec . Cmd ( ) ) , chaffEnabled )
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if runErr != nil {
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logger . LogErr ( fmt . Sprintf ( "[Error spawning cp for %s@%s]\n" , rec . Who ( ) , hname ) ) // nolint: gosec,errcheck
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} else {
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// Returned hopefully via an EOF or exit/logout;
logger . LogNotice ( fmt . Sprintf ( "[Command completed for %s@%s, status %d]\n" , rec . Who ( ) , hname , cmdStatus ) ) // nolint: gosec,errcheck
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}
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// Clear current op so user can enter next, or EOF
rec . SetOp ( [ ] byte { 0 } )
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hc . SetStatus ( xsnet . CSOType ( cmdStatus ) )
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//fmt.Println("Waiting for EOF from other end.")
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//_, _ = hc.Read(nil /*ackByte*/)
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//fmt.Println("Got remote end ack.")
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} else {
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logger . LogErr ( fmt . Sprintln ( "[Bad xs.Session]" ) ) // nolint: gosec,errcheck
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}
return
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} ( & conn ) // nolint: errcheck
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} // Accept() success
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} //endfor
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//logger.LogNotice(fmt.Sprintln("[Exiting]")) // nolint: gosec,errcheck
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}