mirror of https://gogs.blitter.com/RLabs/xs
Console esc seqs no longer affect in-band input
Signed-off-by: Russ Magee <rmagee@gmail.com>
This commit is contained in:
parent
f83cdd23b1
commit
9641fd3fff
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@ -42,6 +42,7 @@ import (
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"math/big"
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"math/big"
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"math/rand"
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"math/rand"
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"net"
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"net"
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"os"
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"strings"
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"strings"
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"sync"
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"sync"
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"time"
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"time"
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@ -122,11 +123,8 @@ type (
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dBuf *bytes.Buffer //decrypt buffer for Read()
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dBuf *bytes.Buffer //decrypt buffer for Read()
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}
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}
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EscSeqs struct {
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EscHandler func(io.Writer)
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idx int
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EscSeqs map[byte]EscHandler
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seqs []byte
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outstr []string
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}
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)
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)
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var (
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var (
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@ -1136,60 +1134,40 @@ func Copy(dst io.Writer, src io.Reader) (written int64, err error) {
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return
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return
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}
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}
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func escSeqScanner(s *EscSeqs, dst io.Writer, b byte) (passthru bool) {
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passthru = true
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if s.idx > 0 {
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switch b {
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case '~':
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return
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case s.seqs[0]:
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dst.Write([]byte(s.outstr[0]))
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passthru = false
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b = '~'
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case s.seqs[1]:
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dst.Write([]byte(s.outstr[1]))
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passthru = false
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b = '~'
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case s.seqs[2]:
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dst.Write([]byte(s.outstr[2]))
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passthru = false
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b = '~'
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}
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}
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if b == '~' {
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s.idx++
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} else {
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s.idx = 0
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}
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return
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}
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// copyBuffer is the actual implementation of Copy and CopyBuffer.
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// copyBuffer is the actual implementation of Copy and CopyBuffer.
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// if buf is nil, one is allocated.
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// if buf is nil, one is allocated.
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func copyBuffer(dst io.Writer, src io.Reader, buf []byte) (written int64, err error) {
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func copyBuffer(dst io.Writer, src io.Reader, buf []byte) (written int64, err error) {
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escs := &EscSeqs{idx: 0,
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// NOTE: using dst.Write() in these esc funcs will cause the output
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seqs: []byte{
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// to function as a 'macro', outputting as if user typed the sequence.
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'i',
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//
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't',
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// Using os.Stdout outputs to the client's term w/o it or the server
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'B',
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// 'seeing' the output.
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},
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//
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outstr: []string{
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// TODO: Devise a way to signal to main client thread that
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"\x1b[s\x1b[2;1H\x1b[1;31m[HKEXSH]\x1b[39;49m\x1b[u",
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// a goroutine should be spawned to do long-lived tasks for
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"\x1b[1;32m[HKEXSH]\x1b[39;49m",
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// some esc sequences (eg., a time ticker in the corner of terminal,
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"\x1b[1;32m" + Bob + "\x1b[39;49m",
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// or tunnel traffic indicator - note we cannot just spawn a goroutine
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},
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// here, as copyBuffer() returns after each burst of data. Scope must
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// outlive individual copyBuffer calls).
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// (Note that since this custom copyBuffer func is used only by
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// the hkexsh client, it should eventually be moved to client.)
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escs := EscSeqs{
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'i': func(io.Writer) { os.Stdout.Write([]byte("\x1b[s\x1b[2;1H\x1b[1;31m[HKEXSH]\x1b[39;49m\x1b[u")) },
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't': func(io.Writer) { os.Stdout.Write([]byte("\x1b[1;32m[HKEXSH]\x1b[39;49m")) },
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'B': func(io.Writer) { os.Stdout.Write([]byte("\x1b[1;32m" + Bob + "\x1b[39;49m")) },
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}
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}
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// If the reader has a WriteTo method, use it to do the copy.
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/*
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// Avoids an allocation and a copy.
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// If the reader has a WriteTo method, use it to do the copy.
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if wt, ok := src.(io.WriterTo); ok {
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// Avoids an allocation and a copy.
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return wt.WriteTo(dst)
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if wt, ok := src.(io.WriterTo); ok {
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}
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return wt.WriteTo(dst)
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// Similarly, if the writer has a ReadFrom method, use it to do the copy.
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}
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if rt, ok := dst.(io.ReaderFrom); ok {
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// Similarly, if the writer has a ReadFrom method, use it to do the copy.
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return rt.ReadFrom(src)
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if rt, ok := dst.(io.ReaderFrom); ok {
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}
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return rt.ReadFrom(src)
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}
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*/
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if buf == nil {
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if buf == nil {
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size := 32 * 1024
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size := 32 * 1024
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if l, ok := src.(*io.LimitedReader); ok && int64(size) > l.N {
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if l, ok := src.(*io.LimitedReader); ok && int64(size) > l.N {
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@ -1201,23 +1179,39 @@ func copyBuffer(dst io.Writer, src io.Reader, buf []byte) (written int64, err er
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}
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}
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buf = make([]byte, size)
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buf = make([]byte, size)
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}
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}
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var seqPos int
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for {
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for {
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nr, er := src.Read(buf)
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nr, er := src.Read(buf)
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if nr > 0 {
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if nr > 0 {
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// Look for sequences to trigger client-side diags
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// Look for sequences to trigger client-side diags
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if escSeqScanner(escs, dst, buf[0]) {
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// A repeat of 4 keys (conveniently 'dead' chars for most
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nw, ew := dst.Write(buf[0:nr])
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// interactive shells; here CTRL-]) shall introduce
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if nw > 0 {
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// some special responses or actions on the client side.
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written += int64(nw)
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if seqPos < 4 {
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if buf[0] == 0x1d {
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seqPos++
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}
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}
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if ew != nil {
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} else /* seqPos > 0 */ {
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err = ew
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if v, ok := escs[buf[0]]; ok {
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break
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v(dst)
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}
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nr--
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if nr != nw {
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buf = buf[1:]
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err = io.ErrShortWrite
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break
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}
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}
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seqPos = 0
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}
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nw, ew := dst.Write(buf[0:nr])
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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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}
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}
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if er != nil {
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if er != nil {
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@ -249,7 +249,7 @@ func doShellMode(isInteractive bool, conn *hkexnet.Conn, oldState *hkexsh.State,
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// pkg io/Copy expects EOF so normally this will
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// pkg io/Copy expects EOF so normally this will
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// exit with inerr == nil
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// exit with inerr == nil
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_, inerr := hkexnet.Copy(os.Stdout, conn)
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_, inerr := io.Copy(os.Stdout, conn)
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if inerr != nil {
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if inerr != nil {
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_ = hkexsh.Restore(int(os.Stdin.Fd()), oldState) // #nosec
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_ = hkexsh.Restore(int(os.Stdin.Fd()), oldState) // #nosec
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// Copy operations and user logging off will cause
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// Copy operations and user logging off will cause
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@ -288,7 +288,7 @@ func doShellMode(isInteractive bool, conn *hkexnet.Conn, oldState *hkexsh.State,
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_, outerr := func(conn *hkexnet.Conn, r io.Reader) (w int64, e error) {
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_, outerr := func(conn *hkexnet.Conn, r io.Reader) (w int64, e error) {
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// Copy() expects EOF so this will
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// Copy() expects EOF so this will
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// exit with outerr == nil
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// exit with outerr == nil
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w, e = io.Copy(conn, r)
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w, e = hkexnet.Copy(conn, r)
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return w, e
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return w, e
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}(conn, os.Stdin)
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}(conn, os.Stdin)
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