missed a bit in last commit
[sgt/putty] / doc / config.but
1 \versionid $Id: config.but,v 1.71 2003/10/08 21:39:54 jacob Exp $
2
3 \C{config} Configuring PuTTY
4
5 This chapter describes all the configuration options in PuTTY.
6
7 PuTTY is configured using the control panel that comes up before you
8 start a session. Some options can also be changed in the middle of a
9 session, by selecting \q{Change Settings} from the window menu.
10
11 \H{config-session} The Session panel
12
13 The Session configuration panel contains the basic options you need
14 to specify in order to open a session at all, and also allows you to
15 save your settings to be reloaded later.
16
17 \S{config-hostname} The host name section
18
19 \cfg{winhelp-topic}{session.hostname}
20
21 The top box on the Session panel, labelled \q{Specify your
22 connection by host name}, contains the details that need to be
23 filled in before PuTTY can open a session at all.
24
25 \b The \q{Host Name} box is where you type the name, or the IP
26 address, of the server you want to connect to.
27
28 \b The \q{Protocol} radio buttons let you choose what type of
29 connection you want to make: a raw connection, a Telnet connection, an
30 rlogin connection or an SSH connection. (See \k{which-one} for a
31 summary of the differences between SSH, Telnet and rlogin.)
32
33 \b The \q{Port} box lets you specify which port number on the server
34 to connect to. If you select Telnet, Rlogin, or SSH, this box will
35 be filled in automatically to the usual value, and you will only
36 need to change it if you have an unusual server. If you select Raw
37 mode (see \k{using-rawprot}), you will almost certainly need to fill
38 in the \q{Port} box.
39
40 \S{config-saving} Loading and storing saved sessions
41
42 \cfg{winhelp-topic}{session.saved}
43
44 The next part of the Session configuration panel allows you to save
45 your preferred PuTTY options so they will appear automatically the
46 next time you start PuTTY. It also allows you to create \e{saved
47 sessions}, which contain a full set of configuration options plus a
48 host name and protocol. A saved session contains all the information
49 PuTTY needs to start exactly the session you want.
50
51 \b To save your default settings: first set up the settings the way
52 you want them saved. Then come back to the Session panel. Select the
53 \q{Default Settings} entry in the saved sessions list, with a single
54 click. Then press the \q{Save} button.
55
56 Note that PuTTY does not allow you to save a host name into the
57 Default Settings entry. This ensures that when PuTTY is started up,
58 the host name box is always empty, so a user can always just type in
59 a host name and connect.
60
61 If there is a specific host you want to store the details of how to
62 connect to, you should create a saved session, which will be
63 separate from the Default Settings.
64
65 \b To save a session: first go through the rest of the configuration
66 box setting up all the options you want. Then come back to the
67 Session panel. Enter a name for the saved session in the \q{Saved
68 Sessions} input box. (The server name is often a good choice for a
69 saved session name.) Then press the \q{Save} button. Your saved
70 session name should now appear in the list box.
71
72 \b To reload a saved session: single-click to select the session
73 name in the list box, and then press the \q{Load} button. Your saved
74 settings should all appear in the configuration panel.
75
76 \b To modify a saved session: first load it as described above. Then
77 make the changes you want. Come back to the Session panel,
78 single-click to select the session name in the list box, and press
79 the \q{Save} button. The new settings will be saved over the top of
80 the old ones.
81
82 \b To start a saved session immediately: double-click on the session
83 name in the list box.
84
85 \b To delete a saved session: single-click to select the session
86 name in the list box, and then press the \q{Delete} button.
87
88 Each saved session is independent of the Default Settings
89 configuration. If you change your preferences and update Default
90 Settings, you must also update every saved session separately.
91
92 Saved sessions are stored in the Registry, at the location
93
94 \c HKEY_CURRENT_USER\Software\SimonTatham\PuTTY\Sessions
95
96 If you need to store them in a file, you could try the method
97 described in \k{config-file}.
98
99 \S{config-closeonexit} \q{Close Window on Exit}
100
101 \cfg{winhelp-topic}{session.coe}
102
103 Finally in the Session panel, there is an option labelled \q{Close
104 Window on Exit}. This controls whether the PuTTY session window
105 disappears as soon as the session inside it terminates. If you are
106 likely to want to copy and paste text out of the session after it
107 has terminated, you should arrange this option to be off.
108
109 \q{Close Window On Exit} has three settings. \q{Always} means always
110 close the window on exit; \q{Never} means never close on exit
111 (always leave the window open). The third setting, and the default
112 one, is \q{Only on clean exit}. In this mode, a session which
113 terminates normally will cause its window to close, but one which is
114 aborted unexpectedly by network trouble or a confusing message from
115 the server will leave the window up.
116
117 \H{config-logging} The Logging panel
118
119 \cfg{winhelp-topic}{logging.main}
120
121 The Logging configuration panel allows you to save log files of your
122 PuTTY sessions, for debugging, analysis or future reference.
123
124 The main option is a radio-button set that specifies whether PuTTY
125 will log anything at all. The options are
126
127 \b \q{Logging turned off completely}. This is the default option; in
128 this mode PuTTY will not create a log file at all.
129
130 \b \q{Log printable output only}. In this mode, a log file will be
131 created and written to, but only printable text will be saved into
132 it. The various terminal control codes that are typically sent down
133 an interactive session alongside the printable text will be omitted.
134 This might be a useful mode if you want to read a log file in a text
135 editor and hope to be able to make sense of it.
136
137 \b \q{Log all session output}. In this mode, \e{everything} sent by
138 the server into your terminal session is logged. If you view the log
139 file in a text editor, therefore, you may well find it full of
140 strange control characters. This is a particularly useful mode if
141 you are experiencing problems with PuTTY's terminal handling: you
142 can record everything that went to the terminal, so that someone
143 else can replay the session later in slow motion and watch to see
144 what went wrong.
145
146 \b \q{Log SSH packet data}. In this mode (which is only used by SSH
147 connections), the SSH message packets sent over the encrypted
148 connection are written to the log file. You might need this to debug
149 a network-level problem, or more likely to send to the PuTTY authors
150 as part of a bug report. \e{BE WARNED} that if you log in using a
151 password, the password will appear in the log file, so be sure to
152 edit it out before sending the log file to anyone else!
153
154 \S{config-logfilename} \q{Log file name}
155
156 \cfg{winhelp-topic}{logging.filename}
157
158 In this edit box you enter the name of the file you want to log the
159 session to. The \q{Browse} button will let you look around your file
160 system to find the right place to put the file; or if you already
161 know exactly where you want it to go, you can just type a pathname
162 into the edit box.
163
164 There are a few special features in this box. If you use the \c{&}
165 character in the file name box, PuTTY will insert details of the
166 current session in the name of the file it actually opens. The
167 precise replacements it will do are:
168
169 \b \c{&Y} will be replaced by the current year, as four digits.
170
171 \b \c{&M} will be replaced by the current month, as two digits.
172
173 \b \c{&D} will be replaced by the current day of the month, as two
174 digits.
175
176 \b \c{&T} will be replaced by the current time, as six digits
177 (HHMMSS) with no punctuation.
178
179 \b \c{&H} will be replaced by the host name you are connecting to.
180
181 For example, if you enter the host name
182 \c{c:\\puttylogs\\log-&h-&y&m&d-&t.dat}, you will end up with files looking
183 like
184
185 \c log-server1.example.com-20010528-110859.dat
186 \c log-unixbox.somewhere.org-20010611-221001.dat
187
188 \S{config-logfileexists} \q{What to do if the log file already exists}
189
190 \cfg{winhelp-topic}{logging.exists}
191
192 This control allows you to specify what PuTTY should do if it tries
193 to start writing to a log file and it finds the file already exists.
194 You might want to automatically destroy the existing log file and
195 start a new one with the same name. Alternatively, you might want to
196 open the existing log file and add data to the \e{end} of it.
197 Finally (the default option), you might not want to have any
198 automatic behaviour, but to ask the user every time the problem
199 comes up.
200
201 \H{config-terminal} The Terminal panel
202
203 The Terminal configuration panel allows you to control the behaviour
204 of PuTTY's terminal emulation.
205
206 \S{config-autowrap} \q{Auto wrap mode initially on}
207
208 \cfg{winhelp-topic}{terminal.autowrap}
209
210 Auto wrap mode controls what happens when text printed in a PuTTY
211 window reaches the right-hand edge of the window.
212
213 With auto wrap mode on, if a long line of text reaches the
214 right-hand edge, it will wrap over on to the next line so you can
215 still see all the text. With auto wrap mode off, the cursor will
216 stay at the right-hand edge of the screen, and all the characters in
217 the line will be printed on top of each other.
218
219 If you are running a full-screen application and you occasionally
220 find the screen scrolling up when it looks as if it shouldn't, you
221 could try turning this option off.
222
223 Auto wrap mode can be turned on and off by control sequences sent by
224 the server. This configuration option controls the \e{default}
225 state, which will be restored when you reset the terminal (see
226 \k{reset-terminal}). However, if you modify this option in
227 mid-session using \q{Change Settings}, it will take effect
228 immediately.
229
230 \S{config-decom} \q{DEC Origin Mode initially on}
231
232 \cfg{winhelp-topic}{terminal.decom}
233
234 DEC Origin Mode is a minor option which controls how PuTTY
235 interprets cursor-position control sequences sent by the server.
236
237 The server can send a control sequence that restricts the scrolling
238 region of the display. For example, in an editor, the server might
239 reserve a line at the top of the screen and a line at the bottom,
240 and might send a control sequence that causes scrolling operations
241 to affect only the remaining lines.
242
243 With DEC Origin Mode on, cursor coordinates are counted from the top
244 of the scrolling region. With it turned off, cursor coordinates are
245 counted from the top of the whole screen regardless of the scrolling
246 region.
247
248 It is unlikely you would need to change this option, but if you find
249 a full-screen application is displaying pieces of text in what looks
250 like the wrong part of the screen, you could try turning DEC Origin
251 Mode on to see whether that helps.
252
253 DEC Origin Mode can be turned on and off by control sequences sent
254 by the server. This configuration option controls the \e{default}
255 state, which will be restored when you reset the terminal (see
256 \k{reset-terminal}). However, if you modify this option in
257 mid-session using \q{Change Settings}, it will take effect
258 immediately.
259
260 \S{config-crlf} \q{Implicit CR in every LF}
261
262 \cfg{winhelp-topic}{terminal.lfhascr}
263
264 Most servers send two control characters, CR and LF, to start a new
265 line of the screen. The CR character makes the cursor return to the
266 left-hand side of the screen. The LF character makes the cursor move
267 one line down (and might make the screen scroll).
268
269 Some servers only send LF, and expect the terminal to move the
270 cursor over to the left automatically. If you come across a server
271 that does this, you will see a stepped effect on the screen, like
272 this:
273
274 \c First line of text
275 \c Second line
276 \c Third line
277
278 If this happens to you, try enabling the \q{Implicit CR in every LF}
279 option, and things might go back to normal:
280
281 \c First line of text
282 \c Second line
283 \c Third line
284
285 \S{config-erase} \q{Use background colour to erase screen}
286
287 \cfg{winhelp-topic}{terminal.bce}
288
289 Not all terminals agree on what colour to turn the screen when the
290 server sends a \q{clear screen} sequence. Some terminals believe the
291 screen should always be cleared to the \e{default} background
292 colour. Others believe the screen should be cleared to whatever the
293 server has selected as a background colour.
294
295 There exist applications that expect both kinds of behaviour.
296 Therefore, PuTTY can be configured to do either.
297
298 With this option disabled, screen clearing is always done in the
299 default background colour. With this option enabled, it is done in
300 the \e{current} background colour.
301
302 Background-colour erase can be turned on and off by control
303 sequences sent by the server. This configuration option controls the
304 \e{default} state, which will be restored when you reset the
305 terminal (see \k{reset-terminal}). However, if you modify this
306 option in mid-session using \q{Change Settings}, it will take effect
307 immediately.
308
309 \S{config-blink} \q{Enable blinking text}
310
311 \cfg{winhelp-topic}{terminal.blink}
312
313 The server can ask PuTTY to display text that blinks on and off.
314 This is very distracting, so PuTTY allows you to turn blinking text
315 off completely.
316
317 When blinking text is disabled and the server attempts to make some
318 text blink, PuTTY will instead display the text with a bolded
319 background colour.
320
321 Blinking text can be turned on and off by control sequences sent by
322 the server. This configuration option controls the \e{default}
323 state, which will be restored when you reset the terminal (see
324 \k{reset-terminal}). However, if you modify this option in
325 mid-session using \q{Change Settings}, it will take effect
326 immediately.
327
328 \S{config-answerback} \q{Answerback to ^E}
329
330 \cfg{winhelp-topic}{terminal.answerback}
331
332 This option controls what PuTTY will send back to the server if the
333 server sends it the ^E enquiry character. Normally it just sends
334 the string \q{PuTTY}.
335
336 If you accidentally write the contents of a binary file to your
337 terminal, you will probably find that it contains more than one ^E
338 character, and as a result your next command line will probably read
339 \q{PuTTYPuTTYPuTTY...} as if you had typed the answerback string
340 multiple times at the keyboard. If you set the answerback string to
341 be empty, this problem should go away, but doing so might cause
342 other problems.
343
344 Note that this is \e{not} the feature of PuTTY which the server will
345 typically use to determine your terminal type. That feature is the
346 \q{Terminal-type string} in the Connection panel; see
347 \k{config-termtype} for details.
348
349 You can include control characters in the answerback string using
350 \c{^C} notation. (Use \c{^~} to get a literal \c{^}.)
351
352 \S{config-localecho} \q{Local echo}
353
354 \cfg{winhelp-topic}{terminal.localecho}
355
356 With local echo disabled, characters you type into the PuTTY window
357 are not echoed in the window \e{by PuTTY}. They are simply sent to
358 the server. (The \e{server} might choose to echo them back to you;
359 this can't be controlled from the PuTTY control panel.)
360
361 Some types of session need local echo, and many do not. In its
362 default mode, PuTTY will automatically attempt to deduce whether or
363 not local echo is appropriate for the session you are working in. If
364 you find it has made the wrong decision, you can use this
365 configuration option to override its choice: you can force local
366 echo to be turned on, or force it to be turned off, instead of
367 relying on the automatic detection.
368
369 \S{config-localedit} \q{Local line editing}
370
371 \cfg{winhelp-topic}{terminal.localedit}
372
373 Normally, every character you type into the PuTTY window is sent
374 immediately to the server the moment you type it.
375
376 If you enable local line editing, this changes. PuTTY will let you
377 edit a whole line at a time locally, and the line will only be sent
378 to the server when you press Return. If you make a mistake, you can
379 use the Backspace key to correct it before you press Return, and the
380 server will never see the mistake.
381
382 Since it is hard to edit a line locally without being able to see
383 it, local line editing is mostly used in conjunction with local echo
384 (\k{config-localecho}). This makes it ideal for use in raw mode
385 \#{FIXME} or when connecting to MUDs or talkers. (Although some more
386 advanced MUDs do occasionally turn local line editing on and turn
387 local echo off, in order to accept a password from the user.)
388
389 Some types of session need local line editing, and many do not. In
390 its default mode, PuTTY will automatically attempt to deduce whether
391 or not local line editing is appropriate for the session you are
392 working in. If you find it has made the wrong decision, you can use
393 this configuration option to override its choice: you can force
394 local line editing to be turned on, or force it to be turned off,
395 instead of relying on the automatic detection.
396
397 \S{config-printing} Remote-controlled printing
398
399 \cfg{winhelp-topic}{terminal.printing}
400
401 A lot of VT100-compatible terminals support printing under control
402 of the remote server. PuTTY supports this feature as well, but it is
403 turned off by default.
404
405 To enable remote-controlled printing, choose a printer from the
406 \q{Printer to send ANSI printer output to} drop-down list box. This
407 should allow you to select from all the printers you have installed
408 drivers for on your computer. Alternatively, you can type the
409 network name of a networked printer (for example,
410 \c{\\\\printserver\\printer1}) even if you haven't already
411 installed a driver for it on your own machine.
412
413 When the remote server attempts to print some data, PuTTY will send
414 that data to the printer \e{raw} - without translating it,
415 attempting to format it, or doing anything else to it. It is up to
416 you to ensure your remote server knows what type of printer it is
417 talking to.
418
419 Since PuTTY sends data to the printer raw, it cannot offer options
420 such as portrait versus landscape, print quality, or paper tray
421 selection. All these things would be done by your PC printer driver
422 (which PuTTY bypasses); if you need them done, you will have to find
423 a way to configure your remote server to do them.
424
425 To disable remote printing again, choose \q{None (printing
426 disabled)} from the printer selection list. This is the default
427 state.
428
429 \H{config-keyboard} The Keyboard panel
430
431 The Keyboard configuration panel allows you to control the behaviour
432 of the keyboard in PuTTY.
433
434 \S{config-backspace} Changing the action of the Backspace key
435
436 \cfg{winhelp-topic}{keyboard.backspace}
437
438 Some terminals believe that the Backspace key should send the same
439 thing to the server as Control-H (ASCII code 8). Other terminals
440 believe that the Backspace key should send ASCII code 127 (usually
441 known as Control-?) so that it can be distinguished from Control-H.
442 This option allows you to choose which code PuTTY generates when you
443 press Backspace.
444
445 If you are connecting to a Unix system, you will probably find that
446 the Unix \c{stty} command lets you configure which the server
447 expects to see, so you might not need to change which one PuTTY
448 generates. On other systems, the server's expectation might be fixed
449 and you might have no choice but to configure PuTTY.
450
451 If you do have the choice, we recommend configuring PuTTY to
452 generate Control-? and configuring the server to expect it, because
453 that allows applications such as \c{emacs} to use Control-H for
454 help.
455
456 \S{config-homeend} Changing the action of the Home and End keys
457
458 \cfg{winhelp-topic}{keyboard.homeend}
459
460 The Unix terminal emulator \c{rxvt} disagrees with the rest of the
461 world about what character sequences should be sent to the server by
462 the Home and End keys.
463
464 \c{xterm}, and other terminals, send \c{ESC [1~} for the Home key,
465 and \c{ESC [4~} for the End key. \c{rxvt} sends \c{ESC [H} for the
466 Home key and \c{ESC [Ow} for the End key.
467
468 If you find an application on which the Home and End keys aren't
469 working, you could try switching this option to see if it helps.
470
471 \S{config-funkeys} Changing the action of the function keys and keypad
472
473 \cfg{winhelp-topic}{keyboard.funkeys}
474
475 This option affects the function keys (F1 to F12) and the top row of
476 the numeric keypad.
477
478 \b In the default mode, labelled \c{ESC [n~}, the function keys
479 generate sequences like \c{ESC [11~}, \c{ESC [12~} and so on. This
480 matches the general behaviour of Digital's terminals.
481
482 \b In Linux mode, F6 to F12 behave just like the default mode, but
483 F1 to F5 generate \c{ESC [[A} through to \c{ESC [[E}. This mimics the
484 Linux virtual console.
485
486 \b In Xterm R6 mode, F5 to F12 behave like the default mode, but F1
487 to F4 generate \c{ESC OP} through to \c{ESC OS}, which are the
488 sequences produced by the top row of the \e{keypad} on Digital's
489 terminals.
490
491 \b In VT400 mode, all the function keys behave like the default
492 mode, but the actual top row of the numeric keypad generates \c{ESC
493 OP} through to \c{ESC OS}.
494
495 \b In VT100+ mode, the function keys generate \c{ESC OP} through to
496 \c{ESC O[}
497
498 \b In SCO mode, the function keys F1 to F12 generate \c{ESC [M}
499 through to \c{ESC [X}. Together with shift, they generate \c{ESC [Y}
500 through to \c{ESC [j}. With control they generate \c{ESC [k} through
501 to \c{ESC [v}, and with shift and control together they generate
502 \c{ESC [w} through to \c{ESC [\{}.
503
504 If you don't know what any of this means, you probably don't need to
505 fiddle with it.
506
507 \S{config-appcursor} Controlling Application Cursor Keys mode
508
509 \cfg{winhelp-topic}{keyboard.appcursor}
510
511 Application Cursor Keys mode is a way for the server to change the
512 control sequences sent by the arrow keys. In normal mode, the arrow
513 keys send \c{ESC [A} through to \c{ESC [D}. In application mode,
514 they send \c{ESC OA} through to \c{ESC OD}.
515
516 Application Cursor Keys mode can be turned on and off by the server,
517 depending on the application. PuTTY allows you to configure the
518 initial state.
519
520 You can also disable application cursor keys mode completely, using
521 the \q{Features} configuration panel; see
522 \k{config-features-application}.
523
524 \S{config-appkeypad} Controlling Application Keypad mode
525
526 \cfg{winhelp-topic}{keyboard.appkeypad}
527
528 Application Keypad mode is a way for the server to change the
529 behaviour of the numeric keypad.
530
531 In normal mode, the keypad behaves like a normal Windows keypad:
532 with NumLock on, the number keys generate numbers, and with NumLock
533 off they act like the arrow keys and Home, End etc.
534
535 In application mode, all the keypad keys send special control
536 sequences, \e{including} Num Lock. Num Lock stops behaving like Num
537 Lock and becomes another function key.
538
539 Depending on which version of Windows you run, you may find the Num
540 Lock light still flashes on and off every time you press Num Lock,
541 even when application mode is active and Num Lock is acting like a
542 function key. This is unavoidable.
543
544 Application keypad mode can be turned on and off by the server,
545 depending on the application. PuTTY allows you to configure the
546 initial state.
547
548 You can also disable application keypad mode completely, using the
549 \q{Features} configuration panel; see
550 \k{config-features-application}.
551
552 \S{config-nethack} Using NetHack keypad mode
553
554 \cfg{winhelp-topic}{keyboard.nethack}
555
556 PuTTY has a special mode for playing NetHack. You can enable it by
557 selecting \q{NetHack} in the \q{Initial state of numeric keypad}
558 control.
559
560 In this mode, the numeric keypad keys 1-9 generate the NetHack
561 movement commands (\cw{hjklyubn}). The 5 key generates the \c{.}
562 command (do nothing).
563
564 Better still, pressing Shift with the keypad keys generates the
565 capital forms of the commands (\cw{HJKLYUBN}), which tells NetHack
566 to keep moving you in the same direction until you encounter
567 something interesting.
568
569 For some reason, this feature only works properly when Num Lock is
570 on. We don't know why.
571
572 \S{config-compose} Enabling a DEC-like Compose key
573
574 \cfg{winhelp-topic}{keyboard.compose}
575
576 DEC terminals have a Compose key, which provides an easy-to-remember
577 way of typing accented characters. You press Compose and then type
578 two more characters. The two characters are \q{combined} to produce
579 an accented character. The choices of character are designed to be
580 easy to remember; for example, composing \q{e} and \q{`} produces
581 the \q{\u00e8{e-grave}} character.
582
583 If your keyboard has a Windows Application key, it acts as a Compose
584 key in PuTTY. Alternatively, if you enable the \q{AltGr acts as
585 Compose key} option, the AltGr key will become a Compose key.
586
587 \S{config-ctrlalt} \q{Control-Alt is different from AltGr}
588
589 \cfg{winhelp-topic}{keyboard.ctrlalt}
590
591 Some old keyboards do not have an AltGr key, which can make it
592 difficult to type some characters. PuTTY can be configured to treat
593 the key combination Ctrl + Left Alt the same way as the AltGr key.
594
595 By default, this checkbox is checked, and the key combination Ctrl +
596 Left Alt does something completely different. PuTTY's usual handling
597 of the left Alt key is to prefix the Escape (Control-\cw{[})
598 character to whatever character sequence the rest of the keypress
599 would generate. For example, Alt-A generates Escape followed by
600 \c{a}. So Alt-Ctrl-A would generate Escape, followed by Control-A.
601
602 If you uncheck this box, Ctrl-Alt will become a synonym for AltGr,
603 so you can use it to type extra graphic characters if your keyboard
604 has any.
605
606 (However, Ctrl-Alt will never act as a Compose key, regardless of the
607 setting of \q{AltGr acts as Compose key} described in
608 \k{config-compose}.)
609
610 \H{config-bell} The Bell panel
611
612 The Bell panel controls the terminal bell feature: the server's
613 ability to cause PuTTY to beep at you.
614
615 In the default configuration, when the server sends the character
616 with ASCII code 7 (Control-G), PuTTY will play the Windows Default
617 Beep sound. This is not always what you want the terminal bell
618 feature to do; the Bell panel allows you to configure alternative
619 actions.
620
621 \S{config-bellstyle} \q{Set the style of bell}
622
623 \cfg{winhelp-topic}{bell.style}
624
625 This control allows you to select various different actions to occur
626 on a terminal bell:
627
628 \b Selecting \q{None} disables the bell completely. In this mode,
629 the server can send as many Control-G characters as it likes and
630 nothing at all will happen.
631
632 \b \q{Make default system alert sound} is the default setting. It
633 causes the Windows \q{Default Beep} sound to be played. To change
634 what this sound is, or to test it if nothing seems to be happening,
635 use the Sound configurer in the Windows Control Panel.
636
637 \b \q{Visual bell} is a silent alternative to a beeping computer. In
638 this mode, when the server sends a Control-G, the whole PuTTY window
639 will flash white for a fraction of a second.
640
641 \b \q{Play a custom sound file} allows you to specify a particular
642 sound file to be used by PuTTY alone, or even by a particular
643 individual PuTTY session. This allows you to distinguish your PuTTY
644 beeps from any other beeps on the system. If you select this option,
645 you will also need to enter the name of your sound file in the edit
646 control \q{Custom sound file to play as a bell}.
647
648 \S{config-belltaskbar} \q{Taskbar/caption indication on bell}
649
650 \cfg{winhelp-topic}{bell.taskbar}
651
652 This feature controls what happens to the PuTTY window's entry in
653 the Windows Taskbar if a bell occurs while the window does not have
654 the input focus.
655
656 In the default state (\q{Disabled}) nothing unusual happens.
657
658 If you select \q{Steady}, then when a bell occurs and the window is
659 not in focus, the window's Taskbar entry and its title bar will
660 change colour to let you know that PuTTY session is asking for your
661 attention. The change of colour will persist until you select the
662 window, so you can leave several PuTTY windows minimised in your
663 terminal, go away from your keyboard, and be sure not to have missed
664 any important beeps when you get back.
665
666 \q{Flashing} is even more eye-catching: the Taskbar entry will
667 continuously flash on and off until you select the window.
668
669 \S{config-bellovl} \q{Control the bell overload behaviour}
670
671 \cfg{winhelp-topic}{bell.overload}
672
673 A common user error in a terminal session is to accidentally run the
674 Unix command \c{cat} (or equivalent) on an inappropriate file type,
675 such as an executable, image file, or ZIP file. This produces a huge
676 stream of non-text characters sent to the terminal, which typically
677 includes a lot of bell characters. As a result of this the terminal
678 often doesn't stop beeping for ten minutes, and everybody else in
679 the office gets annoyed.
680
681 To try to avoid this behaviour, or any other cause of excessive
682 beeping, PuTTY includes a bell overload management feature. In the
683 default configuration, receiving more than five bell characters in a
684 two-second period will cause the overload feature to activate. Once
685 the overload feature is active, further bells will have no effect at
686 all, so the rest of your binary file will be sent to the screen in
687 silence. After a period of five seconds during which no further
688 bells are received, the overload feature will turn itself off again
689 and bells will be re-enabled.
690
691 If you want this feature completely disabled, you can turn it off
692 using the checkbox \q{Bell is temporarily disabled when over-used}.
693
694 Alternatively, if you like the bell overload feature but don't agree
695 with the settings, you can configure the details: how many bells
696 constitute an overload, how short a time period they have to arrive
697 in to do so, and how much silent time is required before the
698 overload feature will deactivate itself.
699
700 Bell overload mode is always deactivated by any keypress in the
701 terminal. This means it can respond to large unexpected streams of
702 data, but does not interfere with ordinary command-line activities
703 that generate beeps (such as filename completion).
704
705 \H{config-features} The Features panel
706
707 PuTTY's terminal emulation is very highly featured, and can do a lot
708 of things under remote server control. Some of these features can
709 cause problems due to buggy or strangely configured server
710 applications.
711
712 The Features configuration panel allows you to disable some of
713 PuTTY's more advanced terminal features, in case they cause trouble.
714
715 \S{config-features-application} Disabling application keypad and cursor keys
716
717 \cfg{winhelp-topic}{features.application}
718
719 Application keypad mode (see \k{config-appkeypad}) and application
720 cursor keys mode (see \k{config-appcursor}) alter the behaviour of
721 the keypad and cursor keys. Some applications enable these modes but
722 then do not deal correctly with the modified keys. You can force
723 these modes to be permanently disabled no matter what the server
724 tries to do.
725
726 \S{config-features-mouse} Disabling \cw{xterm}-style mouse reporting
727
728 \cfg{winhelp-topic}{features.mouse}
729
730 PuTTY allows the server to send control codes that let it take over
731 the mouse and use it for purposes other than copy and paste.
732 Applications which use this feature include the text-mode web
733 browser \c{links}, the Usenet newsreader \c{trn} version 4, and the
734 file manager \c{mc} (Midnight Commander).
735
736 If you find this feature inconvenient, you can disable it using the
737 \q{Disable xterm-style mouse reporting} control. With this box
738 ticked, the mouse will \e{always} do copy and paste in the normal
739 way.
740
741 Note that even if the application takes over the mouse, you can
742 still manage PuTTY's copy and paste by holding down the Shift key
743 while you select and paste, unless you have deliberately turned this
744 feature off (see \k{config-mouseshift}).
745
746 \S{config-features-resize} Disabling remote terminal resizing
747
748 \cfg{winhelp-topic}{features.resize}
749
750 PuTTY has the ability to change the terminal's size and position in
751 response to commands from the server. If you find PuTTY is doing
752 this unexpectedly or inconveniently, you can tell PuTTY not to
753 respond to those server commands.
754
755 \S{config-features-altscreen} Disabling switching to the alternate screen
756
757 \cfg{winhelp-topic}{features.altscreen}
758
759 Many terminals, including PuTTY, support an \q{alternate screen}.
760 This is the same size as the ordinary terminal screen, but separate.
761 Typically a screen-based program such as a text editor might switch
762 the terminal to the alternate screen before starting up. Then at the
763 end of the run, it switches back to the primary screen, and you see
764 the screen contents just as they were before starting the editor.
765
766 Some people prefer this not to happen. If you want your editor to
767 run in the same screen as the rest of your terminal activity, you
768 can disable the alternate screen feature completely.
769
770 \S{config-features-retitle} Disabling remote window title changing
771
772 \cfg{winhelp-topic}{features.retitle}
773
774 PuTTY has the ability to change the window title in response to
775 commands from the server. If you find PuTTY is doing this
776 unexpectedly or inconveniently, you can tell PuTTY not to respond to
777 those server commands.
778
779 \S{config-features-qtitle} Disabling remote window title querying
780
781 \cfg{winhelp-topic}{features.qtitle}
782
783 PuTTY can optionally provide the xterm service of allowing server
784 applications to find out the local window title. This feature is
785 disabled by default, but you can turn it on if you really want it.
786
787 NOTE that this feature is a \e{potential security hazard}. If a
788 malicious application can write data to your terminal (for example,
789 if you merely \c{cat} a file owned by someone else on the server
790 machine), it can change your window title (unless you have disabled
791 this as mentioned in \k{config-features-retitle}) and then use this
792 service to have the new window title sent back to the server as if
793 typed at the keyboard. This allows an attacker to fake keypresses
794 and potentially cause your server-side applications to do things you
795 didn't want. Therefore this feature is disabled by default, and we
796 recommend you do not turn it on unless you \e{really} know what you
797 are doing.
798
799 \S{config-features-dbackspace} Disabling destructive backspace
800
801 \cfg{winhelp-topic}{features.dbackspace}
802
803 Normally, when PuTTY receives character 127 (^?) from the server, it
804 will perform a \q{destructive backspace}: move the cursor one space
805 left and delete the character under it. This can apparently cause
806 problems in some applications, so PuTTY provides the ability to
807 configure character 127 to perform a normal backspace (without
808 deleting a character) instead.
809
810 \S{config-features-charset} Disabling remote character set
811 configuration
812
813 \cfg{winhelp-topic}{features.charset}
814
815 PuTTY has the ability to change its character set configuration in
816 response to commands from the server. Some programs send these
817 commands unexpectedly or inconveniently. In particular, BitchX (an
818 IRC client) seems to have a habit of reconfiguring the character set
819 to something other than the user intended.
820
821 If you find that accented characters are not showing up the way you
822 expect them to, particularly if you're running BitchX, you could try
823 disabling the remote character set configuration commands.
824
825 \H{config-window} The Window panel
826
827 The Window configuration panel allows you to control aspects of the
828 PuTTY window.
829
830 \S{config-winsize} Setting the size of the PuTTY window
831
832 \cfg{winhelp-topic}{window.size}
833
834 The \q{Rows} and \q{Columns} boxes let you set the PuTTY window to a
835 precise size. Of course you can also drag the window to a new size
836 while a session is running.
837
838 \S{config-winsizelock} What to do when the window is resized
839
840 \cfg{winhelp-topic}{window.resize}
841
842 These options allow you to control what happens when the user tries
843 to resize the PuTTY window.
844
845 When you resize the PuTTY window, one of four things can happen:
846
847 \b Nothing (if you have completely disabled resizes).
848
849 \b The font size can stay the same and the number of rows and
850 columns in the terminal can change.
851
852 \b The number of rows and columns in the terminal can stay the same,
853 and the font size can change.
854
855 \b You can allow PuTTY to change \e{either} the terminal size or the
856 font size. In this mode it will change the terminal size most of the
857 time, but enlarge the font when you maximise the window.
858
859 You can control which of these happens using the \q{Lock terminal
860 size against resizing} and \q{Lock font size against resizing}
861 options. If you lock both, the window will refuse to be resized at
862 all. If you lock just the terminal size, the font size will change
863 when you resize the window. If you lock just the font size, the
864 terminal size will change when you resize the window.
865
866 \S{config-scrollback} Controlling scrollback
867
868 \cfg{winhelp-topic}{window.scrollback}
869
870 These options let you configure the way PuTTY keeps text after it
871 scrolls off the top of the screen (see \k{using-scrollback}).
872
873 The \q{Lines of scrollback} box lets you configure how many lines of
874 text PuTTY keeps. The \q{Display scrollbar} options allow you to
875 hide the scrollbar (although you can still view the scrollback using
876 Shift-PgUp and Shift-PgDn). You can separately configure whether the
877 scrollbar is shown in full-screen mode and in normal modes.
878
879 If you are viewing part of the scrollback when the server sends more
880 text to PuTTY, the screen will revert to showing the current
881 terminal contents. You can disable this behaviour by turning off
882 \q{Reset scrollback on display activity}. You can also make the
883 screen revert when you press a key, by turning on \q{Reset
884 scrollback on keypress}.
885
886 \S{config-erasetoscrollback} \q{Push erased text into scrollback}
887
888 \cfg{winhelp-topic}{window.erased}
889
890 When this option is enabled, the contents of the terminal screen
891 will be pushed into the scrollback when a server-side application
892 clears the screen, so that your scrollback will contain a better
893 record of what was on your screen in the past.
894
895 If the application switches to the alternate screen (see
896 \k{config-features-altscreen} for more about this), then the
897 contents of the primary screen will be visible in the scrollback
898 until the application switches back again.
899
900 This option is enabled by default.
901
902 \H{config-appearance} The Appearance panel
903
904 The Appearance configuration panel allows you to control aspects of
905 the appearance of PuTTY's window.
906
907 \S{config-cursor} Controlling the appearance of the cursor
908
909 \cfg{winhelp-topic}{appearance.cursor}
910
911 The \q{Cursor appearance} option lets you configure the cursor to be
912 a block, an underline, or a vertical line. A block cursor becomes an
913 empty box when the window loses focus; an underline or a vertical
914 line becomes dotted.
915
916 The \q{Cursor blinks} option makes the cursor blink on and off. This
917 works in any of the cursor modes.
918
919 \S{config-font} Controlling the font used in the terminal window
920
921 \cfg{winhelp-topic}{appearance.font}
922
923 This option allows you to choose what font, in what size, the PuTTY
924 terminal window uses to display the text in the session. You will be
925 offered a choice from all the fixed-width fonts installed on the
926 system. (VT100-style terminal handling can only deal with fixed-
927 width fonts.)
928
929 \S{config-mouseptr} \q{Hide mouse pointer when typing in window}
930
931 \cfg{winhelp-topic}{appearance.hidemouse}
932
933 If you enable this option, the mouse pointer will disappear if the
934 PuTTY window is selected and you press a key. This way, it will not
935 obscure any of the text in the window while you work in your
936 session. As soon as you move the mouse, the pointer will reappear.
937
938 This option is disabled by default, so the mouse pointer remains
939 visible at all times.
940
941 \S{config-winborder} Controlling the window border
942
943 \cfg{winhelp-topic}{appearance.border}
944
945 PuTTY allows you to configure the appearance of the window border to
946 some extent.
947
948 The checkbox marked \q{Sunken-edge border} changes the appearance of
949 the window border to something more like a DOS box: the inside edge
950 of the border is highlighted as if it sank down to meet the surface
951 inside the window. This makes the border a little bit thicker as
952 well. It's hard to describe well. Try it and see if you like it.
953
954 You can also configure a completely blank gap between the text in
955 the window and the border, using the \q{Gap between text and window
956 edge} control. By default this is set at one pixel. You can reduce
957 it to zero, or increase it further.
958
959 \H{config-behaviour} The Behaviour panel
960
961 The Behaviour configuration panel allows you to control aspects of
962 the behaviour of PuTTY's window.
963
964 \S{config-title} Controlling the window title
965
966 \cfg{winhelp-topic}{appearance.title}
967
968 The \q{Window title} edit box allows you to set the title of the
969 PuTTY window. By default the window title will contain the host name
970 followed by \q{PuTTY}, for example \c{server1.example.com - PuTTY}.
971 If you want a different window title, this is where to set it.
972
973 PuTTY allows the server to send \c{xterm} control sequences which
974 modify the title of the window in mid-session. There is also an
975 \c{xterm} sequence to modify the title of the window's \e{icon}.
976 This makes sense in a windowing system where the window becomes an
977 icon when minimised, such as Windows 3.1 or most X Window System
978 setups; but in the Windows 95-like user interface it isn't as
979 applicable.
980
981 By default, PuTTY only uses the server-supplied \e{window} title, and
982 ignores the icon title entirely. If for some reason you want to see
983 both titles, check the box marked \q{Separate window and icon titles}.
984 If you do this, PuTTY's window title and Taskbar caption will
985 change into the server-supplied icon title if you minimise the PuTTY
986 window, and change back to the server-supplied window title if you
987 restore it. (If the server has not bothered to supply a window or
988 icon title, none of this will happen.)
989
990 \S{config-warnonclose} \q{Warn before closing window}
991
992 \cfg{winhelp-topic}{behaviour.closewarn}
993
994 If you press the Close button in a PuTTY window that contains a
995 running session, PuTTY will put up a warning window asking if you
996 really meant to close the window. A window whose session has already
997 terminated can always be closed without a warning.
998
999 If you want to be able to close a window quickly, you can disable
1000 the \q{Warn before closing window} option.
1001
1002 \S{config-altf4} \q{Window closes on ALT-F4}
1003
1004 \cfg{winhelp-topic}{behaviour.altf4}
1005
1006 By default, pressing ALT-F4 causes the window to close (or a warning
1007 box to appear; see \k{config-warnonclose}). If you disable the
1008 \q{Window closes on ALT-F4} option, then pressing ALT-F4 will simply
1009 send a key sequence to the server.
1010
1011 \S{config-altspace} \q{System menu appears on ALT-Space}
1012
1013 \cfg{winhelp-topic}{behaviour.altspace}
1014
1015 If this option is enabled, then pressing ALT-Space will bring up the
1016 PuTTY window's menu, like clicking on the top left corner. If it is
1017 disabled, then pressing ALT-Space will just send \c{ESC SPACE} to
1018 the server.
1019
1020 Some accessibility programs for Windows may need this option
1021 enabling to be able to control PuTTY's window successfully. For
1022 instance, Dragon NaturallySpeaking requires it both to open the
1023 system menu via voice, and to close, minimise, maximise and restore
1024 the window.
1025
1026 \S{config-altonly} \q{System menu appears on Alt alone}
1027
1028 \cfg{winhelp-topic}{behaviour.altonly}
1029
1030 If this option is enabled, then pressing and releasing ALT will
1031 bring up the PuTTY window's menu, like clicking on the top left
1032 corner. If it is disabled, then pressing and releasing ALT will have
1033 no effect.
1034
1035 \S{config-alwaysontop} \q{Ensure window is always on top}
1036
1037 \cfg{winhelp-topic}{behaviour.alwaysontop}
1038
1039 If this option is enabled, the PuTTY window will stay on top of all
1040 other windows.
1041
1042 \S{config-fullscreen} \q{Full screen on Alt-Enter}
1043
1044 \cfg{winhelp-topic}{behaviour.altenter}
1045
1046 If this option is enabled, then pressing Alt-Enter will cause the
1047 PuTTY window to become full-screen. Pressing Alt-Enter again will
1048 restore the previous window size.
1049
1050 The full-screen feature is also available from the System menu, even
1051 when it is configured not to be available on the Alt-Enter key. See
1052 \k{using-fullscreen}.
1053
1054 \H{config-translation} The Translation panel
1055
1056 The Translation configuration panel allows you to control the
1057 translation between the character set understood by the server and
1058 the character set understood by PuTTY.
1059
1060 \S{config-charset} Controlling character set translation
1061
1062 \cfg{winhelp-topic}{translation.codepage}
1063
1064 During an interactive session, PuTTY receives a stream of 8-bit
1065 bytes from the server, and in order to display them on the screen it
1066 needs to know what character set to interpret them in.
1067
1068 There are a lot of character sets to choose from. The \q{Received
1069 data assumed to be in which character set} option lets you select
1070 one. By default PuTTY will attempt to choose a character set that is
1071 right for your locale as reported by Windows; if it gets it wrong,
1072 you can select a different one using this control.
1073
1074 A few notable character sets are:
1075
1076 \b The ISO-8859 series are all standard character sets that include
1077 various accented characters appropriate for different sets of
1078 languages.
1079
1080 \b The Win125x series are defined by Microsoft, for similar
1081 purposes. In particular Win1252 is almost equivalent to ISO-8859-1,
1082 but contains a few extra characters such as matched quotes and the
1083 Euro symbol.
1084
1085 \b If you want the old IBM PC character set with block graphics and
1086 line-drawing characters, you can select \q{CP437}.
1087
1088 \b PuTTY also supports Unicode mode, in which the data coming from
1089 the server is interpreted as being in the UTF-8 encoding of Unicode.
1090 If you select \q{UTF-8} as a character set you can use this mode.
1091 Not all server-side applications will support it.
1092
1093 If you need support for a numeric code page which is not listed in
1094 the drop-down list, such as code page 866, then you can try entering
1095 its name manually (\c{CP866} for example) in the list box. If the
1096 underlying version of Windows has the appropriate translation table
1097 installed, PuTTY will use it.
1098
1099 \S{config-cyr} \q{Caps Lock acts as Cyrillic switch}
1100
1101 \cfg{winhelp-topic}{translation.cyrillic}
1102
1103 This feature allows you to switch between a US/UK keyboard layout
1104 and a Cyrillic keyboard layout by using the Caps Lock key, if you
1105 need to type (for example) Russian and English side by side in the
1106 same document.
1107
1108 Currently this feature is not expected to work properly if your
1109 native keyboard layout is not US or UK.
1110
1111 \S{config-linedraw} Controlling display of line drawing characters
1112
1113 \cfg{winhelp-topic}{translation.linedraw}
1114
1115 VT100-series terminals allow the server to send control sequences
1116 that shift temporarily into a separate character set for drawing
1117 lines and boxes. PuTTY has a variety of ways to support this
1118 capability. In general you should probably try lots of options until
1119 you find one that your particular font supports.
1120
1121 \b \q{Font has XWindows encoding} is for use with fonts that have a
1122 special encoding, where the lowest 32 character positions (below the
1123 ASCII printable range) contain the line-drawing characters. This is
1124 unlikely to be the case with any standard Windows font; it will
1125 probably only apply to custom-built fonts or fonts that have been
1126 automatically converted from the X Window System.
1127
1128 \b \q{Use font in both ANSI and OEM modes} tries to use the same
1129 font in two different character sets, to obtain a wider range of
1130 characters. This doesn't always work; some fonts claim to be a
1131 different size depending on which character set you try to use.
1132
1133 \b \q{Use font in OEM mode only} is more reliable than that, but can
1134 miss out other characters from the main character set.
1135
1136 \b \q{Poor man's line drawing} assumes that the font \e{cannot}
1137 generate the line and box characters at all, so it will use the
1138 \c{+}, \c{-} and \c{|} characters to draw approximations to boxes.
1139 You should use this option if none of the other options works.
1140
1141 \b \q{Unicode mode} tries to use the box characters that are present
1142 in Unicode. For good Unicode-supporting fonts this is probably the
1143 most reliable and functional option.
1144
1145 \H{config-selection} The Selection panel
1146
1147 The Selection panel allows you to control the way copy and paste
1148 work in the PuTTY window.
1149
1150 \S{config-linedrawpaste} Controlling the pasting of line drawing
1151 characters
1152
1153 \cfg{winhelp-topic}{selection.linedraw}
1154
1155 By default, when you copy and paste a piece of the PuTTY screen that
1156 contains VT100 line and box drawing characters, PuTTY will paste
1157 them in the form they appear on the screen: either Unicode line
1158 drawing code points, or the \q{poor man's} line-drawing characters
1159 \c{+}, \c{-} and \c{|}. The checkbox \q{Paste VT100 line drawing
1160 chars as lqqqk} disables this feature, so line-drawing characters
1161 will be pasted as the ASCII characters that were printed to produce
1162 them. This will typically mean they come out mostly as \c{q} and
1163 \c{x}, with a scattering of \c{jklmntuvw} at the corners. This might
1164 be useful if you were trying to recreate the same box layout in
1165 another program, for example.
1166
1167 Note that this option only applies to line-drawing characters which
1168 \e{were} printed by using the VT100 mechanism. Line-drawing
1169 characters displayed using Unicode will paste as Unicode always.
1170
1171 \S{config-rtfpaste} Pasting in Rich Text Format
1172
1173 \cfg{winhelp-topic}{selection.rtf}
1174
1175 If you enable \q{Paste to clipboard in RTF as well as plain text},
1176 PuTTY will write formatting information to the clipboard as well as
1177 the actual text you copy. Currently the only effect of this will be
1178 that if you paste into (say) a word processor, the text will appear
1179 in the word processor in the same font PuTTY was using to display
1180 it. In future it is likely that other formatting information (bold,
1181 underline, colours) will be copied as well.
1182
1183 This option can easily be inconvenient, so by default it is
1184 disabled.
1185
1186 \S{config-mouse} Changing the actions of the mouse buttons
1187
1188 \cfg{winhelp-topic}{selection.buttons}
1189
1190 PuTTY's copy and paste mechanism is modelled on the Unix \c{xterm}
1191 application. The X Window System uses a three-button mouse, and the
1192 convention is that the left button selects, the right button extends
1193 an existing selection, and the middle button pastes.
1194
1195 Windows typically only has two mouse buttons, so in PuTTY's default
1196 configuration, the \e{right} button pastes, and the \e{middle}
1197 button (if you have one) extends a selection.
1198
1199 If you have a three-button mouse and you are already used to the
1200 \c{xterm} arrangement, you can select it using the \q{Action of
1201 mouse buttons} control.
1202
1203 \S{config-mouseshift} \q{Shift overrides application's use of mouse}
1204
1205 \cfg{winhelp-topic}{selection.shiftdrag}
1206
1207 PuTTY allows the server to send control codes that let it take over
1208 the mouse and use it for purposes other than copy and paste.
1209 Applications which use this feature include the text-mode web
1210 browser \c{links}, the Usenet newsreader \c{trn} version 4, and the
1211 file manager \c{mc} (Midnight Commander).
1212
1213 When running one of these applications, pressing the mouse buttons
1214 no longer performs copy and paste. If you do need to copy and paste,
1215 you can still do so if you hold down Shift while you do your mouse
1216 clicks.
1217
1218 However, it is possible in theory for applications to even detect
1219 and make use of Shift + mouse clicks. We don't know of any
1220 applications that do this, but in case someone ever writes one,
1221 unchecking the \q{Shift overrides application's use of mouse}
1222 checkbox will cause Shift + mouse clicks to go to the server as well
1223 (so that mouse-driven copy and paste will be completely disabled).
1224
1225 If you want to prevent the application from taking over the mouse at
1226 all, you can do this using the Features control panel; see
1227 \k{config-features-mouse}.
1228
1229 \S{config-rectselect} Default selection mode
1230
1231 \cfg{winhelp-topic}{selection.rect}
1232
1233 As described in \k{using-selection}, PuTTY has two modes of
1234 selecting text to be copied to the clipboard. In the default mode
1235 (\q{Normal}), dragging the mouse from point A to point B selects to
1236 the end of the line containing A, all the lines in between, and from
1237 the very beginning of the line containing B. In the other mode
1238 (\q{Rectangular block}), dragging the mouse between two points
1239 defines a rectangle, and everything within that rectangle is copied.
1240
1241 Normally, you have to hold down Alt while dragging the mouse to
1242 select a rectangular block. Using the \q{Default selection mode}
1243 control, you can set rectangular selection as the default, and then
1244 you have to hold down Alt to get the \e{normal} behaviour.
1245
1246 \S{config-charclasses} Configuring word-by-word selection
1247
1248 \cfg{winhelp-topic}{selection.charclasses}
1249
1250 PuTTY will select a word at a time in the terminal window if you
1251 double-click to begin the drag. This panel allows you to control
1252 precisely what is considered to be a word.
1253
1254 Each character is given a \e{class}, which is a small number
1255 (typically 0, 1 or 2). PuTTY considers a single word to be any
1256 number of adjacent characters in the same class. So by modifying the
1257 assignment of characters to classes, you can modify the word-by-word
1258 selection behaviour.
1259
1260 In the default configuration, the character classes are:
1261
1262 \b Class 0 contains white space and control characters.
1263
1264 \b Class 1 contains most punctuation.
1265
1266 \b Class 2 contains letters, numbers and a few pieces of punctuation
1267 (the double quote, minus sign, period, forward slash and
1268 underscore).
1269
1270 So, for example, if you assign the \c{@} symbol into character class
1271 2, you will be able to select an e-mail address with just a double
1272 click.
1273
1274 In order to adjust these assignments, you start by selecting a group
1275 of characters in the list box. Then enter a class number in the edit
1276 box below, and press the \q{Set} button.
1277
1278 This mechanism currently only covers ASCII characters, because it
1279 isn't feasible to expand the list to cover the whole of Unicode.
1280
1281 Character class definitions can be modified by control sequences
1282 sent by the server. This configuration option controls the
1283 \e{default} state, which will be restored when you reset the
1284 terminal (see \k{reset-terminal}). However, if you modify this
1285 option in mid-session using \q{Change Settings}, it will take effect
1286 immediately.
1287
1288 \H{config-colours} The Colours panel
1289
1290 The Colours panel allows you to control PuTTY's use of colour.
1291
1292 \S{config-boldcolour} \q{Bolded text is a different colour}
1293
1294 \cfg{winhelp-topic}{colours.bold}
1295
1296 When the server sends a control sequence indicating that some text
1297 should be displayed in bold, PuTTY can handle this two ways. It can
1298 either change the font for a bold version, or use the same font in a
1299 brighter colour. This control lets you choose which.
1300
1301 By default the box is checked, so non-bold text is displayed in
1302 light grey and bold text is displayed in bright white (and similarly
1303 in other colours). If you uncheck the box, bold and non-bold text
1304 will be displayed in the same colour, and instead the font will
1305 change to indicate the difference.
1306
1307 \S{config-logpalette} \q{Attempt to use logical palettes}
1308
1309 \cfg{winhelp-topic}{colours.logpal}
1310
1311 Logical palettes are a mechanism by which a Windows application
1312 running on an 8-bit colour display can select precisely the colours
1313 it wants instead of going with the Windows standard defaults.
1314
1315 If you are not getting the colours you ask for on an 8-bit display,
1316 you can try enabling this option. However, be warned that it's never
1317 worked very well.
1318
1319 \S{config-syscolour} \q{Use system colours}
1320
1321 \cfg{winhelp-topic}{colours.system}
1322
1323 Enabling this option will cause PuTTY to ignore the configured colours
1324 for \q{Default Background/Foreground} and \q{Cursor Colour/Text} (see
1325 \k{config-colourcfg}), instead going with the system-wide defaults.
1326
1327 Note that non-bold and bold text will be the same colour if this
1328 option is enabled. You might want to change to indicating bold text
1329 by font changes (see \k{config-boldcolour}).
1330
1331 \S{config-colourcfg} Adjusting the colours in the terminal window
1332
1333 \cfg{winhelp-topic}{colours.config}
1334
1335 The main colour control allows you to specify exactly what colours
1336 things should be displayed in. To modify one of the PuTTY colours,
1337 use the list box to select which colour you want to modify. The RGB
1338 values for that colour will appear on the right-hand side of the
1339 list box. Now, if you press the \q{Modify} button, you will be
1340 presented with a colour selector, in which you can choose a new
1341 colour to go in place of the old one.
1342
1343 PuTTY allows you to set the cursor colour, the default foreground
1344 and background, and the precise shades of all the ANSI configurable
1345 colours (black, red, green, yellow, blue, magenta, cyan, and white).
1346 You can also modify the precise shades used for the bold versions of
1347 these colours; these are used to display bold text if you have
1348 selected \q{Bolded text is a different colour}, and can also be used
1349 if the server asks specifically to use them.
1350
1351 \H{config-connection} The Connection panel
1352
1353 The Connection panel allows you to configure options that apply to
1354 more than one type of connection.
1355
1356 \S{config-termtype} \q{Terminal-type string}
1357
1358 \cfg{winhelp-topic}{connection.termtype}
1359
1360 Most servers you might connect to with PuTTY are designed to be
1361 connected to from lots of different types of terminal. In order to
1362 send the right control sequences to each one, the server will need
1363 to know what type of terminal it is dealing with. Therefore, each of
1364 the SSH, Telnet and Rlogin protocols allow a text string to be sent
1365 down the connection describing the terminal.
1366
1367 PuTTY attempts to emulate the Unix \c{xterm} program, and by default
1368 it reflects this by sending \c{xterm} as a terminal-type string. If
1369 you find this is not doing what you want - perhaps the remote
1370 terminal reports \q{Unknown terminal type} - you could try setting
1371 this to something different, such as \c{vt220}.
1372
1373 If you're not sure whether a problem is due to the terminal type
1374 setting or not, you probably need to consult the manual for your
1375 application or your server.
1376
1377 \S{config-username} \q{Auto-login username}
1378
1379 \cfg{winhelp-topic}{connection.username}
1380
1381 All three of the SSH, Telnet and Rlogin protocols allow you to
1382 specify what user name you want to log in as, without having to type
1383 it explicitly every time. (Some Telnet servers don't support this.)
1384
1385 In this box you can type that user name.
1386
1387 \S{config-keepalive} Using keepalives to prevent disconnection
1388
1389 \cfg{winhelp-topic}{connection.keepalive}
1390
1391 If you find your sessions are closing unexpectedly (\q{Connection
1392 reset by peer}) after they have been idle for a while, you might
1393 want to try using this option.
1394
1395 Some network routers and firewalls need to keep track of all
1396 connections through them. Usually, these firewalls will assume a
1397 connection is dead if no data is transferred in either direction
1398 after a certain time interval. This can cause PuTTY sessions to be
1399 unexpectedly closed by the firewall if no traffic is seen in the
1400 session for some time.
1401
1402 The keepalive option (\q{Seconds between keepalives}) allows you to
1403 configure PuTTY to send data through the session at regular
1404 intervals, in a way that does not disrupt the actual terminal
1405 session. If you find your firewall is cutting idle connections off,
1406 you can try entering a non-zero value in this field. The value is
1407 measured in seconds; so, for example, if your firewall cuts
1408 connections off after ten minutes then you might want to enter 300
1409 seconds (5 minutes) in the box.
1410
1411 Note that keepalives are not always helpful. They help if you have a
1412 firewall which drops your connection after an idle period; but if
1413 the network between you and the server suffers from breaks in
1414 connectivity then keepalives can actually make things worse. If a
1415 session is idle, and connectivity is temporarily lost between the
1416 endpoints, but the connectivity is restored before either side tries
1417 to send anything, then there will be no problem - neither endpoint
1418 will notice that anything was wrong. However, if one side does send
1419 something during the break, it will repeatedly try to re-send, and
1420 eventually give up and abandon the connection. Then when
1421 connectivity is restored, the other side will find that the first
1422 side doesn't believe there is an open connection any more.
1423 Keepalives can make this sort of problem worse, because they
1424 increase the probability that PuTTY will attempt to send data during
1425 a break in connectivity. Therefore, you might find they help
1426 connection loss, or you might find they make it worse, depending on
1427 what \e{kind} of network problems you have between you and the
1428 server.
1429
1430 Keepalives are only supported in Telnet and SSH; the Rlogin and Raw
1431 protocols offer no way of implementing them.
1432
1433 Note that if you are using SSH1 and the server has a bug that makes
1434 it unable to deal with SSH1 ignore messages (see
1435 \k{config-ssh-bug-ignore1}), enabling keepalives will have no effect.
1436
1437 \S{config-nodelay} \q{Disable Nagle's algorithm}
1438
1439 \cfg{winhelp-topic}{connection.nodelay}
1440
1441 Nagle's algorithm is a detail of TCP/IP implementations that tries
1442 to minimise the number of small data packets sent down a network
1443 connection. With Nagle's algorithm enabled, PuTTY's bandwidth usage
1444 will be slightly more efficient; with it disabled, you may find you
1445 get a faster response to your keystrokes when connecting to some
1446 types of server.
1447
1448 The Nagle algorithm is disabled by default.
1449
1450 \H{config-proxy} The Proxy panel
1451
1452 \cfg{winhelp-topic}{proxy.main}
1453
1454 The Proxy panel allows you to configure PuTTY to use various types
1455 of proxy in order to make its network connections. The settings in
1456 this panel affect the primary network connection forming your PuTTY
1457 session, but also any extra connections made as a result of SSH port
1458 forwarding (see \k{using-port-forwarding}).
1459
1460 \S{config-proxy-type} Setting the proxy type
1461
1462 \cfg{winhelp-topic}{proxy.type}
1463
1464 The \q{Proxy type} radio buttons allow you to configure what type of
1465 proxy you want PuTTY to use for its network connections. The default
1466 setting is \q{None}; in this mode no proxy is used for any
1467 connection.
1468
1469 \b Selecting \q{HTTP} allows you to proxy your connections through a
1470 web server supporting the HTTP \cw{CONNECT} command, as documented
1471 in \W{http://www.ietf.org/rfc/rfc2817.txt}{RFC 2817}.
1472
1473 \b Selecting \q{SOCKS 4} or \q{SOCKS 5} allows you to proxy your
1474 connections through a SOCKS server.
1475
1476 \b Many firewalls implement a less formal type of proxy in which a
1477 user can make a Telnet connection directly to the firewall machine
1478 and enter a command such as \c{connect myhost.com 22} to connect
1479 through to an external host. Selecting \q{Telnet} allows you to tell
1480 PuTTY to use this type of proxy.
1481
1482 \S{config-proxy-exclude} Excluding parts of the network from proxying
1483
1484 \cfg{winhelp-topic}{proxy.exclude}
1485
1486 Typically you will only need to use a proxy to connect to non-local
1487 parts of your network; for example, your proxy might be required for
1488 connections outside your company's internal network. In the
1489 \q{Exclude Hosts/IPs} box you can enter ranges of IP addresses, or
1490 ranges of DNS names, for which PuTTY will avoid using the proxy and
1491 make a direct connection instead.
1492
1493 The \q{Exclude Hosts/IPs} box may contain more than one exclusion
1494 range, separated by commas. Each range can be an IP address or a DNS
1495 name, with a \c{*} character allowing wildcards. For example:
1496
1497 \c *.example.com
1498
1499 This excludes any host with a name ending in \c{.example.com} from
1500 proxying.
1501
1502 \c 192.168.88.*
1503
1504 This excludes any host with an IP address starting with 192.168.88
1505 from proxying.
1506
1507 \c 192.168.88.*,*.example.com
1508
1509 This excludes both of the above ranges at once.
1510
1511 Connections to the local host (the host name \c{localhost}, and any
1512 loopback IP address) are never proxied, even if the proxy exclude
1513 list does not explicitly contain them. It is very unlikely that this
1514 behaviour would ever cause problems, but if it does you can change
1515 it by enabling \q{Consider proxying local host connections}.
1516
1517 Note that if you are doing DNS at the proxy (see
1518 \k{config-proxy-dns}), you should make sure that your proxy
1519 exclusion settings do not depend on knowing the IP address of a
1520 host. If the name is passed on to the proxy without PuTTY looking it
1521 up, it will never know the IP address and cannot check it against
1522 your list.
1523
1524 \S{config-proxy-dns} Name resolution when using a proxy
1525
1526 \cfg{winhelp-topic}{proxy.dns}
1527
1528 If you are using a proxy to access a private network, it can make a
1529 difference whether DNS name resolution is performed by PuTTY itself
1530 (on the client machine) or performed by the proxy.
1531
1532 The \q{Do DNS name lookup at proxy end} configuration option allows
1533 you to control this. If you set it to \q{No}, PuTTY will always do
1534 its own DNS, and will always pass an IP address to the proxy. If you
1535 set it to \q{Yes}, PuTTY will always pass host names straight to the
1536 proxy without trying to look them up first.
1537
1538 If you set this option to \q{Auto} (the default), PuTTY will do
1539 something it considers appropriate for each type of proxy. Telnet
1540 and HTTP proxies will have host names passed straight to them; SOCKS
1541 proxies will not.
1542
1543 Note that if you are doing DNS at the proxy, you should make sure
1544 that your proxy exclusion settings (see \k{config-proxy-exclude}) do
1545 not depend on knowing the IP address of a host. If the name is
1546 passed on to the proxy without PuTTY looking it up, it will never
1547 know the IP address and cannot check it against your list.
1548
1549 The original SOCKS 4 protocol does not support proxy-side DNS. There
1550 is a protocol extension (SOCKS 4A) which does support it, but not
1551 all SOCKS 4 servers provide this extension. If you enable proxy DNS
1552 and your SOCKS 4 server cannot deal with it, this might be why.
1553
1554 \S{config-proxy-auth} Username and password
1555
1556 \cfg{winhelp-topic}{proxy.auth}
1557
1558 If your proxy requires authentication, you can enter a username and
1559 a password in the \q{Username} and \q{Password} boxes.
1560
1561 Authentication is not fully supported for all forms of proxy:
1562
1563 \b Username and password authentication is supported for HTTP
1564 proxies and SOCKS 5 proxies.
1565
1566 \b SOCKS 4 can use the \q{Username} field, but does not support
1567 passwords.
1568
1569 \b You can specify a way to include a username and password in the
1570 Telnet proxy command (see \k{config-proxy-command}).
1571
1572 \S{config-proxy-command} Specifying the Telnet proxy command
1573
1574 \cfg{winhelp-topic}{proxy.command}
1575
1576 If you are using the Telnet proxy type, the usual command required
1577 by the firewall's Telnet server is \c{connect}, followed by a host
1578 name and a port number. If your proxy needs a different command,
1579 you can enter an alternative here.
1580
1581 In this string, you can use \c{\\n} to represent a new-line, \c{\\r}
1582 to represent a carriage return, \c{\\t} to represent a tab
1583 character, and \c{\\x} followed by two hex digits to represent any
1584 other character. \c{\\\\} is used to encode the \c{\\} character
1585 itself.
1586
1587 Also, the special strings \c{%host} and \c{%port} will be replaced
1588 by the host name and port number you want to connect to. The strings
1589 \c{%user} and \c{%pass} will be replaced by the proxy username and
1590 password you specify. To get a literal \c{%} sign, enter \c{%%}.
1591
1592 If the Telnet proxy server prompts for a username and password
1593 before commands can be sent, you can use a command such as:
1594
1595 \c %user\n%pass\nconnect %host %port\n
1596
1597 This will send your username and password as the first two lines to
1598 the proxy, followed by a command to connect to the desired host and
1599 port. Note that if you do not include the \c{%user} or \c{%pass}
1600 tokens in the Telnet command, then the \q{Username} and \q{Password}
1601 configuration fields will be ignored.
1602
1603 \H{config-telnet} The Telnet panel
1604
1605 The Telnet panel allows you to configure options that only apply to
1606 Telnet sessions.
1607
1608 \S{config-termspeed} \q{Terminal-speed string}
1609
1610 \cfg{winhelp-topic}{telnet.termspeed}
1611
1612 Telnet allows the client to send a text string that describes the
1613 terminal speed. PuTTY lets you configure this, in case you find the
1614 server is reacting badly to the default value. (I'm not aware of any
1615 servers that do have a problem with it.)
1616
1617 \S{config-environ} Setting environment variables on the server
1618
1619 \cfg{winhelp-topic}{telnet.environ}
1620
1621 The Telnet protocol also provides a means for the client to pass
1622 environment variables to the server. Many Telnet servers have
1623 stopped supporting this feature due to security flaws, but PuTTY
1624 still supports it for the benefit of any servers which have found
1625 other ways around the security problems than just disabling the
1626 whole mechanism.
1627
1628 To add an environment variable to the list transmitted down the
1629 connection, you enter the variable name in the \q{Variable} box,
1630 enter its value in the \q{Value} box, and press the \q{Add} button.
1631 To remove one from the list, select it in the list box and press
1632 \q{Remove}.
1633
1634 \S{config-oldenviron} \q{Handling of OLD_ENVIRON ambiguity}
1635
1636 \cfg{winhelp-topic}{telnet.oldenviron}
1637
1638 The original Telnet mechanism for passing environment variables was
1639 badly specified. At the time the standard (RFC 1408) was written,
1640 BSD telnet implementations were already supporting the feature, and
1641 the intention of the standard was to describe the behaviour the BSD
1642 implementations were already using.
1643
1644 Sadly there was a typing error in the standard when it was issued,
1645 and two vital function codes were specified the wrong way round. BSD
1646 implementations did not change, and the standard was not corrected.
1647 Therefore, it's possible you might find either BSD or RFC-compliant
1648 implementations out there. This switch allows you to choose which
1649 one PuTTY claims to be.
1650
1651 The problem was solved by issuing a second standard, defining a new
1652 Telnet mechanism called \cw{NEW_ENVIRON}, which behaved exactly like
1653 the original \cw{OLD_ENVIRON} but was not encumbered by existing
1654 implementations. Most Telnet servers now support this, and it's
1655 unambiguous. This feature should only be needed if you have trouble
1656 passing environment variables to quite an old server.
1657
1658 \S{config-ptelnet} Passive and active Telnet negotiation modes
1659
1660 \cfg{winhelp-topic}{telnet.passive}
1661
1662 In a Telnet connection, there are two types of data passed between
1663 the client and the server: actual text, and \e{negotiations} about
1664 which Telnet extra features to use.
1665
1666 PuTTY can use two different strategies for negotiation:
1667
1668 \b In \e{active} mode, PuTTY starts to send negotiations as soon as
1669 the connection is opened.
1670
1671 \b In \e{passive} mode, PuTTY will wait to negotiate until it sees a
1672 negotiation from the server.
1673
1674 The obvious disadvantage of passive mode is that if the server is
1675 also operating in a passive mode, then negotiation will never begin
1676 at all. For this reason PuTTY defaults to active mode.
1677
1678 However, sometimes passive mode is required in order to successfully
1679 get through certain types of firewall and Telnet proxy server. If
1680 you have confusing trouble with a firewall, you could try enabling
1681 passive mode to see if it helps.
1682
1683 \S{config-telnetkey} \q{Keyboard sends telnet Backspace and Interrupt}
1684
1685 \cfg{winhelp-topic}{telnet.specialkeys}
1686
1687 If this box is checked, the Backspace key on the keyboard will send
1688 the Telnet special backspace code, and Control-C will send the
1689 Telnet special interrupt code. You probably shouldn't enable this
1690 unless you know what you're doing.
1691
1692 \S{config-telnetnl} \q{Return key sends telnet New Line instead of ^M}
1693
1694 \cfg{winhelp-topic}{telnet.newline}
1695
1696 Unlike most other remote login protocols, the Telnet protocol has a
1697 special \q{new line} code that is not the same as the usual line
1698 endings of Control-M or Control-J. By default, PuTTY sends the
1699 Telnet New Line code when you press Return, instead of sending
1700 Control-M as it does in most other protocols.
1701
1702 Most Unix-style Telnet servers don't mind whether they receive
1703 Telnet New Line or Control-M; some servers do expect New Line, and
1704 some servers prefer to see ^M. If you are seeing surprising
1705 behaviour when you press Return in a Telnet session, you might try
1706 turning this option off to see if it helps.
1707
1708 \H{config-rlogin} The Rlogin panel
1709
1710 The Rlogin panel allows you to configure options that only apply to
1711 Rlogin sessions.
1712
1713 \S{config-rlogin-termspeed} \q{Terminal-speed string}
1714
1715 \cfg{winhelp-topic}{rlogin.termspeed}
1716
1717 Like Telnet, Rlogin allows the client to send a text string that
1718 describes the terminal speed. PuTTY lets you configure this, in case
1719 you find the server is reacting badly to the default value. (I'm not
1720 aware of any servers that do have a problem with it.)
1721
1722 \S{config-rlogin-localuser} \q{Local username}
1723
1724 \cfg{winhelp-topic}{rlogin.localuser}
1725
1726 Rlogin allows an automated (password-free) form of login by means of
1727 a file called \c{.rhosts} on the server. You put a line in your
1728 \c{.rhosts} file saying something like \c{jbloggs@pc1.example.com},
1729 and then when you make an Rlogin connection the client transmits the
1730 username of the user running the Rlogin client. The server checks
1731 the username and hostname against \c{.rhosts}, and if they match it
1732 does not ask for a password.
1733
1734 This only works because Unix systems contain a safeguard to stop a
1735 user from pretending to be another user in an Rlogin connection.
1736 Rlogin connections have to come from port numbers below 1024, and
1737 Unix systems prohibit this to unprivileged processes; so when the
1738 server sees a connection from a low-numbered port, it assumes the
1739 client end of the connection is held by a privileged (and therefore
1740 trusted) process, so it believes the claim of who the user is.
1741
1742 Windows does not have this restriction: \e{any} user can initiate an
1743 outgoing connection from a low-numbered port. Hence, the Rlogin
1744 \c{.rhosts} mechanism is completely useless for securely
1745 distinguishing several different users on a Windows machine. If you
1746 have a \c{.rhosts} entry pointing at a Windows PC, you should assume
1747 that \e{anyone} using that PC can spoof your username in an Rlogin
1748 connection and access your account on the server.
1749
1750 The \q{Local username} control allows you to specify what user name
1751 PuTTY should claim you have, in case it doesn't match your Windows
1752 user name (or in case you didn't bother to set up a Windows user
1753 name).
1754
1755 \H{config-ssh} The SSH panel
1756
1757 The SSH panel allows you to configure options that only apply to
1758 SSH sessions.
1759
1760 \S{config-command} Executing a specific command on the server
1761
1762 \cfg{winhelp-topic}{ssh.command}
1763
1764 In SSH, you don't have to run a general shell session on the server.
1765 Instead, you can choose to run a single specific command (such as a
1766 mail user agent, for example). If you want to do this, enter the
1767 command in the \q{Remote command} box.
1768
1769 \S{config-ssh-pty} \q{Don't allocate a pseudo-terminal}
1770
1771 \cfg{winhelp-topic}{ssh.nopty}
1772
1773 When connecting to a Unix system, most interactive shell sessions
1774 are run in a \e{pseudo-terminal}, which allows the Unix system to
1775 pretend it's talking to a real physical terminal device but allows
1776 the SSH server to catch all the data coming from that fake device
1777 and send it back to the client.
1778
1779 Occasionally you might find you have a need to run a session \e{not}
1780 in a pseudo-terminal. In PuTTY, this is generally only useful for
1781 very specialist purposes; although in Plink (see \k{plink}) it is
1782 the usual way of working.
1783
1784 \S{config-ssh-comp} \q{Enable compression}
1785
1786 \cfg{winhelp-topic}{ssh.compress}
1787
1788 This enables data compression in the SSH connection: data sent by
1789 the server is compressed before sending, and decompressed at the
1790 client end. Likewise, data sent by PuTTY to the server is compressed
1791 first and the server decompresses it at the other end. This can help
1792 make the most of a low-bandwidth connection.
1793
1794 \S{config-ssh-prot} \q{Preferred SSH protocol version}
1795
1796 \cfg{winhelp-topic}{ssh.protocol}
1797
1798 This allows you to select whether you would like to use SSH protocol
1799 version 1 or version 2. \#{FIXME: say something about this elsewhere?}
1800
1801 PuTTY will attempt to use protocol 1 if the server you connect to
1802 does not offer protocol 2, and vice versa.
1803
1804 If you select \q{1 only} or \q{2 only} here, PuTTY will only connect
1805 if the server you connect to offers the SSH protocol version you
1806 have specified.
1807
1808 \S{config-ssh-encryption} Encryption algorithm selection
1809
1810 \cfg{winhelp-topic}{ssh.ciphers}
1811
1812 PuTTY supports a variety of different encryption algorithms, and
1813 allows you to choose which one you prefer to use. You can do this by
1814 dragging the algorithms up and down in the list box (or moving them
1815 using the Up and Down buttons) to specify a preference order. When
1816 you make an SSH connection, PuTTY will search down the list from the
1817 top until it finds an algorithm supported by the server, and then
1818 use that.
1819
1820 PuTTY currently supports the following algorithms:
1821
1822 \b AES (Rijndael) - 256, 192, or 128-bit CBC (SSH-2 only)
1823
1824 \b Blowfish - 128-bit CBC
1825
1826 \b Triple-DES - 168-bit CBC
1827
1828 \b Single-DES - 56-bit CBC (see below for SSH-2)
1829
1830 If the algorithm PuTTY finds is below the \q{warn below here} line,
1831 you will see a warning box when you make the connection:
1832
1833 \c The first cipher supported by the server
1834 \c is single-DES, which is below the configured
1835 \c warning threshold.
1836 \c Do you want to continue with this connection?
1837
1838 This warns you that the first available encryption is not a very
1839 secure one. Typically you would put the \q{warn below here} line
1840 between the encryptions you consider secure and the ones you
1841 consider substandard. By default, PuTTY supplies a preference order
1842 intended to reflect a reasonable preference in terms of security and
1843 speed.
1844
1845 In SSH-2, the encryption algorithm is negotiated independently for
1846 each direction of the connection, although PuTTY does not support
1847 separate configuration of the preference orders. As a result you may
1848 get two warnings similar to the one above, possibly with different
1849 encryptions.
1850
1851 Single-DES is not recommended in the SSH 2 draft protocol
1852 standards, but one or two server implementations do support it.
1853 PuTTY can use single-DES to interoperate with
1854 these servers if you enable the \q{Enable legacy use of single-DES in
1855 SSH 2} option; by default this is disabled and PuTTY will stick to
1856 recommended ciphers.
1857
1858 \H{config-ssh-auth} The Auth panel
1859
1860 The Auth panel allows you to configure authentication options for
1861 SSH sessions.
1862
1863 \S{config-ssh-tis} \q{Attempt TIS or CryptoCard authentication}
1864
1865 \cfg{winhelp-topic}{ssh.auth.tis}
1866
1867 TIS and CryptoCard authentication are simple challenge/response
1868 forms of authentication available in SSH protocol version 1 only.
1869 You might use them if you were using S/Key one-time passwords, for
1870 example, or if you had a physical security token that generated
1871 responses to authentication challenges.
1872
1873 With this switch enabled, PuTTY will attempt these forms of
1874 authentication if the server is willing to try them. You will be
1875 presented with a challenge string (which will be different every
1876 time) and must supply the correct response in order to log in. If
1877 your server supports this, you should talk to your system
1878 administrator about precisely what form these challenges and
1879 responses take.
1880
1881 \S{config-ssh-ki} \q{Attempt keyboard-interactive authentication}
1882
1883 \cfg{winhelp-topic}{ssh.auth.ki}
1884
1885 The SSH 2 equivalent of TIS authentication is called
1886 \q{keyboard-interactive}. It is a flexible authentication method
1887 using an arbitrary sequence of requests and responses; so it is not
1888 only useful for challenge/response mechanisms such as S/Key, but it
1889 can also be used for (for example) asking the user for a new
1890 password when the old one has expired.
1891
1892 PuTTY leaves this option enabled by default, but supplies a switch
1893 to turn it off in case you should have trouble with it.
1894
1895 \S{config-ssh-agentfwd} \q{Allow agent forwarding}
1896
1897 \cfg{winhelp-topic}{ssh.auth.agentfwd}
1898
1899 This option allows the SSH server to open forwarded connections back
1900 to your local copy of Pageant. If you are not running Pageant, this
1901 option will do nothing.
1902
1903 See \k{pageant} for general information on Pageant, and
1904 \k{pageant-forward} for information on agent forwarding. Note that
1905 there is a security risk involved with enabling this option; see
1906 \k{pageant-security} for details.
1907
1908 \S{config-ssh-changeuser} \q{Allow attempted changes of username in SSH2}
1909
1910 \cfg{winhelp-topic}{ssh.auth.changeuser}
1911
1912 In the SSH 1 protocol, it is impossible to change username after
1913 failing to authenticate. So if you mis-type your username at the
1914 PuTTY \q{login as:} prompt, you will not be able to change it except
1915 by restarting PuTTY.
1916
1917 The SSH 2 protocol \e{does} allow changes of username, in principle,
1918 but does not make it mandatory for SSH 2 servers to accept them. In
1919 particular, OpenSSH does not accept a change of username; once you
1920 have sent one username, it will reject attempts to try to
1921 authenticate as another user. (Depending on the version of OpenSSH,
1922 it may quietly return failure for all login attempts, or it may send
1923 an error message.)
1924
1925 For this reason, PuTTY will by default not prompt you for your
1926 username more than once, in case the server complains. If you know
1927 your server can cope with it, you can enable the \q{Allow attempted
1928 changes of username} option to modify PuTTY's behaviour.
1929
1930 \S{config-ssh-privkey} \q{Private key file for authentication}
1931
1932 \cfg{winhelp-topic}{ssh.auth.privkey}
1933
1934 This box is where you enter the name of your private key file if you
1935 are using public key authentication. See \k{pubkey} for information
1936 about public key authentication in SSH.
1937
1938 This key must be in PuTTY's native format (\c{*.PPK}).
1939
1940 \H{config-ssh-tunnels} The Tunnels panel
1941
1942 The Tunnels panel allows you to configure tunnelling of other
1943 connection types through an SSH connection.
1944
1945 \S{config-ssh-x11} X11 forwarding
1946
1947 \cfg{winhelp-topic}{ssh.tunnels.x11}
1948
1949 If your server lets you run X Window System applications, X11
1950 forwarding allows you to securely give those applications access to
1951 a local X display on your PC.
1952
1953 To enable X11 forwarding, check the \q{Enable X11 forwarding} box.
1954 If your X display is not the primary display on your local machine
1955 (which it almost certainly will be unless you have deliberately
1956 arranged otherwise), you need to enter its location in the \q{X
1957 display location} box.
1958
1959 See \k{using-x-forwarding} for more information about X11
1960 forwarding.
1961
1962 \S2{config-ssh-x11auth} Remote X11 authentication
1963
1964 \cfg{winhelp-topic}{ssh.tunnels.x11auth}
1965
1966 If you are using X11 forwarding, the virtual X server created on the
1967 SSH server machine will be protected by authorisation data. This
1968 data is invented, and checked, by PuTTY.
1969
1970 The usual authorisation method used for this is called
1971 \cw{MIT-MAGIC-COOKIE-1}. This is a simple password-style protocol:
1972 the X client sends some cookie data to the server, and the server
1973 checks that it matches the real cookie. The cookie data is sent over
1974 an unencrypted X11 connection; so if you allow a client on a third
1975 machine to access the virtual X server, then the cookie will be sent
1976 in the clear.
1977
1978 PuTTY offers the alternative protocol \cw{XDM-AUTHORIZATION-1}. This
1979 is a cryptographically authenticated protocol: the data sent by the
1980 X client is different every time, and it depends on the IP address
1981 and port of the client's end of the connection and is also stamped
1982 with the current time. So an eavesdropper who captures an
1983 \cw{XDM-AUTHORIZATION-1} string cannot immediately re-use it for
1984 their own X connection.
1985
1986 PuTTY's support for \cw{XDM-AUTHORIZATION-1} is a somewhat
1987 experimental feature, and may encounter several problems:
1988
1989 \b Some X clients probably do not even support
1990 \cw{XDM-AUTHORIZATION-1}, so they will not know what to do with the
1991 data PuTTY has provided.
1992
1993 \b This authentication mechanism will only work in SSH v2. In SSH
1994 v1, the SSH server does not tell the client the source address of
1995 a forwarded connection in a machine-readable format, so it's
1996 impossible to verify the \cw{XDM-AUTHORIZATION-1} data.
1997
1998 \b You may find this feature causes problems with some SSH servers,
1999 which will not clean up \cw{XDM-AUTHORIZATION-1} data after a
2000 session, so that if you then connect to the same server using
2001 a client which only does \cw{MIT-MAGIC-COOKIE-1} and are allocated
2002 the same remote display number, you might find that out-of-date
2003 authentication data is still present on your server and your X
2004 connections fail.
2005
2006 PuTTY's default is \cw{MIT-MAGIC-COOKIE-1}. If you change it, you
2007 should be sure you know what you're doing.
2008
2009 \S{config-ssh-portfwd} Port forwarding
2010
2011 \cfg{winhelp-topic}{ssh.tunnels.portfwd}
2012
2013 Port forwarding allows you to tunnel other types of network
2014 connection down an SSH session. See \k{using-port-forwarding} for a
2015 general discussion of port forwarding and how it works.
2016
2017 The port forwarding section in the Tunnels panel shows a list of all
2018 the port forwardings that PuTTY will try to set up when it connects
2019 to the server. By default no port forwardings are set up, so this
2020 list is empty.
2021
2022 To add a port forwarding:
2023
2024 \b Set one of the \q{Local} or \q{Remote} radio buttons, depending
2025 on whether you want to forward a local port to a remote destination
2026 (\q{Local}) or forward a remote port to a local destination
2027 (\q{Remote}). Alternatively, select \q{Dynamic} if you want PuTTY to
2028 provide a local SOCKS 4/4A/5 proxy on a local port.
2029
2030 \b Enter a source port number into the \q{Source port} box. For
2031 local forwardings, PuTTY will listen on this port of your PC. For
2032 remote forwardings, your SSH server will listen on this port of the
2033 remote machine. Note that most servers will not allow you to listen
2034 on port numbers less than 1024.
2035
2036 \b If you have selected \q{Local} or \q{Remote} (this step is not
2037 needed with \q{Dynamic}), enter a hostname and port number separated
2038 by a colon, in the \q{Destination} box. Connections received on the
2039 source port will be directed to this destination. For example, to
2040 connect to a POP-3 server, you might enter
2041 \c{popserver.example.com:110}.
2042
2043 \b Click the \q{Add} button. Your forwarding details should appear
2044 in the list box.
2045
2046 To remove a port forwarding, simply select its details in the list
2047 box, and click the \q{Remove} button.
2048
2049 In the \q{Source port} box, you can also optionally enter an IP
2050 address to listen on. Typically a Windows machine can be asked to
2051 listen on any single IP address in the \cw{127.*.*.*} range, and all
2052 of these are loopback addresses available only to the local machine.
2053 So if you forward (for example) \c{127.0.0.5:79} to a remote
2054 machine's \cw{finger} port, then you should be able to run commands
2055 such as \c{finger fred@127.0.0.5}. This can be useful if the program
2056 connecting to the forwarded port doesn't allow you to change the
2057 port number it uses. This feature is available for local-to-remote
2058 forwarded ports; SSH1 is unable to support it for remote-to-local
2059 ports, while SSH2 can support it in theory but servers will not
2060 necessarily cooperate.
2061
2062 \S{config-ssh-portfwd-localhost} Controlling the visibility of
2063 forwarded ports
2064
2065 \cfg{winhelp-topic}{ssh.tunnels.portfwd.localhost}
2066
2067 The source port for a forwarded connection usually does not accept
2068 connections from any machine except the SSH client or server machine
2069 itself (for local and remote forwardings respectively). There are
2070 controls in the Tunnels panel to change this:
2071
2072 \b The \q{Local ports accept connections from other hosts} option
2073 allows you to set up local-to-remote port forwardings in such a way
2074 that machines other than your client PC can connect to the forwarded
2075 port. (This also applies to dynamic SOCKS forwarding.)
2076
2077 \b The \q{Remote ports do the same} option does the same thing for
2078 remote-to-local port forwardings (so that machines other than the
2079 SSH server machine can connect to the forwarded port.) Note that
2080 this feature is only available in the SSH 2 protocol, and not all
2081 SSH 2 servers support it (OpenSSH 3.0 does not, for example).
2082
2083 \H{config-ssh-bugs} The Bugs panel
2084
2085 Not all SSH servers work properly. Various existing servers have
2086 bugs in them, which can make it impossible for a client to talk to
2087 them unless it knows about the bug and works around it.
2088
2089 Since most servers announce their software version number at the
2090 beginning of the SSH connection, PuTTY will attempt to detect which
2091 bugs it can expect to see in the server and automatically enable
2092 workarounds. However, sometimes it will make mistakes; if the server
2093 has been deliberately configured to conceal its version number, or
2094 if the server is a version which PuTTY's bug database does not know
2095 about, then PuTTY will not know what bugs to expect.
2096
2097 The Bugs panel allows you to manually configure the bugs PuTTY
2098 expects to see in the server. Each bug can be configured in three
2099 states:
2100
2101 \b \q{Off}: PuTTY will assume the server does not have the bug.
2102
2103 \b \q{On}: PuTTY will assume the server \e{does} have the bug.
2104
2105 \b \q{Auto}: PuTTY will use the server's version number announcement
2106 to try to guess whether or not the server has the bug.
2107
2108 \S{config-ssh-bug-ignore1} \q{Chokes on SSH1 ignore messages}
2109
2110 \cfg{winhelp-topic}{ssh.bugs.ignore1}
2111
2112 An ignore message (SSH_MSG_IGNORE) is a message in the SSH protocol
2113 which can be sent from the client to the server, or from the server
2114 to the client, at any time. Either side is required to ignore the
2115 message whenever it receives it. PuTTY uses ignore messages to hide
2116 the password packet in SSH1, so that a listener cannot tell the
2117 length of the user's password; it also uses ignore messages for
2118 connection keepalives (see \k{config-keepalive}).
2119
2120 If this bug is detected, PuTTY will stop using ignore messages. This
2121 means that keepalives will stop working, and PuTTY will have to fall
2122 back to a secondary defence against SSH1 password-length
2123 eavesdropping. See \k{config-ssh-bug-plainpw1}. If this bug is
2124 enabled when talking to a correct server, the session will succeed,
2125 but keepalives will not work and the session might be more
2126 vulnerable to eavesdroppers than it could be.
2127
2128 This is an SSH1-specific bug. No known SSH2 server fails to deal
2129 with SSH2 ignore messages.
2130
2131 \S{config-ssh-bug-plainpw1} \q{Refuses all SSH1 password camouflage}
2132
2133 \cfg{winhelp-topic}{ssh.bugs.plainpw1}
2134
2135 When talking to an SSH1 server which cannot deal with ignore
2136 messages (see \k{config-ssh-bug-ignore1}), PuTTY will attempt to
2137 disguise the length of the user's password by sending additional
2138 padding \e{within} the password packet. This is technically a
2139 violation of the SSH1 specification, and so PuTTY will only do it
2140 when it cannot use standards-compliant ignore messages as
2141 camouflage. In this sense, for a server to refuse to accept a padded
2142 password packet is not really a bug, but it does make life
2143 inconvenient if the server can also not handle ignore messages.
2144
2145 If this \q{bug} is detected, PuTTY will have no choice but to send
2146 the user's password with no form of camouflage, so that an
2147 eavesdropping user will be easily able to find out the exact length
2148 of the password. If this bug is enabled when talking to a correct
2149 server, the session will succeed, but will be more vulnerable to
2150 eavesdroppers than it could be.
2151
2152 This is an SSH1-specific bug. SSH2 is secure against this type of
2153 attack.
2154
2155 \S{config-ssh-bug-rsa1} \q{Chokes on SSH1 RSA authentication}
2156
2157 \cfg{winhelp-topic}{ssh.bugs.rsa1}
2158
2159 Some SSH1 servers cannot deal with RSA authentication messages at
2160 all. If Pageant is running and contains any SSH1 keys, PuTTY will
2161 normally automatically try RSA authentication before falling back to
2162 passwords, so these servers will crash when they see the RSA attempt.
2163
2164 If this bug is detected, PuTTY will go straight to password
2165 authentication. If this bug is enabled when talking to a correct
2166 server, the session will succeed, but of course RSA authentication
2167 will be impossible.
2168
2169 This is an SSH1-specific bug.
2170
2171 \S{config-ssh-bug-hmac2} \q{Miscomputes SSH2 HMAC keys}
2172
2173 \cfg{winhelp-topic}{ssh.bugs.hmac2}
2174
2175 Versions 2.3.0 and below of the SSH server software from
2176 \cw{ssh.com} compute the keys for their HMAC message authentication
2177 codes incorrectly. A typical symptom of this problem is that PuTTY
2178 dies unexpectedly at the beginning of the session, saying
2179 \q{Incorrect MAC received on packet}.
2180
2181 If this bug is detected, PuTTY will compute its HMAC keys in the
2182 same way as the buggy server, so that communication will still be
2183 possible. If this bug is enabled when talking to a correct server,
2184 communication will fail.
2185
2186 This is an SSH2-specific bug.
2187
2188 \S{config-ssh-bug-derivekey2} \q{Miscomputes SSH2 encryption keys}
2189
2190 \cfg{winhelp-topic}{ssh.bugs.derivekey2}
2191
2192 Versions below 2.0.11 of the SSH server software from \cw{ssh.com}
2193 compute the keys for the session encryption incorrectly. This
2194 problem can cause various error messages, such as \q{Incoming packet
2195 was garbled on decryption}, or possibly even \q{Out of memory}.
2196
2197 If this bug is detected, PuTTY will compute its encryption keys in
2198 the same way as the buggy server, so that communication will still
2199 be possible. If this bug is enabled when talking to a correct
2200 server, communication will fail.
2201
2202 This is an SSH2-specific bug.
2203
2204 \S{config-ssh-bug-sig} \q{Requires padding on SSH2 RSA signatures}
2205
2206 \cfg{winhelp-topic}{ssh.bugs.rsapad2}
2207
2208 Versions below 3.3 of OpenSSH require SSH2 RSA signatures to be
2209 padded with zero bytes to the same length as the RSA key modulus.
2210 The SSH2 draft specification says that an unpadded signature MUST be
2211 accepted, so this is a bug. A typical symptom of this problem is
2212 that PuTTY mysteriously fails RSA authentication once in every few
2213 hundred attempts, and falls back to passwords.
2214
2215 If this bug is detected, PuTTY will pad its signatures in the way
2216 OpenSSH expects. If this bug is enabled when talking to a correct
2217 server, it is likely that no damage will be done, since correct
2218 servers usually still accept padded signatures because they're used
2219 to talking to OpenSSH.
2220
2221 This is an SSH2-specific bug.
2222
2223 \S{config-ssh-bug-dhgex} \q{Chokes on Diffie-Hellman group exchange}
2224
2225 \cfg{winhelp-topic}{ssh.bugs.dhgex2}
2226
2227 We have anecdotal evidence that some SSH servers claim to be able to
2228 perform Diffie-Hellman group exchange, but fail to actually do so
2229 when PuTTY tries to. If your SSH2 sessions spontaneously close
2230 immediately after opening the PuTTY window, it might be worth
2231 enabling the workaround for this bug to see if it helps.
2232
2233 We have no hard evidence that any specific version of specific
2234 server software reliably demonstrates this bug. Therefore, PuTTY
2235 will never \e{assume} a server has this bug; if you want the
2236 workaround, you need to enable it manually.
2237
2238 This is an SSH2-specific bug.
2239
2240 \S{config-ssh-bug-pksessid2} \q{Misuses the session ID in PK auth}
2241
2242 \cfg{winhelp-topic}{ssh.bugs.pksessid2}
2243
2244 Versions below 2.3 of OpenSSH require SSH2 public-key authentication
2245 to be done slightly differently: the data to be signed by the client
2246 contains the session ID formatted in a different way. If public-key
2247 authentication mysteriously does not work but the Event Log (see
2248 \k{using-eventlog}) thinks it has successfully sent a signature, it
2249 might be worth enabling the workaround for this bug to see if it
2250 helps.
2251
2252 If this bug is detected, PuTTY will sign data in the way OpenSSH
2253 expects. If this bug is enabled when talking to a correct server,
2254 SSH2 public-key authentication will fail.
2255
2256 This is an SSH2-specific bug.
2257
2258 \H{config-file} Storing configuration in a file
2259
2260 PuTTY does not currently support storing its configuration in a file
2261 instead of the Registry. However, you can work around this with a
2262 couple of batch files.
2263
2264 You will need a file called (say) \c{PUTTY.BAT} which imports the
2265 contents of a file into the Registry, then runs PuTTY, exports the
2266 contents of the Registry back into the file, and deletes the
2267 Registry entries. This can all be done using the Regedit command
2268 line options, so it's all automatic. Here is what you need in
2269 \c{PUTTY.BAT}:
2270
2271 \c @ECHO OFF
2272 \c regedit /s putty.reg
2273 \c regedit /s puttyrnd.reg
2274 \c start /w putty.exe
2275 \c regedit /ea puttynew.reg HKEY_CURRENT_USER\Software\SimonTatham\PuTTY
2276 \c copy puttynew.reg putty.reg
2277 \c del puttynew.reg
2278 \c regedit /s puttydel.reg
2279
2280 This batch file needs two auxiliary files: \c{PUTTYRND.REG} which
2281 sets up an initial safe location for the \c{PUTTY.RND} random seed
2282 file, and \c{PUTTYDEL.REG} which destroys everything in the Registry
2283 once it's been successfully saved back to the file.
2284
2285 Here is \c{PUTTYDEL.REG}:
2286
2287 \c REGEDIT4
2288 \c
2289 \c [-HKEY_CURRENT_USER\Software\SimonTatham\PuTTY]
2290
2291 Here is an example \c{PUTTYRND.REG} file:
2292
2293 \c REGEDIT4
2294 \c
2295 \c [HKEY_CURRENT_USER\Software\SimonTatham\PuTTY]
2296 \c "RandSeedFile"="a:\putty.rnd"
2297
2298 You should replace \c{a:\\putty.rnd} with the location where you
2299 want to store your random number data. If the aim is to carry around
2300 PuTTY and its settings on one floppy, you probably want to store it
2301 on the floppy.