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171 lines
7.7 KiB
Groff
171 lines
7.7 KiB
Groff
.TH curs_inopts 3X ""
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.SH NAME
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\fBcurs_inopts\fR: \fBcbreak\fR, \fBnocbreak\fR, \fBecho\fR,
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\fBnoecho\fR, \fBhalfdelay\fR, \fBintrflush\fR, \fBkeypad\fR,
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\fBmeta\fR, \fBnodelay\fR, \fBnotimeout\fR, \fBraw\fR, \fBnoraw\fR,
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\fBnoqiflush\fR, \fBqiflush\fR, \fBtimeout\fR, \fBwtimeout\fR,
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\fBtypeahead\fR - \fBncurses\fR input options
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.SH SYNOPSIS
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\fB#include <ncurses.h>\fR
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\fBint cbreak(void);\fR
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.br
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\fBint nocbreak(void);\fR
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.br
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\fBint echo(void);\fR
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.br
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\fBint noecho(void);\fR
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.br
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\fBint halfdelay(int tenths);\fR
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.br
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\fBint intrflush(WINDOW *win, bool bf);\fR
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.br
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\fBint keypad(WINDOW *win, bool bf);\fR
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.br
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\fBint meta(WINDOW *win, bool bf);\fR
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.br
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\fBint nodelay(WINDOW *win, bool bf);\fR
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.br
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\fBint notimeout(WINDOW *win, bool bf);\fR
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.br
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\fBint raw(void);\fR
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.br
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\fBint noraw(void);\fR
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.br
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\fBvoid noqiflush(void);\fR
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.br
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\fBvoid qiflush(void);\fR
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.br
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\fBvoid timeout(int delay);\fR
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.br
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\fBvoid wtimeout(WINDOW *win, int delay);\fR
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.br
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\fBint typeahead(int fd);\fR
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.br
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.SH DESCRIPTION
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Normally, the tty driver buffers typed characters until a newline or carriage
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return is typed. The \fBcbreak\fR routine disables line buffering and
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erase/kill character-processing (interrupt and flow control characters are
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unaffected), making characters typed by the user immediately available to the
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program. The \fBnocbreak\fR routine returns the terminal to normal (cooked)
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mode.
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Initially the terminal may or may not be in \fBcbreak\fR mode, as the mode is
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inherited; therefore, a program should call \fBcbreak\fR or \fBnocbreak\fR
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explicitly. Most interactive programs using \fBncurses\fR set the \fBcbreak\fR
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mode. Note that \fBcbreak\fR overrides \fBraw\fR. [See curs_getch(3X) for a
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discussion of how these routines interact with \fBecho\fR and \fBnoecho\fR.]
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The \fBecho\fR and \fBnoecho\fR routines control whether characters typed by
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the user are echoed by \fBgetch\fR as they are typed. Echoing by the tty
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driver is always disabled, but initially \fBgetch\fR is in echo mode, so
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characters typed are echoed. Authors of most interactive programs prefer to do
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their own echoing in a controlled area of the screen, or not to echo at all, so
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they disable echoing by calling \fBnoecho\fR. [See curs_getch(3X) for a
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discussion of how these routines interact with \fBcbreak\fR and
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\fBnocbreak\fR.]
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The \fBhalfdelay\fR routine is used for half-delay mode, which is similar to
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\fBcbreak\fR mode in that characters typed by the user are immediately
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available to the program. However, after blocking for \fItenths\fR tenths of
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seconds, ERR is returned if nothing has been typed. The value of \fBtenths\fR
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must be a number between 1 and 255. Use \fBnocbreak\fR to leave half-delay
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mode.
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If the \fBintrflush\fR option is enabled, (\fIbf\fR is \fBTRUE\fR), when an
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interrupt key is pressed on the keyboard (interrupt, break, quit) all output in
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the tty driver queue will be flushed, giving the effect of faster response to
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the interrupt, but causing \fBncurses\fR to have the wrong idea of what is on
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the screen. Disabling (\fIbf\fR is \fBFALSE\fR), the option prevents the
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flush. The default for the option is inherited from the tty driver settings.
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The window argument is ignored.
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The \fBkeypad\fR option enables the keypad of the user's terminal. If
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enabled (\fIbf\fR is \fBTRUE\fR), the user can press a function key
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(such as an arrow key) and \fBwgetch\fR returns a single value
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representing the function key, as in \fBKEY_LEFT\fR. If disabled
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(\fIbf\fR is \fBFALSE\fR), \fBncurses\fR does not treat function keys
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specially and the program has to interpret the escape sequences
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itself. If the keypad in the terminal can be turned on (made to
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transmit) and off (made to work locally), turning on this option
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causes the terminal keypad to be turned on when \fBwgetch\fR is
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called. The default value for keypad is false.
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Initially, whether the terminal returns 7 or 8 significant bits on
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input depends on the control mode of the tty driver [see termio(7)].
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To force 8 bits to be returned, invoke \fBmeta\fR(\fIwin\fR,
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\fBTRUE\fR). To force 7 bits to be returned, invoke
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\fBmeta\fR(\fIwin\fR, \fBFALSE\fR). The window argument, \fIwin\fR,
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is always ignored. If the terminfo capabilities \fBsmm\fR (meta_on)
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and \fBrmm\fR (meta_off) are defined for the terminal, \fBsmm\fR is
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sent to the terminal when \fBmeta\fR(\fIwin\fR, \fBTRUE\fR) is called
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and \fBrmm\fR is sent when \fBmeta\fR(\fIwin\fR, \fBFALSE\fR) is
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called.
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The \fBnodelay\fR option causes \fBgetch\fR to be a non-blocking call.
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If no input is ready, \fBgetch\fR returns \fBERR\fR. If disabled
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(\fIbf\fR is \fBFALSE\fR), \fBgetch\fR waits until a key is pressed.
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While interpreting an input escape sequence, \fBwgetch\fR sets a timer
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while waiting for the next character. If \fBnotimeout(\fR\fIwin\fR,
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\fBTRUE\fR) is called, then \fBwgetch\fR does not set a timer. The
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purpose of the timeout is to differentiate between sequences received
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from a function key and those typed by a user.
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With the \fBraw\fR and \fBnoraw\fR routines, the terminal is placed
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into or out of raw mode. Raw mode is similar to \fBcbreak\fR mode, in
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that characters typed are immediately passed through to the user
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program. The differences are that in raw mode, the interrupt, quit,
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suspend, and flow control characters are all passed through
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uninterpreted, instead of generating a signal. The behavior of the
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BREAK key depends on other bits in the tty driver that are not set by
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\fBncurses\fR.
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When the \fBnoqiflush\fR routine is used, normal flush of input and
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output queues associated with the \fBINTR\fR, \fBQUIT\fR and
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\fBSUSP\fR characters will not be done [see termio(7)]. When
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\fBqiflush\fR is called, the queues will be flushed when these control
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characters are read.
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The \fBtimeout\fR and \fBwtimeout\fR routines set blocking or
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non-blocking read for a given window. If \fIdelay\fR is negative,
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blocking read is used (\fIi\fR.\fIe\fR., waits indefinitely for
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input). If \fIdelay\fR is zero, then non-blocking read is used
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(\fIi\fR.\fIe\fR., read returns \fBERR\fR if no input is waiting). If
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\fIdelay\fR is positive, then read blocks for \fIdelay\fR
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milliseconds, and returns \fBERR\fR if there is still no input.
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Hence, these routines provide the same functionality as \fBnodelay\fR,
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plus the additional capability of being able to block for only
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\fIdelay\fR milliseconds (where \fIdelay\fR is positive).
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\fBncurses\fR does ``line-breakout optimization'' by looking for
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typeahead periodically while updating the screen. If input is found,
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and it is coming from a tty, the current update is postponed until
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\fBrefresh\fR or \fBdoupdate\fR is called again. This allows faster
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response to commands typed in advance. Normally, the input FILE
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pointer passed to \fBnewterm\fR, or \fBstdin\fR in the case that
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\fBinitscr\fR was used, will be used to do this typeahead checking.
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The \fBtypeahead\fR routine specifies that the file descriptor
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\fIfd\fR is to be used to check for typeahead instead. If \fIfd\fR is
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-1, then no typeahead checking is done.
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.SH RETURN VALUE
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All routines that return an integer return \fBERR\fR upon failure and an
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integer value other than \fBERR\fR upon successful completion, unless otherwise
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noted in the preceding routine descriptions.
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.SH NOTES
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Note that \fBecho\fR, \fBnoecho\fR, \fBhalfdelay\fR, \fBintrflush\fR,
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\fBmeta\fR, \fBnodelay\fR, \fBnotimeout\fR, \fBnoqiflush\fR,
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\fBqiflush\fR, \fBtimeout\fR, and \fBwtimeout\fR may be macros.
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.SH BUGS
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The entry points \fBintrflush\fR, \fBqiflush\fR, \fBnoqiflush\fR, and
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\fBtypeahead\fR are not yet implemented in ncurses 1.8.1. The ncurses
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code does not do typeahead checking during input as SVr4 curses does.
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.SH SEE ALSO
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\fBncurses\fR(3X), \fBcurs_getch\fR(3X), \fBcurs_initscr\fR(3X), \fBtermio\fR(7)
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.\"#
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.\"# The following sets edit modes for GNU EMACS
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.\"# Local Variables:
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.\"# mode:nroff
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.\"# fill-column:79
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.\"# End:
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