Source code:
———
The curses module provides an interface to the curses library, the de-facto standard for portable advanced terminal handling.
While curses is most widely used in the Unix environment, versions are available for Windows, DOS, and possibly other systems as well. This extension module is designed to match the API of ncurses, an open-source curses library hosted on Linux and the BSD variants of Unix.
This is an
. If it is missing from your copy of CPython, look for documentation from your distributor (that is, whoever provided Python to you). If you are the distributor, see
Requirements for optional modules
.
Note
Whenever the documentation mentions a character it can be specified as an integer, a one-character Unicode string or a one-byte byte string. An integer is the code of a single encoded byte, optionally combined with attributes and a color pair, as returned by
.
Whenever the documentation mentions a character string it can be specified as a Unicode string or a byte string.
Note
Whether curses may be used from several threads depends on the underlying library and how it was built. In many implementations, including the default build of ncurses, the screen state is shared and not thread-safe; since the blocking and refresh methods (such as
and
) release the
, unsynchronized use from several threads can then crash the interpreter. Serialize the calls.
See also
Module
Utilities for working with ASCII characters, regardless of your locale settings.
Module
A panel stack extension that adds depth to curses windows.
Module
Editable text widget for curses supporting Emacs-like bindings.
Curses Programming with Python
Tutorial material on using curses with Python, by Andrew Kuchling and Eric Raymond.
Functions
The module curses defines the following exception:
exceptioncurses.error
Exception raised when a curses library function returns an error.
Note
Whenever x or y arguments to a function or a method are optional, they default to the current cursor location. Whenever attr is optional, it defaults to
.
The module curses defines the following functions:
curses.assume_default_colors(fg, bg, /)
Allow use of default values for colors on terminals supporting this feature. Use this to support transparency in your application.
Assign terminal default foreground/background colors to color number -1. So init_pair(x,COLOR_RED,-1) will initialize pair x as red on default background and init_pair(x,-1,COLOR_BLUE) will initialize pair x as default foreground on blue.
Change the definition of the color-pair 0 to (fg,bg).
This is an ncurses extension.
Added in version 3.14.
curses.baudrate()
Return the output speed of the terminal in bits per second. On software terminal emulators it will have a fixed high value. Included for historical reasons; in former times, it was used to write output loops for time delays and occasionally to change interfaces depending on the line speed.
curses.beep()
Emit a short attention sound.
curses.can_change_color()
Return True or False, depending on whether the programmer can change the colors displayed by the terminal.
curses.cbreak()
Enter cbreak mode. In cbreak mode (sometimes called “rare” mode) normal tty line buffering is turned off and characters are available to be read one by one. However, unlike raw mode, special characters (interrupt, quit, suspend, and flow control) retain their effects on the tty driver and calling program. Calling first
then cbreak() leaves the terminal in cbreak mode.
curses.color_content(color_number)
Return the intensity of the red, green, and blue (RGB) components in the color color_number, which must be between 0 and COLORS-1. Return a 3-tuple, containing the R,G,B values for the given color, which will be between 0 (no component) and 1000 (maximum amount of component). Raise an exception if the color is not supported.
curses.color_pair(pair_number)
Return the attribute value for displaying text in the specified color pair. Only the first 256 color pairs are supported. This attribute value can be combined with
,
, and the other A_* attributes.
is the counterpart to this function.
curses.curs_set(visibility)
Set the cursor state. visibility can be set to 0, 1, or 2, for invisible, normal, or very visible. If the terminal supports the visibility requested, return the previous cursor state; otherwise raise an exception. On many terminals, the “visible” mode is an underline cursor and the “very visible” mode is a block cursor.
curses.def_prog_mode()
Save the current terminal mode as the “program” mode, the mode when the running program is using curses. (Its counterpart is the “shell” mode, for when the program is not in curses.) Subsequent calls to
will restore this mode.
curses.def_shell_mode()
Save the current terminal mode as the “shell” mode, the mode when the running program is not using curses. (Its counterpart is the “program” mode, when the program is using curses capabilities.) Subsequent calls to
will restore this mode.
curses.delay_output(ms)
Insert an ms millisecond pause in output.
curses.doupdate()
Update the physical screen. The curses library keeps two data structures, one representing the current physical screen contents and a virtual screen representing the desired next state. The doupdate() function updates the physical screen to match the virtual screen.
The virtual screen may be updated by a
call after write operations such as
have been performed on a window. The normal
call is simply noutrefresh() followed by doupdate(); if you have to update multiple windows, you can speed performance and perhaps reduce screen flicker by issuing noutrefresh() calls on all windows, followed by a single doupdate().
curses.echo()
Enter echo mode. In echo mode, each character input is echoed to the screen as it is entered.
curses.endwin()
De-initialize the library, and return terminal to normal status.
curses.erasechar()
Return the user’s current erase character as a one-byte bytes object. Under Unix operating systems this is a property of the controlling tty of the curses program, and is not set by the curses library itself.
curses.filter()
The filter() routine, if used, must be called before
is called. The effect is that, during the initialization, LINES is set to 1; the capabilities clear, cup, cud, cud1, cuu1, cuu, vpa are disabled; and the home string is set to the value of cr. The effect is that the cursor is confined to the current line, and so are screen updates. This may be used for enabling character-at-a-time line editing without touching the rest of the screen.
curses.flash()
Flash the screen. That is, change it to reverse-video and then change it back in a short interval. Some people prefer such as ‘visible bell’ to the audible attention signal produced by
.
curses.flushinp()
Flush all input buffers. This throws away any typeahead that has been typed by the user and has not yet been processed by the program.
curses.getmouse()
After
returns
to signal a mouse event, this method should be called to retrieve the queued mouse event, represented as a 5-tuple (id,x,y,z,bstate). id is an ID value used to distinguish multiple devices, and x, y, z are the event’s coordinates. (z is currently unused.) bstate is an integer value whose bits will be set to indicate the type of event, and will be the bitwise OR of one or more of the following constants, where n is the button number from 1 to 5:
,
,
,
,
,
,
,
.
Changed in version 3.10: The BUTTON5_* constants are now exposed if they are provided by the underlying curses library.
curses.getsyx()
Return the current coordinates of the virtual screen cursor as a tuple (y,x). If
is currently True, then return (-1,-1).
curses.getwin(file)
Read window-related data stored in the file by an earlier
call. The routine then creates and initializes a new window using that data, returning the new window object. The file argument must be a file object opened for reading in binary mode.
curses.has_colors()
Return True if the terminal can display colors; otherwise, return False.
curses.has_extended_color_support()
Return True if the module supports extended colors; otherwise, return False. Extended color support allows more than 256 color pairs for terminals that support more than 16 colors (for example, xterm-256color).
Extended color support requires ncurses version 6.1 or later.
Added in version 3.10.
curses.has_ic()
Return True if the terminal has insert- and delete-character capabilities. This function is included for historical reasons only, as all modern software terminal emulators have such capabilities.
curses.has_il()
Return True if the terminal has insert- and delete-line capabilities, or can simulate them using scrolling regions. This function is included for historical reasons only, as all modern software terminal emulators have such capabilities.
curses.has_key(ch)
Take a key value ch, and return True if the current terminal type recognizes a key with that value.
curses.halfdelay(tenths)
Used for half-delay mode, which is similar to cbreak mode in that characters typed by the user are immediately available to the program. However, after blocking for tenths tenths of seconds, raise an exception if nothing has been typed. The value of tenths must be a number between 1 and 255. Use
to leave half-delay mode.
curses.init_color(color_number, r, g, b)
Change the definition of a color, taking the number of the color to be changed followed by three RGB values (for the amounts of red, green, and blue components). The value of color_number must be between 0 and COLORS-1. Each of r, g, b, must be a value between 0 and 1000. When init_color() is used, all occurrences of that color on the screen immediately change to the new definition. This function is a no-op on most terminals; it is active only if
returns True.
curses.init_pair(pair_number, fg, bg)
Change the definition of a color-pair. It takes three arguments: the number of the color-pair to be changed, the foreground color number, and the background color number. The value of pair_number must be between 1 and COLOR_PAIRS-1 (the 0 color pair can only be changed by
and
). The value of fg and bg arguments must be between 0 and COLORS-1, or, after calling use_default_colors() or assume_default_colors(), -1. If the color-pair was previously initialized, the screen is refreshed and all occurrences of that color-pair are changed to the new definition.
curses.initscr()
Initialize the library. Return a
object which represents the whole screen.
See
for a caveat about calling it before this function.
Note
If there is an error opening the terminal, the underlying curses library may cause the interpreter to exit.
curses.intrflush(flag)
If flag is True, pressing an interrupt key (interrupt, break, or quit) will flush all output in the terminal driver queue. If flag is False, no flushing is done.
curses.is_term_resized(nlines, ncols)
Return True if
would modify the window structure, False otherwise.
curses.isendwin()
Return True if
has been called (that is, the curses library has been deinitialized).
curses.keyname(k)
Return the name of the key numbered k as a bytes object. The name of a key generating printable ASCII character is the key’s character. The name of a control-key combination is a two-byte bytes object consisting of a caret (b'^') followed by the corresponding printable ASCII character. The name of an alt-key combination (128–255) is a bytes object consisting of the prefix b'M-' followed by the name of the corresponding ASCII character.
Raise a
if k is negative.
curses.killchar()
Return the user’s current line kill character as a one-byte bytes object. Under Unix operating systems this is a property of the controlling tty of the curses program, and is not set by the curses library itself.
curses.longname()
Return a bytes object containing the terminfo long name field describing the current terminal. The maximum length of a verbose description is 128 characters. It is defined only after the call to
.
curses.meta(flag)
If flag is True, allow 8-bit characters to be input. If flag is False, allow only 7-bit chars.
curses.mouseinterval(interval)
Set the maximum time in milliseconds that can elapse between press and release events in order for them to be recognized as a click, and return the previous interval value. The default value is 166 milliseconds, or one sixth of a second. Use a negative interval to obtain the interval value without changing it.
curses.mousemask(mousemask)
Set the mouse events to be reported, and return a tuple (availmask,oldmask). availmask indicates which of the specified mouse events can be reported; on complete failure it returns 0. oldmask is the previous value of the mouse event mask. If this function is never called, no mouse events are ever reported.
curses.napms(ms)
Sleep for ms milliseconds.
curses.newpad(nlines, ncols)
Create and return a pointer to a new pad data structure with the given number of lines and columns. Return a pad as a window object.
A pad is like a window, except that it is not restricted by the screen size, and is not necessarily associated with a particular part of the screen. Pads can be used when a large window is needed, and only a part of the window will be on the screen at one time. Automatic refreshes of pads (such as from scrolling or echoing of input) do not occur. The
and
methods of a pad require 6 arguments to specify the part of the pad to be displayed and the location on the screen to be used for the display. The arguments are pminrow, pmincol, sminrow, smincol, smaxrow, smaxcol; the p arguments refer to the upper-left corner of the pad region to be displayed and the s arguments define a clipping box on the screen within which the pad region is to be displayed.
curses.newwin(nlines, ncols)
curses.newwin(nlines, ncols, begin_y, begin_x)Return a new
, whose left-upper corner is at (begin_y,begin_x), and whose height/width is nlines/ncols.
By default, the window will extend from the specified position to the lower right corner of the screen.
curses.nl(flag=True)
Enter newline mode. This mode translates the return key into newline on input, and translates newline into return and line-feed on output. Newline mode is initially on.
If flag is False, the effect is the same as calling
.
curses.nocbreak()
Leave cbreak mode. Return to normal “cooked” mode with line buffering.
curses.noecho()
Leave echo mode. Echoing of input characters is turned off.
curses.nonl()
Leave newline mode. Disable translation of return into newline on input, and disable low-level translation of newline into newline/return on output (but this does not change the behavior of addch('\n'), which always does the equivalent of return and line feed on the virtual screen). With translation off, curses can sometimes speed up vertical motion a little; also, it will be able to detect the return key on input.
curses.noqiflush()
When the noqiflush() routine is used, normal flush of input and output queues associated with the INTR, QUIT and SUSP characters will not be done. You may want to call noqiflush() in a signal handler if you want output to continue as though the interrupt had not occurred, after the handler exits.
curses.noraw()
Leave raw mode. Return to normal “cooked” mode with line buffering.
curses.pair_content(pair_number)
Return a tuple (fg,bg) containing the colors for the requested color pair. The value of pair_number must be between 0 and COLOR_PAIRS-1.
curses.pair_number(attr)
Return the number of the color-pair set by the attribute value attr.
is the counterpart to this function.
curses.putp(str)
Equivalent to tputs(str,1,putchar); emit the value of a specified terminfo capability, a bytes object, for the current terminal. Note that the output of putp() always goes to standard output.
(or
) must be called first.
curses.qiflush([flag])
If flag is False, the effect is the same as calling
. If flag is True, or no argument is provided, the queues will be flushed when these control characters are read.
curses.raw()
Enter raw mode. In raw mode, normal line buffering and processing of interrupt, quit, suspend, and flow control keys are turned off; characters are presented to curses input functions one by one.
curses.reset_prog_mode()
Restore the terminal to “program” mode, as previously saved by
.
curses.reset_shell_mode()
Restore the terminal to “shell” mode, as previously saved by
.
curses.resetty()
Restore the state of the terminal modes to what it was at the last call to
.
curses.resize_term(nlines, ncols)
Backend function used by
, performing most of the work; when resizing the windows, resize_term() blank-fills the areas that are extended. The calling application should fill in these areas with appropriate data. The resize_term() function attempts to resize all windows. However, due to the calling convention of pads, it is not possible to resize these without additional interaction with the application.
curses.resizeterm(nlines, ncols)
Resize the standard and current windows to the specified dimensions, and adjusts other bookkeeping data used by the curses library that record the window dimensions (in particular the SIGWINCH handler).
curses.savetty()
Save the current state of the terminal modes in a buffer, usable by
.
curses.get_escdelay()
Retrieves the value set by
.
Added in version 3.9.
curses.set_escdelay(ms)
Sets the number of milliseconds to wait after reading an escape character, to distinguish between an individual escape character entered on the keyboard from escape sequences sent by cursor and function keys.
Added in version 3.9.
curses.get_tabsize()
Retrieves the value set by
.
Added in version 3.9.
curses.set_tabsize(size)
Sets the number of columns used by the curses library when converting a tab character to spaces as it adds the tab to a window.
Added in version 3.9.
curses.setsyx(y, x)
Set the virtual screen cursor to y, x. If y and x are both -1, then
is set True.
curses.setupterm(term=None, fd=-1)
Initialize the terminal. term is a string giving the terminal name, or None; if omitted or None, the value of the TERM environment variable will be used. fd is the file descriptor to which any initialization sequences will be sent; if not supplied or -1, the file descriptor for sys.stdout will be used.
Raise a
if the terminal could not be found or its terminfo database entry could not be read. If the terminal has already been initialized, this function has no effect.
Note
Calling
after setupterm() leaks the terminal that setupterm() allocated: the curses library keeps only a single current terminal and does not free the previously allocated one.
curses.start_color()
Must be called if the programmer wants to use colors, and before any other color manipulation routine is called. It is good practice to call this routine right after
.
start_color() initializes eight basic colors (black, red, green, yellow, blue, magenta, cyan, and white), and two global variables in the curses module,
and
, containing the maximum number of colors and color-pairs the terminal can support. It also restores the colors on the terminal to the values they had when the terminal was just turned on.
curses.termattrs()
Return a logical OR of all video attributes supported by the terminal. This information is useful when a curses program needs complete control over the appearance of the screen.
curses.termname()
Return the value of the environment variable TERM, as a bytes object, truncated to 14 characters.
curses.tigetflag(capname)
Return the value of the Boolean capability corresponding to the terminfo capability name capname as an integer. Return the value -1 if capname is not a Boolean capability, or 0 if it is canceled or absent from the terminal description.
(or
) must be called first.
curses.tigetnum(capname)
Return the value of the numeric capability corresponding to the terminfo capability name capname as an integer. Return the value -2 if capname is not a numeric capability, or -1 if it is canceled or absent from the terminal description.
(or
) must be called first.
curses.tigetstr(capname)
Return the value of the string capability corresponding to the terminfo capability name capname as a bytes object. Return None if capname is not a terminfo “string capability”, or is canceled or absent from the terminal description.
(or
) must be called first.
curses.tparm(str[, ...])
Instantiate the bytes object str with the supplied parameters, where str should be a parameterized byte string obtained from the terminfo database. For example, tparm(tigetstr("cup"),5,3) could result in b'\033[6;4H', the exact result depending on terminal type. Up to nine integer parameters may be supplied.
(or
) must be called first.
curses.typeahead(fd)
Specify that the file descriptor fd be used for typeahead checking. If fd is -1, then no typeahead checking is done.
The curses library does “line-breakout optimization” by looking for typeahead periodically while updating the screen. If input is found, and it is coming from a tty, the current update is postponed until refresh or doupdate is called again, allowing faster response to commands typed in advance. This function allows specifying a different file descriptor for typeahead checking.
curses.unctrl(ch)
Return a bytes object which is a printable representation of the character ch; any attributes and color pair are ignored. Control characters are represented as a caret followed by the character, for example as b'^C'. Printing characters are left as they are.
curses.ungetch(ch)
Push ch so the next
will return it.
ch may be an integer (a key code or the code of an encoded byte), a byte, or a string of length 1 which encodes to a single byte.
Note
Only one ch can be pushed before getch() is called.
curses.update_lines_cols()
Update the
and
module variables. Useful for detecting manual screen resize.
Added in version 3.5.
curses.unget_wch(ch)
Push ch so the next
will return it.
ch may be an integer (a character code, not a key code) or a string of length 1.
Note
Only one ch can be pushed before get_wch() is called.
Added in version 3.3.
curses.ungetmouse(id, x, y, z, bstate)
Push a
event onto the input queue, associating the given state data with it.
curses.use_env(flag)
If used, this function should be called before
or newterm are called. When flag is False, the values of lines and columns specified in the terminfo database will be used, even if environment variables LINES and COLUMNS (used by default) are set, or if curses is running in a window (in which case default behavior would be to use the window size if LINES and COLUMNS are not set).
curses.use_default_colors()
Equivalent to assume_default_colors(-1,-1).
curses.wrapper(func, /, *args, **kwargs)
Initialize curses and call another callable object, func, which should be the rest of your curses-using application. If the application raises an exception, this function will restore the terminal to a sane state before re-raising the exception and generating a traceback. The callable object func is then passed the main window ‘stdscr’ as its first argument, followed by any other arguments passed to wrapper(). Before calling func, wrapper() turns on cbreak mode, turns off echo, enables the terminal keypad, and initializes colors if the terminal has color support. On exit (whether normally or by exception) it restores cooked mode, turns on echo, and disables the terminal keypad.
Window objects
classcurses.window
Window objects, as returned by
and
above, have the following methods and attributes:
window.addch(ch[, attr])
window.addch(y, x, ch[, attr])Paint character ch at (y,x) with attributes attr, overwriting any character previously painted at that location. By default, the character position and attributes are the current settings for the window object.
Note
Writing outside the window, subwindow, or pad raises a
. Attempting to write to the lower-right corner of a window, subwindow, or pad will cause an exception to be raised after the character is printed.
window.addnstr(str, n[, attr])
window.addnstr(y, x, str, n[, attr])Paint at most n characters of the character string str at (y,x) with attributes attr, overwriting anything previously on the display.
window.addstr(str[, attr])
window.addstr(y, x, str[, attr])Paint the character string str at (y,x) with attributes attr, overwriting anything previously on the display.
Note
Writing outside the window, subwindow, or pad raises
. Attempting to write to the lower-right corner of a window, subwindow, or pad will cause an exception to be raised after the string is printed.
A bug in ncurses, the backend for this Python module, could cause segfaults when resizing windows. This was fixed in ncurses-6.1-20190511. If you are stuck with an earlier ncurses, you can avoid triggering it by not calling addstr() with a str that has embedded newlines; instead, call addstr() separately for each line.
window.attroff(attr)
Remove attribute attr from the “background” set applied to all writes to the current window.
window.attron(attr)
Add attribute attr to the “background” set applied to all writes to the current window.
window.attrset(attr)
Set the “background” set of attributes to attr. This set is initially 0 (no attributes).
window.bkgd(ch[, attr])
Set the background property of the window to the character ch, with attributes attr. The change is then applied to every character position in that window:
The attribute of every character in the window is changed to the new background attribute.
Wherever the former background character appears, it is changed to the new background character.
window.bkgdset(ch[, attr])
Set the window’s background. A window’s background consists of a character and any combination of attributes. The attribute part of the background is combined (OR’ed) with all non-blank characters that are written into the window. Both the character and attribute parts of the background are combined with the blank characters. The background becomes a property of the character and moves with the character through any scrolling and insert/delete line/character operations.
window.border([ls[, rs[, ts[, bs[, tl[, tr[, bl[, br]]]]]]]])
Draw a border around the edges of the window. Each parameter specifies the character to use for a specific part of the border; see the table below for more details.
Note
A 0 value for any parameter will cause the default character to be used for that parameter. Keyword parameters can not be used. The defaults are listed in this table:
Parameter
Description
Default value
ls
Left side
rs
Right side
ts
Top
bs
Bottom
tl
Upper-left corner
tr
Upper-right corner
bl
Bottom-left corner
br
Bottom-right corner
window.box([vertch, horch])
Similar to
, but both ls and rs are vertch and both ts and bs are horch. The default corner characters are always used by this function.
window.chgat(attr)
window.chgat(num, attr)window.chgat(y, x, attr)window.chgat(y, x, num, attr)Set the attributes of num characters at the current cursor position, or at position (y,x) if supplied. If num is not given or is -1, the attribute will be set on all the characters to the end of the line. This function moves cursor to position (y,x) if supplied. The changed line will be touched using the
method so that the contents will be redisplayed by the next window refresh.
window.clear()
Like
, but also cause the whole window to be repainted upon next call to
.
window.clearok(flag)
If flag is True, the next call to
will clear the window completely.
window.clrtobot()
Erase from cursor to the end of the window: all lines below the cursor are deleted, and then the equivalent of
is performed.
window.clrtoeol()
Erase from cursor to the end of the line.
window.cursyncup()
Update the current cursor position of all the ancestors of the window to reflect the current cursor position of the window.
window.delch([y, x])
Delete the character under the cursor, or at (y,x) if specified. All characters to the right on the same line are shifted one position left.
window.deleteln()
Delete the line under the cursor. All following lines are moved up by one line.
window.derwin(begin_y, begin_x)
window.derwin(nlines, ncols, begin_y, begin_x)An abbreviation for “derive window”, derwin() is the same as calling
, except that begin_y and begin_x are relative to the origin of the window, rather than relative to the entire screen. Return a window object for the derived window.
window.echochar(ch[, attr])
Add character ch with attribute attr, and immediately call
on the window.
window.enclose(y, x)
Test whether the given pair of screen-relative character-cell coordinates are enclosed by the given window, returning True or False. It is useful for determining what subset of the screen windows enclose the location of a mouse event.
Changed in version 3.10: Previously it returned 1 or 0 instead of True or False.
window.encoding
Encoding used to encode the string arguments of the methods and to decode their results on a build without wide-character support. The encoding attribute is inherited from the parent window when a subwindow is created, for example with
. By default, current locale encoding is used (see
).
Added in version 3.3.
window.erase()
Clear the window.
window.getbegyx()
Return a tuple (y,x) of coordinates of upper-left corner.
window.getbkgd()
Return the given window’s current background character/attribute pair. Its components can be extracted like those of
.
window.getch([y, x])
Read a key press, after moving the cursor to y, x if specified, and return it as an integer. The window is refreshed first if it is not a pad and was modified since the last refresh. Wait until a key is pressed, or return -1 if the read is non-blocking or times out (see
and
).
An ordinary key is returned as the code of a single byte of its encoding in the current locale, so a character encoded with several bytes takes several calls. For example, in a UTF-8 locale 'é' is read as 195, then 169. Use
to read it as a single character.
In keypad mode (see
) function keys and other special keys are returned as one of the
, which cannot be mistaken for an ordinary key. Otherwise, or if their escape sequence does not arrive in time (see
and
), their bytes are returned one at a time.
In echo mode (see
) the key is added to the window as by
; special keys are not echoed.
window.get_wch([y, x])
Read a key press, after moving the cursor to y, x if specified, and return it as a one-character
. The window is refreshed first if it is not a pad and was modified since the last refresh. Wait until a key is pressed, or raise
if the read is non-blocking or times out (see
and
).
In keypad mode (see
) function keys and other special keys are returned as one of the
, an integer. Otherwise, or if their escape sequence does not arrive in time (see
and
), their characters are returned one at a time.
In echo mode (see
) the key is added to the window as by
; special keys are not echoed.
Added in version 3.3.
window.getkey([y, x])
Read a key press as
does, but return it as a
: an ordinary key as a one-character string, the byte decoded as Latin-1, and a special key as its name, such as 'KEY_UP' (see
). Raise
instead of returning -1 if there is no input.
window.getmaxyx()
Return a tuple (y,x) of the height and width of the window.
window.getparyx()
Return the beginning coordinates of this window relative to its parent window as a tuple (y,x). Return (-1,-1) if this window has no parent.
window.getstr()
window.getstr(n)window.getstr(y, x)window.getstr(y, x, n)Read a line of input from the user, with primitive line editing capacity, after moving the cursor to y, x if specified. Return it as a bytes object, in the encoding of the current locale and without the terminating newline. At most n bytes are read; n defaults to and cannot exceed 2047.
Changed in version 3.14: The maximum value for n was increased from 1023 to 2047.
window.getyx()
Return a tuple (y,x) of current cursor position relative to the window’s upper-left corner.
window.hline(ch, n[, attr])
window.hline(y, x, ch, n[, attr])Display a horizontal line starting at (y,x) with length n consisting of the character ch with attributes attr. The line stops at the right edge of the window if fewer than n cells are available.
window.idcok(flag)
If flag is False, curses no longer considers using the hardware insert/delete character feature of the terminal; if flag is True, use of character insertion and deletion is enabled. When curses is first initialized, use of character insert/delete is enabled by default.
window.idlok(flag)
If flag is True, curses will try to use hardware line editing facilities. Otherwise, curses will not use them.
window.immedok(flag)
If flag is True, any change in the window image automatically causes the window to be refreshed; you no longer have to call
yourself. However, it may degrade performance considerably, due to repeated calls to wrefresh. This option is disabled by default.
window.inch([y, x])
Return the character at the given position in the window. The bottom 8 bits are the character proper and the upper bits are the attributes; extract them with the
and
bit-masks, and the color pair with
. The character byte is the locale-encoded byte of the cell’s character, consistent with
. On a wide-character build, a character that does not fit in a single byte in the current locale has a character byte of 0; use instr() to read such characters.
window.insch(ch[, attr])
window.insch(y, x, ch[, attr])Insert character ch with attributes attr before the character under the cursor, or at (y,x) if specified. All characters to the right of the cursor are shifted one position right, with the rightmost character on the line being lost. The cursor position does not change.
window.insdelln(nlines)
Insert nlines lines into the specified window above the current line. The nlines bottom lines are lost. For negative nlines, delete nlines lines starting with the one under the cursor, and move the remaining lines up. The bottom nlines lines are cleared. The current cursor position remains the same.
window.insertln()
Insert a blank line under the cursor. All following lines are moved down by one line.
window.insnstr(str, n[, attr])
window.insnstr(y, x, str, n[, attr])Insert a character string (as many characters as will fit on the line) before the character under the cursor, up to n characters. If n is zero or negative, the entire string is inserted. All characters to the right of the cursor are shifted right, with the rightmost characters on the line being lost. The cursor position does not change (after moving to y, x, if specified).
window.insstr(str[, attr])
window.insstr(y, x, str[, attr])Insert a character string (as many characters as will fit on the line) before the character under the cursor. All characters to the right of the cursor are shifted right, with the rightmost characters on the line being lost. The cursor position does not change (after moving to y, x, if specified).
window.instr([n])
window.instr(y, x[, n])Read the text of the window from the current cursor position, or from y, x if specified, to the end of the line, and return it as a bytes object, in the encoding of the current locale. Attributes and color pairs are stripped. At most n bytes are read; n defaults to and cannot exceed 2047.
Changed in version 3.14: The maximum value for n was increased from 1023 to 2047.
window.is_linetouched(line)
Return True if the specified line was modified since the last call to
; otherwise return False. Raise a
exception if line is not valid for the given window.
window.is_wintouched()
Return True if the specified window was modified since the last call to
; otherwise return False.
window.keypad(flag)
If flag is True, escape sequences generated by some keys (keypad, function keys) will be interpreted by curses. If flag is False, escape sequences will be left as is in the input stream. Keypad mode is disabled by default, but
enables it for the main window.
window.leaveok(flag)
If flag is True, cursor is left where it is on update, instead of being at “cursor position.” This reduces cursor movement where possible.
If flag is False, cursor will always be at “cursor position” after an update.
window.move(new_y, new_x)
Move cursor to (new_y,new_x).
window.mvderwin(y, x)
Move the window inside its parent window. The screen-relative parameters of the window are not changed. This routine is used to display different parts of the parent window at the same physical position on the screen.
window.mvwin(new_y, new_x)
Move the window so its upper-left corner is at (new_y,new_x).
Moving the window so that any part of it would be off the screen is an error: the window is not moved and
is raised.
window.nodelay(flag)
If flag is True,
will be non-blocking.
window.notimeout(flag)
If flag is True, escape sequences will not be timed out.
If flag is False, after a few milliseconds, an escape sequence will not be interpreted, and will be left in the input stream as is.
window.noutrefresh()
window.noutrefresh(pminrow, pmincol, sminrow, smincol, smaxrow, smaxcol)Mark for refresh but wait. This function updates the data structure representing the desired state of the window, but does not force an update of the physical screen. To accomplish that, call
.
The 6 arguments can only be specified, and are then required, when the window is a pad created with
; they have the same meaning as for
.
window.overlay(destwin[, sminrow, smincol, dminrow, dmincol, dmaxrow, dmaxcol])
Overlay the window on top of destwin. The windows need not be the same size, only the overlapping region is copied. This copy is non-destructive, which means that the current background character does not overwrite the old contents of destwin.
To get fine-grained control over the copied region, the second form of overlay() can be used. sminrow and smincol are the upper-left coordinates of the source window, and the other variables mark a rectangle in the destination window.
window.overwrite(destwin[, sminrow, smincol, dminrow, dmincol, dmaxrow, dmaxcol])
Overwrite the window on top of destwin. The windows need not be the same size, in which case only the overlapping region is copied. This copy is destructive, which means that the current background character overwrites the old contents of destwin.
To get fine-grained control over the copied region, the second form of overwrite() can be used. sminrow and smincol are the upper-left coordinates of the source window, the other variables mark a rectangle in the destination window.
window.putwin(file)
Write all data associated with the window into the provided file object. This information can be later retrieved using the
function.
window.redrawln(beg, num)
Indicate that the num screen lines, starting at line beg, are corrupted and should be completely redrawn on the next
call.
window.redrawwin()
Touch the entire window, causing it to be completely redrawn on the next
call.
window.refresh([pminrow, pmincol, sminrow, smincol, smaxrow, smaxcol])
Update the display immediately (sync actual screen with previous drawing/deleting methods).
The 6 arguments can only be specified, and are then required, when the window is a pad created with
. The additional parameters are needed to indicate what part of the pad and screen are involved. pminrow and pmincol specify the upper-left corner of the rectangle to be displayed in the pad. sminrow, smincol, smaxrow, and smaxcol specify the edges of the rectangle to be displayed on the screen. The lower-right corner of the rectangle to be displayed in the pad is calculated from the screen coordinates, since the rectangles must be the same size. Both rectangles must be entirely contained within their respective structures. Negative values of pminrow, pmincol, sminrow, or smincol are treated as if they were zero.
window.resize(nlines, ncols)
Reallocate storage for a curses window to adjust its dimensions to the specified values. If either dimension is larger than the current values, the window’s data is filled with blanks that have the current background rendition (as set by
) merged into them.
window.scroll([lines=1])
Scroll the screen or scrolling region. Scroll upward by lines lines if lines is positive, or downward if it is negative. Scrolling has no effect unless it has been enabled for the window with
.
window.scrollok(flag)
Control what happens when the cursor of a window is moved off the edge of the window or scrolling region, either as a result of a newline action on the bottom line, or typing the last character of the last line. If flag is False, the cursor is left on the bottom line. If flag is True, the window is scrolled up one line. Note that in order to get the physical scrolling effect on the terminal, it is also necessary to call
.
window.setscrreg(top, bottom)
Set the scrolling region from line top to line bottom. All scrolling actions will take place in this region.
window.standend()
Turn off the standout attribute. On some terminals this has the side effect of turning off all attributes.
window.standout()
Turn on attribute A_STANDOUT.
window.subpad(begin_y, begin_x)
window.subpad(nlines, ncols, begin_y, begin_x)Return a sub-pad, whose upper-left corner is at (begin_y,begin_x), and whose width/height is ncols/nlines. The coordinates are relative to the parent pad (unlike
, which uses screen coordinates). This method is only available for pads created with
.
window.subwin(begin_y, begin_x)
window.subwin(nlines, ncols, begin_y, begin_x)Return a sub-window, whose upper-left corner is at the screen-relative coordinates (begin_y,begin_x), and whose width/height is ncols/nlines.
By default, the sub-window will extend from the specified position to the lower right corner of the window.
window.syncdown()
Touch each location in the window that has been touched in any of its ancestor windows. This routine is called by
, so it should almost never be necessary to call it manually.
window.syncok(flag)
If flag is True, then
is called automatically whenever there is a change in the window.
window.syncup()
Touch all locations in ancestors of the window that have been changed in the window.
window.timeout(delay)
Set blocking or non-blocking read behavior for the window. If delay is negative, blocking read is used (which will wait indefinitely for input). If delay is zero, then non-blocking read is used, and
will return -1 if no input is waiting. If delay is positive, then getch() will block for delay milliseconds, and return -1 if there is still no input at the end of that time.
window.touchline(start, count[, changed])
Pretend count lines have been changed, starting with line start. If changed is supplied, it specifies whether the affected lines are marked as having been changed (changed=True) or unchanged (changed=False).
window.touchwin()
Pretend the whole window has been changed, for purposes of drawing optimizations.
window.untouchwin()
Mark all lines in the window as unchanged since the last call to
.
window.vline(ch, n[, attr])
window.vline(y, x, ch, n[, attr])Display a vertical line starting at (y,x) with length n consisting of the character ch with attributes attr.
Constants
The curses module defines the following data members:
curses.ERR
Some curses routines that return an integer, such as
, return
upon failure.
curses.OK
Some curses routines that return an integer, such as
, return
upon success.
curses.version
A bytes object representing the current version of the module.
curses.ncurses_version
A named tuple containing the three components of the ncurses library version: major, minor, and patch. All values are integers. The components can also be accessed by name, so curses.ncurses_version[0] is equivalent to curses.ncurses_version.major and so on.
Availability: if the ncurses library is used.
Added in version 3.8.
curses.COLORS
The maximum number of colors the terminal can support. It is defined only after the call to
.
curses.COLOR_PAIRS
The maximum number of color pairs the terminal can support. It is defined only after the call to
.
curses.COLS
The width of the screen, that is, the number of columns. It is defined only after the call to
. Updated by
,
and
.
curses.LINES
The height of the screen, that is, the number of lines. It is defined only after the call to
. Updated by
,
and
.
Some constants are available to specify character cell attributes. The exact constants available are system dependent.
Attribute
Meaning
curses.A_ALTCHARSET
Alternate character set mode
curses.A_BLINK
Blink mode
curses.A_BOLD
Bold mode
curses.A_DIM
Dim mode
curses.A_INVIS
Invisible or blank mode
curses.A_ITALIC
Italic mode
curses.A_NORMAL
Normal attribute
curses.A_PROTECT
Protected mode
curses.A_REVERSE
Reverse background and foreground colors
curses.A_STANDOUT
Standout mode
curses.A_UNDERLINE
Underline mode
curses.A_HORIZONTAL
Horizontal highlight
curses.A_LEFT
Left highlight
curses.A_LOW
Low highlight
curses.A_RIGHT
Right highlight
curses.A_TOP
Top highlight
curses.A_VERTICAL
Vertical highlight
Added in version 3.7: A_ITALIC was added.
Several constants are available to extract corresponding attributes returned by some methods.
Bit-mask
Meaning
curses.A_ATTRIBUTES
Bit-mask to extract attributes
curses.A_CHARTEXT
Bit-mask to extract a character
curses.A_COLOR
Bit-mask to extract color-pair field information
Keys are referred to by integer constants with names starting with KEY_. The exact keycaps available are system dependent.
Key constant
Key
curses.KEY_MIN
Minimum key value
curses.KEY_BREAK
Break key (unreliable)
curses.KEY_DOWN
Down-arrow
curses.KEY_UP
Up-arrow
curses.KEY_LEFT
Left-arrow
curses.KEY_RIGHT
Right-arrow
curses.KEY_HOME
Home key (upward+left arrow)
curses.KEY_BACKSPACE
Backspace (unreliable)
curses.KEY_F0
Function keys. Up to 64 function keys are supported.
curses.KEY_Fn
Value of function key n
curses.KEY_DL
Delete line
curses.KEY_IL
Insert line
curses.KEY_DC
Delete character
curses.KEY_IC
Insert char or enter insert mode
curses.KEY_EIC
Exit insert char mode
curses.KEY_CLEAR
Clear screen
curses.KEY_EOS
Clear to end of screen
curses.KEY_EOL
Clear to end of line
curses.KEY_SF
Scroll 1 line forward
curses.KEY_SR
Scroll 1 line backward (reverse)
curses.KEY_NPAGE
Next page
curses.KEY_PPAGE
Previous page
curses.KEY_STAB
Set tab
curses.KEY_CTAB
Clear tab
curses.KEY_CATAB
Clear all tabs
curses.KEY_ENTER
Enter or send (unreliable)
curses.KEY_SRESET
Soft (partial) reset (unreliable)
curses.KEY_RESET
Reset or hard reset (unreliable)
curses.KEY_PRINT
curses.KEY_LL
Home down or bottom (lower left)
curses.KEY_A1
Upper left of keypad
curses.KEY_A3
Upper right of keypad
curses.KEY_B2
Center of keypad
curses.KEY_C1
Lower left of keypad
curses.KEY_C3
Lower right of keypad
curses.KEY_BTAB
Back tab
curses.KEY_BEG
Beg (beginning)
curses.KEY_CANCEL
Cancel
curses.KEY_CLOSE
Close
curses.KEY_COMMAND
Cmd (command)
curses.KEY_COPY
Copy
curses.KEY_CREATE
Create
curses.KEY_END
End
curses.KEY_EXIT
Exit
curses.KEY_FIND
Find
curses.KEY_HELP
Help
curses.KEY_MARK
Mark
curses.KEY_MESSAGE
Message
curses.KEY_MOVE
Move
curses.KEY_NEXT
Next
curses.KEY_OPEN
Open
curses.KEY_OPTIONS
Options
curses.KEY_PREVIOUS
Prev (previous)
curses.KEY_REDO
Redo
curses.KEY_REFERENCE
Ref (reference)
curses.KEY_REFRESH
Refresh
curses.KEY_REPLACE
Replace
curses.KEY_RESTART
Restart
curses.KEY_RESUME
Resume
curses.KEY_SAVE
Save
curses.KEY_SBEG
Shifted Beg (beginning)
curses.KEY_SCANCEL
Shifted Cancel
curses.KEY_SCOMMAND
Shifted Command
curses.KEY_SCOPY
Shifted Copy
curses.KEY_SCREATE
Shifted Create
curses.KEY_SDC
Shifted Delete char
curses.KEY_SDL
Shifted Delete line
curses.KEY_SELECT
Select
curses.KEY_SEND
Shifted End
curses.KEY_SEOL
Shifted Clear line
curses.KEY_SEXIT
Shifted Exit
curses.KEY_SFIND
Shifted Find
curses.KEY_SHELP
Shifted Help
curses.KEY_SHOME
Shifted Home
curses.KEY_SIC
Shifted Input
curses.KEY_SLEFT
Shifted Left arrow
curses.KEY_SMESSAGE
Shifted Message
curses.KEY_SMOVE
Shifted Move
curses.KEY_SNEXT
Shifted Next
curses.KEY_SOPTIONS
Shifted Options
curses.KEY_SPREVIOUS
Shifted Prev
curses.KEY_SPRINT
Shifted Print
curses.KEY_SREDO
Shifted Redo
curses.KEY_SREPLACE
Shifted Replace
curses.KEY_SRIGHT
Shifted Right arrow
curses.KEY_SRSUME
Shifted Resume
curses.KEY_SSAVE
Shifted Save
curses.KEY_SSUSPEND
Shifted Suspend
curses.KEY_SUNDO
Shifted Undo
curses.KEY_SUSPEND
Suspend
curses.KEY_UNDO
Undo
curses.KEY_MOUSE
Mouse event has occurred
curses.KEY_RESIZE
Terminal resize event
curses.KEY_MAX
Maximum key value
On VT100s and their software emulations, such as X terminal emulators, there are normally at least four function keys (
, KEY_F2, KEY_F3, KEY_F4) available, and the arrow keys mapped to
,
,
and
in the obvious way. If your machine has a PC keyboard, it is safe to expect arrow keys and twelve function keys (older PC keyboards may have only ten function keys); also, the following keypad mappings are standard:
Keycap
Constant
Insert
KEY_IC
Delete
KEY_DC
Home
KEY_HOME
End
KEY_END
Page Up
KEY_PPAGE
Page Down
KEY_NPAGE
The following table lists characters from the alternate character set. These are inherited from the VT100 terminal, and will generally be available on software emulations such as X terminals. When there is no graphic available, curses falls back on a crude printable ASCII approximation.
Note
These are available only after
has been called.
ACS code
Meaning
curses.ACS_BBSS
alternate name for upper-right corner
curses.ACS_BLOCK
solid square block
curses.ACS_BOARD
board of squares
curses.ACS_BSBS
alternate name for horizontal line
curses.ACS_BSSB
alternate name for upper-left corner
curses.ACS_BSSS
alternate name for top tee
curses.ACS_BTEE
bottom tee
curses.ACS_BULLET
bullet
curses.ACS_CKBOARD
checker board (stipple)
curses.ACS_DARROW
arrow pointing down
curses.ACS_DEGREE
degree symbol
curses.ACS_DIAMOND
diamond
curses.ACS_GEQUAL
greater-than-or-equal-to
curses.ACS_HLINE
horizontal line
curses.ACS_LANTERN
lantern symbol
curses.ACS_LARROW
left arrow
curses.ACS_LEQUAL
less-than-or-equal-to
curses.ACS_LLCORNER
lower-left corner
curses.ACS_LRCORNER
lower-right corner
curses.ACS_LTEE
left tee
curses.ACS_NEQUAL
not-equal sign
curses.ACS_PI
letter pi
curses.ACS_PLMINUS
plus-or-minus sign
curses.ACS_PLUS
big plus sign
curses.ACS_RARROW
right arrow
curses.ACS_RTEE
right tee
curses.ACS_S1
scan line 1
curses.ACS_S3
scan line 3
curses.ACS_S7
scan line 7
curses.ACS_S9
scan line 9
curses.ACS_SBBS
alternate name for lower-right corner
curses.ACS_SBSB
alternate name for vertical line
curses.ACS_SBSS
alternate name for right tee
curses.ACS_SSBB
alternate name for lower-left corner
curses.ACS_SSBS
alternate name for bottom tee
curses.ACS_SSSB
alternate name for left tee
curses.ACS_SSSS
alternate name for crossover or big plus
curses.ACS_STERLING
pound sterling
curses.ACS_TTEE
top tee
curses.ACS_UARROW
up arrow
curses.ACS_ULCORNER
upper-left corner
curses.ACS_URCORNER
upper-right corner
curses.ACS_VLINE
vertical line
The following table lists mouse button constants used by
:
Mouse button constant
Meaning
curses.BUTTONn_PRESSED
Mouse button n pressed
curses.BUTTONn_RELEASED
Mouse button n released
curses.BUTTONn_CLICKED
Mouse button n clicked
curses.BUTTONn_DOUBLE_CLICKED
Mouse button n double clicked
curses.BUTTONn_TRIPLE_CLICKED
Mouse button n triple clicked
curses.BUTTON_SHIFT
Shift was down during button state change
curses.BUTTON_CTRL
Control was down during button state change
curses.BUTTON_ALT
Alt was down during button state change
Changed in version 3.10: The BUTTON5_* constants are now exposed if they are provided by the underlying curses library.
The following table lists the predefined colors:
Constant
Color
curses.COLOR_BLACK
Black
curses.COLOR_BLUE
Blue
curses.COLOR_CYAN
Cyan (light greenish blue)
curses.COLOR_GREEN
Green
curses.COLOR_MAGENTA
Magenta (purplish red)
curses.COLOR_RED
Red
curses.COLOR_WHITE
White
curses.COLOR_YELLOW
Yellow
curses.textpad — Text input widget for curses programs
The curses.textpad module provides a
class that handles elementary text editing in a curses window, supporting a set of keybindings resembling those of Emacs (thus, also of Netscape Navigator, BBedit 6.x, FrameMaker, and many other programs). The module also provides a rectangle-drawing function useful for framing text boxes or for other purposes.
The module curses.textpad defines the following function:
curses.textpad.rectangle(win, uly, ulx, lry, lrx)
Draw a rectangle. The first argument must be a window object; the remaining arguments are coordinates relative to that window. The second and third arguments are the y and x coordinates of the upper-left corner of the rectangle to be drawn; the fourth and fifth arguments are the y and x coordinates of the lower-right corner. The rectangle will be drawn using VT100/IBM PC forms characters on terminals that make this possible (including xterm and most other software terminal emulators). Otherwise it will be drawn with ASCII dashes, vertical bars, and plus signs.
Textbox objects
You can instantiate a
object as follows:
classcurses.textpad.Textbox(win, insert_mode=False)
Return a textbox widget object. The win argument should be a curses
object in which the textbox is to be contained. If insert_mode is true, the textbox inserts typed characters, shifting existing text to the right, rather than overwriting it. The edit cursor of the textbox is initially located at the upper-left corner of the containing window, with coordinates (0,0). The instance’s
flag is initially on.
Textbox objects have the following methods:
edit(validate=None)
This is the entry point you will normally use. It accepts editing keystrokes until one of the termination keystrokes is entered. If validate is supplied, it must be a function. It will be called for each keystroke entered with the keystroke as a parameter; command dispatch is done on the result. If it returns a false value, the keystroke is ignored. This method returns the window contents as a string; whether blanks in the window are included is affected by the
attribute.
do_command(ch)
Process a single command keystroke. Returns 1 to continue editing, or 0 if a termination keystroke was processed. Here are the supported special keystrokes:
Keystroke
Action
Control-A
Go to left edge of window.
Control-B
Cursor left, wrapping to previous line if appropriate.
Control-D
Delete character under cursor.
Control-E
Go to right edge (stripspaces off) or end of line (stripspaces on).
Control-F
Cursor right, wrapping to next line when appropriate.
Control-G
Terminate, returning the window contents.
Control-H
Delete character backward.
Control-J
Terminate if the window is 1 line, otherwise move to the start of the next line.
Control-K
If line is blank, delete it, otherwise clear to end of line.
Control-L
Refresh screen.
Control-N
Cursor down; move down one line.
Control-O
Insert a blank line at cursor location.
Control-P
Cursor up; move up one line.
Move operations do nothing if the cursor is at an edge where the movement is not possible. The following synonyms are supported where possible:
Constant
Keystroke
Control-B
Control-F
Control-P
Control-N
Control-h
All other keystrokes are treated as a command to insert the given character and move right (with line wrapping).
gather()
Return the window contents as a string; whether blanks in the window are included is affected by the
member.
stripspaces
This attribute is a flag which controls the interpretation of blanks in the window. When it is on, trailing blanks on each line are ignored; any cursor motion that would land the cursor on a trailing blank goes to the end of that line instead, and trailing blanks are stripped when the window contents are gathered.