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1 @c -*-texinfo-*-
2 @c This is part of the GNU Emacs Lisp Reference Manual.
3 @c Copyright (C) 1990-1995, 1998-2015 Free Software Foundation, Inc.
4 @c See the file elisp.texi for copying conditions.
5 @node Positions
6 @chapter Positions
7 @cindex position (in buffer)
8 @cindex buffer position
9
10 A @dfn{position} is the index of a character in the text of a buffer.
11 More precisely, a position identifies the place between two characters
12 (or before the first character, or after the last character), so we can
13 speak of the character before or after a given position. However, we
14 often speak of the character ``at'' a position, meaning the character
15 after that position.
16
17 Positions are usually represented as integers starting from 1, but
18 can also be represented as @dfn{markers}---special objects that
19 relocate automatically when text is inserted or deleted so they stay
20 with the surrounding characters. Functions that expect an argument to
21 be a position (an integer), but accept a marker as a substitute,
22 normally ignore which buffer the marker points into; they convert the
23 marker to an integer, and use that integer, exactly as if you had
24 passed the integer as the argument, even if the marker points to the
25 ``wrong'' buffer. A marker that points nowhere cannot convert to an
26 integer; using it instead of an integer causes an error.
27 @xref{Markers}.
28
29 See also the ``field'' feature (@pxref{Fields}), which provides
30 functions that are used by many cursor-motion commands.
31
32 @menu
33 * Point:: The special position where editing takes place.
34 * Motion:: Changing point.
35 * Excursions:: Temporary motion and buffer changes.
36 * Narrowing:: Restricting editing to a portion of the buffer.
37 @end menu
38
39 @node Point
40 @section Point
41 @cindex point
42
43 @dfn{Point} is a special buffer position used by many editing
44 commands, including the self-inserting typed characters and text
45 insertion functions. Other commands move point through the text
46 to allow editing and insertion at different places.
47
48 Like other positions, point designates a place between two characters
49 (or before the first character, or after the last character), rather
50 than a particular character. Usually terminals display the cursor over
51 the character that immediately follows point; point is actually before
52 the character on which the cursor sits.
53
54 @cindex point with narrowing
55 The value of point is a number no less than 1, and no greater than the
56 buffer size plus 1. If narrowing is in effect (@pxref{Narrowing}), then
57 point is constrained to fall within the accessible portion of the buffer
58 (possibly at one end of it).
59
60 Each buffer has its own value of point, which is independent of the
61 value of point in other buffers. Each window also has a value of point,
62 which is independent of the value of point in other windows on the same
63 buffer. This is why point can have different values in various windows
64 that display the same buffer. When a buffer appears in only one window,
65 the buffer's point and the window's point normally have the same value,
66 so the distinction is rarely important. @xref{Window Point}, for more
67 details.
68
69 @defun point
70 @cindex current buffer position
71 This function returns the value of point in the current buffer,
72 as an integer.
73
74 @need 700
75 @example
76 @group
77 (point)
78 @result{} 175
79 @end group
80 @end example
81 @end defun
82
83 @defun point-min
84 This function returns the minimum accessible value of point in the
85 current buffer. This is normally 1, but if narrowing is in effect, it
86 is the position of the start of the region that you narrowed to.
87 (@xref{Narrowing}.)
88 @end defun
89
90 @defun point-max
91 This function returns the maximum accessible value of point in the
92 current buffer. This is @code{(1+ (buffer-size))}, unless narrowing is
93 in effect, in which case it is the position of the end of the region
94 that you narrowed to. (@xref{Narrowing}.)
95 @end defun
96
97 @defun buffer-end flag
98 This function returns @code{(point-max)} if @var{flag} is greater than
99 0, @code{(point-min)} otherwise. The argument @var{flag} must be a
100 number.
101 @end defun
102
103 @defun buffer-size &optional buffer
104 This function returns the total number of characters in the current
105 buffer. In the absence of any narrowing (@pxref{Narrowing}),
106 @code{point-max} returns a value one larger than this.
107
108 If you specify a buffer, @var{buffer}, then the value is the
109 size of @var{buffer}.
110
111 @example
112 @group
113 (buffer-size)
114 @result{} 35
115 @end group
116 @group
117 (point-max)
118 @result{} 36
119 @end group
120 @end example
121 @end defun
122
123 @node Motion
124 @section Motion
125 @cindex motion by chars, words, lines, lists
126
127 Motion functions change the value of point, either relative to the
128 current value of point, relative to the beginning or end of the buffer,
129 or relative to the edges of the selected window. @xref{Point}.
130
131 @menu
132 * Character Motion:: Moving in terms of characters.
133 * Word Motion:: Moving in terms of words.
134 * Buffer End Motion:: Moving to the beginning or end of the buffer.
135 * Text Lines:: Moving in terms of lines of text.
136 * Screen Lines:: Moving in terms of lines as displayed.
137 * List Motion:: Moving by parsing lists and sexps.
138 * Skipping Characters:: Skipping characters belonging to a certain set.
139 @end menu
140
141 @node Character Motion
142 @subsection Motion by Characters
143
144 These functions move point based on a count of characters.
145 @code{goto-char} is the fundamental primitive; the other functions use
146 that.
147
148 @deffn Command goto-char position
149 This function sets point in the current buffer to the value
150 @var{position}.
151 @c This behavior used to be documented until 2013/08.
152 @ignore
153 If @var{position} is less than 1, it moves point to the beginning of
154 the buffer. If @var{position} is greater than the length of the
155 buffer, it moves point to the end.
156 @end ignore
157
158 If narrowing is in effect, @var{position} still counts from the
159 beginning of the buffer, but point cannot go outside the accessible
160 portion. If @var{position} is out of range, @code{goto-char} moves
161 point to the beginning or the end of the accessible portion.
162
163 When this function is called interactively, @var{position} is the
164 numeric prefix argument, if provided; otherwise it is read from the
165 minibuffer.
166
167 @code{goto-char} returns @var{position}.
168 @end deffn
169
170 @deffn Command forward-char &optional count
171 @c @kindex beginning-of-buffer
172 @c @kindex end-of-buffer
173 This function moves point @var{count} characters forward, towards the
174 end of the buffer (or backward, towards the beginning of the buffer, if
175 @var{count} is negative). If @var{count} is @code{nil}, the default
176 is 1.
177
178 If this attempts to move past the beginning or end of the buffer (or
179 the limits of the accessible portion, when narrowing is in effect), it
180 signals an error with error symbol @code{beginning-of-buffer} or
181 @code{end-of-buffer}.
182
183 In an interactive call, @var{count} is the numeric prefix argument.
184 @end deffn
185
186 @deffn Command backward-char &optional count
187 This is just like @code{forward-char} except that it moves
188 in the opposite direction.
189 @end deffn
190
191 @node Word Motion
192 @subsection Motion by Words
193
194 These functions for parsing words use the syntax table to decide
195 whether a given character is part of a word. @xref{Syntax Tables}.
196
197 @deffn Command forward-word &optional count
198 This function moves point forward @var{count} words (or backward if
199 @var{count} is negative). If @var{count} is omitted or @code{nil}, it
200 defaults to 1.
201
202 ``Moving one word'' means moving until point crosses a
203 word-constituent character and then encounters a word-separator
204 character. However, this function cannot move point past the boundary
205 of the accessible portion of the buffer, or across a field boundary
206 (@pxref{Fields}). The most common case of a field boundary is the end
207 of the prompt in the minibuffer.
208
209 If it is possible to move @var{count} words, without being stopped
210 prematurely by the buffer boundary or a field boundary, the value is
211 @code{t}. Otherwise, the return value is @code{nil} and point stops at
212 the buffer boundary or field boundary.
213
214 If @code{inhibit-field-text-motion} is non-@code{nil},
215 this function ignores field boundaries.
216
217 In an interactive call, @var{count} is specified by the numeric prefix
218 argument.
219 @end deffn
220
221 @deffn Command backward-word &optional count
222 This function is just like @code{forward-word}, except that it moves
223 backward until encountering the front of a word, rather than forward.
224 @end deffn
225
226 @defopt words-include-escapes
227 @c Emacs 19 feature
228 This variable affects the behavior of @code{forward-word} and everything
229 that uses it. If it is non-@code{nil}, then characters in the
230 ``escape'' and ``character quote'' syntax classes count as part of
231 words. Otherwise, they do not.
232 @end defopt
233
234 @defvar inhibit-field-text-motion
235 If this variable is non-@code{nil}, certain motion functions including
236 @code{forward-word}, @code{forward-sentence}, and
237 @code{forward-paragraph} ignore field boundaries.
238 @end defvar
239
240 @node Buffer End Motion
241 @subsection Motion to an End of the Buffer
242 @cindex move to beginning or end of buffer
243
244 To move point to the beginning of the buffer, write:
245
246 @example
247 @group
248 (goto-char (point-min))
249 @end group
250 @end example
251
252 @noindent
253 Likewise, to move to the end of the buffer, use:
254
255 @example
256 @group
257 (goto-char (point-max))
258 @end group
259 @end example
260
261 Here are two commands that users use to do these things. They are
262 documented here to warn you not to use them in Lisp programs, because
263 they set the mark and display messages in the echo area.
264
265 @deffn Command beginning-of-buffer &optional n
266 This function moves point to the beginning of the buffer (or the limits
267 of the accessible portion, when narrowing is in effect), setting the
268 mark at the previous position (except in Transient Mark mode, if
269 the mark is already active, it does not set the mark.)
270
271 If @var{n} is non-@code{nil}, then it puts point @var{n} tenths of the
272 way from the beginning of the accessible portion of the buffer. In an
273 interactive call, @var{n} is the numeric prefix argument, if provided;
274 otherwise @var{n} defaults to @code{nil}.
275
276 @strong{Warning:} Don't use this function in Lisp programs!
277 @end deffn
278
279 @deffn Command end-of-buffer &optional n
280 This function moves point to the end of the buffer (or the limits of
281 the accessible portion, when narrowing is in effect), setting the mark
282 at the previous position (except in Transient Mark mode when the mark
283 is already active). If @var{n} is non-@code{nil}, then it puts point
284 @var{n} tenths of the way from the end of the accessible portion of
285 the buffer.
286
287 In an interactive call, @var{n} is the numeric prefix argument,
288 if provided; otherwise @var{n} defaults to @code{nil}.
289
290 @strong{Warning:} Don't use this function in Lisp programs!
291 @end deffn
292
293 @node Text Lines
294 @subsection Motion by Text Lines
295 @cindex lines
296
297 Text lines are portions of the buffer delimited by newline characters,
298 which are regarded as part of the previous line. The first text line
299 begins at the beginning of the buffer, and the last text line ends at
300 the end of the buffer whether or not the last character is a newline.
301 The division of the buffer into text lines is not affected by the width
302 of the window, by line continuation in display, or by how tabs and
303 control characters are displayed.
304
305 @deffn Command beginning-of-line &optional count
306 This function moves point to the beginning of the current line. With an
307 argument @var{count} not @code{nil} or 1, it moves forward
308 @var{count}@minus{}1 lines and then to the beginning of the line.
309
310 This function does not move point across a field boundary
311 (@pxref{Fields}) unless doing so would move beyond there to a
312 different line; therefore, if @var{count} is @code{nil} or 1, and
313 point starts at a field boundary, point does not move. To ignore
314 field boundaries, either bind @code{inhibit-field-text-motion} to
315 @code{t}, or use the @code{forward-line} function instead. For
316 instance, @code{(forward-line 0)} does the same thing as
317 @code{(beginning-of-line)}, except that it ignores field boundaries.
318
319 If this function reaches the end of the buffer (or of the accessible
320 portion, if narrowing is in effect), it positions point there. No error
321 is signaled.
322 @end deffn
323
324 @defun line-beginning-position &optional count
325 Return the position that @code{(beginning-of-line @var{count})}
326 would move to.
327 @end defun
328
329 @deffn Command end-of-line &optional count
330 This function moves point to the end of the current line. With an
331 argument @var{count} not @code{nil} or 1, it moves forward
332 @var{count}@minus{}1 lines and then to the end of the line.
333
334 This function does not move point across a field boundary
335 (@pxref{Fields}) unless doing so would move beyond there to a
336 different line; therefore, if @var{count} is @code{nil} or 1, and
337 point starts at a field boundary, point does not move. To ignore
338 field boundaries, bind @code{inhibit-field-text-motion} to @code{t}.
339
340 If this function reaches the end of the buffer (or of the accessible
341 portion, if narrowing is in effect), it positions point there. No error
342 is signaled.
343 @end deffn
344
345 @defun line-end-position &optional count
346 Return the position that @code{(end-of-line @var{count})}
347 would move to.
348 @end defun
349
350 @deffn Command forward-line &optional count
351 @cindex beginning of line
352 This function moves point forward @var{count} lines, to the beginning of
353 the line. If @var{count} is negative, it moves point
354 @minus{}@var{count} lines backward, to the beginning of a line. If
355 @var{count} is zero, it moves point to the beginning of the current
356 line. If @var{count} is @code{nil}, that means 1.
357
358 If @code{forward-line} encounters the beginning or end of the buffer (or
359 of the accessible portion) before finding that many lines, it sets point
360 there. No error is signaled.
361
362 @code{forward-line} returns the difference between @var{count} and the
363 number of lines actually moved. If you attempt to move down five lines
364 from the beginning of a buffer that has only three lines, point stops at
365 the end of the last line, and the value will be 2.
366
367 In an interactive call, @var{count} is the numeric prefix argument.
368 @end deffn
369
370 @defun count-lines start end
371 @cindex lines in region
372 @anchor{Definition of count-lines}
373 This function returns the number of lines between the positions
374 @var{start} and @var{end} in the current buffer. If @var{start} and
375 @var{end} are equal, then it returns 0. Otherwise it returns at least
376 1, even if @var{start} and @var{end} are on the same line. This is
377 because the text between them, considered in isolation, must contain at
378 least one line unless it is empty.
379 @end defun
380
381 @deffn Command count-words start end
382 @cindex words in region
383 This function returns the number of words between the positions
384 @var{start} and @var{end} in the current buffer.
385
386 This function can also be called interactively. In that case, it
387 prints a message reporting the number of lines, words, and characters
388 in the buffer, or in the region if the region is active.
389 @end deffn
390
391 @defun line-number-at-pos &optional pos
392 @cindex line number
393 This function returns the line number in the current buffer
394 corresponding to the buffer position @var{pos}. If @var{pos} is @code{nil}
395 or omitted, the current buffer position is used.
396 @end defun
397
398 @ignore
399 @c ================
400 The @code{previous-line} and @code{next-line} commands are functions
401 that should not be used in programs. They are for users and are
402 mentioned here only for completeness.
403
404 @deffn Command previous-line count
405 @cindex goal column
406 This function moves point up @var{count} lines (down if @var{count}
407 is negative). In moving, it attempts to keep point in the ``goal column''
408 (normally the same column that it was at the beginning of the move).
409
410 If there is no character in the target line exactly under the current
411 column, point is positioned after the character in that line which
412 spans this column, or at the end of the line if it is not long enough.
413
414 If it attempts to move beyond the top or bottom of the buffer (or clipped
415 region), then point is positioned in the goal column in the top or
416 bottom line. No error is signaled.
417
418 In an interactive call, @var{count} will be the numeric
419 prefix argument.
420
421 The command @code{set-goal-column} can be used to create a semipermanent
422 goal column to which this command always moves. Then it does not try to
423 move vertically.
424
425 If you are thinking of using this in a Lisp program, consider using
426 @code{forward-line} with a negative argument instead. It is usually easier
427 to use and more reliable (no dependence on goal column, etc.).
428 @end deffn
429
430 @deffn Command next-line count
431 This function moves point down @var{count} lines (up if @var{count}
432 is negative). In moving, it attempts to keep point in the ``goal column''
433 (normally the same column that it was at the beginning of the move).
434
435 If there is no character in the target line exactly under the current
436 column, point is positioned after the character in that line which
437 spans this column, or at the end of the line if it is not long enough.
438
439 If it attempts to move beyond the top or bottom of the buffer (or clipped
440 region), then point is positioned in the goal column in the top or
441 bottom line. No error is signaled.
442
443 In the case where the @var{count} is 1, and point is on the last
444 line of the buffer (or clipped region), a new empty line is inserted at the
445 end of the buffer (or clipped region) and point moved there.
446
447 In an interactive call, @var{count} will be the numeric
448 prefix argument.
449
450 The command @code{set-goal-column} can be used to create a semipermanent
451 goal column to which this command always moves. Then it does not try to
452 move vertically.
453
454 If you are thinking of using this in a Lisp program, consider using
455 @code{forward-line} instead. It is usually easier
456 to use and more reliable (no dependence on goal column, etc.).
457 @end deffn
458
459 @c ================
460 @end ignore
461
462 Also see the functions @code{bolp} and @code{eolp} in @ref{Near Point}.
463 These functions do not move point, but test whether it is already at the
464 beginning or end of a line.
465
466 @node Screen Lines
467 @subsection Motion by Screen Lines
468 @cindex screen lines, moving by
469
470 The line functions in the previous section count text lines, delimited
471 only by newline characters. By contrast, these functions count screen
472 lines, which are defined by the way the text appears on the screen. A
473 text line is a single screen line if it is short enough to fit the width
474 of the selected window, but otherwise it may occupy several screen
475 lines.
476
477 In some cases, text lines are truncated on the screen rather than
478 continued onto additional screen lines. In these cases,
479 @code{vertical-motion} moves point much like @code{forward-line}.
480 @xref{Truncation}.
481
482 Because the width of a given string depends on the flags that control
483 the appearance of certain characters, @code{vertical-motion} behaves
484 differently, for a given piece of text, depending on the buffer it is
485 in, and even on the selected window (because the width, the truncation
486 flag, and display table may vary between windows). @xref{Usual
487 Display}.
488
489 These functions scan text to determine where screen lines break, and
490 thus take time proportional to the distance scanned.
491 @ignore
492 If you intend to use them heavily, Emacs provides caches which may
493 improve the performance of your code. @xref{Truncation, cache-long-scans}.
494 @end ignore
495
496 @defun vertical-motion count &optional window cur-col
497 This function moves point to the start of the screen line @var{count}
498 screen lines down from the screen line containing point. If @var{count}
499 is negative, it moves up instead.
500
501 The @var{count} argument can be a cons cell, @code{(@var{cols}
502 . @var{lines})}, instead of an integer. Then the function moves by
503 @var{lines} screen lines, and puts point @var{cols} columns from the
504 visual start of that screen line. Note that @var{cols} are counted
505 from the @emph{visual} start of the line; if the window is scrolled
506 horizontally (@pxref{Horizontal Scrolling}), the column on which point
507 will end is in addition to the number of columns by which the text is
508 scrolled.
509
510 The return value is the number of screen lines over which point was
511 moved. The value may be less in absolute value than @var{count} if
512 the beginning or end of the buffer was reached.
513
514 The window @var{window} is used for obtaining parameters such as the
515 width, the horizontal scrolling, and the display table. But
516 @code{vertical-motion} always operates on the current buffer, even if
517 @var{window} currently displays some other buffer.
518
519 The optional argument @var{cur-col} specifies the current column when
520 the function is called. This is the window-relative horizontal
521 coordinate of point, measured in units of font width of the frame's
522 default face. Providing it speeds up the function, especially in very
523 long lines, because it doesn't have to go back in the buffer in order
524 to determine the current column. Note that @var{cur-col} is also
525 counted from the visual start of the line.
526 @end defun
527
528 @defun count-screen-lines &optional beg end count-final-newline window
529 This function returns the number of screen lines in the text from
530 @var{beg} to @var{end}. The number of screen lines may be different
531 from the number of actual lines, due to line continuation, the display
532 table, etc. If @var{beg} and @var{end} are @code{nil} or omitted,
533 they default to the beginning and end of the accessible portion of the
534 buffer.
535
536 If the region ends with a newline, that is ignored unless the optional
537 third argument @var{count-final-newline} is non-@code{nil}.
538
539 The optional fourth argument @var{window} specifies the window for
540 obtaining parameters such as width, horizontal scrolling, and so on.
541 The default is to use the selected window's parameters.
542
543 Like @code{vertical-motion}, @code{count-screen-lines} always uses the
544 current buffer, regardless of which buffer is displayed in
545 @var{window}. This makes possible to use @code{count-screen-lines} in
546 any buffer, whether or not it is currently displayed in some window.
547 @end defun
548
549 @deffn Command move-to-window-line count
550 This function moves point with respect to the text currently displayed
551 in the selected window. It moves point to the beginning of the screen
552 line @var{count} screen lines from the top of the window. If
553 @var{count} is negative, that specifies a position
554 @w{@minus{}@var{count}} lines from the bottom (or the last line of the
555 buffer, if the buffer ends above the specified screen position).
556
557 If @var{count} is @code{nil}, then point moves to the beginning of the
558 line in the middle of the window. If the absolute value of @var{count}
559 is greater than the size of the window, then point moves to the place
560 that would appear on that screen line if the window were tall enough.
561 This will probably cause the next redisplay to scroll to bring that
562 location onto the screen.
563
564 In an interactive call, @var{count} is the numeric prefix argument.
565
566 The value returned is the window line number point has moved to, with
567 the top line in the window numbered 0.
568 @end deffn
569
570 @defun compute-motion from frompos to topos width offsets window
571 This function scans the current buffer, calculating screen positions.
572 It scans the buffer forward from position @var{from}, assuming that is
573 at screen coordinates @var{frompos}, to position @var{to} or coordinates
574 @var{topos}, whichever comes first. It returns the ending buffer
575 position and screen coordinates.
576
577 The coordinate arguments @var{frompos} and @var{topos} are cons cells of
578 the form @code{(@var{hpos} . @var{vpos})}.
579
580 The argument @var{width} is the number of columns available to display
581 text; this affects handling of continuation lines. @code{nil} means
582 the actual number of usable text columns in the window, which is
583 equivalent to the value returned by @code{(window-width window)}.
584
585 The argument @var{offsets} is either @code{nil} or a cons cell of the
586 form @code{(@var{hscroll} . @var{tab-offset})}. Here @var{hscroll} is
587 the number of columns not being displayed at the left margin; most
588 callers get this by calling @code{window-hscroll}. Meanwhile,
589 @var{tab-offset} is the offset between column numbers on the screen and
590 column numbers in the buffer. This can be nonzero in a continuation
591 line, when the previous screen lines' widths do not add up to a multiple
592 of @code{tab-width}. It is always zero in a non-continuation line.
593
594 The window @var{window} serves only to specify which display table to
595 use. @code{compute-motion} always operates on the current buffer,
596 regardless of what buffer is displayed in @var{window}.
597
598 The return value is a list of five elements:
599
600 @example
601 (@var{pos} @var{hpos} @var{vpos} @var{prevhpos} @var{contin})
602 @end example
603
604 @noindent
605 Here @var{pos} is the buffer position where the scan stopped, @var{vpos}
606 is the vertical screen position, and @var{hpos} is the horizontal screen
607 position.
608
609 The result @var{prevhpos} is the horizontal position one character back
610 from @var{pos}. The result @var{contin} is @code{t} if the last line
611 was continued after (or within) the previous character.
612
613 For example, to find the buffer position of column @var{col} of screen line
614 @var{line} of a certain window, pass the window's display start location
615 as @var{from} and the window's upper-left coordinates as @var{frompos}.
616 Pass the buffer's @code{(point-max)} as @var{to}, to limit the scan to
617 the end of the accessible portion of the buffer, and pass @var{line} and
618 @var{col} as @var{topos}. Here's a function that does this:
619
620 @example
621 (defun coordinates-of-position (col line)
622 (car (compute-motion (window-start)
623 '(0 . 0)
624 (point-max)
625 (cons col line)
626 (window-width)
627 (cons (window-hscroll) 0)
628 (selected-window))))
629 @end example
630
631 When you use @code{compute-motion} for the minibuffer, you need to use
632 @code{minibuffer-prompt-width} to get the horizontal position of the
633 beginning of the first screen line. @xref{Minibuffer Contents}.
634 @end defun
635
636 @node List Motion
637 @subsection Moving over Balanced Expressions
638 @cindex sexp motion
639 @cindex Lisp expression motion
640 @cindex list motion
641 @cindex balanced parenthesis motion
642
643 Here are several functions concerned with balanced-parenthesis
644 expressions (also called @dfn{sexps} in connection with moving across
645 them in Emacs). The syntax table controls how these functions interpret
646 various characters; see @ref{Syntax Tables}. @xref{Parsing
647 Expressions}, for lower-level primitives for scanning sexps or parts of
648 sexps. For user-level commands, see @ref{Parentheses,, Commands for
649 Editing with Parentheses, emacs, The GNU Emacs Manual}.
650
651 @deffn Command forward-list &optional arg
652 This function moves forward across @var{arg} (default 1) balanced groups of
653 parentheses. (Other syntactic entities such as words or paired string
654 quotes are ignored.)
655 @end deffn
656
657 @deffn Command backward-list &optional arg
658 This function moves backward across @var{arg} (default 1) balanced groups of
659 parentheses. (Other syntactic entities such as words or paired string
660 quotes are ignored.)
661 @end deffn
662
663 @deffn Command up-list &optional arg escape-strings no-syntax-crossing
664 This function moves forward out of @var{arg} (default 1) levels of
665 parentheses. A negative argument means move backward but still to a
666 less deep spot. If @var{escape-strings} is non-@code{nil} (as it is
667 interactively), move out of enclosing strings as well. If
668 @var{no-syntax-crossing} is non-@code{nil} (as it is interactively), prefer
669 to break out of any enclosing string instead of moving to the start of
670 a list broken across multiple strings. On error, location of point is
671 unspecified.
672 @end deffn
673
674 @deffn Command backward-up-list &optional arg escape-strings no-syntax-crossing
675 This function is just like @code{up-list}, but with a negated argument.
676 @end deffn
677
678 @deffn Command down-list &optional arg
679 This function moves forward into @var{arg} (default 1) levels of
680 parentheses. A negative argument means move backward but still go
681 deeper in parentheses (@minus{}@var{arg} levels).
682 @end deffn
683
684 @deffn Command forward-sexp &optional arg
685 This function moves forward across @var{arg} (default 1) balanced expressions.
686 Balanced expressions include both those delimited by parentheses and
687 other kinds, such as words and string constants.
688 @xref{Parsing Expressions}. For example,
689
690 @example
691 @group
692 ---------- Buffer: foo ----------
693 (concat@point{} "foo " (car x) y z)
694 ---------- Buffer: foo ----------
695 @end group
696
697 @group
698 (forward-sexp 3)
699 @result{} nil
700
701 ---------- Buffer: foo ----------
702 (concat "foo " (car x) y@point{} z)
703 ---------- Buffer: foo ----------
704 @end group
705 @end example
706 @end deffn
707
708 @deffn Command backward-sexp &optional arg
709 This function moves backward across @var{arg} (default 1) balanced expressions.
710 @end deffn
711
712 @deffn Command beginning-of-defun &optional arg
713 This function moves back to the @var{arg}th beginning of a defun. If
714 @var{arg} is negative, this actually moves forward, but it still moves
715 to the beginning of a defun, not to the end of one. @var{arg} defaults
716 to 1.
717 @end deffn
718
719 @deffn Command end-of-defun &optional arg
720 This function moves forward to the @var{arg}th end of a defun. If
721 @var{arg} is negative, this actually moves backward, but it still moves
722 to the end of a defun, not to the beginning of one. @var{arg} defaults
723 to 1.
724 @end deffn
725
726 @defopt defun-prompt-regexp
727 If non-@code{nil}, this buffer-local variable holds a regular
728 expression that specifies what text can appear before the
729 open-parenthesis that starts a defun. That is to say, a defun begins
730 on a line that starts with a match for this regular expression,
731 followed by a character with open-parenthesis syntax.
732 @end defopt
733
734 @defopt open-paren-in-column-0-is-defun-start
735 If this variable's value is non-@code{nil}, an open parenthesis in
736 column 0 is considered to be the start of a defun. If it is
737 @code{nil}, an open parenthesis in column 0 has no special meaning.
738 The default is @code{t}.
739 @end defopt
740
741 @defvar beginning-of-defun-function
742 If non-@code{nil}, this variable holds a function for finding the
743 beginning of a defun. The function @code{beginning-of-defun}
744 calls this function instead of using its normal method, passing it its
745 optional argument. If the argument is non-@code{nil}, the function
746 should move back by that many functions, like
747 @code{beginning-of-defun} does.
748 @end defvar
749
750 @defvar end-of-defun-function
751 If non-@code{nil}, this variable holds a function for finding the end of
752 a defun. The function @code{end-of-defun} calls this function instead
753 of using its normal method.
754 @end defvar
755
756 @node Skipping Characters
757 @subsection Skipping Characters
758 @cindex skipping characters
759
760 The following two functions move point over a specified set of
761 characters. For example, they are often used to skip whitespace. For
762 related functions, see @ref{Motion and Syntax}.
763
764 These functions convert the set string to multibyte if the buffer is
765 multibyte, and they convert it to unibyte if the buffer is unibyte, as
766 the search functions do (@pxref{Searching and Matching}).
767
768 @defun skip-chars-forward character-set &optional limit
769 This function moves point in the current buffer forward, skipping over a
770 given set of characters. It examines the character following point,
771 then advances point if the character matches @var{character-set}. This
772 continues until it reaches a character that does not match. The
773 function returns the number of characters moved over.
774
775 The argument @var{character-set} is a string, like the inside of a
776 @samp{[@dots{}]} in a regular expression except that @samp{]} does not
777 terminate it, and @samp{\} quotes @samp{^}, @samp{-} or @samp{\}.
778 Thus, @code{"a-zA-Z"} skips over all letters, stopping before the
779 first nonletter, and @code{"^a-zA-Z"} skips nonletters stopping before
780 the first letter. See @xref{Regular Expressions}. Character classes
781 can also be used, e.g., @code{"[:alnum:]"}. See @pxref{Char Classes}.
782
783 If @var{limit} is supplied (it must be a number or a marker), it
784 specifies the maximum position in the buffer that point can be skipped
785 to. Point will stop at or before @var{limit}.
786
787 In the following example, point is initially located directly before the
788 @samp{T}. After the form is evaluated, point is located at the end of
789 that line (between the @samp{t} of @samp{hat} and the newline). The
790 function skips all letters and spaces, but not newlines.
791
792 @example
793 @group
794 ---------- Buffer: foo ----------
795 I read "@point{}The cat in the hat
796 comes back" twice.
797 ---------- Buffer: foo ----------
798 @end group
799
800 @group
801 (skip-chars-forward "a-zA-Z ")
802 @result{} 18
803
804 ---------- Buffer: foo ----------
805 I read "The cat in the hat@point{}
806 comes back" twice.
807 ---------- Buffer: foo ----------
808 @end group
809 @end example
810 @end defun
811
812 @defun skip-chars-backward character-set &optional limit
813 This function moves point backward, skipping characters that match
814 @var{character-set}, until @var{limit}. It is just like
815 @code{skip-chars-forward} except for the direction of motion.
816
817 The return value indicates the distance traveled. It is an integer that
818 is zero or less.
819 @end defun
820
821 @node Excursions
822 @section Excursions
823 @cindex excursion
824
825 It is often useful to move point ``temporarily'' within a localized
826 portion of the program. This is called an @dfn{excursion}, and it is
827 done with the @code{save-excursion} special form. This construct
828 remembers the initial identity of the current buffer, and its value
829 of point, and restores them after the excursion
830 completes. It is the standard way to move point within one part of a
831 program and avoid affecting the rest of the program, and is used
832 thousands of times in the Lisp sources of Emacs.
833
834 If you only need to save and restore the identity of the current
835 buffer, use @code{save-current-buffer} or @code{with-current-buffer}
836 instead (@pxref{Current Buffer}). If you need to save or restore
837 window configurations, see the forms described in @ref{Window
838 Configurations} and in @ref{Frame Configurations}. @c frameset?
839
840 @defspec save-excursion body@dots{}
841 @cindex mark excursion
842 @cindex point excursion
843 This special form saves the identity of the current buffer and the
844 value of point in it, evaluates @var{body}, and finally
845 restores the buffer and its saved value of point. both saved values are
846 restored even in case of an abnormal exit via
847 @code{throw} or error (@pxref{Nonlocal Exits}).
848
849 The value returned by @code{save-excursion} is the result of the last
850 form in @var{body}, or @code{nil} if no body forms were given.
851 @end defspec
852
853 Because @code{save-excursion} only saves point for the
854 buffer that was current at the start of the excursion, any changes
855 made to point in other buffers, during the excursion, will
856 remain in effect afterward. This frequently leads to unintended
857 consequences, so the byte compiler warns if you call @code{set-buffer}
858 during an excursion:
859
860 @example
861 Warning: Use `with-current-buffer' rather than
862 save-excursion+set-buffer
863 @end example
864
865 @noindent
866 To avoid such problems, you should call @code{save-excursion} only
867 after setting the desired current buffer, as in the following example:
868
869 @example
870 @group
871 (defun append-string-to-buffer (string buffer)
872 "Append STRING to the end of BUFFER."
873 (with-current-buffer buffer
874 (save-excursion
875 (goto-char (point-max))
876 (insert string))))
877 @end group
878 @end example
879
880 @cindex window excursions
881 Likewise, @code{save-excursion} does not restore window-buffer
882 correspondences altered by functions such as @code{switch-to-buffer}.
883
884 @strong{Warning:} Ordinary insertion of text adjacent to the saved
885 point value relocates the saved value, just as it relocates all
886 markers. More precisely, the saved value is a marker with insertion
887 type @code{nil}. @xref{Marker Insertion Types}. Therefore, when the
888 saved point value is restored, it normally comes before the inserted
889 text.
890
891 @node Narrowing
892 @section Narrowing
893 @cindex narrowing
894 @cindex restriction (in a buffer)
895 @cindex accessible portion (of a buffer)
896
897 @dfn{Narrowing} means limiting the text addressable by Emacs editing
898 commands to a limited range of characters in a buffer. The text that
899 remains addressable is called the @dfn{accessible portion} of the
900 buffer.
901
902 Narrowing is specified with two buffer positions, which become the
903 beginning and end of the accessible portion. For most editing
904 commands and primitives, these positions replace the values of the
905 beginning and end of the buffer. While narrowing is in effect, no
906 text outside the accessible portion is displayed, and point cannot
907 move outside the accessible portion. Note that narrowing does not
908 alter actual buffer positions (@pxref{Point}); it only determines
909 which positions are considered the accessible portion of the buffer.
910 Most functions refuse to operate on text that is outside the
911 accessible portion.
912
913 Commands for saving buffers are unaffected by narrowing; they save
914 the entire buffer regardless of any narrowing.
915
916 If you need to display in a single buffer several very different
917 types of text, consider using an alternative facility described in
918 @ref{Swapping Text}.
919
920 @deffn Command narrow-to-region start end
921 This function sets the accessible portion of the current buffer to start
922 at @var{start} and end at @var{end}. Both arguments should be character
923 positions.
924
925 In an interactive call, @var{start} and @var{end} are set to the bounds
926 of the current region (point and the mark, with the smallest first).
927 @end deffn
928
929 @deffn Command narrow-to-page &optional move-count
930 This function sets the accessible portion of the current buffer to
931 include just the current page. An optional first argument
932 @var{move-count} non-@code{nil} means to move forward or backward by
933 @var{move-count} pages and then narrow to one page. The variable
934 @code{page-delimiter} specifies where pages start and end
935 (@pxref{Standard Regexps}).
936
937 In an interactive call, @var{move-count} is set to the numeric prefix
938 argument.
939 @end deffn
940
941 @deffn Command widen
942 @cindex widening
943 This function cancels any narrowing in the current buffer, so that the
944 entire contents are accessible. This is called @dfn{widening}.
945 It is equivalent to the following expression:
946
947 @example
948 (narrow-to-region 1 (1+ (buffer-size)))
949 @end example
950 @end deffn
951
952 @defun buffer-narrowed-p
953 This function returns non-@code{nil} if the buffer is narrowed, and
954 @code{nil} otherwise.
955 @end defun
956
957 @defspec save-restriction body@dots{}
958 This special form saves the current bounds of the accessible portion,
959 evaluates the @var{body} forms, and finally restores the saved bounds,
960 thus restoring the same state of narrowing (or absence thereof) formerly
961 in effect. The state of narrowing is restored even in the event of an
962 abnormal exit via @code{throw} or error (@pxref{Nonlocal Exits}).
963 Therefore, this construct is a clean way to narrow a buffer temporarily.
964
965 The value returned by @code{save-restriction} is that returned by the
966 last form in @var{body}, or @code{nil} if no body forms were given.
967
968 @c Wordy to avoid overfull hbox. --rjc 16mar92
969 @strong{Caution:} it is easy to make a mistake when using the
970 @code{save-restriction} construct. Read the entire description here
971 before you try it.
972
973 If @var{body} changes the current buffer, @code{save-restriction} still
974 restores the restrictions on the original buffer (the buffer whose
975 restrictions it saved from), but it does not restore the identity of the
976 current buffer.
977
978 @code{save-restriction} does @emph{not} restore point; use
979 @code{save-excursion} for that. If you use both @code{save-restriction}
980 and @code{save-excursion} together, @code{save-excursion} should come
981 first (on the outside). Otherwise, the old point value would be
982 restored with temporary narrowing still in effect. If the old point
983 value were outside the limits of the temporary narrowing, this would
984 fail to restore it accurately.
985
986 Here is a simple example of correct use of @code{save-restriction}:
987
988 @example
989 @group
990 ---------- Buffer: foo ----------
991 This is the contents of foo
992 This is the contents of foo
993 This is the contents of foo@point{}
994 ---------- Buffer: foo ----------
995 @end group
996
997 @group
998 (save-excursion
999 (save-restriction
1000 (goto-char 1)
1001 (forward-line 2)
1002 (narrow-to-region 1 (point))
1003 (goto-char (point-min))
1004 (replace-string "foo" "bar")))
1005
1006 ---------- Buffer: foo ----------
1007 This is the contents of bar
1008 This is the contents of bar
1009 This is the contents of foo@point{}
1010 ---------- Buffer: foo ----------
1011 @end group
1012 @end example
1013 @end defspec