Mercurial > hg > xemacs-beta
comparison src/redisplay.h @ 665:fdefd0186b75
[xemacs-hg @ 2001-09-20 06:28:42 by ben]
The great integral types renaming.
The purpose of this is to rationalize the names used for various
integral types, so that they match their intended uses and follow
consist conventions, and eliminate types that were not semantically
different from each other.
The conventions are:
-- All integral types that measure quantities of anything are
signed. Some people disagree vociferously with this, but their
arguments are mostly theoretical, and are vastly outweighed by
the practical headaches of mixing signed and unsigned values,
and more importantly by the far increased likelihood of
inadvertent bugs: Because of the broken "viral" nature of
unsigned quantities in C (operations involving mixed
signed/unsigned are done unsigned, when exactly the opposite is
nearly always wanted), even a single error in declaring a
quantity unsigned that should be signed, or even the even more
subtle error of comparing signed and unsigned values and
forgetting the necessary cast, can be catastrophic, as
comparisons will yield wrong results. -Wsign-compare is turned
on specifically to catch this, but this tends to result in a
great number of warnings when mixing signed and unsigned, and
the casts are annoying. More has been written on this
elsewhere.
-- All such quantity types just mentioned boil down to EMACS_INT,
which is 32 bits on 32-bit machines and 64 bits on 64-bit
machines. This is guaranteed to be the same size as Lisp
objects of type `int', and (as far as I can tell) of size_t
(unsigned!) and ssize_t. The only type below that is not an
EMACS_INT is Hashcode, which is an unsigned value of the same
size as EMACS_INT.
-- Type names should be relatively short (no more than 10
characters or so), with the first letter capitalized and no
underscores if they can at all be avoided.
-- "count" == a zero-based measurement of some quantity. Includes
sizes, offsets, and indexes.
-- "bpos" == a one-based measurement of a position in a buffer.
"Charbpos" and "Bytebpos" count text in the buffer, rather than
bytes in memory; thus Bytebpos does not directly correspond to
the memory representation. Use "Membpos" for this.
-- "Char" refers to internal-format characters, not to the C type
"char", which is really a byte.
-- For the actual name changes, see the script below.
I ran the following script to do the conversion. (NOTE: This script
is idempotent. You can safely run it multiple times and it will
not screw up previous results -- in fact, it will do nothing if
nothing has changed. Thus, it can be run repeatedly as necessary
to handle patches coming in from old workspaces, or old branches.)
There are two tags, just before and just after the change:
`pre-integral-type-rename' and `post-integral-type-rename'. When
merging code from the main trunk into a branch, the best thing to
do is first merge up to `pre-integral-type-rename', then apply the
script and associated changes, then merge from
`post-integral-type-change' to the present. (Alternatively, just do
the merging in one operation; but you may then have a lot of
conflicts needing to be resolved by hand.)
Script `fixtypes.sh' follows:
----------------------------------- cut ------------------------------------
files="*.[ch] s/*.h m/*.h config.h.in ../configure.in Makefile.in.in ../lib-src/*.[ch] ../lwlib/*.[ch]"
gr Memory_Count Bytecount $files
gr Lstream_Data_Count Bytecount $files
gr Element_Count Elemcount $files
gr Hash_Code Hashcode $files
gr extcount bytecount $files
gr bufpos charbpos $files
gr bytind bytebpos $files
gr memind membpos $files
gr bufbyte intbyte $files
gr Extcount Bytecount $files
gr Bufpos Charbpos $files
gr Bytind Bytebpos $files
gr Memind Membpos $files
gr Bufbyte Intbyte $files
gr EXTCOUNT BYTECOUNT $files
gr BUFPOS CHARBPOS $files
gr BYTIND BYTEBPOS $files
gr MEMIND MEMBPOS $files
gr BUFBYTE INTBYTE $files
gr MEMORY_COUNT BYTECOUNT $files
gr LSTREAM_DATA_COUNT BYTECOUNT $files
gr ELEMENT_COUNT ELEMCOUNT $files
gr HASH_CODE HASHCODE $files
----------------------------------- cut ------------------------------------
`fixtypes.sh' is a Bourne-shell script; it uses 'gr':
----------------------------------- cut ------------------------------------
#!/bin/sh
# Usage is like this:
# gr FROM TO FILES ...
# globally replace FROM with TO in FILES. FROM and TO are regular expressions.
# backup files are stored in the `backup' directory.
from="$1"
to="$2"
shift 2
echo ${1+"$@"} | xargs global-replace "s/$from/$to/g"
----------------------------------- cut ------------------------------------
`gr' in turn uses a Perl script to do its real work,
`global-replace', which follows:
----------------------------------- cut ------------------------------------
: #-*- Perl -*-
### global-modify --- modify the contents of a file by a Perl expression
## Copyright (C) 1999 Martin Buchholz.
## Copyright (C) 2001 Ben Wing.
## Authors: Martin Buchholz <martin@xemacs.org>, Ben Wing <ben@xemacs.org>
## Maintainer: Ben Wing <ben@xemacs.org>
## Current Version: 1.0, May 5, 2001
# This program is free software; you can redistribute it and/or modify
# it under the terms of the GNU General Public License as published by
# the Free Software Foundation; either version 2, or (at your option)
# any later version.
#
# This program is distributed in the hope that it will be useful, but
# WITHOUT ANY WARRANTY; without even the implied warranty of
# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
# General Public License for more details.
#
# You should have received a copy of the GNU General Public License
# along with XEmacs; see the file COPYING. If not, write to the Free
# Software Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA
# 02111-1307, USA.
eval 'exec perl -w -S $0 ${1+"$@"}'
if 0;
use strict;
use FileHandle;
use Carp;
use Getopt::Long;
use File::Basename;
(my $myName = $0) =~ s@.*/@@; my $usage="
Usage: $myName [--help] [--backup-dir=DIR] [--line-mode] [--hunk-mode]
PERLEXPR FILE ...
Globally modify a file, either line by line or in one big hunk.
Typical usage is like this:
[with GNU print, GNU xargs: guaranteed to handle spaces, quotes, etc.
in file names]
find . -name '*.[ch]' -print0 | xargs -0 $0 's/\bCONST\b/const/g'\n
[with non-GNU print, xargs]
find . -name '*.[ch]' -print | xargs $0 's/\bCONST\b/const/g'\n
The file is read in, either line by line (with --line-mode specified)
or in one big hunk (with --hunk-mode specified; it's the default), and
the Perl expression is then evalled with \$_ set to the line or hunk of
text, including the terminating newline if there is one. It should
destructively modify the value there, storing the changed result in \$_.
Files in which any modifications are made are backed up to the directory
specified using --backup-dir, or to `backup' by default. To disable this,
use --backup-dir= with no argument.
Hunk mode is the default because it is MUCH MUCH faster than line-by-line.
Use line-by-line only when it matters, e.g. you want to do a replacement
only once per line (the default without the `g' argument). Conversely,
when using hunk mode, *ALWAYS* use `g'; otherwise, you will only make one
replacement in the entire file!
";
my %options = ();
$Getopt::Long::ignorecase = 0;
&GetOptions (
\%options,
'help', 'backup-dir=s', 'line-mode', 'hunk-mode',
);
die $usage if $options{"help"} or @ARGV <= 1;
my $code = shift;
die $usage if grep (-d || ! -w, @ARGV);
sub SafeOpen {
open ((my $fh = new FileHandle), $_[0]);
confess "Can't open $_[0]: $!" if ! defined $fh;
return $fh;
}
sub SafeClose {
close $_[0] or confess "Can't close $_[0]: $!";
}
sub FileContents {
my $fh = SafeOpen ("< $_[0]");
my $olddollarslash = $/;
local $/ = undef;
my $contents = <$fh>;
$/ = $olddollarslash;
return $contents;
}
sub WriteStringToFile {
my $fh = SafeOpen ("> $_[0]");
binmode $fh;
print $fh $_[1] or confess "$_[0]: $!\n";
SafeClose $fh;
}
foreach my $file (@ARGV) {
my $changed_p = 0;
my $new_contents = "";
if ($options{"line-mode"}) {
my $fh = SafeOpen $file;
while (<$fh>) {
my $save_line = $_;
eval $code;
$changed_p = 1 if $save_line ne $_;
$new_contents .= $_;
}
} else {
my $orig_contents = $_ = FileContents $file;
eval $code;
if ($_ ne $orig_contents) {
$changed_p = 1;
$new_contents = $_;
}
}
if ($changed_p) {
my $backdir = $options{"backup-dir"};
$backdir = "backup" if !defined ($backdir);
if ($backdir) {
my ($name, $path, $suffix) = fileparse ($file, "");
my $backfulldir = $path . $backdir;
my $backfile = "$backfulldir/$name";
mkdir $backfulldir, 0755 unless -d $backfulldir;
print "modifying $file (original saved in $backfile)\n";
rename $file, $backfile;
}
WriteStringToFile ($file, $new_contents);
}
}
----------------------------------- cut ------------------------------------
In addition to those programs, I needed to fix up a few other
things, particularly relating to the duplicate definitions of
types, now that some types merged with others. Specifically:
1. in lisp.h, removed duplicate declarations of Bytecount. The
changed code should now look like this: (In each code snippet
below, the first and last lines are the same as the original, as
are all lines outside of those lines. That allows you to locate
the section to be replaced, and replace the stuff in that
section, verifying that there isn't anything new added that
would need to be kept.)
--------------------------------- snip -------------------------------------
/* Counts of bytes or chars */
typedef EMACS_INT Bytecount;
typedef EMACS_INT Charcount;
/* Counts of elements */
typedef EMACS_INT Elemcount;
/* Hash codes */
typedef unsigned long Hashcode;
/* ------------------------ dynamic arrays ------------------- */
--------------------------------- snip -------------------------------------
2. in lstream.h, removed duplicate declaration of Bytecount.
Rewrote the comment about this type. The changed code should
now look like this:
--------------------------------- snip -------------------------------------
#endif
/* The have been some arguments over the what the type should be that
specifies a count of bytes in a data block to be written out or read in,
using Lstream_read(), Lstream_write(), and related functions.
Originally it was long, which worked fine; Martin "corrected" these to
size_t and ssize_t on the grounds that this is theoretically cleaner and
is in keeping with the C standards. Unfortunately, this practice is
horribly error-prone due to design flaws in the way that mixed
signed/unsigned arithmetic happens. In fact, by doing this change,
Martin introduced a subtle but fatal error that caused the operation of
sending large mail messages to the SMTP server under Windows to fail.
By putting all values back to be signed, avoiding any signed/unsigned
mixing, the bug immediately went away. The type then in use was
Lstream_Data_Count, so that it be reverted cleanly if a vote came to
that. Now it is Bytecount.
Some earlier comments about why the type must be signed: This MUST BE
SIGNED, since it also is used in functions that return the number of
bytes actually read to or written from in an operation, and these
functions can return -1 to signal error.
Note that the standard Unix read() and write() functions define the
count going in as a size_t, which is UNSIGNED, and the count going
out as an ssize_t, which is SIGNED. This is a horrible design
flaw. Not only is it highly likely to lead to logic errors when a
-1 gets interpreted as a large positive number, but operations are
bound to fail in all sorts of horrible ways when a number in the
upper-half of the size_t range is passed in -- this number is
unrepresentable as an ssize_t, so code that checks to see how many
bytes are actually written (which is mandatory if you are dealing
with certain types of devices) will get completely screwed up.
--ben
*/
typedef enum lstream_buffering
--------------------------------- snip -------------------------------------
3. in dumper.c, there are four places, all inside of switch()
statements, where XD_BYTECOUNT appears twice as a case tag. In
each case, the two case blocks contain identical code, and you
should *REMOVE THE SECOND* and leave the first.
author | ben |
---|---|
date | Thu, 20 Sep 2001 06:31:11 +0000 |
parents | af57a77cbc92 |
children | 943eaba38521 |
comparison
equal
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664:6e99cc8c6ca5 | 665:fdefd0186b75 |
---|---|
48 of paper. */ | 48 of paper. */ |
49 | 49 |
50 typedef struct line_start_cache line_start_cache; | 50 typedef struct line_start_cache line_start_cache; |
51 struct line_start_cache | 51 struct line_start_cache |
52 { | 52 { |
53 Bufpos start, end; | 53 Charbpos start, end; |
54 int height; | 54 int height; |
55 }; | 55 }; |
56 | 56 |
57 typedef struct | 57 typedef struct |
58 { | 58 { |
110 faces that overlap the rune) and | 110 faces that overlap the rune) and |
111 contains the instance values for | 111 contains the instance values for |
112 each of the face properties in this | 112 each of the face properties in this |
113 particular window. */ | 113 particular window. */ |
114 | 114 |
115 Bufpos bufpos; /* buffer position this rune is displaying; | 115 Charbpos charbpos; /* buffer position this rune is displaying; |
116 for the modeline, the value here is a | 116 for the modeline, the value here is a |
117 Charcount, but who's looking? */ | 117 Charcount, but who's looking? */ |
118 Bufpos endpos; /* if set this rune covers a range of pos */ | 118 Charbpos endpos; /* if set this rune covers a range of pos */ |
119 /* #### Chuck, what does it mean for a rune | 119 /* #### Chuck, what does it mean for a rune |
120 to cover a range of pos? I don't get | 120 to cover a range of pos? I don't get |
121 this. */ | 121 this. */ |
122 /* #### This isn't used as an rvalue anywhere! | 122 /* #### This isn't used as an rvalue anywhere! |
123 remove! */ | 123 remove! */ |
255 /* display lines */ | 255 /* display lines */ |
256 /*************************************************************************/ | 256 /*************************************************************************/ |
257 | 257 |
258 /* Modeline commentary: IMO the modeline is handled very badly, we | 258 /* Modeline commentary: IMO the modeline is handled very badly, we |
259 special case virtually *everything* in the redisplay routines for | 259 special case virtually *everything* in the redisplay routines for |
260 the modeline. The fact that dl->bufpos can be either a buffer | 260 the modeline. The fact that dl->charbpos can be either a buffer |
261 position or a char count highlights this. There is no abstraction at | 261 position or a char count highlights this. There is no abstraction at |
262 all that I can find and it means that the code is made very ugly as | 262 all that I can find and it means that the code is made very ugly as |
263 a result. Either we should treat the modeline *entirely* separately, | 263 a result. Either we should treat the modeline *entirely* separately, |
264 or we should abstract to something that applies equally well to the | 264 or we should abstract to something that applies equally well to the |
265 modeline and to buffer text, the things are not enormously different | 265 modeline and to buffer text, the things are not enormously different |
291 pixel-row itself, I think. */ | 291 pixel-row itself, I think. */ |
292 unsigned short clip; /* amount of bottom of line to clip | 292 unsigned short clip; /* amount of bottom of line to clip |
293 in pixels.*/ | 293 in pixels.*/ |
294 unsigned short top_clip; /* amount of top of line to clip | 294 unsigned short top_clip; /* amount of top of line to clip |
295 in pixels.*/ | 295 in pixels.*/ |
296 Bufpos bufpos; /* first buffer position on line */ | 296 Charbpos charbpos; /* first buffer position on line */ |
297 Bufpos end_bufpos; /* last buffer position on line */ | 297 Charbpos end_charbpos; /* last buffer position on line */ |
298 Charcount offset; /* adjustment to bufpos vals */ | 298 Charcount offset; /* adjustment to charbpos vals */ |
299 Charcount num_chars; /* # of chars on line | 299 Charcount num_chars; /* # of chars on line |
300 including expansion of tabs | 300 including expansion of tabs |
301 and control chars */ | 301 and control chars */ |
302 int cursor_elt; /* rune block of TEXT display | 302 int cursor_elt; /* rune block of TEXT display |
303 block cursor is at or -1 */ | 303 block cursor is at or -1 */ |
381 | 381 |
382 int proportional_p; | 382 int proportional_p; |
383 }; | 383 }; |
384 | 384 |
385 /* NOTE NOTE NOTE: Currently the positions in an extent fragment | 385 /* NOTE NOTE NOTE: Currently the positions in an extent fragment |
386 structure are Bytind's, not Bufpos's. This could change. */ | 386 structure are Bytebpos's, not Charbpos's. This could change. */ |
387 | 387 |
388 struct extent_fragment | 388 struct extent_fragment |
389 { | 389 { |
390 Lisp_Object object; /* buffer or string */ | 390 Lisp_Object object; /* buffer or string */ |
391 struct frame *frm; | 391 struct frame *frm; |
392 Bytind pos, end; | 392 Bytebpos pos, end; |
393 EXTENT_dynarr *extents; | 393 EXTENT_dynarr *extents; |
394 glyph_block_dynarr *begin_glyphs, *end_glyphs; | 394 glyph_block_dynarr *begin_glyphs, *end_glyphs; |
395 unsigned int invisible:1; | 395 unsigned int invisible:1; |
396 unsigned int invisible_ellipses:1; | 396 unsigned int invisible_ellipses:1; |
397 unsigned int previously_invisible:1; | 397 unsigned int previously_invisible:1; |
679 /* redisplay exported functions */ | 679 /* redisplay exported functions */ |
680 /*************************************************************************/ | 680 /*************************************************************************/ |
681 EXFUN (Fredraw_frame, 2); | 681 EXFUN (Fredraw_frame, 2); |
682 | 682 |
683 int redisplay_text_width_string (struct window *w, int findex, | 683 int redisplay_text_width_string (struct window *w, int findex, |
684 Bufbyte *nonreloc, Lisp_Object reloc, | 684 Intbyte *nonreloc, Lisp_Object reloc, |
685 Bytecount offset, Bytecount len); | 685 Bytecount offset, Bytecount len); |
686 int redisplay_frame_text_width_string (struct frame *f, | 686 int redisplay_frame_text_width_string (struct frame *f, |
687 Lisp_Object face, | 687 Lisp_Object face, |
688 Bufbyte *nonreloc, | 688 Intbyte *nonreloc, |
689 Lisp_Object reloc, | 689 Lisp_Object reloc, |
690 Bytecount offset, Bytecount len); | 690 Bytecount offset, Bytecount len); |
691 int redisplay_frame (struct frame *f, int preemption_check); | 691 int redisplay_frame (struct frame *f, int preemption_check); |
692 void redisplay (void); | 692 void redisplay (void); |
693 struct display_block *get_display_block_from_line (struct display_line *dl, | 693 struct display_block *get_display_block_from_line (struct display_line *dl, |
694 enum display_type type); | 694 enum display_type type); |
695 layout_bounds calculate_display_line_boundaries (struct window *w, | 695 layout_bounds calculate_display_line_boundaries (struct window *w, |
696 int modeline); | 696 int modeline); |
697 Bufpos point_at_center (struct window *w, int type, Bufpos start, | 697 Charbpos point_at_center (struct window *w, int type, Charbpos start, |
698 Bufpos point); | 698 Charbpos point); |
699 int line_at_center (struct window *w, int type, Bufpos start, Bufpos point); | 699 int line_at_center (struct window *w, int type, Charbpos start, Charbpos point); |
700 int window_half_pixpos (struct window *w); | 700 int window_half_pixpos (struct window *w); |
701 void redisplay_echo_area (void); | 701 void redisplay_echo_area (void); |
702 void free_display_structs (struct window_mirror *mir); | 702 void free_display_structs (struct window_mirror *mir); |
703 void free_display_lines (display_line_dynarr *dla); | 703 void free_display_lines (display_line_dynarr *dla); |
704 void mark_redisplay_structs (display_line_dynarr *dla); | 704 void mark_redisplay_structs (display_line_dynarr *dla); |
705 void generate_displayable_area (struct window *w, Lisp_Object disp_string, | 705 void generate_displayable_area (struct window *w, Lisp_Object disp_string, |
706 int xpos, int ypos, int width, int height, | 706 int xpos, int ypos, int width, int height, |
707 display_line_dynarr* dl, | 707 display_line_dynarr* dl, |
708 Bufpos start_pos, face_index default_face); | 708 Charbpos start_pos, face_index default_face); |
709 /* `generate_title_string' in frame.c needs this */ | 709 /* `generate_title_string' in frame.c needs this */ |
710 void generate_formatted_string_db (Lisp_Object format_str, | 710 void generate_formatted_string_db (Lisp_Object format_str, |
711 Lisp_Object result_str, | 711 Lisp_Object result_str, |
712 struct window *w, | 712 struct window *w, |
713 struct display_line *dl, | 713 struct display_line *dl, |
716 int min_pixpos, int max_pixpos, int type); | 716 int min_pixpos, int max_pixpos, int type); |
717 int real_current_modeline_height (struct window *w); | 717 int real_current_modeline_height (struct window *w); |
718 int pixel_to_glyph_translation (struct frame *f, int x_coord, | 718 int pixel_to_glyph_translation (struct frame *f, int x_coord, |
719 int y_coord, int *col, int *row, | 719 int y_coord, int *col, int *row, |
720 int *obj_x, int *obj_y, | 720 int *obj_x, int *obj_y, |
721 struct window **w, Bufpos *bufpos, | 721 struct window **w, Charbpos *charbpos, |
722 Bufpos *closest, Charcount *modeline_closest, | 722 Charbpos *closest, Charcount *modeline_closest, |
723 Lisp_Object *obj1, Lisp_Object *obj2); | 723 Lisp_Object *obj1, Lisp_Object *obj2); |
724 void glyph_to_pixel_translation (struct window *w, int char_x, | 724 void glyph_to_pixel_translation (struct window *w, int char_x, |
725 int char_y, int *pix_x, int *pix_y); | 725 int char_y, int *pix_x, int *pix_y); |
726 int point_in_line_start_cache (struct window *w, Bufpos point, | 726 int point_in_line_start_cache (struct window *w, Charbpos point, |
727 int min_past); | 727 int min_past); |
728 int point_would_be_visible (struct window *w, Bufpos startp, | 728 int point_would_be_visible (struct window *w, Charbpos startp, |
729 Bufpos point); | 729 Charbpos point); |
730 Bufpos start_of_last_line (struct window *w, Bufpos startp); | 730 Charbpos start_of_last_line (struct window *w, Charbpos startp); |
731 Bufpos end_of_last_line (struct window *w, Bufpos startp); | 731 Charbpos end_of_last_line (struct window *w, Charbpos startp); |
732 Bufpos start_with_line_at_pixpos (struct window *w, Bufpos point, | 732 Charbpos start_with_line_at_pixpos (struct window *w, Charbpos point, |
733 int pixpos); | 733 int pixpos); |
734 Bufpos start_with_point_on_display_line (struct window *w, Bufpos point, | 734 Charbpos start_with_point_on_display_line (struct window *w, Charbpos point, |
735 int line); | 735 int line); |
736 int redisplay_variable_changed (Lisp_Object sym, Lisp_Object *val, | 736 int redisplay_variable_changed (Lisp_Object sym, Lisp_Object *val, |
737 Lisp_Object in_object, int flags); | 737 Lisp_Object in_object, int flags); |
738 void redisplay_glyph_changed (Lisp_Object glyph, Lisp_Object property, | 738 void redisplay_glyph_changed (Lisp_Object glyph, Lisp_Object property, |
739 Lisp_Object locale); | 739 Lisp_Object locale); |
789 int min_start, int max_end); | 789 int min_start, int max_end); |
790 void redisplay_update_line (struct window *w, int first_line, | 790 void redisplay_update_line (struct window *w, int first_line, |
791 int last_line, int update_values); | 791 int last_line, int update_values); |
792 void redisplay_output_window (struct window *w); | 792 void redisplay_output_window (struct window *w); |
793 void bevel_modeline (struct window *w, struct display_line *dl); | 793 void bevel_modeline (struct window *w, struct display_line *dl); |
794 int redisplay_move_cursor (struct window *w, Bufpos new_point, | 794 int redisplay_move_cursor (struct window *w, Charbpos new_point, |
795 int no_output_end); | 795 int no_output_end); |
796 void redisplay_redraw_cursor (struct frame *f, int run_begin_end_meths); | 796 void redisplay_redraw_cursor (struct frame *f, int run_begin_end_meths); |
797 void output_display_line (struct window *w, display_line_dynarr *cdla, | 797 void output_display_line (struct window *w, display_line_dynarr *cdla, |
798 display_line_dynarr *ddla, int line, | 798 display_line_dynarr *ddla, int line, |
799 int force_start, int force_end); | 799 int force_start, int force_end); |