3 # Generate code page .c files from ftp.unicode.org descriptions
5 # Copyright 2000 Alexandre Julliard
7 # This library is free software; you can redistribute it and/or
8 # modify it under the terms of the GNU Lesser General Public
9 # License as published by the Free Software Foundation; either
10 # version 2.1 of the License, or (at your option) any later version.
12 # This library is distributed in the hope that it will be useful,
13 # but WITHOUT ANY WARRANTY; without even the implied warranty of
14 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 # Lesser General Public License for more details.
17 # You should have received a copy of the GNU Lesser General Public
18 # License along with this library; if not, write to the Free Software
19 # Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
24 # base URLs for www.unicode.org files
25 my $MAPPINGS = "http://www.unicode.org/Public/MAPPINGS";
26 my $UNIDATA = "http://www.unicode.org/Public/11.0.0/ucd";
27 my $REPORTS = "http://www.unicode.org/reports";
28 my $RFCS = "http://www.rfc-editor.org/rfc";
31 my $SORTKEYS = "tr10/allkeys.txt";
33 # RFC3454 (stringprep data)
34 my $STRINGPREP = "rfc3454.txt";
37 my $DEFAULTS = "tools/unicode-defaults";
39 # Default char for undefined mappings
40 my $DEF_CHAR = ord '?';
44 [ 37, "VENDORS/MICSFT/EBCDIC/CP037.TXT", 0, "IBM EBCDIC US Canada", 0, 0x6f ],
45 [ 424, "VENDORS/MISC/CP424.TXT", 0, "IBM EBCDIC Hebrew" ],
46 [ 437, "VENDORS/MICSFT/PC/CP437.TXT", 1, "OEM United States" ],
47 [ 500, "VENDORS/MICSFT/EBCDIC/CP500.TXT", 0, "IBM EBCDIC International", 0, 0x6f ],
48 [ 737, "VENDORS/MICSFT/PC/CP737.TXT", 1, "OEM Greek 437G" ],
49 [ 775, "VENDORS/MICSFT/PC/CP775.TXT", 1, "OEM Baltic" ],
50 [ 850, "VENDORS/MICSFT/PC/CP850.TXT", 1, "OEM Multilingual Latin 1" ],
51 [ 852, "VENDORS/MICSFT/PC/CP852.TXT", 1, "OEM Slovak Latin 2" ],
52 [ 855, "VENDORS/MICSFT/PC/CP855.TXT", 1, "OEM Cyrillic" ],
53 [ 856, "VENDORS/MISC/CP856.TXT", 0, "Hebrew PC" ],
54 [ 857, "VENDORS/MICSFT/PC/CP857.TXT", 1, "OEM Turkish", 0xf8bb ],
55 [ 860, "VENDORS/MICSFT/PC/CP860.TXT", 1, "OEM Portuguese" ],
56 [ 861, "VENDORS/MICSFT/PC/CP861.TXT", 1, "OEM Icelandic" ],
57 [ 862, "VENDORS/MICSFT/PC/CP862.TXT", 1, "OEM Hebrew" ],
58 [ 863, "VENDORS/MICSFT/PC/CP863.TXT", 1, "OEM Canadian French" ],
59 [ 864, "VENDORS/MICSFT/PC/CP864.TXT", 0, "OEM Arabic", 0xf8bb ],
60 [ 865, "VENDORS/MICSFT/PC/CP865.TXT", 1, "OEM Nordic" ],
61 [ 866, "VENDORS/MICSFT/PC/CP866.TXT", 1, "OEM Russian" ],
62 [ 869, "VENDORS/MICSFT/PC/CP869.TXT", 1, "OEM Greek" ],
63 [ 874, "VENDORS/MICSFT/WindowsBestFit/bestfit874.txt", 1, "ANSI/OEM Thai" ],
64 [ 875, "VENDORS/MICSFT/EBCDIC/CP875.TXT", 0, "IBM EBCDIC Greek", 0, 0x6f ],
65 [ 878, "VENDORS/MISC/KOI8-R.TXT", 0, "Russian KOI8" ],
66 [ 932, "VENDORS/MICSFT/WindowsBestFit/bestfit932.txt", 0, "ANSI/OEM Japanese Shift-JIS" ],
67 [ 936, "VENDORS/MICSFT/WindowsBestFit/bestfit936.txt", 0, "ANSI/OEM Simplified Chinese GBK" ],
68 [ 949, "VENDORS/MICSFT/WindowsBestFit/bestfit949.txt", 0, "ANSI/OEM Korean Unified Hangul" ],
69 [ 950, "VENDORS/MICSFT/WindowsBestFit/bestfit950.txt", 0, "ANSI/OEM Traditional Chinese Big5" ],
70 [ 1006, "VENDORS/MISC/CP1006.TXT", 0, "IBM Arabic" ],
71 [ 1026, "VENDORS/MICSFT/EBCDIC/CP1026.TXT", 0, "IBM EBCDIC Latin 5 Turkish", 0, 0x6f ],
72 [ 1250, "VENDORS/MICSFT/WindowsBestFit/bestfit1250.txt", 0, "ANSI Eastern Europe" ],
73 [ 1251, "VENDORS/MICSFT/WindowsBestFit/bestfit1251.txt", 0, "ANSI Cyrillic" ],
74 [ 1252, "VENDORS/MICSFT/WindowsBestFit/bestfit1252.txt", 0, "ANSI Latin 1" ],
75 [ 1253, "VENDORS/MICSFT/WindowsBestFit/bestfit1253.txt", 0, "ANSI Greek" ],
76 [ 1254, "VENDORS/MICSFT/WindowsBestFit/bestfit1254.txt", 0, "ANSI Turkish" ],
77 [ 1255, "VENDORS/MICSFT/WindowsBestFit/bestfit1255.txt", 0, "ANSI Hebrew" ],
78 [ 1256, "VENDORS/MICSFT/WindowsBestFit/bestfit1256.txt", 0, "ANSI Arabic" ],
79 [ 1257, "VENDORS/MICSFT/WindowsBestFit/bestfit1257.txt", 0, "ANSI Baltic" ],
80 [ 1258, "VENDORS/MICSFT/WindowsBestFit/bestfit1258.txt", 0, "ANSI/OEM Viet Nam" ],
81 [ 1361, "VENDORS/MICSFT/WindowsBestFit/bestfit1361.txt", 0, "Korean Johab" ],
82 [ 10000, "VENDORS/MICSFT/MAC/ROMAN.TXT", 0, "Mac Roman" ],
83 [ 10001, "VENDORS/APPLE/JAPANESE.TXT", 0, "Mac Japanese" ],
84 [ 10002, "VENDORS/APPLE/CHINTRAD.TXT", 0, "Mac Traditional Chinese" ],
85 [ 10003, "VENDORS/APPLE/KOREAN.TXT", 0, "Mac Korean", 0xf8e5 ],
86 [ 10004, "VENDORS/APPLE/ARABIC.TXT", 0, "Mac Arabic", 0xf826 ],
87 [ 10005, "VENDORS/APPLE/HEBREW.TXT", 0, "Mac Hebrew", 0xf7fa ],
88 [ 10006, "VENDORS/MICSFT/MAC/GREEK.TXT", 0, "Mac Greek" ],
89 [ 10007, "VENDORS/MICSFT/MAC/CYRILLIC.TXT", 0, "Mac Cyrillic" ],
90 [ 10008, "VENDORS/APPLE/CHINSIMP.TXT", 0, "Mac Simplified Chinese" ],
91 [ 10010, "VENDORS/APPLE/ROMANIAN.TXT", 0, "Mac Romanian" ],
92 [ 10017, "VENDORS/APPLE/CYRILLIC.TXT", 0, "Mac Ukrainian" ],
93 [ 10021, "VENDORS/APPLE/THAI.TXT", 0, "Mac Thai" ],
94 [ 10029, "VENDORS/MICSFT/MAC/LATIN2.TXT", 0, "Mac Latin 2" ],
95 [ 10079, "VENDORS/MICSFT/MAC/ICELAND.TXT", 0, "Mac Icelandic" ],
96 [ 10081, "VENDORS/MICSFT/MAC/TURKISH.TXT", 0, "Mac Turkish", 0xf89f ],
97 [ 10082, "VENDORS/APPLE/CROATIAN.TXT", 0, "Mac Croatian" ],
98 [ 20127, undef, 0, "US-ASCII (7bit)" ],
99 [ 20866, "VENDORS/MISC/KOI8-R.TXT", 0, "Russian KOI8" ],
100 [ 20932, "OBSOLETE/EASTASIA/JIS/JIS0208.TXT", 0, "EUC-JP", 0, 0x3f, 0x30fb ],
101 [ 21866, "VENDORS/MISC/KOI8-U.TXT", 0, "Ukrainian KOI8" ],
102 [ 28591, "ISO8859/8859-1.TXT", 0, "ISO 8859-1 Latin 1" ],
103 [ 28592, "ISO8859/8859-2.TXT", 0, "ISO 8859-2 Latin 2 (East European)" ],
104 [ 28593, "ISO8859/8859-3.TXT", 0, "ISO 8859-3 Latin 3 (South European)", 0xf7f5 ],
105 [ 28594, "ISO8859/8859-4.TXT", 0, "ISO 8859-4 Latin 4 (Baltic old)" ],
106 [ 28595, "ISO8859/8859-5.TXT", 0, "ISO 8859-5 Cyrillic" ],
107 [ 28596, "ISO8859/8859-6.TXT", 0, "ISO 8859-6 Arabic", 0xf7c8 ],
108 [ 28597, "ISO8859/8859-7.TXT", 0, "ISO 8859-7 Greek", 0xf7c5 ],
109 [ 28598, "ISO8859/8859-8.TXT", 0, "ISO 8859-8 Hebrew", 0xf79c ],
110 [ 28599, "ISO8859/8859-9.TXT", 0, "ISO 8859-9 Latin 5 (Turkish)" ],
111 [ 28600, "ISO8859/8859-10.TXT", 0, "ISO 8859-10 Latin 6 (Nordic)" ],
112 [ 28603, "ISO8859/8859-13.TXT", 0, "ISO 8859-13 Latin 7 (Baltic)" ],
113 [ 28604, "ISO8859/8859-14.TXT", 0, "ISO 8859-14 Latin 8 (Celtic)" ],
114 [ 28605, "ISO8859/8859-15.TXT", 0, "ISO 8859-15 Latin 9 (Euro)" ],
115 [ 28606, "ISO8859/8859-16.TXT", 0, "ISO 8859-16 Latin 10 (Balkan)" ]
144 "Avagraha" => 0x0003,
147 "Vowel_Independent" => 0x0006,
148 "Vowel_Dependent" => 0x0007,
150 "Consonant_Placeholder" => 0x0009,
151 "Consonant" => 0x000a,
152 "Consonant_Dead" => 0x000b,
153 "Consonant_Succeeding_Repha" => 0x000c,
154 "Consonant_Subjoined" => 0x000d,
155 "Consonant_Medial" => 0x000e,
156 "Consonant_Final" => 0x000f,
157 "Consonant_Head_Letter" => 0x0010,
158 "Modifying_Letter" => 0x0011,
159 "Tone_Letter" => 0x0012,
160 "Tone_Mark" => 0x0013,
161 "Register_Shifter" => 0x0014,
162 "Consonant_Preceding_Repha" => 0x0015,
163 "Pure_Killer" => 0x0016,
164 "Invisible_Stacker" => 0x0017,
165 "Gemination_Mark" => 0x0018,
166 "Cantillation_Mark" => 0x0019,
167 "Non_Joiner" => 0x001a,
169 "Number_Joiner" => 0x001c,
171 "Brahmi_Joining_Number" => 0x001e,
172 "Consonant_With_Stacker" => 0x001f,
173 "Consonant_Prefixed" => 0x0020,
174 "Syllable_Modifier" => 0x0021,
175 "Consonant_Killer" => 0x0022,
176 "Consonant_Initial_Postfixed" => 0x0023,
183 "Visual_Order_Left" => 0x03,
184 "Left_And_Right" => 0x04,
187 "Top_And_Bottom" => 0x07,
188 "Top_And_Right" => 0x08,
189 "Top_And_Left" => 0x09,
190 "Top_And_Left_And_Right" => 0x0a,
191 "Bottom_And_Right" => 0x0b,
192 "Top_And_Bottom_And_Right" => 0x0c,
193 "Overstruck" => 0x0d,
195 "Bottom_And_Left" => 0x0f
200 "unassigned" => 0x01,
201 "prohibited" => 0x02,
263 "Lu" => $ctype{"defin"}|$ctype{"alpha"}|$ctype{"upper"}, # Letter, Uppercase
264 "Ll" => $ctype{"defin"}|$ctype{"alpha"}|$ctype{"lower"}, # Letter, Lowercase
265 "Lt" => $ctype{"defin"}|$ctype{"alpha"}|$ctype{"upper"}|$ctype{"lower"}, # Letter, Titlecase
266 "Mn" => $ctype{"defin"}, # Mark, Non-Spacing
267 "Mc" => $ctype{"defin"}, # Mark, Spacing Combining
268 "Me" => $ctype{"defin"}, # Mark, Enclosing
269 "Nd" => $ctype{"defin"}|$ctype{"digit"}, # Number, Decimal Digit
270 "Nl" => $ctype{"defin"}|$ctype{"alpha"}, # Number, Letter
271 "No" => $ctype{"defin"}, # Number, Other
272 "Zs" => $ctype{"defin"}|$ctype{"space"}, # Separator, Space
273 "Zl" => $ctype{"defin"}|$ctype{"space"}, # Separator, Line
274 "Zp" => $ctype{"defin"}|$ctype{"space"}, # Separator, Paragraph
275 "Cc" => $ctype{"defin"}|$ctype{"cntrl"}, # Other, Control
276 "Cf" => $ctype{"defin"}|$ctype{"cntrl"}, # Other, Format
277 "Cs" => $ctype{"defin"}, # Other, Surrogate
278 "Co" => $ctype{"defin"}, # Other, Private Use
279 "Cn" => $ctype{"defin"}, # Other, Not Assigned
280 "Lm" => $ctype{"defin"}|$ctype{"alpha"}, # Letter, Modifier
281 "Lo" => $ctype{"defin"}|$ctype{"alpha"}, # Letter, Other
282 "Pc" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Connector
283 "Pd" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Dash
284 "Ps" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Open
285 "Pe" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Close
286 "Pi" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Initial quote
287 "Pf" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Final quote
288 "Po" => $ctype{"defin"}|$ctype{"punct"}, # Punctuation, Other
289 "Sm" => $ctype{"defin"}, # Symbol, Math
290 "Sc" => $ctype{"defin"}, # Symbol, Currency
291 "Sk" => $ctype{"defin"}, # Symbol, Modifier
292 "So" => $ctype{"defin"} # Symbol, Other
295 # a few characters need additional categories that cannot be determined automatically
296 my %special_categories =
298 "xdigit" => [ ord('0')..ord('9'),ord('A')..ord('F'),ord('a')..ord('f'),
299 0xff10..0xff19
, 0xff21..0xff26
, 0xff41..0xff46
],
300 "space" => [ 0x09..0x0d
, 0x85 ],
301 "blank" => [ 0x09, 0x20, 0xa0, 0x3000, 0xfeff ],
302 "cntrl" => [ 0x070f, 0x200c, 0x200d,
303 0x200e, 0x200f, 0x202a, 0x202b, 0x202c, 0x202d, 0x202e,
304 0x206a, 0x206b, 0x206c, 0x206d, 0x206e, 0x206f, 0xfeff,
305 0xfff9, 0xfffa, 0xfffb ],
306 "punct" => [ 0x24, 0x2b, 0x3c..0x3e
, 0x5e, 0x60, 0x7c, 0x7e, 0xa2..0xbe
,
308 "digit" => [ 0xb2, 0xb3, 0xb9 ],
309 "lower" => [ 0x2071, 0x207f ]
314 "L" => 1, # Left-to-Right
315 "R" => 2, # Right-to-Left
316 "AL" => 12, # Right-to-Left Arabic
317 "EN" => 3, # European Number
318 "ES" => 4, # European Number Separator
319 "ET" => 5, # European Number Terminator
320 "AN" => 6, # Arabic Number
321 "CS" => 7, # Common Number Separator
322 "NSM" => 13, # Non-Spacing Mark
323 "BN" => 14, # Boundary Neutral
324 "B" => 8, # Paragraph Separator
325 "S" => 9, # Segment Separator
326 "WS" => 10, # Whitespace
327 "ON" => 11, # Other Neutrals
328 "LRE" => 15, # Left-to-Right Embedding
329 "LRO" => 15, # Left-to-Right Override
330 "RLE" => 15, # Right-to-Left Embedding
331 "RLO" => 15, # Right-to-Left Override
332 "PDF" => 15, # Pop Directional Format
333 "LRI" => 15, # Left-to-Right Isolate
334 "RLI" => 15, # Right-to-Left Isolate
335 "FSI" => 15, # First Strong Isolate
336 "PDI" => 15 # Pop Directional Isolate
341 "U" => 0, # Non_Joining
342 "T" => 1, # Transparent
343 "R" => 2, # Right_Joining
344 "L" => 3, # Left_Joining
345 "D" => 4, # Dual_Joining
346 "C" => 5, # Join_Causing
352 my @unicode_defaults = ();
353 my @unicode_aliases = ();
354 my @tolower_table = ();
355 my @toupper_table = ();
356 my @digitmap_table = ();
357 my @compatmap_table = ();
358 my @category_table = ();
359 my @joining_table = ();
360 my @direction_table = ();
361 my @decomp_table = ();
362 my @compose_table = ();
363 my @combining_class_table = ();
364 my @full_compatmap_table = ();
376 ################################################################
377 # fetch a unicode.org file and open it
378 sub open_data_file
($$)
380 my ($base, $name) = @_;
381 (my $dir = "data/$name") =~ s
/\
/[^\/]+$//;
383 unless (-f
"data/$name")
385 print "Fetching $base/$name...\n";
386 system "mkdir", "-p", $dir;
387 !system "wget", "-q", "-O", "data/$name", "$base/$name" or die "cannot fetch $base/$name";
389 open FILE
, "<data/$name" or die "cannot open data/$name";
393 ################################################################
394 # read in the defaults file
397 my $filename = shift;
400 # first setup a few default mappings
402 open DEFAULTS
, "$filename" or die "Cannot open $filename";
403 print "Loading $filename\n";
406 next if /^\#/; # skip comments
407 next if /^$/; # skip empty lines
408 if (/^(([0-9a-fA-F]+)(,[0-9a-fA-F]+)*)\s+([0-9a-fA-F]+|'.'|none)\s+(\#.*)?/)
410 my @src = map hex, split /,/,$1;
413 if ($#src > 0) { push @unicode_aliases, \
@src; }
414 next if ($dst eq "none");
415 $dst = ($dst =~ /\'.\'/) ?
ord substr($dst,1,1) : hex $dst;
416 foreach my $src (@src)
418 die "Duplicate value" if defined($unicode_defaults[$src]);
419 $unicode_defaults[$src] = $dst;
423 die "Unrecognized line $_\n";
427 # now build mappings from the decomposition field of the Unicode database
429 my $UNICODE_DATA = open_data_file
( $UNIDATA, "UnicodeData.txt" );
430 while (<$UNICODE_DATA>)
432 # Decode the fields ...
433 my ($code, $name, $cat, $comb, $bidi,
434 $decomp, $dec, $dig, $num, $mirror,
435 $oldname, $comment, $upper, $lower, $title) = split /;/;
439 die "unknown category $cat" unless defined $categories{$cat};
440 die "unknown directionality $bidi" unless defined $directions{$bidi};
442 $category_table[$src] = $categories{$cat};
443 $direction_table[$src] = $directions{$bidi};
444 $joining_table[$src] = $joining_types{"T"} if $cat eq "Mn" || $cat eq "Me" || $cat eq "Cf";
448 $tolower_table[$src] = hex $lower;
452 $toupper_table[$src] = hex $upper;
456 $category_table[$src] |= $ctype{"digit"};
460 $digitmap_table[$src] = ord $dig;
464 $combining_class_table[$src] = $comb;
467 # copy the category and direction for everything between First/Last pairs
468 if ($name =~ /, First>/) { $start = $src; }
469 if ($name =~ /, Last>/)
471 while ($start < $src)
473 $category_table[$start] = $category_table[$src];
474 $direction_table[$start] = $direction_table[$src];
479 next if $decomp eq ""; # no decomposition, skip it
481 if ($decomp =~ /^<([a-zA-Z]+)>\s+([0-9a-fA-F]+)/)
484 for my $ch (split /\s+/, (split /\s+/, $decomp, 2)[1])
486 push @seq, (hex $ch);
488 $full_compatmap_table[$src] = \
@seq;
491 if ($decomp =~ /^<([a-zA-Z]+)>\s+([0-9a-fA-F]+)$/)
493 # decomposition of the form "<foo> 1234" -> use char if type is known
494 if (($src >= 0xf900 && $src < 0xfb00) || ($src >= 0xfe30 && $src < 0xfffd))
496 # Single char decomposition in the compatibility range
497 $compatmap_table[$src] = hex $2;
499 if ($1 eq "isolated" || $1 eq "final" || $1 eq "initial" || $1 eq "medial")
501 ${joining_forms
{$1}}[hex $2] = $src;
504 next unless ($1 eq "font" ||
515 elsif ($decomp =~ /^<compat>\s+0020\s+([0-9a-fA-F]+)/)
517 # decomposition "<compat> 0020 1234" -> combining accent
520 elsif ($decomp =~ /^([0-9a-fA-F]+)/)
522 # decomposition contains only char values without prefix -> use first char
524 $category_table[$src] |= $category_table[$dst] if defined $category_table[$dst];
525 # store decomposition if it contains two chars
526 if ($decomp =~ /^([0-9a-fA-F]+)\s+([0-9a-fA-F]+)$/)
528 $decomp_table[$src] = [ hex $1, hex $2 ];
529 push @compose_table, [ hex $1, hex $2, $src ];
531 elsif ($decomp =~ /^([0-9a-fA-F]+)$/)
533 # Single char decomposition
536 $decomp_table[$src] = [ hex $1, 0 ];
539 if (($src >= 0xf900 && $src < 0xfb00) || ($src >= 0xfe30 && $src < 0xfffd))
541 # Single char decomposition in the compatibility range
542 $compatmap_table[$src] = hex $1;
551 next if defined($unicode_defaults[$src]); # may have been set in the defaults file
554 for (my $i = $dst; ; $i = $unicode_defaults[$i])
556 die sprintf("loop detected for %04x -> %04x",$src,$dst) if $i == $src;
557 last unless defined($unicode_defaults[$i]);
559 $unicode_defaults[$src] = $dst;
563 # patch the category of some special characters
565 foreach my $cat (keys %special_categories)
567 my $flag = $ctype{$cat};
568 foreach my $i (@
{$special_categories{$cat}}) { $category_table[$i] |= $flag; }
573 ################################################################
574 # define a new lead byte
578 push @lead_bytes, $ch;
582 ################################################################
583 # define a new char mapping
587 $cp2uni[$cp] = $uni unless defined($cp2uni[$cp]);
588 $uni2cp[$uni] = $cp unless defined($uni2cp[$uni]);
589 if ($cp > 0xff && !defined($cp2uni[$cp >> 8]))
591 add_lead_byte
( $cp >> 8 );
595 ################################################################
596 # parse a standard codepage file
597 sub read_codepage_file
($)
600 my $INPUT = open_data_file
( $MAPPINGS, $name );
604 next if /^\#/; # skip comments
605 next if /^$/; # skip empty lines
606 next if /\x1a/; # skip ^Z
607 next if (/^0x([0-9a-fA-F]+)\s+\#UNDEFINED/); # undefined char
609 if (/^0x([0-9a-fA-F]+)\s+\#DBCS LEAD BYTE/)
611 add_lead_byte
( hex $1 );
615 if (/^0x([0-9a-fA-F]+)\s+0x([0-9a-fA-F]+)\s+(\#.*)?/)
617 add_mapping
( hex $1, hex $2 );
621 if (/^0x([0-9a-fA-F]+)\s+0x([0-9a-fA-F]+)\+.*\s+(\#.*)?/)
623 add_mapping
( hex $1, hex $2 );
627 if (/^0x([0-9a-fA-F]+)\s+<LR>\+0x([0-9a-fA-F]+)\s+(\#.*)?/)
629 add_mapping
( hex $1, hex $2 );
633 if (/^0x([0-9a-fA-F]+)\s+<RL>\+0x([0-9a-fA-F]+)\s+(\#.*)?/)
636 add_mapping
( hex $1, $uni ) if $uni >= 0x80;
639 die "$name: Unrecognized line $_\n";
645 ################################################################
646 # fill input data for the 20127 (us-ascii) codepage
647 sub fill_20127_codepage
()
649 for (my $i = 0; $i < 128; $i++) { $cp2uni[$i] = $uni2cp[$i] = $i; }
650 for (my $i = 128; $i < 256; $i++) { $cp2uni[$i] = $i & 0x7f; }
653 ################################################################
654 # get a mapping including glyph chars for MB_USEGLYPHCHARS
656 sub get_glyphs_mapping
(@
)
658 $_[0x01] = 0x263a; # (WHITE SMILING FACE)
659 $_[0x02] = 0x263b; # (BLACK SMILING FACE)
660 $_[0x03] = 0x2665; # (BLACK HEART SUIT)
661 $_[0x04] = 0x2666; # (BLACK DIAMOND SUIT)
662 $_[0x05] = 0x2663; # (BLACK CLUB SUIT)
663 $_[0x06] = 0x2660; # (BLACK SPADE SUIT)
664 $_[0x07] = 0x2022; # (BULLET)
665 $_[0x08] = 0x25d8; # (INVERSE BULLET)
666 $_[0x09] = 0x25cb; # (WHITE CIRCLE)
667 $_[0x0a] = 0x25d9; # (INVERSE WHITE CIRCLE)
668 $_[0x0b] = 0x2642; # (MALE SIGN)
669 $_[0x0c] = 0x2640; # (FEMALE SIGN)
670 $_[0x0d] = 0x266a; # (EIGHTH NOTE)
671 $_[0x0e] = 0x266b; # (BEAMED EIGHTH NOTES)
672 $_[0x0f] = 0x263c; # (WHITE SUN WITH RAYS)
673 $_[0x10] = 0x25ba; # (BLACK RIGHT-POINTING POINTER)
674 $_[0x11] = 0x25c4; # (BLACK LEFT-POINTING POINTER)
675 $_[0x12] = 0x2195; # (UP DOWN ARROW)
676 $_[0x13] = 0x203c; # (DOUBLE EXCLAMATION MARK)
677 $_[0x14] = 0x00b6; # (PILCROW SIGN)
678 $_[0x15] = 0x00a7; # (SECTION SIGN)
679 $_[0x16] = 0x25ac; # (BLACK RECTANGLE)
680 $_[0x17] = 0x21a8; # (UP DOWN ARROW WITH BASE)
681 $_[0x18] = 0x2191; # (UPWARDS ARROW)
682 $_[0x19] = 0x2193; # (DOWNWARDS ARROW)
683 $_[0x1a] = 0x2192; # (RIGHTWARDS ARROW)
684 $_[0x1b] = 0x2190; # (LEFTWARDS ARROW)
685 $_[0x1c] = 0x221f; # (RIGHT ANGLE)
686 $_[0x1d] = 0x2194; # (LEFT RIGHT ARROW)
687 $_[0x1e] = 0x25b2; # (BLACK UP-POINTING TRIANGLE)
688 $_[0x1f] = 0x25bc; # (BLACK DOWN-POINTING TRIANGLE)
689 $_[0x7f] = 0x2302; # (HOUSE)
693 ################################################################
694 # build EUC-JP table from the JIS 0208 file
695 # FIXME: for proper EUC-JP we should probably read JIS 0212 too
696 # but this would require 3-byte DBCS characters
697 sub READ_JIS0208_FILE
($)
702 for (my $i = 0x00; $i <= 0x7f; $i++)
708 # JIS X 0201 right plane
709 for (my $i = 0xa1; $i <= 0xdf; $i++)
711 $cp2uni[0x8e00 + $i] = 0xfec0 + $i;
712 $uni2cp[0xfec0 + $i] = 0x8e00 + $i;
716 foreach my $i (0x8e, 0x8f, 0xa1 .. 0xfe)
722 foreach my $i (0x80 .. 0x8d, 0x90 .. 0xa0, 0xff)
724 $cp2uni[$i] = $DEF_CHAR;
727 # Shift-JIS compatibility
728 $uni2cp[0x00a5] = 0x5c;
729 $uni2cp[0x203e] = 0x7e;
731 # Fix backslash conversion
732 $cp2uni[0xa1c0] = 0xff3c;
733 $uni2cp[0xff3c] = 0xa1c0;
735 my $INPUT = open_data_file
( $MAPPINGS, $name );
738 next if /^\#/; # skip comments
739 next if /^$/; # skip empty lines
740 next if /\x1a/; # skip ^Z
741 if (/^0x[0-9a-fA-F]+\s+0x([0-9a-fA-F]+)\s+0x([0-9a-fA-F]+)\s+(\#.*)?/)
743 my $cp = 0x8080 + hex $1;
745 $cp2uni[$cp] = $uni unless defined($cp2uni[$cp]);
746 $uni2cp[$uni] = $cp unless defined($uni2cp[$uni]);
749 die "$name: Unrecognized line $_\n";
755 ################################################################
756 # build the sort keys table
757 sub READ_SORTKEYS_FILE
()
760 for (my $i = 0; $i < 65536; $i++) { $sortkeys[$i] = [ -1, 0, 0, 0, 0 ] };
762 my $INPUT = open_data_file
( $REPORTS, $SORTKEYS );
765 next if /^\#/; # skip comments
766 next if /^$/; # skip empty lines
767 next if /\x1a/; # skip ^Z
768 next if /^\@version/; # skip @version header
769 if (/^([0-9a-fA-F]+)\s+;\s+\[([*.])([0-9a-fA-F]{4})\.([0-9a-fA-F]{4})\.([0-9a-fA-F]{4})\.([0-9a-fA-F]+)\]/)
771 my ($uni,$variable) = (hex $1, $2);
772 next if $uni > 65535;
773 $sortkeys[$uni] = [ $uni, hex $3, hex $4, hex $5, hex $6 ];
776 if (/^([0-9a-fA-F]+\s+)+;\s+\[[*.]([0-9a-fA-F]{4})\.([0-9a-fA-F]{4})\.([0-9a-fA-F]{4})\.([0-9a-fA-F]+)\]/)
778 # multiple character sequence, ignored for now
781 die "$SORTKEYS: Unrecognized line $_\n";
785 # compress the keys to 32 bit:
786 # key 1 to 16 bits, key 2 to 8 bits, key 3 to 4 bits, key 4 to 1 bit
788 @sortkeys = sort { ${$a}[1] <=> ${$b}[1] or
789 ${$a}[2] <=> ${$b}[2] or
790 ${$a}[3] <=> ${$b}[3] or
791 ${$a}[4] <=> ${$b}[4] or
792 $a cmp $b; } @sortkeys;
794 my ($n2, $n3) = (1, 1);
795 my @keys = (-1, -1, -1, -1, -1 );
798 for (my $i = 0; $i < 65536; $i++)
800 my @current = @
{$sortkeys[$i]};
801 next if $current[0] == -1;
802 if ($current[1] == $keys[1])
804 if ($current[2] == $keys[2])
806 if ($current[3] == $keys[3])
812 $keys[3] = $current[3];
819 $keys[2] = $current[2];
820 $keys[3] = $current[3];
828 $keys[1] = $current[1];
829 $keys[2] = $current[2];
830 $keys[3] = $current[3];
835 if ($current[2]) { $current[2] = $n2; }
836 if ($current[3]) { $current[3] = $n3; }
837 if ($current[4]) { $current[4] = 1; }
839 $flatkeys[$current[0]] = ($current[1] << 16) | ($current[2] << 8) | ($current[3] << 4) | $current[4];
845 ################################################################
846 # build the sort keys table
847 sub DUMP_SORTKEYS
($@
)
849 my ($filename, @keys) = @_;
851 # count the number of 256-key ranges that contain something
855 for (my $i = 0; $i < 256; $i++) { $offsets[$i] = 256; }
856 for (my $i = 0; $i < 65536; $i++)
858 next unless defined $keys[$i];
859 $offsets[$i >> 8] = $ranges * 256;
864 # output the range offsets
866 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
867 printf "Building $filename\n";
868 printf OUTPUT
"/* Unicode collation element table */\n";
869 printf OUTPUT
"/* generated from %s */\n", "$REPORTS/$SORTKEYS";
870 printf OUTPUT
"/* DO NOT EDIT!! */\n\n";
872 printf OUTPUT
"const unsigned int collation_table[%d] =\n{\n", $ranges*256;
873 printf OUTPUT
" /* index */\n";
874 printf OUTPUT
"%s,\n", DUMP_ARRAY
( "0x%08x", 0, @offsets );
876 # output the default values
878 printf OUTPUT
" /* defaults */\n";
879 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%08x", 0, (0xffffffff) x
256 );
881 # output all the key ranges
883 for (my $i = 0; $i < 256; $i++)
885 next if $offsets[$i] == 256;
886 printf OUTPUT
",\n /* 0x%02x00 .. 0x%02xff */\n", $i, $i;
887 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%08x", 0xffffffff, @keys[($i<<8) .. ($i<<8)+255] );
889 printf OUTPUT
"\n};\n";
891 save_file
($filename);
895 ################################################################
896 # add default mappings once the file had been read
897 sub add_default_mappings
($)
899 my $first_private = shift;
903 foreach my $alias (@unicode_aliases)
906 foreach my $src (@
$alias)
908 if (defined($uni2cp[$src]))
910 $target = $uni2cp[$src];
914 next unless defined($target);
916 # At least one char of the alias set is defined, set the others to the same value
917 foreach my $src (@
$alias)
919 $uni2cp[$src] = $target unless defined($uni2cp[$src]);
923 # For every src -> target mapping in the defaults table,
924 # make uni2cp[src] = uni2cp[target] if uni2cp[target] is defined
926 for (my $src = 0; $src < 65536; $src++)
928 next if defined($uni2cp[$src]); # source has a definition already
929 next unless defined($unicode_defaults[$src]); # no default for this char
930 my $target = $unicode_defaults[$src];
932 # do a recursive mapping until we find a target char that is defined
933 while (!defined($uni2cp[$target]) &&
934 defined($unicode_defaults[$target])) { $target = $unicode_defaults[$target]; }
936 if (defined($uni2cp[$target])) { $uni2cp[$src] = $uni2cp[$target]; }
939 # Add a private char mapping for undefined chars
943 for (my $i = 32; $i < 256; $i++)
945 next if defined($cp2uni[$i]);
946 $cp2uni[$i] = $first_private;
947 $uni2cp[$first_private] = $i;
952 # Add an identity mapping for all undefined chars
954 for (my $i = 0; $i < 256; $i++)
956 next if defined($cp2uni[$i]);
957 next if defined($uni2cp[$i]);
958 $cp2uni[$i] = $uni2cp[$i] = $i;
962 ################################################################
963 # dump an array of integers
966 my ($format,$default,@array) = @_;
969 for ($i = 0; $i < $#array; $i++)
971 $ret .= sprintf($format, defined $array[$i] ?
$array[$i] : $default);
972 $ret .= (($i % 8) != 7) ?
", " : ",\n ";
974 $ret .= sprintf($format, defined $array[$i] ?
$array[$i] : $default);
979 ################################################################
980 # dump a unicode->ascii mapping table
981 sub dump_uni2cp_table
($$)
983 my ($width, $def) = @_;
985 # count the number of unicode->ascii subtables that contain something
990 my @filled = (-1) x
256;
991 for (my $i = 0; $i < 65536; $i++)
993 next unless defined $uni2cp[$i];
994 if ($filled[$i >> 8] == -1)
996 $lowerbounds[$index] = $i & 0xff;
997 $upperbounds[$index] = 0xff - $lowerbounds[$index];
998 $filled[$i >> 8] = $index * 256;
1003 $upperbounds[$index-1] = 0xff - ($i & 0xff);
1007 # add defaults mapping at the end
1008 $filled[256] = $index * 256;
1009 $lowerbounds[$index] = 255;
1010 $upperbounds[$index] = 0;
1013 # collapse blocks upwards if possible
1016 for (my $i = 0; $i < 257; $i++)
1018 next if $filled[$i] == -1;
1019 if ($upperbounds[$index - 1] > $lowerbounds[$index])
1021 $removed += $lowerbounds[$index];
1025 $removed += $upperbounds[$index - 1];
1026 $lowerbounds[$index] = $upperbounds[$index - 1];
1028 $filled[$i] -= $removed;
1032 # output all the subtables into a single array
1034 printf OUTPUT
"static const unsigned %s uni2cp_low[%d] =\n{\n",
1035 $width == 8 ?
"char" : "short", ($index + 1) * 256 - $removed;
1037 my $format = $width == 8 ?
"0x%02x" : "0x%04x";
1038 for (my $i = $index = 0; $i < 257; $i++)
1040 next if $filled[$i] == -1;
1041 my $start = ($i << 8) + $lowerbounds[$index];
1042 my $end = ($i << 8) + 255;
1045 print OUTPUT
" /* defaults */\n";
1046 printf OUTPUT
"%s\n};\n\n", DUMP_ARRAY
( $format, 0, ($def) x
($end - $start + 1) );
1050 printf OUTPUT
" /* 0x%04x .. 0x%04x */\n", $start, $end;
1051 printf OUTPUT
"%s,\n", DUMP_ARRAY
( $format, $def, @uni2cp[$start .. $end] );
1056 # output a table of the offsets of the subtables in the previous array
1058 for (my $i = 0; $i < 256; $i++)
1060 if ($filled[$i] == -1) { $filled[$i] = $filled[256]; }
1062 printf OUTPUT
"static const unsigned short uni2cp_high[256] =\n";
1063 printf OUTPUT
"{\n%s\n};\n\n", DUMP_ARRAY
( "0x%04x", 0, @filled[0..255] );
1066 ################################################################
1067 # dump an SBCS mapping table
1068 sub dump_sbcs_table
($$$$$)
1070 my ($codepage, $has_glyphs, $name, $def, $defw) = @_;
1073 # output the ascii->unicode table
1077 printf OUTPUT
"static const WCHAR cp2uni[512] =\n";
1078 printf OUTPUT
"{\n%s", DUMP_ARRAY
( "0x%04x", $defw, @cp2uni[0 .. 255] );
1079 printf OUTPUT
",\n /* glyphs */\n%s\n};\n\n",
1080 DUMP_ARRAY
( "0x%04x", $defw, get_glyphs_mapping
(@cp2uni[0 .. 255]) );
1084 printf OUTPUT
"static const WCHAR cp2uni[256] =\n";
1085 printf OUTPUT
"{\n%s\n};\n\n", DUMP_ARRAY
( "0x%04x", $defw, @cp2uni[0 .. 255] );
1088 dump_uni2cp_table
( 8, $def );
1090 # output the code page descriptor
1092 printf OUTPUT
"const struct sbcs_table DECLSPEC_HIDDEN cptable_%03d =\n{\n", $codepage;
1093 printf OUTPUT
" { %d, 1, 0x%04x, 0x%04x, \"%s\" },\n",
1094 $codepage, $def, $defw, $name;
1095 printf OUTPUT
" cp2uni,\n";
1096 if ($has_glyphs) { printf OUTPUT
" cp2uni + 256,\n"; }
1097 else { printf OUTPUT
" cp2uni,\n"; }
1098 printf OUTPUT
" uni2cp_low,\n";
1099 printf OUTPUT
" uni2cp_high\n};\n";
1103 ################################################################
1104 # dump a DBCS mapping table
1105 sub dump_dbcs_table
($$$$@
)
1107 my ($codepage, $name, $def, $defw, @lb_ranges) = @_;
1109 # build a list of lead bytes that are actually used
1112 LBLOOP
: for (my $y = 0; $y <= $#lead_bytes; $y++)
1114 $cp2uni[$lead_bytes[$y]] = $defw;
1115 my $base = $lead_bytes[$y] << 8;
1116 for (my $x = 0; $x < 256; $x++)
1118 if (defined $cp2uni[$base+$x])
1120 push @lblist,$lead_bytes[$y];
1125 my $unused = ($#lead_bytes > $#lblist);
1127 # output the ascii->unicode table for the single byte chars
1129 printf OUTPUT
"static const WCHAR cp2uni[%d] =\n", 256 * ($#lblist + 2 + $unused);
1130 printf OUTPUT
"{\n%s,\n", DUMP_ARRAY
( "0x%04x", $defw, @cp2uni[0 .. 255] );
1132 # output the default table for unused lead bytes
1136 printf OUTPUT
" /* unused lead bytes */\n";
1137 printf OUTPUT
"%s,\n", DUMP_ARRAY
( "0x%04x", 0, ($defw) x
256 );
1140 # output the ascii->unicode table for each DBCS lead byte
1142 for (my $y = 0; $y <= $#lblist; $y++)
1144 my $base = $lblist[$y] << 8;
1145 printf OUTPUT
" /* lead byte %02x */\n", $lblist[$y];
1146 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", $defw, @cp2uni[$base .. $base+255] );
1147 printf OUTPUT
($y < $#lblist) ?
",\n" : "\n};\n\n";
1150 # output the lead byte subtables offsets
1152 my @offsets = (0) x
256;
1153 for (my $x = 0; $x <= $#lblist; $x++) { $offsets[$lblist[$x]] = $x + 1; }
1156 # increment all lead bytes offset to take into account the unused table
1157 for (my $x = 0; $x <= $#lead_bytes; $x++) { $offsets[$lead_bytes[$x]]++; }
1159 printf OUTPUT
"static const unsigned char cp2uni_leadbytes[256] =\n";
1160 printf OUTPUT
"{\n%s\n};\n\n", DUMP_ARRAY
( "0x%02x", 0, @offsets );
1162 dump_uni2cp_table
( 16, $def );
1164 # output the code page descriptor
1166 printf OUTPUT
"const struct dbcs_table DECLSPEC_HIDDEN cptable_%03d =\n{\n", $codepage;
1167 printf OUTPUT
" { %d, 2, 0x%04x, 0x%04x, \"%s\" },\n",
1168 $codepage, $def, $defw, $name;
1169 printf OUTPUT
" cp2uni,\n";
1170 printf OUTPUT
" cp2uni_leadbytes,\n";
1171 printf OUTPUT
" uni2cp_low,\n";
1172 printf OUTPUT
" uni2cp_high,\n";
1173 printf OUTPUT
" {\n %s\n }\n", DUMP_ARRAY
( "0x%02x", 0, @lb_ranges, 0, 0 );
1174 printf OUTPUT
"};\n";
1178 ################################################################
1179 # get the list of defined lead byte ranges
1185 foreach $i (@lead_bytes) { $list[$i] = 1; }
1187 for (my $i = 0; $i < 256; $i++)
1191 if (!defined $list[$i]) { push @ranges, $i-1; $on = 0; }
1195 if ($list[$i]) { push @ranges, $i; $on = 1; }
1198 if ($on) { push @ranges, 0xff; }
1202 ################################################################
1203 # dump the Indic Syllabic Category table
1206 my $filename = shift;
1209 my $INPUT = open_data_file
( $UNIDATA, "IndicSyllabicCategory.txt" );
1212 next if /^\#/; # skip comments
1213 next if /^\s*$/; # skip empty lines
1214 next if /\x1a/; # skip ^Z
1215 if (/^\s*([0-9a-fA-F]+)\s*;\s*([a-zA-Z_]+)\s*#/)
1218 die "unknown indic $type" unless defined $indic_types{$type};
1221 $indic_table[hex $1] = $indic_types{$type};
1225 elsif (/^\s*([0-9a-fA-F]+)..\s*([0-9a-fA-F]+)\s*;\s*([A-Za-z_]+)\s*#/)
1228 die "unknown indic $type" unless defined $indic_types{$type};
1229 if (hex $1 < 65536 and hex $2 < 65536)
1231 foreach my $i (hex $1 .. hex $2)
1233 $indic_table[$i] = $indic_types{$type};
1238 die "malformed line $_";
1242 $INPUT = open_data_file
( $UNIDATA, "IndicPositionalCategory.txt" );
1245 next if /^\#/; # skip comments
1246 next if /^\s*$/; # skip empty lines
1247 next if /\x1a/; # skip ^Z
1248 if (/^\s*([0-9a-fA-F]+)\s*;\s*([a-zA-Z]+)\s*#/)
1251 die "unknown matra $type" unless defined $matra_types{$type};
1252 $indic_table[hex $1] += $matra_types{$type} << 8;
1255 elsif (/^\s*([0-9a-fA-F]+)..\s*([0-9a-fA-F]+)\s*;\s*([A-Za-z_]+)\s*#/)
1258 die "unknown matra $type" unless defined $matra_types{$type};
1259 foreach my $i (hex $1 .. hex $2)
1261 $indic_table[$i] += $matra_types{$type} << 8;
1265 die "malformed line $_";
1269 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1270 print "Building $filename\n";
1271 print OUTPUT
"/* Unicode Indic Syllabic Category */\n";
1272 print OUTPUT
"/* generated from $UNIDATA/IndicSyllabicCategory.txt */\n";
1273 print OUTPUT
"/* and from $UNIDATA/IndicPositionalCategory.txt */\n";
1274 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1275 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1277 dump_two_level_mapping
( "indic_syllabic_table", $indic_types{'Other'}, @indic_table );
1280 save_file
($filename);
1283 ################################################################
1284 # dump the Line Break Properties table
1285 sub dump_linebreak
($)
1287 my $filename = shift;
1291 my $INPUT = open_data_file
( $UNIDATA, "LineBreak.txt" );
1294 next if /^\#/; # skip comments
1295 next if /^\s*$/; # skip empty lines
1296 next if /\x1a/; # skip ^Z
1297 if (/^\s*([0-9a-fA-F]+)\s*;\s*([0-9A-Z][0-9A-Z][0-9A-Z])+\s*/)
1300 die "unknown breaktype $type" unless defined $break_types{$type};
1301 $break_table[hex $1] = $break_types{$type};
1304 elsif (/^\s*([0-9a-fA-F]+)..\s*([0-9a-fA-F]+)\s*;\s*([0-9A-Z][0-9A-Z][0-9A-Z])+\s*/)
1307 die "unknown breaktype $type" unless defined $break_types{$type};
1308 foreach my $i (hex $1 .. hex $2)
1310 $break_table[$i] = $break_types{$type};
1314 elsif (/^\s*([0-9a-fA-F]+)\s*;\s*([0-9A-Z][0-9A-Z])+\s*/)
1317 die "unknown breaktype $type" unless defined $break_types{$type};
1318 $break_table[hex $1] = $break_types{$type};
1321 elsif (/^\s*([0-9a-fA-F]+)..\s*([0-9a-fA-F]+)\s*;\s*([0-9A-Z][0-9A-Z])+\s*/)
1324 die "unknown breaktype $type" unless defined $break_types{$type};
1325 foreach my $i (hex $1 .. hex $2)
1327 $break_table[$i] = $break_types{$type};
1331 die "malformed line $_";
1335 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1336 print "Building $filename\n";
1337 print OUTPUT
"/* Unicode Line Break Properties */\n";
1338 print OUTPUT
"/* generated from $UNIDATA/LineBreak.txt */\n";
1339 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1340 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1342 dump_two_level_mapping
( "wine_linebreak_table", $break_types{'XX'}, @break_table );
1345 save_file
($filename);
1365 "Canadian_Aboriginal" => 15,
1375 "Egyptian_Hieroglyphs" => 25,
1388 "Imperial_Aramaic" => 38,
1389 "Inscriptional_Pahlavi" => 39,
1390 "Inscriptional_Parthian" => 40,
1408 "Meetei_Mayek" => 58,
1411 "New_Tai_Lue" => 61,
1416 "Old_Persian" => 66,
1417 "Old_South_Arabian" => 67,
1430 "Syloti_Nagri" => 80,
1448 "Meroitic_Cursive" => 97,
1449 "Meroitic_Hieroglyphs" => 98,
1452 "Sora_Sompeng" => 101,
1456 "Caucasian_Albanian" => 104,
1464 "Manichaean" => 112,
1465 "Mende_Kikakui" => 113,
1469 "Old_North_Arabian" => 117,
1470 "Old_Permic" => 118,
1471 "Pahawh_Hmong" => 119,
1473 "Pau_Cin_Hau" => 121,
1474 "Psalter_Pahlavi" => 122,
1477 "Warang_Citi" => 125,
1481 "Anatolian_Hieroglyphs" => 128,
1487 "Old_Hungarian" => 134,
1489 "SignWriting" => 136,
1492 "Masaram_Gondi" => 138,
1495 "Zanabazar_Square" => 141,
1498 ################################################################
1499 # dump Script IDs table
1502 my $filename = shift;
1503 my $header = $filename;
1508 my $INPUT = open_data_file
( $UNIDATA, "Scripts.txt" );
1510 # Unknown script id is always 0, so undefined scripts are automatically treated as such
1515 next if /^\#/; # skip comments
1516 next if /^\s*$/; # skip empty lines
1517 next if /\x1a/; # skip ^Z
1518 if (/^\s*([0-9a-fA-F]+)\s*;\s*([a-zA-Z_]+)\s*/)
1521 if (defined $scripts{$type})
1523 $scripts_table[hex $1] = $scripts{$type};
1527 elsif (/^\s*([0-9a-fA-F]+)..\s*([0-9a-fA-F]+)\s*;\s*([a-zA-Z_]+)\s*/)
1530 if (defined $scripts{$type})
1532 foreach my $i (hex $1 .. hex $2)
1534 $scripts_table[$i] = $scripts{$type};
1543 $header = "$filename.h";
1544 open OUTPUT
,">$header.new" or die "Cannot create $header";
1545 print "Building $header\n";
1546 print OUTPUT
"/* Unicode Script IDs */\n";
1547 print OUTPUT
"/* generated from $UNIDATA/Scripts.txt */\n";
1548 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1550 print OUTPUT
"enum unicode_script_id {\n";
1551 foreach my $script (sort { $scripts{$a} <=> $scripts{$b} } keys %scripts)
1553 print OUTPUT
" Script_$script = $scripts{$script},\n";
1555 print OUTPUT
" Script_LastId = ", (scalar keys %scripts) - 1, "\n";
1556 print OUTPUT
"};\n";
1561 $filename = "$filename.c";
1562 open OUTPUT
,">$filename.new" or die "Cannot create $header";
1563 print "Building $filename\n";
1564 print OUTPUT
"/* Unicode Script IDs */\n";
1565 print OUTPUT
"/* generated from $UNIDATA/Scripts.txt */\n";
1566 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1567 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1569 dump_two_level_mapping
( "wine_scripts_table", 0, @scripts_table );
1571 save_file
($filename);
1574 ################################################################
1575 # dump the BiDi mirroring table
1576 sub dump_mirroring
($)
1578 my $filename = shift;
1579 my @mirror_table = ();
1581 my $INPUT = open_data_file
( $UNIDATA, "BidiMirroring.txt" );
1584 next if /^\#/; # skip comments
1585 next if /^$/; # skip empty lines
1586 next if /\x1a/; # skip ^Z
1587 if (/^\s*([0-9a-fA-F]+)\s*;\s*([0-9a-fA-F]+)/)
1589 $mirror_table[hex $1] = hex $2;
1592 die "malformed line $_";
1596 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1597 print "Building $filename\n";
1598 print OUTPUT
"/* Unicode BiDi mirroring */\n";
1599 print OUTPUT
"/* generated from $UNIDATA/BidiMirroring.txt */\n";
1600 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1601 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1602 DUMP_CASE_TABLE
( "DECLSPEC_HIDDEN wine_mirror_map", @mirror_table );
1604 save_file
($filename);
1607 ################################################################
1608 # dump the Bidi Brackets
1611 my $filename = shift;
1614 my $INPUT = open_data_file
( $UNIDATA, "BidiBrackets.txt" );
1617 next if /^\#/; # skip comments
1618 next if /^\s*$/; # skip empty lines
1619 next if /\x1a/; # skip ^Z
1620 if (/^\s*([0-9a-fA-F]+)\s*;\s*([0-9a-fA-F]+);\s*([con])/)
1623 die "unknown bracket $type" unless defined $bracket_types{$type};
1624 die "characters too distant $1 and $2" if abs(hex($2) - hex($1)) >= 128;
1625 $bracket_table[hex $1] = (hex($2) - hex($1)) % 255;
1626 $bracket_table[hex $1] += $bracket_types{$type} << 8;
1629 die "malformed line $_";
1633 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1634 print "Building $filename\n";
1635 print OUTPUT
"/* Unicode Bidirectional Bracket table */\n";
1636 print OUTPUT
"/* generated from $UNIDATA/BidiBrackets.txt */\n";
1637 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1638 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1640 dump_two_level_mapping
( "bidi_bracket_table", 0, @bracket_table );
1643 save_file
($filename);
1646 ################################################################
1647 # dump the Arabic shaping table
1650 my $filename = shift;
1654 $groups{"No_Joining_Group"} = $next_group++;
1656 my $INPUT = open_data_file
( $UNIDATA, "ArabicShaping.txt" );
1659 next if /^\#/; # skip comments
1660 next if /^\s*$/; # skip empty lines
1661 next if /\x1a/; # skip ^Z
1662 if (/^\s*([0-9a-fA-F]+)\s*;.*;\s*([RLDCUT])\s*;\s*(\w+)/)
1666 $groups{$group} = $next_group++ unless defined $groups{$group};
1667 $joining_table[hex $1] = $joining_types{$type} | ($groups{$group} << 8);
1670 die "malformed line $_";
1674 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1675 print "Building $filename\n";
1676 print OUTPUT
"/* Unicode Arabic shaping */\n";
1677 print OUTPUT
"/* generated from $UNIDATA/ArabicShaping.txt */\n";
1678 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1679 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1681 dump_two_level_mapping
( "wine_shaping_table", 0, @joining_table );
1683 print OUTPUT
"\nconst unsigned short DECLSPEC_HIDDEN wine_shaping_forms[256][4] =\n{\n";
1684 for (my $i = 0x600; $i <= 0x6ff; $i++)
1686 printf OUTPUT
" { 0x%04x, 0x%04x, 0x%04x, 0x%04x },\n",
1687 ${joining_forms
{"isolated"}}[$i] || $i,
1688 ${joining_forms
{"final"}}[$i] || $i,
1689 ${joining_forms
{"initial"}}[$i] || $i,
1690 ${joining_forms
{"medial"}}[$i] || $i;
1692 print OUTPUT
"};\n";
1695 save_file
($filename);
1698 ################################################################
1699 # dump the Vertical Orientation table
1700 sub dump_vertical
($)
1702 my $filename = shift;
1705 my $INPUT = open_data_file
( $UNIDATA, "VerticalOrientation.txt" );
1708 next if /^\#/; # skip comments
1709 next if /^\s*$/; # skip empty lines
1710 next if /\x1a/; # skip ^Z
1711 if (/^\s*([0-9a-fA-F]+)\s*;\s*([a-zA-Z_]+)\s*/)
1714 die "unknown vertical $type" unless defined $vertical_types{$type};
1717 $vertical_table[hex $1] = $vertical_types{$type};
1721 elsif (/^\s*([0-9a-fA-F]+)..\s*([0-9a-fA-F]+)\s*;\s*([A-Za-z_]+)\s*/)
1724 die "unknown vertical $type" unless defined $vertical_types{$type};
1725 foreach my $i (hex $1 .. hex $2)
1727 $vertical_table[$i] = $vertical_types{$type};
1731 die "malformed line $_";
1735 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1736 print "Building $filename\n";
1737 print OUTPUT
"/* Unicode Vertical Orientation */\n";
1738 print OUTPUT
"/* generated from $UNIDATA/VerticalOrientation.txt */\n";
1739 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1740 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1742 dump_two_level_mapping
( "vertical_orientation_table", $vertical_types{'R'}, @vertical_table );
1745 save_file
($filename);
1748 ################################################################
1749 # dump the digit folding tables
1750 sub dump_digit_folding
($)
1752 my $filename = shift;
1753 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1754 print "Building $filename\n";
1755 print OUTPUT
"/* Unicode digit folding mappings */\n";
1756 print OUTPUT
"/* generated from $UNIDATA/UnicodeData.txt */\n";
1757 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1758 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1760 DUMP_CASE_TABLE
( "DECLSPEC_HIDDEN wine_digitmap", @digitmap_table );
1762 DUMP_CASE_TABLE
( "DECLSPEC_HIDDEN wine_compatmap", @compatmap_table );
1764 save_file
($filename);
1768 ################################################################
1769 # dump the case mapping tables
1770 sub DUMP_CASE_MAPPINGS
($)
1772 my $filename = shift;
1773 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1774 print "Building $filename\n";
1775 print OUTPUT
"/* Unicode case mappings */\n";
1776 print OUTPUT
"/* generated from $UNIDATA/UnicodeData.txt */\n";
1777 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
1778 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
1780 DUMP_CASE_TABLE
( "wine_casemap_lower", @tolower_table );
1782 DUMP_CASE_TABLE
( "wine_casemap_upper", @toupper_table );
1784 save_file
($filename);
1788 ################################################################
1789 # dump a case mapping table
1790 sub DUMP_CASE_TABLE
($@
)
1792 my ($name,@table) = @_;
1794 # count the number of sub tables that contain something
1795 # also compute the low and upper populated bounds
1797 my @lowerbounds = ( 0, 0 );
1798 my @upperbounds = ( 0, 255 );
1801 for (my $i = 0; $i < 65536; $i++)
1803 next unless defined $table[$i];
1804 if (!defined $filled[$i >> 8])
1806 $lowerbounds[$index] = $i & 0xff;
1807 $upperbounds[$index] = 0xff - $lowerbounds[$index];
1808 $filled[$i >> 8] = $index * 256 + 512;
1813 $upperbounds[$index-1] = 0xff - ($i & 0xff);
1815 $table[$i] = ($table[$i] - $i) & 0xffff;
1818 # Collapse blocks upwards if possible
1821 for (my $i = 0; $i < 256; $i++)
1823 next unless defined $filled[$i];
1824 if ($upperbounds[$index - 1] > $lowerbounds[$index])
1826 $removed = $removed + $lowerbounds[$index];
1830 $removed = $removed + $upperbounds[$index - 1];
1831 $lowerbounds[$index] = $upperbounds[$index - 1];
1833 $filled[$i] = $filled[$i] - $removed;
1839 printf OUTPUT
"const WCHAR %s[%d] =\n", $name, $index * 256 + 512 - $removed;
1840 printf OUTPUT
"{\n /* index */\n";
1841 printf OUTPUT
"%s,\n", DUMP_ARRAY
( "0x%04x", 256, @filled );
1842 printf OUTPUT
" /* defaults */\n";
1843 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, (0) x
256 );
1845 for (my $i = 0; $i < 256; $i++)
1847 next unless $filled[$i];
1848 printf OUTPUT
",\n /* 0x%02x%02x .. 0x%02xff */\n", $i, $lowerbounds[$index], $i;
1849 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0,
1850 @table[($i<<8) + $lowerbounds[$index] .. ($i<<8)+255] );
1853 printf OUTPUT
"\n};\n";
1856 ################################################################
1857 # compress a mapping table by removing identical rows
1858 sub compress_array
($$@
)
1863 my $len = @table / $rows;
1864 my @array = (0) x
$rows;
1867 # try to merge table rows
1868 for (my $row = 0; $row < $rows; $row++)
1870 my @table_row = map { defined($_) ?
$_ : $def; } @table[($row * $len)..($row * $len + $len - 1)];
1871 my $rowtxt = pack "S*", @table_row;
1872 if (defined($sequences{$rowtxt}))
1874 # reuse an existing row
1875 $array[$row] = $sequences{$rowtxt};
1880 $sequences{$rowtxt} = $array[$row] = $#array + 1;
1881 push @array, @table_row;
1887 ################################################################
1888 # dump a simple char -> 16-bit value mapping table
1889 sub dump_simple_mapping
($$@
)
1893 my @array = compress_array
( 256, $def, @_[0..65535] );
1895 printf OUTPUT
"const unsigned short %s[%d] =\n{\n", $name, $#array+1;
1896 printf OUTPUT
" /* offsets */\n%s,\n", DUMP_ARRAY
( "0x%04x", 0, @array[0..255] );
1897 printf OUTPUT
" /* values */\n%s\n};\n", DUMP_ARRAY
( "0x%04x", 0, @array[256..$#array] );
1900 ################################################################
1901 # dump a char -> 16-bit value mapping table using two-level tables
1902 sub dump_two_level_mapping
($$@
)
1906 my @row_array = compress_array
( 4096, $def, @_[0..65535] );
1907 my @array = compress_array
( 256, 0, @row_array[0..4095] );
1909 for (my $i = 256; $i < @array; $i++) { $array[$i] += @array - 4096; }
1911 printf OUTPUT
"const unsigned short DECLSPEC_HIDDEN %s[%d] =\n{\n", $name, @array + @row_array - 4096;
1912 printf OUTPUT
" /* level 1 offsets */\n%s,\n", DUMP_ARRAY
( "0x%04x", 0, @array[0..255] );
1913 printf OUTPUT
" /* level 2 offsets */\n%s,\n", DUMP_ARRAY
( "0x%04x", 0, @array[256..$#array] );
1914 printf OUTPUT
" /* values */\n%s\n};\n", DUMP_ARRAY
( "0x%04x", 0, @row_array[4096..$#row_array] );
1917 ################################################################
1918 # dump a binary case mapping table in l_intl.nls format
1919 sub dump_binary_case_table
(@
)
1923 my %difftables_hash = ();
1925 my %offtables2_hash = ();
1926 my @offtables2 = ();
1929 for (my $i = 0; $i < 256; $i++)
1932 for(my $j = 0; $j < 16; $j++) # offset table for xx00-xxFF characters
1935 for (my $k = 0; $k < 16; $k++) # case map table for xxx0-xxxF characters
1937 my $char = ($i<<8) + ($j<<4) + $k;
1938 $difftable[$k] = (defined $table[$char]) ?
(($table[$char]-$char) & 0xffff) : 0;
1941 my $diff_key = pack "S*", @difftable;
1942 my $offset3 = $difftables_hash{$diff_key};
1943 if (!defined $offset3)
1945 $offset3 = scalar @difftables;
1946 $difftables_hash{$diff_key} = $offset3;
1947 push @difftables, @difftable;
1949 $offtable2[$j] = $offset3;
1952 my $offtable2_key = pack "S*", @offtable2;
1953 my $offset2 = $offtables2_hash{$offtable2_key};
1954 if (!defined $offset2)
1956 $offset2 = scalar @offtables2;
1957 $offtables2_hash{$offtable2_key} = $offset2;
1958 push @offtables2, \
@offtable2;
1960 $offtable[$i] = $offset2;
1964 my $offset = 0x100; # offset of first subtable in words
1967 push @output, 0x10 * $_ + $offset; # offset of subtable in words
1970 $offset = 0x100 + 0x10 * scalar @offtables2; # offset of first difftable in words
1971 foreach(@offtables2)
1976 push @output, $_ + $offset; # offset of difftable in words
1980 my $len = 1 + scalar @output + scalar @difftables;
1981 return pack "S<*", $len, @output, @difftables;
1985 ################################################################
1986 # dump case mappings for l_intl.nls
1987 sub dump_intl_nls
($)
1989 my $filename = shift;
1990 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
1991 printf "Building $filename\n";
1994 print OUTPUT
pack "S<", 1; # version
1995 print OUTPUT dump_binary_case_table
( @toupper_table );
1996 print OUTPUT dump_binary_case_table
( @tolower_table );
1998 save_file
($filename);
2002 sub load_nameprep_range_table
($$$)
2004 my ($INPUT, $val, $table_ref) = @_;
2008 if (/^\s*([0-9a-fA-F]+)-([0-9a-fA-F]+)/)
2011 $last = 65535 if($last >= 65536);
2012 foreach my $i (hex $1 .. $last)
2014 $table_ref->[$i] |= $val;
2018 elsif (/^\s*([0-9a-fA-F]+)/)
2022 $table_ref->[hex $1] |= $val;
2027 return if (/End\sTable/);
2031 sub load_nameprep_map_table
($$)
2033 my ($INPUT, $table_ref) = @_;
2037 if (/^\s*([0-9a-fA-F]+);\s;/)
2039 # special value for map to nothing
2040 $table_ref->[hex $1] = [0xffff, 0xffff, 0xffff];
2043 elsif (/^\s*([0-9a-fA-F]+);\s([0-9a-fA-F]+);/)
2045 $table_ref->[hex $1] = [hex $2, 0, 0];
2048 elsif (/^\s*([0-9a-fA-F]+);\s([0-9a-fA-F]+)\s([0-9a-fA-F]+);/)
2050 $table_ref->[hex $1] = [hex $2, hex $3, 0];
2053 elsif (/^\s*([0-9a-fA-F]+);\s([0-9a-fA-F]+)\s([0-9a-fA-F]+)\s([0-9a-fA-F]+);/)
2055 $table_ref->[hex $1] = [hex $2, hex $3, hex $4];
2059 return if (/End\sTable/);
2063 ################################################################
2064 # dump mapping table, prohibited characters set, unassigned
2065 # characters, bidirectional rules used by nameprep algorithm
2066 sub dump_nameprep
($)
2068 my $filename = shift;
2069 my @mapping_table = ();
2072 my $INPUT = open_data_file
( $RFCS, $STRINGPREP );
2075 next unless /Start\sTable/;
2077 load_nameprep_range_table
($INPUT, $nameprep_flags{"unassigned"}, \
@flags_table) if (/A.1/);
2078 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.1.2/);
2079 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.2.2/);
2080 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.3/);
2081 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.4/);
2082 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.5/);
2083 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.6/);
2084 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.7/);
2085 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.8/);
2086 load_nameprep_range_table
($INPUT, $nameprep_flags{"prohibited"}, \
@flags_table) if (/C.9/);
2087 load_nameprep_range_table
($INPUT, $nameprep_flags{"bidi_ral"}, \
@flags_table) if (/D.1/);
2088 load_nameprep_range_table
($INPUT, $nameprep_flags{"bidi_l"}, \
@flags_table) if (/D.2/);
2090 load_nameprep_map_table
($INPUT, \
@mapping_table) if (/B.1/);
2091 load_nameprep_map_table
($INPUT, \
@mapping_table) if (/B.2/);
2095 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
2096 print "Building $filename\n";
2097 print OUTPUT
"/* Nameprep algorithm related data */\n";
2098 print OUTPUT
"/* generated from $RFCS/$STRINGPREP */\n";
2099 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
2100 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
2102 dump_two_level_mapping
( "nameprep_char_type", 0, @flags_table );
2104 ######### mapping table
2105 # first determine all the 16-char subsets that contain something
2107 my $pos = 16*3; # for the null subset
2108 for (my $i = 0; $i < 65536; $i++)
2110 next unless defined $mapping_table[$i];
2111 $filled[$i >> 4] = $pos;
2117 # now count the 256-char subsets that contain something
2118 my @filled_idx = (256) x
256;
2120 for (my $i = 0; $i < 4096; $i++)
2122 next unless $filled[$i];
2123 $filled_idx[$i >> 4] = $pos;
2127 my $null_offset = $pos;
2130 # add the index offsets to the subsets positions
2131 for (my $i = 0; $i < 4096; $i++)
2133 next unless $filled[$i];
2134 $filled[$i] += $null_offset;
2137 # dump the main index
2138 printf OUTPUT
"const unsigned short DECLSPEC_HIDDEN nameprep_mapping[%d] =\n", $total;
2139 printf OUTPUT
"{\n /* index */\n";
2140 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @filled_idx );
2141 printf OUTPUT
",\n /* null sub-index */\n%s", DUMP_ARRAY
( "0x%04x", 0, ($null_offset) x
16 );
2143 # dump the second-level indexes
2144 for (my $i = 0; $i < 256; $i++)
2146 next unless ($filled_idx[$i] > 256);
2147 my @table = @filled[($i<<4)..($i<<4)+15];
2148 for (my $j = 0; $j < 16; $j++) { $table[$j] ||= $null_offset; }
2149 printf OUTPUT
",\n /* sub-index %02x */\n", $i;
2150 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2153 # dump the 16-char subsets
2154 printf OUTPUT
",\n /* null mapping */\n";
2155 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, (0) x
48 );
2157 for (my $i = 0; $i < 4096; $i++)
2159 next unless $filled[$i];
2160 my @table = (0) x
48;
2161 for (my $j = 0; $j < 16; $j++)
2163 if (defined $mapping_table[($i<<4) + $j])
2165 $table[3 * $j] = ${$mapping_table[($i << 4) + $j]}[0];
2166 $table[3 * $j + 1] = ${$mapping_table[($i << 4) + $j]}[1];
2167 $table[3 * $j + 2] = ${$mapping_table[($i << 4) + $j]}[2];
2170 printf OUTPUT
",\n /* 0x%03x0 .. 0x%03xf */\n", $i, $i;
2171 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2174 printf OUTPUT
"\n};\n";
2177 save_file
($filename);
2180 ################################################################
2181 # dump the ctype tables
2182 sub DUMP_CTYPE_TABLES
($)
2184 my $filename = shift;
2185 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
2186 printf "Building $filename\n";
2187 printf OUTPUT
"/* Unicode ctype tables */\n";
2188 printf OUTPUT
"/* Automatically generated; DO NOT EDIT!! */\n\n";
2189 printf OUTPUT
"#include \"wine/unicode.h\"\n\n";
2191 # add the direction in the high 4 bits of the category
2192 for (my $i = 0; $i < 65536; $i++)
2194 $category_table[$i] |= $direction_table[$i] << 12 if defined $direction_table[$i];
2197 dump_simple_mapping
( "wine_wctype_table", 0, @category_table );
2200 save_file
($filename);
2204 ################################################################
2205 # dump the char composition table
2206 sub dump_compose_table
($)
2208 my $filename = shift;
2210 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
2211 print "Building $filename\n";
2212 print OUTPUT
"/* Unicode char composition */\n";
2213 print OUTPUT
"/* generated from $UNIDATA/UnicodeData.txt */\n";
2214 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
2215 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
2218 foreach my $i (@compose_table)
2221 push @
{$filled[$comp[1]]}, [ $comp[0], $comp[2] ];
2224 # count how many different second chars we have
2227 for (my $i = 0; $i < 65536; $i++)
2229 next unless defined $filled[$i];
2233 # build the table of second chars and offsets
2235 my $pos = $count + 1;
2237 for (my $i = 0; $i < 65536; $i++)
2239 next unless defined $filled[$i];
2240 push @table, $i, $pos;
2241 $pos += @
{$filled[$i]};
2243 # terminator with last position
2244 push @table, 0, $pos;
2245 printf OUTPUT
"static const WCHAR table[0x%x] =\n{\n", 2*$pos;
2246 printf OUTPUT
" /* second chars + offsets */\n%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2248 # build the table of first chars and mappings
2250 for (my $i = 0; $i < 65536; $i++)
2252 next unless defined $filled[$i];
2254 my @list = sort { $a->[0] <=> $b->[0] } @
{$filled[$i]};
2255 for (my $j = 0; $j <= $#list; $j++)
2257 push @table, $list[$j][0], $list[$j][1];
2259 printf OUTPUT
",\n /* 0x%04x */\n%s", $i, DUMP_ARRAY
( "0x%04x", 0, @table );
2261 print OUTPUT
"\n};\n\n";
2262 print OUTPUT
<<"EOF";
2263 static inline int binary_search( WCHAR ch, int low, int high )
2267 int pos = (low + high) / 2;
2268 if (table[2 * pos] < ch) low = pos + 1;
2269 else if (table[2 * pos] > ch) high = pos - 1;
2275 WCHAR DECLSPEC_HIDDEN wine_compose( const WCHAR *str )
2277 int pos, idx = 1, start = 0, count = $count;
2280 if ((pos = binary_search( str[idx], start, count - 1 )) == -1) return 0;
2281 if (!idx--) return table[2 * pos + 1];
2282 start = table[2 * pos + 1];
2283 count = table[2 * pos + 3];
2288 save_file
($filename);
2291 sub dump_full_compat_table
()
2293 # first determine all the 16-char subsets that contain something
2295 my @filled = (0) x
4096;
2296 my $pos = 16; # for the null subset
2298 for (my $i = 0; $i < 65536; $i++)
2300 next unless defined $full_compatmap_table[$i];
2301 if ($filled[$i >> 4] == 0)
2303 $filled[$i >> 4] = $pos;
2306 $data_total += $#{$full_compatmap_table[$i]} + 1;
2310 # now count the 256-char subsets that contain something
2312 my @filled_idx = (256) x
256;
2314 for (my $i = 0; $i < 4096; $i++)
2316 next unless $filled[$i];
2317 $filled_idx[$i >> 4] = $pos;
2321 my $null_offset = $pos; # null mapping
2322 $total += $pos + 1; # add the offset sentinel
2324 # add the index offsets to the subsets positions
2326 for (my $i = 0; $i < 4096; $i++)
2328 next unless $filled[$i];
2329 $filled[$i] += $null_offset;
2332 # dump the main index
2334 printf OUTPUT
"static const WCHAR compatmap_table[%d] =\n", $total + $data_total;
2335 printf OUTPUT
"{\n /* index */\n";
2336 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @filled_idx );
2337 printf OUTPUT
",\n /* null sub-index */\n%s", DUMP_ARRAY
( "0x%04x", 0, ($null_offset) x
16 );
2339 # dump the second-level indexes
2341 for (my $i = 0; $i < 256; $i++)
2343 next unless ($filled_idx[$i] > 256);
2344 my @table = @filled[($i<<4)..($i<<4)+15];
2345 for (my $j = 0; $j < 16; $j++) { $table[$j] ||= $null_offset; }
2346 printf OUTPUT
",\n /* sub-index %02x */\n", $i;
2347 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2350 # dump the 16-char offsets
2352 printf OUTPUT
",\n /* null offsets */\n";
2353 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, ($total) x
(16) );
2358 for (my $i = 0; $i < 4096; $i++)
2360 next unless $filled[$i];
2361 my @table = (0) x
(16);
2362 for (my $j = 0; $j < 16; $j++)
2365 if (defined $full_compatmap_table[($i<<4) + $j])
2367 $pos += $#{$full_compatmap_table[($i<<4) + $j]} + 1;
2368 push @data, @
{$full_compatmap_table[($i<<4) + $j]};
2371 printf OUTPUT
",\n /* offsets 0x%03x0 .. 0x%03xf */\n", $i, $i;
2372 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2375 my @sentinel = $pos;
2376 printf OUTPUT
",\n /* offset sentinel */\n";
2377 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @sentinel );
2379 printf OUTPUT
",\n /* data */\n";
2380 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @data );
2382 printf OUTPUT
"\n};\n\n";
2385 ################################################################
2386 # dump the char decomposition table
2387 sub dump_decompose_table
($)
2389 my $filename = shift;
2391 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
2392 print "Building $filename\n";
2393 print OUTPUT
"/* Unicode char composition */\n";
2394 print OUTPUT
"/* generated from $UNIDATA/UnicodeData.txt */\n";
2395 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
2396 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
2398 # first determine all the 16-char subsets that contain something
2400 my @filled = (0) x
4096;
2401 my $pos = 16*2; # for the null subset
2402 for (my $i = 0; $i < 65536; $i++)
2404 next unless defined $decomp_table[$i];
2405 $filled[$i >> 4] = $pos;
2411 # now count the 256-char subsets that contain something
2413 my @filled_idx = (256) x
256;
2415 for (my $i = 0; $i < 4096; $i++)
2417 next unless $filled[$i];
2418 $filled_idx[$i >> 4] = $pos;
2422 my $null_offset = $pos; # null mapping
2425 # add the index offsets to the subsets positions
2427 for (my $i = 0; $i < 4096; $i++)
2429 next unless $filled[$i];
2430 $filled[$i] += $null_offset;
2433 # dump the main index
2435 printf OUTPUT
"static const WCHAR table[%d] =\n", $total;
2436 printf OUTPUT
"{\n /* index */\n";
2437 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @filled_idx );
2438 printf OUTPUT
",\n /* null sub-index */\n%s", DUMP_ARRAY
( "0x%04x", 0, ($null_offset) x
16 );
2440 # dump the second-level indexes
2442 for (my $i = 0; $i < 256; $i++)
2444 next unless ($filled_idx[$i] > 256);
2445 my @table = @filled[($i<<4)..($i<<4)+15];
2446 for (my $j = 0; $j < 16; $j++) { $table[$j] ||= $null_offset; }
2447 printf OUTPUT
",\n /* sub-index %02x */\n", $i;
2448 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2451 # dump the 16-char subsets
2453 printf OUTPUT
",\n /* null mapping */\n";
2454 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, (0) x
32 );
2456 for (my $i = 0; $i < 4096; $i++)
2458 next unless $filled[$i];
2459 my @table = (0) x
32;
2460 for (my $j = 0; $j < 16; $j++)
2462 if (defined $decomp_table[($i<<4) + $j])
2464 $table[2 * $j] = ${$decomp_table[($i << 4) + $j]}[0];
2465 $table[2 * $j + 1] = ${$decomp_table[($i << 4) + $j]}[1];
2468 printf OUTPUT
",\n /* 0x%03x0 .. 0x%03xf */\n", $i, $i;
2469 printf OUTPUT
"%s", DUMP_ARRAY
( "0x%04x", 0, @table );
2472 printf OUTPUT
"\n};\n\n";
2474 dump_full_compat_table
();
2476 print OUTPUT
<<"EOF";
2477 static const WCHAR *get_compatmap_entry( WCHAR ch, unsigned int *len )
2479 unsigned short offset_offs = compatmap_table[compatmap_table[ch >> 8] + ((ch >> 4) & 0xf)] + (ch & 0xf);
2480 unsigned short start = compatmap_table[offset_offs];
2481 unsigned short end = compatmap_table[offset_offs + 1];
2486 return compatmap_table + start;
2492 unsigned int DECLSPEC_HIDDEN wine_decompose( int flags, WCHAR ch, WCHAR *dst, unsigned int dstlen )
2494 const WCHAR *ptr = NULL;
2495 unsigned int res, len, dst_pos = 0;
2499 if (flags & WINE_DECOMPOSE_COMPAT)
2500 ptr = get_compatmap_entry( ch, &len );
2504 ptr = table + table[table[ch >> 8] + ((ch >> 4) & 0x0f)] + 2 * (ch & 0xf);
2505 len = ptr[1] ? 2 : 1;
2508 if (!*ptr) return 1;
2509 if (dstlen < len) return 0;
2510 /* apply the decomposition recursively */
2513 if (!(res = wine_decompose( flags, *ptr++, dst + dst_pos, dstlen - dst_pos - len ))) return 0;
2521 save_file
($filename);
2524 ################################################################
2525 # dump the combining class table
2526 sub dump_combining_class
($)
2528 my $filename = shift;
2530 open OUTPUT
,">$filename.new" or die "Cannot create $filename";
2531 print "Building $filename\n";
2532 print OUTPUT
"/* Unicode Combining Classes */\n";
2533 print OUTPUT
"/* generated from $UNIDATA/UnicodeData.txt */\n";
2534 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
2535 print OUTPUT
"#include \"wine/unicode.h\"\n\n";
2537 dump_two_level_mapping
( "combining_class_table", 0, @combining_class_table );
2539 save_file
($filename);
2542 ################################################################
2543 # output a codepage definition file from the global tables
2544 sub output_codepage_file
($$$$)
2546 my ($codepage, $filename, $comment, $has_glyphs) = @_;
2548 my $output = sprintf "libs/port/c_%03d.c", $codepage;
2549 open OUTPUT
,">$output.new" or die "Cannot create $output";
2551 printf "Building %s from %s (%s)\n", $output, $filename || "hardcoded data", $comment;
2555 printf OUTPUT
"/* code page %03d (%s) */\n", $codepage, $comment;
2558 print OUTPUT
"/* generated from $MAPPINGS/$filename */\n";
2559 print OUTPUT
"/* DO NOT EDIT!! */\n\n";
2563 printf OUTPUT
"/* Automatically generated; DO NOT EDIT!! */\n\n";
2565 printf OUTPUT
"#include \"wine/unicode.h\"\n\n";
2567 if (!@lead_bytes) { dump_sbcs_table
( $codepage, $has_glyphs, $comment, $default_char, $default_wchar ); }
2568 else { dump_dbcs_table
( $codepage, $comment, $default_char, $default_wchar, get_lb_ranges
() ); }
2573 ################################################################
2574 # read a "bestfit" Windows mapping file
2575 sub read_bestfit_file
($)
2577 my ($filename) = @_;
2579 my ($codepage, $width, $count);
2580 my ($lb_cur, $lb_end);
2582 my $INPUT = open_data_file
( $MAPPINGS, $filename ) or die "Cannot open $filename";
2586 next if /^;/; # skip comments
2587 next if /^\s*$/; # skip empty lines
2588 next if /\x1a/; # skip ^Z
2589 last if /^ENDCODEPAGE/;
2591 if (/^CODEPAGE\s+(\d+)/)
2596 if (/^CPINFO\s+(\d+)\s+0x([0-9a-fA-f]+)\s+0x([0-9a-fA-F]+)/)
2599 $default_char = hex $2;
2600 $default_wchar = hex $3;
2603 if (/^(MBTABLE|WCTABLE|DBCSRANGE|DBCSTABLE)\s+(\d+)/)
2609 if (/^0x([0-9a-fA-F]+)\s+0x([0-9a-fA-F]+)/)
2611 if ($state eq "MBTABLE")
2615 $cp2uni[$cp] = $uni unless defined($cp2uni[$cp]);
2618 if ($state eq "WCTABLE")
2622 $uni2cp[$uni] = $cp unless defined($uni2cp[$uni]);
2625 if ($state eq "DBCSRANGE")
2629 for (my $i = $start; $i <= $end; $i++) { add_lead_byte
( $i ); }
2634 if ($state eq "DBCSTABLE")
2638 my $cp = ($lb_cur << 8) | $mb;
2639 $cp2uni[$cp] = $uni unless defined($cp2uni[$cp]);
2642 if (++$lb_cur > $lb_end) { $state = "DBCSRANGE"; }
2647 die "$filename: Unrecognized line $_\n";
2653 ################################################################
2654 # read an input file and generate the corresponding .c file
2657 my ($codepage,$filename,$has_glyphs,$comment,$first_private,$def,$defw) = @_;
2662 $default_char = $def || $DEF_CHAR;
2663 $default_wchar = $defw || $DEF_CHAR;
2665 # some codepage files are special
2666 if ($codepage == 20932)
2668 READ_JIS0208_FILE
( $filename );
2669 add_default_mappings
( $first_private );
2671 elsif ($codepage == 20127)
2673 fill_20127_codepage
();
2674 add_default_mappings
( $first_private );
2676 elsif ($filename =~ /\/bestfit
/)
2678 read_bestfit_file
( $filename );
2682 read_codepage_file
( $filename );
2683 if ($codepage == 10001)
2685 # add Shift-JIS mappings
2686 read_bestfit_file
( "VENDORS/MICSFT/WindowsBestFit/bestfit932.txt" );
2690 add_default_mappings
( $first_private );
2694 output_codepage_file
( $codepage, $filename, $comment, $has_glyphs );
2698 ################################################################
2699 # save a file if modified
2703 if (-f
$file && !system "cmp $file $file.new >/dev/null")
2709 rename "$file.new", "$file";
2714 ################################################################
2715 # output the list of codepage tables into the cptable.c file
2716 sub output_cptable
($)
2719 my @tables_decl = ();
2721 printf "Building %s\n", $output;
2723 foreach my $file (@allfiles)
2725 my ($codepage,$filename) = @
$file;
2726 push @tables_decl, sprintf("extern union cptable cptable_%03d;\n",$codepage);
2729 push @tables_decl, sprintf("\nstatic const union cptable * const cptables[%d] =\n{\n",$#allfiles+1);
2730 foreach my $file (@allfiles)
2732 my ($codepage,$filename) = @
$file;
2733 push @tables_decl, sprintf(" &cptable_%03d,\n", $codepage);
2735 push @tables_decl, "};";
2736 REPLACE_IN_FILE
( $output, @tables_decl );
2739 ################################################################
2740 # replace the contents of a file between ### cpmap ### marks
2742 sub REPLACE_IN_FILE
($@
)
2747 open(FILE
,$name) or die "Can't open $name";
2751 last if /\#\#\# cpmap begin \#\#\#/;
2756 if (/\#\#\# cpmap end \#\#\#/) { push @lines, "\n", $_; last; }
2758 push @lines, <FILE
>;
2759 open(FILE
,">$name.new") or die "Can't modify $name";
2765 ################################################################
2768 chdir ".." if -f
"./make_unicode";
2769 READ_DEFAULTS
( $DEFAULTS );
2770 DUMP_CASE_MAPPINGS
( "libs/wine/casemap.c" );
2771 DUMP_SORTKEYS
( "libs/wine/collation.c", READ_SORTKEYS_FILE
() );
2772 dump_compose_table
( "libs/port/compose.c" );
2773 dump_decompose_table
( "libs/port/decompose.c" );
2774 DUMP_CTYPE_TABLES
( "libs/wine/wctype.c" );
2775 dump_digit_folding
( "libs/port/digitmap.c" );
2776 dump_combining_class
( "libs/port/combclass.c" );
2777 dump_mirroring
( "dlls/usp10/mirror.c" );
2778 dump_mirroring
( "dlls/dwrite/mirror.c" );
2779 dump_bracket
( "dlls/usp10/bracket.c" );
2780 dump_bracket
( "dlls/dwrite/bracket.c" );
2781 dump_shaping
( "dlls/usp10/shaping.c" );
2782 dump_linebreak
( "dlls/usp10/linebreak.c" );
2783 dump_linebreak
( "dlls/dwrite/linebreak.c" );
2784 dump_scripts
( "dlls/dwrite/scripts" );
2785 dump_indic
( "dlls/usp10/indicsyllable.c" );
2786 dump_intl_nls
("loader/l_intl.nls");
2787 dump_vertical
( "dlls/gdi32/vertical.c" );
2788 dump_vertical
( "dlls/wineps.drv/vertical.c" );
2789 dump_nameprep
( "dlls/kernel32/nameprep.c" );
2791 foreach my $file (@allfiles) { HANDLE_FILE
( @
{$file} ); }
2793 output_cptable
("libs/port/cptable.c");
2798 # compile-command: "./make_unicode"