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1 | /* utf8.h |
2 | * |
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3 | * Copyright (C) 2000, 2001, 2002, 2005, 2006, 2007, 2009 by Larry Wall and others |
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4 | * |
5 | * You may distribute under the terms of either the GNU General Public |
6 | * License or the Artistic License, as specified in the README file. |
7 | * |
8 | */ |
9 | |
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10 | /* Use UTF-8 as the default script encoding? |
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11 | * Turning this on will break scripts having non-UTF-8 binary |
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12 | * data (such as Latin-1) in string literals. */ |
13 | #ifdef USE_UTF8_SCRIPTS |
14 | # define USE_UTF8_IN_NAMES (!IN_BYTES) |
15 | #else |
16 | # define USE_UTF8_IN_NAMES (PL_hints & HINT_UTF8) |
17 | #endif |
18 | |
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19 | /* Source backward compatibility. */ |
20 | #define uvuni_to_utf8(d, uv) uvuni_to_utf8_flags(d, uv, 0) |
21 | #define is_utf8_string_loc(s, len, ep) is_utf8_string_loclen(s, len, ep, 0) |
22 | |
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23 | #ifdef EBCDIC |
24 | /* The equivalent of these macros but implementing UTF-EBCDIC |
25 | are in the following header file: |
26 | */ |
27 | |
28 | #include "utfebcdic.h" |
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29 | |
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30 | #else /* ! EBCDIC */ |
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31 | START_EXTERN_C |
32 | |
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33 | #ifdef DOINIT |
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34 | EXTCONST unsigned char PL_utf8skip[] = { |
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35 | 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* ascii */ |
36 | 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* ascii */ |
37 | 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* ascii */ |
38 | 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* ascii */ |
39 | 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* bogus */ |
40 | 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* bogus */ |
41 | 2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2, /* scripts */ |
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42 | 3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,4,4,4,4,4,4,4,4,5,5,5,5,6,6, /* cjk etc. */ |
43 | 7,13, /* Perl extended (not UTF-8). Up to 72bit allowed (64-bit + reserved). */ |
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44 | }; |
45 | #else |
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46 | EXTCONST unsigned char PL_utf8skip[]; |
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47 | #endif |
48 | |
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49 | END_EXTERN_C |
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50 | |
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51 | /* Native character to iso-8859-1 */ |
52 | #define NATIVE_TO_ASCII(ch) (ch) |
53 | #define ASCII_TO_NATIVE(ch) (ch) |
54 | /* Transform after encoding */ |
55 | #define NATIVE_TO_UTF(ch) (ch) |
56 | #define UTF_TO_NATIVE(ch) (ch) |
57 | /* Transforms in wide UV chars */ |
58 | #define UNI_TO_NATIVE(ch) (ch) |
59 | #define NATIVE_TO_UNI(ch) (ch) |
60 | /* Transforms in invariant space */ |
61 | #define NATIVE_TO_NEED(enc,ch) (ch) |
62 | #define ASCII_TO_NEED(enc,ch) (ch) |
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63 | |
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64 | /* As there are no translations, avoid the function wrapper */ |
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65 | #define utf8n_to_uvchr utf8n_to_uvuni |
66 | #define uvchr_to_utf8 uvuni_to_utf8 |
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67 | |
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68 | /* |
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69 | |
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70 | The following table is from Unicode 3.2. |
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71 | |
72 | Code Points 1st Byte 2nd Byte 3rd Byte 4th Byte |
73 | |
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74 | U+0000..U+007F 00..7F |
75 | U+0080..U+07FF C2..DF 80..BF |
76 | U+0800..U+0FFF E0 A0..BF 80..BF |
77 | U+1000..U+CFFF E1..EC 80..BF 80..BF |
78 | U+D000..U+D7FF ED 80..9F 80..BF |
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79 | U+D800..U+DFFF ******* ill-formed ******* |
375122d7 |
80 | U+E000..U+FFFF EE..EF 80..BF 80..BF |
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81 | U+10000..U+3FFFF F0 90..BF 80..BF 80..BF |
82 | U+40000..U+FFFFF F1..F3 80..BF 80..BF 80..BF |
83 | U+100000..U+10FFFF F4 80..8F 80..BF 80..BF |
84 | |
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85 | Note the A0..BF in U+0800..U+0FFF, the 80..9F in U+D000...U+D7FF, |
86 | the 90..BF in U+10000..U+3FFFF, and the 80...8F in U+100000..U+10FFFF. |
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87 | The "gaps" are caused by legal UTF-8 avoiding non-shortest encodings: |
88 | it is technically possible to UTF-8-encode a single code point in different |
89 | ways, but that is explicitly forbidden, and the shortest possible encoding |
90 | should always be used (and that is what Perl does). |
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91 | |
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92 | */ |
93 | |
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94 | /* |
95 | Another way to look at it, as bits: |
96 | |
97 | Code Points 1st Byte 2nd Byte 3rd Byte 4th Byte |
98 | |
99 | 0aaaaaaa 0aaaaaaa |
100 | 00000bbbbbaaaaaa 110bbbbb 10aaaaaa |
101 | ccccbbbbbbaaaaaa 1110cccc 10bbbbbb 10aaaaaa |
102 | 00000dddccccccbbbbbbaaaaaa 11110ddd 10cccccc 10bbbbbb 10aaaaaa |
103 | |
104 | As you can see, the continuation bytes all begin with C<10>, and the |
105 | leading bits of the start byte tell how many bytes the are in the |
106 | encoded character. |
107 | |
108 | */ |
109 | |
110 | |
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111 | #define UNI_IS_INVARIANT(c) (((UV)c) < 0x80) |
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112 | /* Note that C0 and C1 are invalid in legal UTF8, so the lower bound of the |
113 | * below might ought to be C2 */ |
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114 | #define UTF8_IS_START(c) (((U8)c) >= 0xc0 && (((U8)c) <= 0xfd)) |
115 | #define UTF8_IS_CONTINUATION(c) (((U8)c) >= 0x80 && (((U8)c) <= 0xbf)) |
116 | #define UTF8_IS_CONTINUED(c) (((U8)c) & 0x80) |
db42d148 |
117 | #define UTF8_IS_DOWNGRADEABLE_START(c) (((U8)c & 0xfc) == 0xc0) |
8850bf83 |
118 | |
22901f30 |
119 | #define UTF_START_MARK(len) (((len) > 7) ? 0xFF : (0xFE << (7-(len)))) |
120 | #define UTF_START_MASK(len) (((len) >= 7) ? 0x00 : (0x1F >> ((len)-2))) |
1d72bdf6 |
121 | |
122 | #define UTF_CONTINUATION_MARK 0x80 |
123 | #define UTF_ACCUMULATION_SHIFT 6 |
124 | #define UTF_CONTINUATION_MASK ((U8)0x3f) |
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125 | |
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126 | #ifdef HAS_QUAD |
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127 | #define UNISKIP(uv) ( (uv) < 0x80 ? 1 : \ |
1d68d6cd |
128 | (uv) < 0x800 ? 2 : \ |
129 | (uv) < 0x10000 ? 3 : \ |
130 | (uv) < 0x200000 ? 4 : \ |
131 | (uv) < 0x4000000 ? 5 : \ |
132 | (uv) < 0x80000000 ? 6 : \ |
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133 | (uv) < UTF8_QUAD_MAX ? 7 : 13 ) |
1d68d6cd |
134 | #else |
135 | /* No, I'm not even going to *TRY* putting #ifdef inside a #define */ |
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136 | #define UNISKIP(uv) ( (uv) < 0x80 ? 1 : \ |
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137 | (uv) < 0x800 ? 2 : \ |
138 | (uv) < 0x10000 ? 3 : \ |
139 | (uv) < 0x200000 ? 4 : \ |
140 | (uv) < 0x4000000 ? 5 : \ |
141 | (uv) < 0x80000000 ? 6 : 7 ) |
142 | #endif |
143 | |
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144 | #endif /* EBCDIC vs ASCII */ |
145 | |
146 | /* Rest of these are attributes of Unicode and perl's internals rather than the |
147 | * encoding, or happen to be the same in both ASCII and EBCDIC (at least at |
148 | * this level; the macros that some of these call may have different |
149 | * definitions in the two encodings */ |
150 | |
151 | #define NATIVE8_TO_UNI(ch) NATIVE_TO_ASCII(ch) /* a clearer synonym */ |
152 | |
153 | #define UTF8_ACCUMULATE(old, new) (((old) << UTF_ACCUMULATION_SHIFT) | (((U8)new) & UTF_CONTINUATION_MASK)) |
154 | |
155 | #define UTF8SKIP(s) PL_utf8skip[*(const U8*)(s)] |
156 | |
157 | #define UTF8_IS_INVARIANT(c) UNI_IS_INVARIANT(NATIVE_TO_UTF(c)) |
158 | #define NATIVE_IS_INVARIANT(c) UNI_IS_INVARIANT(NATIVE8_TO_UNI(c)) |
159 | |
160 | #define MAX_PORTABLE_UTF8_TWO_BYTE 0x3FF /* constrained by EBCDIC */ |
161 | |
162 | /* The macros in the next sets are used to generate the two utf8 or utfebcdic |
163 | * bytes from an ordinal that is known to fit into two bytes; it must be less |
164 | * than 0x3FF to work across both encodings. */ |
165 | /* Nocast allows these to be used in the case label of a switch statement */ |
166 | #define UTF8_TWO_BYTE_HI_nocast(c) UTF_TO_NATIVE(((c)>>UTF_ACCUMULATION_SHIFT)|UTF_START_MARK(2)) |
167 | #define UTF8_TWO_BYTE_LO_nocast(c) UTF_TO_NATIVE(((c)&UTF_CONTINUATION_MASK)|UTF_CONTINUATION_MARK) |
168 | |
169 | #define UTF8_TWO_BYTE_HI(c) ((U8) (UTF8_TWO_BYTE_HI_nocast(c))) |
170 | #define UTF8_TWO_BYTE_LO(c) ((U8) (UTF8_TWO_BYTE_LO_nocast(c))) |
171 | |
172 | /* This name is used when the source is a single byte */ |
173 | #define UTF8_EIGHT_BIT_HI(c) UTF8_TWO_BYTE_HI((U8)(c)) |
174 | #define UTF8_EIGHT_BIT_LO(c) UTF8_TWO_BYTE_LO((U8)(c)) |
175 | |
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176 | /* |
177 | * Note: we try to be careful never to call the isXXX_utf8() functions |
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178 | * unless we're pretty sure we've seen the beginning of a UTF-8 or UTFEBCDIC |
179 | * character. Otherwise we risk loading in the heavy-duty swash_init and |
180 | * swash_fetch routines unnecessarily. |
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181 | */ |
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182 | #define isIDFIRST_lazy_if(p,c) ((IN_BYTES || (!c || ! UTF8_IS_START(*((const U8*)p)))) \ |
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183 | ? isIDFIRST(*(p)) \ |
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184 | : isIDFIRST_utf8((const U8*)p)) |
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185 | #define isALNUM_lazy_if(p,c) ((IN_BYTES || (!c || ! UTF8_IS_START(*((const U8*)p)))) \ |
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186 | ? isALNUM(*(p)) \ |
e1ec3a88 |
187 | : isALNUM_utf8((const U8*)p)) |
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188 | |
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189 | #define isIDFIRST_lazy(p) isIDFIRST_lazy_if(p,1) |
190 | #define isALNUM_lazy(p) isALNUM_lazy_if(p,1) |
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191 | |
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192 | #define UTF8_MAXBYTES 13 |
193 | /* How wide can a single UTF-8 encoded character become in bytes. |
194 | * NOTE: Strictly speaking Perl's UTF-8 should not be called UTF-8 |
195 | * since UTF-8 is an encoding of Unicode and given Unicode's current |
196 | * upper limit only four bytes is possible. Perl thinks of UTF-8 |
197 | * as a way to encode non-negative integers in a binary format. */ |
198 | #define UTF8_MAXLEN UTF8_MAXBYTES |
199 | |
89ebb4a3 |
200 | /* The maximum number of UTF-8 bytes a single Unicode character can |
201 | * uppercase/lowercase/fold into; this number depends on the Unicode |
202 | * version. An example of maximal expansion is the U+03B0 which |
203 | * uppercases to U+03C5 U+0308 U+0301. The Unicode databases that |
d06134e5 |
204 | * tell these things are UnicodeData.txt, CaseFolding.txt, and |
89ebb4a3 |
205 | * SpecialCasing.txt. */ |
206 | #define UTF8_MAXBYTES_CASE 6 |
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207 | |
a98fe34d |
208 | #define IN_BYTES (CopHINTS_get(PL_curcop) & HINT_BYTES) |
0064a8a9 |
209 | #define DO_UTF8(sv) (SvUTF8(sv) && !IN_BYTES) |
00f254e2 |
210 | #define IN_UNI_8_BIT (CopHINTS_get(PL_curcop) & HINT_UNI_8_BIT && ! IN_LOCALE_RUNTIME && ! IN_BYTES) |
1d72bdf6 |
211 | |
212 | #define UTF8_ALLOW_EMPTY 0x0001 |
213 | #define UTF8_ALLOW_CONTINUATION 0x0002 |
214 | #define UTF8_ALLOW_NON_CONTINUATION 0x0004 |
9f7f3913 |
215 | #define UTF8_ALLOW_FE_FF 0x0008 /* Allow above 0x7fffFFFF */ |
1d72bdf6 |
216 | #define UTF8_ALLOW_SHORT 0x0010 |
217 | #define UTF8_ALLOW_SURROGATE 0x0020 |
9f7f3913 |
218 | #define UTF8_ALLOW_FFFF 0x0040 /* Allow UNICODE_ILLEGAL */ |
c867b360 |
219 | #define UTF8_ALLOW_LONG 0x0080 |
1d72bdf6 |
220 | #define UTF8_ALLOW_ANYUV (UTF8_ALLOW_EMPTY|UTF8_ALLOW_FE_FF|\ |
61843245 |
221 | UTF8_ALLOW_SURROGATE|UTF8_ALLOW_FFFF) |
c867b360 |
222 | #define UTF8_ALLOW_ANY 0x00FF |
e83d50c9 |
223 | #define UTF8_CHECK_ONLY 0x0200 |
9f7f3913 |
224 | #define UTF8_ALLOW_DEFAULT (ckWARN(WARN_UTF8) ? 0 : \ |
225 | UTF8_ALLOW_ANYUV) |
1d72bdf6 |
226 | |
c867b360 |
227 | #define UNICODE_SURROGATE_FIRST 0xD800 |
228 | #define UNICODE_SURROGATE_LAST 0xDFFF |
229 | #define UNICODE_REPLACEMENT 0xFFFD |
230 | #define UNICODE_BYTE_ORDER_MARK 0xFEFF |
231 | #define UNICODE_ILLEGAL 0xFFFF |
1d72bdf6 |
232 | |
b851fbc1 |
233 | /* Though our UTF-8 encoding can go beyond this, |
b3ab6785 |
234 | * let's be conservative and do as Unicode 5.1 says. */ |
b851fbc1 |
235 | #define PERL_UNICODE_MAX 0x10FFFF |
236 | |
237 | #define UNICODE_ALLOW_SURROGATE 0x0001 /* Allow UTF-16 surrogates (EVIL) */ |
238 | #define UNICODE_ALLOW_FDD0 0x0002 /* Allow the U+FDD0...U+FDEF */ |
9f7f3913 |
239 | #define UNICODE_ALLOW_FFFF 0x0004 /* Allow U+FFF[EF], U+1FFF[EF], ... */ |
240 | #define UNICODE_ALLOW_SUPER 0x0008 /* Allow past 0x10FFFF */ |
c867b360 |
241 | #define UNICODE_ALLOW_ANY 0x000F |
b851fbc1 |
242 | |
1d72bdf6 |
243 | #define UNICODE_IS_SURROGATE(c) ((c) >= UNICODE_SURROGATE_FIRST && \ |
244 | (c) <= UNICODE_SURROGATE_LAST) |
a10ec373 |
245 | #define UNICODE_IS_REPLACEMENT(c) ((c) == UNICODE_REPLACEMENT) |
872c91ae |
246 | #define UNICODE_IS_BYTE_ORDER_MARK(c) ((c) == UNICODE_BYTE_ORDER_MARK) |
1d72bdf6 |
247 | #define UNICODE_IS_ILLEGAL(c) ((c) == UNICODE_ILLEGAL) |
248 | |
f067b878 |
249 | #ifdef HAS_QUAD |
250 | # define UTF8_QUAD_MAX UINT64_C(0x1000000000) |
251 | #endif |
3bd709b1 |
252 | |
1d72bdf6 |
253 | #define UTF8_IS_ASCII(c) UTF8_IS_INVARIANT(c) |
09091399 |
254 | |
255 | #define UNICODE_GREEK_CAPITAL_LETTER_SIGMA 0x03A3 |
256 | #define UNICODE_GREEK_SMALL_LETTER_FINAL_SIGMA 0x03C2 |
257 | #define UNICODE_GREEK_SMALL_LETTER_SIGMA 0x03C3 |
258 | |
9e55ce06 |
259 | #define UNI_DISPLAY_ISPRINT 0x0001 |
c728cb41 |
260 | #define UNI_DISPLAY_BACKSLASH 0x0002 |
261 | #define UNI_DISPLAY_QQ (UNI_DISPLAY_ISPRINT|UNI_DISPLAY_BACKSLASH) |
262 | #define UNI_DISPLAY_REGEX (UNI_DISPLAY_ISPRINT|UNI_DISPLAY_BACKSLASH) |
9e55ce06 |
263 | |
5cd46e1f |
264 | #ifndef EBCDIC |
265 | # define LATIN_SMALL_LETTER_SHARP_S 0x00DF |
266 | # define LATIN_SMALL_LETTER_Y_WITH_DIAERESIS 0x00FF |
267 | # define MICRO_SIGN 0x00B5 |
268 | #endif |
269 | |
270 | #define ANYOF_FOLD_SHARP_S(node, input, end) \ |
271 | (ANYOF_BITMAP_TEST(node, LATIN_SMALL_LETTER_SHARP_S) && \ |
07b6858f |
272 | (ANYOF_FLAGS(node) & ANYOF_UNICODE) && \ |
273 | (ANYOF_FLAGS(node) & ANYOF_FOLD) && \ |
274 | ((end) > (input) + 1) && \ |
275 | toLOWER((input)[0]) == 's' && \ |
276 | toLOWER((input)[1]) == 's') |
ebc501f0 |
277 | #define SHARP_S_SKIP 2 |
3b0fc154 |
278 | |
77263263 |
279 | #ifdef EBCDIC |
280 | /* IS_UTF8_CHAR() is not ported to EBCDIC */ |
281 | #else |
3b0fc154 |
282 | #define IS_UTF8_CHAR_1(p) \ |
283 | ((p)[0] <= 0x7F) |
284 | #define IS_UTF8_CHAR_2(p) \ |
285 | ((p)[0] >= 0xC2 && (p)[0] <= 0xDF && \ |
286 | (p)[1] >= 0x80 && (p)[1] <= 0xBF) |
287 | #define IS_UTF8_CHAR_3a(p) \ |
288 | ((p)[0] == 0xE0 && \ |
289 | (p)[1] >= 0xA0 && (p)[1] <= 0xBF && \ |
290 | (p)[2] >= 0x80 && (p)[2] <= 0xBF) |
291 | #define IS_UTF8_CHAR_3b(p) \ |
292 | ((p)[0] >= 0xE1 && (p)[0] <= 0xEC && \ |
293 | (p)[1] >= 0x80 && (p)[1] <= 0xBF && \ |
294 | (p)[2] >= 0x80 && (p)[2] <= 0xBF) |
295 | #define IS_UTF8_CHAR_3c(p) \ |
296 | ((p)[0] == 0xED && \ |
297 | (p)[1] >= 0x80 && (p)[1] <= 0xBF && \ |
298 | (p)[2] >= 0x80 && (p)[2] <= 0xBF) |
299 | /* In IS_UTF8_CHAR_3c(p) one could use |
300 | * (p)[1] >= 0x80 && (p)[1] <= 0x9F |
301 | * if one wanted to exclude surrogates. */ |
302 | #define IS_UTF8_CHAR_3d(p) \ |
303 | ((p)[0] >= 0xEE && (p)[0] <= 0xEF && \ |
304 | (p)[1] >= 0x80 && (p)[1] <= 0xBF && \ |
305 | (p)[2] >= 0x80 && (p)[2] <= 0xBF) |
306 | #define IS_UTF8_CHAR_4a(p) \ |
307 | ((p)[0] == 0xF0 && \ |
308 | (p)[1] >= 0x90 && (p)[1] <= 0xBF && \ |
309 | (p)[2] >= 0x80 && (p)[2] <= 0xBF && \ |
310 | (p)[3] >= 0x80 && (p)[3] <= 0xBF) |
311 | #define IS_UTF8_CHAR_4b(p) \ |
312 | ((p)[0] >= 0xF1 && (p)[0] <= 0xF3 && \ |
313 | (p)[1] >= 0x80 && (p)[1] <= 0xBF && \ |
314 | (p)[2] >= 0x80 && (p)[2] <= 0xBF && \ |
315 | (p)[3] >= 0x80 && (p)[3] <= 0xBF) |
316 | /* In IS_UTF8_CHAR_4c(p) one could use |
317 | * (p)[0] == 0xF4 |
318 | * if one wanted to stop at the Unicode limit U+10FFFF. |
319 | * The 0xF7 allows us to go to 0x1fffff (0x200000 would |
320 | * require five bytes). Not doing any further code points |
321 | * since that is not needed (and that would not be strict |
322 | * UTF-8, anyway). The "slow path" in Perl_is_utf8_char() |
323 | * will take care of the "extended UTF-8". */ |
324 | #define IS_UTF8_CHAR_4c(p) \ |
325 | ((p)[0] == 0xF4 && (p)[0] <= 0xF7 && \ |
326 | (p)[1] >= 0x80 && (p)[1] <= 0xBF && \ |
327 | (p)[2] >= 0x80 && (p)[2] <= 0xBF && \ |
328 | (p)[3] >= 0x80 && (p)[3] <= 0xBF) |
329 | |
330 | #define IS_UTF8_CHAR_3(p) \ |
331 | (IS_UTF8_CHAR_3a(p) || \ |
332 | IS_UTF8_CHAR_3b(p) || \ |
333 | IS_UTF8_CHAR_3c(p) || \ |
334 | IS_UTF8_CHAR_3d(p)) |
335 | #define IS_UTF8_CHAR_4(p) \ |
336 | (IS_UTF8_CHAR_4a(p) || \ |
337 | IS_UTF8_CHAR_4b(p) || \ |
338 | IS_UTF8_CHAR_4c(p)) |
339 | |
340 | /* IS_UTF8_CHAR(p) is strictly speaking wrong (not UTF-8) because it |
341 | * (1) allows UTF-8 encoded UTF-16 surrogates |
342 | * (2) it allows code points past U+10FFFF. |
343 | * The Perl_is_utf8_char() full "slow" code will handle the Perl |
344 | * "extended UTF-8". */ |
345 | #define IS_UTF8_CHAR(p, n) \ |
346 | ((n) == 1 ? IS_UTF8_CHAR_1(p) : \ |
347 | (n) == 2 ? IS_UTF8_CHAR_2(p) : \ |
348 | (n) == 3 ? IS_UTF8_CHAR_3(p) : \ |
349 | (n) == 4 ? IS_UTF8_CHAR_4(p) : 0) |
350 | |
768c67ee |
351 | #define IS_UTF8_CHAR_FAST(n) ((n) <= 4) |
352 | |
77263263 |
353 | #endif /* IS_UTF8_CHAR() for UTF-8 */ |
e9a8c099 |
354 | |
355 | /* |
356 | * Local variables: |
357 | * c-indentation-style: bsd |
358 | * c-basic-offset: 4 |
359 | * indent-tabs-mode: t |
360 | * End: |
361 | * |
362 | * ex: set ts=8 sts=4 sw=4 noet: |
363 | */ |