Commit | Line | Data |
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a0ed51b3 LW |
1 | /* utf8.c |
2 | * | |
1129b882 | 3 | * Copyright (C) 2000, 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008 |
b94e2f88 | 4 | * by Larry Wall and others |
a0ed51b3 LW |
5 | * |
6 | * You may distribute under the terms of either the GNU General Public | |
7 | * License or the Artistic License, as specified in the README file. | |
8 | * | |
9 | */ | |
10 | ||
11 | /* | |
12 | * 'What a fix!' said Sam. 'That's the one place in all the lands we've ever | |
13 | * heard of that we don't want to see any closer; and that's the one place | |
14 | * we're trying to get to! And that's just where we can't get, nohow.' | |
15 | * | |
16 | * 'Well do I understand your speech,' he answered in the same language; | |
17 | * 'yet few strangers do so. Why then do you not speak in the Common Tongue, | |
18 | * as is the custom in the West, if you wish to be answered?' | |
19 | * | |
20 | * ...the travellers perceived that the floor was paved with stones of many | |
21 | * hues; branching runes and strange devices intertwined beneath their feet. | |
22 | */ | |
23 | ||
24 | #include "EXTERN.h" | |
864dbfa3 | 25 | #define PERL_IN_UTF8_C |
a0ed51b3 LW |
26 | #include "perl.h" |
27 | ||
a0c21aa1 JH |
28 | #ifndef EBCDIC |
29 | /* Separate prototypes needed because in ASCII systems these | |
30 | * usually macros but they still are compiled as code, too. */ | |
31 | PERL_CALLCONV UV Perl_utf8n_to_uvchr(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen, U32 flags); | |
32 | PERL_CALLCONV U8* Perl_uvchr_to_utf8(pTHX_ U8 *d, UV uv); | |
33 | #endif | |
34 | ||
27da23d5 JH |
35 | static const char unees[] = |
36 | "Malformed UTF-8 character (unexpected end of string)"; | |
901b21bf | 37 | |
ccfc67b7 JH |
38 | /* |
39 | =head1 Unicode Support | |
a0ed51b3 | 40 | |
166f8a29 DM |
41 | This file contains various utility functions for manipulating UTF8-encoded |
42 | strings. For the uninitiated, this is a method of representing arbitrary | |
61296642 | 43 | Unicode characters as a variable number of bytes, in such a way that |
56da48f7 DM |
44 | characters in the ASCII range are unmodified, and a zero byte never appears |
45 | within non-zero characters. | |
166f8a29 | 46 | |
87cea99e | 47 | =for apidoc uvuni_to_utf8_flags |
eebe1485 | 48 | |
1e54db1a | 49 | Adds the UTF-8 representation of the Unicode codepoint C<uv> to the end |
89ebb4a3 | 50 | of the string C<d>; C<d> should be have at least C<UTF8_MAXBYTES+1> free |
eebe1485 | 51 | bytes available. The return value is the pointer to the byte after the |
9041c2e3 | 52 | end of the new character. In other words, |
eebe1485 | 53 | |
b851fbc1 JH |
54 | d = uvuni_to_utf8_flags(d, uv, flags); |
55 | ||
56 | or, in most cases, | |
57 | ||
9041c2e3 | 58 | d = uvuni_to_utf8(d, uv); |
eebe1485 | 59 | |
b851fbc1 JH |
60 | (which is equivalent to) |
61 | ||
62 | d = uvuni_to_utf8_flags(d, uv, 0); | |
63 | ||
eebe1485 SC |
64 | is the recommended Unicode-aware way of saying |
65 | ||
66 | *(d++) = uv; | |
67 | ||
68 | =cut | |
69 | */ | |
70 | ||
dfe13c55 | 71 | U8 * |
b851fbc1 | 72 | Perl_uvuni_to_utf8_flags(pTHX_ U8 *d, UV uv, UV flags) |
a0ed51b3 | 73 | { |
7918f24d NC |
74 | PERL_ARGS_ASSERT_UVUNI_TO_UTF8_FLAGS; |
75 | ||
62961d2e | 76 | if (ckWARN(WARN_UTF8)) { |
b851fbc1 JH |
77 | if (UNICODE_IS_SURROGATE(uv) && |
78 | !(flags & UNICODE_ALLOW_SURROGATE)) | |
9014280d | 79 | Perl_warner(aTHX_ packWARN(WARN_UTF8), "UTF-16 surrogate 0x%04"UVxf, uv); |
b851fbc1 JH |
80 | else if ( |
81 | ((uv >= 0xFDD0 && uv <= 0xFDEF && | |
82 | !(flags & UNICODE_ALLOW_FDD0)) | |
83 | || | |
c867b360 | 84 | ((uv & 0xFFFE) == 0xFFFE && /* Either FFFE or FFFF. */ |
b851fbc1 JH |
85 | !(flags & UNICODE_ALLOW_FFFF))) && |
86 | /* UNICODE_ALLOW_SUPER includes | |
2a20b9da | 87 | * FFFEs and FFFFs beyond 0x10FFFF. */ |
b851fbc1 JH |
88 | ((uv <= PERL_UNICODE_MAX) || |
89 | !(flags & UNICODE_ALLOW_SUPER)) | |
90 | ) | |
9014280d | 91 | Perl_warner(aTHX_ packWARN(WARN_UTF8), |
507b9800 JH |
92 | "Unicode character 0x%04"UVxf" is illegal", uv); |
93 | } | |
c4d5f83a | 94 | if (UNI_IS_INVARIANT(uv)) { |
eb160463 | 95 | *d++ = (U8)UTF_TO_NATIVE(uv); |
a0ed51b3 LW |
96 | return d; |
97 | } | |
2d331972 | 98 | #if defined(EBCDIC) |
1d72bdf6 NIS |
99 | else { |
100 | STRLEN len = UNISKIP(uv); | |
101 | U8 *p = d+len-1; | |
102 | while (p > d) { | |
eb160463 | 103 | *p-- = (U8)UTF_TO_NATIVE((uv & UTF_CONTINUATION_MASK) | UTF_CONTINUATION_MARK); |
1d72bdf6 NIS |
104 | uv >>= UTF_ACCUMULATION_SHIFT; |
105 | } | |
eb160463 | 106 | *p = (U8)UTF_TO_NATIVE((uv & UTF_START_MASK(len)) | UTF_START_MARK(len)); |
1d72bdf6 NIS |
107 | return d+len; |
108 | } | |
109 | #else /* Non loop style */ | |
a0ed51b3 | 110 | if (uv < 0x800) { |
eb160463 GS |
111 | *d++ = (U8)(( uv >> 6) | 0xc0); |
112 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
113 | return d; |
114 | } | |
115 | if (uv < 0x10000) { | |
eb160463 GS |
116 | *d++ = (U8)(( uv >> 12) | 0xe0); |
117 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
118 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
119 | return d; |
120 | } | |
121 | if (uv < 0x200000) { | |
eb160463 GS |
122 | *d++ = (U8)(( uv >> 18) | 0xf0); |
123 | *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80); | |
124 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
125 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
126 | return d; |
127 | } | |
128 | if (uv < 0x4000000) { | |
eb160463 GS |
129 | *d++ = (U8)(( uv >> 24) | 0xf8); |
130 | *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80); | |
131 | *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80); | |
132 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
133 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
134 | return d; |
135 | } | |
136 | if (uv < 0x80000000) { | |
eb160463 GS |
137 | *d++ = (U8)(( uv >> 30) | 0xfc); |
138 | *d++ = (U8)(((uv >> 24) & 0x3f) | 0x80); | |
139 | *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80); | |
140 | *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80); | |
141 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
142 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
143 | return d; |
144 | } | |
6b8eaf93 | 145 | #ifdef HAS_QUAD |
d7578b48 | 146 | if (uv < UTF8_QUAD_MAX) |
a0ed51b3 LW |
147 | #endif |
148 | { | |
eb160463 GS |
149 | *d++ = 0xfe; /* Can't match U+FEFF! */ |
150 | *d++ = (U8)(((uv >> 30) & 0x3f) | 0x80); | |
151 | *d++ = (U8)(((uv >> 24) & 0x3f) | 0x80); | |
152 | *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80); | |
153 | *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80); | |
154 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
155 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
156 | return d; |
157 | } | |
6b8eaf93 | 158 | #ifdef HAS_QUAD |
a0ed51b3 | 159 | { |
eb160463 GS |
160 | *d++ = 0xff; /* Can't match U+FFFE! */ |
161 | *d++ = 0x80; /* 6 Reserved bits */ | |
162 | *d++ = (U8)(((uv >> 60) & 0x0f) | 0x80); /* 2 Reserved bits */ | |
163 | *d++ = (U8)(((uv >> 54) & 0x3f) | 0x80); | |
164 | *d++ = (U8)(((uv >> 48) & 0x3f) | 0x80); | |
165 | *d++ = (U8)(((uv >> 42) & 0x3f) | 0x80); | |
166 | *d++ = (U8)(((uv >> 36) & 0x3f) | 0x80); | |
167 | *d++ = (U8)(((uv >> 30) & 0x3f) | 0x80); | |
168 | *d++ = (U8)(((uv >> 24) & 0x3f) | 0x80); | |
169 | *d++ = (U8)(((uv >> 18) & 0x3f) | 0x80); | |
170 | *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80); | |
171 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
172 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
173 | return d; |
174 | } | |
175 | #endif | |
1d72bdf6 | 176 | #endif /* Loop style */ |
a0ed51b3 | 177 | } |
9041c2e3 | 178 | |
646ca15d JH |
179 | /* |
180 | ||
181 | Tests if some arbitrary number of bytes begins in a valid UTF-8 | |
182 | character. Note that an INVARIANT (i.e. ASCII) character is a valid | |
183 | UTF-8 character. The actual number of bytes in the UTF-8 character | |
184 | will be returned if it is valid, otherwise 0. | |
185 | ||
186 | This is the "slow" version as opposed to the "fast" version which is | |
187 | the "unrolled" IS_UTF8_CHAR(). E.g. for t/uni/class.t the speed | |
188 | difference is a factor of 2 to 3. For lengths (UTF8SKIP(s)) of four | |
189 | or less you should use the IS_UTF8_CHAR(), for lengths of five or more | |
190 | you should use the _slow(). In practice this means that the _slow() | |
191 | will be used very rarely, since the maximum Unicode code point (as of | |
192 | Unicode 4.1) is U+10FFFF, which encodes in UTF-8 to four bytes. Only | |
193 | the "Perl extended UTF-8" (the infamous 'v-strings') will encode into | |
194 | five bytes or more. | |
195 | ||
196 | =cut */ | |
c053b435 | 197 | STATIC STRLEN |
5f66b61c | 198 | S_is_utf8_char_slow(const U8 *s, const STRLEN len) |
646ca15d JH |
199 | { |
200 | U8 u = *s; | |
201 | STRLEN slen; | |
202 | UV uv, ouv; | |
203 | ||
7918f24d NC |
204 | PERL_ARGS_ASSERT_IS_UTF8_CHAR_SLOW; |
205 | ||
646ca15d JH |
206 | if (UTF8_IS_INVARIANT(u)) |
207 | return 1; | |
208 | ||
209 | if (!UTF8_IS_START(u)) | |
210 | return 0; | |
211 | ||
212 | if (len < 2 || !UTF8_IS_CONTINUATION(s[1])) | |
213 | return 0; | |
214 | ||
215 | slen = len - 1; | |
216 | s++; | |
77263263 TS |
217 | #ifdef EBCDIC |
218 | u = NATIVE_TO_UTF(u); | |
219 | #endif | |
646ca15d JH |
220 | u &= UTF_START_MASK(len); |
221 | uv = u; | |
222 | ouv = uv; | |
223 | while (slen--) { | |
224 | if (!UTF8_IS_CONTINUATION(*s)) | |
225 | return 0; | |
226 | uv = UTF8_ACCUMULATE(uv, *s); | |
227 | if (uv < ouv) | |
228 | return 0; | |
229 | ouv = uv; | |
230 | s++; | |
231 | } | |
232 | ||
233 | if ((STRLEN)UNISKIP(uv) < len) | |
234 | return 0; | |
235 | ||
236 | return len; | |
237 | } | |
9041c2e3 NIS |
238 | |
239 | /* | |
87cea99e | 240 | =for apidoc is_utf8_char |
eebe1485 | 241 | |
5da9da9e | 242 | Tests if some arbitrary number of bytes begins in a valid UTF-8 |
82686b01 JH |
243 | character. Note that an INVARIANT (i.e. ASCII) character is a valid |
244 | UTF-8 character. The actual number of bytes in the UTF-8 character | |
245 | will be returned if it is valid, otherwise 0. | |
9041c2e3 | 246 | |
82686b01 | 247 | =cut */ |
067a85ef | 248 | STRLEN |
7fc63493 | 249 | Perl_is_utf8_char(pTHX_ const U8 *s) |
386d01d6 | 250 | { |
44f8325f | 251 | const STRLEN len = UTF8SKIP(s); |
7918f24d NC |
252 | |
253 | PERL_ARGS_ASSERT_IS_UTF8_CHAR; | |
96a5add6 | 254 | PERL_UNUSED_CONTEXT; |
3b0fc154 | 255 | #ifdef IS_UTF8_CHAR |
768c67ee | 256 | if (IS_UTF8_CHAR_FAST(len)) |
3b0fc154 JH |
257 | return IS_UTF8_CHAR(s, len) ? len : 0; |
258 | #endif /* #ifdef IS_UTF8_CHAR */ | |
2c0c5f92 | 259 | return is_utf8_char_slow(s, len); |
386d01d6 GS |
260 | } |
261 | ||
6662521e | 262 | /* |
87cea99e | 263 | =for apidoc is_utf8_string |
6662521e | 264 | |
c9ada85f | 265 | Returns true if first C<len> bytes of the given string form a valid |
1e54db1a JH |
266 | UTF-8 string, false otherwise. Note that 'a valid UTF-8 string' does |
267 | not mean 'a string that contains code points above 0x7F encoded in UTF-8' | |
268 | because a valid ASCII string is a valid UTF-8 string. | |
6662521e | 269 | |
768c67ee JH |
270 | See also is_utf8_string_loclen() and is_utf8_string_loc(). |
271 | ||
6662521e GS |
272 | =cut |
273 | */ | |
274 | ||
8e84507e | 275 | bool |
7fc63493 | 276 | Perl_is_utf8_string(pTHX_ const U8 *s, STRLEN len) |
6662521e | 277 | { |
35da51f7 | 278 | const U8* const send = s + (len ? len : strlen((const char *)s)); |
7fc63493 | 279 | const U8* x = s; |
067a85ef | 280 | |
7918f24d | 281 | PERL_ARGS_ASSERT_IS_UTF8_STRING; |
96a5add6 | 282 | PERL_UNUSED_CONTEXT; |
1aa99e6b | 283 | |
6662521e | 284 | while (x < send) { |
a3b680e6 | 285 | STRLEN c; |
1acdb0da JH |
286 | /* Inline the easy bits of is_utf8_char() here for speed... */ |
287 | if (UTF8_IS_INVARIANT(*x)) | |
288 | c = 1; | |
289 | else if (!UTF8_IS_START(*x)) | |
768c67ee | 290 | goto out; |
1acdb0da JH |
291 | else { |
292 | /* ... and call is_utf8_char() only if really needed. */ | |
646ca15d JH |
293 | #ifdef IS_UTF8_CHAR |
294 | c = UTF8SKIP(x); | |
768c67ee JH |
295 | if (IS_UTF8_CHAR_FAST(c)) { |
296 | if (!IS_UTF8_CHAR(x, c)) | |
3c614e38 AD |
297 | c = 0; |
298 | } | |
299 | else | |
300 | c = is_utf8_char_slow(x, c); | |
646ca15d JH |
301 | #else |
302 | c = is_utf8_char(x); | |
303 | #endif /* #ifdef IS_UTF8_CHAR */ | |
1acdb0da | 304 | if (!c) |
768c67ee | 305 | goto out; |
1acdb0da | 306 | } |
6662521e | 307 | x += c; |
6662521e | 308 | } |
768c67ee JH |
309 | |
310 | out: | |
60006e79 JH |
311 | if (x != send) |
312 | return FALSE; | |
067a85ef A |
313 | |
314 | return TRUE; | |
6662521e GS |
315 | } |
316 | ||
67e989fb | 317 | /* |
814fafa7 NC |
318 | Implemented as a macro in utf8.h |
319 | ||
87cea99e | 320 | =for apidoc is_utf8_string_loc |
814fafa7 NC |
321 | |
322 | Like is_utf8_string() but stores the location of the failure (in the | |
323 | case of "utf8ness failure") or the location s+len (in the case of | |
324 | "utf8ness success") in the C<ep>. | |
325 | ||
326 | See also is_utf8_string_loclen() and is_utf8_string(). | |
327 | ||
87cea99e | 328 | =for apidoc is_utf8_string_loclen |
81cd54e3 | 329 | |
e3e4599f | 330 | Like is_utf8_string() but stores the location of the failure (in the |
768c67ee JH |
331 | case of "utf8ness failure") or the location s+len (in the case of |
332 | "utf8ness success") in the C<ep>, and the number of UTF-8 | |
333 | encoded characters in the C<el>. | |
334 | ||
335 | See also is_utf8_string_loc() and is_utf8_string(). | |
81cd54e3 JH |
336 | |
337 | =cut | |
338 | */ | |
339 | ||
340 | bool | |
768c67ee | 341 | Perl_is_utf8_string_loclen(pTHX_ const U8 *s, STRLEN len, const U8 **ep, STRLEN *el) |
81cd54e3 | 342 | { |
35da51f7 | 343 | const U8* const send = s + (len ? len : strlen((const char *)s)); |
7fc63493 | 344 | const U8* x = s; |
81cd54e3 | 345 | STRLEN c; |
3ebfea28 | 346 | STRLEN outlen = 0; |
7918f24d NC |
347 | |
348 | PERL_ARGS_ASSERT_IS_UTF8_STRING_LOCLEN; | |
96a5add6 | 349 | PERL_UNUSED_CONTEXT; |
81cd54e3 | 350 | |
81cd54e3 JH |
351 | while (x < send) { |
352 | /* Inline the easy bits of is_utf8_char() here for speed... */ | |
353 | if (UTF8_IS_INVARIANT(*x)) | |
768c67ee JH |
354 | c = 1; |
355 | else if (!UTF8_IS_START(*x)) | |
356 | goto out; | |
81cd54e3 | 357 | else { |
768c67ee JH |
358 | /* ... and call is_utf8_char() only if really needed. */ |
359 | #ifdef IS_UTF8_CHAR | |
360 | c = UTF8SKIP(x); | |
361 | if (IS_UTF8_CHAR_FAST(c)) { | |
362 | if (!IS_UTF8_CHAR(x, c)) | |
363 | c = 0; | |
364 | } else | |
365 | c = is_utf8_char_slow(x, c); | |
366 | #else | |
367 | c = is_utf8_char(x); | |
368 | #endif /* #ifdef IS_UTF8_CHAR */ | |
369 | if (!c) | |
370 | goto out; | |
81cd54e3 | 371 | } |
768c67ee | 372 | x += c; |
3ebfea28 | 373 | outlen++; |
81cd54e3 | 374 | } |
768c67ee JH |
375 | |
376 | out: | |
3ebfea28 AL |
377 | if (el) |
378 | *el = outlen; | |
379 | ||
768c67ee JH |
380 | if (ep) |
381 | *ep = x; | |
3ebfea28 | 382 | return (x == send); |
81cd54e3 JH |
383 | } |
384 | ||
385 | /* | |
768c67ee | 386 | |
87cea99e | 387 | =for apidoc utf8n_to_uvuni |
67e989fb | 388 | |
9041c2e3 | 389 | Bottom level UTF-8 decode routine. |
38a44b82 | 390 | Returns the Unicode code point value of the first character in the string C<s> |
1e54db1a | 391 | which is assumed to be in UTF-8 encoding and no longer than C<curlen>; |
7df053ec | 392 | C<retlen> will be set to the length, in bytes, of that character. |
67e989fb | 393 | |
1e54db1a | 394 | If C<s> does not point to a well-formed UTF-8 character, the behaviour |
dcad2880 JH |
395 | is dependent on the value of C<flags>: if it contains UTF8_CHECK_ONLY, |
396 | it is assumed that the caller will raise a warning, and this function | |
28d3d195 JH |
397 | will silently just set C<retlen> to C<-1> and return zero. If the |
398 | C<flags> does not contain UTF8_CHECK_ONLY, warnings about | |
399 | malformations will be given, C<retlen> will be set to the expected | |
400 | length of the UTF-8 character in bytes, and zero will be returned. | |
401 | ||
402 | The C<flags> can also contain various flags to allow deviations from | |
403 | the strict UTF-8 encoding (see F<utf8.h>). | |
67e989fb | 404 | |
9041c2e3 NIS |
405 | Most code should use utf8_to_uvchr() rather than call this directly. |
406 | ||
37607a96 PK |
407 | =cut |
408 | */ | |
67e989fb | 409 | |
a0ed51b3 | 410 | UV |
7fc63493 | 411 | Perl_utf8n_to_uvuni(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen, U32 flags) |
a0ed51b3 | 412 | { |
97aff369 | 413 | dVAR; |
d4c19fe8 | 414 | const U8 * const s0 = s; |
9c5ffd7c | 415 | UV uv = *s, ouv = 0; |
ba210ebe | 416 | STRLEN len = 1; |
7fc63493 AL |
417 | const bool dowarn = ckWARN_d(WARN_UTF8); |
418 | const UV startbyte = *s; | |
ba210ebe | 419 | STRLEN expectlen = 0; |
a0dbb045 JH |
420 | U32 warning = 0; |
421 | ||
7918f24d NC |
422 | PERL_ARGS_ASSERT_UTF8N_TO_UVUNI; |
423 | ||
a0dbb045 JH |
424 | /* This list is a superset of the UTF8_ALLOW_XXX. */ |
425 | ||
426 | #define UTF8_WARN_EMPTY 1 | |
427 | #define UTF8_WARN_CONTINUATION 2 | |
428 | #define UTF8_WARN_NON_CONTINUATION 3 | |
429 | #define UTF8_WARN_FE_FF 4 | |
430 | #define UTF8_WARN_SHORT 5 | |
431 | #define UTF8_WARN_OVERFLOW 6 | |
432 | #define UTF8_WARN_SURROGATE 7 | |
c867b360 JH |
433 | #define UTF8_WARN_LONG 8 |
434 | #define UTF8_WARN_FFFF 9 /* Also FFFE. */ | |
a0dbb045 JH |
435 | |
436 | if (curlen == 0 && | |
437 | !(flags & UTF8_ALLOW_EMPTY)) { | |
438 | warning = UTF8_WARN_EMPTY; | |
0c443dc2 JH |
439 | goto malformed; |
440 | } | |
441 | ||
1d72bdf6 | 442 | if (UTF8_IS_INVARIANT(uv)) { |
a0ed51b3 LW |
443 | if (retlen) |
444 | *retlen = 1; | |
c4d5f83a | 445 | return (UV) (NATIVE_TO_UTF(*s)); |
a0ed51b3 | 446 | } |
67e989fb | 447 | |
421a8bf2 | 448 | if (UTF8_IS_CONTINUATION(uv) && |
fcc8fcf6 | 449 | !(flags & UTF8_ALLOW_CONTINUATION)) { |
a0dbb045 | 450 | warning = UTF8_WARN_CONTINUATION; |
ba210ebe JH |
451 | goto malformed; |
452 | } | |
453 | ||
421a8bf2 | 454 | if (UTF8_IS_START(uv) && curlen > 1 && !UTF8_IS_CONTINUATION(s[1]) && |
fcc8fcf6 | 455 | !(flags & UTF8_ALLOW_NON_CONTINUATION)) { |
a0dbb045 | 456 | warning = UTF8_WARN_NON_CONTINUATION; |
ba210ebe JH |
457 | goto malformed; |
458 | } | |
9041c2e3 | 459 | |
1d72bdf6 | 460 | #ifdef EBCDIC |
75383841 | 461 | uv = NATIVE_TO_UTF(uv); |
1d72bdf6 | 462 | #else |
fcc8fcf6 JH |
463 | if ((uv == 0xfe || uv == 0xff) && |
464 | !(flags & UTF8_ALLOW_FE_FF)) { | |
a0dbb045 | 465 | warning = UTF8_WARN_FE_FF; |
ba210ebe | 466 | goto malformed; |
a0ed51b3 | 467 | } |
1d72bdf6 NIS |
468 | #endif |
469 | ||
ba210ebe JH |
470 | if (!(uv & 0x20)) { len = 2; uv &= 0x1f; } |
471 | else if (!(uv & 0x10)) { len = 3; uv &= 0x0f; } | |
472 | else if (!(uv & 0x08)) { len = 4; uv &= 0x07; } | |
473 | else if (!(uv & 0x04)) { len = 5; uv &= 0x03; } | |
1d72bdf6 NIS |
474 | #ifdef EBCDIC |
475 | else if (!(uv & 0x02)) { len = 6; uv &= 0x01; } | |
476 | else { len = 7; uv &= 0x01; } | |
477 | #else | |
ba210ebe JH |
478 | else if (!(uv & 0x02)) { len = 6; uv &= 0x01; } |
479 | else if (!(uv & 0x01)) { len = 7; uv = 0; } | |
1d72bdf6 NIS |
480 | else { len = 13; uv = 0; } /* whoa! */ |
481 | #endif | |
482 | ||
a0ed51b3 LW |
483 | if (retlen) |
484 | *retlen = len; | |
9041c2e3 | 485 | |
ba210ebe JH |
486 | expectlen = len; |
487 | ||
fcc8fcf6 JH |
488 | if ((curlen < expectlen) && |
489 | !(flags & UTF8_ALLOW_SHORT)) { | |
a0dbb045 | 490 | warning = UTF8_WARN_SHORT; |
ba210ebe JH |
491 | goto malformed; |
492 | } | |
493 | ||
494 | len--; | |
a0ed51b3 | 495 | s++; |
ba210ebe JH |
496 | ouv = uv; |
497 | ||
a0ed51b3 | 498 | while (len--) { |
421a8bf2 JH |
499 | if (!UTF8_IS_CONTINUATION(*s) && |
500 | !(flags & UTF8_ALLOW_NON_CONTINUATION)) { | |
a0dbb045 JH |
501 | s--; |
502 | warning = UTF8_WARN_NON_CONTINUATION; | |
ba210ebe | 503 | goto malformed; |
a0ed51b3 LW |
504 | } |
505 | else | |
8850bf83 | 506 | uv = UTF8_ACCUMULATE(uv, *s); |
a0dbb045 JH |
507 | if (!(uv > ouv)) { |
508 | /* These cannot be allowed. */ | |
509 | if (uv == ouv) { | |
75dbc644 | 510 | if (expectlen != 13 && !(flags & UTF8_ALLOW_LONG)) { |
a0dbb045 JH |
511 | warning = UTF8_WARN_LONG; |
512 | goto malformed; | |
513 | } | |
514 | } | |
515 | else { /* uv < ouv */ | |
516 | /* This cannot be allowed. */ | |
517 | warning = UTF8_WARN_OVERFLOW; | |
518 | goto malformed; | |
519 | } | |
ba210ebe JH |
520 | } |
521 | s++; | |
522 | ouv = uv; | |
523 | } | |
524 | ||
421a8bf2 | 525 | if (UNICODE_IS_SURROGATE(uv) && |
fcc8fcf6 | 526 | !(flags & UTF8_ALLOW_SURROGATE)) { |
a0dbb045 | 527 | warning = UTF8_WARN_SURROGATE; |
ba210ebe | 528 | goto malformed; |
eb160463 | 529 | } else if ((expectlen > (STRLEN)UNISKIP(uv)) && |
fcc8fcf6 | 530 | !(flags & UTF8_ALLOW_LONG)) { |
a0dbb045 | 531 | warning = UTF8_WARN_LONG; |
ba210ebe | 532 | goto malformed; |
421a8bf2 | 533 | } else if (UNICODE_IS_ILLEGAL(uv) && |
a9917092 | 534 | !(flags & UTF8_ALLOW_FFFF)) { |
a0dbb045 | 535 | warning = UTF8_WARN_FFFF; |
a9917092 | 536 | goto malformed; |
a0ed51b3 | 537 | } |
ba210ebe | 538 | |
a0ed51b3 | 539 | return uv; |
ba210ebe JH |
540 | |
541 | malformed: | |
542 | ||
fcc8fcf6 | 543 | if (flags & UTF8_CHECK_ONLY) { |
ba210ebe | 544 | if (retlen) |
10edeb5d | 545 | *retlen = ((STRLEN) -1); |
ba210ebe JH |
546 | return 0; |
547 | } | |
548 | ||
a0dbb045 | 549 | if (dowarn) { |
84bafc02 | 550 | SV* const sv = newSVpvs_flags("Malformed UTF-8 character ", SVs_TEMP); |
a0dbb045 JH |
551 | |
552 | switch (warning) { | |
553 | case 0: /* Intentionally empty. */ break; | |
554 | case UTF8_WARN_EMPTY: | |
396482e1 | 555 | sv_catpvs(sv, "(empty string)"); |
a0dbb045 JH |
556 | break; |
557 | case UTF8_WARN_CONTINUATION: | |
097fb8e2 | 558 | Perl_sv_catpvf(aTHX_ sv, "(unexpected continuation byte 0x%02"UVxf", with no preceding start byte)", uv); |
a0dbb045 JH |
559 | break; |
560 | case UTF8_WARN_NON_CONTINUATION: | |
097fb8e2 JH |
561 | if (s == s0) |
562 | Perl_sv_catpvf(aTHX_ sv, "(unexpected non-continuation byte 0x%02"UVxf", immediately after start byte 0x%02"UVxf")", | |
563 | (UV)s[1], startbyte); | |
551405c4 AL |
564 | else { |
565 | const int len = (int)(s-s0); | |
097fb8e2 | 566 | Perl_sv_catpvf(aTHX_ sv, "(unexpected non-continuation byte 0x%02"UVxf", %d byte%s after start byte 0x%02"UVxf", expected %d bytes)", |
551405c4 AL |
567 | (UV)s[1], len, len > 1 ? "s" : "", startbyte, (int)expectlen); |
568 | } | |
569 | ||
a0dbb045 JH |
570 | break; |
571 | case UTF8_WARN_FE_FF: | |
572 | Perl_sv_catpvf(aTHX_ sv, "(byte 0x%02"UVxf")", uv); | |
573 | break; | |
574 | case UTF8_WARN_SHORT: | |
097fb8e2 | 575 | Perl_sv_catpvf(aTHX_ sv, "(%d byte%s, need %d, after start byte 0x%02"UVxf")", |
5d7488b2 | 576 | (int)curlen, curlen == 1 ? "" : "s", (int)expectlen, startbyte); |
b31f83c2 | 577 | expectlen = curlen; /* distance for caller to skip */ |
a0dbb045 JH |
578 | break; |
579 | case UTF8_WARN_OVERFLOW: | |
097fb8e2 JH |
580 | Perl_sv_catpvf(aTHX_ sv, "(overflow at 0x%"UVxf", byte 0x%02x, after start byte 0x%02"UVxf")", |
581 | ouv, *s, startbyte); | |
a0dbb045 JH |
582 | break; |
583 | case UTF8_WARN_SURROGATE: | |
584 | Perl_sv_catpvf(aTHX_ sv, "(UTF-16 surrogate 0x%04"UVxf")", uv); | |
585 | break; | |
a0dbb045 | 586 | case UTF8_WARN_LONG: |
097fb8e2 | 587 | Perl_sv_catpvf(aTHX_ sv, "(%d byte%s, need %d, after start byte 0x%02"UVxf")", |
5d7488b2 | 588 | (int)expectlen, expectlen == 1 ? "": "s", UNISKIP(uv), startbyte); |
a0dbb045 JH |
589 | break; |
590 | case UTF8_WARN_FFFF: | |
591 | Perl_sv_catpvf(aTHX_ sv, "(character 0x%04"UVxf")", uv); | |
592 | break; | |
593 | default: | |
396482e1 | 594 | sv_catpvs(sv, "(unknown reason)"); |
a0dbb045 JH |
595 | break; |
596 | } | |
597 | ||
598 | if (warning) { | |
44f8325f | 599 | const char * const s = SvPVX_const(sv); |
a0dbb045 JH |
600 | |
601 | if (PL_op) | |
9014280d | 602 | Perl_warner(aTHX_ packWARN(WARN_UTF8), |
53e06cf0 | 603 | "%s in %s", s, OP_DESC(PL_op)); |
a0dbb045 | 604 | else |
9014280d | 605 | Perl_warner(aTHX_ packWARN(WARN_UTF8), "%s", s); |
a0dbb045 JH |
606 | } |
607 | } | |
608 | ||
ba210ebe | 609 | if (retlen) |
28d3d195 | 610 | *retlen = expectlen ? expectlen : len; |
ba210ebe | 611 | |
28d3d195 | 612 | return 0; |
a0ed51b3 LW |
613 | } |
614 | ||
8e84507e | 615 | /* |
87cea99e | 616 | =for apidoc utf8_to_uvchr |
9041c2e3 NIS |
617 | |
618 | Returns the native character value of the first character in the string C<s> | |
1e54db1a | 619 | which is assumed to be in UTF-8 encoding; C<retlen> will be set to the |
9041c2e3 NIS |
620 | length, in bytes, of that character. |
621 | ||
1e54db1a | 622 | If C<s> does not point to a well-formed UTF-8 character, zero is |
9041c2e3 NIS |
623 | returned and retlen is set, if possible, to -1. |
624 | ||
625 | =cut | |
626 | */ | |
627 | ||
628 | UV | |
7fc63493 | 629 | Perl_utf8_to_uvchr(pTHX_ const U8 *s, STRLEN *retlen) |
9041c2e3 | 630 | { |
7918f24d NC |
631 | PERL_ARGS_ASSERT_UTF8_TO_UVCHR; |
632 | ||
1754c1a1 NC |
633 | return utf8n_to_uvchr(s, UTF8_MAXBYTES, retlen, |
634 | ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY); | |
9041c2e3 NIS |
635 | } |
636 | ||
637 | /* | |
87cea99e | 638 | =for apidoc utf8_to_uvuni |
9041c2e3 NIS |
639 | |
640 | Returns the Unicode code point of the first character in the string C<s> | |
1e54db1a | 641 | which is assumed to be in UTF-8 encoding; C<retlen> will be set to the |
9041c2e3 NIS |
642 | length, in bytes, of that character. |
643 | ||
644 | This function should only be used when returned UV is considered | |
645 | an index into the Unicode semantic tables (e.g. swashes). | |
646 | ||
1e54db1a | 647 | If C<s> does not point to a well-formed UTF-8 character, zero is |
ba210ebe | 648 | returned and retlen is set, if possible, to -1. |
8e84507e NIS |
649 | |
650 | =cut | |
651 | */ | |
652 | ||
653 | UV | |
7fc63493 | 654 | Perl_utf8_to_uvuni(pTHX_ const U8 *s, STRLEN *retlen) |
8e84507e | 655 | { |
7918f24d NC |
656 | PERL_ARGS_ASSERT_UTF8_TO_UVUNI; |
657 | ||
9041c2e3 | 658 | /* Call the low level routine asking for checks */ |
89ebb4a3 | 659 | return Perl_utf8n_to_uvuni(aTHX_ s, UTF8_MAXBYTES, retlen, |
872c91ae | 660 | ckWARN(WARN_UTF8) ? 0 : UTF8_ALLOW_ANY); |
8e84507e NIS |
661 | } |
662 | ||
b76347f2 | 663 | /* |
87cea99e | 664 | =for apidoc utf8_length |
b76347f2 JH |
665 | |
666 | Return the length of the UTF-8 char encoded string C<s> in characters. | |
02eb7b47 JH |
667 | Stops at C<e> (inclusive). If C<e E<lt> s> or if the scan would end |
668 | up past C<e>, croaks. | |
b76347f2 JH |
669 | |
670 | =cut | |
671 | */ | |
672 | ||
673 | STRLEN | |
35a4481c | 674 | Perl_utf8_length(pTHX_ const U8 *s, const U8 *e) |
b76347f2 | 675 | { |
97aff369 | 676 | dVAR; |
b76347f2 | 677 | STRLEN len = 0; |
10edeb5d | 678 | U8 t = 0; |
b76347f2 | 679 | |
7918f24d NC |
680 | PERL_ARGS_ASSERT_UTF8_LENGTH; |
681 | ||
8850bf83 JH |
682 | /* Note: cannot use UTF8_IS_...() too eagerly here since e.g. |
683 | * the bitops (especially ~) can create illegal UTF-8. | |
684 | * In other words: in Perl UTF-8 is not just for Unicode. */ | |
685 | ||
a3b680e6 AL |
686 | if (e < s) |
687 | goto warn_and_return; | |
b76347f2 | 688 | while (s < e) { |
10edeb5d | 689 | t = UTF8SKIP(s); |
901b21bf | 690 | if (e - s < t) { |
a3b680e6 | 691 | warn_and_return: |
901b21bf JH |
692 | if (ckWARN_d(WARN_UTF8)) { |
693 | if (PL_op) | |
694 | Perl_warner(aTHX_ packWARN(WARN_UTF8), | |
a3b680e6 | 695 | "%s in %s", unees, OP_DESC(PL_op)); |
901b21bf JH |
696 | else |
697 | Perl_warner(aTHX_ packWARN(WARN_UTF8), unees); | |
698 | } | |
699 | return len; | |
700 | } | |
b76347f2 JH |
701 | s += t; |
702 | len++; | |
703 | } | |
704 | ||
705 | return len; | |
706 | } | |
707 | ||
b06226ff | 708 | /* |
87cea99e | 709 | =for apidoc utf8_distance |
b06226ff | 710 | |
1e54db1a | 711 | Returns the number of UTF-8 characters between the UTF-8 pointers C<a> |
b06226ff JH |
712 | and C<b>. |
713 | ||
714 | WARNING: use only if you *know* that the pointers point inside the | |
715 | same UTF-8 buffer. | |
716 | ||
37607a96 PK |
717 | =cut |
718 | */ | |
a0ed51b3 | 719 | |
02eb7b47 | 720 | IV |
35a4481c | 721 | Perl_utf8_distance(pTHX_ const U8 *a, const U8 *b) |
a0ed51b3 | 722 | { |
7918f24d NC |
723 | PERL_ARGS_ASSERT_UTF8_DISTANCE; |
724 | ||
bf1665bc | 725 | return (a < b) ? -1 * (IV) utf8_length(a, b) : (IV) utf8_length(b, a); |
a0ed51b3 LW |
726 | } |
727 | ||
b06226ff | 728 | /* |
87cea99e | 729 | =for apidoc utf8_hop |
b06226ff | 730 | |
8850bf83 JH |
731 | Return the UTF-8 pointer C<s> displaced by C<off> characters, either |
732 | forward or backward. | |
b06226ff JH |
733 | |
734 | WARNING: do not use the following unless you *know* C<off> is within | |
8850bf83 JH |
735 | the UTF-8 data pointed to by C<s> *and* that on entry C<s> is aligned |
736 | on the first byte of character or just after the last byte of a character. | |
b06226ff | 737 | |
37607a96 PK |
738 | =cut |
739 | */ | |
a0ed51b3 LW |
740 | |
741 | U8 * | |
4373e329 | 742 | Perl_utf8_hop(pTHX_ const U8 *s, I32 off) |
a0ed51b3 | 743 | { |
7918f24d NC |
744 | PERL_ARGS_ASSERT_UTF8_HOP; |
745 | ||
96a5add6 | 746 | PERL_UNUSED_CONTEXT; |
8850bf83 JH |
747 | /* Note: cannot use UTF8_IS_...() too eagerly here since e.g |
748 | * the bitops (especially ~) can create illegal UTF-8. | |
749 | * In other words: in Perl UTF-8 is not just for Unicode. */ | |
750 | ||
a0ed51b3 LW |
751 | if (off >= 0) { |
752 | while (off--) | |
753 | s += UTF8SKIP(s); | |
754 | } | |
755 | else { | |
756 | while (off++) { | |
757 | s--; | |
8850bf83 JH |
758 | while (UTF8_IS_CONTINUATION(*s)) |
759 | s--; | |
a0ed51b3 LW |
760 | } |
761 | } | |
4373e329 | 762 | return (U8 *)s; |
a0ed51b3 LW |
763 | } |
764 | ||
6940069f | 765 | /* |
87cea99e | 766 | =for apidoc utf8_to_bytes |
6940069f | 767 | |
1e54db1a | 768 | Converts a string C<s> of length C<len> from UTF-8 into byte encoding. |
246fae53 MG |
769 | Unlike C<bytes_to_utf8>, this over-writes the original string, and |
770 | updates len to contain the new length. | |
67e989fb | 771 | Returns zero on failure, setting C<len> to -1. |
6940069f | 772 | |
95be277c NC |
773 | If you need a copy of the string, see C<bytes_from_utf8>. |
774 | ||
6940069f GS |
775 | =cut |
776 | */ | |
777 | ||
778 | U8 * | |
37607a96 | 779 | Perl_utf8_to_bytes(pTHX_ U8 *s, STRLEN *len) |
6940069f | 780 | { |
d4c19fe8 AL |
781 | U8 * const save = s; |
782 | U8 * const send = s + *len; | |
6940069f | 783 | U8 *d; |
246fae53 | 784 | |
7918f24d NC |
785 | PERL_ARGS_ASSERT_UTF8_TO_BYTES; |
786 | ||
1e54db1a | 787 | /* ensure valid UTF-8 and chars < 256 before updating string */ |
d4c19fe8 | 788 | while (s < send) { |
dcad2880 JH |
789 | U8 c = *s++; |
790 | ||
1d72bdf6 NIS |
791 | if (!UTF8_IS_INVARIANT(c) && |
792 | (!UTF8_IS_DOWNGRADEABLE_START(c) || (s >= send) | |
793 | || !(c = *s++) || !UTF8_IS_CONTINUATION(c))) { | |
10edeb5d | 794 | *len = ((STRLEN) -1); |
dcad2880 JH |
795 | return 0; |
796 | } | |
246fae53 | 797 | } |
dcad2880 JH |
798 | |
799 | d = s = save; | |
6940069f | 800 | while (s < send) { |
ed646e6e | 801 | STRLEN ulen; |
9041c2e3 | 802 | *d++ = (U8)utf8_to_uvchr(s, &ulen); |
ed646e6e | 803 | s += ulen; |
6940069f GS |
804 | } |
805 | *d = '\0'; | |
246fae53 | 806 | *len = d - save; |
6940069f GS |
807 | return save; |
808 | } | |
809 | ||
810 | /* | |
87cea99e | 811 | =for apidoc bytes_from_utf8 |
f9a63242 | 812 | |
1e54db1a | 813 | Converts a string C<s> of length C<len> from UTF-8 into byte encoding. |
35a4481c | 814 | Unlike C<utf8_to_bytes> but like C<bytes_to_utf8>, returns a pointer to |
ef9edfd0 JH |
815 | the newly-created string, and updates C<len> to contain the new |
816 | length. Returns the original string if no conversion occurs, C<len> | |
817 | is unchanged. Do nothing if C<is_utf8> points to 0. Sets C<is_utf8> to | |
818 | 0 if C<s> is converted or contains all 7bit characters. | |
f9a63242 | 819 | |
37607a96 PK |
820 | =cut |
821 | */ | |
f9a63242 JH |
822 | |
823 | U8 * | |
e1ec3a88 | 824 | Perl_bytes_from_utf8(pTHX_ const U8 *s, STRLEN *len, bool *is_utf8) |
f9a63242 | 825 | { |
f9a63242 | 826 | U8 *d; |
e1ec3a88 AL |
827 | const U8 *start = s; |
828 | const U8 *send; | |
f9a63242 JH |
829 | I32 count = 0; |
830 | ||
7918f24d NC |
831 | PERL_ARGS_ASSERT_BYTES_FROM_UTF8; |
832 | ||
96a5add6 | 833 | PERL_UNUSED_CONTEXT; |
f9a63242 | 834 | if (!*is_utf8) |
73d840c0 | 835 | return (U8 *)start; |
f9a63242 | 836 | |
1e54db1a | 837 | /* ensure valid UTF-8 and chars < 256 before converting string */ |
f9a63242 | 838 | for (send = s + *len; s < send;) { |
e1ec3a88 | 839 | U8 c = *s++; |
1d72bdf6 | 840 | if (!UTF8_IS_INVARIANT(c)) { |
db42d148 NIS |
841 | if (UTF8_IS_DOWNGRADEABLE_START(c) && s < send && |
842 | (c = *s++) && UTF8_IS_CONTINUATION(c)) | |
843 | count++; | |
844 | else | |
73d840c0 | 845 | return (U8 *)start; |
db42d148 | 846 | } |
f9a63242 JH |
847 | } |
848 | ||
35da51f7 | 849 | *is_utf8 = FALSE; |
f9a63242 | 850 | |
212542aa | 851 | Newx(d, (*len) - count + 1, U8); |
ef9edfd0 | 852 | s = start; start = d; |
f9a63242 JH |
853 | while (s < send) { |
854 | U8 c = *s++; | |
c4d5f83a NIS |
855 | if (!UTF8_IS_INVARIANT(c)) { |
856 | /* Then it is two-byte encoded */ | |
857 | c = UTF8_ACCUMULATE(NATIVE_TO_UTF(c), *s++); | |
858 | c = ASCII_TO_NATIVE(c); | |
859 | } | |
860 | *d++ = c; | |
f9a63242 JH |
861 | } |
862 | *d = '\0'; | |
863 | *len = d - start; | |
73d840c0 | 864 | return (U8 *)start; |
f9a63242 JH |
865 | } |
866 | ||
867 | /* | |
87cea99e | 868 | =for apidoc bytes_to_utf8 |
6940069f | 869 | |
1e54db1a | 870 | Converts a string C<s> of length C<len> from ASCII into UTF-8 encoding. |
6662521e GS |
871 | Returns a pointer to the newly-created string, and sets C<len> to |
872 | reflect the new length. | |
6940069f | 873 | |
1e54db1a | 874 | If you want to convert to UTF-8 from other encodings than ASCII, |
c9ada85f JH |
875 | see sv_recode_to_utf8(). |
876 | ||
497711e7 | 877 | =cut |
6940069f GS |
878 | */ |
879 | ||
880 | U8* | |
35a4481c | 881 | Perl_bytes_to_utf8(pTHX_ const U8 *s, STRLEN *len) |
6940069f | 882 | { |
35a4481c | 883 | const U8 * const send = s + (*len); |
6940069f GS |
884 | U8 *d; |
885 | U8 *dst; | |
7918f24d NC |
886 | |
887 | PERL_ARGS_ASSERT_BYTES_TO_UTF8; | |
96a5add6 | 888 | PERL_UNUSED_CONTEXT; |
6940069f | 889 | |
212542aa | 890 | Newx(d, (*len) * 2 + 1, U8); |
6940069f GS |
891 | dst = d; |
892 | ||
893 | while (s < send) { | |
35a4481c | 894 | const UV uv = NATIVE_TO_ASCII(*s++); |
c4d5f83a | 895 | if (UNI_IS_INVARIANT(uv)) |
eb160463 | 896 | *d++ = (U8)UTF_TO_NATIVE(uv); |
6940069f | 897 | else { |
eb160463 GS |
898 | *d++ = (U8)UTF8_EIGHT_BIT_HI(uv); |
899 | *d++ = (U8)UTF8_EIGHT_BIT_LO(uv); | |
6940069f GS |
900 | } |
901 | } | |
902 | *d = '\0'; | |
6662521e | 903 | *len = d-dst; |
6940069f GS |
904 | return dst; |
905 | } | |
906 | ||
a0ed51b3 | 907 | /* |
dea0fc0b | 908 | * Convert native (big-endian) or reversed (little-endian) UTF-16 to UTF-8. |
a0ed51b3 LW |
909 | * |
910 | * Destination must be pre-extended to 3/2 source. Do not use in-place. | |
911 | * We optimize for native, for obvious reasons. */ | |
912 | ||
913 | U8* | |
dea0fc0b | 914 | Perl_utf16_to_utf8(pTHX_ U8* p, U8* d, I32 bytelen, I32 *newlen) |
a0ed51b3 | 915 | { |
dea0fc0b JH |
916 | U8* pend; |
917 | U8* dstart = d; | |
918 | ||
7918f24d NC |
919 | PERL_ARGS_ASSERT_UTF16_TO_UTF8; |
920 | ||
1de9afcd RGS |
921 | if (bytelen == 1 && p[0] == 0) { /* Be understanding. */ |
922 | d[0] = 0; | |
923 | *newlen = 1; | |
924 | return d; | |
925 | } | |
926 | ||
dea0fc0b | 927 | if (bytelen & 1) |
f5992bc4 | 928 | Perl_croak(aTHX_ "panic: utf16_to_utf8: odd bytelen %"UVuf, (UV)bytelen); |
dea0fc0b JH |
929 | |
930 | pend = p + bytelen; | |
931 | ||
a0ed51b3 | 932 | while (p < pend) { |
dea0fc0b JH |
933 | UV uv = (p[0] << 8) + p[1]; /* UTF-16BE */ |
934 | p += 2; | |
a0ed51b3 | 935 | if (uv < 0x80) { |
e294cc5d JH |
936 | #ifdef EBCDIC |
937 | *d++ = UNI_TO_NATIVE(uv); | |
938 | #else | |
eb160463 | 939 | *d++ = (U8)uv; |
e294cc5d | 940 | #endif |
a0ed51b3 LW |
941 | continue; |
942 | } | |
943 | if (uv < 0x800) { | |
eb160463 GS |
944 | *d++ = (U8)(( uv >> 6) | 0xc0); |
945 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
946 | continue; |
947 | } | |
948 | if (uv >= 0xd800 && uv < 0xdbff) { /* surrogates */ | |
30f84f9e TD |
949 | UV low = (p[0] << 8) + p[1]; |
950 | p += 2; | |
dea0fc0b JH |
951 | if (low < 0xdc00 || low >= 0xdfff) |
952 | Perl_croak(aTHX_ "Malformed UTF-16 surrogate"); | |
a0ed51b3 LW |
953 | uv = ((uv - 0xd800) << 10) + (low - 0xdc00) + 0x10000; |
954 | } | |
955 | if (uv < 0x10000) { | |
eb160463 GS |
956 | *d++ = (U8)(( uv >> 12) | 0xe0); |
957 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
958 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
959 | continue; |
960 | } | |
961 | else { | |
eb160463 GS |
962 | *d++ = (U8)(( uv >> 18) | 0xf0); |
963 | *d++ = (U8)(((uv >> 12) & 0x3f) | 0x80); | |
964 | *d++ = (U8)(((uv >> 6) & 0x3f) | 0x80); | |
965 | *d++ = (U8)(( uv & 0x3f) | 0x80); | |
a0ed51b3 LW |
966 | continue; |
967 | } | |
968 | } | |
dea0fc0b | 969 | *newlen = d - dstart; |
a0ed51b3 LW |
970 | return d; |
971 | } | |
972 | ||
973 | /* Note: this one is slightly destructive of the source. */ | |
974 | ||
975 | U8* | |
dea0fc0b | 976 | Perl_utf16_to_utf8_reversed(pTHX_ U8* p, U8* d, I32 bytelen, I32 *newlen) |
a0ed51b3 LW |
977 | { |
978 | U8* s = (U8*)p; | |
d4c19fe8 | 979 | U8* const send = s + bytelen; |
7918f24d NC |
980 | |
981 | PERL_ARGS_ASSERT_UTF16_TO_UTF8_REVERSED; | |
982 | ||
a0ed51b3 | 983 | while (s < send) { |
d4c19fe8 | 984 | const U8 tmp = s[0]; |
a0ed51b3 LW |
985 | s[0] = s[1]; |
986 | s[1] = tmp; | |
987 | s += 2; | |
988 | } | |
dea0fc0b | 989 | return utf16_to_utf8(p, d, bytelen, newlen); |
a0ed51b3 LW |
990 | } |
991 | ||
992 | /* for now these are all defined (inefficiently) in terms of the utf8 versions */ | |
993 | ||
994 | bool | |
84afefe6 | 995 | Perl_is_uni_alnum(pTHX_ UV c) |
a0ed51b3 | 996 | { |
89ebb4a3 | 997 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 998 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
999 | return is_utf8_alnum(tmpbuf); |
1000 | } | |
1001 | ||
1002 | bool | |
84afefe6 | 1003 | Perl_is_uni_alnumc(pTHX_ UV c) |
b8c5462f | 1004 | { |
89ebb4a3 | 1005 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1006 | uvchr_to_utf8(tmpbuf, c); |
b8c5462f JH |
1007 | return is_utf8_alnumc(tmpbuf); |
1008 | } | |
1009 | ||
1010 | bool | |
84afefe6 | 1011 | Perl_is_uni_idfirst(pTHX_ UV c) |
a0ed51b3 | 1012 | { |
89ebb4a3 | 1013 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1014 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1015 | return is_utf8_idfirst(tmpbuf); |
1016 | } | |
1017 | ||
1018 | bool | |
84afefe6 | 1019 | Perl_is_uni_alpha(pTHX_ UV c) |
a0ed51b3 | 1020 | { |
89ebb4a3 | 1021 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1022 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1023 | return is_utf8_alpha(tmpbuf); |
1024 | } | |
1025 | ||
1026 | bool | |
84afefe6 | 1027 | Perl_is_uni_ascii(pTHX_ UV c) |
4d61ec05 | 1028 | { |
89ebb4a3 | 1029 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1030 | uvchr_to_utf8(tmpbuf, c); |
4d61ec05 GS |
1031 | return is_utf8_ascii(tmpbuf); |
1032 | } | |
1033 | ||
1034 | bool | |
84afefe6 | 1035 | Perl_is_uni_space(pTHX_ UV c) |
a0ed51b3 | 1036 | { |
89ebb4a3 | 1037 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1038 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1039 | return is_utf8_space(tmpbuf); |
1040 | } | |
1041 | ||
1042 | bool | |
84afefe6 | 1043 | Perl_is_uni_digit(pTHX_ UV c) |
a0ed51b3 | 1044 | { |
89ebb4a3 | 1045 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1046 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1047 | return is_utf8_digit(tmpbuf); |
1048 | } | |
1049 | ||
1050 | bool | |
84afefe6 | 1051 | Perl_is_uni_upper(pTHX_ UV c) |
a0ed51b3 | 1052 | { |
89ebb4a3 | 1053 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1054 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1055 | return is_utf8_upper(tmpbuf); |
1056 | } | |
1057 | ||
1058 | bool | |
84afefe6 | 1059 | Perl_is_uni_lower(pTHX_ UV c) |
a0ed51b3 | 1060 | { |
89ebb4a3 | 1061 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1062 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1063 | return is_utf8_lower(tmpbuf); |
1064 | } | |
1065 | ||
1066 | bool | |
84afefe6 | 1067 | Perl_is_uni_cntrl(pTHX_ UV c) |
b8c5462f | 1068 | { |
89ebb4a3 | 1069 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1070 | uvchr_to_utf8(tmpbuf, c); |
b8c5462f JH |
1071 | return is_utf8_cntrl(tmpbuf); |
1072 | } | |
1073 | ||
1074 | bool | |
84afefe6 | 1075 | Perl_is_uni_graph(pTHX_ UV c) |
b8c5462f | 1076 | { |
89ebb4a3 | 1077 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1078 | uvchr_to_utf8(tmpbuf, c); |
b8c5462f JH |
1079 | return is_utf8_graph(tmpbuf); |
1080 | } | |
1081 | ||
1082 | bool | |
84afefe6 | 1083 | Perl_is_uni_print(pTHX_ UV c) |
a0ed51b3 | 1084 | { |
89ebb4a3 | 1085 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1086 | uvchr_to_utf8(tmpbuf, c); |
a0ed51b3 LW |
1087 | return is_utf8_print(tmpbuf); |
1088 | } | |
1089 | ||
b8c5462f | 1090 | bool |
84afefe6 | 1091 | Perl_is_uni_punct(pTHX_ UV c) |
b8c5462f | 1092 | { |
89ebb4a3 | 1093 | U8 tmpbuf[UTF8_MAXBYTES+1]; |
230880c1 | 1094 | uvchr_to_utf8(tmpbuf, c); |
b8c5462f JH |
1095 | return is_utf8_punct(tmpbuf); |
1096 | } | |
1097 | ||
4d61ec05 | 1098 | bool |
84afefe6 | 1099 | Perl_is_uni_xdigit(pTHX_ UV c) |
4d61ec05 | 1100 | { |
89ebb4a3 | 1101 | U8 tmpbuf[UTF8_MAXBYTES_CASE+1]; |
230880c1 | 1102 | uvchr_to_utf8(tmpbuf, c); |
4d61ec05 GS |
1103 | return is_utf8_xdigit(tmpbuf); |
1104 | } | |
1105 | ||
84afefe6 JH |
1106 | UV |
1107 | Perl_to_uni_upper(pTHX_ UV c, U8* p, STRLEN *lenp) | |
a0ed51b3 | 1108 | { |
7918f24d NC |
1109 | PERL_ARGS_ASSERT_TO_UNI_UPPER; |
1110 | ||
0ebc6274 JH |
1111 | uvchr_to_utf8(p, c); |
1112 | return to_utf8_upper(p, p, lenp); | |
a0ed51b3 LW |
1113 | } |
1114 | ||
84afefe6 JH |
1115 | UV |
1116 | Perl_to_uni_title(pTHX_ UV c, U8* p, STRLEN *lenp) | |
a0ed51b3 | 1117 | { |
7918f24d NC |
1118 | PERL_ARGS_ASSERT_TO_UNI_TITLE; |
1119 | ||
0ebc6274 JH |
1120 | uvchr_to_utf8(p, c); |
1121 | return to_utf8_title(p, p, lenp); | |
a0ed51b3 LW |
1122 | } |
1123 | ||
84afefe6 JH |
1124 | UV |
1125 | Perl_to_uni_lower(pTHX_ UV c, U8* p, STRLEN *lenp) | |
a0ed51b3 | 1126 | { |
7918f24d NC |
1127 | PERL_ARGS_ASSERT_TO_UNI_LOWER; |
1128 | ||
0ebc6274 JH |
1129 | uvchr_to_utf8(p, c); |
1130 | return to_utf8_lower(p, p, lenp); | |
a0ed51b3 LW |
1131 | } |
1132 | ||
84afefe6 JH |
1133 | UV |
1134 | Perl_to_uni_fold(pTHX_ UV c, U8* p, STRLEN *lenp) | |
1135 | { | |
7918f24d NC |
1136 | PERL_ARGS_ASSERT_TO_UNI_FOLD; |
1137 | ||
0ebc6274 JH |
1138 | uvchr_to_utf8(p, c); |
1139 | return to_utf8_fold(p, p, lenp); | |
84afefe6 JH |
1140 | } |
1141 | ||
a0ed51b3 LW |
1142 | /* for now these all assume no locale info available for Unicode > 255 */ |
1143 | ||
1144 | bool | |
84afefe6 | 1145 | Perl_is_uni_alnum_lc(pTHX_ UV c) |
a0ed51b3 LW |
1146 | { |
1147 | return is_uni_alnum(c); /* XXX no locale support yet */ | |
1148 | } | |
1149 | ||
1150 | bool | |
84afefe6 | 1151 | Perl_is_uni_alnumc_lc(pTHX_ UV c) |
b8c5462f JH |
1152 | { |
1153 | return is_uni_alnumc(c); /* XXX no locale support yet */ | |
1154 | } | |
1155 | ||
1156 | bool | |
84afefe6 | 1157 | Perl_is_uni_idfirst_lc(pTHX_ UV c) |
a0ed51b3 LW |
1158 | { |
1159 | return is_uni_idfirst(c); /* XXX no locale support yet */ | |
1160 | } | |
1161 | ||
1162 | bool | |
84afefe6 | 1163 | Perl_is_uni_alpha_lc(pTHX_ UV c) |
a0ed51b3 LW |
1164 | { |
1165 | return is_uni_alpha(c); /* XXX no locale support yet */ | |
1166 | } | |
1167 | ||
1168 | bool | |
84afefe6 | 1169 | Perl_is_uni_ascii_lc(pTHX_ UV c) |
4d61ec05 GS |
1170 | { |
1171 | return is_uni_ascii(c); /* XXX no locale support yet */ | |
1172 | } | |
1173 | ||
1174 | bool | |
84afefe6 | 1175 | Perl_is_uni_space_lc(pTHX_ UV c) |
a0ed51b3 LW |
1176 | { |
1177 | return is_uni_space(c); /* XXX no locale support yet */ | |
1178 | } | |
1179 | ||
1180 | bool | |
84afefe6 | 1181 | Perl_is_uni_digit_lc(pTHX_ UV c) |
a0ed51b3 LW |
1182 | { |
1183 | return is_uni_digit(c); /* XXX no locale support yet */ | |
1184 | } | |
1185 | ||
1186 | bool | |
84afefe6 | 1187 | Perl_is_uni_upper_lc(pTHX_ UV c) |
a0ed51b3 LW |
1188 | { |
1189 | return is_uni_upper(c); /* XXX no locale support yet */ | |
1190 | } | |
1191 | ||
1192 | bool | |
84afefe6 | 1193 | Perl_is_uni_lower_lc(pTHX_ UV c) |
a0ed51b3 LW |
1194 | { |
1195 | return is_uni_lower(c); /* XXX no locale support yet */ | |
1196 | } | |
1197 | ||
1198 | bool | |
84afefe6 | 1199 | Perl_is_uni_cntrl_lc(pTHX_ UV c) |
b8c5462f JH |
1200 | { |
1201 | return is_uni_cntrl(c); /* XXX no locale support yet */ | |
1202 | } | |
1203 | ||
1204 | bool | |
84afefe6 | 1205 | Perl_is_uni_graph_lc(pTHX_ UV c) |
b8c5462f JH |
1206 | { |
1207 | return is_uni_graph(c); /* XXX no locale support yet */ | |
1208 | } | |
1209 | ||
1210 | bool | |
84afefe6 | 1211 | Perl_is_uni_print_lc(pTHX_ UV c) |
a0ed51b3 LW |
1212 | { |
1213 | return is_uni_print(c); /* XXX no locale support yet */ | |
1214 | } | |
1215 | ||
b8c5462f | 1216 | bool |
84afefe6 | 1217 | Perl_is_uni_punct_lc(pTHX_ UV c) |
b8c5462f JH |
1218 | { |
1219 | return is_uni_punct(c); /* XXX no locale support yet */ | |
1220 | } | |
1221 | ||
4d61ec05 | 1222 | bool |
84afefe6 | 1223 | Perl_is_uni_xdigit_lc(pTHX_ UV c) |
4d61ec05 GS |
1224 | { |
1225 | return is_uni_xdigit(c); /* XXX no locale support yet */ | |
1226 | } | |
1227 | ||
b7ac61fa JH |
1228 | U32 |
1229 | Perl_to_uni_upper_lc(pTHX_ U32 c) | |
1230 | { | |
ee099d14 JH |
1231 | /* XXX returns only the first character -- do not use XXX */ |
1232 | /* XXX no locale support yet */ | |
1233 | STRLEN len; | |
89ebb4a3 | 1234 | U8 tmpbuf[UTF8_MAXBYTES_CASE+1]; |
ee099d14 | 1235 | return (U32)to_uni_upper(c, tmpbuf, &len); |
b7ac61fa JH |
1236 | } |
1237 | ||
1238 | U32 | |
1239 | Perl_to_uni_title_lc(pTHX_ U32 c) | |
1240 | { | |
ee099d14 JH |
1241 | /* XXX returns only the first character XXX -- do not use XXX */ |
1242 | /* XXX no locale support yet */ | |
1243 | STRLEN len; | |
89ebb4a3 | 1244 | U8 tmpbuf[UTF8_MAXBYTES_CASE+1]; |
ee099d14 | 1245 | return (U32)to_uni_title(c, tmpbuf, &len); |
b7ac61fa JH |
1246 | } |
1247 | ||
1248 | U32 | |
1249 | Perl_to_uni_lower_lc(pTHX_ U32 c) | |
1250 | { | |
ee099d14 JH |
1251 | /* XXX returns only the first character -- do not use XXX */ |
1252 | /* XXX no locale support yet */ | |
1253 | STRLEN len; | |
89ebb4a3 | 1254 | U8 tmpbuf[UTF8_MAXBYTES_CASE+1]; |
ee099d14 | 1255 | return (U32)to_uni_lower(c, tmpbuf, &len); |
b7ac61fa JH |
1256 | } |
1257 | ||
7452cf6a | 1258 | static bool |
5141f98e | 1259 | S_is_utf8_common(pTHX_ const U8 *const p, SV **swash, |
bde6a22d NC |
1260 | const char *const swashname) |
1261 | { | |
97aff369 | 1262 | dVAR; |
7918f24d NC |
1263 | |
1264 | PERL_ARGS_ASSERT_IS_UTF8_COMMON; | |
1265 | ||
bde6a22d NC |
1266 | if (!is_utf8_char(p)) |
1267 | return FALSE; | |
1268 | if (!*swash) | |
711a919c | 1269 | *swash = swash_init("utf8", swashname, &PL_sv_undef, 1, 0); |
bde6a22d NC |
1270 | return swash_fetch(*swash, p, TRUE) != 0; |
1271 | } | |
1272 | ||
1273 | bool | |
7fc63493 | 1274 | Perl_is_utf8_alnum(pTHX_ const U8 *p) |
a0ed51b3 | 1275 | { |
97aff369 | 1276 | dVAR; |
7918f24d NC |
1277 | |
1278 | PERL_ARGS_ASSERT_IS_UTF8_ALNUM; | |
1279 | ||
671c33bf NC |
1280 | /* NOTE: "IsWord", not "IsAlnum", since Alnum is a true |
1281 | * descendant of isalnum(3), in other words, it doesn't | |
1282 | * contain the '_'. --jhi */ | |
d4c19fe8 | 1283 | return is_utf8_common(p, &PL_utf8_alnum, "IsWord"); |
a0ed51b3 LW |
1284 | } |
1285 | ||
1286 | bool | |
7fc63493 | 1287 | Perl_is_utf8_alnumc(pTHX_ const U8 *p) |
b8c5462f | 1288 | { |
97aff369 | 1289 | dVAR; |
7918f24d NC |
1290 | |
1291 | PERL_ARGS_ASSERT_IS_UTF8_ALNUMC; | |
1292 | ||
d4c19fe8 | 1293 | return is_utf8_common(p, &PL_utf8_alnumc, "IsAlnumC"); |
b8c5462f JH |
1294 | } |
1295 | ||
1296 | bool | |
7fc63493 | 1297 | Perl_is_utf8_idfirst(pTHX_ const U8 *p) /* The naming is historical. */ |
a0ed51b3 | 1298 | { |
97aff369 | 1299 | dVAR; |
7918f24d NC |
1300 | |
1301 | PERL_ARGS_ASSERT_IS_UTF8_IDFIRST; | |
1302 | ||
82686b01 JH |
1303 | if (*p == '_') |
1304 | return TRUE; | |
bde6a22d | 1305 | /* is_utf8_idstart would be more logical. */ |
d4c19fe8 | 1306 | return is_utf8_common(p, &PL_utf8_idstart, "IdStart"); |
82686b01 JH |
1307 | } |
1308 | ||
1309 | bool | |
7fc63493 | 1310 | Perl_is_utf8_idcont(pTHX_ const U8 *p) |
82686b01 | 1311 | { |
97aff369 | 1312 | dVAR; |
7918f24d NC |
1313 | |
1314 | PERL_ARGS_ASSERT_IS_UTF8_IDCONT; | |
1315 | ||
82686b01 JH |
1316 | if (*p == '_') |
1317 | return TRUE; | |
d4c19fe8 | 1318 | return is_utf8_common(p, &PL_utf8_idcont, "IdContinue"); |
a0ed51b3 LW |
1319 | } |
1320 | ||
1321 | bool | |
7fc63493 | 1322 | Perl_is_utf8_alpha(pTHX_ const U8 *p) |
a0ed51b3 | 1323 | { |
97aff369 | 1324 | dVAR; |
7918f24d NC |
1325 | |
1326 | PERL_ARGS_ASSERT_IS_UTF8_ALPHA; | |
1327 | ||
d4c19fe8 | 1328 | return is_utf8_common(p, &PL_utf8_alpha, "IsAlpha"); |
a0ed51b3 LW |
1329 | } |
1330 | ||
1331 | bool | |
7fc63493 | 1332 | Perl_is_utf8_ascii(pTHX_ const U8 *p) |
b8c5462f | 1333 | { |
97aff369 | 1334 | dVAR; |
7918f24d NC |
1335 | |
1336 | PERL_ARGS_ASSERT_IS_UTF8_ASCII; | |
1337 | ||
d4c19fe8 | 1338 | return is_utf8_common(p, &PL_utf8_ascii, "IsAscii"); |
b8c5462f JH |
1339 | } |
1340 | ||
1341 | bool | |
7fc63493 | 1342 | Perl_is_utf8_space(pTHX_ const U8 *p) |
a0ed51b3 | 1343 | { |
97aff369 | 1344 | dVAR; |
7918f24d NC |
1345 | |
1346 | PERL_ARGS_ASSERT_IS_UTF8_SPACE; | |
1347 | ||
d4c19fe8 | 1348 | return is_utf8_common(p, &PL_utf8_space, "IsSpacePerl"); |
a0ed51b3 LW |
1349 | } |
1350 | ||
1351 | bool | |
7fc63493 | 1352 | Perl_is_utf8_digit(pTHX_ const U8 *p) |
a0ed51b3 | 1353 | { |
97aff369 | 1354 | dVAR; |
7918f24d NC |
1355 | |
1356 | PERL_ARGS_ASSERT_IS_UTF8_DIGIT; | |
1357 | ||
d4c19fe8 | 1358 | return is_utf8_common(p, &PL_utf8_digit, "IsDigit"); |
a0ed51b3 LW |
1359 | } |
1360 | ||
1361 | bool | |
7fc63493 | 1362 | Perl_is_utf8_upper(pTHX_ const U8 *p) |
a0ed51b3 | 1363 | { |
97aff369 | 1364 | dVAR; |
7918f24d NC |
1365 | |
1366 | PERL_ARGS_ASSERT_IS_UTF8_UPPER; | |
1367 | ||
d4c19fe8 | 1368 | return is_utf8_common(p, &PL_utf8_upper, "IsUppercase"); |
a0ed51b3 LW |
1369 | } |
1370 | ||
1371 | bool | |
7fc63493 | 1372 | Perl_is_utf8_lower(pTHX_ const U8 *p) |
a0ed51b3 | 1373 | { |
97aff369 | 1374 | dVAR; |
7918f24d NC |
1375 | |
1376 | PERL_ARGS_ASSERT_IS_UTF8_LOWER; | |
1377 | ||
d4c19fe8 | 1378 | return is_utf8_common(p, &PL_utf8_lower, "IsLowercase"); |
a0ed51b3 LW |
1379 | } |
1380 | ||
1381 | bool | |
7fc63493 | 1382 | Perl_is_utf8_cntrl(pTHX_ const U8 *p) |
b8c5462f | 1383 | { |
97aff369 | 1384 | dVAR; |
7918f24d NC |
1385 | |
1386 | PERL_ARGS_ASSERT_IS_UTF8_CNTRL; | |
1387 | ||
d4c19fe8 | 1388 | return is_utf8_common(p, &PL_utf8_cntrl, "IsCntrl"); |
b8c5462f JH |
1389 | } |
1390 | ||
1391 | bool | |
7fc63493 | 1392 | Perl_is_utf8_graph(pTHX_ const U8 *p) |
b8c5462f | 1393 | { |
97aff369 | 1394 | dVAR; |
7918f24d NC |
1395 | |
1396 | PERL_ARGS_ASSERT_IS_UTF8_GRAPH; | |
1397 | ||
d4c19fe8 | 1398 | return is_utf8_common(p, &PL_utf8_graph, "IsGraph"); |
b8c5462f JH |
1399 | } |
1400 | ||
1401 | bool | |
7fc63493 | 1402 | Perl_is_utf8_print(pTHX_ const U8 *p) |
a0ed51b3 | 1403 | { |
97aff369 | 1404 | dVAR; |
7918f24d NC |
1405 | |
1406 | PERL_ARGS_ASSERT_IS_UTF8_PRINT; | |
1407 | ||
d4c19fe8 | 1408 | return is_utf8_common(p, &PL_utf8_print, "IsPrint"); |
a0ed51b3 LW |
1409 | } |
1410 | ||
1411 | bool | |
7fc63493 | 1412 | Perl_is_utf8_punct(pTHX_ const U8 *p) |
b8c5462f | 1413 | { |
97aff369 | 1414 | dVAR; |
7918f24d NC |
1415 | |
1416 | PERL_ARGS_ASSERT_IS_UTF8_PUNCT; | |
1417 | ||
d4c19fe8 | 1418 | return is_utf8_common(p, &PL_utf8_punct, "IsPunct"); |
b8c5462f JH |
1419 | } |
1420 | ||
1421 | bool | |
7fc63493 | 1422 | Perl_is_utf8_xdigit(pTHX_ const U8 *p) |
b8c5462f | 1423 | { |
97aff369 | 1424 | dVAR; |
7918f24d NC |
1425 | |
1426 | PERL_ARGS_ASSERT_IS_UTF8_XDIGIT; | |
1427 | ||
d4c19fe8 | 1428 | return is_utf8_common(p, &PL_utf8_xdigit, "Isxdigit"); |
b8c5462f JH |
1429 | } |
1430 | ||
1431 | bool | |
7fc63493 | 1432 | Perl_is_utf8_mark(pTHX_ const U8 *p) |
a0ed51b3 | 1433 | { |
97aff369 | 1434 | dVAR; |
7918f24d NC |
1435 | |
1436 | PERL_ARGS_ASSERT_IS_UTF8_MARK; | |
1437 | ||
d4c19fe8 | 1438 | return is_utf8_common(p, &PL_utf8_mark, "IsM"); |
a0ed51b3 LW |
1439 | } |
1440 | ||
6b5c0936 | 1441 | /* |
87cea99e | 1442 | =for apidoc to_utf8_case |
6b5c0936 JH |
1443 | |
1444 | The "p" contains the pointer to the UTF-8 string encoding | |
1445 | the character that is being converted. | |
1446 | ||
1447 | The "ustrp" is a pointer to the character buffer to put the | |
1448 | conversion result to. The "lenp" is a pointer to the length | |
1449 | of the result. | |
1450 | ||
0134edef | 1451 | The "swashp" is a pointer to the swash to use. |
6b5c0936 | 1452 | |
0134edef | 1453 | Both the special and normal mappings are stored lib/unicore/To/Foo.pl, |
8fe4d5b2 | 1454 | and loaded by SWASHNEW, using lib/utf8_heavy.pl. The special (usually, |
0134edef | 1455 | but not always, a multicharacter mapping), is tried first. |
6b5c0936 | 1456 | |
0134edef JH |
1457 | The "special" is a string like "utf8::ToSpecLower", which means the |
1458 | hash %utf8::ToSpecLower. The access to the hash is through | |
1459 | Perl_to_utf8_case(). | |
6b5c0936 | 1460 | |
0134edef JH |
1461 | The "normal" is a string like "ToLower" which means the swash |
1462 | %utf8::ToLower. | |
1463 | ||
1464 | =cut */ | |
6b5c0936 | 1465 | |
2104c8d9 | 1466 | UV |
9a957fbc AL |
1467 | Perl_to_utf8_case(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp, |
1468 | SV **swashp, const char *normal, const char *special) | |
a0ed51b3 | 1469 | { |
97aff369 | 1470 | dVAR; |
89ebb4a3 | 1471 | U8 tmpbuf[UTF8_MAXBYTES_CASE+1]; |
0134edef | 1472 | STRLEN len = 0; |
aec46f14 | 1473 | const UV uv0 = utf8_to_uvchr(p, NULL); |
1feea2c7 JH |
1474 | /* The NATIVE_TO_UNI() and UNI_TO_NATIVE() mappings |
1475 | * are necessary in EBCDIC, they are redundant no-ops | |
1476 | * in ASCII-ish platforms, and hopefully optimized away. */ | |
f54cb97a | 1477 | const UV uv1 = NATIVE_TO_UNI(uv0); |
7918f24d NC |
1478 | |
1479 | PERL_ARGS_ASSERT_TO_UTF8_CASE; | |
1480 | ||
1feea2c7 | 1481 | uvuni_to_utf8(tmpbuf, uv1); |
0134edef JH |
1482 | |
1483 | if (!*swashp) /* load on-demand */ | |
1484 | *swashp = swash_init("utf8", normal, &PL_sv_undef, 4, 0); | |
1485 | ||
b08cf34e JH |
1486 | /* The 0xDF is the only special casing Unicode code point below 0x100. */ |
1487 | if (special && (uv1 == 0xDF || uv1 > 0xFF)) { | |
0134edef | 1488 | /* It might be "special" (sometimes, but not always, |
2a37f04d | 1489 | * a multicharacter mapping) */ |
35da51f7 | 1490 | HV * const hv = get_hv(special, FALSE); |
b08cf34e JH |
1491 | SV **svp; |
1492 | ||
35da51f7 | 1493 | if (hv && |
b08cf34e JH |
1494 | (svp = hv_fetch(hv, (const char*)tmpbuf, UNISKIP(uv1), FALSE)) && |
1495 | (*svp)) { | |
cfd0369c | 1496 | const char *s; |
47654450 | 1497 | |
cfd0369c | 1498 | s = SvPV_const(*svp, len); |
47654450 JH |
1499 | if (len == 1) |
1500 | len = uvuni_to_utf8(ustrp, NATIVE_TO_UNI(*(U8*)s)) - ustrp; | |
2a37f04d | 1501 | else { |
2f9475ad JH |
1502 | #ifdef EBCDIC |
1503 | /* If we have EBCDIC we need to remap the characters | |
1504 | * since any characters in the low 256 are Unicode | |
1505 | * code points, not EBCDIC. */ | |
7cda7a3d | 1506 | U8 *t = (U8*)s, *tend = t + len, *d; |
2f9475ad JH |
1507 | |
1508 | d = tmpbuf; | |
b08cf34e | 1509 | if (SvUTF8(*svp)) { |
2f9475ad JH |
1510 | STRLEN tlen = 0; |
1511 | ||
1512 | while (t < tend) { | |
d4c19fe8 | 1513 | const UV c = utf8_to_uvchr(t, &tlen); |
2f9475ad JH |
1514 | if (tlen > 0) { |
1515 | d = uvchr_to_utf8(d, UNI_TO_NATIVE(c)); | |
1516 | t += tlen; | |
1517 | } | |
1518 | else | |
1519 | break; | |
1520 | } | |
1521 | } | |
1522 | else { | |
36fec512 JH |
1523 | while (t < tend) { |
1524 | d = uvchr_to_utf8(d, UNI_TO_NATIVE(*t)); | |
1525 | t++; | |
1526 | } | |
2f9475ad JH |
1527 | } |
1528 | len = d - tmpbuf; | |
1529 | Copy(tmpbuf, ustrp, len, U8); | |
1530 | #else | |
d2dcd0fb | 1531 | Copy(s, ustrp, len, U8); |
2f9475ad | 1532 | #endif |
29e98929 | 1533 | } |
983ffd37 | 1534 | } |
0134edef JH |
1535 | } |
1536 | ||
1537 | if (!len && *swashp) { | |
d4c19fe8 AL |
1538 | const UV uv2 = swash_fetch(*swashp, tmpbuf, TRUE); |
1539 | ||
0134edef JH |
1540 | if (uv2) { |
1541 | /* It was "normal" (a single character mapping). */ | |
d4c19fe8 | 1542 | const UV uv3 = UNI_TO_NATIVE(uv2); |
e9101d72 | 1543 | len = uvchr_to_utf8(ustrp, uv3) - ustrp; |
2a37f04d JH |
1544 | } |
1545 | } | |
1feea2c7 | 1546 | |
0134edef JH |
1547 | if (!len) /* Neither: just copy. */ |
1548 | len = uvchr_to_utf8(ustrp, uv0) - ustrp; | |
1549 | ||
2a37f04d JH |
1550 | if (lenp) |
1551 | *lenp = len; | |
1552 | ||
0134edef | 1553 | return len ? utf8_to_uvchr(ustrp, 0) : 0; |
a0ed51b3 LW |
1554 | } |
1555 | ||
d3e79532 | 1556 | /* |
87cea99e | 1557 | =for apidoc to_utf8_upper |
d3e79532 JH |
1558 | |
1559 | Convert the UTF-8 encoded character at p to its uppercase version and | |
1560 | store that in UTF-8 in ustrp and its length in bytes in lenp. Note | |
89ebb4a3 JH |
1561 | that the ustrp needs to be at least UTF8_MAXBYTES_CASE+1 bytes since |
1562 | the uppercase version may be longer than the original character. | |
d3e79532 JH |
1563 | |
1564 | The first character of the uppercased version is returned | |
1565 | (but note, as explained above, that there may be more.) | |
1566 | ||
1567 | =cut */ | |
1568 | ||
2104c8d9 | 1569 | UV |
7fc63493 | 1570 | Perl_to_utf8_upper(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp) |
a0ed51b3 | 1571 | { |
97aff369 | 1572 | dVAR; |
7918f24d NC |
1573 | |
1574 | PERL_ARGS_ASSERT_TO_UTF8_UPPER; | |
1575 | ||
983ffd37 | 1576 | return Perl_to_utf8_case(aTHX_ p, ustrp, lenp, |
b4e400f9 | 1577 | &PL_utf8_toupper, "ToUpper", "utf8::ToSpecUpper"); |
983ffd37 | 1578 | } |
a0ed51b3 | 1579 | |
d3e79532 | 1580 | /* |
87cea99e | 1581 | =for apidoc to_utf8_title |
d3e79532 JH |
1582 | |
1583 | Convert the UTF-8 encoded character at p to its titlecase version and | |
1584 | store that in UTF-8 in ustrp and its length in bytes in lenp. Note | |
89ebb4a3 JH |
1585 | that the ustrp needs to be at least UTF8_MAXBYTES_CASE+1 bytes since the |
1586 | titlecase version may be longer than the original character. | |
d3e79532 JH |
1587 | |
1588 | The first character of the titlecased version is returned | |
1589 | (but note, as explained above, that there may be more.) | |
1590 | ||
1591 | =cut */ | |
1592 | ||
983ffd37 | 1593 | UV |
7fc63493 | 1594 | Perl_to_utf8_title(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp) |
983ffd37 | 1595 | { |
97aff369 | 1596 | dVAR; |
7918f24d NC |
1597 | |
1598 | PERL_ARGS_ASSERT_TO_UTF8_TITLE; | |
1599 | ||
983ffd37 | 1600 | return Perl_to_utf8_case(aTHX_ p, ustrp, lenp, |
b4e400f9 | 1601 | &PL_utf8_totitle, "ToTitle", "utf8::ToSpecTitle"); |
a0ed51b3 LW |
1602 | } |
1603 | ||
d3e79532 | 1604 | /* |
87cea99e | 1605 | =for apidoc to_utf8_lower |
d3e79532 JH |
1606 | |
1607 | Convert the UTF-8 encoded character at p to its lowercase version and | |
1608 | store that in UTF-8 in ustrp and its length in bytes in lenp. Note | |
89ebb4a3 JH |
1609 | that the ustrp needs to be at least UTF8_MAXBYTES_CASE+1 bytes since the |
1610 | lowercase version may be longer than the original character. | |
d3e79532 JH |
1611 | |
1612 | The first character of the lowercased version is returned | |
1613 | (but note, as explained above, that there may be more.) | |
1614 | ||
1615 | =cut */ | |
1616 | ||
2104c8d9 | 1617 | UV |
7fc63493 | 1618 | Perl_to_utf8_lower(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp) |
a0ed51b3 | 1619 | { |
97aff369 | 1620 | dVAR; |
7918f24d NC |
1621 | |
1622 | PERL_ARGS_ASSERT_TO_UTF8_LOWER; | |
1623 | ||
983ffd37 | 1624 | return Perl_to_utf8_case(aTHX_ p, ustrp, lenp, |
b4e400f9 JH |
1625 | &PL_utf8_tolower, "ToLower", "utf8::ToSpecLower"); |
1626 | } | |
1627 | ||
d3e79532 | 1628 | /* |
87cea99e | 1629 | =for apidoc to_utf8_fold |
d3e79532 JH |
1630 | |
1631 | Convert the UTF-8 encoded character at p to its foldcase version and | |
1632 | store that in UTF-8 in ustrp and its length in bytes in lenp. Note | |
89ebb4a3 | 1633 | that the ustrp needs to be at least UTF8_MAXBYTES_CASE+1 bytes since the |
d3e79532 JH |
1634 | foldcase version may be longer than the original character (up to |
1635 | three characters). | |
1636 | ||
1637 | The first character of the foldcased version is returned | |
1638 | (but note, as explained above, that there may be more.) | |
1639 | ||
1640 | =cut */ | |
1641 | ||
b4e400f9 | 1642 | UV |
7fc63493 | 1643 | Perl_to_utf8_fold(pTHX_ const U8 *p, U8* ustrp, STRLEN *lenp) |
b4e400f9 | 1644 | { |
97aff369 | 1645 | dVAR; |
7918f24d NC |
1646 | |
1647 | PERL_ARGS_ASSERT_TO_UTF8_FOLD; | |
1648 | ||
b4e400f9 JH |
1649 | return Perl_to_utf8_case(aTHX_ p, ustrp, lenp, |
1650 | &PL_utf8_tofold, "ToFold", "utf8::ToSpecFold"); | |
a0ed51b3 LW |
1651 | } |
1652 | ||
711a919c TS |
1653 | /* Note: |
1654 | * A "swash" is a swatch hash. | |
1655 | * A "swatch" is a bit vector generated by utf8.c:S_swash_get(). | |
1656 | * C<pkg> is a pointer to a package name for SWASHNEW, should be "utf8". | |
1657 | * For other parameters, see utf8::SWASHNEW in lib/utf8_heavy.pl. | |
1658 | */ | |
a0ed51b3 | 1659 | SV* |
7fc63493 | 1660 | Perl_swash_init(pTHX_ const char* pkg, const char* name, SV *listsv, I32 minbits, I32 none) |
a0ed51b3 | 1661 | { |
27da23d5 | 1662 | dVAR; |
a0ed51b3 | 1663 | SV* retval; |
8e84507e | 1664 | dSP; |
7fc63493 AL |
1665 | const size_t pkg_len = strlen(pkg); |
1666 | const size_t name_len = strlen(name); | |
da51bb9b | 1667 | HV * const stash = gv_stashpvn(pkg, pkg_len, 0); |
f8be5cf0 | 1668 | SV* errsv_save; |
ce3b816e | 1669 | |
7918f24d NC |
1670 | PERL_ARGS_ASSERT_SWASH_INIT; |
1671 | ||
96ca9f55 DM |
1672 | PUSHSTACKi(PERLSI_MAGIC); |
1673 | ENTER; | |
1674 | SAVEI32(PL_hints); | |
1675 | PL_hints = 0; | |
1676 | save_re_context(); | |
1b026014 | 1677 | if (!gv_fetchmeth(stash, "SWASHNEW", 8, -1)) { /* demand load utf8 */ |
ce3b816e | 1678 | ENTER; |
f8be5cf0 | 1679 | errsv_save = newSVsv(ERRSV); |
dc0c6abb NC |
1680 | /* It is assumed that callers of this routine are not passing in any |
1681 | user derived data. */ | |
1682 | /* Need to do this after save_re_context() as it will set PL_tainted to | |
1683 | 1 while saving $1 etc (see the code after getrx: in Perl_magic_get). | |
1684 | Even line to create errsv_save can turn on PL_tainted. */ | |
1685 | SAVEBOOL(PL_tainted); | |
1686 | PL_tainted = 0; | |
71bed85a | 1687 | Perl_load_module(aTHX_ PERL_LOADMOD_NOIMPORT, newSVpvn(pkg,pkg_len), |
a0714e2c | 1688 | NULL); |
f8be5cf0 JH |
1689 | if (!SvTRUE(ERRSV)) |
1690 | sv_setsv(ERRSV, errsv_save); | |
1691 | SvREFCNT_dec(errsv_save); | |
ce3b816e GS |
1692 | LEAVE; |
1693 | } | |
1694 | SPAGAIN; | |
a0ed51b3 LW |
1695 | PUSHMARK(SP); |
1696 | EXTEND(SP,5); | |
6e449a3a MHM |
1697 | mPUSHp(pkg, pkg_len); |
1698 | mPUSHp(name, name_len); | |
a0ed51b3 | 1699 | PUSHs(listsv); |
6e449a3a MHM |
1700 | mPUSHi(minbits); |
1701 | mPUSHi(none); | |
a0ed51b3 | 1702 | PUTBACK; |
f8be5cf0 | 1703 | errsv_save = newSVsv(ERRSV); |
864dbfa3 | 1704 | if (call_method("SWASHNEW", G_SCALAR)) |
8e84507e | 1705 | retval = newSVsv(*PL_stack_sp--); |
a0ed51b3 | 1706 | else |
e24b16f9 | 1707 | retval = &PL_sv_undef; |
f8be5cf0 JH |
1708 | if (!SvTRUE(ERRSV)) |
1709 | sv_setsv(ERRSV, errsv_save); | |
1710 | SvREFCNT_dec(errsv_save); | |
a0ed51b3 LW |
1711 | LEAVE; |
1712 | POPSTACK; | |
923e4eb5 | 1713 | if (IN_PERL_COMPILETIME) { |
623e6609 | 1714 | CopHINTS_set(PL_curcop, PL_hints); |
a0ed51b3 | 1715 | } |
bc45ce41 JH |
1716 | if (!SvROK(retval) || SvTYPE(SvRV(retval)) != SVt_PVHV) { |
1717 | if (SvPOK(retval)) | |
35c1215d | 1718 | Perl_croak(aTHX_ "Can't find Unicode property definition \"%"SVf"\"", |
be2597df | 1719 | SVfARG(retval)); |
cea2e8a9 | 1720 | Perl_croak(aTHX_ "SWASHNEW didn't return an HV ref"); |
bc45ce41 | 1721 | } |
a0ed51b3 LW |
1722 | return retval; |
1723 | } | |
1724 | ||
035d37be JH |
1725 | |
1726 | /* This API is wrong for special case conversions since we may need to | |
1727 | * return several Unicode characters for a single Unicode character | |
1728 | * (see lib/unicore/SpecCase.txt) The SWASHGET in lib/utf8_heavy.pl is | |
1729 | * the lower-level routine, and it is similarly broken for returning | |
1730 | * multiple values. --jhi */ | |
979f2922 | 1731 | /* Now SWASHGET is recasted into S_swash_get in this file. */ |
680c470c TS |
1732 | |
1733 | /* Note: | |
1734 | * Returns the value of property/mapping C<swash> for the first character | |
1735 | * of the string C<ptr>. If C<do_utf8> is true, the string C<ptr> is | |
1736 | * assumed to be in utf8. If C<do_utf8> is false, the string C<ptr> is | |
1737 | * assumed to be in native 8-bit encoding. Caches the swatch in C<swash>. | |
1738 | */ | |
a0ed51b3 | 1739 | UV |
680c470c | 1740 | Perl_swash_fetch(pTHX_ SV *swash, const U8 *ptr, bool do_utf8) |
a0ed51b3 | 1741 | { |
27da23d5 | 1742 | dVAR; |
ef8f7699 | 1743 | HV *const hv = MUTABLE_HV(SvRV(swash)); |
3568d838 JH |
1744 | U32 klen; |
1745 | U32 off; | |
a0ed51b3 | 1746 | STRLEN slen; |
7d85a32c | 1747 | STRLEN needents; |
cfd0369c | 1748 | const U8 *tmps = NULL; |
a0ed51b3 | 1749 | U32 bit; |
979f2922 | 1750 | SV *swatch; |
3568d838 | 1751 | U8 tmputf8[2]; |
35da51f7 | 1752 | const UV c = NATIVE_TO_ASCII(*ptr); |
3568d838 | 1753 | |
7918f24d NC |
1754 | PERL_ARGS_ASSERT_SWASH_FETCH; |
1755 | ||
3568d838 | 1756 | if (!do_utf8 && !UNI_IS_INVARIANT(c)) { |
979f2922 TS |
1757 | tmputf8[0] = (U8)UTF8_EIGHT_BIT_HI(c); |
1758 | tmputf8[1] = (U8)UTF8_EIGHT_BIT_LO(c); | |
1759 | ptr = tmputf8; | |
3568d838 JH |
1760 | } |
1761 | /* Given a UTF-X encoded char 0xAA..0xYY,0xZZ | |
1762 | * then the "swatch" is a vec() for al the chars which start | |
1763 | * with 0xAA..0xYY | |
1764 | * So the key in the hash (klen) is length of encoded char -1 | |
1765 | */ | |
1766 | klen = UTF8SKIP(ptr) - 1; | |
1767 | off = ptr[klen]; | |
a0ed51b3 | 1768 | |
979f2922 | 1769 | if (klen == 0) { |
7d85a32c | 1770 | /* If char in invariant then swatch is for all the invariant chars |
1e54db1a | 1771 | * In both UTF-8 and UTF-8-MOD that happens to be UTF_CONTINUATION_MARK |
7d85a32c | 1772 | */ |
979f2922 TS |
1773 | needents = UTF_CONTINUATION_MARK; |
1774 | off = NATIVE_TO_UTF(ptr[klen]); | |
1775 | } | |
1776 | else { | |
7d85a32c | 1777 | /* If char is encoded then swatch is for the prefix */ |
979f2922 TS |
1778 | needents = (1 << UTF_ACCUMULATION_SHIFT); |
1779 | off = NATIVE_TO_UTF(ptr[klen]) & UTF_CONTINUATION_MASK; | |
1780 | } | |
7d85a32c | 1781 | |
a0ed51b3 LW |
1782 | /* |
1783 | * This single-entry cache saves about 1/3 of the utf8 overhead in test | |
1784 | * suite. (That is, only 7-8% overall over just a hash cache. Still, | |
1785 | * it's nothing to sniff at.) Pity we usually come through at least | |
1786 | * two function calls to get here... | |
1787 | * | |
1788 | * NB: this code assumes that swatches are never modified, once generated! | |
1789 | */ | |
1790 | ||
3568d838 | 1791 | if (hv == PL_last_swash_hv && |
a0ed51b3 | 1792 | klen == PL_last_swash_klen && |
27da23d5 | 1793 | (!klen || memEQ((char *)ptr, (char *)PL_last_swash_key, klen)) ) |
a0ed51b3 LW |
1794 | { |
1795 | tmps = PL_last_swash_tmps; | |
1796 | slen = PL_last_swash_slen; | |
1797 | } | |
1798 | else { | |
1799 | /* Try our second-level swatch cache, kept in a hash. */ | |
e1ec3a88 | 1800 | SV** svp = hv_fetch(hv, (const char*)ptr, klen, FALSE); |
a0ed51b3 | 1801 | |
979f2922 TS |
1802 | /* If not cached, generate it via swash_get */ |
1803 | if (!svp || !SvPOK(*svp) | |
1804 | || !(tmps = (const U8*)SvPV_const(*svp, slen))) { | |
2b9d42f0 NIS |
1805 | /* We use utf8n_to_uvuni() as we want an index into |
1806 | Unicode tables, not a native character number. | |
1807 | */ | |
aec46f14 | 1808 | const UV code_point = utf8n_to_uvuni(ptr, UTF8_MAXBYTES, 0, |
872c91ae JH |
1809 | ckWARN(WARN_UTF8) ? |
1810 | 0 : UTF8_ALLOW_ANY); | |
680c470c | 1811 | swatch = swash_get(swash, |
979f2922 TS |
1812 | /* On EBCDIC & ~(0xA0-1) isn't a useful thing to do */ |
1813 | (klen) ? (code_point & ~(needents - 1)) : 0, | |
1814 | needents); | |
1815 | ||
923e4eb5 | 1816 | if (IN_PERL_COMPILETIME) |
623e6609 | 1817 | CopHINTS_set(PL_curcop, PL_hints); |
a0ed51b3 | 1818 | |
979f2922 | 1819 | svp = hv_store(hv, (const char *)ptr, klen, swatch, 0); |
a0ed51b3 | 1820 | |
979f2922 TS |
1821 | if (!svp || !(tmps = (U8*)SvPV(*svp, slen)) |
1822 | || (slen << 3) < needents) | |
660a4616 | 1823 | Perl_croak(aTHX_ "panic: swash_fetch got improper swatch"); |
a0ed51b3 LW |
1824 | } |
1825 | ||
1826 | PL_last_swash_hv = hv; | |
16d8f38a | 1827 | assert(klen <= sizeof(PL_last_swash_key)); |
eac04b2e | 1828 | PL_last_swash_klen = (U8)klen; |
cfd0369c NC |
1829 | /* FIXME change interpvar.h? */ |
1830 | PL_last_swash_tmps = (U8 *) tmps; | |
a0ed51b3 LW |
1831 | PL_last_swash_slen = slen; |
1832 | if (klen) | |
1833 | Copy(ptr, PL_last_swash_key, klen, U8); | |
1834 | } | |
1835 | ||
9faf8d75 | 1836 | switch ((int)((slen << 3) / needents)) { |
a0ed51b3 LW |
1837 | case 1: |
1838 | bit = 1 << (off & 7); | |
1839 | off >>= 3; | |
1840 | return (tmps[off] & bit) != 0; | |
1841 | case 8: | |
1842 | return tmps[off]; | |
1843 | case 16: | |
1844 | off <<= 1; | |
1845 | return (tmps[off] << 8) + tmps[off + 1] ; | |
1846 | case 32: | |
1847 | off <<= 2; | |
1848 | return (tmps[off] << 24) + (tmps[off+1] << 16) + (tmps[off+2] << 8) + tmps[off + 3] ; | |
1849 | } | |
660a4616 | 1850 | Perl_croak(aTHX_ "panic: swash_fetch got swatch of unexpected bit width"); |
670f1322 | 1851 | NORETURN_FUNCTION_END; |
a0ed51b3 | 1852 | } |
2b9d42f0 | 1853 | |
979f2922 TS |
1854 | /* Note: |
1855 | * Returns a swatch (a bit vector string) for a code point sequence | |
1856 | * that starts from the value C<start> and comprises the number C<span>. | |
1857 | * A C<swash> must be an object created by SWASHNEW (see lib/utf8_heavy.pl). | |
1858 | * Should be used via swash_fetch, which will cache the swatch in C<swash>. | |
1859 | */ | |
1860 | STATIC SV* | |
1861 | S_swash_get(pTHX_ SV* swash, UV start, UV span) | |
1862 | { | |
1863 | SV *swatch; | |
711a919c | 1864 | U8 *l, *lend, *x, *xend, *s; |
979f2922 | 1865 | STRLEN lcur, xcur, scur; |
ef8f7699 | 1866 | HV *const hv = MUTABLE_HV(SvRV(swash)); |
017a3ce5 GA |
1867 | SV** const listsvp = hv_fetchs(hv, "LIST", FALSE); |
1868 | SV** const typesvp = hv_fetchs(hv, "TYPE", FALSE); | |
1869 | SV** const bitssvp = hv_fetchs(hv, "BITS", FALSE); | |
1870 | SV** const nonesvp = hv_fetchs(hv, "NONE", FALSE); | |
1871 | SV** const extssvp = hv_fetchs(hv, "EXTRAS", FALSE); | |
0bd48802 AL |
1872 | const U8* const typestr = (U8*)SvPV_nolen(*typesvp); |
1873 | const int typeto = typestr[0] == 'T' && typestr[1] == 'o'; | |
1874 | const STRLEN bits = SvUV(*bitssvp); | |
1875 | const STRLEN octets = bits >> 3; /* if bits == 1, then octets == 0 */ | |
1876 | const UV none = SvUV(*nonesvp); | |
1877 | const UV end = start + span; | |
979f2922 | 1878 | |
7918f24d NC |
1879 | PERL_ARGS_ASSERT_SWASH_GET; |
1880 | ||
979f2922 | 1881 | if (bits != 1 && bits != 8 && bits != 16 && bits != 32) { |
660a4616 TS |
1882 | Perl_croak(aTHX_ "panic: swash_get doesn't expect bits %"UVuf, |
1883 | (UV)bits); | |
979f2922 TS |
1884 | } |
1885 | ||
1886 | /* create and initialize $swatch */ | |
979f2922 | 1887 | scur = octets ? (span * octets) : (span + 7) / 8; |
e524fe40 NC |
1888 | swatch = newSV(scur); |
1889 | SvPOK_on(swatch); | |
979f2922 TS |
1890 | s = (U8*)SvPVX(swatch); |
1891 | if (octets && none) { | |
0bd48802 | 1892 | const U8* const e = s + scur; |
979f2922 TS |
1893 | while (s < e) { |
1894 | if (bits == 8) | |
1895 | *s++ = (U8)(none & 0xff); | |
1896 | else if (bits == 16) { | |
1897 | *s++ = (U8)((none >> 8) & 0xff); | |
1898 | *s++ = (U8)( none & 0xff); | |
1899 | } | |
1900 | else if (bits == 32) { | |
1901 | *s++ = (U8)((none >> 24) & 0xff); | |
1902 | *s++ = (U8)((none >> 16) & 0xff); | |
1903 | *s++ = (U8)((none >> 8) & 0xff); | |
1904 | *s++ = (U8)( none & 0xff); | |
1905 | } | |
1906 | } | |
1907 | *s = '\0'; | |
1908 | } | |
1909 | else { | |
1910 | (void)memzero((U8*)s, scur + 1); | |
1911 | } | |
1912 | SvCUR_set(swatch, scur); | |
1913 | s = (U8*)SvPVX(swatch); | |
1914 | ||
1915 | /* read $swash->{LIST} */ | |
1916 | l = (U8*)SvPV(*listsvp, lcur); | |
1917 | lend = l + lcur; | |
1918 | while (l < lend) { | |
35da51f7 | 1919 | UV min, max, val; |
979f2922 TS |
1920 | STRLEN numlen; |
1921 | I32 flags = PERL_SCAN_SILENT_ILLDIGIT | PERL_SCAN_DISALLOW_PREFIX; | |
1922 | ||
0bd48802 | 1923 | U8* const nl = (U8*)memchr(l, '\n', lend - l); |
979f2922 TS |
1924 | |
1925 | numlen = lend - l; | |
1926 | min = grok_hex((char *)l, &numlen, &flags, NULL); | |
1927 | if (numlen) | |
1928 | l += numlen; | |
1929 | else if (nl) { | |
1930 | l = nl + 1; /* 1 is length of "\n" */ | |
1931 | continue; | |
1932 | } | |
1933 | else { | |
1934 | l = lend; /* to LIST's end at which \n is not found */ | |
1935 | break; | |
1936 | } | |
1937 | ||
1938 | if (isBLANK(*l)) { | |
1939 | ++l; | |
1940 | flags = PERL_SCAN_SILENT_ILLDIGIT | PERL_SCAN_DISALLOW_PREFIX; | |
1941 | numlen = lend - l; | |
1942 | max = grok_hex((char *)l, &numlen, &flags, NULL); | |
1943 | if (numlen) | |
1944 | l += numlen; | |
1945 | else | |
1946 | max = min; | |
1947 | ||
1948 | if (octets) { | |
1949 | if (isBLANK(*l)) { | |
1950 | ++l; | |
1951 | flags = PERL_SCAN_SILENT_ILLDIGIT | | |
1952 | PERL_SCAN_DISALLOW_PREFIX; | |
1953 | numlen = lend - l; | |
1954 | val = grok_hex((char *)l, &numlen, &flags, NULL); | |
1955 | if (numlen) | |
1956 | l += numlen; | |
1957 | else | |
1958 | val = 0; | |
1959 | } | |
1960 | else { | |
1961 | val = 0; | |
1962 | if (typeto) { | |
1963 | Perl_croak(aTHX_ "%s: illegal mapping '%s'", | |
1964 | typestr, l); | |
1965 | } | |
1966 | } | |
1967 | } | |
711a919c TS |
1968 | else |
1969 | val = 0; /* bits == 1, then val should be ignored */ | |
979f2922 TS |
1970 | } |
1971 | else { | |
1972 | max = min; | |
1973 | if (octets) { | |
1974 | val = 0; | |
1975 | if (typeto) { | |
1976 | Perl_croak(aTHX_ "%s: illegal mapping '%s'", typestr, l); | |
1977 | } | |
1978 | } | |
711a919c TS |
1979 | else |
1980 | val = 0; /* bits == 1, then val should be ignored */ | |
979f2922 TS |
1981 | } |
1982 | ||
1983 | if (nl) | |
1984 | l = nl + 1; | |
1985 | else | |
1986 | l = lend; | |
1987 | ||
1988 | if (max < start) | |
1989 | continue; | |
1990 | ||
1991 | if (octets) { | |
35da51f7 | 1992 | UV key; |
979f2922 TS |
1993 | if (min < start) { |
1994 | if (!none || val < none) { | |
1995 | val += start - min; | |
1996 | } | |
1997 | min = start; | |
1998 | } | |
1999 | for (key = min; key <= max; key++) { | |
2000 | STRLEN offset; | |
2001 | if (key >= end) | |
2002 | goto go_out_list; | |
2003 | /* offset must be non-negative (start <= min <= key < end) */ | |
2004 | offset = octets * (key - start); | |
2005 | if (bits == 8) | |
2006 | s[offset] = (U8)(val & 0xff); | |
2007 | else if (bits == 16) { | |
2008 | s[offset ] = (U8)((val >> 8) & 0xff); | |
2009 | s[offset + 1] = (U8)( val & 0xff); | |
2010 | } | |
2011 | else if (bits == 32) { | |
2012 | s[offset ] = (U8)((val >> 24) & 0xff); | |
2013 | s[offset + 1] = (U8)((val >> 16) & 0xff); | |
2014 | s[offset + 2] = (U8)((val >> 8) & 0xff); | |
2015 | s[offset + 3] = (U8)( val & 0xff); | |
2016 | } | |
2017 | ||
2018 | if (!none || val < none) | |
2019 | ++val; | |
2020 | } | |
2021 | } | |
711a919c | 2022 | else { /* bits == 1, then val should be ignored */ |
35da51f7 | 2023 | UV key; |
979f2922 TS |
2024 | if (min < start) |
2025 | min = start; | |
2026 | for (key = min; key <= max; key++) { | |
0bd48802 | 2027 | const STRLEN offset = (STRLEN)(key - start); |
979f2922 TS |
2028 | if (key >= end) |
2029 | goto go_out_list; | |
2030 | s[offset >> 3] |= 1 << (offset & 7); | |
2031 | } | |
2032 | } | |
2033 | } /* while */ | |
2034 | go_out_list: | |
2035 | ||
2036 | /* read $swash->{EXTRAS} */ | |
2037 | x = (U8*)SvPV(*extssvp, xcur); | |
2038 | xend = x + xcur; | |
2039 | while (x < xend) { | |
2040 | STRLEN namelen; | |
2041 | U8 *namestr; | |
2042 | SV** othersvp; | |
2043 | HV* otherhv; | |
2044 | STRLEN otherbits; | |
2045 | SV **otherbitssvp, *other; | |
711a919c | 2046 | U8 *s, *o, *nl; |
979f2922 TS |
2047 | STRLEN slen, olen; |
2048 | ||
35da51f7 | 2049 | const U8 opc = *x++; |
979f2922 TS |
2050 | if (opc == '\n') |
2051 | continue; | |
2052 | ||
2053 | nl = (U8*)memchr(x, '\n', xend - x); | |
2054 | ||
2055 | if (opc != '-' && opc != '+' && opc != '!' && opc != '&') { | |
2056 | if (nl) { | |
2057 | x = nl + 1; /* 1 is length of "\n" */ | |
2058 | continue; | |
2059 | } | |
2060 | else { | |
2061 | x = xend; /* to EXTRAS' end at which \n is not found */ | |
2062 | break; | |
2063 | } | |
2064 | } | |
2065 | ||
2066 | namestr = x; | |
2067 | if (nl) { | |
2068 | namelen = nl - namestr; | |
2069 | x = nl + 1; | |
2070 | } | |
2071 | else { | |
2072 | namelen = xend - namestr; | |
2073 | x = xend; | |
2074 | } | |
2075 | ||
2076 | othersvp = hv_fetch(hv, (char *)namestr, namelen, FALSE); | |
ef8f7699 | 2077 | otherhv = MUTABLE_HV(SvRV(*othersvp)); |
017a3ce5 | 2078 | otherbitssvp = hv_fetchs(otherhv, "BITS", FALSE); |
979f2922 TS |
2079 | otherbits = (STRLEN)SvUV(*otherbitssvp); |
2080 | if (bits < otherbits) | |
660a4616 | 2081 | Perl_croak(aTHX_ "panic: swash_get found swatch size mismatch"); |
979f2922 TS |
2082 | |
2083 | /* The "other" swatch must be destroyed after. */ | |
2084 | other = swash_get(*othersvp, start, span); | |
2085 | o = (U8*)SvPV(other, olen); | |
2086 | ||
2087 | if (!olen) | |
660a4616 | 2088 | Perl_croak(aTHX_ "panic: swash_get got improper swatch"); |
979f2922 TS |
2089 | |
2090 | s = (U8*)SvPV(swatch, slen); | |
2091 | if (bits == 1 && otherbits == 1) { | |
2092 | if (slen != olen) | |
660a4616 | 2093 | Perl_croak(aTHX_ "panic: swash_get found swatch length mismatch"); |
979f2922 TS |
2094 | |
2095 | switch (opc) { | |
2096 | case '+': | |
2097 | while (slen--) | |
2098 | *s++ |= *o++; | |
2099 | break; | |
2100 | case '!': | |
2101 | while (slen--) | |
2102 | *s++ |= ~*o++; | |
2103 | break; | |
2104 | case '-': | |
2105 | while (slen--) | |
2106 | *s++ &= ~*o++; | |
2107 | break; | |
2108 | case '&': | |
2109 | while (slen--) | |
2110 | *s++ &= *o++; | |
2111 | break; | |
2112 | default: | |
2113 | break; | |
2114 | } | |
2115 | } | |
711a919c | 2116 | else { |
979f2922 TS |
2117 | STRLEN otheroctets = otherbits >> 3; |
2118 | STRLEN offset = 0; | |
35da51f7 | 2119 | U8* const send = s + slen; |
979f2922 TS |
2120 | |
2121 | while (s < send) { | |
2122 | UV otherval = 0; | |
2123 | ||
2124 | if (otherbits == 1) { | |
2125 | otherval = (o[offset >> 3] >> (offset & 7)) & 1; | |
2126 | ++offset; | |
2127 | } | |
2128 | else { | |
2129 | STRLEN vlen = otheroctets; | |
2130 | otherval = *o++; | |
2131 | while (--vlen) { | |
2132 | otherval <<= 8; | |
2133 | otherval |= *o++; | |
2134 | } | |
2135 | } | |
2136 | ||
711a919c | 2137 | if (opc == '+' && otherval) |
6f207bd3 | 2138 | NOOP; /* replace with otherval */ |
979f2922 TS |
2139 | else if (opc == '!' && !otherval) |
2140 | otherval = 1; | |
2141 | else if (opc == '-' && otherval) | |
2142 | otherval = 0; | |
2143 | else if (opc == '&' && !otherval) | |
2144 | otherval = 0; | |
2145 | else { | |
711a919c | 2146 | s += octets; /* no replacement */ |
979f2922 TS |
2147 | continue; |
2148 | } | |
2149 | ||
2150 | if (bits == 8) | |
2151 | *s++ = (U8)( otherval & 0xff); | |
2152 | else if (bits == 16) { | |
2153 | *s++ = (U8)((otherval >> 8) & 0xff); | |
2154 | *s++ = (U8)( otherval & 0xff); | |
2155 | } | |
2156 | else if (bits == 32) { | |
2157 | *s++ = (U8)((otherval >> 24) & 0xff); | |
2158 | *s++ = (U8)((otherval >> 16) & 0xff); | |
2159 | *s++ = (U8)((otherval >> 8) & 0xff); | |
2160 | *s++ = (U8)( otherval & 0xff); | |
2161 | } | |
2162 | } | |
2163 | } | |
2164 | sv_free(other); /* through with it! */ | |
2165 | } /* while */ | |
2166 | return swatch; | |
2167 | } | |
2168 | ||
0f830e0b | 2169 | /* |
87cea99e | 2170 | =for apidoc uvchr_to_utf8 |
0f830e0b NC |
2171 | |
2172 | Adds the UTF-8 representation of the Native codepoint C<uv> to the end | |
2173 | of the string C<d>; C<d> should be have at least C<UTF8_MAXBYTES+1> free | |
2174 | bytes available. The return value is the pointer to the byte after the | |
2175 | end of the new character. In other words, | |
2176 | ||
2177 | d = uvchr_to_utf8(d, uv); | |
2178 | ||
2179 | is the recommended wide native character-aware way of saying | |
2180 | ||
2181 | *(d++) = uv; | |
2182 | ||
2183 | =cut | |
2184 | */ | |
2185 | ||
2186 | /* On ASCII machines this is normally a macro but we want a | |
2187 | real function in case XS code wants it | |
2188 | */ | |
0f830e0b NC |
2189 | U8 * |
2190 | Perl_uvchr_to_utf8(pTHX_ U8 *d, UV uv) | |
2191 | { | |
7918f24d NC |
2192 | PERL_ARGS_ASSERT_UVCHR_TO_UTF8; |
2193 | ||
0f830e0b NC |
2194 | return Perl_uvuni_to_utf8_flags(aTHX_ d, NATIVE_TO_UNI(uv), 0); |
2195 | } | |
2196 | ||
b851fbc1 JH |
2197 | U8 * |
2198 | Perl_uvchr_to_utf8_flags(pTHX_ U8 *d, UV uv, UV flags) | |
2199 | { | |
7918f24d NC |
2200 | PERL_ARGS_ASSERT_UVCHR_TO_UTF8_FLAGS; |
2201 | ||
b851fbc1 JH |
2202 | return Perl_uvuni_to_utf8_flags(aTHX_ d, NATIVE_TO_UNI(uv), flags); |
2203 | } | |
2b9d42f0 NIS |
2204 | |
2205 | /* | |
87cea99e | 2206 | =for apidoc utf8n_to_uvchr |
0f830e0b NC |
2207 | flags |
2208 | ||
2209 | Returns the native character value of the first character in the string | |
2210 | C<s> | |
2211 | which is assumed to be in UTF-8 encoding; C<retlen> will be set to the | |
2212 | length, in bytes, of that character. | |
2213 | ||
2214 | Allows length and flags to be passed to low level routine. | |
2215 | ||
2216 | =cut | |
2217 | */ | |
2218 | /* On ASCII machines this is normally a macro but we want | |
2219 | a real function in case XS code wants it | |
2220 | */ | |
0f830e0b NC |
2221 | UV |
2222 | Perl_utf8n_to_uvchr(pTHX_ const U8 *s, STRLEN curlen, STRLEN *retlen, | |
2223 | U32 flags) | |
2224 | { | |
2225 | const UV uv = Perl_utf8n_to_uvuni(aTHX_ s, curlen, retlen, flags); | |
7918f24d NC |
2226 | |
2227 | PERL_ARGS_ASSERT_UTF8N_TO_UVCHR; | |
2228 | ||
0f830e0b NC |
2229 | return UNI_TO_NATIVE(uv); |
2230 | } | |
2231 | ||
2232 | /* | |
87cea99e | 2233 | =for apidoc pv_uni_display |
d2cc3551 JH |
2234 | |
2235 | Build to the scalar dsv a displayable version of the string spv, | |
2236 | length len, the displayable version being at most pvlim bytes long | |
2237 | (if longer, the rest is truncated and "..." will be appended). | |
0a2ef054 | 2238 | |
9e55ce06 | 2239 | The flags argument can have UNI_DISPLAY_ISPRINT set to display |
00e86452 | 2240 | isPRINT()able characters as themselves, UNI_DISPLAY_BACKSLASH |
0a2ef054 JH |
2241 | to display the \\[nrfta\\] as the backslashed versions (like '\n') |
2242 | (UNI_DISPLAY_BACKSLASH is preferred over UNI_DISPLAY_ISPRINT for \\). | |
2243 | UNI_DISPLAY_QQ (and its alias UNI_DISPLAY_REGEX) have both | |
2244 | UNI_DISPLAY_BACKSLASH and UNI_DISPLAY_ISPRINT turned on. | |
2245 | ||
d2cc3551 JH |
2246 | The pointer to the PV of the dsv is returned. |
2247 | ||
2248 | =cut */ | |
e6b2e755 | 2249 | char * |
e1ec3a88 | 2250 | Perl_pv_uni_display(pTHX_ SV *dsv, const U8 *spv, STRLEN len, STRLEN pvlim, UV flags) |
e6b2e755 JH |
2251 | { |
2252 | int truncated = 0; | |
e1ec3a88 | 2253 | const char *s, *e; |
e6b2e755 | 2254 | |
7918f24d NC |
2255 | PERL_ARGS_ASSERT_PV_UNI_DISPLAY; |
2256 | ||
76f68e9b | 2257 | sv_setpvs(dsv, ""); |
7fddd944 | 2258 | SvUTF8_off(dsv); |
e1ec3a88 | 2259 | for (s = (const char *)spv, e = s + len; s < e; s += UTF8SKIP(s)) { |
e6b2e755 | 2260 | UV u; |
a49f32c6 NC |
2261 | /* This serves double duty as a flag and a character to print after |
2262 | a \ when flags & UNI_DISPLAY_BACKSLASH is true. | |
2263 | */ | |
2264 | char ok = 0; | |
c728cb41 | 2265 | |
e6b2e755 JH |
2266 | if (pvlim && SvCUR(dsv) >= pvlim) { |
2267 | truncated++; | |
2268 | break; | |
2269 | } | |
2270 | u = utf8_to_uvchr((U8*)s, 0); | |
c728cb41 | 2271 | if (u < 256) { |
a3b680e6 | 2272 | const unsigned char c = (unsigned char)u & 0xFF; |
0bd48802 | 2273 | if (flags & UNI_DISPLAY_BACKSLASH) { |
a49f32c6 | 2274 | switch (c) { |
c728cb41 | 2275 | case '\n': |
a49f32c6 | 2276 | ok = 'n'; break; |
c728cb41 | 2277 | case '\r': |
a49f32c6 | 2278 | ok = 'r'; break; |
c728cb41 | 2279 | case '\t': |
a49f32c6 | 2280 | ok = 't'; break; |
c728cb41 | 2281 | case '\f': |
a49f32c6 | 2282 | ok = 'f'; break; |
c728cb41 | 2283 | case '\a': |
a49f32c6 | 2284 | ok = 'a'; break; |
c728cb41 | 2285 | case '\\': |
a49f32c6 | 2286 | ok = '\\'; break; |
c728cb41 JH |
2287 | default: break; |
2288 | } | |
a49f32c6 | 2289 | if (ok) { |
88c9ea1e | 2290 | const char string = ok; |
76f68e9b | 2291 | sv_catpvs(dsv, "\\"); |
5e7aa789 | 2292 | sv_catpvn(dsv, &string, 1); |
a49f32c6 | 2293 | } |
c728cb41 | 2294 | } |
00e86452 | 2295 | /* isPRINT() is the locale-blind version. */ |
a49f32c6 | 2296 | if (!ok && (flags & UNI_DISPLAY_ISPRINT) && isPRINT(c)) { |
88c9ea1e | 2297 | const char string = c; |
5e7aa789 | 2298 | sv_catpvn(dsv, &string, 1); |
a49f32c6 | 2299 | ok = 1; |
0a2ef054 | 2300 | } |
c728cb41 JH |
2301 | } |
2302 | if (!ok) | |
9e55ce06 | 2303 | Perl_sv_catpvf(aTHX_ dsv, "\\x{%"UVxf"}", u); |
e6b2e755 JH |
2304 | } |
2305 | if (truncated) | |
396482e1 | 2306 | sv_catpvs(dsv, "..."); |
e6b2e755 JH |
2307 | |
2308 | return SvPVX(dsv); | |
2309 | } | |
2b9d42f0 | 2310 | |
d2cc3551 | 2311 | /* |
87cea99e | 2312 | =for apidoc sv_uni_display |
d2cc3551 JH |
2313 | |
2314 | Build to the scalar dsv a displayable version of the scalar sv, | |
0a2ef054 | 2315 | the displayable version being at most pvlim bytes long |
d2cc3551 | 2316 | (if longer, the rest is truncated and "..." will be appended). |
0a2ef054 JH |
2317 | |
2318 | The flags argument is as in pv_uni_display(). | |
2319 | ||
d2cc3551 JH |
2320 | The pointer to the PV of the dsv is returned. |
2321 | ||
d4c19fe8 AL |
2322 | =cut |
2323 | */ | |
e6b2e755 JH |
2324 | char * |
2325 | Perl_sv_uni_display(pTHX_ SV *dsv, SV *ssv, STRLEN pvlim, UV flags) | |
2326 | { | |
7918f24d NC |
2327 | PERL_ARGS_ASSERT_SV_UNI_DISPLAY; |
2328 | ||
cfd0369c NC |
2329 | return Perl_pv_uni_display(aTHX_ dsv, (const U8*)SvPVX_const(ssv), |
2330 | SvCUR(ssv), pvlim, flags); | |
701a277b JH |
2331 | } |
2332 | ||
d2cc3551 | 2333 | /* |
87cea99e | 2334 | =for apidoc ibcmp_utf8 |
d2cc3551 JH |
2335 | |
2336 | Return true if the strings s1 and s2 differ case-insensitively, false | |
2337 | if not (if they are equal case-insensitively). If u1 is true, the | |
2338 | string s1 is assumed to be in UTF-8-encoded Unicode. If u2 is true, | |
d07ddd77 JH |
2339 | the string s2 is assumed to be in UTF-8-encoded Unicode. If u1 or u2 |
2340 | are false, the respective string is assumed to be in native 8-bit | |
2341 | encoding. | |
2342 | ||
2343 | If the pe1 and pe2 are non-NULL, the scanning pointers will be copied | |
2344 | in there (they will point at the beginning of the I<next> character). | |
2345 | If the pointers behind pe1 or pe2 are non-NULL, they are the end | |
2346 | pointers beyond which scanning will not continue under any | |
4cdaeff7 | 2347 | circumstances. If the byte lengths l1 and l2 are non-zero, s1+l1 and |
d07ddd77 JH |
2348 | s2+l2 will be used as goal end pointers that will also stop the scan, |
2349 | and which qualify towards defining a successful match: all the scans | |
2350 | that define an explicit length must reach their goal pointers for | |
2351 | a match to succeed). | |
d2cc3551 JH |
2352 | |
2353 | For case-insensitiveness, the "casefolding" of Unicode is used | |
2354 | instead of upper/lowercasing both the characters, see | |
2355 | http://www.unicode.org/unicode/reports/tr21/ (Case Mappings). | |
2356 | ||
2357 | =cut */ | |
701a277b | 2358 | I32 |
d07ddd77 | 2359 | Perl_ibcmp_utf8(pTHX_ const char *s1, char **pe1, register UV l1, bool u1, const char *s2, char **pe2, register UV l2, bool u2) |
332ddc25 | 2360 | { |
97aff369 | 2361 | dVAR; |
e1ec3a88 AL |
2362 | register const U8 *p1 = (const U8*)s1; |
2363 | register const U8 *p2 = (const U8*)s2; | |
cbbf8932 | 2364 | register const U8 *f1 = NULL; |
2f73348c | 2365 | register const U8 *f2 = NULL; |
cbbf8932 AL |
2366 | register U8 *e1 = NULL; |
2367 | register U8 *q1 = NULL; | |
2368 | register U8 *e2 = NULL; | |
2369 | register U8 *q2 = NULL; | |
d07ddd77 | 2370 | STRLEN n1 = 0, n2 = 0; |
89ebb4a3 JH |
2371 | U8 foldbuf1[UTF8_MAXBYTES_CASE+1]; |
2372 | U8 foldbuf2[UTF8_MAXBYTES_CASE+1]; | |
d7f013c8 JH |
2373 | U8 natbuf[1+1]; |
2374 | STRLEN foldlen1, foldlen2; | |
d07ddd77 | 2375 | bool match; |
7918f24d NC |
2376 | |
2377 | PERL_ARGS_ASSERT_IBCMP_UTF8; | |
332ddc25 | 2378 | |
d07ddd77 JH |
2379 | if (pe1) |
2380 | e1 = *(U8**)pe1; | |
a0a388a1 | 2381 | /* assert(e1 || l1); */ |
e1ec3a88 AL |
2382 | if (e1 == 0 || (l1 && l1 < (UV)(e1 - (const U8*)s1))) |
2383 | f1 = (const U8*)s1 + l1; | |
d07ddd77 JH |
2384 | if (pe2) |
2385 | e2 = *(U8**)pe2; | |
a0a388a1 | 2386 | /* assert(e2 || l2); */ |
e1ec3a88 AL |
2387 | if (e2 == 0 || (l2 && l2 < (UV)(e2 - (const U8*)s2))) |
2388 | f2 = (const U8*)s2 + l2; | |
d07ddd77 | 2389 | |
a0a388a1 YO |
2390 | /* This shouldn't happen. However, putting an assert() there makes some |
2391 | * tests fail. */ | |
2392 | /* assert((e1 == 0 && f1 == 0) || (e2 == 0 && f2 == 0) || (f1 == 0 && f2 == 0)); */ | |
d07ddd77 JH |
2393 | if ((e1 == 0 && f1 == 0) || (e2 == 0 && f2 == 0) || (f1 == 0 && f2 == 0)) |
2394 | return 1; /* mismatch; possible infinite loop or false positive */ | |
2395 | ||
a6872d42 JH |
2396 | if (!u1 || !u2) |
2397 | natbuf[1] = 0; /* Need to terminate the buffer. */ | |
2398 | ||
d07ddd77 JH |
2399 | while ((e1 == 0 || p1 < e1) && |
2400 | (f1 == 0 || p1 < f1) && | |
2401 | (e2 == 0 || p2 < e2) && | |
2402 | (f2 == 0 || p2 < f2)) { | |
2403 | if (n1 == 0) { | |
d7f013c8 JH |
2404 | if (u1) |
2405 | to_utf8_fold(p1, foldbuf1, &foldlen1); | |
2406 | else { | |
809e8e66 | 2407 | uvuni_to_utf8(natbuf, (UV) NATIVE_TO_UNI(((UV)*p1))); |
d7f013c8 JH |
2408 | to_utf8_fold(natbuf, foldbuf1, &foldlen1); |
2409 | } | |
2410 | q1 = foldbuf1; | |
d07ddd77 | 2411 | n1 = foldlen1; |
332ddc25 | 2412 | } |
d07ddd77 | 2413 | if (n2 == 0) { |
d7f013c8 JH |
2414 | if (u2) |
2415 | to_utf8_fold(p2, foldbuf2, &foldlen2); | |
2416 | else { | |
809e8e66 | 2417 | uvuni_to_utf8(natbuf, (UV) NATIVE_TO_UNI(((UV)*p2))); |
d7f013c8 JH |
2418 | to_utf8_fold(natbuf, foldbuf2, &foldlen2); |
2419 | } | |
2420 | q2 = foldbuf2; | |
d07ddd77 | 2421 | n2 = foldlen2; |
332ddc25 | 2422 | } |
d07ddd77 JH |
2423 | while (n1 && n2) { |
2424 | if ( UTF8SKIP(q1) != UTF8SKIP(q2) || | |
2425 | (UTF8SKIP(q1) == 1 && *q1 != *q2) || | |
2426 | memNE((char*)q1, (char*)q2, UTF8SKIP(q1)) ) | |
d7f013c8 | 2427 | return 1; /* mismatch */ |
d07ddd77 | 2428 | n1 -= UTF8SKIP(q1); |
d7f013c8 | 2429 | q1 += UTF8SKIP(q1); |
d07ddd77 | 2430 | n2 -= UTF8SKIP(q2); |
d7f013c8 | 2431 | q2 += UTF8SKIP(q2); |
701a277b | 2432 | } |
d07ddd77 | 2433 | if (n1 == 0) |
d7f013c8 | 2434 | p1 += u1 ? UTF8SKIP(p1) : 1; |
d07ddd77 | 2435 | if (n2 == 0) |
d7f013c8 JH |
2436 | p2 += u2 ? UTF8SKIP(p2) : 1; |
2437 | ||
d2cc3551 | 2438 | } |
5469e704 | 2439 | |
d07ddd77 JH |
2440 | /* A match is defined by all the scans that specified |
2441 | * an explicit length reaching their final goals. */ | |
2442 | match = (f1 == 0 || p1 == f1) && (f2 == 0 || p2 == f2); | |
5469e704 JH |
2443 | |
2444 | if (match) { | |
d07ddd77 JH |
2445 | if (pe1) |
2446 | *pe1 = (char*)p1; | |
2447 | if (pe2) | |
2448 | *pe2 = (char*)p2; | |
5469e704 JH |
2449 | } |
2450 | ||
2451 | return match ? 0 : 1; /* 0 match, 1 mismatch */ | |
e6b2e755 | 2452 | } |
701a277b | 2453 | |
a49f32c6 NC |
2454 | /* |
2455 | * Local variables: | |
2456 | * c-indentation-style: bsd | |
2457 | * c-basic-offset: 4 | |
2458 | * indent-tabs-mode: t | |
2459 | * End: | |
2460 | * | |
37442d52 RGS |
2461 | * ex: set ts=8 sts=4 sw=4 noet: |
2462 | */ |