1 /*
2 +----------------------------------------------------------------------+
3 | PHP Version 7 |
4 +----------------------------------------------------------------------+
5 | Copyright (c) The PHP Group |
6 +----------------------------------------------------------------------+
7 | This source file is subject to version 3.01 of the PHP license, |
8 | that is bundled with this package in the file LICENSE, and is |
9 | available through the world-wide-web at the following url: |
10 | http://www.php.net/license/3_01.txt |
11 | If you did not receive a copy of the PHP license and are unable to |
12 | obtain it through the world-wide-web, please send a note to |
13 | license@php.net so we can mail you a copy immediately. |
14 +----------------------------------------------------------------------+
15 | Authors: Rasmus Lerdorf <rasmus@php.net> |
16 | Jaakko Hyvätti <jaakko.hyvatti@iki.fi> |
17 | Wez Furlong <wez@thebrainroom.com> |
18 | Gustavo Lopes <cataphract@php.net> |
19 +----------------------------------------------------------------------+
20 */
21
22 /*
23 * HTML entity resources:
24 *
25 * http://www.unicode.org/Public/MAPPINGS/OBSOLETE/UNI2SGML.TXT
26 *
27 * XHTML 1.0 DTD
28 * http://www.w3.org/TR/2002/REC-xhtml1-20020801/dtds.html#h-A2
29 *
30 * From HTML 4.01 strict DTD:
31 * http://www.w3.org/TR/html4/HTMLlat1.ent
32 * http://www.w3.org/TR/html4/HTMLsymbol.ent
33 * http://www.w3.org/TR/html4/HTMLspecial.ent
34 *
35 * HTML 5:
36 * http://dev.w3.org/html5/spec/Overview.html#named-character-references
37 */
38
39 #include "php.h"
40 #ifdef PHP_WIN32
41 #include "config.w32.h"
42 #else
43 #include <php_config.h>
44 #endif
45 #include "php_standard.h"
46 #include "php_string.h"
47 #include "SAPI.h"
48 #include <locale.h>
49 #if HAVE_LANGINFO_H
50 #include <langinfo.h>
51 #endif
52
53 #include <zend_hash.h>
54 #include "html_tables.h"
55
56 /* Macro for disabling flag of translation of non-basic entities where this isn't supported.
57 * Not appropriate for html_entity_decode/htmlspecialchars_decode */
58 #define LIMIT_ALL(all, doctype, charset) do { \
59 (all) = (all) && !CHARSET_PARTIAL_SUPPORT((charset)) && ((doctype) != ENT_HTML_DOC_XML1); \
60 } while (0)
61
62 #define MB_FAILURE(pos, advance) do { \
63 *cursor = pos + (advance); \
64 *status = FAILURE; \
65 return 0; \
66 } while (0)
67
68 #define CHECK_LEN(pos, chars_need) ((str_len - (pos)) >= (chars_need))
69
70 /* valid as single byte character or leading byte */
71 #define utf8_lead(c) ((c) < 0x80 || ((c) >= 0xC2 && (c) <= 0xF4))
72 /* whether it's actually valid depends on other stuff;
73 * this macro cannot check for non-shortest forms, surrogates or
74 * code points above 0x10FFFF */
75 #define utf8_trail(c) ((c) >= 0x80 && (c) <= 0xBF)
76
77 #define gb2312_lead(c) ((c) != 0x8E && (c) != 0x8F && (c) != 0xA0 && (c) != 0xFF)
78 #define gb2312_trail(c) ((c) >= 0xA1 && (c) <= 0xFE)
79
80 #define sjis_lead(c) ((c) != 0x80 && (c) != 0xA0 && (c) < 0xFD)
81 #define sjis_trail(c) ((c) >= 0x40 && (c) != 0x7F && (c) < 0xFD)
82
83 /* {{{ get_default_charset
84 */
get_default_charset(void)85 static char *get_default_charset(void) {
86 if (PG(internal_encoding) && PG(internal_encoding)[0]) {
87 return PG(internal_encoding);
88 } else if (SG(default_charset) && SG(default_charset)[0] ) {
89 return SG(default_charset);
90 }
91 return NULL;
92 }
93 /* }}} */
94
95 /* {{{ get_next_char
96 */
get_next_char(enum entity_charset charset,const unsigned char * str,size_t str_len,size_t * cursor,int * status)97 static inline unsigned int get_next_char(
98 enum entity_charset charset,
99 const unsigned char *str,
100 size_t str_len,
101 size_t *cursor,
102 int *status)
103 {
104 size_t pos = *cursor;
105 unsigned int this_char = 0;
106
107 *status = SUCCESS;
108 assert(pos <= str_len);
109
110 if (!CHECK_LEN(pos, 1))
111 MB_FAILURE(pos, 1);
112
113 switch (charset) {
114 case cs_utf_8:
115 {
116 /* We'll follow strategy 2. from section 3.6.1 of UTR #36:
117 * "In a reported illegal byte sequence, do not include any
118 * non-initial byte that encodes a valid character or is a leading
119 * byte for a valid sequence." */
120 unsigned char c;
121 c = str[pos];
122 if (c < 0x80) {
123 this_char = c;
124 pos++;
125 } else if (c < 0xc2) {
126 MB_FAILURE(pos, 1);
127 } else if (c < 0xe0) {
128 if (!CHECK_LEN(pos, 2))
129 MB_FAILURE(pos, 1);
130
131 if (!utf8_trail(str[pos + 1])) {
132 MB_FAILURE(pos, utf8_lead(str[pos + 1]) ? 1 : 2);
133 }
134 this_char = ((c & 0x1f) << 6) | (str[pos + 1] & 0x3f);
135 if (this_char < 0x80) { /* non-shortest form */
136 MB_FAILURE(pos, 2);
137 }
138 pos += 2;
139 } else if (c < 0xf0) {
140 size_t avail = str_len - pos;
141
142 if (avail < 3 ||
143 !utf8_trail(str[pos + 1]) || !utf8_trail(str[pos + 2])) {
144 if (avail < 2 || utf8_lead(str[pos + 1]))
145 MB_FAILURE(pos, 1);
146 else if (avail < 3 || utf8_lead(str[pos + 2]))
147 MB_FAILURE(pos, 2);
148 else
149 MB_FAILURE(pos, 3);
150 }
151
152 this_char = ((c & 0x0f) << 12) | ((str[pos + 1] & 0x3f) << 6) | (str[pos + 2] & 0x3f);
153 if (this_char < 0x800) { /* non-shortest form */
154 MB_FAILURE(pos, 3);
155 } else if (this_char >= 0xd800 && this_char <= 0xdfff) { /* surrogate */
156 MB_FAILURE(pos, 3);
157 }
158 pos += 3;
159 } else if (c < 0xf5) {
160 size_t avail = str_len - pos;
161
162 if (avail < 4 ||
163 !utf8_trail(str[pos + 1]) || !utf8_trail(str[pos + 2]) ||
164 !utf8_trail(str[pos + 3])) {
165 if (avail < 2 || utf8_lead(str[pos + 1]))
166 MB_FAILURE(pos, 1);
167 else if (avail < 3 || utf8_lead(str[pos + 2]))
168 MB_FAILURE(pos, 2);
169 else if (avail < 4 || utf8_lead(str[pos + 3]))
170 MB_FAILURE(pos, 3);
171 else
172 MB_FAILURE(pos, 4);
173 }
174
175 this_char = ((c & 0x07) << 18) | ((str[pos + 1] & 0x3f) << 12) | ((str[pos + 2] & 0x3f) << 6) | (str[pos + 3] & 0x3f);
176 if (this_char < 0x10000 || this_char > 0x10FFFF) { /* non-shortest form or outside range */
177 MB_FAILURE(pos, 4);
178 }
179 pos += 4;
180 } else {
181 MB_FAILURE(pos, 1);
182 }
183 }
184 break;
185
186 case cs_big5:
187 /* reference http://demo.icu-project.org/icu-bin/convexp?conv=big5 */
188 {
189 unsigned char c = str[pos];
190 if (c >= 0x81 && c <= 0xFE) {
191 unsigned char next;
192 if (!CHECK_LEN(pos, 2))
193 MB_FAILURE(pos, 1);
194
195 next = str[pos + 1];
196
197 if ((next >= 0x40 && next <= 0x7E) ||
198 (next >= 0xA1 && next <= 0xFE)) {
199 this_char = (c << 8) | next;
200 } else {
201 MB_FAILURE(pos, 1);
202 }
203 pos += 2;
204 } else {
205 this_char = c;
206 pos += 1;
207 }
208 }
209 break;
210
211 case cs_big5hkscs:
212 {
213 unsigned char c = str[pos];
214 if (c >= 0x81 && c <= 0xFE) {
215 unsigned char next;
216 if (!CHECK_LEN(pos, 2))
217 MB_FAILURE(pos, 1);
218
219 next = str[pos + 1];
220
221 if ((next >= 0x40 && next <= 0x7E) ||
222 (next >= 0xA1 && next <= 0xFE)) {
223 this_char = (c << 8) | next;
224 } else if (next != 0x80 && next != 0xFF) {
225 MB_FAILURE(pos, 1);
226 } else {
227 MB_FAILURE(pos, 2);
228 }
229 pos += 2;
230 } else {
231 this_char = c;
232 pos += 1;
233 }
234 }
235 break;
236
237 case cs_gb2312: /* EUC-CN */
238 {
239 unsigned char c = str[pos];
240 if (c >= 0xA1 && c <= 0xFE) {
241 unsigned char next;
242 if (!CHECK_LEN(pos, 2))
243 MB_FAILURE(pos, 1);
244
245 next = str[pos + 1];
246
247 if (gb2312_trail(next)) {
248 this_char = (c << 8) | next;
249 } else if (gb2312_lead(next)) {
250 MB_FAILURE(pos, 1);
251 } else {
252 MB_FAILURE(pos, 2);
253 }
254 pos += 2;
255 } else if (gb2312_lead(c)) {
256 this_char = c;
257 pos += 1;
258 } else {
259 MB_FAILURE(pos, 1);
260 }
261 }
262 break;
263
264 case cs_sjis:
265 {
266 unsigned char c = str[pos];
267 if ((c >= 0x81 && c <= 0x9F) || (c >= 0xE0 && c <= 0xFC)) {
268 unsigned char next;
269 if (!CHECK_LEN(pos, 2))
270 MB_FAILURE(pos, 1);
271
272 next = str[pos + 1];
273
274 if (sjis_trail(next)) {
275 this_char = (c << 8) | next;
276 } else if (sjis_lead(next)) {
277 MB_FAILURE(pos, 1);
278 } else {
279 MB_FAILURE(pos, 2);
280 }
281 pos += 2;
282 } else if (c < 0x80 || (c >= 0xA1 && c <= 0xDF)) {
283 this_char = c;
284 pos += 1;
285 } else {
286 MB_FAILURE(pos, 1);
287 }
288 }
289 break;
290
291 case cs_eucjp:
292 {
293 unsigned char c = str[pos];
294
295 if (c >= 0xA1 && c <= 0xFE) {
296 unsigned next;
297 if (!CHECK_LEN(pos, 2))
298 MB_FAILURE(pos, 1);
299 next = str[pos + 1];
300
301 if (next >= 0xA1 && next <= 0xFE) {
302 /* this a jis kanji char */
303 this_char = (c << 8) | next;
304 } else {
305 MB_FAILURE(pos, (next != 0xA0 && next != 0xFF) ? 1 : 2);
306 }
307 pos += 2;
308 } else if (c == 0x8E) {
309 unsigned next;
310 if (!CHECK_LEN(pos, 2))
311 MB_FAILURE(pos, 1);
312
313 next = str[pos + 1];
314 if (next >= 0xA1 && next <= 0xDF) {
315 /* JIS X 0201 kana */
316 this_char = (c << 8) | next;
317 } else {
318 MB_FAILURE(pos, (next != 0xA0 && next != 0xFF) ? 1 : 2);
319 }
320 pos += 2;
321 } else if (c == 0x8F) {
322 size_t avail = str_len - pos;
323
324 if (avail < 3 || !(str[pos + 1] >= 0xA1 && str[pos + 1] <= 0xFE) ||
325 !(str[pos + 2] >= 0xA1 && str[pos + 2] <= 0xFE)) {
326 if (avail < 2 || (str[pos + 1] != 0xA0 && str[pos + 1] != 0xFF))
327 MB_FAILURE(pos, 1);
328 else if (avail < 3 || (str[pos + 2] != 0xA0 && str[pos + 2] != 0xFF))
329 MB_FAILURE(pos, 2);
330 else
331 MB_FAILURE(pos, 3);
332 } else {
333 /* JIS X 0212 hojo-kanji */
334 this_char = (c << 16) | (str[pos + 1] << 8) | str[pos + 2];
335 }
336 pos += 3;
337 } else if (c != 0xA0 && c != 0xFF) {
338 /* character encoded in 1 code unit */
339 this_char = c;
340 pos += 1;
341 } else {
342 MB_FAILURE(pos, 1);
343 }
344 }
345 break;
346 default:
347 /* single-byte charsets */
348 this_char = str[pos++];
349 break;
350 }
351
352 *cursor = pos;
353 return this_char;
354 }
355 /* }}} */
356
357 /* {{{ php_next_utf8_char
358 * Public interface for get_next_char used with UTF-8 */
php_next_utf8_char(const unsigned char * str,size_t str_len,size_t * cursor,int * status)359 PHPAPI unsigned int php_next_utf8_char(
360 const unsigned char *str,
361 size_t str_len,
362 size_t *cursor,
363 int *status)
364 {
365 return get_next_char(cs_utf_8, str, str_len, cursor, status);
366 }
367 /* }}} */
368
369 /* {{{ entity_charset determine_charset
370 * returns the charset identifier based on current locale or a hint.
371 * defaults to UTF-8 */
determine_charset(char * charset_hint)372 static enum entity_charset determine_charset(char *charset_hint)
373 {
374 size_t i;
375 enum entity_charset charset = cs_utf_8;
376 size_t len = 0;
377 const zend_encoding *zenc;
378
379 /* Default is now UTF-8 */
380 if (charset_hint == NULL)
381 return cs_utf_8;
382
383 if ((len = strlen(charset_hint)) != 0) {
384 goto det_charset;
385 }
386
387 zenc = zend_multibyte_get_internal_encoding();
388 if (zenc != NULL) {
389 charset_hint = (char *)zend_multibyte_get_encoding_name(zenc);
390 if (charset_hint != NULL && (len=strlen(charset_hint)) != 0) {
391 if ((len == 4) /* sizeof (auto|pass) */ &&
392 /* XXX should the "wchar" be ignored as well?? */
393 (!memcmp("pass", charset_hint, 4) ||
394 !memcmp("auto", charset_hint, 4))) {
395 charset_hint = NULL;
396 len = 0;
397 } else {
398 goto det_charset;
399 }
400 }
401 }
402
403 charset_hint = SG(default_charset);
404 if (charset_hint != NULL && (len=strlen(charset_hint)) != 0) {
405 goto det_charset;
406 }
407
408 /* try to detect the charset for the locale */
409 #if HAVE_NL_LANGINFO && defined(CODESET)
410 charset_hint = nl_langinfo(CODESET);
411 if (charset_hint != NULL && (len=strlen(charset_hint)) != 0) {
412 goto det_charset;
413 }
414 #endif
415
416 /* try to figure out the charset from the locale */
417 {
418 char *localename;
419 char *dot, *at;
420
421 /* lang[_territory][.codeset][@modifier] */
422 localename = setlocale(LC_CTYPE, NULL);
423
424 dot = strchr(localename, '.');
425 if (dot) {
426 dot++;
427 /* locale specifies a codeset */
428 at = strchr(dot, '@');
429 if (at)
430 len = at - dot;
431 else
432 len = strlen(dot);
433 charset_hint = dot;
434 } else {
435 /* no explicit name; see if the name itself
436 * is the charset */
437 charset_hint = localename;
438 len = strlen(charset_hint);
439 }
440 }
441
442 det_charset:
443
444 if (charset_hint) {
445 int found = 0;
446
447 /* now walk the charset map and look for the codeset */
448 for (i = 0; i < sizeof(charset_map)/sizeof(charset_map[0]); i++) {
449 if (len == charset_map[i].codeset_len &&
450 zend_binary_strcasecmp(charset_hint, len, charset_map[i].codeset, len) == 0) {
451 charset = charset_map[i].charset;
452 found = 1;
453 break;
454 }
455 }
456 if (!found) {
457 php_error_docref(NULL, E_WARNING, "charset `%s' not supported, assuming utf-8",
458 charset_hint);
459 }
460 }
461 return charset;
462 }
463 /* }}} */
464
465 /* {{{ php_utf32_utf8 */
php_utf32_utf8(unsigned char * buf,unsigned k)466 static inline size_t php_utf32_utf8(unsigned char *buf, unsigned k)
467 {
468 size_t retval = 0;
469
470 /* assert(0x0 <= k <= 0x10FFFF); */
471
472 if (k < 0x80) {
473 buf[0] = k;
474 retval = 1;
475 } else if (k < 0x800) {
476 buf[0] = 0xc0 | (k >> 6);
477 buf[1] = 0x80 | (k & 0x3f);
478 retval = 2;
479 } else if (k < 0x10000) {
480 buf[0] = 0xe0 | (k >> 12);
481 buf[1] = 0x80 | ((k >> 6) & 0x3f);
482 buf[2] = 0x80 | (k & 0x3f);
483 retval = 3;
484 } else {
485 buf[0] = 0xf0 | (k >> 18);
486 buf[1] = 0x80 | ((k >> 12) & 0x3f);
487 buf[2] = 0x80 | ((k >> 6) & 0x3f);
488 buf[3] = 0x80 | (k & 0x3f);
489 retval = 4;
490 }
491 /* UTF-8 has been restricted to max 4 bytes since RFC 3629 */
492
493 return retval;
494 }
495 /* }}} */
496
497 /* {{{ unimap_bsearc_cmp
498 * Binary search of unicode code points in unicode <--> charset mapping.
499 * Returns the code point in the target charset (whose mapping table was given) or 0 if
500 * the unicode code point is not in the table.
501 */
unimap_bsearch(const uni_to_enc * table,unsigned code_key_a,size_t num)502 static inline unsigned char unimap_bsearch(const uni_to_enc *table, unsigned code_key_a, size_t num)
503 {
504 const uni_to_enc *l = table,
505 *h = &table[num-1],
506 *m;
507 unsigned short code_key;
508
509 /* we have no mappings outside the BMP */
510 if (code_key_a > 0xFFFFU)
511 return 0;
512
513 code_key = (unsigned short) code_key_a;
514
515 while (l <= h) {
516 m = l + (h - l) / 2;
517 if (code_key < m->un_code_point)
518 h = m - 1;
519 else if (code_key > m->un_code_point)
520 l = m + 1;
521 else
522 return m->cs_code;
523 }
524 return 0;
525 }
526 /* }}} */
527
528 /* {{{ map_from_unicode */
map_from_unicode(unsigned code,enum entity_charset charset,unsigned * res)529 static inline int map_from_unicode(unsigned code, enum entity_charset charset, unsigned *res)
530 {
531 unsigned char found;
532 const uni_to_enc *table;
533 size_t table_size;
534
535 switch (charset) {
536 case cs_8859_1:
537 /* identity mapping of code points to unicode */
538 if (code > 0xFF) {
539 return FAILURE;
540 }
541 *res = code;
542 break;
543
544 case cs_8859_5:
545 if (code <= 0xA0 || code == 0xAD /* soft hyphen */) {
546 *res = code;
547 } else if (code == 0x2116) {
548 *res = 0xF0; /* numero sign */
549 } else if (code == 0xA7) {
550 *res = 0xFD; /* section sign */
551 } else if (code >= 0x0401 && code <= 0x044F) {
552 if (code == 0x040D || code == 0x0450 || code == 0x045D)
553 return FAILURE;
554 *res = code - 0x360;
555 } else {
556 return FAILURE;
557 }
558 break;
559
560 case cs_8859_15:
561 if (code < 0xA4 || (code > 0xBE && code <= 0xFF)) {
562 *res = code;
563 } else { /* between A4 and 0xBE */
564 found = unimap_bsearch(unimap_iso885915,
565 code, sizeof(unimap_iso885915) / sizeof(*unimap_iso885915));
566 if (found)
567 *res = found;
568 else
569 return FAILURE;
570 }
571 break;
572
573 case cs_cp1252:
574 if (code <= 0x7F || (code >= 0xA0 && code <= 0xFF)) {
575 *res = code;
576 } else {
577 found = unimap_bsearch(unimap_win1252,
578 code, sizeof(unimap_win1252) / sizeof(*unimap_win1252));
579 if (found)
580 *res = found;
581 else
582 return FAILURE;
583 }
584 break;
585
586 case cs_macroman:
587 if (code == 0x7F)
588 return FAILURE;
589 table = unimap_macroman;
590 table_size = sizeof(unimap_macroman) / sizeof(*unimap_macroman);
591 goto table_over_7F;
592 case cs_cp1251:
593 table = unimap_win1251;
594 table_size = sizeof(unimap_win1251) / sizeof(*unimap_win1251);
595 goto table_over_7F;
596 case cs_koi8r:
597 table = unimap_koi8r;
598 table_size = sizeof(unimap_koi8r) / sizeof(*unimap_koi8r);
599 goto table_over_7F;
600 case cs_cp866:
601 table = unimap_cp866;
602 table_size = sizeof(unimap_cp866) / sizeof(*unimap_cp866);
603
604 table_over_7F:
605 if (code <= 0x7F) {
606 *res = code;
607 } else {
608 found = unimap_bsearch(table, code, table_size);
609 if (found)
610 *res = found;
611 else
612 return FAILURE;
613 }
614 break;
615
616 /* from here on, only map the possible characters in the ASCII range.
617 * to improve support here, it's a matter of building the unicode mappings.
618 * See <http://www.unicode.org/Public/6.0.0/ucd/Unihan.zip> */
619 case cs_sjis:
620 case cs_eucjp:
621 /* we interpret 0x5C as the Yen symbol. This is not universal.
622 * See <http://www.w3.org/Submission/japanese-xml/#ambiguity_of_yen> */
623 if (code >= 0x20 && code <= 0x7D) {
624 if (code == 0x5C)
625 return FAILURE;
626 *res = code;
627 } else {
628 return FAILURE;
629 }
630 break;
631
632 case cs_big5:
633 case cs_big5hkscs:
634 case cs_gb2312:
635 if (code >= 0x20 && code <= 0x7D) {
636 *res = code;
637 } else {
638 return FAILURE;
639 }
640 break;
641
642 default:
643 return FAILURE;
644 }
645
646 return SUCCESS;
647 }
648 /* }}} */
649
650 /* {{{ */
map_to_unicode(unsigned code,const enc_to_uni * table,unsigned * res)651 static inline void map_to_unicode(unsigned code, const enc_to_uni *table, unsigned *res)
652 {
653 /* only single byte encodings are currently supported; assumed code <= 0xFF */
654 *res = table->inner[ENT_ENC_TO_UNI_STAGE1(code)]->uni_cp[ENT_ENC_TO_UNI_STAGE2(code)];
655 }
656 /* }}} */
657
658 /* {{{ unicode_cp_is_allowed */
unicode_cp_is_allowed(unsigned uni_cp,int document_type)659 static inline int unicode_cp_is_allowed(unsigned uni_cp, int document_type)
660 {
661 /* XML 1.0 HTML 4.01 HTML 5
662 * 0x09..0x0A 0x09..0x0A 0x09..0x0A
663 * 0x0D 0x0D 0x0C..0x0D
664 * 0x0020..0xD7FF 0x20..0x7E 0x20..0x7E
665 * 0x00A0..0xD7FF 0x00A0..0xD7FF
666 * 0xE000..0xFFFD 0xE000..0x10FFFF 0xE000..0xFDCF
667 * 0x010000..0x10FFFF 0xFDF0..0x10FFFF (*)
668 *
669 * (*) exclude code points where ((code & 0xFFFF) >= 0xFFFE)
670 *
671 * References:
672 * XML 1.0: <http://www.w3.org/TR/REC-xml/#charsets>
673 * HTML 4.01: <http://www.w3.org/TR/1999/PR-html40-19990824/sgml/sgmldecl.html>
674 * HTML 5: <http://dev.w3.org/html5/spec/Overview.html#preprocessing-the-input-stream>
675 *
676 * Not sure this is the relevant part for HTML 5, though. I opted to
677 * disallow the characters that would result in a parse error when
678 * preprocessing of the input stream. See also section 8.1.3.
679 *
680 * It's unclear if XHTML 1.0 allows C1 characters. I'll opt to apply to
681 * XHTML 1.0 the same rules as for XML 1.0.
682 * See <http://cmsmcq.com/2007/C1.xml>.
683 */
684
685 switch (document_type) {
686 case ENT_HTML_DOC_HTML401:
687 return (uni_cp >= 0x20 && uni_cp <= 0x7E) ||
688 (uni_cp == 0x0A || uni_cp == 0x09 || uni_cp == 0x0D) ||
689 (uni_cp >= 0xA0 && uni_cp <= 0xD7FF) ||
690 (uni_cp >= 0xE000 && uni_cp <= 0x10FFFF);
691 case ENT_HTML_DOC_HTML5:
692 return (uni_cp >= 0x20 && uni_cp <= 0x7E) ||
693 (uni_cp >= 0x09 && uni_cp <= 0x0D && uni_cp != 0x0B) || /* form feed U+0C allowed */
694 (uni_cp >= 0xA0 && uni_cp <= 0xD7FF) ||
695 (uni_cp >= 0xE000 && uni_cp <= 0x10FFFF &&
696 ((uni_cp & 0xFFFF) < 0xFFFE) && /* last two of each plane (nonchars) disallowed */
697 (uni_cp < 0xFDD0 || uni_cp > 0xFDEF)); /* U+FDD0-U+FDEF (nonchars) disallowed */
698 case ENT_HTML_DOC_XHTML:
699 case ENT_HTML_DOC_XML1:
700 return (uni_cp >= 0x20 && uni_cp <= 0xD7FF) ||
701 (uni_cp == 0x0A || uni_cp == 0x09 || uni_cp == 0x0D) ||
702 (uni_cp >= 0xE000 && uni_cp <= 0x10FFFF && uni_cp != 0xFFFE && uni_cp != 0xFFFF);
703 default:
704 return 1;
705 }
706 }
707 /* }}} */
708
709 /* {{{ unicode_cp_is_allowed */
numeric_entity_is_allowed(unsigned uni_cp,int document_type)710 static inline int numeric_entity_is_allowed(unsigned uni_cp, int document_type)
711 {
712 /* less restrictive than unicode_cp_is_allowed */
713 switch (document_type) {
714 case ENT_HTML_DOC_HTML401:
715 /* all non-SGML characters (those marked with UNUSED in DESCSET) should be
716 * representable with numeric entities */
717 return uni_cp <= 0x10FFFF;
718 case ENT_HTML_DOC_HTML5:
719 /* 8.1.4. The numeric character reference forms described above are allowed to
720 * reference any Unicode code point other than U+0000, U+000D, permanently
721 * undefined Unicode characters (noncharacters), and control characters other
722 * than space characters (U+0009, U+000A, U+000C and U+000D) */
723 /* seems to allow surrogate characters, then */
724 return (uni_cp >= 0x20 && uni_cp <= 0x7E) ||
725 (uni_cp >= 0x09 && uni_cp <= 0x0C && uni_cp != 0x0B) || /* form feed U+0C allowed, but not U+0D */
726 (uni_cp >= 0xA0 && uni_cp <= 0x10FFFF &&
727 ((uni_cp & 0xFFFF) < 0xFFFE) && /* last two of each plane (nonchars) disallowed */
728 (uni_cp < 0xFDD0 || uni_cp > 0xFDEF)); /* U+FDD0-U+FDEF (nonchars) disallowed */
729 case ENT_HTML_DOC_XHTML:
730 case ENT_HTML_DOC_XML1:
731 /* OTOH, XML 1.0 requires "character references to match the production for Char
732 * See <http://www.w3.org/TR/REC-xml/#NT-CharRef> */
733 return unicode_cp_is_allowed(uni_cp, document_type);
734 default:
735 return 1;
736 }
737 }
738 /* }}} */
739
740 /* {{{ process_numeric_entity
741 * Auxiliary function to traverse_for_entities.
742 * On input, *buf should point to the first character after # and on output, it's the last
743 * byte read, no matter if there was success or insuccess.
744 */
process_numeric_entity(const char ** buf,unsigned * code_point)745 static inline int process_numeric_entity(const char **buf, unsigned *code_point)
746 {
747 zend_long code_l;
748 int hexadecimal = (**buf == 'x' || **buf == 'X'); /* TODO: XML apparently disallows "X" */
749 char *endptr;
750
751 if (hexadecimal && (**buf != '\0'))
752 (*buf)++;
753
754 /* strtol allows whitespace and other stuff in the beginning
755 * we're not interested */
756 if ((hexadecimal && !isxdigit(**buf)) ||
757 (!hexadecimal && !isdigit(**buf))) {
758 return FAILURE;
759 }
760
761 code_l = ZEND_STRTOL(*buf, &endptr, hexadecimal ? 16 : 10);
762 /* we're guaranteed there were valid digits, so *endptr > buf */
763 *buf = endptr;
764
765 if (**buf != ';')
766 return FAILURE;
767
768 /* many more are invalid, but that depends on whether it's HTML
769 * (and which version) or XML. */
770 if (code_l > Z_L(0x10FFFF))
771 return FAILURE;
772
773 if (code_point != NULL)
774 *code_point = (unsigned)code_l;
775
776 return SUCCESS;
777 }
778 /* }}} */
779
780 /* {{{ process_named_entity */
process_named_entity_html(const char ** buf,const char ** start,size_t * length)781 static inline int process_named_entity_html(const char **buf, const char **start, size_t *length)
782 {
783 *start = *buf;
784
785 /* "&" is represented by a 0x26 in all supported encodings. That means
786 * the byte after represents a character or is the leading byte of an
787 * sequence of 8-bit code units. If in the ranges below, it represents
788 * necessarily a alpha character because none of the supported encodings
789 * has an overlap with ASCII in the leading byte (only on the second one) */
790 while ((**buf >= 'a' && **buf <= 'z') ||
791 (**buf >= 'A' && **buf <= 'Z') ||
792 (**buf >= '0' && **buf <= '9')) {
793 (*buf)++;
794 }
795
796 if (**buf != ';')
797 return FAILURE;
798
799 /* cast to size_t OK as the quantity is always non-negative */
800 *length = *buf - *start;
801
802 if (*length == 0)
803 return FAILURE;
804
805 return SUCCESS;
806 }
807 /* }}} */
808
809 /* {{{ resolve_named_entity_html */
resolve_named_entity_html(const char * start,size_t length,const entity_ht * ht,unsigned * uni_cp1,unsigned * uni_cp2)810 static inline int resolve_named_entity_html(const char *start, size_t length, const entity_ht *ht, unsigned *uni_cp1, unsigned *uni_cp2)
811 {
812 const entity_cp_map *s;
813 zend_ulong hash = zend_inline_hash_func(start, length);
814
815 s = ht->buckets[hash % ht->num_elems];
816 while (s->entity) {
817 if (s->entity_len == length) {
818 if (memcmp(start, s->entity, length) == 0) {
819 *uni_cp1 = s->codepoint1;
820 *uni_cp2 = s->codepoint2;
821 return SUCCESS;
822 }
823 }
824 s++;
825 }
826 return FAILURE;
827 }
828 /* }}} */
829
write_octet_sequence(unsigned char * buf,enum entity_charset charset,unsigned code)830 static inline size_t write_octet_sequence(unsigned char *buf, enum entity_charset charset, unsigned code) {
831 /* code is not necessarily a unicode code point */
832 switch (charset) {
833 case cs_utf_8:
834 return php_utf32_utf8(buf, code);
835
836 case cs_8859_1:
837 case cs_cp1252:
838 case cs_8859_15:
839 case cs_koi8r:
840 case cs_cp1251:
841 case cs_8859_5:
842 case cs_cp866:
843 case cs_macroman:
844 /* single byte stuff */
845 *buf = code;
846 return 1;
847
848 case cs_big5:
849 case cs_big5hkscs:
850 case cs_sjis:
851 case cs_gb2312:
852 /* we don't have complete unicode mappings for these yet in entity_decode,
853 * and we opt to pass through the octet sequences for these in htmlentities
854 * instead of converting to an int and then converting back. */
855 #if 0
856 return php_mb2_int_to_char(buf, code);
857 #else
858 #if ZEND_DEBUG
859 assert(code <= 0xFFU);
860 #endif
861 *buf = code;
862 return 1;
863 #endif
864
865 case cs_eucjp:
866 #if 0 /* idem */
867 return php_mb2_int_to_char(buf, code);
868 #else
869 #if ZEND_DEBUG
870 assert(code <= 0xFFU);
871 #endif
872 *buf = code;
873 return 1;
874 #endif
875
876 default:
877 assert(0);
878 return 0;
879 }
880 }
881
882 /* {{{ traverse_for_entities
883 * Auxiliary function to php_unescape_html_entities().
884 * - The argument "all" determines if all numeric entities are decode or only those
885 * that correspond to quotes (depending on quote_style).
886 */
887 /* maximum expansion (factor 1.2) for HTML 5 with ≫⃒ and ≪⃒ */
888 /* +2 is 1 because of rest (probably unnecessary), 1 because of terminating 0 */
889 #define TRAVERSE_FOR_ENTITIES_EXPAND_SIZE(oldlen) ((oldlen) + (oldlen) / 5 + 2)
traverse_for_entities(const char * old,size_t oldlen,zend_string * ret,int all,int flags,const entity_ht * inv_map,enum entity_charset charset)890 static void traverse_for_entities(
891 const char *old,
892 size_t oldlen,
893 zend_string *ret, /* should have allocated TRAVERSE_FOR_ENTITIES_EXPAND_SIZE(olden) */
894 int all,
895 int flags,
896 const entity_ht *inv_map,
897 enum entity_charset charset)
898 {
899 const char *p,
900 *lim;
901 char *q;
902 int doctype = flags & ENT_HTML_DOC_TYPE_MASK;
903
904 lim = old + oldlen; /* terminator address */
905 assert(*lim == '\0');
906
907 for (p = old, q = ZSTR_VAL(ret); p < lim;) {
908 unsigned code, code2 = 0;
909 const char *next = NULL; /* when set, next > p, otherwise possible inf loop */
910
911 /* Shift JIS, Big5 and HKSCS use multi-byte encodings where an
912 * ASCII range byte can be part of a multi-byte sequence.
913 * However, they start at 0x40, therefore if we find a 0x26 byte,
914 * we're sure it represents the '&' character. */
915
916 /* assumes there are no single-char entities */
917 if (p[0] != '&' || (p + 3 >= lim)) {
918 *(q++) = *(p++);
919 continue;
920 }
921
922 /* now p[3] is surely valid and is no terminator */
923
924 /* numerical entity */
925 if (p[1] == '#') {
926 next = &p[2];
927 if (process_numeric_entity(&next, &code) == FAILURE)
928 goto invalid_code;
929
930 /* If we're in htmlspecialchars_decode, we're only decoding entities
931 * that represent &, <, >, " and '. Is this one of them? */
932 if (!all && (code > 63U ||
933 stage3_table_be_apos_00000[code].data.ent.entity == NULL))
934 goto invalid_code;
935
936 /* are we allowed to decode this entity in this document type?
937 * HTML 5 is the only that has a character that cannot be used in
938 * a numeric entity but is allowed literally (U+000D). The
939 * unoptimized version would be ... || !numeric_entity_is_allowed(code) */
940 if (!unicode_cp_is_allowed(code, doctype) ||
941 (doctype == ENT_HTML_DOC_HTML5 && code == 0x0D))
942 goto invalid_code;
943 } else {
944 const char *start;
945 size_t ent_len;
946
947 next = &p[1];
948 start = next;
949
950 if (process_named_entity_html(&next, &start, &ent_len) == FAILURE)
951 goto invalid_code;
952
953 if (resolve_named_entity_html(start, ent_len, inv_map, &code, &code2) == FAILURE) {
954 if (doctype == ENT_HTML_DOC_XHTML && ent_len == 4 && start[0] == 'a'
955 && start[1] == 'p' && start[2] == 'o' && start[3] == 's') {
956 /* uses html4 inv_map, which doesn't include apos;. This is a
957 * hack to support it */
958 code = (unsigned) '\'';
959 } else {
960 goto invalid_code;
961 }
962 }
963 }
964
965 assert(*next == ';');
966
967 if (((code == '\'' && !(flags & ENT_HTML_QUOTE_SINGLE)) ||
968 (code == '"' && !(flags & ENT_HTML_QUOTE_DOUBLE)))
969 /* && code2 == '\0' always true for current maps */)
970 goto invalid_code;
971
972 /* UTF-8 doesn't need mapping (ISO-8859-1 doesn't either, but
973 * the call is needed to ensure the codepoint <= U+00FF) */
974 if (charset != cs_utf_8) {
975 /* replace unicode code point */
976 if (map_from_unicode(code, charset, &code) == FAILURE || code2 != 0)
977 goto invalid_code; /* not representable in target charset */
978 }
979
980 q += write_octet_sequence((unsigned char*)q, charset, code);
981 if (code2) {
982 q += write_octet_sequence((unsigned char*)q, charset, code2);
983 }
984
985 /* jump over the valid entity; may go beyond size of buffer; np */
986 p = next + 1;
987 continue;
988
989 invalid_code:
990 for (; p < next; p++) {
991 *(q++) = *p;
992 }
993 }
994
995 *q = '\0';
996 ZSTR_LEN(ret) = (size_t)(q - ZSTR_VAL(ret));
997 }
998 /* }}} */
999
1000 /* {{{ unescape_inverse_map */
unescape_inverse_map(int all,int flags)1001 static const entity_ht *unescape_inverse_map(int all, int flags)
1002 {
1003 int document_type = flags & ENT_HTML_DOC_TYPE_MASK;
1004
1005 if (all) {
1006 switch (document_type) {
1007 case ENT_HTML_DOC_HTML401:
1008 case ENT_HTML_DOC_XHTML: /* but watch out for '...*/
1009 return &ent_ht_html4;
1010 case ENT_HTML_DOC_HTML5:
1011 return &ent_ht_html5;
1012 default:
1013 return &ent_ht_be_apos;
1014 }
1015 } else {
1016 switch (document_type) {
1017 case ENT_HTML_DOC_HTML401:
1018 return &ent_ht_be_noapos;
1019 default:
1020 return &ent_ht_be_apos;
1021 }
1022 }
1023 }
1024 /* }}} */
1025
1026 /* {{{ determine_entity_table
1027 * Entity table to use. Note that entity tables are defined in terms of
1028 * unicode code points */
determine_entity_table(int all,int doctype)1029 static entity_table_opt determine_entity_table(int all, int doctype)
1030 {
1031 entity_table_opt retval = {NULL};
1032
1033 assert(!(doctype == ENT_HTML_DOC_XML1 && all));
1034
1035 if (all) {
1036 retval.ms_table = (doctype == ENT_HTML_DOC_HTML5) ?
1037 entity_ms_table_html5 : entity_ms_table_html4;
1038 } else {
1039 retval.table = (doctype == ENT_HTML_DOC_HTML401) ?
1040 stage3_table_be_noapos_00000 : stage3_table_be_apos_00000;
1041 }
1042 return retval;
1043 }
1044 /* }}} */
1045
1046 /* {{{ php_unescape_html_entities
1047 * The parameter "all" should be true to decode all possible entities, false to decode
1048 * only the basic ones, i.e., those in basic_entities_ex + the numeric entities
1049 * that correspond to quotes.
1050 */
php_unescape_html_entities(zend_string * str,int all,int flags,char * hint_charset)1051 PHPAPI zend_string *php_unescape_html_entities(zend_string *str, int all, int flags, char *hint_charset)
1052 {
1053 zend_string *ret;
1054 enum entity_charset charset;
1055 const entity_ht *inverse_map;
1056 size_t new_size;
1057
1058 if (!memchr(ZSTR_VAL(str), '&', ZSTR_LEN(str))) {
1059 return zend_string_copy(str);
1060 }
1061
1062 if (all) {
1063 charset = determine_charset(hint_charset);
1064 } else {
1065 charset = cs_8859_1; /* charset shouldn't matter, use ISO-8859-1 for performance */
1066 }
1067
1068 /* don't use LIMIT_ALL! */
1069
1070 new_size = TRAVERSE_FOR_ENTITIES_EXPAND_SIZE(ZSTR_LEN(str));
1071 if (ZSTR_LEN(str) > new_size) {
1072 /* overflow, refuse to do anything */
1073 return zend_string_copy(str);
1074 }
1075
1076 ret = zend_string_alloc(new_size, 0);
1077
1078 inverse_map = unescape_inverse_map(all, flags);
1079
1080 /* replace numeric entities */
1081 traverse_for_entities(ZSTR_VAL(str), ZSTR_LEN(str), ret, all, flags, inverse_map, charset);
1082
1083 return ret;
1084 }
1085 /* }}} */
1086
php_escape_html_entities(unsigned char * old,size_t oldlen,int all,int flags,char * hint_charset)1087 PHPAPI zend_string *php_escape_html_entities(unsigned char *old, size_t oldlen, int all, int flags, char *hint_charset)
1088 {
1089 return php_escape_html_entities_ex(old, oldlen, all, flags, hint_charset, 1);
1090 }
1091
1092 /* {{{ find_entity_for_char */
find_entity_for_char(unsigned int k,enum entity_charset charset,const entity_stage1_row * table,const unsigned char ** entity,size_t * entity_len,unsigned char * old,size_t oldlen,size_t * cursor)1093 static inline void find_entity_for_char(
1094 unsigned int k,
1095 enum entity_charset charset,
1096 const entity_stage1_row *table,
1097 const unsigned char **entity,
1098 size_t *entity_len,
1099 unsigned char *old,
1100 size_t oldlen,
1101 size_t *cursor)
1102 {
1103 unsigned stage1_idx = ENT_STAGE1_INDEX(k);
1104 const entity_stage3_row *c;
1105
1106 if (stage1_idx > 0x1D) {
1107 *entity = NULL;
1108 *entity_len = 0;
1109 return;
1110 }
1111
1112 c = &table[stage1_idx][ENT_STAGE2_INDEX(k)][ENT_STAGE3_INDEX(k)];
1113
1114 if (!c->ambiguous) {
1115 *entity = (const unsigned char *)c->data.ent.entity;
1116 *entity_len = c->data.ent.entity_len;
1117 } else {
1118 /* peek at next char */
1119 size_t cursor_before = *cursor;
1120 int status = SUCCESS;
1121 unsigned next_char;
1122
1123 if (!(*cursor < oldlen))
1124 goto no_suitable_2nd;
1125
1126 next_char = get_next_char(charset, old, oldlen, cursor, &status);
1127
1128 if (status == FAILURE)
1129 goto no_suitable_2nd;
1130
1131 {
1132 const entity_multicodepoint_row *s, *e;
1133
1134 s = &c->data.multicodepoint_table[1];
1135 e = s - 1 + c->data.multicodepoint_table[0].leading_entry.size;
1136 /* we could do a binary search but it's not worth it since we have
1137 * at most two entries... */
1138 for ( ; s <= e; s++) {
1139 if (s->normal_entry.second_cp == next_char) {
1140 *entity = (const unsigned char *) s->normal_entry.entity;
1141 *entity_len = s->normal_entry.entity_len;
1142 return;
1143 }
1144 }
1145 }
1146 no_suitable_2nd:
1147 *cursor = cursor_before;
1148 *entity = (const unsigned char *)
1149 c->data.multicodepoint_table[0].leading_entry.default_entity;
1150 *entity_len = c->data.multicodepoint_table[0].leading_entry.default_entity_len;
1151 }
1152 }
1153 /* }}} */
1154
1155 /* {{{ find_entity_for_char_basic */
find_entity_for_char_basic(unsigned int k,const entity_stage3_row * table,const unsigned char ** entity,size_t * entity_len)1156 static inline void find_entity_for_char_basic(
1157 unsigned int k,
1158 const entity_stage3_row *table,
1159 const unsigned char **entity,
1160 size_t *entity_len)
1161 {
1162 if (k >= 64U) {
1163 *entity = NULL;
1164 *entity_len = 0;
1165 return;
1166 }
1167
1168 *entity = (const unsigned char *) table[k].data.ent.entity;
1169 *entity_len = table[k].data.ent.entity_len;
1170 }
1171 /* }}} */
1172
1173 /* {{{ php_escape_html_entities
1174 */
php_escape_html_entities_ex(unsigned char * old,size_t oldlen,int all,int flags,char * hint_charset,zend_bool double_encode)1175 PHPAPI zend_string *php_escape_html_entities_ex(unsigned char *old, size_t oldlen, int all, int flags, char *hint_charset, zend_bool double_encode)
1176 {
1177 size_t cursor, maxlen, len;
1178 zend_string *replaced;
1179 enum entity_charset charset = determine_charset(hint_charset);
1180 int doctype = flags & ENT_HTML_DOC_TYPE_MASK;
1181 entity_table_opt entity_table;
1182 const enc_to_uni *to_uni_table = NULL;
1183 const entity_ht *inv_map = NULL; /* used for !double_encode */
1184 /* only used if flags includes ENT_HTML_IGNORE_ERRORS or ENT_HTML_SUBSTITUTE_DISALLOWED_CHARS */
1185 const unsigned char *replacement = NULL;
1186 size_t replacement_len = 0;
1187
1188 if (all) { /* replace with all named entities */
1189 if (CHARSET_PARTIAL_SUPPORT(charset)) {
1190 php_error_docref(NULL, E_NOTICE, "Only basic entities "
1191 "substitution is supported for multi-byte encodings other than UTF-8; "
1192 "functionality is equivalent to htmlspecialchars");
1193 }
1194 LIMIT_ALL(all, doctype, charset);
1195 }
1196 entity_table = determine_entity_table(all, doctype);
1197 if (all && !CHARSET_UNICODE_COMPAT(charset)) {
1198 to_uni_table = enc_to_uni_index[charset];
1199 }
1200
1201 if (!double_encode) {
1202 /* first arg is 1 because we want to identify valid named entities
1203 * even if we are only encoding the basic ones */
1204 inv_map = unescape_inverse_map(1, flags);
1205 }
1206
1207 if (flags & (ENT_HTML_SUBSTITUTE_ERRORS | ENT_HTML_SUBSTITUTE_DISALLOWED_CHARS)) {
1208 if (charset == cs_utf_8) {
1209 replacement = (const unsigned char*)"\xEF\xBF\xBD";
1210 replacement_len = sizeof("\xEF\xBF\xBD") - 1;
1211 } else {
1212 replacement = (const unsigned char*)"�";
1213 replacement_len = sizeof("�") - 1;
1214 }
1215 }
1216
1217 /* initial estimate */
1218 if (oldlen < 64) {
1219 maxlen = 128;
1220 } else {
1221 maxlen = zend_safe_addmult(oldlen, 2, 0, "html_entities");
1222 }
1223
1224 replaced = zend_string_alloc(maxlen, 0);
1225 len = 0;
1226 cursor = 0;
1227 while (cursor < oldlen) {
1228 const unsigned char *mbsequence = NULL;
1229 size_t mbseqlen = 0,
1230 cursor_before = cursor;
1231 int status = SUCCESS;
1232 unsigned int this_char = get_next_char(charset, old, oldlen, &cursor, &status);
1233
1234 /* guarantee we have at least 40 bytes to write.
1235 * In HTML5, entities may take up to 33 bytes */
1236 if (len > maxlen - 40) { /* maxlen can never be smaller than 128 */
1237 replaced = zend_string_safe_realloc(replaced, maxlen, 1, 128, 0);
1238 maxlen += 128;
1239 }
1240
1241 if (status == FAILURE) {
1242 /* invalid MB sequence */
1243 if (flags & ENT_HTML_IGNORE_ERRORS) {
1244 continue;
1245 } else if (flags & ENT_HTML_SUBSTITUTE_ERRORS) {
1246 memcpy(&ZSTR_VAL(replaced)[len], replacement, replacement_len);
1247 len += replacement_len;
1248 continue;
1249 } else {
1250 zend_string_efree(replaced);
1251 return ZSTR_EMPTY_ALLOC();
1252 }
1253 } else { /* SUCCESS */
1254 mbsequence = &old[cursor_before];
1255 mbseqlen = cursor - cursor_before;
1256 }
1257
1258 if (this_char != '&') { /* no entity on this position */
1259 const unsigned char *rep = NULL;
1260 size_t rep_len = 0;
1261
1262 if (((this_char == '\'' && !(flags & ENT_HTML_QUOTE_SINGLE)) ||
1263 (this_char == '"' && !(flags & ENT_HTML_QUOTE_DOUBLE))))
1264 goto pass_char_through;
1265
1266 if (all) { /* false that CHARSET_PARTIAL_SUPPORT(charset) */
1267 if (to_uni_table != NULL) {
1268 /* !CHARSET_UNICODE_COMPAT therefore not UTF-8; since UTF-8
1269 * is the only multibyte encoding with !CHARSET_PARTIAL_SUPPORT,
1270 * we're using a single byte encoding */
1271 map_to_unicode(this_char, to_uni_table, &this_char);
1272 if (this_char == 0xFFFF) /* no mapping; pass through */
1273 goto pass_char_through;
1274 }
1275 /* the cursor may advance */
1276 find_entity_for_char(this_char, charset, entity_table.ms_table, &rep,
1277 &rep_len, old, oldlen, &cursor);
1278 } else {
1279 find_entity_for_char_basic(this_char, entity_table.table, &rep, &rep_len);
1280 }
1281
1282 if (rep != NULL) {
1283 ZSTR_VAL(replaced)[len++] = '&';
1284 memcpy(&ZSTR_VAL(replaced)[len], rep, rep_len);
1285 len += rep_len;
1286 ZSTR_VAL(replaced)[len++] = ';';
1287 } else {
1288 /* we did not find an entity for this char.
1289 * check for its validity, if its valid pass it unchanged */
1290 if (flags & ENT_HTML_SUBSTITUTE_DISALLOWED_CHARS) {
1291 if (CHARSET_UNICODE_COMPAT(charset)) {
1292 if (!unicode_cp_is_allowed(this_char, doctype)) {
1293 mbsequence = replacement;
1294 mbseqlen = replacement_len;
1295 }
1296 } else if (to_uni_table) {
1297 if (!all) /* otherwise we already did this */
1298 map_to_unicode(this_char, to_uni_table, &this_char);
1299 if (!unicode_cp_is_allowed(this_char, doctype)) {
1300 mbsequence = replacement;
1301 mbseqlen = replacement_len;
1302 }
1303 } else {
1304 /* not a unicode code point, unless, coincidentally, it's in
1305 * the 0x20..0x7D range (except 0x5C in sjis). We know nothing
1306 * about other code points, because we have no tables. Since
1307 * Unicode code points in that range are not disallowed in any
1308 * document type, we could do nothing. However, conversion
1309 * tables frequently map 0x00-0x1F to the respective C0 code
1310 * points. Let's play it safe and admit that's the case */
1311 if (this_char <= 0x7D &&
1312 !unicode_cp_is_allowed(this_char, doctype)) {
1313 mbsequence = replacement;
1314 mbseqlen = replacement_len;
1315 }
1316 }
1317 }
1318 pass_char_through:
1319 if (mbseqlen > 1) {
1320 memcpy(ZSTR_VAL(replaced) + len, mbsequence, mbseqlen);
1321 len += mbseqlen;
1322 } else {
1323 ZSTR_VAL(replaced)[len++] = mbsequence[0];
1324 }
1325 }
1326 } else { /* this_char == '&' */
1327 if (double_encode) {
1328 encode_amp:
1329 memcpy(&ZSTR_VAL(replaced)[len], "&", sizeof("&") - 1);
1330 len += sizeof("&") - 1;
1331 } else { /* no double encode */
1332 /* check if entity is valid */
1333 size_t ent_len; /* not counting & or ; */
1334 /* peek at next char */
1335 if (old[cursor] == '#') { /* numeric entity */
1336 unsigned code_point;
1337 int valid;
1338 char *pos = (char*)&old[cursor+1];
1339 valid = process_numeric_entity((const char **)&pos, &code_point);
1340 if (valid == FAILURE)
1341 goto encode_amp;
1342 if (flags & ENT_HTML_SUBSTITUTE_DISALLOWED_CHARS) {
1343 if (!numeric_entity_is_allowed(code_point, doctype))
1344 goto encode_amp;
1345 }
1346 ent_len = pos - (char*)&old[cursor];
1347 } else { /* named entity */
1348 /* check for vality of named entity */
1349 const char *start = (const char *) &old[cursor],
1350 *next = start;
1351 unsigned dummy1, dummy2;
1352
1353 if (process_named_entity_html(&next, &start, &ent_len) == FAILURE)
1354 goto encode_amp;
1355 if (resolve_named_entity_html(start, ent_len, inv_map, &dummy1, &dummy2) == FAILURE) {
1356 if (!(doctype == ENT_HTML_DOC_XHTML && ent_len == 4 && start[0] == 'a'
1357 && start[1] == 'p' && start[2] == 'o' && start[3] == 's')) {
1358 /* uses html4 inv_map, which doesn't include apos;. This is a
1359 * hack to support it */
1360 goto encode_amp;
1361 }
1362 }
1363 }
1364 /* checks passed; copy entity to result */
1365 /* entity size is unbounded, we may need more memory */
1366 /* at this point maxlen - len >= 40 */
1367 if (maxlen - len < ent_len + 2 /* & and ; */) {
1368 /* ent_len < oldlen, which is certainly <= SIZE_MAX/2 */
1369 replaced = zend_string_safe_realloc(replaced, maxlen, 1, ent_len + 128, 0);
1370 maxlen += ent_len + 128;
1371 }
1372 ZSTR_VAL(replaced)[len++] = '&';
1373 memcpy(&ZSTR_VAL(replaced)[len], &old[cursor], ent_len);
1374 len += ent_len;
1375 ZSTR_VAL(replaced)[len++] = ';';
1376 cursor += ent_len + 1;
1377 }
1378 }
1379 }
1380 ZSTR_VAL(replaced)[len] = '\0';
1381 ZSTR_LEN(replaced) = len;
1382
1383 return replaced;
1384 }
1385 /* }}} */
1386
1387 /* {{{ php_html_entities
1388 */
php_html_entities(INTERNAL_FUNCTION_PARAMETERS,int all)1389 static void php_html_entities(INTERNAL_FUNCTION_PARAMETERS, int all)
1390 {
1391 zend_string *str, *hint_charset = NULL;
1392 char *default_charset;
1393 zend_long flags = ENT_COMPAT;
1394 zend_string *replaced;
1395 zend_bool double_encode = 1;
1396
1397 ZEND_PARSE_PARAMETERS_START(1, 4)
1398 Z_PARAM_STR(str)
1399 Z_PARAM_OPTIONAL
1400 Z_PARAM_LONG(flags)
1401 Z_PARAM_STR_EX(hint_charset, 1, 0)
1402 Z_PARAM_BOOL(double_encode);
1403 ZEND_PARSE_PARAMETERS_END();
1404
1405 if (!hint_charset) {
1406 default_charset = get_default_charset();
1407 }
1408 replaced = php_escape_html_entities_ex((unsigned char*)ZSTR_VAL(str), ZSTR_LEN(str), all, (int) flags, (hint_charset ? ZSTR_VAL(hint_charset) : default_charset), double_encode);
1409 RETVAL_STR(replaced);
1410 }
1411 /* }}} */
1412
1413 #define HTML_SPECIALCHARS 0
1414 #define HTML_ENTITIES 1
1415
1416 /* {{{ register_html_constants
1417 */
register_html_constants(INIT_FUNC_ARGS)1418 void register_html_constants(INIT_FUNC_ARGS)
1419 {
1420 REGISTER_LONG_CONSTANT("HTML_SPECIALCHARS", HTML_SPECIALCHARS, CONST_PERSISTENT|CONST_CS);
1421 REGISTER_LONG_CONSTANT("HTML_ENTITIES", HTML_ENTITIES, CONST_PERSISTENT|CONST_CS);
1422 REGISTER_LONG_CONSTANT("ENT_COMPAT", ENT_COMPAT, CONST_PERSISTENT|CONST_CS);
1423 REGISTER_LONG_CONSTANT("ENT_QUOTES", ENT_QUOTES, CONST_PERSISTENT|CONST_CS);
1424 REGISTER_LONG_CONSTANT("ENT_NOQUOTES", ENT_NOQUOTES, CONST_PERSISTENT|CONST_CS);
1425 REGISTER_LONG_CONSTANT("ENT_IGNORE", ENT_IGNORE, CONST_PERSISTENT|CONST_CS);
1426 REGISTER_LONG_CONSTANT("ENT_SUBSTITUTE", ENT_SUBSTITUTE, CONST_PERSISTENT|CONST_CS);
1427 REGISTER_LONG_CONSTANT("ENT_DISALLOWED", ENT_DISALLOWED, CONST_PERSISTENT|CONST_CS);
1428 REGISTER_LONG_CONSTANT("ENT_HTML401", ENT_HTML401, CONST_PERSISTENT|CONST_CS);
1429 REGISTER_LONG_CONSTANT("ENT_XML1", ENT_XML1, CONST_PERSISTENT|CONST_CS);
1430 REGISTER_LONG_CONSTANT("ENT_XHTML", ENT_XHTML, CONST_PERSISTENT|CONST_CS);
1431 REGISTER_LONG_CONSTANT("ENT_HTML5", ENT_HTML5, CONST_PERSISTENT|CONST_CS);
1432 }
1433 /* }}} */
1434
1435 /* {{{ proto string htmlspecialchars(string string [, int quote_style[, string encoding[, bool double_encode]]])
1436 Convert special characters to HTML entities */
PHP_FUNCTION(htmlspecialchars)1437 PHP_FUNCTION(htmlspecialchars)
1438 {
1439 php_html_entities(INTERNAL_FUNCTION_PARAM_PASSTHRU, 0);
1440 }
1441 /* }}} */
1442
1443 /* {{{ proto string htmlspecialchars_decode(string string [, int quote_style])
1444 Convert special HTML entities back to characters */
PHP_FUNCTION(htmlspecialchars_decode)1445 PHP_FUNCTION(htmlspecialchars_decode)
1446 {
1447 zend_string *str;
1448 zend_long quote_style = ENT_COMPAT;
1449 zend_string *replaced;
1450
1451 ZEND_PARSE_PARAMETERS_START(1, 2)
1452 Z_PARAM_STR(str)
1453 Z_PARAM_OPTIONAL
1454 Z_PARAM_LONG(quote_style)
1455 ZEND_PARSE_PARAMETERS_END();
1456
1457 replaced = php_unescape_html_entities(str, 0 /*!all*/, (int)quote_style, NULL);
1458 if (replaced) {
1459 RETURN_STR(replaced);
1460 }
1461 RETURN_FALSE;
1462 }
1463 /* }}} */
1464
1465 /* {{{ proto string html_entity_decode(string string [, int quote_style][, string encoding])
1466 Convert all HTML entities to their applicable characters */
PHP_FUNCTION(html_entity_decode)1467 PHP_FUNCTION(html_entity_decode)
1468 {
1469 zend_string *str, *hint_charset = NULL;
1470 char *default_charset;
1471 zend_long quote_style = ENT_COMPAT;
1472 zend_string *replaced;
1473
1474 ZEND_PARSE_PARAMETERS_START(1, 3)
1475 Z_PARAM_STR(str)
1476 Z_PARAM_OPTIONAL
1477 Z_PARAM_LONG(quote_style)
1478 Z_PARAM_STR(hint_charset)
1479 ZEND_PARSE_PARAMETERS_END();
1480
1481 if (!hint_charset) {
1482 default_charset = get_default_charset();
1483 }
1484 replaced = php_unescape_html_entities(str, 1 /*all*/, (int)quote_style, (hint_charset ? ZSTR_VAL(hint_charset) : default_charset));
1485
1486 if (replaced) {
1487 RETURN_STR(replaced);
1488 }
1489 RETURN_FALSE;
1490 }
1491 /* }}} */
1492
1493
1494 /* {{{ proto string htmlentities(string string [, int quote_style[, string encoding[, bool double_encode]]])
1495 Convert all applicable characters to HTML entities */
PHP_FUNCTION(htmlentities)1496 PHP_FUNCTION(htmlentities)
1497 {
1498 php_html_entities(INTERNAL_FUNCTION_PARAM_PASSTHRU, 1);
1499 }
1500 /* }}} */
1501
1502 /* {{{ write_s3row_data */
write_s3row_data(const entity_stage3_row * r,unsigned orig_cp,enum entity_charset charset,zval * arr)1503 static inline void write_s3row_data(
1504 const entity_stage3_row *r,
1505 unsigned orig_cp,
1506 enum entity_charset charset,
1507 zval *arr)
1508 {
1509 char key[9] = ""; /* two unicode code points in UTF-8 */
1510 char entity[LONGEST_ENTITY_LENGTH + 2] = {'&'};
1511 size_t written_k1;
1512
1513 written_k1 = write_octet_sequence((unsigned char*)key, charset, orig_cp);
1514
1515 if (!r->ambiguous) {
1516 size_t l = r->data.ent.entity_len;
1517 memcpy(&entity[1], r->data.ent.entity, l);
1518 entity[l + 1] = ';';
1519 add_assoc_stringl_ex(arr, key, written_k1, entity, l + 2);
1520 } else {
1521 unsigned i,
1522 num_entries;
1523 const entity_multicodepoint_row *mcpr = r->data.multicodepoint_table;
1524
1525 if (mcpr[0].leading_entry.default_entity != NULL) {
1526 size_t l = mcpr[0].leading_entry.default_entity_len;
1527 memcpy(&entity[1], mcpr[0].leading_entry.default_entity, l);
1528 entity[l + 1] = ';';
1529 add_assoc_stringl_ex(arr, key, written_k1, entity, l + 2);
1530 }
1531 num_entries = mcpr[0].leading_entry.size;
1532 for (i = 1; i <= num_entries; i++) {
1533 size_t l,
1534 written_k2;
1535 unsigned uni_cp,
1536 spe_cp;
1537
1538 uni_cp = mcpr[i].normal_entry.second_cp;
1539 l = mcpr[i].normal_entry.entity_len;
1540
1541 if (!CHARSET_UNICODE_COMPAT(charset)) {
1542 if (map_from_unicode(uni_cp, charset, &spe_cp) == FAILURE)
1543 continue; /* non representable in this charset */
1544 } else {
1545 spe_cp = uni_cp;
1546 }
1547
1548 written_k2 = write_octet_sequence((unsigned char*)&key[written_k1], charset, spe_cp);
1549 memcpy(&entity[1], mcpr[i].normal_entry.entity, l);
1550 entity[l + 1] = ';';
1551 add_assoc_stringl_ex(arr, key, written_k1 + written_k2, entity, l + 2);
1552 }
1553 }
1554 }
1555 /* }}} */
1556
1557 /* {{{ proto array get_html_translation_table([int table [, int flags [, string encoding]]])
1558 Returns the internal translation table used by htmlspecialchars and htmlentities */
PHP_FUNCTION(get_html_translation_table)1559 PHP_FUNCTION(get_html_translation_table)
1560 {
1561 zend_long all = HTML_SPECIALCHARS,
1562 flags = ENT_COMPAT;
1563 int doctype;
1564 entity_table_opt entity_table;
1565 const enc_to_uni *to_uni_table = NULL;
1566 char *charset_hint = NULL;
1567 size_t charset_hint_len;
1568 enum entity_charset charset;
1569
1570 /* in this function we have to jump through some loops because we're
1571 * getting the translated table from data structures that are optimized for
1572 * random access, not traversal */
1573
1574 ZEND_PARSE_PARAMETERS_START(0, 3)
1575 Z_PARAM_OPTIONAL
1576 Z_PARAM_LONG(all)
1577 Z_PARAM_LONG(flags)
1578 Z_PARAM_STRING(charset_hint, charset_hint_len)
1579 ZEND_PARSE_PARAMETERS_END();
1580
1581 charset = determine_charset(charset_hint);
1582 doctype = flags & ENT_HTML_DOC_TYPE_MASK;
1583 LIMIT_ALL(all, doctype, charset);
1584
1585 array_init(return_value);
1586
1587 entity_table = determine_entity_table((int)all, doctype);
1588 if (all && !CHARSET_UNICODE_COMPAT(charset)) {
1589 to_uni_table = enc_to_uni_index[charset];
1590 }
1591
1592 if (all) { /* HTML_ENTITIES (actually, any non-zero value for 1st param) */
1593 const entity_stage1_row *ms_table = entity_table.ms_table;
1594
1595 if (CHARSET_UNICODE_COMPAT(charset)) {
1596 unsigned i, j, k,
1597 max_i, max_j, max_k;
1598 /* no mapping to unicode required */
1599 if (CHARSET_SINGLE_BYTE(charset)) { /* ISO-8859-1 */
1600 max_i = 1; max_j = 4; max_k = 64;
1601 } else {
1602 max_i = 0x1E; max_j = 64; max_k = 64;
1603 }
1604
1605 for (i = 0; i < max_i; i++) {
1606 if (ms_table[i] == empty_stage2_table)
1607 continue;
1608 for (j = 0; j < max_j; j++) {
1609 if (ms_table[i][j] == empty_stage3_table)
1610 continue;
1611 for (k = 0; k < max_k; k++) {
1612 const entity_stage3_row *r = &ms_table[i][j][k];
1613 unsigned code;
1614
1615 if (r->data.ent.entity == NULL)
1616 continue;
1617
1618 code = ENT_CODE_POINT_FROM_STAGES(i, j, k);
1619 if (((code == '\'' && !(flags & ENT_HTML_QUOTE_SINGLE)) ||
1620 (code == '"' && !(flags & ENT_HTML_QUOTE_DOUBLE))))
1621 continue;
1622 write_s3row_data(r, code, charset, return_value);
1623 }
1624 }
1625 }
1626 } else {
1627 /* we have to iterate through the set of code points for this
1628 * encoding and map them to unicode code points */
1629 unsigned i;
1630 for (i = 0; i <= 0xFF; i++) {
1631 const entity_stage3_row *r;
1632 unsigned uni_cp;
1633
1634 /* can be done before mapping, they're invariant */
1635 if (((i == '\'' && !(flags & ENT_HTML_QUOTE_SINGLE)) ||
1636 (i == '"' && !(flags & ENT_HTML_QUOTE_DOUBLE))))
1637 continue;
1638
1639 map_to_unicode(i, to_uni_table, &uni_cp);
1640 r = &ms_table[ENT_STAGE1_INDEX(uni_cp)][ENT_STAGE2_INDEX(uni_cp)][ENT_STAGE3_INDEX(uni_cp)];
1641 if (r->data.ent.entity == NULL)
1642 continue;
1643
1644 write_s3row_data(r, i, charset, return_value);
1645 }
1646 }
1647 } else {
1648 /* we could use sizeof(stage3_table_be_apos_00000) as well */
1649 unsigned j,
1650 numelems = sizeof(stage3_table_be_noapos_00000) /
1651 sizeof(*stage3_table_be_noapos_00000);
1652
1653 for (j = 0; j < numelems; j++) {
1654 const entity_stage3_row *r = &entity_table.table[j];
1655 if (r->data.ent.entity == NULL)
1656 continue;
1657
1658 if (((j == '\'' && !(flags & ENT_HTML_QUOTE_SINGLE)) ||
1659 (j == '"' && !(flags & ENT_HTML_QUOTE_DOUBLE))))
1660 continue;
1661
1662 /* charset is indifferent, used cs_8859_1 for efficiency */
1663 write_s3row_data(r, j, cs_8859_1, return_value);
1664 }
1665 }
1666 }
1667 /* }}} */
1668