blob: db92247da2a260e69766cfbc27d88a6be2451050 [file] [log] [blame]
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001/* Copyright (c) 1998, 1999 Thai Open Source Software Center Ltd
2 See the file COPYING for copying permission.
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00003*/
4
5#ifdef COMPILED_FROM_DSP
Martin v. Löwisfc03a942003-01-25 22:41:29 +00006#include "winconfig.h"
7#elif defined(MACOS_CLASSIC)
8#include "macconfig.h"
Thomas Wouters0e3f5912006-08-11 14:57:12 +00009#elif defined(__amigaos4__)
10#include "amigaconfig.h"
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000011#else
Fred Drake08317ae2003-10-21 15:38:55 +000012#ifdef HAVE_EXPAT_CONFIG_H
Martin v. Löwisfc03a942003-01-25 22:41:29 +000013#include <expat_config.h>
Fred Drake08317ae2003-10-21 15:38:55 +000014#endif
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000015#endif /* ndef COMPILED_FROM_DSP */
16
Thomas Wouters477c8d52006-05-27 19:21:47 +000017#include <stddef.h>
18
Fred Drake31d485c2004-08-03 07:06:22 +000019#include "expat_external.h"
Martin v. Löwisfc03a942003-01-25 22:41:29 +000020#include "internal.h"
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000021#include "xmltok.h"
22#include "nametab.h"
23
24#ifdef XML_DTD
25#define IGNORE_SECTION_TOK_VTABLE , PREFIX(ignoreSectionTok)
26#else
27#define IGNORE_SECTION_TOK_VTABLE /* as nothing */
28#endif
29
30#define VTABLE1 \
31 { PREFIX(prologTok), PREFIX(contentTok), \
32 PREFIX(cdataSectionTok) IGNORE_SECTION_TOK_VTABLE }, \
33 { PREFIX(attributeValueTok), PREFIX(entityValueTok) }, \
34 PREFIX(sameName), \
35 PREFIX(nameMatchesAscii), \
36 PREFIX(nameLength), \
37 PREFIX(skipS), \
38 PREFIX(getAtts), \
39 PREFIX(charRefNumber), \
40 PREFIX(predefinedEntityName), \
41 PREFIX(updatePosition), \
42 PREFIX(isPublicId)
43
44#define VTABLE VTABLE1, PREFIX(toUtf8), PREFIX(toUtf16)
45
46#define UCS2_GET_NAMING(pages, hi, lo) \
47 (namingBitmap[(pages[hi] << 3) + ((lo) >> 5)] & (1 << ((lo) & 0x1F)))
48
Martin v. Löwisfc03a942003-01-25 22:41:29 +000049/* A 2 byte UTF-8 representation splits the characters 11 bits between
50 the bottom 5 and 6 bits of the bytes. We need 8 bits to index into
51 pages, 3 bits to add to that index and 5 bits to generate the mask.
52*/
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000053#define UTF8_GET_NAMING2(pages, byte) \
54 (namingBitmap[((pages)[(((byte)[0]) >> 2) & 7] << 3) \
55 + ((((byte)[0]) & 3) << 1) \
56 + ((((byte)[1]) >> 5) & 1)] \
57 & (1 << (((byte)[1]) & 0x1F)))
58
Martin v. Löwisfc03a942003-01-25 22:41:29 +000059/* A 3 byte UTF-8 representation splits the characters 16 bits between
60 the bottom 4, 6 and 6 bits of the bytes. We need 8 bits to index
61 into pages, 3 bits to add to that index and 5 bits to generate the
62 mask.
63*/
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000064#define UTF8_GET_NAMING3(pages, byte) \
65 (namingBitmap[((pages)[((((byte)[0]) & 0xF) << 4) \
66 + ((((byte)[1]) >> 2) & 0xF)] \
Martin v. Löwisfc03a942003-01-25 22:41:29 +000067 << 3) \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000068 + ((((byte)[1]) & 3) << 1) \
69 + ((((byte)[2]) >> 5) & 1)] \
70 & (1 << (((byte)[2]) & 0x1F)))
71
72#define UTF8_GET_NAMING(pages, p, n) \
73 ((n) == 2 \
74 ? UTF8_GET_NAMING2(pages, (const unsigned char *)(p)) \
75 : ((n) == 3 \
76 ? UTF8_GET_NAMING3(pages, (const unsigned char *)(p)) \
77 : 0))
78
Martin v. Löwisfc03a942003-01-25 22:41:29 +000079/* Detection of invalid UTF-8 sequences is based on Table 3.1B
80 of Unicode 3.2: http://www.unicode.org/unicode/reports/tr28/
81 with the additional restriction of not allowing the Unicode
82 code points 0xFFFF and 0xFFFE (sequences EF,BF,BF and EF,BF,BE).
83 Implementation details:
84 (A & 0x80) == 0 means A < 0x80
85 and
86 (A & 0xC0) == 0xC0 means A > 0xBF
87*/
88
89#define UTF8_INVALID2(p) \
90 ((*p) < 0xC2 || ((p)[1] & 0x80) == 0 || ((p)[1] & 0xC0) == 0xC0)
91
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +000092#define UTF8_INVALID3(p) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +000093 (((p)[2] & 0x80) == 0 \
94 || \
95 ((*p) == 0xEF && (p)[1] == 0xBF \
96 ? \
97 (p)[2] > 0xBD \
98 : \
99 ((p)[2] & 0xC0) == 0xC0) \
100 || \
101 ((*p) == 0xE0 \
102 ? \
103 (p)[1] < 0xA0 || ((p)[1] & 0xC0) == 0xC0 \
104 : \
105 ((p)[1] & 0x80) == 0 \
106 || \
107 ((*p) == 0xED ? (p)[1] > 0x9F : ((p)[1] & 0xC0) == 0xC0)))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000108
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000109#define UTF8_INVALID4(p) \
110 (((p)[3] & 0x80) == 0 || ((p)[3] & 0xC0) == 0xC0 \
111 || \
112 ((p)[2] & 0x80) == 0 || ((p)[2] & 0xC0) == 0xC0 \
113 || \
114 ((*p) == 0xF0 \
115 ? \
116 (p)[1] < 0x90 || ((p)[1] & 0xC0) == 0xC0 \
117 : \
118 ((p)[1] & 0x80) == 0 \
119 || \
120 ((*p) == 0xF4 ? (p)[1] > 0x8F : ((p)[1] & 0xC0) == 0xC0)))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000121
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000122static int PTRFASTCALL
123isNever(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000124{
125 return 0;
126}
127
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000128static int PTRFASTCALL
129utf8_isName2(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000130{
131 return UTF8_GET_NAMING2(namePages, (const unsigned char *)p);
132}
133
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000134static int PTRFASTCALL
135utf8_isName3(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000136{
137 return UTF8_GET_NAMING3(namePages, (const unsigned char *)p);
138}
139
140#define utf8_isName4 isNever
141
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000142static int PTRFASTCALL
143utf8_isNmstrt2(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000144{
145 return UTF8_GET_NAMING2(nmstrtPages, (const unsigned char *)p);
146}
147
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000148static int PTRFASTCALL
149utf8_isNmstrt3(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000150{
151 return UTF8_GET_NAMING3(nmstrtPages, (const unsigned char *)p);
152}
153
154#define utf8_isNmstrt4 isNever
155
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000156static int PTRFASTCALL
157utf8_isInvalid2(const ENCODING *enc, const char *p)
158{
159 return UTF8_INVALID2((const unsigned char *)p);
160}
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000161
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000162static int PTRFASTCALL
163utf8_isInvalid3(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000164{
165 return UTF8_INVALID3((const unsigned char *)p);
166}
167
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000168static int PTRFASTCALL
169utf8_isInvalid4(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000170{
171 return UTF8_INVALID4((const unsigned char *)p);
172}
173
174struct normal_encoding {
175 ENCODING enc;
176 unsigned char type[256];
177#ifdef XML_MIN_SIZE
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000178 int (PTRFASTCALL *byteType)(const ENCODING *, const char *);
179 int (PTRFASTCALL *isNameMin)(const ENCODING *, const char *);
180 int (PTRFASTCALL *isNmstrtMin)(const ENCODING *, const char *);
181 int (PTRFASTCALL *byteToAscii)(const ENCODING *, const char *);
182 int (PTRCALL *charMatches)(const ENCODING *, const char *, int);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000183#endif /* XML_MIN_SIZE */
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000184 int (PTRFASTCALL *isName2)(const ENCODING *, const char *);
185 int (PTRFASTCALL *isName3)(const ENCODING *, const char *);
186 int (PTRFASTCALL *isName4)(const ENCODING *, const char *);
187 int (PTRFASTCALL *isNmstrt2)(const ENCODING *, const char *);
188 int (PTRFASTCALL *isNmstrt3)(const ENCODING *, const char *);
189 int (PTRFASTCALL *isNmstrt4)(const ENCODING *, const char *);
190 int (PTRFASTCALL *isInvalid2)(const ENCODING *, const char *);
191 int (PTRFASTCALL *isInvalid3)(const ENCODING *, const char *);
192 int (PTRFASTCALL *isInvalid4)(const ENCODING *, const char *);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000193};
194
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000195#define AS_NORMAL_ENCODING(enc) ((const struct normal_encoding *) (enc))
196
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000197#ifdef XML_MIN_SIZE
198
199#define STANDARD_VTABLE(E) \
200 E ## byteType, \
201 E ## isNameMin, \
202 E ## isNmstrtMin, \
203 E ## byteToAscii, \
204 E ## charMatches,
205
206#else
207
208#define STANDARD_VTABLE(E) /* as nothing */
209
210#endif
211
212#define NORMAL_VTABLE(E) \
213 E ## isName2, \
214 E ## isName3, \
215 E ## isName4, \
216 E ## isNmstrt2, \
217 E ## isNmstrt3, \
218 E ## isNmstrt4, \
219 E ## isInvalid2, \
220 E ## isInvalid3, \
221 E ## isInvalid4
222
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000223static int FASTCALL checkCharRefNumber(int);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000224
225#include "xmltok_impl.h"
226#include "ascii.h"
227
228#ifdef XML_MIN_SIZE
229#define sb_isNameMin isNever
230#define sb_isNmstrtMin isNever
231#endif
232
233#ifdef XML_MIN_SIZE
234#define MINBPC(enc) ((enc)->minBytesPerChar)
235#else
236/* minimum bytes per character */
237#define MINBPC(enc) 1
238#endif
239
240#define SB_BYTE_TYPE(enc, p) \
241 (((struct normal_encoding *)(enc))->type[(unsigned char)*(p)])
242
243#ifdef XML_MIN_SIZE
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000244static int PTRFASTCALL
245sb_byteType(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000246{
247 return SB_BYTE_TYPE(enc, p);
248}
249#define BYTE_TYPE(enc, p) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000250 (AS_NORMAL_ENCODING(enc)->byteType(enc, p))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000251#else
252#define BYTE_TYPE(enc, p) SB_BYTE_TYPE(enc, p)
253#endif
254
255#ifdef XML_MIN_SIZE
256#define BYTE_TO_ASCII(enc, p) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000257 (AS_NORMAL_ENCODING(enc)->byteToAscii(enc, p))
258static int PTRFASTCALL
259sb_byteToAscii(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000260{
261 return *p;
262}
263#else
264#define BYTE_TO_ASCII(enc, p) (*(p))
265#endif
266
267#define IS_NAME_CHAR(enc, p, n) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000268 (AS_NORMAL_ENCODING(enc)->isName ## n(enc, p))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000269#define IS_NMSTRT_CHAR(enc, p, n) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000270 (AS_NORMAL_ENCODING(enc)->isNmstrt ## n(enc, p))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000271#define IS_INVALID_CHAR(enc, p, n) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000272 (AS_NORMAL_ENCODING(enc)->isInvalid ## n(enc, p))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000273
274#ifdef XML_MIN_SIZE
275#define IS_NAME_CHAR_MINBPC(enc, p) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000276 (AS_NORMAL_ENCODING(enc)->isNameMin(enc, p))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000277#define IS_NMSTRT_CHAR_MINBPC(enc, p) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000278 (AS_NORMAL_ENCODING(enc)->isNmstrtMin(enc, p))
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000279#else
280#define IS_NAME_CHAR_MINBPC(enc, p) (0)
281#define IS_NMSTRT_CHAR_MINBPC(enc, p) (0)
282#endif
283
284#ifdef XML_MIN_SIZE
285#define CHAR_MATCHES(enc, p, c) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000286 (AS_NORMAL_ENCODING(enc)->charMatches(enc, p, c))
287static int PTRCALL
288sb_charMatches(const ENCODING *enc, const char *p, int c)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000289{
290 return *p == c;
291}
292#else
293/* c is an ASCII character */
294#define CHAR_MATCHES(enc, p, c) (*(p) == c)
295#endif
296
297#define PREFIX(ident) normal_ ## ident
298#include "xmltok_impl.c"
299
300#undef MINBPC
301#undef BYTE_TYPE
302#undef BYTE_TO_ASCII
303#undef CHAR_MATCHES
304#undef IS_NAME_CHAR
305#undef IS_NAME_CHAR_MINBPC
306#undef IS_NMSTRT_CHAR
307#undef IS_NMSTRT_CHAR_MINBPC
308#undef IS_INVALID_CHAR
309
310enum { /* UTF8_cvalN is value of masked first byte of N byte sequence */
311 UTF8_cval1 = 0x00,
312 UTF8_cval2 = 0xc0,
313 UTF8_cval3 = 0xe0,
314 UTF8_cval4 = 0xf0
315};
316
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000317static void PTRCALL
318utf8_toUtf8(const ENCODING *enc,
319 const char **fromP, const char *fromLim,
320 char **toP, const char *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000321{
322 char *to;
323 const char *from;
324 if (fromLim - *fromP > toLim - *toP) {
325 /* Avoid copying partial characters. */
326 for (fromLim = *fromP + (toLim - *toP); fromLim > *fromP; fromLim--)
327 if (((unsigned char)fromLim[-1] & 0xc0) != 0x80)
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000328 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000329 }
330 for (to = *toP, from = *fromP; from != fromLim; from++, to++)
331 *to = *from;
332 *fromP = from;
333 *toP = to;
334}
335
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000336static void PTRCALL
337utf8_toUtf16(const ENCODING *enc,
338 const char **fromP, const char *fromLim,
339 unsigned short **toP, const unsigned short *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000340{
341 unsigned short *to = *toP;
342 const char *from = *fromP;
343 while (from != fromLim && to != toLim) {
344 switch (((struct normal_encoding *)enc)->type[(unsigned char)*from]) {
345 case BT_LEAD2:
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000346 *to++ = (unsigned short)(((from[0] & 0x1f) << 6) | (from[1] & 0x3f));
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000347 from += 2;
348 break;
349 case BT_LEAD3:
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000350 *to++ = (unsigned short)(((from[0] & 0xf) << 12)
351 | ((from[1] & 0x3f) << 6) | (from[2] & 0x3f));
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000352 from += 3;
353 break;
354 case BT_LEAD4:
355 {
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000356 unsigned long n;
357 if (to + 1 == toLim)
358 goto after;
359 n = ((from[0] & 0x7) << 18) | ((from[1] & 0x3f) << 12)
360 | ((from[2] & 0x3f) << 6) | (from[3] & 0x3f);
361 n -= 0x10000;
362 to[0] = (unsigned short)((n >> 10) | 0xD800);
363 to[1] = (unsigned short)((n & 0x3FF) | 0xDC00);
364 to += 2;
365 from += 4;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000366 }
367 break;
368 default:
369 *to++ = *from++;
370 break;
371 }
372 }
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000373after:
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000374 *fromP = from;
375 *toP = to;
376}
377
378#ifdef XML_NS
379static const struct normal_encoding utf8_encoding_ns = {
380 { VTABLE1, utf8_toUtf8, utf8_toUtf16, 1, 1, 0 },
381 {
382#include "asciitab.h"
383#include "utf8tab.h"
384 },
385 STANDARD_VTABLE(sb_) NORMAL_VTABLE(utf8_)
386};
387#endif
388
389static const struct normal_encoding utf8_encoding = {
390 { VTABLE1, utf8_toUtf8, utf8_toUtf16, 1, 1, 0 },
391 {
392#define BT_COLON BT_NMSTRT
393#include "asciitab.h"
394#undef BT_COLON
395#include "utf8tab.h"
396 },
397 STANDARD_VTABLE(sb_) NORMAL_VTABLE(utf8_)
398};
399
400#ifdef XML_NS
401
402static const struct normal_encoding internal_utf8_encoding_ns = {
403 { VTABLE1, utf8_toUtf8, utf8_toUtf16, 1, 1, 0 },
404 {
405#include "iasciitab.h"
406#include "utf8tab.h"
407 },
408 STANDARD_VTABLE(sb_) NORMAL_VTABLE(utf8_)
409};
410
411#endif
412
413static const struct normal_encoding internal_utf8_encoding = {
414 { VTABLE1, utf8_toUtf8, utf8_toUtf16, 1, 1, 0 },
415 {
416#define BT_COLON BT_NMSTRT
417#include "iasciitab.h"
418#undef BT_COLON
419#include "utf8tab.h"
420 },
421 STANDARD_VTABLE(sb_) NORMAL_VTABLE(utf8_)
422};
423
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000424static void PTRCALL
425latin1_toUtf8(const ENCODING *enc,
426 const char **fromP, const char *fromLim,
427 char **toP, const char *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000428{
429 for (;;) {
430 unsigned char c;
431 if (*fromP == fromLim)
432 break;
433 c = (unsigned char)**fromP;
434 if (c & 0x80) {
435 if (toLim - *toP < 2)
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000436 break;
437 *(*toP)++ = (char)((c >> 6) | UTF8_cval2);
438 *(*toP)++ = (char)((c & 0x3f) | 0x80);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000439 (*fromP)++;
440 }
441 else {
442 if (*toP == toLim)
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000443 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000444 *(*toP)++ = *(*fromP)++;
445 }
446 }
447}
448
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000449static void PTRCALL
450latin1_toUtf16(const ENCODING *enc,
451 const char **fromP, const char *fromLim,
452 unsigned short **toP, const unsigned short *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000453{
454 while (*fromP != fromLim && *toP != toLim)
455 *(*toP)++ = (unsigned char)*(*fromP)++;
456}
457
458#ifdef XML_NS
459
460static const struct normal_encoding latin1_encoding_ns = {
461 { VTABLE1, latin1_toUtf8, latin1_toUtf16, 1, 0, 0 },
462 {
463#include "asciitab.h"
464#include "latin1tab.h"
465 },
466 STANDARD_VTABLE(sb_)
467};
468
469#endif
470
471static const struct normal_encoding latin1_encoding = {
472 { VTABLE1, latin1_toUtf8, latin1_toUtf16, 1, 0, 0 },
473 {
474#define BT_COLON BT_NMSTRT
475#include "asciitab.h"
476#undef BT_COLON
477#include "latin1tab.h"
478 },
479 STANDARD_VTABLE(sb_)
480};
481
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000482static void PTRCALL
483ascii_toUtf8(const ENCODING *enc,
484 const char **fromP, const char *fromLim,
485 char **toP, const char *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000486{
487 while (*fromP != fromLim && *toP != toLim)
488 *(*toP)++ = *(*fromP)++;
489}
490
491#ifdef XML_NS
492
493static const struct normal_encoding ascii_encoding_ns = {
494 { VTABLE1, ascii_toUtf8, latin1_toUtf16, 1, 1, 0 },
495 {
496#include "asciitab.h"
497/* BT_NONXML == 0 */
498 },
499 STANDARD_VTABLE(sb_)
500};
501
502#endif
503
504static const struct normal_encoding ascii_encoding = {
505 { VTABLE1, ascii_toUtf8, latin1_toUtf16, 1, 1, 0 },
506 {
507#define BT_COLON BT_NMSTRT
508#include "asciitab.h"
509#undef BT_COLON
510/* BT_NONXML == 0 */
511 },
512 STANDARD_VTABLE(sb_)
513};
514
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000515static int PTRFASTCALL
516unicode_byte_type(char hi, char lo)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000517{
518 switch ((unsigned char)hi) {
519 case 0xD8: case 0xD9: case 0xDA: case 0xDB:
520 return BT_LEAD4;
521 case 0xDC: case 0xDD: case 0xDE: case 0xDF:
522 return BT_TRAIL;
523 case 0xFF:
524 switch ((unsigned char)lo) {
525 case 0xFF:
526 case 0xFE:
527 return BT_NONXML;
528 }
529 break;
530 }
531 return BT_NONASCII;
532}
533
534#define DEFINE_UTF16_TO_UTF8(E) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000535static void PTRCALL \
536E ## toUtf8(const ENCODING *enc, \
537 const char **fromP, const char *fromLim, \
538 char **toP, const char *toLim) \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000539{ \
540 const char *from; \
541 for (from = *fromP; from != fromLim; from += 2) { \
542 int plane; \
543 unsigned char lo2; \
544 unsigned char lo = GET_LO(from); \
545 unsigned char hi = GET_HI(from); \
546 switch (hi) { \
547 case 0: \
548 if (lo < 0x80) { \
549 if (*toP == toLim) { \
550 *fromP = from; \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000551 return; \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000552 } \
553 *(*toP)++ = lo; \
554 break; \
555 } \
556 /* fall through */ \
557 case 0x1: case 0x2: case 0x3: \
558 case 0x4: case 0x5: case 0x6: case 0x7: \
559 if (toLim - *toP < 2) { \
560 *fromP = from; \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000561 return; \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000562 } \
563 *(*toP)++ = ((lo >> 6) | (hi << 2) | UTF8_cval2); \
564 *(*toP)++ = ((lo & 0x3f) | 0x80); \
565 break; \
566 default: \
567 if (toLim - *toP < 3) { \
568 *fromP = from; \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000569 return; \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000570 } \
571 /* 16 bits divided 4, 6, 6 amongst 3 bytes */ \
572 *(*toP)++ = ((hi >> 4) | UTF8_cval3); \
573 *(*toP)++ = (((hi & 0xf) << 2) | (lo >> 6) | 0x80); \
574 *(*toP)++ = ((lo & 0x3f) | 0x80); \
575 break; \
576 case 0xD8: case 0xD9: case 0xDA: case 0xDB: \
577 if (toLim - *toP < 4) { \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000578 *fromP = from; \
579 return; \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000580 } \
581 plane = (((hi & 0x3) << 2) | ((lo >> 6) & 0x3)) + 1; \
582 *(*toP)++ = ((plane >> 2) | UTF8_cval4); \
583 *(*toP)++ = (((lo >> 2) & 0xF) | ((plane & 0x3) << 4) | 0x80); \
584 from += 2; \
585 lo2 = GET_LO(from); \
586 *(*toP)++ = (((lo & 0x3) << 4) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000587 | ((GET_HI(from) & 0x3) << 2) \
588 | (lo2 >> 6) \
589 | 0x80); \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000590 *(*toP)++ = ((lo2 & 0x3f) | 0x80); \
591 break; \
592 } \
593 } \
594 *fromP = from; \
595}
596
597#define DEFINE_UTF16_TO_UTF16(E) \
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000598static void PTRCALL \
599E ## toUtf16(const ENCODING *enc, \
600 const char **fromP, const char *fromLim, \
601 unsigned short **toP, const unsigned short *toLim) \
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000602{ \
603 /* Avoid copying first half only of surrogate */ \
604 if (fromLim - *fromP > ((toLim - *toP) << 1) \
605 && (GET_HI(fromLim - 2) & 0xF8) == 0xD8) \
606 fromLim -= 2; \
607 for (; *fromP != fromLim && *toP != toLim; *fromP += 2) \
608 *(*toP)++ = (GET_HI(*fromP) << 8) | GET_LO(*fromP); \
609}
610
611#define SET2(ptr, ch) \
612 (((ptr)[0] = ((ch) & 0xff)), ((ptr)[1] = ((ch) >> 8)))
613#define GET_LO(ptr) ((unsigned char)(ptr)[0])
614#define GET_HI(ptr) ((unsigned char)(ptr)[1])
615
616DEFINE_UTF16_TO_UTF8(little2_)
617DEFINE_UTF16_TO_UTF16(little2_)
618
619#undef SET2
620#undef GET_LO
621#undef GET_HI
622
623#define SET2(ptr, ch) \
624 (((ptr)[0] = ((ch) >> 8)), ((ptr)[1] = ((ch) & 0xFF)))
625#define GET_LO(ptr) ((unsigned char)(ptr)[1])
626#define GET_HI(ptr) ((unsigned char)(ptr)[0])
627
628DEFINE_UTF16_TO_UTF8(big2_)
629DEFINE_UTF16_TO_UTF16(big2_)
630
631#undef SET2
632#undef GET_LO
633#undef GET_HI
634
635#define LITTLE2_BYTE_TYPE(enc, p) \
636 ((p)[1] == 0 \
637 ? ((struct normal_encoding *)(enc))->type[(unsigned char)*(p)] \
638 : unicode_byte_type((p)[1], (p)[0]))
639#define LITTLE2_BYTE_TO_ASCII(enc, p) ((p)[1] == 0 ? (p)[0] : -1)
640#define LITTLE2_CHAR_MATCHES(enc, p, c) ((p)[1] == 0 && (p)[0] == c)
641#define LITTLE2_IS_NAME_CHAR_MINBPC(enc, p) \
642 UCS2_GET_NAMING(namePages, (unsigned char)p[1], (unsigned char)p[0])
643#define LITTLE2_IS_NMSTRT_CHAR_MINBPC(enc, p) \
644 UCS2_GET_NAMING(nmstrtPages, (unsigned char)p[1], (unsigned char)p[0])
645
646#ifdef XML_MIN_SIZE
647
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000648static int PTRFASTCALL
649little2_byteType(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000650{
651 return LITTLE2_BYTE_TYPE(enc, p);
652}
653
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000654static int PTRFASTCALL
655little2_byteToAscii(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000656{
657 return LITTLE2_BYTE_TO_ASCII(enc, p);
658}
659
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000660static int PTRCALL
661little2_charMatches(const ENCODING *enc, const char *p, int c)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000662{
663 return LITTLE2_CHAR_MATCHES(enc, p, c);
664}
665
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000666static int PTRFASTCALL
667little2_isNameMin(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000668{
669 return LITTLE2_IS_NAME_CHAR_MINBPC(enc, p);
670}
671
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000672static int PTRFASTCALL
673little2_isNmstrtMin(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000674{
675 return LITTLE2_IS_NMSTRT_CHAR_MINBPC(enc, p);
676}
677
678#undef VTABLE
679#define VTABLE VTABLE1, little2_toUtf8, little2_toUtf16
680
681#else /* not XML_MIN_SIZE */
682
683#undef PREFIX
684#define PREFIX(ident) little2_ ## ident
685#define MINBPC(enc) 2
686/* CHAR_MATCHES is guaranteed to have MINBPC bytes available. */
687#define BYTE_TYPE(enc, p) LITTLE2_BYTE_TYPE(enc, p)
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000688#define BYTE_TO_ASCII(enc, p) LITTLE2_BYTE_TO_ASCII(enc, p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000689#define CHAR_MATCHES(enc, p, c) LITTLE2_CHAR_MATCHES(enc, p, c)
690#define IS_NAME_CHAR(enc, p, n) 0
691#define IS_NAME_CHAR_MINBPC(enc, p) LITTLE2_IS_NAME_CHAR_MINBPC(enc, p)
692#define IS_NMSTRT_CHAR(enc, p, n) (0)
693#define IS_NMSTRT_CHAR_MINBPC(enc, p) LITTLE2_IS_NMSTRT_CHAR_MINBPC(enc, p)
694
695#include "xmltok_impl.c"
696
697#undef MINBPC
698#undef BYTE_TYPE
699#undef BYTE_TO_ASCII
700#undef CHAR_MATCHES
701#undef IS_NAME_CHAR
702#undef IS_NAME_CHAR_MINBPC
703#undef IS_NMSTRT_CHAR
704#undef IS_NMSTRT_CHAR_MINBPC
705#undef IS_INVALID_CHAR
706
707#endif /* not XML_MIN_SIZE */
708
709#ifdef XML_NS
710
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000711static const struct normal_encoding little2_encoding_ns = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000712 { VTABLE, 2, 0,
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000713#if BYTEORDER == 1234
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000714 1
715#else
716 0
717#endif
718 },
719 {
720#include "asciitab.h"
721#include "latin1tab.h"
722 },
723 STANDARD_VTABLE(little2_)
724};
725
726#endif
727
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000728static const struct normal_encoding little2_encoding = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000729 { VTABLE, 2, 0,
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000730#if BYTEORDER == 1234
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000731 1
732#else
733 0
734#endif
735 },
736 {
737#define BT_COLON BT_NMSTRT
738#include "asciitab.h"
739#undef BT_COLON
740#include "latin1tab.h"
741 },
742 STANDARD_VTABLE(little2_)
743};
744
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000745#if BYTEORDER != 4321
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000746
747#ifdef XML_NS
748
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000749static const struct normal_encoding internal_little2_encoding_ns = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000750 { VTABLE, 2, 0, 1 },
751 {
752#include "iasciitab.h"
753#include "latin1tab.h"
754 },
755 STANDARD_VTABLE(little2_)
756};
757
758#endif
759
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000760static const struct normal_encoding internal_little2_encoding = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000761 { VTABLE, 2, 0, 1 },
762 {
763#define BT_COLON BT_NMSTRT
764#include "iasciitab.h"
765#undef BT_COLON
766#include "latin1tab.h"
767 },
768 STANDARD_VTABLE(little2_)
769};
770
771#endif
772
773
774#define BIG2_BYTE_TYPE(enc, p) \
775 ((p)[0] == 0 \
776 ? ((struct normal_encoding *)(enc))->type[(unsigned char)(p)[1]] \
777 : unicode_byte_type((p)[0], (p)[1]))
778#define BIG2_BYTE_TO_ASCII(enc, p) ((p)[0] == 0 ? (p)[1] : -1)
779#define BIG2_CHAR_MATCHES(enc, p, c) ((p)[0] == 0 && (p)[1] == c)
780#define BIG2_IS_NAME_CHAR_MINBPC(enc, p) \
781 UCS2_GET_NAMING(namePages, (unsigned char)p[0], (unsigned char)p[1])
782#define BIG2_IS_NMSTRT_CHAR_MINBPC(enc, p) \
783 UCS2_GET_NAMING(nmstrtPages, (unsigned char)p[0], (unsigned char)p[1])
784
785#ifdef XML_MIN_SIZE
786
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000787static int PTRFASTCALL
788big2_byteType(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000789{
790 return BIG2_BYTE_TYPE(enc, p);
791}
792
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000793static int PTRFASTCALL
794big2_byteToAscii(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000795{
796 return BIG2_BYTE_TO_ASCII(enc, p);
797}
798
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000799static int PTRCALL
800big2_charMatches(const ENCODING *enc, const char *p, int c)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000801{
802 return BIG2_CHAR_MATCHES(enc, p, c);
803}
804
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000805static int PTRFASTCALL
806big2_isNameMin(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000807{
808 return BIG2_IS_NAME_CHAR_MINBPC(enc, p);
809}
810
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000811static int PTRFASTCALL
812big2_isNmstrtMin(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000813{
814 return BIG2_IS_NMSTRT_CHAR_MINBPC(enc, p);
815}
816
817#undef VTABLE
818#define VTABLE VTABLE1, big2_toUtf8, big2_toUtf16
819
820#else /* not XML_MIN_SIZE */
821
822#undef PREFIX
823#define PREFIX(ident) big2_ ## ident
824#define MINBPC(enc) 2
825/* CHAR_MATCHES is guaranteed to have MINBPC bytes available. */
826#define BYTE_TYPE(enc, p) BIG2_BYTE_TYPE(enc, p)
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000827#define BYTE_TO_ASCII(enc, p) BIG2_BYTE_TO_ASCII(enc, p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000828#define CHAR_MATCHES(enc, p, c) BIG2_CHAR_MATCHES(enc, p, c)
829#define IS_NAME_CHAR(enc, p, n) 0
830#define IS_NAME_CHAR_MINBPC(enc, p) BIG2_IS_NAME_CHAR_MINBPC(enc, p)
831#define IS_NMSTRT_CHAR(enc, p, n) (0)
832#define IS_NMSTRT_CHAR_MINBPC(enc, p) BIG2_IS_NMSTRT_CHAR_MINBPC(enc, p)
833
834#include "xmltok_impl.c"
835
836#undef MINBPC
837#undef BYTE_TYPE
838#undef BYTE_TO_ASCII
839#undef CHAR_MATCHES
840#undef IS_NAME_CHAR
841#undef IS_NAME_CHAR_MINBPC
842#undef IS_NMSTRT_CHAR
843#undef IS_NMSTRT_CHAR_MINBPC
844#undef IS_INVALID_CHAR
845
846#endif /* not XML_MIN_SIZE */
847
848#ifdef XML_NS
849
850static const struct normal_encoding big2_encoding_ns = {
851 { VTABLE, 2, 0,
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000852#if BYTEORDER == 4321
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000853 1
854#else
855 0
856#endif
857 },
858 {
859#include "asciitab.h"
860#include "latin1tab.h"
861 },
862 STANDARD_VTABLE(big2_)
863};
864
865#endif
866
867static const struct normal_encoding big2_encoding = {
868 { VTABLE, 2, 0,
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000869#if BYTEORDER == 4321
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000870 1
871#else
872 0
873#endif
874 },
875 {
876#define BT_COLON BT_NMSTRT
877#include "asciitab.h"
878#undef BT_COLON
879#include "latin1tab.h"
880 },
881 STANDARD_VTABLE(big2_)
882};
883
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000884#if BYTEORDER != 1234
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000885
886#ifdef XML_NS
887
888static const struct normal_encoding internal_big2_encoding_ns = {
889 { VTABLE, 2, 0, 1 },
890 {
891#include "iasciitab.h"
892#include "latin1tab.h"
893 },
894 STANDARD_VTABLE(big2_)
895};
896
897#endif
898
899static const struct normal_encoding internal_big2_encoding = {
900 { VTABLE, 2, 0, 1 },
901 {
902#define BT_COLON BT_NMSTRT
903#include "iasciitab.h"
904#undef BT_COLON
905#include "latin1tab.h"
906 },
907 STANDARD_VTABLE(big2_)
908};
909
910#endif
911
912#undef PREFIX
913
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000914static int FASTCALL
915streqci(const char *s1, const char *s2)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000916{
917 for (;;) {
918 char c1 = *s1++;
919 char c2 = *s2++;
920 if (ASCII_a <= c1 && c1 <= ASCII_z)
921 c1 += ASCII_A - ASCII_a;
922 if (ASCII_a <= c2 && c2 <= ASCII_z)
923 c2 += ASCII_A - ASCII_a;
924 if (c1 != c2)
925 return 0;
926 if (!c1)
927 break;
928 }
929 return 1;
930}
931
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000932static void PTRCALL
933initUpdatePosition(const ENCODING *enc, const char *ptr,
934 const char *end, POSITION *pos)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000935{
936 normal_updatePosition(&utf8_encoding.enc, ptr, end, pos);
937}
938
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000939static int
940toAscii(const ENCODING *enc, const char *ptr, const char *end)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000941{
942 char buf[1];
943 char *p = buf;
944 XmlUtf8Convert(enc, &ptr, end, &p, p + 1);
945 if (p == buf)
946 return -1;
947 else
948 return buf[0];
949}
950
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000951static int FASTCALL
952isSpace(int c)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000953{
954 switch (c) {
955 case 0x20:
956 case 0xD:
957 case 0xA:
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000958 case 0x9:
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000959 return 1;
960 }
961 return 0;
962}
963
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000964/* Return 1 if there's just optional white space or there's an S
965 followed by name=val.
966*/
967static int
968parsePseudoAttribute(const ENCODING *enc,
969 const char *ptr,
970 const char *end,
971 const char **namePtr,
972 const char **nameEndPtr,
973 const char **valPtr,
974 const char **nextTokPtr)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000975{
976 int c;
977 char open;
978 if (ptr == end) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000979 *namePtr = NULL;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000980 return 1;
981 }
982 if (!isSpace(toAscii(enc, ptr, end))) {
983 *nextTokPtr = ptr;
984 return 0;
985 }
986 do {
987 ptr += enc->minBytesPerChar;
988 } while (isSpace(toAscii(enc, ptr, end)));
989 if (ptr == end) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +0000990 *namePtr = NULL;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +0000991 return 1;
992 }
993 *namePtr = ptr;
994 for (;;) {
995 c = toAscii(enc, ptr, end);
996 if (c == -1) {
997 *nextTokPtr = ptr;
998 return 0;
999 }
1000 if (c == ASCII_EQUALS) {
1001 *nameEndPtr = ptr;
1002 break;
1003 }
1004 if (isSpace(c)) {
1005 *nameEndPtr = ptr;
1006 do {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001007 ptr += enc->minBytesPerChar;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001008 } while (isSpace(c = toAscii(enc, ptr, end)));
1009 if (c != ASCII_EQUALS) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001010 *nextTokPtr = ptr;
1011 return 0;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001012 }
1013 break;
1014 }
1015 ptr += enc->minBytesPerChar;
1016 }
1017 if (ptr == *namePtr) {
1018 *nextTokPtr = ptr;
1019 return 0;
1020 }
1021 ptr += enc->minBytesPerChar;
1022 c = toAscii(enc, ptr, end);
1023 while (isSpace(c)) {
1024 ptr += enc->minBytesPerChar;
1025 c = toAscii(enc, ptr, end);
1026 }
1027 if (c != ASCII_QUOT && c != ASCII_APOS) {
1028 *nextTokPtr = ptr;
1029 return 0;
1030 }
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001031 open = (char)c;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001032 ptr += enc->minBytesPerChar;
1033 *valPtr = ptr;
1034 for (;; ptr += enc->minBytesPerChar) {
1035 c = toAscii(enc, ptr, end);
1036 if (c == open)
1037 break;
1038 if (!(ASCII_a <= c && c <= ASCII_z)
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001039 && !(ASCII_A <= c && c <= ASCII_Z)
1040 && !(ASCII_0 <= c && c <= ASCII_9)
1041 && c != ASCII_PERIOD
1042 && c != ASCII_MINUS
1043 && c != ASCII_UNDERSCORE) {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001044 *nextTokPtr = ptr;
1045 return 0;
1046 }
1047 }
1048 *nextTokPtr = ptr + enc->minBytesPerChar;
1049 return 1;
1050}
1051
1052static const char KW_version[] = {
1053 ASCII_v, ASCII_e, ASCII_r, ASCII_s, ASCII_i, ASCII_o, ASCII_n, '\0'
1054};
1055
1056static const char KW_encoding[] = {
1057 ASCII_e, ASCII_n, ASCII_c, ASCII_o, ASCII_d, ASCII_i, ASCII_n, ASCII_g, '\0'
1058};
1059
1060static const char KW_standalone[] = {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001061 ASCII_s, ASCII_t, ASCII_a, ASCII_n, ASCII_d, ASCII_a, ASCII_l, ASCII_o,
1062 ASCII_n, ASCII_e, '\0'
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001063};
1064
1065static const char KW_yes[] = {
1066 ASCII_y, ASCII_e, ASCII_s, '\0'
1067};
1068
1069static const char KW_no[] = {
1070 ASCII_n, ASCII_o, '\0'
1071};
1072
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001073static int
1074doParseXmlDecl(const ENCODING *(*encodingFinder)(const ENCODING *,
1075 const char *,
1076 const char *),
1077 int isGeneralTextEntity,
1078 const ENCODING *enc,
1079 const char *ptr,
1080 const char *end,
1081 const char **badPtr,
1082 const char **versionPtr,
1083 const char **versionEndPtr,
1084 const char **encodingName,
1085 const ENCODING **encoding,
1086 int *standalone)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001087{
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001088 const char *val = NULL;
1089 const char *name = NULL;
1090 const char *nameEnd = NULL;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001091 ptr += 5 * enc->minBytesPerChar;
1092 end -= 2 * enc->minBytesPerChar;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001093 if (!parsePseudoAttribute(enc, ptr, end, &name, &nameEnd, &val, &ptr)
1094 || !name) {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001095 *badPtr = ptr;
1096 return 0;
1097 }
1098 if (!XmlNameMatchesAscii(enc, name, nameEnd, KW_version)) {
1099 if (!isGeneralTextEntity) {
1100 *badPtr = name;
1101 return 0;
1102 }
1103 }
1104 else {
1105 if (versionPtr)
1106 *versionPtr = val;
1107 if (versionEndPtr)
1108 *versionEndPtr = ptr;
1109 if (!parsePseudoAttribute(enc, ptr, end, &name, &nameEnd, &val, &ptr)) {
1110 *badPtr = ptr;
1111 return 0;
1112 }
1113 if (!name) {
1114 if (isGeneralTextEntity) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001115 /* a TextDecl must have an EncodingDecl */
1116 *badPtr = ptr;
1117 return 0;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001118 }
1119 return 1;
1120 }
1121 }
1122 if (XmlNameMatchesAscii(enc, name, nameEnd, KW_encoding)) {
1123 int c = toAscii(enc, val, end);
1124 if (!(ASCII_a <= c && c <= ASCII_z) && !(ASCII_A <= c && c <= ASCII_Z)) {
1125 *badPtr = val;
1126 return 0;
1127 }
1128 if (encodingName)
1129 *encodingName = val;
1130 if (encoding)
1131 *encoding = encodingFinder(enc, val, ptr - enc->minBytesPerChar);
1132 if (!parsePseudoAttribute(enc, ptr, end, &name, &nameEnd, &val, &ptr)) {
1133 *badPtr = ptr;
1134 return 0;
1135 }
1136 if (!name)
1137 return 1;
1138 }
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001139 if (!XmlNameMatchesAscii(enc, name, nameEnd, KW_standalone)
1140 || isGeneralTextEntity) {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001141 *badPtr = name;
1142 return 0;
1143 }
1144 if (XmlNameMatchesAscii(enc, val, ptr - enc->minBytesPerChar, KW_yes)) {
1145 if (standalone)
1146 *standalone = 1;
1147 }
1148 else if (XmlNameMatchesAscii(enc, val, ptr - enc->minBytesPerChar, KW_no)) {
1149 if (standalone)
1150 *standalone = 0;
1151 }
1152 else {
1153 *badPtr = val;
1154 return 0;
1155 }
1156 while (isSpace(toAscii(enc, ptr, end)))
1157 ptr += enc->minBytesPerChar;
1158 if (ptr != end) {
1159 *badPtr = ptr;
1160 return 0;
1161 }
1162 return 1;
1163}
1164
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001165static int FASTCALL
1166checkCharRefNumber(int result)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001167{
1168 switch (result >> 8) {
1169 case 0xD8: case 0xD9: case 0xDA: case 0xDB:
1170 case 0xDC: case 0xDD: case 0xDE: case 0xDF:
1171 return -1;
1172 case 0:
1173 if (latin1_encoding.type[result] == BT_NONXML)
1174 return -1;
1175 break;
1176 case 0xFF:
1177 if (result == 0xFFFE || result == 0xFFFF)
1178 return -1;
1179 break;
1180 }
1181 return result;
1182}
1183
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001184int FASTCALL
1185XmlUtf8Encode(int c, char *buf)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001186{
1187 enum {
1188 /* minN is minimum legal resulting value for N byte sequence */
1189 min2 = 0x80,
1190 min3 = 0x800,
1191 min4 = 0x10000
1192 };
1193
1194 if (c < 0)
1195 return 0;
1196 if (c < min2) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001197 buf[0] = (char)(c | UTF8_cval1);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001198 return 1;
1199 }
1200 if (c < min3) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001201 buf[0] = (char)((c >> 6) | UTF8_cval2);
1202 buf[1] = (char)((c & 0x3f) | 0x80);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001203 return 2;
1204 }
1205 if (c < min4) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001206 buf[0] = (char)((c >> 12) | UTF8_cval3);
1207 buf[1] = (char)(((c >> 6) & 0x3f) | 0x80);
1208 buf[2] = (char)((c & 0x3f) | 0x80);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001209 return 3;
1210 }
1211 if (c < 0x110000) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001212 buf[0] = (char)((c >> 18) | UTF8_cval4);
1213 buf[1] = (char)(((c >> 12) & 0x3f) | 0x80);
1214 buf[2] = (char)(((c >> 6) & 0x3f) | 0x80);
1215 buf[3] = (char)((c & 0x3f) | 0x80);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001216 return 4;
1217 }
1218 return 0;
1219}
1220
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001221int FASTCALL
1222XmlUtf16Encode(int charNum, unsigned short *buf)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001223{
1224 if (charNum < 0)
1225 return 0;
1226 if (charNum < 0x10000) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001227 buf[0] = (unsigned short)charNum;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001228 return 1;
1229 }
1230 if (charNum < 0x110000) {
1231 charNum -= 0x10000;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001232 buf[0] = (unsigned short)((charNum >> 10) + 0xD800);
1233 buf[1] = (unsigned short)((charNum & 0x3FF) + 0xDC00);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001234 return 2;
1235 }
1236 return 0;
1237}
1238
1239struct unknown_encoding {
1240 struct normal_encoding normal;
Fred Drake31d485c2004-08-03 07:06:22 +00001241 CONVERTER convert;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001242 void *userData;
1243 unsigned short utf16[256];
1244 char utf8[256][4];
1245};
1246
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001247#define AS_UNKNOWN_ENCODING(enc) ((const struct unknown_encoding *) (enc))
1248
1249int
1250XmlSizeOfUnknownEncoding(void)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001251{
1252 return sizeof(struct unknown_encoding);
1253}
1254
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001255static int PTRFASTCALL
1256unknown_isName(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001257{
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001258 const struct unknown_encoding *uenc = AS_UNKNOWN_ENCODING(enc);
1259 int c = uenc->convert(uenc->userData, p);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001260 if (c & ~0xFFFF)
1261 return 0;
1262 return UCS2_GET_NAMING(namePages, c >> 8, c & 0xFF);
1263}
1264
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001265static int PTRFASTCALL
1266unknown_isNmstrt(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001267{
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001268 const struct unknown_encoding *uenc = AS_UNKNOWN_ENCODING(enc);
1269 int c = uenc->convert(uenc->userData, p);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001270 if (c & ~0xFFFF)
1271 return 0;
1272 return UCS2_GET_NAMING(nmstrtPages, c >> 8, c & 0xFF);
1273}
1274
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001275static int PTRFASTCALL
1276unknown_isInvalid(const ENCODING *enc, const char *p)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001277{
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001278 const struct unknown_encoding *uenc = AS_UNKNOWN_ENCODING(enc);
1279 int c = uenc->convert(uenc->userData, p);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001280 return (c & ~0xFFFF) || checkCharRefNumber(c) < 0;
1281}
1282
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001283static void PTRCALL
1284unknown_toUtf8(const ENCODING *enc,
1285 const char **fromP, const char *fromLim,
1286 char **toP, const char *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001287{
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001288 const struct unknown_encoding *uenc = AS_UNKNOWN_ENCODING(enc);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001289 char buf[XML_UTF8_ENCODE_MAX];
1290 for (;;) {
1291 const char *utf8;
1292 int n;
1293 if (*fromP == fromLim)
1294 break;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001295 utf8 = uenc->utf8[(unsigned char)**fromP];
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001296 n = *utf8++;
1297 if (n == 0) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001298 int c = uenc->convert(uenc->userData, *fromP);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001299 n = XmlUtf8Encode(c, buf);
1300 if (n > toLim - *toP)
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001301 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001302 utf8 = buf;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001303 *fromP += (AS_NORMAL_ENCODING(enc)->type[(unsigned char)**fromP]
1304 - (BT_LEAD2 - 2));
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001305 }
1306 else {
1307 if (n > toLim - *toP)
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001308 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001309 (*fromP)++;
1310 }
1311 do {
1312 *(*toP)++ = *utf8++;
1313 } while (--n != 0);
1314 }
1315}
1316
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001317static void PTRCALL
1318unknown_toUtf16(const ENCODING *enc,
1319 const char **fromP, const char *fromLim,
1320 unsigned short **toP, const unsigned short *toLim)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001321{
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001322 const struct unknown_encoding *uenc = AS_UNKNOWN_ENCODING(enc);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001323 while (*fromP != fromLim && *toP != toLim) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001324 unsigned short c = uenc->utf16[(unsigned char)**fromP];
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001325 if (c == 0) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001326 c = (unsigned short)
1327 uenc->convert(uenc->userData, *fromP);
1328 *fromP += (AS_NORMAL_ENCODING(enc)->type[(unsigned char)**fromP]
1329 - (BT_LEAD2 - 2));
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001330 }
1331 else
1332 (*fromP)++;
1333 *(*toP)++ = c;
1334 }
1335}
1336
1337ENCODING *
1338XmlInitUnknownEncoding(void *mem,
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001339 int *table,
1340 CONVERTER convert,
1341 void *userData)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001342{
1343 int i;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001344 struct unknown_encoding *e = (struct unknown_encoding *)mem;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001345 for (i = 0; i < (int)sizeof(struct normal_encoding); i++)
1346 ((char *)mem)[i] = ((char *)&latin1_encoding)[i];
1347 for (i = 0; i < 128; i++)
1348 if (latin1_encoding.type[i] != BT_OTHER
1349 && latin1_encoding.type[i] != BT_NONXML
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001350 && table[i] != i)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001351 return 0;
1352 for (i = 0; i < 256; i++) {
1353 int c = table[i];
1354 if (c == -1) {
1355 e->normal.type[i] = BT_MALFORM;
1356 /* This shouldn't really get used. */
1357 e->utf16[i] = 0xFFFF;
1358 e->utf8[i][0] = 1;
1359 e->utf8[i][1] = 0;
1360 }
1361 else if (c < 0) {
1362 if (c < -4)
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001363 return 0;
1364 e->normal.type[i] = (unsigned char)(BT_LEAD2 - (c + 2));
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001365 e->utf8[i][0] = 0;
1366 e->utf16[i] = 0;
1367 }
1368 else if (c < 0x80) {
1369 if (latin1_encoding.type[c] != BT_OTHER
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001370 && latin1_encoding.type[c] != BT_NONXML
1371 && c != i)
1372 return 0;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001373 e->normal.type[i] = latin1_encoding.type[c];
1374 e->utf8[i][0] = 1;
1375 e->utf8[i][1] = (char)c;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001376 e->utf16[i] = (unsigned short)(c == 0 ? 0xFFFF : c);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001377 }
1378 else if (checkCharRefNumber(c) < 0) {
1379 e->normal.type[i] = BT_NONXML;
1380 /* This shouldn't really get used. */
1381 e->utf16[i] = 0xFFFF;
1382 e->utf8[i][0] = 1;
1383 e->utf8[i][1] = 0;
1384 }
1385 else {
1386 if (c > 0xFFFF)
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001387 return 0;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001388 if (UCS2_GET_NAMING(nmstrtPages, c >> 8, c & 0xff))
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001389 e->normal.type[i] = BT_NMSTRT;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001390 else if (UCS2_GET_NAMING(namePages, c >> 8, c & 0xff))
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001391 e->normal.type[i] = BT_NAME;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001392 else
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001393 e->normal.type[i] = BT_OTHER;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001394 e->utf8[i][0] = (char)XmlUtf8Encode(c, e->utf8[i] + 1);
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001395 e->utf16[i] = (unsigned short)c;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001396 }
1397 }
1398 e->userData = userData;
1399 e->convert = convert;
1400 if (convert) {
1401 e->normal.isName2 = unknown_isName;
1402 e->normal.isName3 = unknown_isName;
1403 e->normal.isName4 = unknown_isName;
1404 e->normal.isNmstrt2 = unknown_isNmstrt;
1405 e->normal.isNmstrt3 = unknown_isNmstrt;
1406 e->normal.isNmstrt4 = unknown_isNmstrt;
1407 e->normal.isInvalid2 = unknown_isInvalid;
1408 e->normal.isInvalid3 = unknown_isInvalid;
1409 e->normal.isInvalid4 = unknown_isInvalid;
1410 }
1411 e->normal.enc.utf8Convert = unknown_toUtf8;
1412 e->normal.enc.utf16Convert = unknown_toUtf16;
1413 return &(e->normal.enc);
1414}
1415
1416/* If this enumeration is changed, getEncodingIndex and encodings
1417must also be changed. */
1418enum {
1419 UNKNOWN_ENC = -1,
1420 ISO_8859_1_ENC = 0,
1421 US_ASCII_ENC,
1422 UTF_8_ENC,
1423 UTF_16_ENC,
1424 UTF_16BE_ENC,
1425 UTF_16LE_ENC,
1426 /* must match encodingNames up to here */
1427 NO_ENC
1428};
1429
1430static const char KW_ISO_8859_1[] = {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001431 ASCII_I, ASCII_S, ASCII_O, ASCII_MINUS, ASCII_8, ASCII_8, ASCII_5, ASCII_9,
1432 ASCII_MINUS, ASCII_1, '\0'
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001433};
1434static const char KW_US_ASCII[] = {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001435 ASCII_U, ASCII_S, ASCII_MINUS, ASCII_A, ASCII_S, ASCII_C, ASCII_I, ASCII_I,
1436 '\0'
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001437};
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001438static const char KW_UTF_8[] = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001439 ASCII_U, ASCII_T, ASCII_F, ASCII_MINUS, ASCII_8, '\0'
1440};
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001441static const char KW_UTF_16[] = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001442 ASCII_U, ASCII_T, ASCII_F, ASCII_MINUS, ASCII_1, ASCII_6, '\0'
1443};
1444static const char KW_UTF_16BE[] = {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001445 ASCII_U, ASCII_T, ASCII_F, ASCII_MINUS, ASCII_1, ASCII_6, ASCII_B, ASCII_E,
1446 '\0'
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001447};
1448static const char KW_UTF_16LE[] = {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001449 ASCII_U, ASCII_T, ASCII_F, ASCII_MINUS, ASCII_1, ASCII_6, ASCII_L, ASCII_E,
1450 '\0'
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001451};
1452
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001453static int FASTCALL
1454getEncodingIndex(const char *name)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001455{
Thomas Wouters0e3f5912006-08-11 14:57:12 +00001456 static const char * const encodingNames[] = {
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001457 KW_ISO_8859_1,
1458 KW_US_ASCII,
1459 KW_UTF_8,
1460 KW_UTF_16,
1461 KW_UTF_16BE,
1462 KW_UTF_16LE,
1463 };
1464 int i;
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001465 if (name == NULL)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001466 return NO_ENC;
1467 for (i = 0; i < (int)(sizeof(encodingNames)/sizeof(encodingNames[0])); i++)
1468 if (streqci(name, encodingNames[i]))
1469 return i;
1470 return UNKNOWN_ENC;
1471}
1472
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001473/* For binary compatibility, we store the index of the encoding
1474 specified at initialization in the isUtf16 member.
1475*/
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001476
1477#define INIT_ENC_INDEX(enc) ((int)(enc)->initEnc.isUtf16)
1478#define SET_INIT_ENC_INDEX(enc, i) ((enc)->initEnc.isUtf16 = (char)i)
1479
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001480/* This is what detects the encoding. encodingTable maps from
1481 encoding indices to encodings; INIT_ENC_INDEX(enc) is the index of
1482 the external (protocol) specified encoding; state is
1483 XML_CONTENT_STATE if we're parsing an external text entity, and
1484 XML_PROLOG_STATE otherwise.
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001485*/
1486
1487
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001488static int
Thomas Wouters0e3f5912006-08-11 14:57:12 +00001489initScan(const ENCODING * const *encodingTable,
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001490 const INIT_ENCODING *enc,
1491 int state,
1492 const char *ptr,
1493 const char *end,
1494 const char **nextTokPtr)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001495{
1496 const ENCODING **encPtr;
1497
1498 if (ptr == end)
1499 return XML_TOK_NONE;
1500 encPtr = enc->encPtr;
1501 if (ptr + 1 == end) {
1502 /* only a single byte available for auto-detection */
1503#ifndef XML_DTD /* FIXME */
1504 /* a well-formed document entity must have more than one byte */
1505 if (state != XML_CONTENT_STATE)
1506 return XML_TOK_PARTIAL;
1507#endif
1508 /* so we're parsing an external text entity... */
1509 /* if UTF-16 was externally specified, then we need at least 2 bytes */
1510 switch (INIT_ENC_INDEX(enc)) {
1511 case UTF_16_ENC:
1512 case UTF_16LE_ENC:
1513 case UTF_16BE_ENC:
1514 return XML_TOK_PARTIAL;
1515 }
1516 switch ((unsigned char)*ptr) {
1517 case 0xFE:
1518 case 0xFF:
1519 case 0xEF: /* possibly first byte of UTF-8 BOM */
1520 if (INIT_ENC_INDEX(enc) == ISO_8859_1_ENC
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001521 && state == XML_CONTENT_STATE)
1522 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001523 /* fall through */
1524 case 0x00:
1525 case 0x3C:
1526 return XML_TOK_PARTIAL;
1527 }
1528 }
1529 else {
1530 switch (((unsigned char)ptr[0] << 8) | (unsigned char)ptr[1]) {
1531 case 0xFEFF:
1532 if (INIT_ENC_INDEX(enc) == ISO_8859_1_ENC
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001533 && state == XML_CONTENT_STATE)
1534 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001535 *nextTokPtr = ptr + 2;
1536 *encPtr = encodingTable[UTF_16BE_ENC];
1537 return XML_TOK_BOM;
1538 /* 00 3C is handled in the default case */
1539 case 0x3C00:
1540 if ((INIT_ENC_INDEX(enc) == UTF_16BE_ENC
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001541 || INIT_ENC_INDEX(enc) == UTF_16_ENC)
1542 && state == XML_CONTENT_STATE)
1543 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001544 *encPtr = encodingTable[UTF_16LE_ENC];
1545 return XmlTok(*encPtr, state, ptr, end, nextTokPtr);
1546 case 0xFFFE:
1547 if (INIT_ENC_INDEX(enc) == ISO_8859_1_ENC
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001548 && state == XML_CONTENT_STATE)
1549 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001550 *nextTokPtr = ptr + 2;
1551 *encPtr = encodingTable[UTF_16LE_ENC];
1552 return XML_TOK_BOM;
1553 case 0xEFBB:
1554 /* Maybe a UTF-8 BOM (EF BB BF) */
1555 /* If there's an explicitly specified (external) encoding
1556 of ISO-8859-1 or some flavour of UTF-16
1557 and this is an external text entity,
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001558 don't look for the BOM,
1559 because it might be a legal data.
1560 */
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001561 if (state == XML_CONTENT_STATE) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001562 int e = INIT_ENC_INDEX(enc);
1563 if (e == ISO_8859_1_ENC || e == UTF_16BE_ENC
1564 || e == UTF_16LE_ENC || e == UTF_16_ENC)
1565 break;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001566 }
1567 if (ptr + 2 == end)
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001568 return XML_TOK_PARTIAL;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001569 if ((unsigned char)ptr[2] == 0xBF) {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001570 *nextTokPtr = ptr + 3;
1571 *encPtr = encodingTable[UTF_8_ENC];
1572 return XML_TOK_BOM;
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001573 }
1574 break;
1575 default:
1576 if (ptr[0] == '\0') {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001577 /* 0 isn't a legal data character. Furthermore a document
1578 entity can only start with ASCII characters. So the only
1579 way this can fail to be big-endian UTF-16 if it it's an
1580 external parsed general entity that's labelled as
1581 UTF-16LE.
1582 */
1583 if (state == XML_CONTENT_STATE && INIT_ENC_INDEX(enc) == UTF_16LE_ENC)
1584 break;
1585 *encPtr = encodingTable[UTF_16BE_ENC];
1586 return XmlTok(*encPtr, state, ptr, end, nextTokPtr);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001587 }
1588 else if (ptr[1] == '\0') {
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001589 /* We could recover here in the case:
1590 - parsing an external entity
1591 - second byte is 0
1592 - no externally specified encoding
1593 - no encoding declaration
1594 by assuming UTF-16LE. But we don't, because this would mean when
1595 presented just with a single byte, we couldn't reliably determine
1596 whether we needed further bytes.
1597 */
1598 if (state == XML_CONTENT_STATE)
1599 break;
1600 *encPtr = encodingTable[UTF_16LE_ENC];
1601 return XmlTok(*encPtr, state, ptr, end, nextTokPtr);
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001602 }
1603 break;
1604 }
1605 }
1606 *encPtr = encodingTable[INIT_ENC_INDEX(enc)];
1607 return XmlTok(*encPtr, state, ptr, end, nextTokPtr);
1608}
1609
1610
1611#define NS(x) x
1612#define ns(x) x
1613#include "xmltok_ns.c"
1614#undef NS
1615#undef ns
1616
1617#ifdef XML_NS
1618
1619#define NS(x) x ## NS
1620#define ns(x) x ## _ns
1621
1622#include "xmltok_ns.c"
1623
1624#undef NS
1625#undef ns
1626
1627ENCODING *
1628XmlInitUnknownEncodingNS(void *mem,
Martin v. Löwisfc03a942003-01-25 22:41:29 +00001629 int *table,
1630 CONVERTER convert,
1631 void *userData)
Martin v. Löwis1dbb1ca2002-02-11 23:13:04 +00001632{
1633 ENCODING *enc = XmlInitUnknownEncoding(mem, table, convert, userData);
1634 if (enc)
1635 ((struct normal_encoding *)enc)->type[ASCII_COLON] = BT_COLON;
1636 return enc;
1637}
1638
1639#endif /* XML_NS */