Merged from the latest developing branch.
[MacVim.git] / src / mbyte.c
blobd6edf201e79204c47b9f17166937fb2e3417919e
1 /* vi:set ts=8 sts=4 sw=4:
3 * VIM - Vi IMproved by Bram Moolenaar
4 * Multibyte extensions partly by Sung-Hoon Baek
6 * Do ":help uganda" in Vim to read copying and usage conditions.
7 * Do ":help credits" in Vim to see a list of people who contributed.
8 * See README.txt for an overview of the Vim source code.
9 */
11 * mbyte.c: Code specifically for handling multi-byte characters.
13 * The encoding used in the core is set with 'encoding'. When 'encoding' is
14 * changed, the following four variables are set (for speed).
15 * Currently these types of character encodings are supported:
17 * "enc_dbcs" When non-zero it tells the type of double byte character
18 * encoding (Chinese, Korean, Japanese, etc.).
19 * The cell width on the display is equal to the number of
20 * bytes. (exception: DBCS_JPNU with first byte 0x8e)
21 * Recognizing the first or second byte is difficult, it
22 * requires checking a byte sequence from the start.
23 * "enc_utf8" When TRUE use Unicode characters in UTF-8 encoding.
24 * The cell width on the display needs to be determined from
25 * the character value.
26 * Recognizing bytes is easy: 0xxx.xxxx is a single-byte
27 * char, 10xx.xxxx is a trailing byte, 11xx.xxxx is a leading
28 * byte of a multi-byte character.
29 * To make things complicated, up to two composing characters
30 * are allowed. These are drawn on top of the first char.
31 * For most editing the sequence of bytes with composing
32 * characters included is considered to be one character.
33 * "enc_unicode" When 2 use 16-bit Unicode characters (or UTF-16).
34 * When 4 use 32-but Unicode characters.
35 * Internally characters are stored in UTF-8 encoding to
36 * avoid NUL bytes. Conversion happens when doing I/O.
37 * "enc_utf8" will also be TRUE.
39 * "has_mbyte" is set when "enc_dbcs" or "enc_utf8" is non-zero.
41 * If none of these is TRUE, 8-bit bytes are used for a character. The
42 * encoding isn't currently specified (TODO).
44 * 'encoding' specifies the encoding used in the core. This is in registers,
45 * text manipulation, buffers, etc. Conversion has to be done when characters
46 * in another encoding are received or send:
48 * clipboard
49 * ^
50 * | (2)
51 * V
52 * +---------------+
53 * (1) | | (3)
54 * keyboard ----->| core |-----> display
55 * | |
56 * +---------------+
57 * ^
58 * | (4)
59 * V
60 * file
62 * (1) Typed characters arrive in the current locale. Conversion is to be
63 * done when 'encoding' is different from 'termencoding'.
64 * (2) Text will be made available with the encoding specified with
65 * 'encoding'. If this is not sufficient, system-specific conversion
66 * might be required.
67 * (3) For the GUI the correct font must be selected, no conversion done.
68 * Otherwise, conversion is to be done when 'encoding' differs from
69 * 'termencoding'. (Different in the GTK+ 2 port -- 'termencoding'
70 * is always used for both input and output and must always be set to
71 * "utf-8". gui_mch_init() does this automatically.)
72 * (4) The encoding of the file is specified with 'fileencoding'. Conversion
73 * is to be done when it's different from 'encoding'.
75 * The viminfo file is a special case: Only text is converted, not file names.
76 * Vim scripts may contain an ":encoding" command. This has an effect for
77 * some commands, like ":menutrans"
80 #include "vim.h"
82 #ifdef WIN32UNIX
83 # ifndef WIN32_LEAN_AND_MEAN
84 # define WIN32_LEAN_AND_MEAN
85 # endif
86 # include <windows.h>
87 # ifdef WIN32
88 # undef WIN32 /* Some windows.h define WIN32, we don't want that here. */
89 # endif
90 #endif
92 #if (defined(WIN3264) || defined(WIN32UNIX)) && !defined(__MINGW32__)
93 # include <winnls.h>
94 #endif
96 #ifdef FEAT_GUI_X11
97 # include <X11/Intrinsic.h>
98 #endif
99 #ifdef X_LOCALE
100 #include <X11/Xlocale.h>
101 #endif
103 #if defined(FEAT_GUI_GTK) && defined(FEAT_XIM) && defined(HAVE_GTK2)
104 # include <gdk/gdkkeysyms.h>
105 # ifdef WIN3264
106 # include <gdk/gdkwin32.h>
107 # else
108 # include <gdk/gdkx.h>
109 # endif
110 #endif
112 #ifdef HAVE_WCHAR_H
113 # include <wchar.h>
114 #endif
116 #if 0
117 /* This has been disabled, because several people reported problems with the
118 * wcwidth() and iswprint() library functions, esp. for Hebrew. */
119 # ifdef __STDC_ISO_10646__
120 # define USE_WCHAR_FUNCTIONS
121 # endif
122 #endif
124 #if defined(FEAT_MBYTE) || defined(PROTO)
126 static int enc_canon_search __ARGS((char_u *name));
127 static int dbcs_char2len __ARGS((int c));
128 static int dbcs_char2bytes __ARGS((int c, char_u *buf));
129 static int dbcs_ptr2len __ARGS((char_u *p));
130 static int dbcs_char2cells __ARGS((int c));
131 static int dbcs_ptr2char __ARGS((char_u *p));
133 /* Lookup table to quickly get the length in bytes of a UTF-8 character from
134 * the first byte of a UTF-8 string. Bytes which are illegal when used as the
135 * first byte have a one, because these will be used separately. */
136 static char utf8len_tab[256] =
138 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
139 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
140 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
141 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,
142 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /*bogus*/
143 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /*bogus*/
144 2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,2,
145 3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,3,4,4,4,4,4,4,4,4,5,5,5,5,6,6,1,1,
149 * XIM often causes trouble. Define XIM_DEBUG to get a log of XIM callbacks
150 * in the "xim.log" file.
152 /* #define XIM_DEBUG */
153 #ifdef XIM_DEBUG
154 static void
155 xim_log(char *s, ...)
157 va_list arglist;
158 static FILE *fd = NULL;
160 if (fd == (FILE *)-1)
161 return;
162 if (fd == NULL)
164 fd = mch_fopen("xim.log", "w");
165 if (fd == NULL)
167 EMSG("Cannot open xim.log");
168 fd = (FILE *)-1;
169 return;
173 va_start(arglist, s);
174 vfprintf(fd, s, arglist);
175 va_end(arglist);
177 #endif
179 #endif
181 #if defined(FEAT_MBYTE) || defined(FEAT_POSTSCRIPT) || defined(PROTO)
183 * Canonical encoding names and their properties.
184 * "iso-8859-n" is handled by enc_canonize() directly.
186 static struct
187 { char *name; int prop; int codepage;}
188 enc_canon_table[] =
190 #define IDX_LATIN_1 0
191 {"latin1", ENC_8BIT + ENC_LATIN1, 1252},
192 #define IDX_ISO_2 1
193 {"iso-8859-2", ENC_8BIT, 0},
194 #define IDX_ISO_3 2
195 {"iso-8859-3", ENC_8BIT, 0},
196 #define IDX_ISO_4 3
197 {"iso-8859-4", ENC_8BIT, 0},
198 #define IDX_ISO_5 4
199 {"iso-8859-5", ENC_8BIT, 0},
200 #define IDX_ISO_6 5
201 {"iso-8859-6", ENC_8BIT, 0},
202 #define IDX_ISO_7 6
203 {"iso-8859-7", ENC_8BIT, 0},
204 #define IDX_ISO_8 7
205 {"iso-8859-8", ENC_8BIT, 0},
206 #define IDX_ISO_9 8
207 {"iso-8859-9", ENC_8BIT, 0},
208 #define IDX_ISO_10 9
209 {"iso-8859-10", ENC_8BIT, 0},
210 #define IDX_ISO_11 10
211 {"iso-8859-11", ENC_8BIT, 0},
212 #define IDX_ISO_13 11
213 {"iso-8859-13", ENC_8BIT, 0},
214 #define IDX_ISO_14 12
215 {"iso-8859-14", ENC_8BIT, 0},
216 #define IDX_ISO_15 13
217 {"iso-8859-15", ENC_8BIT + ENC_LATIN9, 0},
218 #define IDX_KOI8_R 14
219 {"koi8-r", ENC_8BIT, 0},
220 #define IDX_KOI8_U 15
221 {"koi8-u", ENC_8BIT, 0},
222 #define IDX_UTF8 16
223 {"utf-8", ENC_UNICODE, 0},
224 #define IDX_UCS2 17
225 {"ucs-2", ENC_UNICODE + ENC_ENDIAN_B + ENC_2BYTE, 0},
226 #define IDX_UCS2LE 18
227 {"ucs-2le", ENC_UNICODE + ENC_ENDIAN_L + ENC_2BYTE, 0},
228 #define IDX_UTF16 19
229 {"utf-16", ENC_UNICODE + ENC_ENDIAN_B + ENC_2WORD, 0},
230 #define IDX_UTF16LE 20
231 {"utf-16le", ENC_UNICODE + ENC_ENDIAN_L + ENC_2WORD, 0},
232 #define IDX_UCS4 21
233 {"ucs-4", ENC_UNICODE + ENC_ENDIAN_B + ENC_4BYTE, 0},
234 #define IDX_UCS4LE 22
235 {"ucs-4le", ENC_UNICODE + ENC_ENDIAN_L + ENC_4BYTE, 0},
237 /* For debugging DBCS encoding on Unix. */
238 #define IDX_DEBUG 23
239 {"debug", ENC_DBCS, DBCS_DEBUG},
240 #define IDX_EUC_JP 24
241 {"euc-jp", ENC_DBCS, DBCS_JPNU},
242 #define IDX_SJIS 25
243 {"sjis", ENC_DBCS, DBCS_JPN},
244 #define IDX_EUC_KR 26
245 {"euc-kr", ENC_DBCS, DBCS_KORU},
246 #define IDX_EUC_CN 27
247 {"euc-cn", ENC_DBCS, DBCS_CHSU},
248 #define IDX_EUC_TW 28
249 {"euc-tw", ENC_DBCS, DBCS_CHTU},
250 #define IDX_BIG5 29
251 {"big5", ENC_DBCS, DBCS_CHT},
253 /* MS-DOS and MS-Windows codepages are included here, so that they can be
254 * used on Unix too. Most of them are similar to ISO-8859 encodings, but
255 * not exactly the same. */
256 #define IDX_CP437 30
257 {"cp437", ENC_8BIT, 437}, /* like iso-8859-1 */
258 #define IDX_CP737 31
259 {"cp737", ENC_8BIT, 737}, /* like iso-8859-7 */
260 #define IDX_CP775 32
261 {"cp775", ENC_8BIT, 775}, /* Baltic */
262 #define IDX_CP850 33
263 {"cp850", ENC_8BIT, 850}, /* like iso-8859-4 */
264 #define IDX_CP852 34
265 {"cp852", ENC_8BIT, 852}, /* like iso-8859-1 */
266 #define IDX_CP855 35
267 {"cp855", ENC_8BIT, 855}, /* like iso-8859-2 */
268 #define IDX_CP857 36
269 {"cp857", ENC_8BIT, 857}, /* like iso-8859-5 */
270 #define IDX_CP860 37
271 {"cp860", ENC_8BIT, 860}, /* like iso-8859-9 */
272 #define IDX_CP861 38
273 {"cp861", ENC_8BIT, 861}, /* like iso-8859-1 */
274 #define IDX_CP862 39
275 {"cp862", ENC_8BIT, 862}, /* like iso-8859-1 */
276 #define IDX_CP863 40
277 {"cp863", ENC_8BIT, 863}, /* like iso-8859-8 */
278 #define IDX_CP865 41
279 {"cp865", ENC_8BIT, 865}, /* like iso-8859-1 */
280 #define IDX_CP866 42
281 {"cp866", ENC_8BIT, 866}, /* like iso-8859-5 */
282 #define IDX_CP869 43
283 {"cp869", ENC_8BIT, 869}, /* like iso-8859-7 */
284 #define IDX_CP874 44
285 {"cp874", ENC_8BIT, 874}, /* Thai */
286 #define IDX_CP932 45
287 {"cp932", ENC_DBCS, DBCS_JPN},
288 #define IDX_CP936 46
289 {"cp936", ENC_DBCS, DBCS_CHS},
290 #define IDX_CP949 47
291 {"cp949", ENC_DBCS, DBCS_KOR},
292 #define IDX_CP950 48
293 {"cp950", ENC_DBCS, DBCS_CHT},
294 #define IDX_CP1250 49
295 {"cp1250", ENC_8BIT, 1250}, /* Czech, Polish, etc. */
296 #define IDX_CP1251 50
297 {"cp1251", ENC_8BIT, 1251}, /* Cyrillic */
298 /* cp1252 is considered to be equal to latin1 */
299 #define IDX_CP1253 51
300 {"cp1253", ENC_8BIT, 1253}, /* Greek */
301 #define IDX_CP1254 52
302 {"cp1254", ENC_8BIT, 1254}, /* Turkish */
303 #define IDX_CP1255 53
304 {"cp1255", ENC_8BIT, 1255}, /* Hebrew */
305 #define IDX_CP1256 54
306 {"cp1256", ENC_8BIT, 1256}, /* Arabic */
307 #define IDX_CP1257 55
308 {"cp1257", ENC_8BIT, 1257}, /* Baltic */
309 #define IDX_CP1258 56
310 {"cp1258", ENC_8BIT, 1258}, /* Vietnamese */
312 #define IDX_MACROMAN 57
313 {"macroman", ENC_8BIT + ENC_MACROMAN, 0}, /* Mac OS */
314 #define IDX_DECMCS 58
315 {"dec-mcs", ENC_8BIT, 0}, /* DEC MCS */
316 #define IDX_HPROMAN8 59
317 {"hp-roman8", ENC_8BIT, 0}, /* HP Roman8 */
318 #define IDX_COUNT 60
322 * Aliases for encoding names.
324 static struct
325 { char *name; int canon;}
326 enc_alias_table[] =
328 {"ansi", IDX_LATIN_1},
329 {"iso-8859-1", IDX_LATIN_1},
330 {"latin2", IDX_ISO_2},
331 {"latin3", IDX_ISO_3},
332 {"latin4", IDX_ISO_4},
333 {"cyrillic", IDX_ISO_5},
334 {"arabic", IDX_ISO_6},
335 {"greek", IDX_ISO_7},
336 #ifdef WIN3264
337 {"hebrew", IDX_CP1255},
338 #else
339 {"hebrew", IDX_ISO_8},
340 #endif
341 {"latin5", IDX_ISO_9},
342 {"turkish", IDX_ISO_9}, /* ? */
343 {"latin6", IDX_ISO_10},
344 {"nordic", IDX_ISO_10}, /* ? */
345 {"thai", IDX_ISO_11}, /* ? */
346 {"latin7", IDX_ISO_13},
347 {"latin8", IDX_ISO_14},
348 {"latin9", IDX_ISO_15},
349 {"utf8", IDX_UTF8},
350 {"unicode", IDX_UCS2},
351 {"ucs2", IDX_UCS2},
352 {"ucs2be", IDX_UCS2},
353 {"ucs-2be", IDX_UCS2},
354 {"ucs2le", IDX_UCS2LE},
355 {"utf16", IDX_UTF16},
356 {"utf16be", IDX_UTF16},
357 {"utf-16be", IDX_UTF16},
358 {"utf16le", IDX_UTF16LE},
359 {"ucs4", IDX_UCS4},
360 {"ucs4be", IDX_UCS4},
361 {"ucs-4be", IDX_UCS4},
362 {"ucs4le", IDX_UCS4LE},
363 {"utf32", IDX_UCS4},
364 {"utf-32", IDX_UCS4},
365 {"utf32be", IDX_UCS4},
366 {"utf-32be", IDX_UCS4},
367 {"utf32le", IDX_UCS4LE},
368 {"utf-32le", IDX_UCS4LE},
369 {"932", IDX_CP932},
370 {"949", IDX_CP949},
371 {"936", IDX_CP936},
372 {"gbk", IDX_CP936},
373 {"950", IDX_CP950},
374 {"eucjp", IDX_EUC_JP},
375 {"unix-jis", IDX_EUC_JP},
376 {"ujis", IDX_EUC_JP},
377 {"shift-jis", IDX_SJIS},
378 {"euckr", IDX_EUC_KR},
379 {"5601", IDX_EUC_KR}, /* Sun: KS C 5601 */
380 {"euccn", IDX_EUC_CN},
381 {"gb2312", IDX_EUC_CN},
382 {"euctw", IDX_EUC_TW},
383 #if defined(WIN3264) || defined(WIN32UNIX) || defined(MACOS)
384 {"japan", IDX_CP932},
385 {"korea", IDX_CP949},
386 {"prc", IDX_CP936},
387 {"chinese", IDX_CP936},
388 {"taiwan", IDX_CP950},
389 {"big5", IDX_CP950},
390 #else
391 {"japan", IDX_EUC_JP},
392 {"korea", IDX_EUC_KR},
393 {"prc", IDX_EUC_CN},
394 {"chinese", IDX_EUC_CN},
395 {"taiwan", IDX_EUC_TW},
396 {"cp950", IDX_BIG5},
397 {"950", IDX_BIG5},
398 #endif
399 {"mac", IDX_MACROMAN},
400 {"mac-roman", IDX_MACROMAN},
401 {NULL, 0}
404 #ifndef CP_UTF8
405 # define CP_UTF8 65001 /* magic number from winnls.h */
406 #endif
409 * Find encoding "name" in the list of canonical encoding names.
410 * Returns -1 if not found.
412 static int
413 enc_canon_search(name)
414 char_u *name;
416 int i;
418 for (i = 0; i < IDX_COUNT; ++i)
419 if (STRCMP(name, enc_canon_table[i].name) == 0)
420 return i;
421 return -1;
424 #endif
426 #if defined(FEAT_MBYTE) || defined(PROTO)
429 * Find canonical encoding "name" in the list and return its properties.
430 * Returns 0 if not found.
433 enc_canon_props(name)
434 char_u *name;
436 int i;
438 i = enc_canon_search(name);
439 if (i >= 0)
440 return enc_canon_table[i].prop;
441 #ifdef WIN3264
442 if (name[0] == 'c' && name[1] == 'p' && VIM_ISDIGIT(name[2]))
444 CPINFO cpinfo;
446 /* Get info on this codepage to find out what it is. */
447 if (GetCPInfo(atoi(name + 2), &cpinfo) != 0)
449 if (cpinfo.MaxCharSize == 1) /* some single-byte encoding */
450 return ENC_8BIT;
451 if (cpinfo.MaxCharSize == 2
452 && (cpinfo.LeadByte[0] != 0 || cpinfo.LeadByte[1] != 0))
453 /* must be a DBCS encoding */
454 return ENC_DBCS;
456 return 0;
458 #endif
459 if (STRNCMP(name, "2byte-", 6) == 0)
460 return ENC_DBCS;
461 if (STRNCMP(name, "8bit-", 5) == 0 || STRNCMP(name, "iso-8859-", 9) == 0)
462 return ENC_8BIT;
463 return 0;
467 * Set up for using multi-byte characters.
468 * Called in three cases:
469 * - by main() to initialize (p_enc == NULL)
470 * - by set_init_1() after 'encoding' was set to its default.
471 * - by do_set() when 'encoding' has been set.
472 * p_enc must have been passed through enc_canonize() already.
473 * Sets the "enc_unicode", "enc_utf8", "enc_dbcs" and "has_mbyte" flags.
474 * Fills mb_bytelen_tab[] and returns NULL when there are no problems.
475 * When there is something wrong: Returns an error message and doesn't change
476 * anything.
478 char_u *
479 mb_init()
481 int i;
482 int idx;
483 int n;
484 int enc_dbcs_new = 0;
485 #if defined(USE_ICONV) && !defined(WIN3264) && !defined(WIN32UNIX) \
486 && !defined(MACOS)
487 # define LEN_FROM_CONV
488 vimconv_T vimconv;
489 char_u *p;
490 #endif
492 if (p_enc == NULL)
494 /* Just starting up: set the whole table to one's. */
495 for (i = 0; i < 256; ++i)
496 mb_bytelen_tab[i] = 1;
497 input_conv.vc_type = CONV_NONE;
498 input_conv.vc_factor = 1;
499 output_conv.vc_type = CONV_NONE;
500 return NULL;
503 #ifdef WIN3264
504 if (p_enc[0] == 'c' && p_enc[1] == 'p' && VIM_ISDIGIT(p_enc[2]))
506 CPINFO cpinfo;
508 /* Get info on this codepage to find out what it is. */
509 if (GetCPInfo(atoi(p_enc + 2), &cpinfo) != 0)
511 if (cpinfo.MaxCharSize == 1)
513 /* some single-byte encoding */
514 enc_unicode = 0;
515 enc_utf8 = FALSE;
517 else if (cpinfo.MaxCharSize == 2
518 && (cpinfo.LeadByte[0] != 0 || cpinfo.LeadByte[1] != 0))
520 /* must be a DBCS encoding, check below */
521 enc_dbcs_new = atoi(p_enc + 2);
523 else
524 goto codepage_invalid;
526 else if (GetLastError() == ERROR_INVALID_PARAMETER)
528 codepage_invalid:
529 return (char_u *)N_("E543: Not a valid codepage");
532 #endif
533 else if (STRNCMP(p_enc, "8bit-", 5) == 0
534 || STRNCMP(p_enc, "iso-8859-", 9) == 0)
536 /* Accept any "8bit-" or "iso-8859-" name. */
537 enc_unicode = 0;
538 enc_utf8 = FALSE;
540 else if (STRNCMP(p_enc, "2byte-", 6) == 0)
542 #ifdef WIN3264
543 /* Windows: accept only valid codepage numbers, check below. */
544 if (p_enc[6] != 'c' || p_enc[7] != 'p'
545 || (enc_dbcs_new = atoi(p_enc + 8)) == 0)
546 return e_invarg;
547 #else
548 /* Unix: accept any "2byte-" name, assume current locale. */
549 enc_dbcs_new = DBCS_2BYTE;
550 #endif
552 else if ((idx = enc_canon_search(p_enc)) >= 0)
554 i = enc_canon_table[idx].prop;
555 if (i & ENC_UNICODE)
557 /* Unicode */
558 enc_utf8 = TRUE;
559 if (i & (ENC_2BYTE | ENC_2WORD))
560 enc_unicode = 2;
561 else if (i & ENC_4BYTE)
562 enc_unicode = 4;
563 else
564 enc_unicode = 0;
566 else if (i & ENC_DBCS)
568 /* 2byte, handle below */
569 enc_dbcs_new = enc_canon_table[idx].codepage;
571 else
573 /* Must be 8-bit. */
574 enc_unicode = 0;
575 enc_utf8 = FALSE;
578 else /* Don't know what encoding this is, reject it. */
579 return e_invarg;
581 if (enc_dbcs_new != 0)
583 #ifdef WIN3264
584 /* Check if the DBCS code page is OK. */
585 if (!IsValidCodePage(enc_dbcs_new))
586 goto codepage_invalid;
587 #endif
588 enc_unicode = 0;
589 enc_utf8 = FALSE;
591 enc_dbcs = enc_dbcs_new;
592 has_mbyte = (enc_dbcs != 0 || enc_utf8);
594 #ifdef WIN3264
595 enc_codepage = encname2codepage(p_enc);
596 enc_latin9 = (STRCMP(p_enc, "iso-8859-15") == 0);
597 #endif
599 /* Detect an encoding that uses latin1 characters. */
600 enc_latin1like = (enc_utf8 || STRCMP(p_enc, "latin1") == 0
601 || STRCMP(p_enc, "iso-8859-15") == 0);
604 * Set the function pointers.
606 if (enc_utf8)
608 mb_ptr2len = utfc_ptr2len;
609 mb_char2len = utf_char2len;
610 mb_char2bytes = utf_char2bytes;
611 mb_ptr2cells = utf_ptr2cells;
612 mb_char2cells = utf_char2cells;
613 mb_off2cells = utf_off2cells;
614 mb_ptr2char = utf_ptr2char;
615 mb_head_off = utf_head_off;
617 else if (enc_dbcs != 0)
619 mb_ptr2len = dbcs_ptr2len;
620 mb_char2len = dbcs_char2len;
621 mb_char2bytes = dbcs_char2bytes;
622 mb_ptr2cells = dbcs_ptr2cells;
623 mb_char2cells = dbcs_char2cells;
624 mb_off2cells = dbcs_off2cells;
625 mb_ptr2char = dbcs_ptr2char;
626 mb_head_off = dbcs_head_off;
628 else
630 mb_ptr2len = latin_ptr2len;
631 mb_char2len = latin_char2len;
632 mb_char2bytes = latin_char2bytes;
633 mb_ptr2cells = latin_ptr2cells;
634 mb_char2cells = latin_char2cells;
635 mb_off2cells = latin_off2cells;
636 mb_ptr2char = latin_ptr2char;
637 mb_head_off = latin_head_off;
641 * Fill the mb_bytelen_tab[] for MB_BYTE2LEN().
643 #ifdef LEN_FROM_CONV
644 /* When 'encoding' is different from the current locale mblen() won't
645 * work. Use conversion to "utf-8" instead. */
646 vimconv.vc_type = CONV_NONE;
647 if (enc_dbcs)
649 p = enc_locale();
650 if (p == NULL || STRCMP(p, p_enc) != 0)
652 convert_setup(&vimconv, p_enc, (char_u *)"utf-8");
653 vimconv.vc_fail = TRUE;
655 vim_free(p);
657 #endif
659 for (i = 0; i < 256; ++i)
661 /* Our own function to reliably check the length of UTF-8 characters,
662 * independent of mblen(). */
663 if (enc_utf8)
664 n = utf8len_tab[i];
665 else if (enc_dbcs == 0)
666 n = 1;
667 else
669 #if defined(WIN3264) || defined(WIN32UNIX)
670 /* enc_dbcs is set by setting 'fileencoding'. It becomes a Windows
671 * CodePage identifier, which we can pass directly in to Windows
672 * API */
673 n = IsDBCSLeadByteEx(enc_dbcs, (BYTE)i) ? 2 : 1;
674 #else
675 # if defined(MACOS) || defined(__amigaos4__)
677 * if mblen() is not available, character which MSB is turned on
678 * are treated as leading byte character. (note : This assumption
679 * is not always true.)
681 n = (i & 0x80) ? 2 : 1;
682 # else
683 char buf[MB_MAXBYTES];
684 # ifdef X_LOCALE
685 # ifndef mblen
686 # define mblen _Xmblen
687 # endif
688 # endif
689 if (i == NUL) /* just in case mblen() can't handle "" */
690 n = 1;
691 else
693 buf[0] = i;
694 buf[1] = 0;
695 #ifdef LEN_FROM_CONV
696 if (vimconv.vc_type != CONV_NONE)
699 * string_convert() should fail when converting the first
700 * byte of a double-byte character.
702 p = string_convert(&vimconv, (char_u *)buf, NULL);
703 if (p != NULL)
705 vim_free(p);
706 n = 1;
708 else
709 n = 2;
711 else
712 #endif
715 * mblen() should return -1 for invalid (means the leading
716 * multibyte) character. However there are some platforms
717 * where mblen() returns 0 for invalid character.
718 * Therefore, following condition includes 0.
720 (void)mblen(NULL, 0); /* First reset the state. */
721 if (mblen(buf, (size_t)1) <= 0)
722 n = 2;
723 else
724 n = 1;
727 # endif
728 #endif
731 mb_bytelen_tab[i] = n;
734 #ifdef LEN_FROM_CONV
735 convert_setup(&vimconv, NULL, NULL);
736 #endif
738 /* The cell width depends on the type of multi-byte characters. */
739 (void)init_chartab();
741 /* When enc_utf8 is set or reset, (de)allocate ScreenLinesUC[] */
742 screenalloc(FALSE);
744 /* When using Unicode, set default for 'fileencodings'. */
745 if (enc_utf8 && !option_was_set((char_u *)"fencs"))
746 set_string_option_direct((char_u *)"fencs", -1,
747 (char_u *)"ucs-bom,utf-8,default,latin1", OPT_FREE, 0);
749 #if defined(HAVE_BIND_TEXTDOMAIN_CODESET) && defined(FEAT_GETTEXT)
750 /* GNU gettext 0.10.37 supports this feature: set the codeset used for
751 * translated messages independently from the current locale. */
752 (void)bind_textdomain_codeset(VIMPACKAGE,
753 enc_utf8 ? "utf-8" : (char *)p_enc);
754 #endif
756 #ifdef WIN32
757 /* When changing 'encoding' while starting up, then convert the command
758 * line arguments from the active codepage to 'encoding'. */
759 if (starting != 0)
760 fix_arg_enc();
761 #endif
763 #ifdef FEAT_AUTOCMD
764 /* Fire an autocommand to let people do custom font setup. This must be
765 * after Vim has been setup for the new encoding. */
766 apply_autocmds(EVENT_ENCODINGCHANGED, NULL, (char_u *)"", FALSE, curbuf);
767 #endif
769 #ifdef FEAT_SPELL
770 /* Need to reload spell dictionaries */
771 spell_reload();
772 #endif
774 return NULL;
778 * Return the size of the BOM for the current buffer:
779 * 0 - no BOM
780 * 2 - UCS-2 or UTF-16 BOM
781 * 4 - UCS-4 BOM
782 * 3 - UTF-8 BOM
785 bomb_size()
787 int n = 0;
789 if (curbuf->b_p_bomb && !curbuf->b_p_bin)
791 if (*curbuf->b_p_fenc == NUL)
793 if (enc_utf8)
795 if (enc_unicode != 0)
796 n = enc_unicode;
797 else
798 n = 3;
801 else if (STRCMP(curbuf->b_p_fenc, "utf-8") == 0)
802 n = 3;
803 else if (STRNCMP(curbuf->b_p_fenc, "ucs-2", 5) == 0
804 || STRNCMP(curbuf->b_p_fenc, "utf-16", 6) == 0)
805 n = 2;
806 else if (STRNCMP(curbuf->b_p_fenc, "ucs-4", 5) == 0)
807 n = 4;
809 return n;
813 * Get class of pointer:
814 * 0 for blank or NUL
815 * 1 for punctuation
816 * 2 for an (ASCII) word character
817 * >2 for other word characters
820 mb_get_class(p)
821 char_u *p;
823 if (MB_BYTE2LEN(p[0]) == 1)
825 if (p[0] == NUL || vim_iswhite(p[0]))
826 return 0;
827 if (vim_iswordc(p[0]))
828 return 2;
829 return 1;
831 if (enc_dbcs != 0 && p[0] != NUL && p[1] != NUL)
832 return dbcs_class(p[0], p[1]);
833 if (enc_utf8)
834 return utf_class(utf_ptr2char(p));
835 return 0;
839 * Get class of a double-byte character. This always returns 3 or bigger.
840 * TODO: Should return 1 for punctuation.
843 dbcs_class(lead, trail)
844 unsigned lead;
845 unsigned trail;
847 switch (enc_dbcs)
849 /* please add classfy routine for your language in here */
851 case DBCS_JPNU: /* ? */
852 case DBCS_JPN:
854 /* JIS code classification */
855 unsigned char lb = lead;
856 unsigned char tb = trail;
858 /* convert process code to JIS */
859 # if defined(WIN3264) || defined(WIN32UNIX) || defined(MACOS)
860 /* process code is SJIS */
861 if (lb <= 0x9f)
862 lb = (lb - 0x81) * 2 + 0x21;
863 else
864 lb = (lb - 0xc1) * 2 + 0x21;
865 if (tb <= 0x7e)
866 tb -= 0x1f;
867 else if (tb <= 0x9e)
868 tb -= 0x20;
869 else
871 tb -= 0x7e;
872 lb += 1;
874 # else
876 * XXX: Code page identification can not use with all
877 * system! So, some other encoding information
878 * will be needed.
879 * In japanese: SJIS,EUC,UNICODE,(JIS)
880 * Note that JIS-code system don't use as
881 * process code in most system because it uses
882 * escape sequences(JIS is context depend encoding).
884 /* assume process code is JAPANESE-EUC */
885 lb &= 0x7f;
886 tb &= 0x7f;
887 # endif
888 /* exceptions */
889 switch (lb << 8 | tb)
891 case 0x2121: /* ZENKAKU space */
892 return 0;
893 case 0x2122: /* KU-TEN (Japanese comma) */
894 case 0x2123: /* TOU-TEN (Japanese period) */
895 case 0x2124: /* ZENKAKU comma */
896 case 0x2125: /* ZENKAKU period */
897 return 1;
898 case 0x213c: /* prolongedsound handled as KATAKANA */
899 return 13;
901 /* sieved by KU code */
902 switch (lb)
904 case 0x21:
905 case 0x22:
906 /* special symbols */
907 return 10;
908 case 0x23:
909 /* alpha-numeric */
910 return 11;
911 case 0x24:
912 /* hiragana */
913 return 12;
914 case 0x25:
915 /* katakana */
916 return 13;
917 case 0x26:
918 /* greek */
919 return 14;
920 case 0x27:
921 /* russian */
922 return 15;
923 case 0x28:
924 /* lines */
925 return 16;
926 default:
927 /* kanji */
928 return 17;
932 case DBCS_KORU: /* ? */
933 case DBCS_KOR:
935 /* KS code classification */
936 unsigned char c1 = lead;
937 unsigned char c2 = trail;
940 * 20 : Hangul
941 * 21 : Hanja
942 * 22 : Symbols
943 * 23 : Alpha-numeric/Roman Letter (Full width)
944 * 24 : Hangul Letter(Alphabet)
945 * 25 : Roman Numeral/Greek Letter
946 * 26 : Box Drawings
947 * 27 : Unit Symbols
948 * 28 : Circled/Parenthesized Letter
949 * 29 : Hirigana/Katakana
950 * 30 : Cyrillic Letter
953 if (c1 >= 0xB0 && c1 <= 0xC8)
954 /* Hangul */
955 return 20;
956 #if defined(WIN3264) || defined(WIN32UNIX)
957 else if (c1 <= 0xA0 || c2 <= 0xA0)
958 /* Extended Hangul Region : MS UHC(Unified Hangul Code) */
959 /* c1: 0x81-0xA0 with c2: 0x41-0x5A, 0x61-0x7A, 0x81-0xFE
960 * c1: 0xA1-0xC6 with c2: 0x41-0x5A, 0x61-0x7A, 0x81-0xA0
962 return 20;
963 #endif
965 else if (c1 >= 0xCA && c1 <= 0xFD)
966 /* Hanja */
967 return 21;
968 else switch (c1)
970 case 0xA1:
971 case 0xA2:
972 /* Symbols */
973 return 22;
974 case 0xA3:
975 /* Alpha-numeric */
976 return 23;
977 case 0xA4:
978 /* Hangul Letter(Alphabet) */
979 return 24;
980 case 0xA5:
981 /* Roman Numeral/Greek Letter */
982 return 25;
983 case 0xA6:
984 /* Box Drawings */
985 return 26;
986 case 0xA7:
987 /* Unit Symbols */
988 return 27;
989 case 0xA8:
990 case 0xA9:
991 if (c2 <= 0xAF)
992 return 25; /* Roman Letter */
993 else if (c2 >= 0xF6)
994 return 22; /* Symbols */
995 else
996 /* Circled/Parenthesized Letter */
997 return 28;
998 case 0xAA:
999 case 0xAB:
1000 /* Hirigana/Katakana */
1001 return 29;
1002 case 0xAC:
1003 /* Cyrillic Letter */
1004 return 30;
1007 default:
1008 break;
1010 return 3;
1014 * mb_char2len() function pointer.
1015 * Return length in bytes of character "c".
1016 * Returns 1 for a single-byte character.
1018 /* ARGSUSED */
1020 latin_char2len(c)
1021 int c;
1023 return 1;
1026 static int
1027 dbcs_char2len(c)
1028 int c;
1030 if (c >= 0x100)
1031 return 2;
1032 return 1;
1036 * mb_char2bytes() function pointer.
1037 * Convert a character to its bytes.
1038 * Returns the length in bytes.
1041 latin_char2bytes(c, buf)
1042 int c;
1043 char_u *buf;
1045 buf[0] = c;
1046 return 1;
1049 static int
1050 dbcs_char2bytes(c, buf)
1051 int c;
1052 char_u *buf;
1054 if (c >= 0x100)
1056 buf[0] = (unsigned)c >> 8;
1057 buf[1] = c;
1058 /* Never use a NUL byte, it causes lots of trouble. It's an invalid
1059 * character anyway. */
1060 if (buf[1] == NUL)
1061 buf[1] = '\n';
1062 return 2;
1064 buf[0] = c;
1065 return 1;
1069 * mb_ptr2len() function pointer.
1070 * Get byte length of character at "*p" but stop at a NUL.
1071 * For UTF-8 this includes following composing characters.
1072 * Returns 0 when *p is NUL.
1076 latin_ptr2len(p)
1077 char_u *p;
1079 return MB_BYTE2LEN(*p);
1082 static int
1083 dbcs_ptr2len(p)
1084 char_u *p;
1086 int len;
1088 /* Check if second byte is not missing. */
1089 len = MB_BYTE2LEN(*p);
1090 if (len == 2 && p[1] == NUL)
1091 len = 1;
1092 return len;
1095 struct interval
1097 unsigned short first;
1098 unsigned short last;
1100 static int intable __ARGS((struct interval *table, size_t size, int c));
1103 * Return TRUE if "c" is in "table[size / sizeof(struct interval)]".
1105 static int
1106 intable(table, size, c)
1107 struct interval *table;
1108 size_t size;
1109 int c;
1111 int mid, bot, top;
1113 /* first quick check for Latin1 etc. characters */
1114 if (c < table[0].first)
1115 return FALSE;
1117 /* binary search in table */
1118 bot = 0;
1119 top = (int)(size / sizeof(struct interval) - 1);
1120 while (top >= bot)
1122 mid = (bot + top) / 2;
1123 if (table[mid].last < c)
1124 bot = mid + 1;
1125 else if (table[mid].first > c)
1126 top = mid - 1;
1127 else
1128 return TRUE;
1130 return FALSE;
1134 * For UTF-8 character "c" return 2 for a double-width character, 1 for others.
1135 * Returns 4 or 6 for an unprintable character.
1136 * Is only correct for characters >= 0x80.
1137 * When p_ambw is "double", return 2 for a character with East Asian Width
1138 * class 'A'(mbiguous).
1141 utf_char2cells(c)
1142 int c;
1144 /* sorted list of non-overlapping intervals of East Asian Ambiguous
1145 * characters, generated with:
1146 * "uniset +WIDTH-A -cat=Me -cat=Mn -cat=Cf c" */
1147 static struct interval ambiguous[] = {
1148 {0x00A1, 0x00A1}, {0x00A4, 0x00A4}, {0x00A7, 0x00A8},
1149 {0x00AA, 0x00AA}, {0x00AE, 0x00AE}, {0x00B0, 0x00B4},
1150 {0x00B6, 0x00BA}, {0x00BC, 0x00BF}, {0x00C6, 0x00C6},
1151 {0x00D0, 0x00D0}, {0x00D7, 0x00D8}, {0x00DE, 0x00E1},
1152 {0x00E6, 0x00E6}, {0x00E8, 0x00EA}, {0x00EC, 0x00ED},
1153 {0x00F0, 0x00F0}, {0x00F2, 0x00F3}, {0x00F7, 0x00FA},
1154 {0x00FC, 0x00FC}, {0x00FE, 0x00FE}, {0x0101, 0x0101},
1155 {0x0111, 0x0111}, {0x0113, 0x0113}, {0x011B, 0x011B},
1156 {0x0126, 0x0127}, {0x012B, 0x012B}, {0x0131, 0x0133},
1157 {0x0138, 0x0138}, {0x013F, 0x0142}, {0x0144, 0x0144},
1158 {0x0148, 0x014B}, {0x014D, 0x014D}, {0x0152, 0x0153},
1159 {0x0166, 0x0167}, {0x016B, 0x016B}, {0x01CE, 0x01CE},
1160 {0x01D0, 0x01D0}, {0x01D2, 0x01D2}, {0x01D4, 0x01D4},
1161 {0x01D6, 0x01D6}, {0x01D8, 0x01D8}, {0x01DA, 0x01DA},
1162 {0x01DC, 0x01DC}, {0x0251, 0x0251}, {0x0261, 0x0261},
1163 {0x02C4, 0x02C4}, {0x02C7, 0x02C7}, {0x02C9, 0x02CB},
1164 {0x02CD, 0x02CD}, {0x02D0, 0x02D0}, {0x02D8, 0x02DB},
1165 {0x02DD, 0x02DD}, {0x02DF, 0x02DF}, {0x0391, 0x03A1},
1166 {0x03A3, 0x03A9}, {0x03B1, 0x03C1}, {0x03C3, 0x03C9},
1167 {0x0401, 0x0401}, {0x0410, 0x044F}, {0x0451, 0x0451},
1168 {0x2010, 0x2010}, {0x2013, 0x2016}, {0x2018, 0x2019},
1169 {0x201C, 0x201D}, {0x2020, 0x2022}, {0x2024, 0x2027},
1170 {0x2030, 0x2030}, {0x2032, 0x2033}, {0x2035, 0x2035},
1171 {0x203B, 0x203B}, {0x203E, 0x203E}, {0x2074, 0x2074},
1172 {0x207F, 0x207F}, {0x2081, 0x2084}, {0x20AC, 0x20AC},
1173 {0x2103, 0x2103}, {0x2105, 0x2105}, {0x2109, 0x2109},
1174 {0x2113, 0x2113}, {0x2116, 0x2116}, {0x2121, 0x2122},
1175 {0x2126, 0x2126}, {0x212B, 0x212B}, {0x2153, 0x2154},
1176 {0x215B, 0x215E}, {0x2160, 0x216B}, {0x2170, 0x2179},
1177 {0x2190, 0x2199}, {0x21B8, 0x21B9}, {0x21D2, 0x21D2},
1178 {0x21D4, 0x21D4}, {0x21E7, 0x21E7}, {0x2200, 0x2200},
1179 {0x2202, 0x2203}, {0x2207, 0x2208}, {0x220B, 0x220B},
1180 {0x220F, 0x220F}, {0x2211, 0x2211}, {0x2215, 0x2215},
1181 {0x221A, 0x221A}, {0x221D, 0x2220}, {0x2223, 0x2223},
1182 {0x2225, 0x2225}, {0x2227, 0x222C}, {0x222E, 0x222E},
1183 {0x2234, 0x2237}, {0x223C, 0x223D}, {0x2248, 0x2248},
1184 {0x224C, 0x224C}, {0x2252, 0x2252}, {0x2260, 0x2261},
1185 {0x2264, 0x2267}, {0x226A, 0x226B}, {0x226E, 0x226F},
1186 {0x2282, 0x2283}, {0x2286, 0x2287}, {0x2295, 0x2295},
1187 {0x2299, 0x2299}, {0x22A5, 0x22A5}, {0x22BF, 0x22BF},
1188 {0x2312, 0x2312}, {0x2460, 0x24E9}, {0x24EB, 0x254B},
1189 {0x2550, 0x2573}, {0x2580, 0x258F}, {0x2592, 0x2595},
1190 {0x25A0, 0x25A1}, {0x25A3, 0x25A9}, {0x25B2, 0x25B3},
1191 {0x25B6, 0x25B7}, {0x25BC, 0x25BD}, {0x25C0, 0x25C1},
1192 {0x25C6, 0x25C8}, {0x25CB, 0x25CB}, {0x25CE, 0x25D1},
1193 {0x25E2, 0x25E5}, {0x25EF, 0x25EF}, {0x2605, 0x2606},
1194 {0x2609, 0x2609}, {0x260E, 0x260F}, {0x2614, 0x2615},
1195 {0x261C, 0x261C}, {0x261E, 0x261E}, {0x2640, 0x2640},
1196 {0x2642, 0x2642}, {0x2660, 0x2661}, {0x2663, 0x2665},
1197 {0x2667, 0x266A}, {0x266C, 0x266D}, {0x266F, 0x266F},
1198 {0x273D, 0x273D}, {0x2776, 0x277F}, {0xE000, 0xF8FF},
1199 {0xFFFD, 0xFFFD}, /* {0xF0000, 0xFFFFD}, {0x100000, 0x10FFFD} */
1202 if (c >= 0x100)
1204 #ifdef USE_WCHAR_FUNCTIONS
1206 * Assume the library function wcwidth() works better than our own
1207 * stuff. It should return 1 for ambiguous width chars!
1209 int n = wcwidth(c);
1211 if (n < 0)
1212 return 6; /* unprintable, displays <xxxx> */
1213 if (n > 1)
1214 return n;
1215 #else
1216 if (!utf_printable(c))
1217 return 6; /* unprintable, displays <xxxx> */
1218 if (c >= 0x1100
1219 && (c <= 0x115f /* Hangul Jamo */
1220 || c == 0x2329
1221 || c == 0x232a
1222 || (c >= 0x2e80 && c <= 0xa4cf
1223 && c != 0x303f) /* CJK ... Yi */
1224 || (c >= 0xac00 && c <= 0xd7a3) /* Hangul Syllables */
1225 || (c >= 0xf900 && c <= 0xfaff) /* CJK Compatibility
1226 Ideographs */
1227 || (c >= 0xfe30 && c <= 0xfe6f) /* CJK Compatibility Forms */
1228 || (c >= 0xff00 && c <= 0xff60) /* Fullwidth Forms */
1229 || (c >= 0xffe0 && c <= 0xffe6)
1230 || (c >= 0x20000 && c <= 0x2fffd)
1231 || (c >= 0x30000 && c <= 0x3fffd)))
1232 return 2;
1233 #endif
1236 /* Characters below 0x100 are influenced by 'isprint' option */
1237 else if (c >= 0x80 && !vim_isprintc(c))
1238 return 4; /* unprintable, displays <xx> */
1240 if (c >= 0x80 && *p_ambw == 'd' && intable(ambiguous, sizeof(ambiguous), c))
1241 return 2;
1243 return 1;
1247 * mb_ptr2cells() function pointer.
1248 * Return the number of display cells character at "*p" occupies.
1249 * This doesn't take care of unprintable characters, use ptr2cells() for that.
1251 /*ARGSUSED*/
1253 latin_ptr2cells(p)
1254 char_u *p;
1256 return 1;
1260 utf_ptr2cells(p)
1261 char_u *p;
1263 int c;
1265 /* Need to convert to a wide character. */
1266 if (*p >= 0x80)
1268 c = utf_ptr2char(p);
1269 /* An illegal byte is displayed as <xx>. */
1270 if (utf_ptr2len(p) == 1 || c == NUL)
1271 return 4;
1272 /* If the char is ASCII it must be an overlong sequence. */
1273 if (c < 0x80)
1274 return char2cells(c);
1275 return utf_char2cells(c);
1277 return 1;
1281 dbcs_ptr2cells(p)
1282 char_u *p;
1284 /* Number of cells is equal to number of bytes, except for euc-jp when
1285 * the first byte is 0x8e. */
1286 if (enc_dbcs == DBCS_JPNU && *p == 0x8e)
1287 return 1;
1288 return MB_BYTE2LEN(*p);
1292 * mb_char2cells() function pointer.
1293 * Return the number of display cells character "c" occupies.
1294 * Only takes care of multi-byte chars, not "^C" and such.
1296 /*ARGSUSED*/
1298 latin_char2cells(c)
1299 int c;
1301 return 1;
1304 static int
1305 dbcs_char2cells(c)
1306 int c;
1308 /* Number of cells is equal to number of bytes, except for euc-jp when
1309 * the first byte is 0x8e. */
1310 if (enc_dbcs == DBCS_JPNU && ((unsigned)c >> 8) == 0x8e)
1311 return 1;
1312 /* use the first byte */
1313 return MB_BYTE2LEN((unsigned)c >> 8);
1317 * mb_off2cells() function pointer.
1318 * Return number of display cells for char at ScreenLines[off].
1319 * We make sure that the offset used is less than "max_off".
1321 /*ARGSUSED*/
1323 latin_off2cells(off, max_off)
1324 unsigned off;
1325 unsigned max_off;
1327 return 1;
1331 dbcs_off2cells(off, max_off)
1332 unsigned off;
1333 unsigned max_off;
1335 /* never check beyond end of the line */
1336 if (off >= max_off)
1337 return 1;
1339 /* Number of cells is equal to number of bytes, except for euc-jp when
1340 * the first byte is 0x8e. */
1341 if (enc_dbcs == DBCS_JPNU && ScreenLines[off] == 0x8e)
1342 return 1;
1343 return MB_BYTE2LEN(ScreenLines[off]);
1347 utf_off2cells(off, max_off)
1348 unsigned off;
1349 unsigned max_off;
1351 return (off + 1 < max_off && ScreenLines[off + 1] == 0) ? 2 : 1;
1355 * mb_ptr2char() function pointer.
1356 * Convert a byte sequence into a character.
1359 latin_ptr2char(p)
1360 char_u *p;
1362 return *p;
1365 static int
1366 dbcs_ptr2char(p)
1367 char_u *p;
1369 if (MB_BYTE2LEN(*p) > 1 && p[1] != NUL)
1370 return (p[0] << 8) + p[1];
1371 return *p;
1375 * Convert a UTF-8 byte sequence to a wide character.
1376 * If the sequence is illegal or truncated by a NUL the first byte is
1377 * returned.
1378 * Does not include composing characters, of course.
1381 utf_ptr2char(p)
1382 char_u *p;
1384 int len;
1386 if (p[0] < 0x80) /* be quick for ASCII */
1387 return p[0];
1389 len = utf8len_tab[p[0]];
1390 if (len > 1 && (p[1] & 0xc0) == 0x80)
1392 if (len == 2)
1393 return ((p[0] & 0x1f) << 6) + (p[1] & 0x3f);
1394 if ((p[2] & 0xc0) == 0x80)
1396 if (len == 3)
1397 return ((p[0] & 0x0f) << 12) + ((p[1] & 0x3f) << 6)
1398 + (p[2] & 0x3f);
1399 if ((p[3] & 0xc0) == 0x80)
1401 if (len == 4)
1402 return ((p[0] & 0x07) << 18) + ((p[1] & 0x3f) << 12)
1403 + ((p[2] & 0x3f) << 6) + (p[3] & 0x3f);
1404 if ((p[4] & 0xc0) == 0x80)
1406 if (len == 5)
1407 return ((p[0] & 0x03) << 24) + ((p[1] & 0x3f) << 18)
1408 + ((p[2] & 0x3f) << 12) + ((p[3] & 0x3f) << 6)
1409 + (p[4] & 0x3f);
1410 if ((p[5] & 0xc0) == 0x80 && len == 6)
1411 return ((p[0] & 0x01) << 30) + ((p[1] & 0x3f) << 24)
1412 + ((p[2] & 0x3f) << 18) + ((p[3] & 0x3f) << 12)
1413 + ((p[4] & 0x3f) << 6) + (p[5] & 0x3f);
1418 /* Illegal value, just return the first byte */
1419 return p[0];
1423 * Get character at **pp and advance *pp to the next character.
1424 * Note: composing characters are skipped!
1427 mb_ptr2char_adv(pp)
1428 char_u **pp;
1430 int c;
1432 c = (*mb_ptr2char)(*pp);
1433 *pp += (*mb_ptr2len)(*pp);
1434 return c;
1438 * Get character at **pp and advance *pp to the next character.
1439 * Note: composing characters are returned as separate characters.
1442 mb_cptr2char_adv(pp)
1443 char_u **pp;
1445 int c;
1447 c = (*mb_ptr2char)(*pp);
1448 if (enc_utf8)
1449 *pp += utf_ptr2len(*pp);
1450 else
1451 *pp += (*mb_ptr2len)(*pp);
1452 return c;
1455 #if defined(FEAT_ARABIC) || defined(PROTO)
1457 * Check whether we are dealing with Arabic combining characters.
1458 * Note: these are NOT really composing characters!
1461 arabic_combine(one, two)
1462 int one; /* first character */
1463 int two; /* character just after "one" */
1465 if (one == a_LAM)
1466 return arabic_maycombine(two);
1467 return FALSE;
1471 * Check whether we are dealing with a character that could be regarded as an
1472 * Arabic combining character, need to check the character before this.
1475 arabic_maycombine(two)
1476 int two;
1478 if (p_arshape && !p_tbidi)
1479 return (two == a_ALEF_MADDA
1480 || two == a_ALEF_HAMZA_ABOVE
1481 || two == a_ALEF_HAMZA_BELOW
1482 || two == a_ALEF);
1483 return FALSE;
1487 * Check if the character pointed to by "p2" is a composing character when it
1488 * comes after "p1". For Arabic sometimes "ab" is replaced with "c", which
1489 * behaves like a composing character.
1492 utf_composinglike(p1, p2)
1493 char_u *p1;
1494 char_u *p2;
1496 int c2;
1498 c2 = utf_ptr2char(p2);
1499 if (utf_iscomposing(c2))
1500 return TRUE;
1501 if (!arabic_maycombine(c2))
1502 return FALSE;
1503 return arabic_combine(utf_ptr2char(p1), c2);
1505 #endif
1508 * Convert a UTF-8 byte string to a wide character. Also get up to MAX_MCO
1509 * composing characters.
1512 utfc_ptr2char(p, pcc)
1513 char_u *p;
1514 int *pcc; /* return: composing chars, last one is 0 */
1516 int len;
1517 int c;
1518 int cc;
1519 int i = 0;
1521 c = utf_ptr2char(p);
1522 len = utf_ptr2len(p);
1524 /* Only accept a composing char when the first char isn't illegal. */
1525 if ((len > 1 || *p < 0x80)
1526 && p[len] >= 0x80
1527 && UTF_COMPOSINGLIKE(p, p + len))
1529 cc = utf_ptr2char(p + len);
1530 for (;;)
1532 pcc[i++] = cc;
1533 if (i == MAX_MCO)
1534 break;
1535 len += utf_ptr2len(p + len);
1536 if (p[len] < 0x80 || !utf_iscomposing(cc = utf_ptr2char(p + len)))
1537 break;
1541 if (i < MAX_MCO) /* last composing char must be 0 */
1542 pcc[i] = 0;
1544 return c;
1548 * Convert a UTF-8 byte string to a wide character. Also get up to MAX_MCO
1549 * composing characters. Use no more than p[maxlen].
1552 utfc_ptr2char_len(p, pcc, maxlen)
1553 char_u *p;
1554 int *pcc; /* return: composing chars, last one is 0 */
1555 int maxlen;
1557 int len;
1558 int c;
1559 int cc;
1560 int i = 0;
1562 c = utf_ptr2char(p);
1563 len = utf_ptr2len_len(p, maxlen);
1564 /* Only accept a composing char when the first char isn't illegal. */
1565 if ((len > 1 || *p < 0x80)
1566 && len < maxlen
1567 && p[len] >= 0x80
1568 && UTF_COMPOSINGLIKE(p, p + len))
1570 cc = utf_ptr2char(p + len);
1571 for (;;)
1573 pcc[i++] = cc;
1574 if (i == MAX_MCO)
1575 break;
1576 len += utf_ptr2len_len(p + len, maxlen - len);
1577 if (len >= maxlen
1578 || p[len] < 0x80
1579 || !utf_iscomposing(cc = utf_ptr2char(p + len)))
1580 break;
1584 if (i < MAX_MCO) /* last composing char must be 0 */
1585 pcc[i] = 0;
1587 return c;
1591 * Convert the character at screen position "off" to a sequence of bytes.
1592 * Includes the composing characters.
1593 * "buf" must at least have the length MB_MAXBYTES.
1594 * Returns the produced number of bytes.
1597 utfc_char2bytes(off, buf)
1598 int off;
1599 char_u *buf;
1601 int len;
1602 int i;
1604 len = utf_char2bytes(ScreenLinesUC[off], buf);
1605 for (i = 0; i < Screen_mco; ++i)
1607 if (ScreenLinesC[i][off] == 0)
1608 break;
1609 len += utf_char2bytes(ScreenLinesC[i][off], buf + len);
1611 return len;
1615 * Get the length of a UTF-8 byte sequence, not including any following
1616 * composing characters.
1617 * Returns 0 for "".
1618 * Returns 1 for an illegal byte sequence.
1621 utf_ptr2len(p)
1622 char_u *p;
1624 int len;
1625 int i;
1627 if (*p == NUL)
1628 return 0;
1629 len = utf8len_tab[*p];
1630 for (i = 1; i < len; ++i)
1631 if ((p[i] & 0xc0) != 0x80)
1632 return 1;
1633 return len;
1637 * Return length of UTF-8 character, obtained from the first byte.
1638 * "b" must be between 0 and 255!
1641 utf_byte2len(b)
1642 int b;
1644 return utf8len_tab[b];
1648 * Get the length of UTF-8 byte sequence "p[size]". Does not include any
1649 * following composing characters.
1650 * Returns 1 for "".
1651 * Returns 1 for an illegal byte sequence (also in incomplete byte seq.).
1652 * Returns number > "size" for an incomplete byte sequence.
1655 utf_ptr2len_len(p, size)
1656 char_u *p;
1657 int size;
1659 int len;
1660 int i;
1661 int m;
1663 if (*p == NUL)
1664 return 1;
1665 m = len = utf8len_tab[*p];
1666 if (len > size)
1667 m = size; /* incomplete byte sequence. */
1668 for (i = 1; i < m; ++i)
1669 if ((p[i] & 0xc0) != 0x80)
1670 return 1;
1671 return len;
1675 * Return the number of bytes the UTF-8 encoding of the character at "p" takes.
1676 * This includes following composing characters.
1679 utfc_ptr2len(p)
1680 char_u *p;
1682 int len;
1683 int b0 = *p;
1684 #ifdef FEAT_ARABIC
1685 int prevlen;
1686 #endif
1688 if (b0 == NUL)
1689 return 0;
1690 if (b0 < 0x80 && p[1] < 0x80) /* be quick for ASCII */
1691 return 1;
1693 /* Skip over first UTF-8 char, stopping at a NUL byte. */
1694 len = utf_ptr2len(p);
1696 /* Check for illegal byte. */
1697 if (len == 1 && b0 >= 0x80)
1698 return 1;
1701 * Check for composing characters. We can handle only the first two, but
1702 * skip all of them (otherwise the cursor would get stuck).
1704 #ifdef FEAT_ARABIC
1705 prevlen = 0;
1706 #endif
1707 for (;;)
1709 if (p[len] < 0x80 || !UTF_COMPOSINGLIKE(p + prevlen, p + len))
1710 return len;
1712 /* Skip over composing char */
1713 #ifdef FEAT_ARABIC
1714 prevlen = len;
1715 #endif
1716 len += utf_ptr2len(p + len);
1721 * Return the number of bytes the UTF-8 encoding of the character at "p[size]"
1722 * takes. This includes following composing characters.
1723 * Returns 1 for an illegal char or an incomplete byte sequence.
1726 utfc_ptr2len_len(p, size)
1727 char_u *p;
1728 int size;
1730 int len;
1731 #ifdef FEAT_ARABIC
1732 int prevlen;
1733 #endif
1735 if (*p == NUL)
1736 return 0;
1737 if (p[0] < 0x80 && (size == 1 || p[1] < 0x80)) /* be quick for ASCII */
1738 return 1;
1740 /* Skip over first UTF-8 char, stopping at a NUL byte. */
1741 len = utf_ptr2len_len(p, size);
1743 /* Check for illegal byte and incomplete byte sequence. */
1744 if ((len == 1 && p[0] >= 0x80) || len > size)
1745 return 1;
1748 * Check for composing characters. We can handle only the first two, but
1749 * skip all of them (otherwise the cursor would get stuck).
1751 #ifdef FEAT_ARABIC
1752 prevlen = 0;
1753 #endif
1754 while (len < size)
1756 int len_next_char;
1758 if (p[len] < 0x80)
1759 break;
1762 * Next character length should not go beyond size to ensure that
1763 * UTF_COMPOSINGLIKE(...) does not read beyond size.
1765 len_next_char = utf_ptr2len_len(p + len, size - len);
1766 if (len_next_char > size - len)
1767 break;
1769 if (!UTF_COMPOSINGLIKE(p + prevlen, p + len))
1770 break;
1772 /* Skip over composing char */
1773 #ifdef FEAT_ARABIC
1774 prevlen = len;
1775 #endif
1776 len += len_next_char;
1778 return len;
1782 * Return the number of bytes the UTF-8 encoding of character "c" takes.
1783 * This does not include composing characters.
1786 utf_char2len(c)
1787 int c;
1789 if (c < 0x80)
1790 return 1;
1791 if (c < 0x800)
1792 return 2;
1793 if (c < 0x10000)
1794 return 3;
1795 if (c < 0x200000)
1796 return 4;
1797 if (c < 0x4000000)
1798 return 5;
1799 return 6;
1803 * Convert Unicode character "c" to UTF-8 string in "buf[]".
1804 * Returns the number of bytes.
1805 * This does not include composing characters.
1808 utf_char2bytes(c, buf)
1809 int c;
1810 char_u *buf;
1812 if (c < 0x80) /* 7 bits */
1814 buf[0] = c;
1815 return 1;
1817 if (c < 0x800) /* 11 bits */
1819 buf[0] = 0xc0 + ((unsigned)c >> 6);
1820 buf[1] = 0x80 + (c & 0x3f);
1821 return 2;
1823 if (c < 0x10000) /* 16 bits */
1825 buf[0] = 0xe0 + ((unsigned)c >> 12);
1826 buf[1] = 0x80 + (((unsigned)c >> 6) & 0x3f);
1827 buf[2] = 0x80 + (c & 0x3f);
1828 return 3;
1830 if (c < 0x200000) /* 21 bits */
1832 buf[0] = 0xf0 + ((unsigned)c >> 18);
1833 buf[1] = 0x80 + (((unsigned)c >> 12) & 0x3f);
1834 buf[2] = 0x80 + (((unsigned)c >> 6) & 0x3f);
1835 buf[3] = 0x80 + (c & 0x3f);
1836 return 4;
1838 if (c < 0x4000000) /* 26 bits */
1840 buf[0] = 0xf8 + ((unsigned)c >> 24);
1841 buf[1] = 0x80 + (((unsigned)c >> 18) & 0x3f);
1842 buf[2] = 0x80 + (((unsigned)c >> 12) & 0x3f);
1843 buf[3] = 0x80 + (((unsigned)c >> 6) & 0x3f);
1844 buf[4] = 0x80 + (c & 0x3f);
1845 return 5;
1847 /* 31 bits */
1848 buf[0] = 0xfc + ((unsigned)c >> 30);
1849 buf[1] = 0x80 + (((unsigned)c >> 24) & 0x3f);
1850 buf[2] = 0x80 + (((unsigned)c >> 18) & 0x3f);
1851 buf[3] = 0x80 + (((unsigned)c >> 12) & 0x3f);
1852 buf[4] = 0x80 + (((unsigned)c >> 6) & 0x3f);
1853 buf[5] = 0x80 + (c & 0x3f);
1854 return 6;
1858 * Return TRUE if "c" is a composing UTF-8 character. This means it will be
1859 * drawn on top of the preceding character.
1860 * Based on code from Markus Kuhn.
1863 utf_iscomposing(c)
1864 int c;
1866 /* sorted list of non-overlapping intervals */
1867 static struct interval combining[] =
1869 {0x0300, 0x034f}, {0x0360, 0x036f}, {0x0483, 0x0486}, {0x0488, 0x0489},
1870 {0x0591, 0x05a1}, {0x05a3, 0x05b9}, {0x05bb, 0x05bd}, {0x05bf, 0x05bf},
1871 {0x05c1, 0x05c2}, {0x05c4, 0x05c4}, {0x0610, 0x0615}, {0x064b, 0x0658},
1872 {0x0670, 0x0670}, {0x06d6, 0x06dc}, {0x06de, 0x06e4}, {0x06e7, 0x06e8},
1873 {0x06ea, 0x06ed}, {0x0711, 0x0711}, {0x0730, 0x074a}, {0x07a6, 0x07b0},
1874 {0x0901, 0x0903}, {0x093c, 0x093c}, {0x093e, 0x094d}, {0x0951, 0x0954},
1875 {0x0962, 0x0963}, {0x0981, 0x0983}, {0x09bc, 0x09bc}, {0x09be, 0x09c4},
1876 {0x09c7, 0x09c8}, {0x09cb, 0x09cd}, {0x09d7, 0x09d7}, {0x09e2, 0x09e3},
1877 {0x0a01, 0x0a03}, {0x0a3c, 0x0a3c}, {0x0a3e, 0x0a42}, {0x0a47, 0x0a48},
1878 {0x0a4b, 0x0a4d}, {0x0a70, 0x0a71}, {0x0a81, 0x0a83}, {0x0abc, 0x0abc},
1879 {0x0abe, 0x0ac5}, {0x0ac7, 0x0ac9}, {0x0acb, 0x0acd}, {0x0ae2, 0x0ae3},
1880 {0x0b01, 0x0b03}, {0x0b3c, 0x0b3c}, {0x0b3e, 0x0b43}, {0x0b47, 0x0b48},
1881 {0x0b4b, 0x0b4d}, {0x0b56, 0x0b57}, {0x0b82, 0x0b82}, {0x0bbe, 0x0bc2},
1882 {0x0bc6, 0x0bc8}, {0x0bca, 0x0bcd}, {0x0bd7, 0x0bd7}, {0x0c01, 0x0c03},
1883 {0x0c3e, 0x0c44}, {0x0c46, 0x0c48}, {0x0c4a, 0x0c4d}, {0x0c55, 0x0c56},
1884 {0x0c82, 0x0c83}, {0x0cbc, 0x0cbc}, {0x0cbe, 0x0cc4}, {0x0cc6, 0x0cc8},
1885 {0x0cca, 0x0ccd}, {0x0cd5, 0x0cd6}, {0x0d02, 0x0d03}, {0x0d3e, 0x0d43},
1886 {0x0d46, 0x0d48}, {0x0d4a, 0x0d4d}, {0x0d57, 0x0d57}, {0x0d82, 0x0d83},
1887 {0x0dca, 0x0dca}, {0x0dcf, 0x0dd4}, {0x0dd6, 0x0dd6}, {0x0dd8, 0x0ddf},
1888 {0x0df2, 0x0df3}, {0x0e31, 0x0e31}, {0x0e34, 0x0e3a}, {0x0e47, 0x0e4e},
1889 {0x0eb1, 0x0eb1}, {0x0eb4, 0x0eb9}, {0x0ebb, 0x0ebc}, {0x0ec8, 0x0ecd},
1890 {0x0f18, 0x0f19}, {0x0f35, 0x0f35}, {0x0f37, 0x0f37}, {0x0f39, 0x0f39},
1891 {0x0f3e, 0x0f3f}, {0x0f71, 0x0f84}, {0x0f86, 0x0f87}, {0x0f90, 0x0f97},
1892 {0x0f99, 0x0fbc}, {0x0fc6, 0x0fc6}, {0x102c, 0x1032}, {0x1036, 0x1039},
1893 {0x1056, 0x1059}, {0x1712, 0x1714}, {0x1732, 0x1734}, {0x1752, 0x1753},
1894 {0x1772, 0x1773}, {0x17b6, 0x17d3}, {0x17dd, 0x17dd}, {0x180b, 0x180d},
1895 {0x18a9, 0x18a9}, {0x1920, 0x192b}, {0x1930, 0x193b}, {0x20d0, 0x20ea},
1896 {0x302a, 0x302f}, {0x3099, 0x309a}, {0xfb1e, 0xfb1e}, {0xfe00, 0xfe0f},
1897 {0xfe20, 0xfe23},
1900 return intable(combining, sizeof(combining), c);
1904 * Return TRUE for characters that can be displayed in a normal way.
1905 * Only for characters of 0x100 and above!
1908 utf_printable(c)
1909 int c;
1911 #ifdef USE_WCHAR_FUNCTIONS
1913 * Assume the iswprint() library function works better than our own stuff.
1915 return iswprint(c);
1916 #else
1917 /* Sorted list of non-overlapping intervals.
1918 * 0xd800-0xdfff is reserved for UTF-16, actually illegal. */
1919 static struct interval nonprint[] =
1921 {0x070f, 0x070f}, {0x180b, 0x180e}, {0x200b, 0x200f}, {0x202a, 0x202e},
1922 {0x206a, 0x206f}, {0xd800, 0xdfff}, {0xfeff, 0xfeff}, {0xfff9, 0xfffb},
1923 {0xfffe, 0xffff}
1926 return !intable(nonprint, sizeof(nonprint), c);
1927 #endif
1931 * Get class of a Unicode character.
1932 * 0: white space
1933 * 1: punctuation
1934 * 2 or bigger: some class of word character.
1937 utf_class(c)
1938 int c;
1940 /* sorted list of non-overlapping intervals */
1941 static struct clinterval
1943 unsigned short first;
1944 unsigned short last;
1945 unsigned short class;
1946 } classes[] =
1948 {0x037e, 0x037e, 1}, /* Greek question mark */
1949 {0x0387, 0x0387, 1}, /* Greek ano teleia */
1950 {0x055a, 0x055f, 1}, /* Armenian punctuation */
1951 {0x0589, 0x0589, 1}, /* Armenian full stop */
1952 {0x05be, 0x05be, 1},
1953 {0x05c0, 0x05c0, 1},
1954 {0x05c3, 0x05c3, 1},
1955 {0x05f3, 0x05f4, 1},
1956 {0x060c, 0x060c, 1},
1957 {0x061b, 0x061b, 1},
1958 {0x061f, 0x061f, 1},
1959 {0x066a, 0x066d, 1},
1960 {0x06d4, 0x06d4, 1},
1961 {0x0700, 0x070d, 1}, /* Syriac punctuation */
1962 {0x0964, 0x0965, 1},
1963 {0x0970, 0x0970, 1},
1964 {0x0df4, 0x0df4, 1},
1965 {0x0e4f, 0x0e4f, 1},
1966 {0x0e5a, 0x0e5b, 1},
1967 {0x0f04, 0x0f12, 1},
1968 {0x0f3a, 0x0f3d, 1},
1969 {0x0f85, 0x0f85, 1},
1970 {0x104a, 0x104f, 1}, /* Myanmar punctuation */
1971 {0x10fb, 0x10fb, 1}, /* Georgian punctuation */
1972 {0x1361, 0x1368, 1}, /* Ethiopic punctuation */
1973 {0x166d, 0x166e, 1}, /* Canadian Syl. punctuation */
1974 {0x1680, 0x1680, 0},
1975 {0x169b, 0x169c, 1},
1976 {0x16eb, 0x16ed, 1},
1977 {0x1735, 0x1736, 1},
1978 {0x17d4, 0x17dc, 1}, /* Khmer punctuation */
1979 {0x1800, 0x180a, 1}, /* Mongolian punctuation */
1980 {0x2000, 0x200b, 0}, /* spaces */
1981 {0x200c, 0x2027, 1}, /* punctuation and symbols */
1982 {0x2028, 0x2029, 0},
1983 {0x202a, 0x202e, 1}, /* punctuation and symbols */
1984 {0x202f, 0x202f, 0},
1985 {0x2030, 0x205e, 1}, /* punctuation and symbols */
1986 {0x205f, 0x205f, 0},
1987 {0x2060, 0x27ff, 1}, /* punctuation and symbols */
1988 {0x2070, 0x207f, 0x2070}, /* superscript */
1989 {0x2080, 0x2094, 0x2080}, /* subscript */
1990 {0x20a0, 0x27ff, 1}, /* all kinds of symbols */
1991 {0x2800, 0x28ff, 0x2800}, /* braille */
1992 {0x2900, 0x2998, 1}, /* arrows, brackets, etc. */
1993 {0x29d8, 0x29db, 1},
1994 {0x29fc, 0x29fd, 1},
1995 {0x3000, 0x3000, 0}, /* ideographic space */
1996 {0x3001, 0x3020, 1}, /* ideographic punctuation */
1997 {0x3030, 0x3030, 1},
1998 {0x303d, 0x303d, 1},
1999 {0x3040, 0x309f, 0x3040}, /* Hiragana */
2000 {0x30a0, 0x30ff, 0x30a0}, /* Katakana */
2001 {0x3300, 0x9fff, 0x4e00}, /* CJK Ideographs */
2002 {0xac00, 0xd7a3, 0xac00}, /* Hangul Syllables */
2003 {0xf900, 0xfaff, 0x4e00}, /* CJK Ideographs */
2004 {0xfd3e, 0xfd3f, 1},
2005 {0xfe30, 0xfe6b, 1}, /* punctuation forms */
2006 {0xff00, 0xff0f, 1}, /* half/fullwidth ASCII */
2007 {0xff1a, 0xff20, 1}, /* half/fullwidth ASCII */
2008 {0xff3b, 0xff40, 1}, /* half/fullwidth ASCII */
2009 {0xff5b, 0xff65, 1}, /* half/fullwidth ASCII */
2011 int bot = 0;
2012 int top = sizeof(classes) / sizeof(struct clinterval) - 1;
2013 int mid;
2015 /* First quick check for Latin1 characters, use 'iskeyword'. */
2016 if (c < 0x100)
2018 if (c == ' ' || c == '\t' || c == NUL || c == 0xa0)
2019 return 0; /* blank */
2020 if (vim_iswordc(c))
2021 return 2; /* word character */
2022 return 1; /* punctuation */
2025 /* binary search in table */
2026 while (top >= bot)
2028 mid = (bot + top) / 2;
2029 if (classes[mid].last < c)
2030 bot = mid + 1;
2031 else if (classes[mid].first > c)
2032 top = mid - 1;
2033 else
2034 return (int)classes[mid].class;
2037 /* most other characters are "word" characters */
2038 return 2;
2042 * Code for Unicode case-dependent operations. Based on notes in
2043 * http://www.unicode.org/Public/UNIDATA/CaseFolding.txt
2044 * This code uses simple case folding, not full case folding.
2048 * The following table is built by foldExtract.pl < CaseFolding.txt .
2049 * It must be in numeric order, because we use binary search on it.
2050 * An entry such as {0x41,0x5a,1,32} means that UCS-4 characters in the range
2051 * from 0x41 to 0x5a inclusive, stepping by 1, are folded by adding 32.
2054 typedef struct
2056 int rangeStart;
2057 int rangeEnd;
2058 int step;
2059 int offset;
2060 } convertStruct;
2062 static convertStruct foldCase[] =
2064 {0x41,0x5a,1,32}, {0xc0,0xd6,1,32}, {0xd8,0xde,1,32},
2065 {0x100,0x12e,2,1}, {0x130,0x130,-1,-199}, {0x132,0x136,2,1},
2066 {0x139,0x147,2,1}, {0x14a,0x176,2,1}, {0x178,0x178,-1,-121},
2067 {0x179,0x17d,2,1}, {0x181,0x181,-1,210}, {0x182,0x184,2,1},
2068 {0x186,0x186,-1,206}, {0x187,0x187,-1,1}, {0x189,0x18a,1,205},
2069 {0x18b,0x18b,-1,1}, {0x18e,0x18e,-1,79}, {0x18f,0x18f,-1,202},
2070 {0x190,0x190,-1,203}, {0x191,0x191,-1,1}, {0x193,0x193,-1,205},
2071 {0x194,0x194,-1,207}, {0x196,0x196,-1,211}, {0x197,0x197,-1,209},
2072 {0x198,0x198,-1,1}, {0x19c,0x19c,-1,211}, {0x19d,0x19d,-1,213},
2073 {0x19f,0x19f,-1,214}, {0x1a0,0x1a4,2,1}, {0x1a6,0x1a6,-1,218},
2074 {0x1a7,0x1a7,-1,1}, {0x1a9,0x1a9,-1,218}, {0x1ac,0x1ac,-1,1},
2075 {0x1ae,0x1ae,-1,218}, {0x1af,0x1af,-1,1}, {0x1b1,0x1b2,1,217},
2076 {0x1b3,0x1b5,2,1}, {0x1b7,0x1b7,-1,219}, {0x1b8,0x1bc,4,1},
2077 {0x1c4,0x1c4,-1,2}, {0x1c5,0x1c5,-1,1}, {0x1c7,0x1c7,-1,2},
2078 {0x1c8,0x1c8,-1,1}, {0x1ca,0x1ca,-1,2}, {0x1cb,0x1db,2,1},
2079 {0x1de,0x1ee,2,1}, {0x1f1,0x1f1,-1,2}, {0x1f2,0x1f4,2,1},
2080 {0x1f6,0x1f6,-1,-97}, {0x1f7,0x1f7,-1,-56}, {0x1f8,0x21e,2,1},
2081 {0x220,0x220,-1,-130}, {0x222,0x232,2,1}, {0x386,0x386,-1,38},
2082 {0x388,0x38a,1,37}, {0x38c,0x38c,-1,64}, {0x38e,0x38f,1,63},
2083 {0x391,0x3a1,1,32}, {0x3a3,0x3ab,1,32}, {0x3d8,0x3ee,2,1},
2084 {0x3f4,0x3f4,-1,-60}, {0x3f7,0x3f7,-1,1}, {0x3f9,0x3f9,-1,-7},
2085 {0x3fa,0x3fa,-1,1}, {0x400,0x40f,1,80}, {0x410,0x42f,1,32},
2086 {0x460,0x480,2,1}, {0x48a,0x4be,2,1}, {0x4c1,0x4cd,2,1},
2087 {0x4d0,0x4f4,2,1}, {0x4f8,0x500,8,1}, {0x502,0x50e,2,1},
2088 {0x531,0x556,1,48}, {0x1e00,0x1e94,2,1}, {0x1ea0,0x1ef8,2,1},
2089 {0x1f08,0x1f0f,1,-8}, {0x1f18,0x1f1d,1,-8}, {0x1f28,0x1f2f,1,-8},
2090 {0x1f38,0x1f3f,1,-8}, {0x1f48,0x1f4d,1,-8}, {0x1f59,0x1f5f,2,-8},
2091 {0x1f68,0x1f6f,1,-8}, {0x1f88,0x1f8f,1,-8}, {0x1f98,0x1f9f,1,-8},
2092 {0x1fa8,0x1faf,1,-8}, {0x1fb8,0x1fb9,1,-8}, {0x1fba,0x1fbb,1,-74},
2093 {0x1fbc,0x1fbc,-1,-9}, {0x1fc8,0x1fcb,1,-86}, {0x1fcc,0x1fcc,-1,-9},
2094 {0x1fd8,0x1fd9,1,-8}, {0x1fda,0x1fdb,1,-100}, {0x1fe8,0x1fe9,1,-8},
2095 {0x1fea,0x1feb,1,-112}, {0x1fec,0x1fec,-1,-7}, {0x1ff8,0x1ff9,1,-128},
2096 {0x1ffa,0x1ffb,1,-126}, {0x1ffc,0x1ffc,-1,-9}, {0x2126,0x2126,-1,-7517},
2097 {0x212a,0x212a,-1,-8383}, {0x212b,0x212b,-1,-8262},
2098 {0x2160,0x216f,1,16}, {0x24b6,0x24cf,1,26}, {0xff21,0xff3a,1,32},
2099 {0x10400,0x10427,1,40}
2102 static int utf_convert(int a, convertStruct table[], int tableSize);
2105 * Generic conversion function for case operations.
2106 * Return the converted equivalent of "a", which is a UCS-4 character. Use
2107 * the given conversion "table". Uses binary search on "table".
2109 static int
2110 utf_convert(a, table, tableSize)
2111 int a;
2112 convertStruct table[];
2113 int tableSize;
2115 int start, mid, end; /* indices into table */
2117 start = 0;
2118 end = tableSize / sizeof(convertStruct);
2119 while (start < end)
2121 /* need to search further */
2122 mid = (end + start) /2;
2123 if (table[mid].rangeEnd < a)
2124 start = mid + 1;
2125 else
2126 end = mid;
2128 if (table[start].rangeStart <= a && a <= table[start].rangeEnd
2129 && (a - table[start].rangeStart) % table[start].step == 0)
2130 return (a + table[start].offset);
2131 else
2132 return a;
2136 * Return the folded-case equivalent of "a", which is a UCS-4 character. Uses
2137 * simple case folding.
2140 utf_fold(a)
2141 int a;
2143 return utf_convert(a, foldCase, sizeof(foldCase));
2147 * The following tables are built by upperLowerExtract.pl < UnicodeData.txt .
2148 * They must be in numeric order, because we use binary search on them.
2149 * An entry such as {0x41,0x5a,1,32} means that UCS-4 characters in the range
2150 * from 0x41 to 0x5a inclusive, stepping by 1, are switched to lower (for
2151 * example) by adding 32.
2153 static convertStruct toLower[] =
2155 {0x41,0x5a,1,32}, {0xc0,0xd6,1,32}, {0xd8,0xde,1,32},
2156 {0x100,0x12e,2,1}, {0x130,0x130,-1,-199}, {0x132,0x136,2,1},
2157 {0x139,0x147,2,1}, {0x14a,0x176,2,1}, {0x178,0x178,-1,-121},
2158 {0x179,0x17d,2,1}, {0x181,0x181,-1,210}, {0x182,0x184,2,1},
2159 {0x186,0x186,-1,206}, {0x187,0x187,-1,1}, {0x189,0x18a,1,205},
2160 {0x18b,0x18b,-1,1}, {0x18e,0x18e,-1,79}, {0x18f,0x18f,-1,202},
2161 {0x190,0x190,-1,203}, {0x191,0x191,-1,1}, {0x193,0x193,-1,205},
2162 {0x194,0x194,-1,207}, {0x196,0x196,-1,211}, {0x197,0x197,-1,209},
2163 {0x198,0x198,-1,1}, {0x19c,0x19c,-1,211}, {0x19d,0x19d,-1,213},
2164 {0x19f,0x19f,-1,214}, {0x1a0,0x1a4,2,1}, {0x1a6,0x1a6,-1,218},
2165 {0x1a7,0x1a7,-1,1}, {0x1a9,0x1a9,-1,218}, {0x1ac,0x1ac,-1,1},
2166 {0x1ae,0x1ae,-1,218}, {0x1af,0x1af,-1,1}, {0x1b1,0x1b2,1,217},
2167 {0x1b3,0x1b5,2,1}, {0x1b7,0x1b7,-1,219}, {0x1b8,0x1bc,4,1},
2168 {0x1c4,0x1ca,3,2}, {0x1cd,0x1db,2,1}, {0x1de,0x1ee,2,1},
2169 {0x1f1,0x1f1,-1,2}, {0x1f4,0x1f4,-1,1}, {0x1f6,0x1f6,-1,-97},
2170 {0x1f7,0x1f7,-1,-56}, {0x1f8,0x21e,2,1}, {0x220,0x220,-1,-130},
2171 {0x222,0x232,2,1}, {0x386,0x386,-1,38}, {0x388,0x38a,1,37},
2172 {0x38c,0x38c,-1,64}, {0x38e,0x38f,1,63}, {0x391,0x3a1,1,32},
2173 {0x3a3,0x3ab,1,32}, {0x3d8,0x3ee,2,1}, {0x3f4,0x3f4,-1,-60},
2174 {0x3f7,0x3f7,-1,1}, {0x3f9,0x3f9,-1,-7}, {0x3fa,0x3fa,-1,1},
2175 {0x400,0x40f,1,80}, {0x410,0x42f,1,32}, {0x460,0x480,2,1},
2176 {0x48a,0x4be,2,1}, {0x4c1,0x4cd,2,1}, {0x4d0,0x4f4,2,1},
2177 {0x4f8,0x500,8,1}, {0x502,0x50e,2,1}, {0x531,0x556,1,48},
2178 {0x1e00,0x1e94,2,1}, {0x1ea0,0x1ef8,2,1}, {0x1f08,0x1f0f,1,-8},
2179 {0x1f18,0x1f1d,1,-8}, {0x1f28,0x1f2f,1,-8}, {0x1f38,0x1f3f,1,-8},
2180 {0x1f48,0x1f4d,1,-8}, {0x1f59,0x1f5f,2,-8}, {0x1f68,0x1f6f,1,-8},
2181 {0x1fb8,0x1fb9,1,-8}, {0x1fba,0x1fbb,1,-74}, {0x1fc8,0x1fcb,1,-86},
2182 {0x1fd8,0x1fd9,1,-8}, {0x1fda,0x1fdb,1,-100}, {0x1fe8,0x1fe9,1,-8},
2183 {0x1fea,0x1feb,1,-112}, {0x1fec,0x1fec,-1,-7}, {0x1ff8,0x1ff9,1,-128},
2184 {0x1ffa,0x1ffb,1,-126}, {0x2126,0x2126,-1,-7517}, {0x212a,0x212a,-1,-8383},
2185 {0x212b,0x212b,-1,-8262}, {0xff21,0xff3a,1,32}, {0x10400,0x10427,1,40}
2188 static convertStruct toUpper[] =
2190 {0x61,0x7a,1,-32}, {0xb5,0xb5,-1,743}, {0xe0,0xf6,1,-32},
2191 {0xf8,0xfe,1,-32}, {0xff,0xff,-1,121}, {0x101,0x12f,2,-1},
2192 {0x131,0x131,-1,-232}, {0x133,0x137,2,-1}, {0x13a,0x148,2,-1},
2193 {0x14b,0x177,2,-1}, {0x17a,0x17e,2,-1}, {0x17f,0x17f,-1,-300},
2194 {0x183,0x185,2,-1}, {0x188,0x18c,4,-1}, {0x192,0x192,-1,-1},
2195 {0x195,0x195,-1,97}, {0x199,0x199,-1,-1}, {0x19e,0x19e,-1,130},
2196 {0x1a1,0x1a5,2,-1}, {0x1a8,0x1ad,5,-1}, {0x1b0,0x1b4,4,-1},
2197 {0x1b6,0x1b9,3,-1}, {0x1bd,0x1bd,-1,-1}, {0x1bf,0x1bf,-1,56},
2198 {0x1c5,0x1c6,1,-1}, {0x1c8,0x1c9,1,-1}, {0x1cb,0x1cc,1,-1},
2199 {0x1ce,0x1dc,2,-1}, {0x1dd,0x1dd,-1,-79}, {0x1df,0x1ef,2,-1},
2200 {0x1f2,0x1f3,1,-1}, {0x1f5,0x1f9,4,-1}, {0x1fb,0x21f,2,-1},
2201 {0x223,0x233,2,-1}, {0x253,0x253,-1,-210}, {0x254,0x254,-1,-206},
2202 {0x256,0x257,1,-205}, {0x259,0x259,-1,-202}, {0x25b,0x25b,-1,-203},
2203 {0x260,0x260,-1,-205}, {0x263,0x263,-1,-207}, {0x268,0x268,-1,-209},
2204 {0x269,0x26f,6,-211}, {0x272,0x272,-1,-213}, {0x275,0x275,-1,-214},
2205 {0x280,0x283,3,-218}, {0x288,0x288,-1,-218}, {0x28a,0x28b,1,-217},
2206 {0x292,0x292,-1,-219}, {0x3ac,0x3ac,-1,-38}, {0x3ad,0x3af,1,-37},
2207 {0x3b1,0x3c1,1,-32}, {0x3c2,0x3c2,-1,-31}, {0x3c3,0x3cb,1,-32},
2208 {0x3cc,0x3cc,-1,-64}, {0x3cd,0x3ce,1,-63}, {0x3d0,0x3d0,-1,-62},
2209 {0x3d1,0x3d1,-1,-57}, {0x3d5,0x3d5,-1,-47}, {0x3d6,0x3d6,-1,-54},
2210 {0x3d9,0x3ef,2,-1}, {0x3f0,0x3f0,-1,-86}, {0x3f1,0x3f1,-1,-80},
2211 {0x3f2,0x3f2,-1,7}, {0x3f5,0x3f5,-1,-96}, {0x3f8,0x3fb,3,-1},
2212 {0x430,0x44f,1,-32}, {0x450,0x45f,1,-80}, {0x461,0x481,2,-1},
2213 {0x48b,0x4bf,2,-1}, {0x4c2,0x4ce,2,-1}, {0x4d1,0x4f5,2,-1},
2214 {0x4f9,0x501,8,-1}, {0x503,0x50f,2,-1}, {0x561,0x586,1,-48},
2215 {0x1e01,0x1e95,2,-1}, {0x1e9b,0x1e9b,-1,-59}, {0x1ea1,0x1ef9,2,-1},
2216 {0x1f00,0x1f07,1,8}, {0x1f10,0x1f15,1,8}, {0x1f20,0x1f27,1,8},
2217 {0x1f30,0x1f37,1,8}, {0x1f40,0x1f45,1,8}, {0x1f51,0x1f57,2,8},
2218 {0x1f60,0x1f67,1,8}, {0x1f70,0x1f71,1,74}, {0x1f72,0x1f75,1,86},
2219 {0x1f76,0x1f77,1,100}, {0x1f78,0x1f79,1,128}, {0x1f7a,0x1f7b,1,112},
2220 {0x1f7c,0x1f7d,1,126}, {0x1f80,0x1f87,1,8}, {0x1f90,0x1f97,1,8},
2221 {0x1fa0,0x1fa7,1,8}, {0x1fb0,0x1fb1,1,8}, {0x1fb3,0x1fb3,-1,9},
2222 {0x1fbe,0x1fbe,-1,-7205}, {0x1fc3,0x1fc3,-1,9}, {0x1fd0,0x1fd1,1,8},
2223 {0x1fe0,0x1fe1,1,8}, {0x1fe5,0x1fe5,-1,7}, {0x1ff3,0x1ff3,-1,9},
2224 {0xff41,0xff5a,1,-32}, {0x10428,0x1044f,1,-40}
2228 * Return the upper-case equivalent of "a", which is a UCS-4 character. Use
2229 * simple case folding.
2232 utf_toupper(a)
2233 int a;
2235 /* If 'casemap' contains "keepascii" use ASCII style toupper(). */
2236 if (a < 128 && (cmp_flags & CMP_KEEPASCII))
2237 return TOUPPER_ASC(a);
2239 #if defined(HAVE_TOWUPPER) && defined(__STDC_ISO_10646__)
2240 /* If towupper() is available and handles Unicode, use it. */
2241 if (!(cmp_flags & CMP_INTERNAL))
2242 return towupper(a);
2243 #endif
2245 /* For characters below 128 use locale sensitive toupper(). */
2246 if (a < 128)
2247 return TOUPPER_LOC(a);
2249 /* For any other characters use the above mapping table. */
2250 return utf_convert(a, toUpper, sizeof(toUpper));
2254 utf_islower(a)
2255 int a;
2257 return (utf_toupper(a) != a);
2261 * Return the lower-case equivalent of "a", which is a UCS-4 character. Use
2262 * simple case folding.
2265 utf_tolower(a)
2266 int a;
2268 /* If 'casemap' contains "keepascii" use ASCII style tolower(). */
2269 if (a < 128 && (cmp_flags & CMP_KEEPASCII))
2270 return TOLOWER_ASC(a);
2272 #if defined(HAVE_TOWLOWER) && defined(__STDC_ISO_10646__)
2273 /* If towlower() is available and handles Unicode, use it. */
2274 if (!(cmp_flags & CMP_INTERNAL))
2275 return towlower(a);
2276 #endif
2278 /* For characters below 128 use locale sensitive tolower(). */
2279 if (a < 128)
2280 return TOLOWER_LOC(a);
2282 /* For any other characters use the above mapping table. */
2283 return utf_convert(a, toLower, sizeof(toLower));
2287 utf_isupper(a)
2288 int a;
2290 return (utf_tolower(a) != a);
2294 * Version of strnicmp() that handles multi-byte characters.
2295 * Needed for Big5, Sjift-JIS and UTF-8 encoding. Other DBCS encodings can
2296 * probably use strnicmp(), because there are no ASCII characters in the
2297 * second byte.
2298 * Returns zero if s1 and s2 are equal (ignoring case), the difference between
2299 * two characters otherwise.
2302 mb_strnicmp(s1, s2, nn)
2303 char_u *s1, *s2;
2304 size_t nn;
2306 int i, j, l;
2307 int cdiff;
2308 int incomplete = FALSE;
2309 int n = (int)nn;
2311 for (i = 0; i < n; i += l)
2313 if (s1[i] == NUL && s2[i] == NUL) /* both strings end */
2314 return 0;
2315 if (enc_utf8)
2317 l = utf_byte2len(s1[i]);
2318 if (l > n - i)
2320 l = n - i; /* incomplete character */
2321 incomplete = TRUE;
2323 /* Check directly first, it's faster. */
2324 for (j = 0; j < l; ++j)
2326 if (s1[i + j] != s2[i + j])
2327 break;
2328 if (s1[i + j] == 0)
2329 /* Both stings have the same bytes but are incomplete or
2330 * have illegal bytes, accept them as equal. */
2331 l = j;
2333 if (j < l)
2335 /* If one of the two characters is incomplete return -1. */
2336 if (incomplete || i + utf_byte2len(s2[i]) > n)
2337 return -1;
2338 cdiff = utf_fold(utf_ptr2char(s1 + i))
2339 - utf_fold(utf_ptr2char(s2 + i));
2340 if (cdiff != 0)
2341 return cdiff;
2344 else
2346 l = (*mb_ptr2len)(s1 + i);
2347 if (l <= 1)
2349 /* Single byte: first check normally, then with ignore case. */
2350 if (s1[i] != s2[i])
2352 cdiff = MB_TOLOWER(s1[i]) - MB_TOLOWER(s2[i]);
2353 if (cdiff != 0)
2354 return cdiff;
2357 else
2359 /* For non-Unicode multi-byte don't ignore case. */
2360 if (l > n - i)
2361 l = n - i;
2362 cdiff = STRNCMP(s1 + i, s2 + i, l);
2363 if (cdiff != 0)
2364 return cdiff;
2368 return 0;
2372 * "g8": show bytes of the UTF-8 char under the cursor. Doesn't matter what
2373 * 'encoding' has been set to.
2375 void
2376 show_utf8()
2378 int len;
2379 int rlen = 0;
2380 char_u *line;
2381 int clen;
2382 int i;
2384 /* Get the byte length of the char under the cursor, including composing
2385 * characters. */
2386 line = ml_get_cursor();
2387 len = utfc_ptr2len(line);
2388 if (len == 0)
2390 MSG("NUL");
2391 return;
2394 clen = 0;
2395 for (i = 0; i < len; ++i)
2397 if (clen == 0)
2399 /* start of (composing) character, get its length */
2400 if (i > 0)
2402 STRCPY(IObuff + rlen, "+ ");
2403 rlen += 2;
2405 clen = utf_ptr2len(line + i);
2407 sprintf((char *)IObuff + rlen, "%02x ", line[i]);
2408 --clen;
2409 rlen += (int)STRLEN(IObuff + rlen);
2410 if (rlen > IOSIZE - 20)
2411 break;
2414 msg(IObuff);
2418 * mb_head_off() function pointer.
2419 * Return offset from "p" to the first byte of the character it points into.
2420 * Returns 0 when already at the first byte of a character.
2422 /*ARGSUSED*/
2424 latin_head_off(base, p)
2425 char_u *base;
2426 char_u *p;
2428 return 0;
2432 dbcs_head_off(base, p)
2433 char_u *base;
2434 char_u *p;
2436 char_u *q;
2438 /* It can't be a trailing byte when not using DBCS, at the start of the
2439 * string or the previous byte can't start a double-byte. */
2440 if (p <= base || MB_BYTE2LEN(p[-1]) == 1)
2441 return 0;
2443 /* This is slow: need to start at the base and go forward until the
2444 * byte we are looking for. Return 1 when we went past it, 0 otherwise. */
2445 q = base;
2446 while (q < p)
2447 q += dbcs_ptr2len(q);
2448 return (q == p) ? 0 : 1;
2451 #if defined(FEAT_CLIPBOARD) || defined(FEAT_GUI) || defined(FEAT_RIGHTLEFT) \
2452 || defined(PROTO)
2454 * Special version of dbcs_head_off() that works for ScreenLines[], where
2455 * single-width DBCS_JPNU characters are stored separately.
2458 dbcs_screen_head_off(base, p)
2459 char_u *base;
2460 char_u *p;
2462 char_u *q;
2464 /* It can't be a trailing byte when not using DBCS, at the start of the
2465 * string or the previous byte can't start a double-byte.
2466 * For euc-jp an 0x8e byte in the previous cell always means we have a
2467 * lead byte in the current cell. */
2468 if (p <= base
2469 || (enc_dbcs == DBCS_JPNU && p[-1] == 0x8e)
2470 || MB_BYTE2LEN(p[-1]) == 1)
2471 return 0;
2473 /* This is slow: need to start at the base and go forward until the
2474 * byte we are looking for. Return 1 when we went past it, 0 otherwise.
2475 * For DBCS_JPNU look out for 0x8e, which means the second byte is not
2476 * stored as the next byte. */
2477 q = base;
2478 while (q < p)
2480 if (enc_dbcs == DBCS_JPNU && *q == 0x8e)
2481 ++q;
2482 else
2483 q += dbcs_ptr2len(q);
2485 return (q == p) ? 0 : 1;
2487 #endif
2490 utf_head_off(base, p)
2491 char_u *base;
2492 char_u *p;
2494 char_u *q;
2495 char_u *s;
2496 int c;
2497 #ifdef FEAT_ARABIC
2498 char_u *j;
2499 #endif
2501 if (*p < 0x80) /* be quick for ASCII */
2502 return 0;
2504 /* Skip backwards over trailing bytes: 10xx.xxxx
2505 * Skip backwards again if on a composing char. */
2506 for (q = p; ; --q)
2508 /* Move s to the last byte of this char. */
2509 for (s = q; (s[1] & 0xc0) == 0x80; ++s)
2511 /* Move q to the first byte of this char. */
2512 while (q > base && (*q & 0xc0) == 0x80)
2513 --q;
2514 /* Check for illegal sequence. Do allow an illegal byte after where we
2515 * started. */
2516 if (utf8len_tab[*q] != (int)(s - q + 1)
2517 && utf8len_tab[*q] != (int)(p - q + 1))
2518 return 0;
2520 if (q <= base)
2521 break;
2523 c = utf_ptr2char(q);
2524 if (utf_iscomposing(c))
2525 continue;
2527 #ifdef FEAT_ARABIC
2528 if (arabic_maycombine(c))
2530 /* Advance to get a sneak-peak at the next char */
2531 j = q;
2532 --j;
2533 /* Move j to the first byte of this char. */
2534 while (j > base && (*j & 0xc0) == 0x80)
2535 --j;
2536 if (arabic_combine(utf_ptr2char(j), c))
2537 continue;
2539 #endif
2540 break;
2543 return (int)(p - q);
2546 #if defined(FEAT_EVAL) || defined(PROTO)
2548 * Copy a character from "*fp" to "*tp" and advance the pointers.
2550 void
2551 mb_copy_char(fp, tp)
2552 char_u **fp;
2553 char_u **tp;
2555 int l = (*mb_ptr2len)(*fp);
2557 mch_memmove(*tp, *fp, (size_t)l);
2558 *tp += l;
2559 *fp += l;
2561 #endif
2564 * Return the offset from "p" to the first byte of a character. When "p" is
2565 * at the start of a character 0 is returned, otherwise the offset to the next
2566 * character. Can start anywhere in a stream of bytes.
2569 mb_off_next(base, p)
2570 char_u *base;
2571 char_u *p;
2573 int i;
2574 int j;
2576 if (enc_utf8)
2578 if (*p < 0x80) /* be quick for ASCII */
2579 return 0;
2581 /* Find the next character that isn't 10xx.xxxx */
2582 for (i = 0; (p[i] & 0xc0) == 0x80; ++i)
2584 if (i > 0)
2586 /* Check for illegal sequence. */
2587 for (j = 0; p - j > base; ++j)
2588 if ((p[-j] & 0xc0) != 0x80)
2589 break;
2590 if (utf8len_tab[p[-j]] != i + j)
2591 return 0;
2593 return i;
2596 /* Only need to check if we're on a trail byte, it doesn't matter if we
2597 * want the offset to the next or current character. */
2598 return (*mb_head_off)(base, p);
2602 * Return the offset from "p" to the last byte of the character it points
2603 * into. Can start anywhere in a stream of bytes.
2606 mb_tail_off(base, p)
2607 char_u *base;
2608 char_u *p;
2610 int i;
2611 int j;
2613 if (*p == NUL)
2614 return 0;
2616 if (enc_utf8)
2618 /* Find the last character that is 10xx.xxxx */
2619 for (i = 0; (p[i + 1] & 0xc0) == 0x80; ++i)
2621 /* Check for illegal sequence. */
2622 for (j = 0; p - j > base; ++j)
2623 if ((p[-j] & 0xc0) != 0x80)
2624 break;
2625 if (utf8len_tab[p[-j]] != i + j + 1)
2626 return 0;
2627 return i;
2630 /* It can't be the first byte if a double-byte when not using DBCS, at the
2631 * end of the string or the byte can't start a double-byte. */
2632 if (enc_dbcs == 0 || p[1] == NUL || MB_BYTE2LEN(*p) == 1)
2633 return 0;
2635 /* Return 1 when on the lead byte, 0 when on the tail byte. */
2636 return 1 - dbcs_head_off(base, p);
2640 * Find the next illegal byte sequence.
2642 void
2643 utf_find_illegal()
2645 pos_T pos = curwin->w_cursor;
2646 char_u *p;
2647 int len;
2648 vimconv_T vimconv;
2649 char_u *tofree = NULL;
2651 vimconv.vc_type = CONV_NONE;
2652 if (enc_utf8 && (enc_canon_props(curbuf->b_p_fenc) & ENC_8BIT))
2654 /* 'encoding' is "utf-8" but we are editing a 8-bit encoded file,
2655 * possibly a utf-8 file with illegal bytes. Setup for conversion
2656 * from utf-8 to 'fileencoding'. */
2657 convert_setup(&vimconv, p_enc, curbuf->b_p_fenc);
2660 #ifdef FEAT_VIRTUALEDIT
2661 curwin->w_cursor.coladd = 0;
2662 #endif
2663 for (;;)
2665 p = ml_get_cursor();
2666 if (vimconv.vc_type != CONV_NONE)
2668 vim_free(tofree);
2669 tofree = string_convert(&vimconv, p, NULL);
2670 if (tofree == NULL)
2671 break;
2672 p = tofree;
2675 while (*p != NUL)
2677 /* Illegal means that there are not enough trail bytes (checked by
2678 * utf_ptr2len()) or too many of them (overlong sequence). */
2679 len = utf_ptr2len(p);
2680 if (*p >= 0x80 && (len == 1
2681 || utf_char2len(utf_ptr2char(p)) != len))
2683 if (vimconv.vc_type == CONV_NONE)
2684 curwin->w_cursor.col += (colnr_T)(p - ml_get_cursor());
2685 else
2687 int l;
2689 len = (int)(p - tofree);
2690 for (p = ml_get_cursor(); *p != NUL && len-- > 0; p += l)
2692 l = utf_ptr2len(p);
2693 curwin->w_cursor.col += l;
2696 goto theend;
2698 p += len;
2700 if (curwin->w_cursor.lnum == curbuf->b_ml.ml_line_count)
2701 break;
2702 ++curwin->w_cursor.lnum;
2703 curwin->w_cursor.col = 0;
2706 /* didn't find it: don't move and beep */
2707 curwin->w_cursor = pos;
2708 beep_flush();
2710 theend:
2711 vim_free(tofree);
2712 convert_setup(&vimconv, NULL, NULL);
2715 #if defined(HAVE_GTK2) || defined(PROTO)
2717 * Return TRUE if string "s" is a valid utf-8 string.
2718 * When "end" is NULL stop at the first NUL.
2719 * When "end" is positive stop there.
2722 utf_valid_string(s, end)
2723 char_u *s;
2724 char_u *end;
2726 int l;
2727 char_u *p = s;
2729 while (end == NULL ? *p != NUL : p < end)
2731 if ((*p & 0xc0) == 0x80)
2732 return FALSE; /* invalid lead byte */
2733 l = utf8len_tab[*p];
2734 if (end != NULL && p + l > end)
2735 return FALSE; /* incomplete byte sequence */
2736 ++p;
2737 while (--l > 0)
2738 if ((*p++ & 0xc0) != 0x80)
2739 return FALSE; /* invalid trail byte */
2741 return TRUE;
2743 #endif
2745 #if defined(FEAT_GUI) || defined(PROTO)
2747 * Special version of mb_tail_off() for use in ScreenLines[].
2750 dbcs_screen_tail_off(base, p)
2751 char_u *base;
2752 char_u *p;
2754 /* It can't be the first byte if a double-byte when not using DBCS, at the
2755 * end of the string or the byte can't start a double-byte.
2756 * For euc-jp an 0x8e byte always means we have a lead byte in the current
2757 * cell. */
2758 if (*p == NUL || p[1] == NUL
2759 || (enc_dbcs == DBCS_JPNU && *p == 0x8e)
2760 || MB_BYTE2LEN(*p) == 1)
2761 return 0;
2763 /* Return 1 when on the lead byte, 0 when on the tail byte. */
2764 return 1 - dbcs_screen_head_off(base, p);
2766 #endif
2769 * If the cursor moves on an trail byte, set the cursor on the lead byte.
2770 * Thus it moves left if necessary.
2771 * Return TRUE when the cursor was adjusted.
2773 void
2774 mb_adjust_cursor()
2776 mb_adjustpos(&curwin->w_cursor);
2780 * Adjust position "*lp" to point to the first byte of a multi-byte character.
2781 * If it points to a tail byte it's moved backwards to the head byte.
2783 void
2784 mb_adjustpos(lp)
2785 pos_T *lp;
2787 char_u *p;
2789 if (lp->col > 0
2790 #ifdef FEAT_VIRTUALEDIT
2791 || lp->coladd > 1
2792 #endif
2795 p = ml_get(lp->lnum);
2796 lp->col -= (*mb_head_off)(p, p + lp->col);
2797 #ifdef FEAT_VIRTUALEDIT
2798 /* Reset "coladd" when the cursor would be on the right half of a
2799 * double-wide character. */
2800 if (lp->coladd == 1
2801 && p[lp->col] != TAB
2802 && vim_isprintc((*mb_ptr2char)(p + lp->col))
2803 && ptr2cells(p + lp->col) > 1)
2804 lp->coladd = 0;
2805 #endif
2810 * Return a pointer to the character before "*p", if there is one.
2812 char_u *
2813 mb_prevptr(line, p)
2814 char_u *line; /* start of the string */
2815 char_u *p;
2817 if (p > line)
2818 mb_ptr_back(line, p);
2819 return p;
2823 * Return the character length of "str". Each multi-byte character (with
2824 * following composing characters) counts as one.
2827 mb_charlen(str)
2828 char_u *str;
2830 char_u *p = str;
2831 int count;
2833 if (p == NULL)
2834 return 0;
2836 for (count = 0; *p != NUL; count++)
2837 p += (*mb_ptr2len)(p);
2839 return count;
2842 #if defined(FEAT_SPELL) || defined(PROTO)
2844 * Like mb_charlen() but for a string with specified length.
2847 mb_charlen_len(str, len)
2848 char_u *str;
2849 int len;
2851 char_u *p = str;
2852 int count;
2854 for (count = 0; *p != NUL && p < str + len; count++)
2855 p += (*mb_ptr2len)(p);
2857 return count;
2859 #endif
2862 * Try to un-escape a multi-byte character.
2863 * Used for the "to" and "from" part of a mapping.
2864 * Return the un-escaped string if it is a multi-byte character, and advance
2865 * "pp" to just after the bytes that formed it.
2866 * Return NULL if no multi-byte char was found.
2868 char_u *
2869 mb_unescape(pp)
2870 char_u **pp;
2872 static char_u buf[MB_MAXBYTES + 1];
2873 int n, m = 0;
2874 char_u *str = *pp;
2876 /* Must translate K_SPECIAL KS_SPECIAL KE_FILLER to K_SPECIAL and CSI
2877 * KS_EXTRA KE_CSI to CSI. */
2878 for (n = 0; str[n] != NUL && m <= MB_MAXBYTES; ++n)
2880 if (str[n] == K_SPECIAL
2881 && str[n + 1] == KS_SPECIAL
2882 && str[n + 2] == KE_FILLER)
2884 buf[m++] = K_SPECIAL;
2885 n += 2;
2887 else if ((str[n] == K_SPECIAL
2888 # ifdef FEAT_GUI
2889 || str[n] == CSI
2890 # endif
2892 && str[n + 1] == KS_EXTRA
2893 && str[n + 2] == (int)KE_CSI)
2895 buf[m++] = CSI;
2896 n += 2;
2898 else if (str[n] == K_SPECIAL
2899 # ifdef FEAT_GUI
2900 || str[n] == CSI
2901 # endif
2903 break; /* a special key can't be a multibyte char */
2904 else
2905 buf[m++] = str[n];
2906 buf[m] = NUL;
2908 /* Return a multi-byte character if it's found. An illegal sequence
2909 * will result in a 1 here. */
2910 if ((*mb_ptr2len)(buf) > 1)
2912 *pp = str + n + 1;
2913 return buf;
2916 return NULL;
2920 * Return TRUE if the character at "row"/"col" on the screen is the left side
2921 * of a double-width character.
2922 * Caller must make sure "row" and "col" are not invalid!
2925 mb_lefthalve(row, col)
2926 int row;
2927 int col;
2929 #ifdef FEAT_HANGULIN
2930 if (composing_hangul)
2931 return TRUE;
2932 #endif
2933 return (*mb_off2cells)(LineOffset[row] + col,
2934 LineOffset[row] + screen_Columns) > 1;
2937 # if defined(FEAT_CLIPBOARD) || defined(FEAT_GUI) || defined(FEAT_RIGHTLEFT) \
2938 || defined(PROTO)
2940 * Correct a position on the screen, if it's the right halve of a double-wide
2941 * char move it to the left halve. Returns the corrected column.
2944 mb_fix_col(col, row)
2945 int col;
2946 int row;
2948 col = check_col(col);
2949 row = check_row(row);
2950 if (has_mbyte && ScreenLines != NULL && col > 0
2951 && ((enc_dbcs
2952 && ScreenLines[LineOffset[row] + col] != NUL
2953 && dbcs_screen_head_off(ScreenLines + LineOffset[row],
2954 ScreenLines + LineOffset[row] + col))
2955 || (enc_utf8 && ScreenLines[LineOffset[row] + col] == 0)))
2956 return col - 1;
2957 return col;
2959 # endif
2960 #endif
2962 #if defined(FEAT_MBYTE) || defined(FEAT_POSTSCRIPT) || defined(PROTO)
2963 static int enc_alias_search __ARGS((char_u *name));
2966 * Skip the Vim specific head of a 'encoding' name.
2968 char_u *
2969 enc_skip(p)
2970 char_u *p;
2972 if (STRNCMP(p, "2byte-", 6) == 0)
2973 return p + 6;
2974 if (STRNCMP(p, "8bit-", 5) == 0)
2975 return p + 5;
2976 return p;
2980 * Find the canonical name for encoding "enc".
2981 * When the name isn't recognized, returns "enc" itself, but with all lower
2982 * case characters and '_' replaced with '-'.
2983 * Returns an allocated string. NULL for out-of-memory.
2985 char_u *
2986 enc_canonize(enc)
2987 char_u *enc;
2989 char_u *r;
2990 char_u *p, *s;
2991 int i;
2993 # ifdef FEAT_MBYTE
2994 if (STRCMP(enc, "default") == 0)
2996 /* Use the default encoding as it's found by set_init_1(). */
2997 r = get_encoding_default();
2998 if (r == NULL)
2999 r = (char_u *)"latin1";
3000 return vim_strsave(r);
3002 # endif
3004 /* copy "enc" to allocated memory, with room for two '-' */
3005 r = alloc((unsigned)(STRLEN(enc) + 3));
3006 if (r != NULL)
3008 /* Make it all lower case and replace '_' with '-'. */
3009 p = r;
3010 for (s = enc; *s != NUL; ++s)
3012 if (*s == '_')
3013 *p++ = '-';
3014 else
3015 *p++ = TOLOWER_ASC(*s);
3017 *p = NUL;
3019 /* Skip "2byte-" and "8bit-". */
3020 p = enc_skip(r);
3022 /* Change "microsoft-cp" to "cp". Used in some spell files. */
3023 if (STRNCMP(p, "microsoft-cp", 12) == 0)
3024 STRMOVE(p, p + 10);
3026 /* "iso8859" -> "iso-8859" */
3027 if (STRNCMP(p, "iso8859", 7) == 0)
3029 STRMOVE(p + 4, p + 3);
3030 p[3] = '-';
3033 /* "iso-8859n" -> "iso-8859-n" */
3034 if (STRNCMP(p, "iso-8859", 8) == 0 && p[8] != '-')
3036 STRMOVE(p + 9, p + 8);
3037 p[8] = '-';
3040 /* "latin-N" -> "latinN" */
3041 if (STRNCMP(p, "latin-", 6) == 0)
3042 STRMOVE(p + 5, p + 6);
3044 if (enc_canon_search(p) >= 0)
3046 /* canonical name can be used unmodified */
3047 if (p != r)
3048 STRMOVE(r, p);
3050 else if ((i = enc_alias_search(p)) >= 0)
3052 /* alias recognized, get canonical name */
3053 vim_free(r);
3054 r = vim_strsave((char_u *)enc_canon_table[i].name);
3057 return r;
3061 * Search for an encoding alias of "name".
3062 * Returns -1 when not found.
3064 static int
3065 enc_alias_search(name)
3066 char_u *name;
3068 int i;
3070 for (i = 0; enc_alias_table[i].name != NULL; ++i)
3071 if (STRCMP(name, enc_alias_table[i].name) == 0)
3072 return enc_alias_table[i].canon;
3073 return -1;
3075 #endif
3077 #if defined(FEAT_MBYTE) || defined(PROTO)
3079 #ifdef HAVE_LANGINFO_H
3080 # include <langinfo.h>
3081 #endif
3084 * Get the canonicalized encoding of the current locale.
3085 * Returns an allocated string when successful, NULL when not.
3087 char_u *
3088 enc_locale()
3090 #ifndef WIN3264
3091 char *s;
3092 char *p;
3093 int i;
3094 #endif
3095 char buf[50];
3096 #ifdef WIN3264
3097 long acp = GetACP();
3099 if (acp == 1200)
3100 STRCPY(buf, "ucs-2le");
3101 else if (acp == 1252) /* cp1252 is used as latin1 */
3102 STRCPY(buf, "latin1");
3103 else
3104 sprintf(buf, "cp%ld", acp);
3105 #else
3106 # ifdef HAVE_NL_LANGINFO_CODESET
3107 if ((s = nl_langinfo(CODESET)) == NULL || *s == NUL)
3108 # endif
3109 # if defined(HAVE_LOCALE_H) || defined(X_LOCALE)
3110 if ((s = setlocale(LC_CTYPE, NULL)) == NULL || *s == NUL)
3111 # endif
3112 if ((s = getenv("LC_ALL")) == NULL || *s == NUL)
3113 if ((s = getenv("LC_CTYPE")) == NULL || *s == NUL)
3114 s = getenv("LANG");
3116 if (s == NULL || *s == NUL)
3117 return FAIL;
3119 /* The most generic locale format is:
3120 * language[_territory][.codeset][@modifier][+special][,[sponsor][_revision]]
3121 * If there is a '.' remove the part before it.
3122 * if there is something after the codeset, remove it.
3123 * Make the name lowercase and replace '_' with '-'.
3124 * Exception: "ja_JP.EUC" == "euc-jp", "zh_CN.EUC" = "euc-cn",
3125 * "ko_KR.EUC" == "euc-kr"
3127 if ((p = (char *)vim_strchr((char_u *)s, '.')) != NULL)
3129 if (p > s + 2 && STRNICMP(p + 1, "EUC", 3) == 0
3130 && !isalnum((int)p[4]) && p[4] != '-' && p[-3] == '_')
3132 /* copy "XY.EUC" to "euc-XY" to buf[10] */
3133 STRCPY(buf + 10, "euc-");
3134 buf[14] = p[-2];
3135 buf[15] = p[-1];
3136 buf[16] = 0;
3137 s = buf + 10;
3139 else
3140 s = p + 1;
3142 for (i = 0; s[i] != NUL && s + i < buf + sizeof(buf) - 1; ++i)
3144 if (s[i] == '_' || s[i] == '-')
3145 buf[i] = '-';
3146 else if (isalnum((int)s[i]))
3147 buf[i] = TOLOWER_ASC(s[i]);
3148 else
3149 break;
3151 buf[i] = NUL;
3152 #endif
3154 return enc_canonize((char_u *)buf);
3157 #if defined(WIN3264) || defined(PROTO)
3159 * Convert an encoding name to an MS-Windows codepage.
3160 * Returns zero if no codepage can be figured out.
3163 encname2codepage(name)
3164 char_u *name;
3166 int cp;
3167 char_u *p = name;
3168 int idx;
3170 if (STRNCMP(p, "8bit-", 5) == 0)
3171 p += 5;
3172 else if (STRNCMP(p_enc, "2byte-", 6) == 0)
3173 p += 6;
3175 if (p[0] == 'c' && p[1] == 'p')
3176 cp = atoi(p + 2);
3177 else if ((idx = enc_canon_search(p)) >= 0)
3178 cp = enc_canon_table[idx].codepage;
3179 else
3180 return 0;
3181 if (IsValidCodePage(cp))
3182 return cp;
3183 return 0;
3185 #endif
3187 # if defined(USE_ICONV) || defined(PROTO)
3189 static char_u *iconv_string __ARGS((vimconv_T *vcp, char_u *str, int slen, int *unconvlenp));
3192 * Call iconv_open() with a check if iconv() works properly (there are broken
3193 * versions).
3194 * Returns (void *)-1 if failed.
3195 * (should return iconv_t, but that causes problems with prototypes).
3197 void *
3198 my_iconv_open(to, from)
3199 char_u *to;
3200 char_u *from;
3202 iconv_t fd;
3203 #define ICONV_TESTLEN 400
3204 char_u tobuf[ICONV_TESTLEN];
3205 char *p;
3206 size_t tolen;
3207 static int iconv_ok = -1;
3209 if (iconv_ok == FALSE)
3210 return (void *)-1; /* detected a broken iconv() previously */
3212 #ifdef DYNAMIC_ICONV
3213 /* Check if the iconv.dll can be found. */
3214 if (!iconv_enabled(TRUE))
3215 return (void *)-1;
3216 #endif
3218 fd = iconv_open((char *)enc_skip(to), (char *)enc_skip(from));
3220 if (fd != (iconv_t)-1 && iconv_ok == -1)
3223 * Do a dummy iconv() call to check if it actually works. There is a
3224 * version of iconv() on Linux that is broken. We can't ignore it,
3225 * because it's wide-spread. The symptoms are that after outputting
3226 * the initial shift state the "to" pointer is NULL and conversion
3227 * stops for no apparent reason after about 8160 characters.
3229 p = (char *)tobuf;
3230 tolen = ICONV_TESTLEN;
3231 (void)iconv(fd, NULL, NULL, &p, &tolen);
3232 if (p == NULL)
3234 iconv_ok = FALSE;
3235 iconv_close(fd);
3236 fd = (iconv_t)-1;
3238 else
3239 iconv_ok = TRUE;
3242 return (void *)fd;
3246 * Convert the string "str[slen]" with iconv().
3247 * If "unconvlenp" is not NULL handle the string ending in an incomplete
3248 * sequence and set "*unconvlenp" to the length of it.
3249 * Returns the converted string in allocated memory. NULL for an error.
3251 static char_u *
3252 iconv_string(vcp, str, slen, unconvlenp)
3253 vimconv_T *vcp;
3254 char_u *str;
3255 int slen;
3256 int *unconvlenp;
3258 const char *from;
3259 size_t fromlen;
3260 char *to;
3261 size_t tolen;
3262 size_t len = 0;
3263 size_t done = 0;
3264 char_u *result = NULL;
3265 char_u *p;
3266 int l;
3268 from = (char *)str;
3269 fromlen = slen;
3270 for (;;)
3272 if (len == 0 || ICONV_ERRNO == ICONV_E2BIG)
3274 /* Allocate enough room for most conversions. When re-allocating
3275 * increase the buffer size. */
3276 len = len + fromlen * 2 + 40;
3277 p = alloc((unsigned)len);
3278 if (p != NULL && done > 0)
3279 mch_memmove(p, result, done);
3280 vim_free(result);
3281 result = p;
3282 if (result == NULL) /* out of memory */
3283 break;
3286 to = (char *)result + done;
3287 tolen = len - done - 2;
3288 /* Avoid a warning for systems with a wrong iconv() prototype by
3289 * casting the second argument to void *. */
3290 if (iconv(vcp->vc_fd, (void *)&from, &fromlen, &to, &tolen)
3291 != (size_t)-1)
3293 /* Finished, append a NUL. */
3294 *to = NUL;
3295 break;
3298 /* Check both ICONV_EINVAL and EINVAL, because the dynamically loaded
3299 * iconv library may use one of them. */
3300 if (!vcp->vc_fail && unconvlenp != NULL
3301 && (ICONV_ERRNO == ICONV_EINVAL || ICONV_ERRNO == EINVAL))
3303 /* Handle an incomplete sequence at the end. */
3304 *to = NUL;
3305 *unconvlenp = (int)fromlen;
3306 break;
3309 /* Check both ICONV_EILSEQ and EILSEQ, because the dynamically loaded
3310 * iconv library may use one of them. */
3311 else if (!vcp->vc_fail
3312 && (ICONV_ERRNO == ICONV_EILSEQ || ICONV_ERRNO == EILSEQ
3313 || ICONV_ERRNO == ICONV_EINVAL || ICONV_ERRNO == EINVAL))
3315 /* Can't convert: insert a '?' and skip a character. This assumes
3316 * conversion from 'encoding' to something else. In other
3317 * situations we don't know what to skip anyway. */
3318 *to++ = '?';
3319 if ((*mb_ptr2cells)((char_u *)from) > 1)
3320 *to++ = '?';
3321 if (enc_utf8)
3322 l = utfc_ptr2len_len((char_u *)from, (int)fromlen);
3323 else
3325 l = (*mb_ptr2len)((char_u *)from);
3326 if (l > (int)fromlen)
3327 l = (int)fromlen;
3329 from += l;
3330 fromlen -= l;
3332 else if (ICONV_ERRNO != ICONV_E2BIG)
3334 /* conversion failed */
3335 vim_free(result);
3336 result = NULL;
3337 break;
3339 /* Not enough room or skipping illegal sequence. */
3340 done = to - (char *)result;
3342 return result;
3345 # if defined(DYNAMIC_ICONV) || defined(PROTO)
3347 * Dynamically load the "iconv.dll" on Win32.
3350 #ifndef DYNAMIC_ICONV /* just generating prototypes */
3351 # define HINSTANCE int
3352 #endif
3353 static HINSTANCE hIconvDLL = 0;
3354 static HINSTANCE hMsvcrtDLL = 0;
3356 # ifndef DYNAMIC_ICONV_DLL
3357 # define DYNAMIC_ICONV_DLL "iconv.dll"
3358 # define DYNAMIC_ICONV_DLL_ALT "libiconv.dll"
3359 # endif
3360 # ifndef DYNAMIC_MSVCRT_DLL
3361 # define DYNAMIC_MSVCRT_DLL "msvcrt.dll"
3362 # endif
3365 * Try opening the iconv.dll and return TRUE if iconv() can be used.
3368 iconv_enabled(verbose)
3369 int verbose;
3371 if (hIconvDLL != 0 && hMsvcrtDLL != 0)
3372 return TRUE;
3373 hIconvDLL = LoadLibrary(DYNAMIC_ICONV_DLL);
3374 if (hIconvDLL == 0) /* sometimes it's called libiconv.dll */
3375 hIconvDLL = LoadLibrary(DYNAMIC_ICONV_DLL_ALT);
3376 if (hIconvDLL != 0)
3377 hMsvcrtDLL = LoadLibrary(DYNAMIC_MSVCRT_DLL);
3378 if (hIconvDLL == 0 || hMsvcrtDLL == 0)
3380 /* Only give the message when 'verbose' is set, otherwise it might be
3381 * done whenever a conversion is attempted. */
3382 if (verbose && p_verbose > 0)
3384 verbose_enter();
3385 EMSG2(_(e_loadlib),
3386 hIconvDLL == 0 ? DYNAMIC_ICONV_DLL : DYNAMIC_MSVCRT_DLL);
3387 verbose_leave();
3389 iconv_end();
3390 return FALSE;
3393 iconv = (void *)GetProcAddress(hIconvDLL, "libiconv");
3394 iconv_open = (void *)GetProcAddress(hIconvDLL, "libiconv_open");
3395 iconv_close = (void *)GetProcAddress(hIconvDLL, "libiconv_close");
3396 iconvctl = (void *)GetProcAddress(hIconvDLL, "libiconvctl");
3397 iconv_errno = (void *)GetProcAddress(hMsvcrtDLL, "_errno");
3398 if (iconv == NULL || iconv_open == NULL || iconv_close == NULL
3399 || iconvctl == NULL || iconv_errno == NULL)
3401 iconv_end();
3402 if (verbose && p_verbose > 0)
3404 verbose_enter();
3405 EMSG2(_(e_loadfunc), "for libiconv");
3406 verbose_leave();
3408 return FALSE;
3410 return TRUE;
3413 void
3414 iconv_end()
3416 /* Don't use iconv() when inputting or outputting characters. */
3417 if (input_conv.vc_type == CONV_ICONV)
3418 convert_setup(&input_conv, NULL, NULL);
3419 if (output_conv.vc_type == CONV_ICONV)
3420 convert_setup(&output_conv, NULL, NULL);
3422 if (hIconvDLL != 0)
3423 FreeLibrary(hIconvDLL);
3424 if (hMsvcrtDLL != 0)
3425 FreeLibrary(hMsvcrtDLL);
3426 hIconvDLL = 0;
3427 hMsvcrtDLL = 0;
3429 # endif /* DYNAMIC_ICONV */
3430 # endif /* USE_ICONV */
3432 #endif /* FEAT_MBYTE */
3434 #if defined(FEAT_XIM) || defined(PROTO)
3436 # ifdef FEAT_GUI_GTK
3437 static int xim_has_preediting INIT(= FALSE); /* IM current status */
3440 * Set preedit_start_col to the current cursor position.
3442 static void
3443 init_preedit_start_col(void)
3445 if (State & CMDLINE)
3446 preedit_start_col = cmdline_getvcol_cursor();
3447 else if (curwin != NULL)
3448 getvcol(curwin, &curwin->w_cursor, &preedit_start_col, NULL, NULL);
3449 /* Prevent that preediting marks the buffer as changed. */
3450 xim_changed_while_preediting = curbuf->b_changed;
3452 # endif
3454 # if defined(HAVE_GTK2) && !defined(PROTO)
3456 static int im_is_active = FALSE; /* IM is enabled for current mode */
3457 static int im_preedit_cursor = 0; /* cursor offset in characters */
3458 static int im_preedit_trailing = 0; /* number of characters after cursor */
3460 static unsigned long im_commit_handler_id = 0;
3461 static unsigned int im_activatekey_keyval = GDK_VoidSymbol;
3462 static unsigned int im_activatekey_state = 0;
3464 void
3465 im_set_active(int active)
3467 int was_active;
3469 was_active = !!im_is_active;
3470 im_is_active = (active && !p_imdisable);
3472 if (im_is_active != was_active)
3473 xim_reset();
3476 void
3477 xim_set_focus(int focus)
3479 if (xic != NULL)
3481 if (focus)
3482 gtk_im_context_focus_in(xic);
3483 else
3484 gtk_im_context_focus_out(xic);
3488 void
3489 im_set_position(int row, int col)
3491 if (xic != NULL)
3493 GdkRectangle area;
3495 area.x = FILL_X(col);
3496 area.y = FILL_Y(row);
3497 area.width = gui.char_width * (mb_lefthalve(row, col) ? 2 : 1);
3498 area.height = gui.char_height;
3500 gtk_im_context_set_cursor_location(xic, &area);
3504 # if 0 || defined(PROTO) /* apparently only used in gui_x11.c */
3505 void
3506 xim_set_preedit(void)
3508 im_set_position(gui.row, gui.col);
3510 # endif
3512 static void
3513 im_add_to_input(char_u *str, int len)
3515 /* Convert from 'termencoding' (always "utf-8") to 'encoding' */
3516 if (input_conv.vc_type != CONV_NONE)
3518 str = string_convert(&input_conv, str, &len);
3519 g_return_if_fail(str != NULL);
3522 add_to_input_buf_csi(str, len);
3524 if (input_conv.vc_type != CONV_NONE)
3525 vim_free(str);
3527 if (p_mh) /* blank out the pointer if necessary */
3528 gui_mch_mousehide(TRUE);
3531 static void
3532 im_delete_preedit(void)
3534 char_u bskey[] = {CSI, 'k', 'b'};
3535 char_u delkey[] = {CSI, 'k', 'D'};
3537 if (State & NORMAL)
3539 im_preedit_cursor = 0;
3540 return;
3542 for (; im_preedit_cursor > 0; --im_preedit_cursor)
3543 add_to_input_buf(bskey, (int)sizeof(bskey));
3545 for (; im_preedit_trailing > 0; --im_preedit_trailing)
3546 add_to_input_buf(delkey, (int)sizeof(delkey));
3550 * Move the cursor left by "num_move_back" characters.
3551 * Note that ins_left() checks im_is_preediting() to avoid breaking undo for
3552 * these K_LEFT keys.
3554 static void
3555 im_correct_cursor(int num_move_back)
3557 char_u backkey[] = {CSI, 'k', 'l'};
3559 if (State & NORMAL)
3560 return;
3561 # ifdef FEAT_RIGHTLEFT
3562 if ((State & CMDLINE) == 0 && curwin != NULL && curwin->w_p_rl)
3563 backkey[2] = 'r';
3564 # endif
3565 for (; num_move_back > 0; --num_move_back)
3566 add_to_input_buf(backkey, (int)sizeof(backkey));
3569 static int xim_expected_char = NUL;
3570 static int xim_ignored_char = FALSE;
3573 * Update the mode and cursor while in an IM callback.
3575 static void
3576 im_show_info(void)
3578 int old_vgetc_busy;
3580 old_vgetc_busy = vgetc_busy;
3581 vgetc_busy = TRUE;
3582 showmode();
3583 vgetc_busy = old_vgetc_busy;
3584 setcursor();
3585 out_flush();
3589 * Callback invoked when the user finished preediting.
3590 * Put the final string into the input buffer.
3592 /*ARGSUSED0*/
3593 static void
3594 im_commit_cb(GtkIMContext *context, const gchar *str, gpointer data)
3596 int slen = (int)STRLEN(str);
3597 int add_to_input = TRUE;
3598 int clen;
3599 int len = slen;
3600 int commit_with_preedit = TRUE;
3601 char_u *im_str, *p;
3603 #ifdef XIM_DEBUG
3604 xim_log("im_commit_cb(): %s\n", str);
3605 #endif
3607 /* The imhangul module doesn't reset the preedit string before
3608 * committing. Call im_delete_preedit() to work around that. */
3609 im_delete_preedit();
3611 /* Indicate that preediting has finished. */
3612 if (preedit_start_col == MAXCOL)
3614 init_preedit_start_col();
3615 commit_with_preedit = FALSE;
3618 /* The thing which setting "preedit_start_col" to MAXCOL means that
3619 * "preedit_start_col" will be set forcely when calling
3620 * preedit_changed_cb() next time.
3621 * "preedit_start_col" should not reset with MAXCOL on this part. Vim
3622 * is simulating the preediting by using add_to_input_str(). when
3623 * preedit begin immediately before committed, the typebuf is not
3624 * flushed to screen, then it can't get correct "preedit_start_col".
3625 * Thus, it should calculate the cells by adding cells of the committed
3626 * string. */
3627 if (input_conv.vc_type != CONV_NONE)
3629 im_str = string_convert(&input_conv, (char_u *)str, &len);
3630 g_return_if_fail(im_str != NULL);
3632 else
3633 im_str = (char_u *)str;
3634 clen = 0;
3635 for (p = im_str; p < im_str + len; p += (*mb_ptr2len)(p))
3636 clen += (*mb_ptr2cells)(p);
3637 if (input_conv.vc_type != CONV_NONE)
3638 vim_free(im_str);
3639 preedit_start_col += clen;
3641 /* Is this a single character that matches a keypad key that's just
3642 * been pressed? If so, we don't want it to be entered as such - let
3643 * us carry on processing the raw keycode so that it may be used in
3644 * mappings as <kSomething>. */
3645 if (xim_expected_char != NUL)
3647 /* We're currently processing a keypad or other special key */
3648 if (slen == 1 && str[0] == xim_expected_char)
3650 /* It's a match - don't do it here */
3651 xim_ignored_char = TRUE;
3652 add_to_input = FALSE;
3654 else
3656 /* Not a match */
3657 xim_ignored_char = FALSE;
3661 if (add_to_input)
3662 im_add_to_input((char_u *)str, slen);
3664 /* Inserting chars while "im_is_active" is set does not cause a change of
3665 * buffer. When the chars are committed the buffer must be marked as
3666 * changed. */
3667 if (!commit_with_preedit)
3668 preedit_start_col = MAXCOL;
3670 /* This flag is used in changed() at next call. */
3671 xim_changed_while_preediting = TRUE;
3673 if (gtk_main_level() > 0)
3674 gtk_main_quit();
3678 * Callback invoked after start to the preedit.
3680 /*ARGSUSED*/
3681 static void
3682 im_preedit_start_cb(GtkIMContext *context, gpointer data)
3684 #ifdef XIM_DEBUG
3685 xim_log("im_preedit_start_cb()\n");
3686 #endif
3688 im_is_active = TRUE;
3689 gui_update_cursor(TRUE, FALSE);
3693 * Callback invoked after end to the preedit.
3695 /*ARGSUSED*/
3696 static void
3697 im_preedit_end_cb(GtkIMContext *context, gpointer data)
3699 #ifdef XIM_DEBUG
3700 xim_log("im_preedit_end_cb()\n");
3701 #endif
3702 im_delete_preedit();
3704 /* Indicate that preediting has finished */
3705 preedit_start_col = MAXCOL;
3706 xim_has_preediting = FALSE;
3708 #if 0
3709 /* Removal of this line suggested by Takuhiro Nishioka. Fixes that IM was
3710 * switched off unintentionally. */
3711 im_is_active = FALSE;
3712 #endif
3713 gui_update_cursor(TRUE, FALSE);
3714 im_show_info();
3718 * Callback invoked after changes to the preedit string. If the preedit
3719 * string was empty before, remember the preedit start column so we know
3720 * where to apply feedback attributes. Delete the previous preedit string
3721 * if there was one, save the new preedit cursor offset, and put the new
3722 * string into the input buffer.
3724 * TODO: The pragmatic "put into input buffer" approach used here has
3725 * several fundamental problems:
3727 * - The characters in the preedit string are subject to remapping.
3728 * That's broken, only the finally committed string should be remapped.
3730 * - There is a race condition involved: The retrieved value for the
3731 * current cursor position will be wrong if any unprocessed characters
3732 * are still queued in the input buffer.
3734 * - Due to the lack of synchronization between the file buffer in memory
3735 * and any typed characters, it's practically impossible to implement the
3736 * "retrieve_surrounding" and "delete_surrounding" signals reliably. IM
3737 * modules for languages such as Thai are likely to rely on this feature
3738 * for proper operation.
3740 * Conclusions: I think support for preediting needs to be moved to the
3741 * core parts of Vim. Ideally, until it has been committed, the preediting
3742 * string should only be displayed and not affect the buffer content at all.
3743 * The question how to deal with the synchronization issue still remains.
3744 * Circumventing the input buffer is probably not desirable. Anyway, I think
3745 * implementing "retrieve_surrounding" is the only hard problem.
3747 * One way to solve all of this in a clean manner would be to queue all key
3748 * press/release events "as is" in the input buffer, and apply the IM filtering
3749 * at the receiving end of the queue. This, however, would have a rather large
3750 * impact on the code base. If there is an easy way to force processing of all
3751 * remaining input from within the "retrieve_surrounding" signal handler, this
3752 * might not be necessary. Gotta ask on vim-dev for opinions.
3754 /*ARGSUSED1*/
3755 static void
3756 im_preedit_changed_cb(GtkIMContext *context, gpointer data)
3758 char *preedit_string = NULL;
3759 int cursor_index = 0;
3760 int num_move_back = 0;
3761 char_u *str;
3762 char_u *p;
3763 int i;
3765 gtk_im_context_get_preedit_string(context,
3766 &preedit_string, NULL,
3767 &cursor_index);
3769 #ifdef XIM_DEBUG
3770 xim_log("im_preedit_changed_cb(): %s\n", preedit_string);
3771 #endif
3773 g_return_if_fail(preedit_string != NULL); /* just in case */
3775 /* If preedit_start_col is MAXCOL set it to the current cursor position. */
3776 if (preedit_start_col == MAXCOL && preedit_string[0] != '\0')
3778 xim_has_preediting = TRUE;
3780 /* Urgh, this breaks if the input buffer isn't empty now */
3781 init_preedit_start_col();
3783 else if (cursor_index == 0 && preedit_string[0] == '\0')
3785 xim_has_preediting = FALSE;
3787 /* If at the start position (after typing backspace)
3788 * preedit_start_col must be reset. */
3789 preedit_start_col = MAXCOL;
3792 im_delete_preedit();
3795 * Compute the end of the preediting area: "preedit_end_col".
3796 * According to the documentation of gtk_im_context_get_preedit_string(),
3797 * the cursor_pos output argument returns the offset in bytes. This is
3798 * unfortunately not true -- real life shows the offset is in characters,
3799 * and the GTK+ source code agrees with me. Will file a bug later.
3801 if (preedit_start_col != MAXCOL)
3802 preedit_end_col = preedit_start_col;
3803 str = (char_u *)preedit_string;
3804 for (p = str, i = 0; *p != NUL; p += utf_byte2len(*p), ++i)
3806 int is_composing;
3808 is_composing = ((*p & 0x80) != 0 && utf_iscomposing(utf_ptr2char(p)));
3810 * These offsets are used as counters when generating <BS> and <Del>
3811 * to delete the preedit string. So don't count composing characters
3812 * unless 'delcombine' is enabled.
3814 if (!is_composing || p_deco)
3816 if (i < cursor_index)
3817 ++im_preedit_cursor;
3818 else
3819 ++im_preedit_trailing;
3821 if (!is_composing && i >= cursor_index)
3823 /* This is essentially the same as im_preedit_trailing, except
3824 * composing characters are not counted even if p_deco is set. */
3825 ++num_move_back;
3827 if (preedit_start_col != MAXCOL)
3828 preedit_end_col += utf_ptr2cells(p);
3831 if (p > str)
3833 im_add_to_input(str, (int)(p - str));
3834 im_correct_cursor(num_move_back);
3837 g_free(preedit_string);
3839 if (gtk_main_level() > 0)
3840 gtk_main_quit();
3844 * Translate the Pango attributes at iter to Vim highlighting attributes.
3845 * Ignore attributes not supported by Vim highlighting. This shouldn't have
3846 * too much impact -- right now we handle even more attributes than necessary
3847 * for the IM modules I tested with.
3849 static int
3850 translate_pango_attributes(PangoAttrIterator *iter)
3852 PangoAttribute *attr;
3853 int char_attr = HL_NORMAL;
3855 attr = pango_attr_iterator_get(iter, PANGO_ATTR_UNDERLINE);
3856 if (attr != NULL && ((PangoAttrInt *)attr)->value
3857 != (int)PANGO_UNDERLINE_NONE)
3858 char_attr |= HL_UNDERLINE;
3860 attr = pango_attr_iterator_get(iter, PANGO_ATTR_WEIGHT);
3861 if (attr != NULL && ((PangoAttrInt *)attr)->value >= (int)PANGO_WEIGHT_BOLD)
3862 char_attr |= HL_BOLD;
3864 attr = pango_attr_iterator_get(iter, PANGO_ATTR_STYLE);
3865 if (attr != NULL && ((PangoAttrInt *)attr)->value
3866 != (int)PANGO_STYLE_NORMAL)
3867 char_attr |= HL_ITALIC;
3869 attr = pango_attr_iterator_get(iter, PANGO_ATTR_BACKGROUND);
3870 if (attr != NULL)
3872 const PangoColor *color = &((PangoAttrColor *)attr)->color;
3874 /* Assume inverse if black background is requested */
3875 if ((color->red | color->green | color->blue) == 0)
3876 char_attr |= HL_INVERSE;
3879 return char_attr;
3883 * Retrieve the highlighting attributes at column col in the preedit string.
3884 * Return -1 if not in preediting mode or if col is out of range.
3887 im_get_feedback_attr(int col)
3889 char *preedit_string = NULL;
3890 PangoAttrList *attr_list = NULL;
3891 int char_attr = -1;
3893 if (xic == NULL)
3894 return char_attr;
3896 gtk_im_context_get_preedit_string(xic, &preedit_string, &attr_list, NULL);
3898 if (preedit_string != NULL && attr_list != NULL)
3900 int idx;
3902 /* Get the byte index as used by PangoAttrIterator */
3903 for (idx = 0; col > 0 && preedit_string[idx] != '\0'; --col)
3904 idx += utfc_ptr2len((char_u *)preedit_string + idx);
3906 if (preedit_string[idx] != '\0')
3908 PangoAttrIterator *iter;
3909 int start, end;
3911 char_attr = HL_NORMAL;
3912 iter = pango_attr_list_get_iterator(attr_list);
3914 /* Extract all relevant attributes from the list. */
3917 pango_attr_iterator_range(iter, &start, &end);
3919 if (idx >= start && idx < end)
3920 char_attr |= translate_pango_attributes(iter);
3922 while (pango_attr_iterator_next(iter));
3924 pango_attr_iterator_destroy(iter);
3928 if (attr_list != NULL)
3929 pango_attr_list_unref(attr_list);
3930 g_free(preedit_string);
3932 return char_attr;
3935 void
3936 xim_init(void)
3938 #ifdef XIM_DEBUG
3939 xim_log("xim_init()\n");
3940 #endif
3942 g_return_if_fail(gui.drawarea != NULL);
3943 g_return_if_fail(gui.drawarea->window != NULL);
3945 xic = gtk_im_multicontext_new();
3946 g_object_ref(xic);
3948 im_commit_handler_id = g_signal_connect(G_OBJECT(xic), "commit",
3949 G_CALLBACK(&im_commit_cb), NULL);
3950 g_signal_connect(G_OBJECT(xic), "preedit_changed",
3951 G_CALLBACK(&im_preedit_changed_cb), NULL);
3952 g_signal_connect(G_OBJECT(xic), "preedit_start",
3953 G_CALLBACK(&im_preedit_start_cb), NULL);
3954 g_signal_connect(G_OBJECT(xic), "preedit_end",
3955 G_CALLBACK(&im_preedit_end_cb), NULL);
3957 gtk_im_context_set_client_window(xic, gui.drawarea->window);
3960 void
3961 im_shutdown(void)
3963 #ifdef XIM_DEBUG
3964 xim_log("im_shutdown()\n");
3965 #endif
3967 if (xic != NULL)
3969 gtk_im_context_focus_out(xic);
3970 g_object_unref(xic);
3971 xic = NULL;
3973 im_is_active = FALSE;
3974 im_commit_handler_id = 0;
3975 preedit_start_col = MAXCOL;
3976 xim_has_preediting = FALSE;
3980 * Convert the string argument to keyval and state for GdkEventKey.
3981 * If str is valid return TRUE, otherwise FALSE.
3983 * See 'imactivatekey' for documentation of the format.
3985 static int
3986 im_string_to_keyval(const char *str, unsigned int *keyval, unsigned int *state)
3988 const char *mods_end;
3989 unsigned tmp_keyval;
3990 unsigned tmp_state = 0;
3992 mods_end = strrchr(str, '-');
3993 mods_end = (mods_end != NULL) ? mods_end + 1 : str;
3995 /* Parse modifier keys */
3996 while (str < mods_end)
3997 switch (*str++)
3999 case '-': break;
4000 case 'S': case 's': tmp_state |= (unsigned)GDK_SHIFT_MASK; break;
4001 case 'L': case 'l': tmp_state |= (unsigned)GDK_LOCK_MASK; break;
4002 case 'C': case 'c': tmp_state |= (unsigned)GDK_CONTROL_MASK;break;
4003 case '1': tmp_state |= (unsigned)GDK_MOD1_MASK; break;
4004 case '2': tmp_state |= (unsigned)GDK_MOD2_MASK; break;
4005 case '3': tmp_state |= (unsigned)GDK_MOD3_MASK; break;
4006 case '4': tmp_state |= (unsigned)GDK_MOD4_MASK; break;
4007 case '5': tmp_state |= (unsigned)GDK_MOD5_MASK; break;
4008 default:
4009 return FALSE;
4012 tmp_keyval = gdk_keyval_from_name(str);
4014 if (tmp_keyval == 0 || tmp_keyval == GDK_VoidSymbol)
4015 return FALSE;
4017 if (keyval != NULL)
4018 *keyval = tmp_keyval;
4019 if (state != NULL)
4020 *state = tmp_state;
4022 return TRUE;
4026 * Return TRUE if p_imak is valid, otherwise FALSE. As a special case, an
4027 * empty string is also regarded as valid.
4029 * Note: The numerical key value of p_imak is cached if it was valid; thus
4030 * boldly assuming im_xim_isvalid_imactivate() will always be called whenever
4031 * 'imak' changes. This is currently the case but not obvious -- should
4032 * probably rename the function for clarity.
4035 im_xim_isvalid_imactivate(void)
4037 if (p_imak[0] == NUL)
4039 im_activatekey_keyval = GDK_VoidSymbol;
4040 im_activatekey_state = 0;
4041 return TRUE;
4044 return im_string_to_keyval((const char *)p_imak,
4045 &im_activatekey_keyval,
4046 &im_activatekey_state);
4049 static void
4050 im_synthesize_keypress(unsigned int keyval, unsigned int state)
4052 GdkEventKey *event;
4054 # ifdef HAVE_GTK_MULTIHEAD
4055 event = (GdkEventKey *)gdk_event_new(GDK_KEY_PRESS);
4056 g_object_ref(gui.drawarea->window); /* unreffed by gdk_event_free() */
4057 # else
4058 event = (GdkEventKey *)g_malloc0((gulong)sizeof(GdkEvent));
4059 event->type = GDK_KEY_PRESS;
4060 # endif
4061 event->window = gui.drawarea->window;
4062 event->send_event = TRUE;
4063 event->time = GDK_CURRENT_TIME;
4064 event->state = state;
4065 event->keyval = keyval;
4066 event->hardware_keycode = /* needed for XIM */
4067 XKeysymToKeycode(GDK_WINDOW_XDISPLAY(event->window), (KeySym)keyval);
4068 event->length = 0;
4069 event->string = NULL;
4071 gtk_im_context_filter_keypress(xic, event);
4073 /* For consistency, also send the corresponding release event. */
4074 event->type = GDK_KEY_RELEASE;
4075 event->send_event = FALSE;
4076 gtk_im_context_filter_keypress(xic, event);
4078 # ifdef HAVE_GTK_MULTIHEAD
4079 gdk_event_free((GdkEvent *)event);
4080 # else
4081 g_free(event);
4082 # endif
4085 void
4086 xim_reset(void)
4088 if (xic != NULL)
4091 * The third-party imhangul module (and maybe others too) ignores
4092 * gtk_im_context_reset() or at least doesn't reset the active state.
4093 * Thus sending imactivatekey would turn it off if it was on before,
4094 * which is clearly not what we want. Fortunately we can work around
4095 * that for imhangul by sending GDK_Escape, but I don't know if it
4096 * works with all IM modules that support an activation key :/
4098 * An alternative approach would be to destroy the IM context and
4099 * recreate it. But that means loading/unloading the IM module on
4100 * every mode switch, which causes a quite noticable delay even on
4101 * my rather fast box...
4103 * Moreover, there are some XIM which cannot respond to
4104 * im_synthesize_keypress(). we hope that they reset by
4105 * xim_shutdown().
4107 if (im_activatekey_keyval != GDK_VoidSymbol && im_is_active)
4108 im_synthesize_keypress(GDK_Escape, 0U);
4110 gtk_im_context_reset(xic);
4113 * HACK for Ami: This sequence of function calls makes Ami handle
4114 * the IM reset graciously, without breaking loads of other stuff.
4115 * It seems to force English mode as well, which is exactly what we
4116 * want because it makes the Ami status display work reliably.
4118 gtk_im_context_set_use_preedit(xic, FALSE);
4120 if (p_imdisable)
4121 im_shutdown();
4122 else
4124 gtk_im_context_set_use_preedit(xic, TRUE);
4125 xim_set_focus(gui.in_focus);
4127 if (im_activatekey_keyval != GDK_VoidSymbol)
4129 if (im_is_active)
4131 g_signal_handler_block(xic, im_commit_handler_id);
4132 im_synthesize_keypress(im_activatekey_keyval,
4133 im_activatekey_state);
4134 g_signal_handler_unblock(xic, im_commit_handler_id);
4137 else
4139 im_shutdown();
4140 xim_init();
4141 xim_set_focus(gui.in_focus);
4146 preedit_start_col = MAXCOL;
4147 xim_has_preediting = FALSE;
4151 xim_queue_key_press_event(GdkEventKey *event, int down)
4153 if (down)
4156 * Workaround GTK2 XIM 'feature' that always converts keypad keys to
4157 * chars., even when not part of an IM sequence (ref. feature of
4158 * gdk/gdkkeyuni.c).
4159 * Flag any keypad keys that might represent a single char.
4160 * If this (on its own - i.e., not part of an IM sequence) is
4161 * committed while we're processing one of these keys, we can ignore
4162 * that commit and go ahead & process it ourselves. That way we can
4163 * still distinguish keypad keys for use in mappings.
4164 * Also add GDK_space to make <S-Space> work.
4166 switch (event->keyval)
4168 case GDK_KP_Add: xim_expected_char = '+'; break;
4169 case GDK_KP_Subtract: xim_expected_char = '-'; break;
4170 case GDK_KP_Divide: xim_expected_char = '/'; break;
4171 case GDK_KP_Multiply: xim_expected_char = '*'; break;
4172 case GDK_KP_Decimal: xim_expected_char = '.'; break;
4173 case GDK_KP_Equal: xim_expected_char = '='; break;
4174 case GDK_KP_0: xim_expected_char = '0'; break;
4175 case GDK_KP_1: xim_expected_char = '1'; break;
4176 case GDK_KP_2: xim_expected_char = '2'; break;
4177 case GDK_KP_3: xim_expected_char = '3'; break;
4178 case GDK_KP_4: xim_expected_char = '4'; break;
4179 case GDK_KP_5: xim_expected_char = '5'; break;
4180 case GDK_KP_6: xim_expected_char = '6'; break;
4181 case GDK_KP_7: xim_expected_char = '7'; break;
4182 case GDK_KP_8: xim_expected_char = '8'; break;
4183 case GDK_KP_9: xim_expected_char = '9'; break;
4184 case GDK_space: xim_expected_char = ' '; break;
4185 default: xim_expected_char = NUL;
4187 xim_ignored_char = FALSE;
4191 * When typing fFtT, XIM may be activated. Thus it must pass
4192 * gtk_im_context_filter_keypress() in Normal mode.
4193 * And while doing :sh too.
4195 if (xic != NULL && !p_imdisable
4196 && (State & (INSERT | CMDLINE | NORMAL | EXTERNCMD)) != 0)
4199 * Filter 'imactivatekey' and map it to CTRL-^. This way, Vim is
4200 * always aware of the current status of IM, and can even emulate
4201 * the activation key for modules that don't support one.
4203 if (event->keyval == im_activatekey_keyval
4204 && (event->state & im_activatekey_state) == im_activatekey_state)
4206 unsigned int state_mask;
4208 /* Require the state of the 3 most used modifiers to match exactly.
4209 * Otherwise e.g. <S-C-space> would be unusable for other purposes
4210 * if the IM activate key is <S-space>. */
4211 state_mask = im_activatekey_state;
4212 state_mask |= ((int)GDK_SHIFT_MASK | (int)GDK_CONTROL_MASK
4213 | (int)GDK_MOD1_MASK);
4215 if ((event->state & state_mask) != im_activatekey_state)
4216 return FALSE;
4218 /* Don't send it a second time on GDK_KEY_RELEASE. */
4219 if (event->type != GDK_KEY_PRESS)
4220 return TRUE;
4222 if (map_to_exists_mode((char_u *)"", LANGMAP, FALSE))
4224 im_set_active(FALSE);
4226 /* ":lmap" mappings exists, toggle use of mappings. */
4227 State ^= LANGMAP;
4228 if (State & LANGMAP)
4230 curbuf->b_p_iminsert = B_IMODE_NONE;
4231 State &= ~LANGMAP;
4233 else
4235 curbuf->b_p_iminsert = B_IMODE_LMAP;
4236 State |= LANGMAP;
4238 return TRUE;
4241 return gtk_im_context_filter_keypress(xic, event);
4244 /* Don't filter events through the IM context if IM isn't active
4245 * right now. Unlike with GTK+ 1.2 we cannot rely on the IM module
4246 * not doing anything before the activation key was sent. */
4247 if (im_activatekey_keyval == GDK_VoidSymbol || im_is_active)
4249 int imresult = gtk_im_context_filter_keypress(xic, event);
4251 /* Some XIM send following sequence:
4252 * 1. preedited string.
4253 * 2. committed string.
4254 * 3. line changed key.
4255 * 4. preedited string.
4256 * 5. remove preedited string.
4257 * if 3, Vim can't move back the above line for 5.
4258 * thus, this part should not parse the key. */
4259 if (!imresult && preedit_start_col != MAXCOL
4260 && event->keyval == GDK_Return)
4262 im_synthesize_keypress(GDK_Return, 0U);
4263 return FALSE;
4266 /* If XIM tried to commit a keypad key as a single char.,
4267 * ignore it so we can use the keypad key 'raw', for mappings. */
4268 if (xim_expected_char != NUL && xim_ignored_char)
4269 /* We had a keypad key, and XIM tried to thieve it */
4270 return FALSE;
4272 /* Normal processing */
4273 return imresult;
4277 return FALSE;
4281 im_get_status(void)
4283 return im_is_active;
4286 # else /* !HAVE_GTK2 */
4288 static int xim_is_active = FALSE; /* XIM should be active in the current
4289 mode */
4290 static int xim_has_focus = FALSE; /* XIM is really being used for Vim */
4291 #ifdef FEAT_GUI_X11
4292 static XIMStyle input_style;
4293 static int status_area_enabled = TRUE;
4294 #endif
4296 #ifdef FEAT_GUI_GTK
4297 # ifdef WIN3264
4298 # include <gdk/gdkwin32.h>
4299 # else
4300 # include <gdk/gdkx.h>
4301 # endif
4302 #else
4303 # ifdef PROTO
4304 /* Define a few things to be able to generate prototypes while not configured
4305 * for GTK. */
4306 # define GSList int
4307 # define gboolean int
4308 typedef int GdkEvent;
4309 typedef int GdkEventKey;
4310 # define GdkIC int
4311 # endif
4312 #endif
4314 #if defined(FEAT_GUI_GTK) || defined(PROTO)
4315 static int preedit_buf_len = 0;
4316 static int xim_can_preediting INIT(= FALSE); /* XIM in showmode() */
4317 static int xim_input_style;
4318 #ifndef FEAT_GUI_GTK
4319 # define gboolean int
4320 #endif
4321 static gboolean use_status_area = 0;
4323 static int im_xim_str2keycode __ARGS((unsigned int *code, unsigned int *state));
4324 static void im_xim_send_event_imactivate __ARGS((void));
4327 * Convert string to keycode and state for XKeyEvent.
4328 * When string is valid return OK, when invalid return FAIL.
4330 * See 'imactivatekey' documentation for the format.
4332 static int
4333 im_xim_str2keycode(code, state)
4334 unsigned int *code;
4335 unsigned int *state;
4337 int retval = OK;
4338 int len;
4339 unsigned keycode = 0, keystate = 0;
4340 Window window;
4341 Display *display;
4342 char_u *flag_end;
4343 char_u *str;
4345 if (*p_imak != NUL)
4347 len = STRLEN(p_imak);
4348 for (flag_end = p_imak + len - 1;
4349 flag_end > p_imak && *flag_end != '-'; --flag_end)
4352 /* Parse modifier keys */
4353 for (str = p_imak; str < flag_end; ++str)
4355 switch (*str)
4357 case 's': case 'S':
4358 keystate |= ShiftMask;
4359 break;
4360 case 'l': case 'L':
4361 keystate |= LockMask;
4362 break;
4363 case 'c': case 'C':
4364 keystate |= ControlMask;
4365 break;
4366 case '1':
4367 keystate |= Mod1Mask;
4368 break;
4369 case '2':
4370 keystate |= Mod2Mask;
4371 break;
4372 case '3':
4373 keystate |= Mod3Mask;
4374 break;
4375 case '4':
4376 keystate |= Mod4Mask;
4377 break;
4378 case '5':
4379 keystate |= Mod5Mask;
4380 break;
4381 case '-':
4382 break;
4383 default:
4384 retval = FAIL;
4387 if (*str == '-')
4388 ++str;
4390 /* Get keycode from string. */
4391 gui_get_x11_windis(&window, &display);
4392 if (display)
4393 keycode = XKeysymToKeycode(display, XStringToKeysym((char *)str));
4394 if (keycode == 0)
4395 retval = FAIL;
4397 if (code != NULL)
4398 *code = keycode;
4399 if (state != NULL)
4400 *state = keystate;
4402 return retval;
4405 static void
4406 im_xim_send_event_imactivate()
4408 /* Force turn on preedit state by symulate keypress event.
4409 * Keycode and state is specified by 'imactivatekey'.
4411 XKeyEvent ev;
4413 gui_get_x11_windis(&ev.window, &ev.display);
4414 ev.root = RootWindow(ev.display, DefaultScreen(ev.display));
4415 ev.subwindow = None;
4416 ev.time = CurrentTime;
4417 ev.x = 1;
4418 ev.y = 1;
4419 ev.x_root = 1;
4420 ev.y_root = 1;
4421 ev.same_screen = 1;
4422 ev.type = KeyPress;
4423 if (im_xim_str2keycode(&ev.keycode, &ev.state) == OK)
4424 XSendEvent(ev.display, ev.window, 1, KeyPressMask, (XEvent*)&ev);
4428 * Return TRUE if 'imactivatekey' has a valid value.
4431 im_xim_isvalid_imactivate()
4433 return im_xim_str2keycode(NULL, NULL) == OK;
4435 #endif /* FEAT_GUI_GTK */
4438 * Switch using XIM on/off. This is used by the code that changes "State".
4440 void
4441 im_set_active(active)
4442 int active;
4444 if (xic == NULL)
4445 return;
4447 /* If 'imdisable' is set, XIM is never active. */
4448 if (p_imdisable)
4449 active = FALSE;
4450 #if !defined (FEAT_GUI_GTK)
4451 else if (input_style & XIMPreeditPosition)
4452 /* There is a problem in switching XIM off when preediting is used,
4453 * and it is not clear how this can be solved. For now, keep XIM on
4454 * all the time, like it was done in Vim 5.8. */
4455 active = TRUE;
4456 #endif
4458 /* Remember the active state, it is needed when Vim gets keyboard focus. */
4459 xim_is_active = active;
4461 #ifdef FEAT_GUI_GTK
4462 /* When 'imactivatekey' has valid key-string, try to control XIM preedit
4463 * state. When 'imactivatekey' has no or invalid string, try old XIM
4464 * focus control.
4466 if (*p_imak != NUL)
4468 /* BASIC STRATEGY:
4469 * Destroy old Input Context (XIC), and create new one. New XIC
4470 * would have a state of preedit that is off. When argument:active
4471 * is false, that's all. Else argument:active is true, send a key
4472 * event specified by 'imactivatekey' to activate XIM preedit state.
4475 xim_is_active = TRUE; /* Disable old XIM focus control */
4476 /* If we can monitor preedit state with preedit callback functions,
4477 * try least creation of new XIC.
4479 if (xim_input_style & (int)GDK_IM_PREEDIT_CALLBACKS)
4481 if (xim_can_preediting && !active)
4483 /* Force turn off preedit state. With some IM
4484 * implementations, we cannot turn off preedit state by
4485 * symulate keypress event. It is why using such a method
4486 * that destroy old IC (input context), and create new one.
4487 * When create new IC, its preedit state is usually off.
4489 xim_reset();
4490 xim_set_focus(FALSE);
4491 gdk_ic_destroy(xic);
4492 xim_init();
4493 xim_can_preediting = FALSE;
4495 else if (!xim_can_preediting && active)
4496 im_xim_send_event_imactivate();
4498 else
4500 /* First, force destroy old IC, and create new one. It
4501 * symulates "turning off preedit state".
4503 xim_set_focus(FALSE);
4504 gdk_ic_destroy(xic);
4505 xim_init();
4506 xim_can_preediting = FALSE;
4508 /* 2nd, when requested to activate IM, symulate this by sending
4509 * the event.
4511 if (active)
4513 im_xim_send_event_imactivate();
4514 xim_can_preediting = TRUE;
4518 else
4520 # ifndef XIMPreeditUnKnown
4521 /* X11R5 doesn't have these, it looks safe enough to define here. */
4522 typedef unsigned long XIMPreeditState;
4523 # define XIMPreeditUnKnown 0L
4524 # define XIMPreeditEnable 1L
4525 # define XIMPreeditDisable (1L<<1)
4526 # define XNPreeditState "preeditState"
4527 # endif
4528 XIMPreeditState preedit_state = XIMPreeditUnKnown;
4529 XVaNestedList preedit_attr;
4530 XIC pxic;
4532 preedit_attr = XVaCreateNestedList(0,
4533 XNPreeditState, &preedit_state,
4534 NULL);
4535 pxic = ((GdkICPrivate *)xic)->xic;
4537 if (!XGetICValues(pxic, XNPreeditAttributes, preedit_attr, NULL))
4539 XFree(preedit_attr);
4540 preedit_attr = XVaCreateNestedList(0,
4541 XNPreeditState,
4542 active ? XIMPreeditEnable : XIMPreeditDisable,
4543 NULL);
4544 XSetICValues(pxic, XNPreeditAttributes, preedit_attr, NULL);
4545 xim_can_preediting = active;
4546 xim_is_active = active;
4548 XFree(preedit_attr);
4550 if (xim_input_style & XIMPreeditCallbacks)
4552 preedit_buf_len = 0;
4553 init_preedit_start_col();
4555 #else
4556 # if 0
4557 /* When had tested kinput2 + canna + Athena GUI version with
4558 * 'imactivatekey' is "s-space", im_xim_send_event_imactivate() did not
4559 * work correctly. It just inserted one space. I don't know why we
4560 * couldn't switch state of XIM preediting. This is reason why these
4561 * codes are commented out.
4563 /* First, force destroy old IC, and create new one. It symulates
4564 * "turning off preedit state".
4566 xim_set_focus(FALSE);
4567 XDestroyIC(xic);
4568 xic = NULL;
4569 xim_init();
4571 /* 2nd, when requested to activate IM, symulate this by sending the
4572 * event.
4574 if (active)
4575 im_xim_send_event_imactivate();
4576 # endif
4577 #endif
4578 xim_set_preedit();
4582 * Adjust using XIM for gaining or losing keyboard focus. Also called when
4583 * "xim_is_active" changes.
4585 void
4586 xim_set_focus(focus)
4587 int focus;
4589 if (xic == NULL)
4590 return;
4593 * XIM only gets focus when the Vim window has keyboard focus and XIM has
4594 * been set active for the current mode.
4596 if (focus && xim_is_active)
4598 if (!xim_has_focus)
4600 xim_has_focus = TRUE;
4601 #ifdef FEAT_GUI_GTK
4602 gdk_im_begin(xic, gui.drawarea->window);
4603 #else
4604 XSetICFocus(xic);
4605 #endif
4608 else
4610 if (xim_has_focus)
4612 xim_has_focus = FALSE;
4613 #ifdef FEAT_GUI_GTK
4614 gdk_im_end();
4615 #else
4616 XUnsetICFocus(xic);
4617 #endif
4622 /*ARGSUSED*/
4623 void
4624 im_set_position(row, col)
4625 int row;
4626 int col;
4628 xim_set_preedit();
4632 * Set the XIM to the current cursor position.
4634 void
4635 xim_set_preedit()
4637 if (xic == NULL)
4638 return;
4640 xim_set_focus(TRUE);
4642 #ifdef FEAT_GUI_GTK
4643 if (gdk_im_ready())
4645 int attrmask;
4646 GdkICAttr *attr;
4648 if (!xic_attr)
4649 return;
4651 attr = xic_attr;
4652 attrmask = 0;
4654 # ifdef FEAT_XFONTSET
4655 if ((xim_input_style & (int)GDK_IM_PREEDIT_POSITION)
4656 && gui.fontset != NOFONTSET
4657 && gui.fontset->type == GDK_FONT_FONTSET)
4659 if (!xim_has_focus)
4661 if (attr->spot_location.y >= 0)
4663 attr->spot_location.x = 0;
4664 attr->spot_location.y = -100;
4665 attrmask |= (int)GDK_IC_SPOT_LOCATION;
4668 else
4670 gint width, height;
4672 if (attr->spot_location.x != TEXT_X(gui.col)
4673 || attr->spot_location.y != TEXT_Y(gui.row))
4675 attr->spot_location.x = TEXT_X(gui.col);
4676 attr->spot_location.y = TEXT_Y(gui.row);
4677 attrmask |= (int)GDK_IC_SPOT_LOCATION;
4680 gdk_window_get_size(gui.drawarea->window, &width, &height);
4681 width -= 2 * gui.border_offset;
4682 height -= 2 * gui.border_offset;
4683 if (xim_input_style & (int)GDK_IM_STATUS_AREA)
4684 height -= gui.char_height;
4685 if (attr->preedit_area.width != width
4686 || attr->preedit_area.height != height)
4688 attr->preedit_area.x = gui.border_offset;
4689 attr->preedit_area.y = gui.border_offset;
4690 attr->preedit_area.width = width;
4691 attr->preedit_area.height = height;
4692 attrmask |= (int)GDK_IC_PREEDIT_AREA;
4695 if (attr->preedit_fontset != gui.current_font)
4697 attr->preedit_fontset = gui.current_font;
4698 attrmask |= (int)GDK_IC_PREEDIT_FONTSET;
4702 # endif /* FEAT_XFONTSET */
4704 if (xim_fg_color == INVALCOLOR)
4706 xim_fg_color = gui.def_norm_pixel;
4707 xim_bg_color = gui.def_back_pixel;
4709 if (attr->preedit_foreground.pixel != xim_fg_color)
4711 attr->preedit_foreground.pixel = xim_fg_color;
4712 attrmask |= (int)GDK_IC_PREEDIT_FOREGROUND;
4714 if (attr->preedit_background.pixel != xim_bg_color)
4716 attr->preedit_background.pixel = xim_bg_color;
4717 attrmask |= (int)GDK_IC_PREEDIT_BACKGROUND;
4720 if (attrmask != 0)
4721 gdk_ic_set_attr(xic, attr, (GdkICAttributesType)attrmask);
4723 #else /* FEAT_GUI_GTK */
4725 XVaNestedList attr_list;
4726 XRectangle spot_area;
4727 XPoint over_spot;
4728 int line_space;
4730 if (!xim_has_focus)
4732 /* hide XIM cursor */
4733 over_spot.x = 0;
4734 over_spot.y = -100; /* arbitrary invisible position */
4735 attr_list = (XVaNestedList) XVaCreateNestedList(0,
4736 XNSpotLocation,
4737 &over_spot,
4738 NULL);
4739 XSetICValues(xic, XNPreeditAttributes, attr_list, NULL);
4740 XFree(attr_list);
4741 return;
4744 if (input_style & XIMPreeditPosition)
4746 if (xim_fg_color == INVALCOLOR)
4748 xim_fg_color = gui.def_norm_pixel;
4749 xim_bg_color = gui.def_back_pixel;
4751 over_spot.x = TEXT_X(gui.col);
4752 over_spot.y = TEXT_Y(gui.row);
4753 spot_area.x = 0;
4754 spot_area.y = 0;
4755 spot_area.height = gui.char_height * Rows;
4756 spot_area.width = gui.char_width * Columns;
4757 line_space = gui.char_height;
4758 attr_list = (XVaNestedList) XVaCreateNestedList(0,
4759 XNSpotLocation, &over_spot,
4760 XNForeground, (Pixel) xim_fg_color,
4761 XNBackground, (Pixel) xim_bg_color,
4762 XNArea, &spot_area,
4763 XNLineSpace, line_space,
4764 NULL);
4765 if (XSetICValues(xic, XNPreeditAttributes, attr_list, NULL))
4766 EMSG(_("E284: Cannot set IC values"));
4767 XFree(attr_list);
4770 #endif /* FEAT_GUI_GTK */
4774 * Set up the status area.
4776 * This should use a separate Widget, but that seems not possible, because
4777 * preedit_area and status_area should be set to the same window as for the
4778 * text input. Unfortunately this means the status area pollutes the text
4779 * window...
4781 void
4782 xim_set_status_area()
4784 if (xic == NULL)
4785 return;
4787 #ifdef FEAT_GUI_GTK
4788 # if defined(FEAT_XFONTSET)
4789 if (use_status_area)
4791 GdkICAttr *attr;
4792 int style;
4793 gint width, height;
4794 GtkWidget *widget;
4795 int attrmask;
4797 if (!xic_attr)
4798 return;
4800 attr = xic_attr;
4801 attrmask = 0;
4802 style = (int)gdk_ic_get_style(xic);
4803 if ((style & (int)GDK_IM_STATUS_MASK) == (int)GDK_IM_STATUS_AREA)
4805 if (gui.fontset != NOFONTSET
4806 && gui.fontset->type == GDK_FONT_FONTSET)
4808 widget = gui.mainwin;
4809 gdk_window_get_size(widget->window, &width, &height);
4811 attrmask |= (int)GDK_IC_STATUS_AREA;
4812 attr->status_area.x = 0;
4813 attr->status_area.y = height - gui.char_height - 1;
4814 attr->status_area.width = width;
4815 attr->status_area.height = gui.char_height;
4818 if (attrmask != 0)
4819 gdk_ic_set_attr(xic, attr, (GdkICAttributesType)attrmask);
4821 # endif
4822 #else
4824 XVaNestedList preedit_list = 0, status_list = 0, list = 0;
4825 XRectangle pre_area, status_area;
4827 if (input_style & XIMStatusArea)
4829 if (input_style & XIMPreeditArea)
4831 XRectangle *needed_rect;
4833 /* to get status_area width */
4834 status_list = XVaCreateNestedList(0, XNAreaNeeded,
4835 &needed_rect, NULL);
4836 XGetICValues(xic, XNStatusAttributes, status_list, NULL);
4837 XFree(status_list);
4839 status_area.width = needed_rect->width;
4841 else
4842 status_area.width = gui.char_width * Columns;
4844 status_area.x = 0;
4845 status_area.y = gui.char_height * Rows + gui.border_offset;
4846 if (gui.which_scrollbars[SBAR_BOTTOM])
4847 status_area.y += gui.scrollbar_height;
4848 #ifdef FEAT_MENU
4849 if (gui.menu_is_active)
4850 status_area.y += gui.menu_height;
4851 #endif
4852 status_area.height = gui.char_height;
4853 status_list = XVaCreateNestedList(0, XNArea, &status_area, NULL);
4855 else
4857 status_area.x = 0;
4858 status_area.y = gui.char_height * Rows + gui.border_offset;
4859 if (gui.which_scrollbars[SBAR_BOTTOM])
4860 status_area.y += gui.scrollbar_height;
4861 #ifdef FEAT_MENU
4862 if (gui.menu_is_active)
4863 status_area.y += gui.menu_height;
4864 #endif
4865 status_area.width = 0;
4866 status_area.height = gui.char_height;
4869 if (input_style & XIMPreeditArea) /* off-the-spot */
4871 pre_area.x = status_area.x + status_area.width;
4872 pre_area.y = gui.char_height * Rows + gui.border_offset;
4873 pre_area.width = gui.char_width * Columns - pre_area.x;
4874 if (gui.which_scrollbars[SBAR_BOTTOM])
4875 pre_area.y += gui.scrollbar_height;
4876 #ifdef FEAT_MENU
4877 if (gui.menu_is_active)
4878 pre_area.y += gui.menu_height;
4879 #endif
4880 pre_area.height = gui.char_height;
4881 preedit_list = XVaCreateNestedList(0, XNArea, &pre_area, NULL);
4883 else if (input_style & XIMPreeditPosition) /* over-the-spot */
4885 pre_area.x = 0;
4886 pre_area.y = 0;
4887 pre_area.height = gui.char_height * Rows;
4888 pre_area.width = gui.char_width * Columns;
4889 preedit_list = XVaCreateNestedList(0, XNArea, &pre_area, NULL);
4892 if (preedit_list && status_list)
4893 list = XVaCreateNestedList(0, XNPreeditAttributes, preedit_list,
4894 XNStatusAttributes, status_list, NULL);
4895 else if (preedit_list)
4896 list = XVaCreateNestedList(0, XNPreeditAttributes, preedit_list,
4897 NULL);
4898 else if (status_list)
4899 list = XVaCreateNestedList(0, XNStatusAttributes, status_list,
4900 NULL);
4901 else
4902 list = NULL;
4904 if (list)
4906 XSetICValues(xic, XNVaNestedList, list, NULL);
4907 XFree(list);
4909 if (status_list)
4910 XFree(status_list);
4911 if (preedit_list)
4912 XFree(preedit_list);
4914 #endif
4917 #if defined(FEAT_GUI_X11) || defined(FEAT_GUI_GTK)
4918 static char e_xim[] = N_("E285: Failed to create input context");
4919 #endif
4921 #if defined(FEAT_GUI_X11) || defined(PROTO)
4922 # if defined(XtSpecificationRelease) && XtSpecificationRelease >= 6 && !defined(sun)
4923 # define USE_X11R6_XIM
4924 # endif
4926 static int xim_real_init __ARGS((Window x11_window, Display *x11_display));
4929 #ifdef USE_X11R6_XIM
4930 static void xim_instantiate_cb __ARGS((Display *display, XPointer client_data, XPointer call_data));
4931 static void xim_destroy_cb __ARGS((XIM im, XPointer client_data, XPointer call_data));
4933 /*ARGSUSED*/
4934 static void
4935 xim_instantiate_cb(display, client_data, call_data)
4936 Display *display;
4937 XPointer client_data;
4938 XPointer call_data;
4940 Window x11_window;
4941 Display *x11_display;
4943 #ifdef XIM_DEBUG
4944 xim_log("xim_instantiate_cb()\n");
4945 #endif
4947 gui_get_x11_windis(&x11_window, &x11_display);
4948 if (display != x11_display)
4949 return;
4951 xim_real_init(x11_window, x11_display);
4952 gui_set_shellsize(FALSE, FALSE, RESIZE_BOTH);
4953 if (xic != NULL)
4954 XUnregisterIMInstantiateCallback(x11_display, NULL, NULL, NULL,
4955 xim_instantiate_cb, NULL);
4958 /*ARGSUSED*/
4959 static void
4960 xim_destroy_cb(im, client_data, call_data)
4961 XIM im;
4962 XPointer client_data;
4963 XPointer call_data;
4965 Window x11_window;
4966 Display *x11_display;
4968 #ifdef XIM_DEBUG
4969 xim_log("xim_destroy_cb()\n");
4970 #endif
4971 gui_get_x11_windis(&x11_window, &x11_display);
4973 xic = NULL;
4974 status_area_enabled = FALSE;
4976 gui_set_shellsize(FALSE, FALSE, RESIZE_BOTH);
4978 XRegisterIMInstantiateCallback(x11_display, NULL, NULL, NULL,
4979 xim_instantiate_cb, NULL);
4981 #endif
4983 void
4984 xim_init()
4986 Window x11_window;
4987 Display *x11_display;
4989 #ifdef XIM_DEBUG
4990 xim_log("xim_init()\n");
4991 #endif
4993 gui_get_x11_windis(&x11_window, &x11_display);
4995 xic = NULL;
4997 if (xim_real_init(x11_window, x11_display))
4998 return;
5000 gui_set_shellsize(FALSE, FALSE, RESIZE_BOTH);
5002 #ifdef USE_X11R6_XIM
5003 XRegisterIMInstantiateCallback(x11_display, NULL, NULL, NULL,
5004 xim_instantiate_cb, NULL);
5005 #endif
5008 static int
5009 xim_real_init(x11_window, x11_display)
5010 Window x11_window;
5011 Display *x11_display;
5013 int i;
5014 char *p,
5016 *ns,
5017 *end,
5018 tmp[1024];
5019 #define IMLEN_MAX 40
5020 char buf[IMLEN_MAX + 7];
5021 XIM xim = NULL;
5022 XIMStyles *xim_styles;
5023 XIMStyle this_input_style = 0;
5024 Boolean found;
5025 XPoint over_spot;
5026 XVaNestedList preedit_list, status_list;
5028 input_style = 0;
5029 status_area_enabled = FALSE;
5031 if (xic != NULL)
5032 return FALSE;
5034 if (gui.rsrc_input_method != NULL && *gui.rsrc_input_method != NUL)
5036 strcpy(tmp, gui.rsrc_input_method);
5037 for (ns = s = tmp; ns != NULL && *s != NUL;)
5039 s = (char *)skipwhite((char_u *)s);
5040 if (*s == NUL)
5041 break;
5042 if ((ns = end = strchr(s, ',')) == NULL)
5043 end = s + strlen(s);
5044 while (isspace(((char_u *)end)[-1]))
5045 end--;
5046 *end = NUL;
5048 if (strlen(s) <= IMLEN_MAX)
5050 strcpy(buf, "@im=");
5051 strcat(buf, s);
5052 if ((p = XSetLocaleModifiers(buf)) != NULL && *p != NUL
5053 && (xim = XOpenIM(x11_display, NULL, NULL, NULL))
5054 != NULL)
5055 break;
5058 s = ns + 1;
5062 if (xim == NULL && (p = XSetLocaleModifiers("")) != NULL && *p != NUL)
5063 xim = XOpenIM(x11_display, NULL, NULL, NULL);
5065 /* This is supposed to be useful to obtain characters through
5066 * XmbLookupString() without really using a XIM. */
5067 if (xim == NULL && (p = XSetLocaleModifiers("@im=none")) != NULL
5068 && *p != NUL)
5069 xim = XOpenIM(x11_display, NULL, NULL, NULL);
5071 if (xim == NULL)
5073 /* Only give this message when verbose is set, because too many people
5074 * got this message when they didn't want to use a XIM. */
5075 if (p_verbose > 0)
5077 verbose_enter();
5078 EMSG(_("E286: Failed to open input method"));
5079 verbose_leave();
5081 return FALSE;
5084 #ifdef USE_X11R6_XIM
5086 XIMCallback destroy_cb;
5088 destroy_cb.callback = xim_destroy_cb;
5089 destroy_cb.client_data = NULL;
5090 if (XSetIMValues(xim, XNDestroyCallback, &destroy_cb, NULL))
5091 EMSG(_("E287: Warning: Could not set destroy callback to IM"));
5093 #endif
5095 if (XGetIMValues(xim, XNQueryInputStyle, &xim_styles, NULL) || !xim_styles)
5097 EMSG(_("E288: input method doesn't support any style"));
5098 XCloseIM(xim);
5099 return FALSE;
5102 found = False;
5103 strcpy(tmp, gui.rsrc_preedit_type_name);
5104 for (s = tmp; s && !found; )
5106 while (*s && isspace((unsigned char)*s))
5107 s++;
5108 if (!*s)
5109 break;
5110 if ((ns = end = strchr(s, ',')) != 0)
5111 ns++;
5112 else
5113 end = s + strlen(s);
5114 while (isspace((unsigned char)*end))
5115 end--;
5116 *end = '\0';
5118 if (!strcmp(s, "OverTheSpot"))
5119 this_input_style = (XIMPreeditPosition | XIMStatusArea);
5120 else if (!strcmp(s, "OffTheSpot"))
5121 this_input_style = (XIMPreeditArea | XIMStatusArea);
5122 else if (!strcmp(s, "Root"))
5123 this_input_style = (XIMPreeditNothing | XIMStatusNothing);
5125 for (i = 0; (unsigned short)i < xim_styles->count_styles; i++)
5127 if (this_input_style == xim_styles->supported_styles[i])
5129 found = True;
5130 break;
5133 if (!found)
5134 for (i = 0; (unsigned short)i < xim_styles->count_styles; i++)
5136 if ((xim_styles->supported_styles[i] & this_input_style)
5137 == (this_input_style & ~XIMStatusArea))
5139 this_input_style &= ~XIMStatusArea;
5140 found = True;
5141 break;
5145 s = ns;
5147 XFree(xim_styles);
5149 if (!found)
5151 /* Only give this message when verbose is set, because too many people
5152 * got this message when they didn't want to use a XIM. */
5153 if (p_verbose > 0)
5155 verbose_enter();
5156 EMSG(_("E289: input method doesn't support my preedit type"));
5157 verbose_leave();
5159 XCloseIM(xim);
5160 return FALSE;
5163 over_spot.x = TEXT_X(gui.col);
5164 over_spot.y = TEXT_Y(gui.row);
5165 input_style = this_input_style;
5167 /* A crash was reported when trying to pass gui.norm_font as XNFontSet,
5168 * thus that has been removed. Hopefully the default works... */
5169 #ifdef FEAT_XFONTSET
5170 if (gui.fontset != NOFONTSET)
5172 preedit_list = XVaCreateNestedList(0,
5173 XNSpotLocation, &over_spot,
5174 XNForeground, (Pixel)gui.def_norm_pixel,
5175 XNBackground, (Pixel)gui.def_back_pixel,
5176 XNFontSet, (XFontSet)gui.fontset,
5177 NULL);
5178 status_list = XVaCreateNestedList(0,
5179 XNForeground, (Pixel)gui.def_norm_pixel,
5180 XNBackground, (Pixel)gui.def_back_pixel,
5181 XNFontSet, (XFontSet)gui.fontset,
5182 NULL);
5184 else
5185 #endif
5187 preedit_list = XVaCreateNestedList(0,
5188 XNSpotLocation, &over_spot,
5189 XNForeground, (Pixel)gui.def_norm_pixel,
5190 XNBackground, (Pixel)gui.def_back_pixel,
5191 NULL);
5192 status_list = XVaCreateNestedList(0,
5193 XNForeground, (Pixel)gui.def_norm_pixel,
5194 XNBackground, (Pixel)gui.def_back_pixel,
5195 NULL);
5198 xic = XCreateIC(xim,
5199 XNInputStyle, input_style,
5200 XNClientWindow, x11_window,
5201 XNFocusWindow, gui.wid,
5202 XNPreeditAttributes, preedit_list,
5203 XNStatusAttributes, status_list,
5204 NULL);
5205 XFree(status_list);
5206 XFree(preedit_list);
5207 if (xic != NULL)
5209 if (input_style & XIMStatusArea)
5211 xim_set_status_area();
5212 status_area_enabled = TRUE;
5214 else
5215 gui_set_shellsize(FALSE, FALSE, RESIZE_BOTH);
5217 else
5219 EMSG(_(e_xim));
5220 XCloseIM(xim);
5221 return FALSE;
5224 return TRUE;
5227 #endif /* FEAT_GUI_X11 */
5229 #if defined(FEAT_GUI_GTK) || defined(PROTO)
5231 # ifdef FEAT_XFONTSET
5232 static char e_overthespot[] = N_("E290: over-the-spot style requires fontset");
5233 # endif
5235 # ifdef PROTO
5236 typedef int GdkIC;
5237 # endif
5239 void
5240 xim_decide_input_style()
5242 /* GDK_IM_STATUS_CALLBACKS was disabled, enabled it to allow Japanese
5243 * OverTheSpot. */
5244 int supported_style = (int)GDK_IM_PREEDIT_NONE |
5245 (int)GDK_IM_PREEDIT_NOTHING |
5246 (int)GDK_IM_PREEDIT_POSITION |
5247 (int)GDK_IM_PREEDIT_CALLBACKS |
5248 (int)GDK_IM_STATUS_CALLBACKS |
5249 (int)GDK_IM_STATUS_AREA |
5250 (int)GDK_IM_STATUS_NONE |
5251 (int)GDK_IM_STATUS_NOTHING;
5253 #ifdef XIM_DEBUG
5254 xim_log("xim_decide_input_style()\n");
5255 #endif
5257 if (!gdk_im_ready())
5258 xim_input_style = 0;
5259 else
5261 if (gtk_major_version > 1
5262 || (gtk_major_version == 1
5263 && (gtk_minor_version > 2
5264 || (gtk_minor_version == 2 && gtk_micro_version >= 3))))
5265 use_status_area = TRUE;
5266 else
5268 EMSG(_("E291: Your GTK+ is older than 1.2.3. Status area disabled"));
5269 use_status_area = FALSE;
5271 #ifdef FEAT_XFONTSET
5272 if (gui.fontset == NOFONTSET || gui.fontset->type != GDK_FONT_FONTSET)
5273 #endif
5274 supported_style &= ~((int)GDK_IM_PREEDIT_POSITION
5275 | (int)GDK_IM_STATUS_AREA);
5276 if (!use_status_area)
5277 supported_style &= ~(int)GDK_IM_STATUS_AREA;
5278 xim_input_style = (int)gdk_im_decide_style((GdkIMStyle)supported_style);
5282 /*ARGSUSED*/
5283 static void
5284 preedit_start_cbproc(XIC xic, XPointer client_data, XPointer call_data)
5286 #ifdef XIM_DEBUG
5287 xim_log("xim_decide_input_style()\n");
5288 #endif
5290 draw_feedback = NULL;
5291 xim_can_preediting = TRUE;
5292 xim_has_preediting = TRUE;
5293 gui_update_cursor(TRUE, FALSE);
5294 if (showmode() > 0)
5296 setcursor();
5297 out_flush();
5301 static void
5302 xim_back_delete(int n)
5304 char_u str[3];
5306 str[0] = CSI;
5307 str[1] = 'k';
5308 str[2] = 'b';
5309 while (n-- > 0)
5310 add_to_input_buf(str, 3);
5313 static GSList *key_press_event_queue = NULL;
5314 static gboolean processing_queued_event = FALSE;
5316 /*ARGSUSED*/
5317 static void
5318 preedit_draw_cbproc(XIC xic, XPointer client_data, XPointer call_data)
5320 XIMPreeditDrawCallbackStruct *draw_data;
5321 XIMText *text;
5322 char *src;
5323 GSList *event_queue;
5325 #ifdef XIM_DEBUG
5326 xim_log("preedit_draw_cbproc()\n");
5327 #endif
5329 draw_data = (XIMPreeditDrawCallbackStruct *) call_data;
5330 text = (XIMText *) draw_data->text;
5332 if ((text == NULL && draw_data->chg_length == preedit_buf_len)
5333 || preedit_buf_len == 0)
5335 init_preedit_start_col();
5336 vim_free(draw_feedback);
5337 draw_feedback = NULL;
5339 if (draw_data->chg_length > 0)
5341 int bs_cnt;
5343 if (draw_data->chg_length > preedit_buf_len)
5344 bs_cnt = preedit_buf_len;
5345 else
5346 bs_cnt = draw_data->chg_length;
5347 xim_back_delete(bs_cnt);
5348 preedit_buf_len -= bs_cnt;
5350 if (text != NULL)
5352 int len;
5353 #ifdef FEAT_MBYTE
5354 char_u *buf = NULL;
5355 unsigned int nfeedback = 0;
5356 #endif
5357 char_u *ptr;
5359 src = text->string.multi_byte;
5360 if (src != NULL && !text->encoding_is_wchar)
5362 len = strlen(src);
5363 ptr = (char_u *)src;
5364 /* Avoid the enter for decision */
5365 if (*ptr == '\n')
5366 return;
5368 #ifdef FEAT_MBYTE
5369 if (input_conv.vc_type != CONV_NONE
5370 && (buf = string_convert(&input_conv,
5371 (char_u *)src, &len)) != NULL)
5373 /* Converted from 'termencoding' to 'encoding'. */
5374 add_to_input_buf_csi(buf, len);
5375 ptr = buf;
5377 else
5378 #endif
5379 add_to_input_buf_csi((char_u *)src, len);
5380 /* Add count of character to preedit_buf_len */
5381 while (*ptr != NUL)
5383 #ifdef FEAT_MBYTE
5384 if (draw_data->text->feedback != NULL)
5386 if (draw_feedback == NULL)
5387 draw_feedback = (char *)alloc(draw_data->chg_first
5388 + text->length);
5389 else
5390 draw_feedback = realloc(draw_feedback,
5391 draw_data->chg_first + text->length);
5392 if (draw_feedback != NULL)
5394 draw_feedback[nfeedback + draw_data->chg_first]
5395 = draw_data->text->feedback[nfeedback];
5396 nfeedback++;
5399 if (has_mbyte)
5400 ptr += (*mb_ptr2len)(ptr);
5401 else
5402 #endif
5403 ptr++;
5404 preedit_buf_len++;
5406 #ifdef FEAT_MBYTE
5407 vim_free(buf);
5408 #endif
5409 preedit_end_col = MAXCOL;
5412 if (text != NULL || draw_data->chg_length > 0)
5414 event_queue = key_press_event_queue;
5415 processing_queued_event = TRUE;
5416 while (event_queue != NULL && processing_queued_event)
5418 GdkEvent *ev = event_queue->data;
5420 gboolean *ret;
5421 gtk_signal_emit_by_name((GtkObject*)gui.mainwin, "key_press_event",
5422 ev, &ret);
5423 gdk_event_free(ev);
5424 event_queue = event_queue->next;
5426 processing_queued_event = FALSE;
5427 if (key_press_event_queue)
5429 g_slist_free(key_press_event_queue);
5430 key_press_event_queue = NULL;
5433 if (gtk_main_level() > 0)
5434 gtk_main_quit();
5438 * Retrieve the highlighting attributes at column col in the preedit string.
5439 * Return -1 if not in preediting mode or if col is out of range.
5442 im_get_feedback_attr(int col)
5444 if (draw_feedback != NULL && col < preedit_buf_len)
5446 if (draw_feedback[col] & XIMReverse)
5447 return HL_INVERSE;
5448 else if (draw_feedback[col] & XIMUnderline)
5449 return HL_UNDERLINE;
5450 else
5451 return hl_attr(HLF_V);
5454 return -1;
5457 /*ARGSUSED*/
5458 static void
5459 preedit_caret_cbproc(XIC xic, XPointer client_data, XPointer call_data)
5461 #ifdef XIM_DEBUG
5462 xim_log("preedit_caret_cbproc()\n");
5463 #endif
5466 /*ARGSUSED*/
5467 static void
5468 preedit_done_cbproc(XIC xic, XPointer client_data, XPointer call_data)
5470 #ifdef XIM_DEBUG
5471 xim_log("preedit_done_cbproc()\n");
5472 #endif
5474 vim_free(draw_feedback);
5475 draw_feedback = NULL;
5476 xim_can_preediting = FALSE;
5477 xim_has_preediting = FALSE;
5478 gui_update_cursor(TRUE, FALSE);
5479 if (showmode() > 0)
5481 setcursor();
5482 out_flush();
5486 void
5487 xim_reset(void)
5489 char *text;
5491 #ifdef XIM_DEBUG
5492 xim_log("xim_reset()\n");
5493 #endif
5495 if (xic != NULL)
5497 text = XmbResetIC(((GdkICPrivate *)xic)->xic);
5498 if (text != NULL && !(xim_input_style & (int)GDK_IM_PREEDIT_CALLBACKS))
5499 add_to_input_buf_csi((char_u *)text, strlen(text));
5500 else
5501 preedit_buf_len = 0;
5502 if (text != NULL)
5503 XFree(text);
5507 /*ARGSUSED*/
5509 xim_queue_key_press_event(GdkEventKey *event, int down)
5511 #ifdef XIM_DEBUG
5512 xim_log("xim_queue_key_press_event()\n");
5513 #endif
5515 if (preedit_buf_len <= 0)
5516 return FALSE;
5517 if (processing_queued_event)
5518 processing_queued_event = FALSE;
5520 key_press_event_queue = g_slist_append(key_press_event_queue,
5521 gdk_event_copy((GdkEvent *)event));
5522 return TRUE;
5525 /*ARGSUSED*/
5526 static void
5527 preedit_callback_setup(GdkIC *ic)
5529 XIC xxic;
5530 XVaNestedList preedit_attr;
5531 XIMCallback preedit_start_cb;
5532 XIMCallback preedit_draw_cb;
5533 XIMCallback preedit_caret_cb;
5534 XIMCallback preedit_done_cb;
5536 xxic = ((GdkICPrivate*)xic)->xic;
5537 preedit_start_cb.callback = (XIMProc)preedit_start_cbproc;
5538 preedit_draw_cb.callback = (XIMProc)preedit_draw_cbproc;
5539 preedit_caret_cb.callback = (XIMProc)preedit_caret_cbproc;
5540 preedit_done_cb.callback = (XIMProc)preedit_done_cbproc;
5541 preedit_attr
5542 = XVaCreateNestedList(0,
5543 XNPreeditStartCallback, &preedit_start_cb,
5544 XNPreeditDrawCallback, &preedit_draw_cb,
5545 XNPreeditCaretCallback, &preedit_caret_cb,
5546 XNPreeditDoneCallback, &preedit_done_cb,
5547 NULL);
5548 XSetICValues(xxic, XNPreeditAttributes, preedit_attr, NULL);
5549 XFree(preedit_attr);
5552 /*ARGSUSED*/
5553 static void
5554 reset_state_setup(GdkIC *ic)
5556 #ifdef USE_X11R6_XIM
5557 /* don't change the input context when we call reset */
5558 XSetICValues(((GdkICPrivate *)ic)->xic, XNResetState, XIMPreserveState,
5559 NULL);
5560 #endif
5563 void
5564 xim_init(void)
5566 #ifdef XIM_DEBUG
5567 xim_log("xim_init()\n");
5568 #endif
5570 xic = NULL;
5571 xic_attr = NULL;
5573 if (!gdk_im_ready())
5575 if (p_verbose > 0)
5577 verbose_enter();
5578 EMSG(_("E292: Input Method Server is not running"));
5579 verbose_leave();
5581 return;
5583 if ((xic_attr = gdk_ic_attr_new()) != NULL)
5585 #ifdef FEAT_XFONTSET
5586 gint width, height;
5587 #endif
5588 int mask;
5589 GdkColormap *colormap;
5590 GdkICAttr *attr = xic_attr;
5591 int attrmask = (int)GDK_IC_ALL_REQ;
5592 GtkWidget *widget = gui.drawarea;
5594 attr->style = (GdkIMStyle)xim_input_style;
5595 attr->client_window = gui.mainwin->window;
5597 if ((colormap = gtk_widget_get_colormap(widget)) !=
5598 gtk_widget_get_default_colormap())
5600 attrmask |= (int)GDK_IC_PREEDIT_COLORMAP;
5601 attr->preedit_colormap = colormap;
5603 attrmask |= (int)GDK_IC_PREEDIT_FOREGROUND;
5604 attrmask |= (int)GDK_IC_PREEDIT_BACKGROUND;
5605 attr->preedit_foreground = widget->style->fg[GTK_STATE_NORMAL];
5606 attr->preedit_background = widget->style->base[GTK_STATE_NORMAL];
5608 #ifdef FEAT_XFONTSET
5609 if ((xim_input_style & (int)GDK_IM_PREEDIT_MASK)
5610 == (int)GDK_IM_PREEDIT_POSITION)
5612 if (gui.fontset == NOFONTSET
5613 || gui.fontset->type != GDK_FONT_FONTSET)
5615 EMSG(_(e_overthespot));
5617 else
5619 gdk_window_get_size(widget->window, &width, &height);
5621 attrmask |= (int)GDK_IC_PREEDIT_POSITION_REQ;
5622 attr->spot_location.x = TEXT_X(0);
5623 attr->spot_location.y = TEXT_Y(0);
5624 attr->preedit_area.x = gui.border_offset;
5625 attr->preedit_area.y = gui.border_offset;
5626 attr->preedit_area.width = width - 2*gui.border_offset;
5627 attr->preedit_area.height = height - 2*gui.border_offset;
5628 attr->preedit_fontset = gui.fontset;
5632 if ((xim_input_style & (int)GDK_IM_STATUS_MASK)
5633 == (int)GDK_IM_STATUS_AREA)
5635 if (gui.fontset == NOFONTSET
5636 || gui.fontset->type != GDK_FONT_FONTSET)
5638 EMSG(_(e_overthespot));
5640 else
5642 gdk_window_get_size(gui.mainwin->window, &width, &height);
5643 attrmask |= (int)GDK_IC_STATUS_AREA_REQ;
5644 attr->status_area.x = 0;
5645 attr->status_area.y = height - gui.char_height - 1;
5646 attr->status_area.width = width;
5647 attr->status_area.height = gui.char_height;
5648 attr->status_fontset = gui.fontset;
5651 else if ((xim_input_style & (int)GDK_IM_STATUS_MASK)
5652 == (int)GDK_IM_STATUS_CALLBACKS)
5654 /* FIXME */
5656 #endif
5658 xic = gdk_ic_new(attr, (GdkICAttributesType)attrmask);
5660 if (xic == NULL)
5661 EMSG(_(e_xim));
5662 else
5664 mask = (int)gdk_window_get_events(widget->window);
5665 mask |= (int)gdk_ic_get_events(xic);
5666 gdk_window_set_events(widget->window, (GdkEventMask)mask);
5667 if (xim_input_style & (int)GDK_IM_PREEDIT_CALLBACKS)
5668 preedit_callback_setup(xic);
5669 reset_state_setup(xic);
5674 void
5675 im_shutdown(void)
5677 #ifdef XIM_DEBUG
5678 xim_log("im_shutdown()\n");
5679 #endif
5681 if (xic != NULL)
5683 gdk_im_end();
5684 gdk_ic_destroy(xic);
5685 xic = NULL;
5687 xim_is_active = FALSE;
5688 xim_can_preediting = FALSE;
5689 preedit_start_col = MAXCOL;
5690 xim_has_preediting = FALSE;
5693 #endif /* FEAT_GUI_GTK */
5696 xim_get_status_area_height()
5698 #ifdef FEAT_GUI_GTK
5699 if (xim_input_style & (int)GDK_IM_STATUS_AREA)
5700 return gui.char_height;
5701 #else
5702 if (status_area_enabled)
5703 return gui.char_height;
5704 #endif
5705 return 0;
5709 * Get IM status. When IM is on, return TRUE. Else return FALSE.
5710 * FIXME: This doesn't work correctly: Having focus doesn't always mean XIM is
5711 * active, when not having focus XIM may still be active (e.g., when using a
5712 * tear-off menu item).
5715 im_get_status()
5717 # ifdef FEAT_GUI_GTK
5718 if (xim_input_style & (int)GDK_IM_PREEDIT_CALLBACKS)
5719 return xim_can_preediting;
5720 # endif
5721 return xim_has_focus;
5724 # endif /* !HAVE_GTK2 */
5726 # if defined(FEAT_GUI_GTK) || defined(PROTO)
5728 im_is_preediting()
5730 return xim_has_preediting;
5732 # endif
5733 #endif /* FEAT_XIM */
5735 #if defined(FEAT_MBYTE) || defined(PROTO)
5738 * Setup "vcp" for conversion from "from" to "to".
5739 * The names must have been made canonical with enc_canonize().
5740 * vcp->vc_type must have been initialized to CONV_NONE.
5741 * Note: cannot be used for conversion from/to ucs-2 and ucs-4 (will use utf-8
5742 * instead).
5743 * Afterwards invoke with "from" and "to" equal to NULL to cleanup.
5744 * Return FAIL when conversion is not supported, OK otherwise.
5747 convert_setup(vcp, from, to)
5748 vimconv_T *vcp;
5749 char_u *from;
5750 char_u *to;
5752 int from_prop;
5753 int to_prop;
5755 /* Reset to no conversion. */
5756 # ifdef USE_ICONV
5757 if (vcp->vc_type == CONV_ICONV && vcp->vc_fd != (iconv_t)-1)
5758 iconv_close(vcp->vc_fd);
5759 # endif
5760 vcp->vc_type = CONV_NONE;
5761 vcp->vc_factor = 1;
5762 vcp->vc_fail = FALSE;
5764 /* No conversion when one of the names is empty or they are equal. */
5765 if (from == NULL || *from == NUL || to == NULL || *to == NUL
5766 || STRCMP(from, to) == 0)
5767 return OK;
5769 from_prop = enc_canon_props(from);
5770 to_prop = enc_canon_props(to);
5771 if ((from_prop & ENC_LATIN1) && (to_prop & ENC_UNICODE))
5773 /* Internal latin1 -> utf-8 conversion. */
5774 vcp->vc_type = CONV_TO_UTF8;
5775 vcp->vc_factor = 2; /* up to twice as long */
5777 else if ((from_prop & ENC_LATIN9) && (to_prop & ENC_UNICODE))
5779 /* Internal latin9 -> utf-8 conversion. */
5780 vcp->vc_type = CONV_9_TO_UTF8;
5781 vcp->vc_factor = 3; /* up to three as long (euro sign) */
5783 else if ((from_prop & ENC_UNICODE) && (to_prop & ENC_LATIN1))
5785 /* Internal utf-8 -> latin1 conversion. */
5786 vcp->vc_type = CONV_TO_LATIN1;
5788 else if ((from_prop & ENC_UNICODE) && (to_prop & ENC_LATIN9))
5790 /* Internal utf-8 -> latin9 conversion. */
5791 vcp->vc_type = CONV_TO_LATIN9;
5793 #ifdef WIN3264
5794 /* Win32-specific codepage <-> codepage conversion without iconv. */
5795 else if (((from_prop & ENC_UNICODE) || encname2codepage(from) > 0)
5796 && ((to_prop & ENC_UNICODE) || encname2codepage(to) > 0))
5798 vcp->vc_type = CONV_CODEPAGE;
5799 vcp->vc_factor = 2; /* up to twice as long */
5800 vcp->vc_cpfrom = (from_prop & ENC_UNICODE) ? 0 : encname2codepage(from);
5801 vcp->vc_cpto = (to_prop & ENC_UNICODE) ? 0 : encname2codepage(to);
5803 #endif
5804 #ifdef MACOS_X
5805 else if ((from_prop & ENC_MACROMAN) && (to_prop & ENC_LATIN1))
5807 vcp->vc_type = CONV_MAC_LATIN1;
5809 else if ((from_prop & ENC_MACROMAN) && (to_prop & ENC_UNICODE))
5811 vcp->vc_type = CONV_MAC_UTF8;
5812 vcp->vc_factor = 2; /* up to twice as long */
5814 else if ((from_prop & ENC_LATIN1) && (to_prop & ENC_MACROMAN))
5816 vcp->vc_type = CONV_LATIN1_MAC;
5818 else if ((from_prop & ENC_UNICODE) && (to_prop & ENC_MACROMAN))
5820 vcp->vc_type = CONV_UTF8_MAC;
5822 #endif
5823 # ifdef USE_ICONV
5824 else
5826 /* Use iconv() for conversion. */
5827 vcp->vc_fd = (iconv_t)my_iconv_open(
5828 (to_prop & ENC_UNICODE) ? (char_u *)"utf-8" : to,
5829 (from_prop & ENC_UNICODE) ? (char_u *)"utf-8" : from);
5830 if (vcp->vc_fd != (iconv_t)-1)
5832 vcp->vc_type = CONV_ICONV;
5833 vcp->vc_factor = 4; /* could be longer too... */
5836 # endif
5837 if (vcp->vc_type == CONV_NONE)
5838 return FAIL;
5840 return OK;
5843 #if defined(FEAT_GUI) || defined(AMIGA) || defined(WIN3264) \
5844 || defined(MSDOS) || defined(PROTO)
5846 * Do conversion on typed input characters in-place.
5847 * The input and output are not NUL terminated!
5848 * Returns the length after conversion.
5851 convert_input(ptr, len, maxlen)
5852 char_u *ptr;
5853 int len;
5854 int maxlen;
5856 return convert_input_safe(ptr, len, maxlen, NULL, NULL);
5858 #endif
5861 * Like convert_input(), but when there is an incomplete byte sequence at the
5862 * end return that as an allocated string in "restp" and set "*restlenp" to
5863 * the length. If "restp" is NULL it is not used.
5866 convert_input_safe(ptr, len, maxlen, restp, restlenp)
5867 char_u *ptr;
5868 int len;
5869 int maxlen;
5870 char_u **restp;
5871 int *restlenp;
5873 char_u *d;
5874 int dlen = len;
5875 int unconvertlen = 0;
5877 d = string_convert_ext(&input_conv, ptr, &dlen,
5878 restp == NULL ? NULL : &unconvertlen);
5879 if (d != NULL)
5881 if (dlen <= maxlen)
5883 if (unconvertlen > 0)
5885 /* Move the unconverted characters to allocated memory. */
5886 *restp = alloc(unconvertlen);
5887 if (*restp != NULL)
5888 mch_memmove(*restp, ptr + len - unconvertlen, unconvertlen);
5889 *restlenp = unconvertlen;
5891 mch_memmove(ptr, d, dlen);
5893 else
5894 /* result is too long, keep the unconverted text (the caller must
5895 * have done something wrong!) */
5896 dlen = len;
5897 vim_free(d);
5899 return dlen;
5903 * Convert text "ptr[*lenp]" according to "vcp".
5904 * Returns the result in allocated memory and sets "*lenp".
5905 * When "lenp" is NULL, use NUL terminated strings.
5906 * Illegal chars are often changed to "?", unless vcp->vc_fail is set.
5907 * When something goes wrong, NULL is returned and "*lenp" is unchanged.
5909 char_u *
5910 string_convert(vcp, ptr, lenp)
5911 vimconv_T *vcp;
5912 char_u *ptr;
5913 int *lenp;
5915 return string_convert_ext(vcp, ptr, lenp, NULL);
5919 * Like string_convert(), but when "unconvlenp" is not NULL and there are is
5920 * an incomplete sequence at the end it is not converted and "*unconvlenp" is
5921 * set to the number of remaining bytes.
5923 char_u *
5924 string_convert_ext(vcp, ptr, lenp, unconvlenp)
5925 vimconv_T *vcp;
5926 char_u *ptr;
5927 int *lenp;
5928 int *unconvlenp;
5930 char_u *retval = NULL;
5931 char_u *d;
5932 int len;
5933 int i;
5934 int l;
5935 int c;
5937 if (lenp == NULL)
5938 len = (int)STRLEN(ptr);
5939 else
5940 len = *lenp;
5941 if (len == 0)
5942 return vim_strsave((char_u *)"");
5944 switch (vcp->vc_type)
5946 case CONV_TO_UTF8: /* latin1 to utf-8 conversion */
5947 retval = alloc(len * 2 + 1);
5948 if (retval == NULL)
5949 break;
5950 d = retval;
5951 for (i = 0; i < len; ++i)
5953 c = ptr[i];
5954 if (c < 0x80)
5955 *d++ = c;
5956 else
5958 *d++ = 0xc0 + ((unsigned)c >> 6);
5959 *d++ = 0x80 + (c & 0x3f);
5962 *d = NUL;
5963 if (lenp != NULL)
5964 *lenp = (int)(d - retval);
5965 break;
5967 case CONV_9_TO_UTF8: /* latin9 to utf-8 conversion */
5968 retval = alloc(len * 3 + 1);
5969 if (retval == NULL)
5970 break;
5971 d = retval;
5972 for (i = 0; i < len; ++i)
5974 c = ptr[i];
5975 switch (c)
5977 case 0xa4: c = 0x20ac; break; /* euro */
5978 case 0xa6: c = 0x0160; break; /* S hat */
5979 case 0xa8: c = 0x0161; break; /* S -hat */
5980 case 0xb4: c = 0x017d; break; /* Z hat */
5981 case 0xb8: c = 0x017e; break; /* Z -hat */
5982 case 0xbc: c = 0x0152; break; /* OE */
5983 case 0xbd: c = 0x0153; break; /* oe */
5984 case 0xbe: c = 0x0178; break; /* Y */
5986 d += utf_char2bytes(c, d);
5988 *d = NUL;
5989 if (lenp != NULL)
5990 *lenp = (int)(d - retval);
5991 break;
5993 case CONV_TO_LATIN1: /* utf-8 to latin1 conversion */
5994 case CONV_TO_LATIN9: /* utf-8 to latin9 conversion */
5995 retval = alloc(len + 1);
5996 if (retval == NULL)
5997 break;
5998 d = retval;
5999 for (i = 0; i < len; ++i)
6001 l = utf_ptr2len(ptr + i);
6002 if (l == 0)
6003 *d++ = NUL;
6004 else if (l == 1)
6006 if (unconvlenp != NULL && utf8len_tab[ptr[i]] > len - i)
6008 /* Incomplete sequence at the end. */
6009 *unconvlenp = len - i;
6010 break;
6012 *d++ = ptr[i];
6014 else
6016 c = utf_ptr2char(ptr + i);
6017 if (vcp->vc_type == CONV_TO_LATIN9)
6018 switch (c)
6020 case 0x20ac: c = 0xa4; break; /* euro */
6021 case 0x0160: c = 0xa6; break; /* S hat */
6022 case 0x0161: c = 0xa8; break; /* S -hat */
6023 case 0x017d: c = 0xb4; break; /* Z hat */
6024 case 0x017e: c = 0xb8; break; /* Z -hat */
6025 case 0x0152: c = 0xbc; break; /* OE */
6026 case 0x0153: c = 0xbd; break; /* oe */
6027 case 0x0178: c = 0xbe; break; /* Y */
6028 case 0xa4:
6029 case 0xa6:
6030 case 0xa8:
6031 case 0xb4:
6032 case 0xb8:
6033 case 0xbc:
6034 case 0xbd:
6035 case 0xbe: c = 0x100; break; /* not in latin9 */
6037 if (!utf_iscomposing(c)) /* skip composing chars */
6039 if (c < 0x100)
6040 *d++ = c;
6041 else if (vcp->vc_fail)
6043 vim_free(retval);
6044 return NULL;
6046 else
6048 *d++ = 0xbf;
6049 if (utf_char2cells(c) > 1)
6050 *d++ = '?';
6053 i += l - 1;
6056 *d = NUL;
6057 if (lenp != NULL)
6058 *lenp = (int)(d - retval);
6059 break;
6061 # ifdef MACOS_CONVERT
6062 case CONV_MAC_LATIN1:
6063 retval = mac_string_convert(ptr, len, lenp, vcp->vc_fail,
6064 'm', 'l', unconvlenp);
6065 break;
6067 case CONV_LATIN1_MAC:
6068 retval = mac_string_convert(ptr, len, lenp, vcp->vc_fail,
6069 'l', 'm', unconvlenp);
6070 break;
6072 case CONV_MAC_UTF8:
6073 retval = mac_string_convert(ptr, len, lenp, vcp->vc_fail,
6074 'm', 'u', unconvlenp);
6075 break;
6077 case CONV_UTF8_MAC:
6078 retval = mac_string_convert(ptr, len, lenp, vcp->vc_fail,
6079 'u', 'm', unconvlenp);
6080 break;
6081 # endif
6083 # ifdef USE_ICONV
6084 case CONV_ICONV: /* conversion with output_conv.vc_fd */
6085 retval = iconv_string(vcp, ptr, len, unconvlenp);
6086 if (retval != NULL && lenp != NULL)
6087 *lenp = (int)STRLEN(retval);
6088 break;
6089 # endif
6090 # ifdef WIN3264
6091 case CONV_CODEPAGE: /* codepage -> codepage */
6093 int retlen;
6094 int tmp_len;
6095 short_u *tmp;
6097 /* 1. codepage/UTF-8 -> ucs-2. */
6098 if (vcp->vc_cpfrom == 0)
6099 tmp_len = utf8_to_ucs2(ptr, len, NULL, NULL);
6100 else
6101 tmp_len = MultiByteToWideChar(vcp->vc_cpfrom, 0,
6102 ptr, len, 0, 0);
6103 tmp = (short_u *)alloc(sizeof(short_u) * tmp_len);
6104 if (tmp == NULL)
6105 break;
6106 if (vcp->vc_cpfrom == 0)
6107 utf8_to_ucs2(ptr, len, tmp, unconvlenp);
6108 else
6109 MultiByteToWideChar(vcp->vc_cpfrom, 0, ptr, len, tmp, tmp_len);
6111 /* 2. ucs-2 -> codepage/UTF-8. */
6112 if (vcp->vc_cpto == 0)
6113 retlen = ucs2_to_utf8(tmp, tmp_len, NULL);
6114 else
6115 retlen = WideCharToMultiByte(vcp->vc_cpto, 0,
6116 tmp, tmp_len, 0, 0, 0, 0);
6117 retval = alloc(retlen + 1);
6118 if (retval != NULL)
6120 if (vcp->vc_cpto == 0)
6121 ucs2_to_utf8(tmp, tmp_len, retval);
6122 else
6123 WideCharToMultiByte(vcp->vc_cpto, 0,
6124 tmp, tmp_len, retval, retlen, 0, 0);
6125 retval[retlen] = NUL;
6126 if (lenp != NULL)
6127 *lenp = retlen;
6129 vim_free(tmp);
6130 break;
6132 # endif
6135 return retval;
6137 #endif