wcwidth.c revision d522f475
1/* $XTermId: wcwidth.c,v 1.21 2007/06/13 00:14:29 tom Exp $ */ 2 3/* $XFree86: xc/programs/xterm/wcwidth.c,v 1.9 2006/06/19 00:36:52 dickey Exp $ */ 4 5/* 6 * This is an implementation of wcwidth() and wcswidth() (defined in 7 * IEEE Std 1002.1-2001) for Unicode. 8 * 9 * http://www.opengroup.org/onlinepubs/007904975/functions/wcwidth.html 10 * http://www.opengroup.org/onlinepubs/007904975/functions/wcswidth.html 11 * 12 * In fixed-width output devices, Latin characters all occupy a single 13 * "cell" position of equal width, whereas ideographic CJK characters 14 * occupy two such cells. Interoperability between terminal-line 15 * applications and (teletype-style) character terminals using the 16 * UTF-8 encoding requires agreement on which character should advance 17 * the cursor by how many cell positions. No established formal 18 * standards exist at present on which Unicode character shall occupy 19 * how many cell positions on character terminals. These routines are 20 * a first attempt of defining such behavior based on simple rules 21 * applied to data provided by the Unicode Consortium. 22 * 23 * For some graphical characters, the Unicode standard explicitly 24 * defines a character-cell width via the definition of the East Asian 25 * FullWidth (F), Wide (W), Half-width (H), and Narrow (Na) classes. 26 * In all these cases, there is no ambiguity about which width a 27 * terminal shall use. For characters in the East Asian Ambiguous (A) 28 * class, the width choice depends purely on a preference of backward 29 * compatibility with either historic CJK or Western practice. 30 * Choosing single-width for these characters is easy to justify as 31 * the appropriate long-term solution, as the CJK practice of 32 * displaying these characters as double-width comes from historic 33 * implementation simplicity (8-bit encoded characters were displayed 34 * single-width and 16-bit ones double-width, even for Greek, 35 * Cyrillic, etc.) and not any typographic considerations. 36 * 37 * Much less clear is the choice of width for the Not East Asian 38 * (Neutral) class. Existing practice does not dictate a width for any 39 * of these characters. It would nevertheless make sense 40 * typographically to allocate two character cells to characters such 41 * as for instance EM SPACE or VOLUME INTEGRAL, which cannot be 42 * represented adequately with a single-width glyph. The following 43 * routines at present merely assign a single-cell width to all 44 * neutral characters, in the interest of simplicity. This is not 45 * entirely satisfactory and should be reconsidered before 46 * establishing a formal standard in this area. At the moment, the 47 * decision which Not East Asian (Neutral) characters should be 48 * represented by double-width glyphs cannot yet be answered by 49 * applying a simple rule from the Unicode database content. Setting 50 * up a proper standard for the behavior of UTF-8 character terminals 51 * will require a careful analysis not only of each Unicode character, 52 * but also of each presentation form, something the author of these 53 * routines has avoided to do so far. 54 * 55 * http://www.unicode.org/unicode/reports/tr11/ 56 * 57 * Markus Kuhn -- 2007-05-25 (Unicode 5.0) 58 * 59 * Permission to use, copy, modify, and distribute this software 60 * for any purpose and without fee is hereby granted. The author 61 * disclaims all warranties with regard to this software. 62 * 63 * Latest version: http://www.cl.cam.ac.uk/~mgk25/ucs/wcwidth.c 64 */ 65 66#include <wcwidth.h> 67 68struct interval { 69 unsigned long first; 70 unsigned long last; 71}; 72 73/* auxiliary function for binary search in interval table */ 74static int bisearch(unsigned long ucs, const struct interval *table, int max) { 75 int min = 0; 76 int mid; 77 78 if (ucs >= table[0].first && ucs <= table[max].last) { 79 while (max >= min) { 80 mid = (min + max) / 2; 81 if (ucs > table[mid].last) 82 min = mid + 1; 83 else if (ucs < table[mid].first) 84 max = mid - 1; 85 else 86 return 1; 87 } 88 } 89 90 return 0; 91} 92 93 94/* The following two functions define the column width of an ISO 10646 95 * character as follows: 96 * 97 * - The null character (U+0000) has a column width of 0. 98 * 99 * - Other C0/C1 control characters and DEL will lead to a return 100 * value of -1. 101 * 102 * - Non-spacing and enclosing combining characters (general 103 * category code Mn or Me in the Unicode database) have a 104 * column width of 0. 105 * 106 * - SOFT HYPHEN (U+00AD) has a column width of 1. 107 * 108 * - Other format characters (general category code Cf in the Unicode 109 * database) and ZERO WIDTH SPACE (U+200B) have a column width of 0. 110 * 111 * - Hangul Jamo medial vowels and final consonants (U+1160-U+11FF) 112 * have a column width of 0. 113 * 114 * - Spacing characters in the East Asian Wide (W) or East Asian 115 * Full-width (F) category as defined in Unicode Technical 116 * Report #11 have a column width of 2. 117 * 118 * - All remaining characters (including all printable 119 * ISO 8859-1 and WGL4 characters, Unicode control characters, 120 * etc.) have a column width of 1. 121 * 122 * This implementation assumes that wchar_t characters are encoded 123 * in ISO 10646. 124 */ 125 126int mk_wcwidth(wchar_t ucs) 127{ 128 unsigned long cmp = (unsigned long) ucs; 129 130 /* sorted list of non-overlapping intervals of non-spacing characters */ 131 /* generated by 132 * uniset +cat=Me +cat=Mn +cat=Cf -00AD +1160-11FF +200B c 133 */ 134 static const struct interval combining[] = { 135 { 0x0300, 0x036F }, { 0x0483, 0x0486 }, { 0x0488, 0x0489 }, 136 { 0x0591, 0x05BD }, { 0x05BF, 0x05BF }, { 0x05C1, 0x05C2 }, 137 { 0x05C4, 0x05C5 }, { 0x05C7, 0x05C7 }, { 0x0600, 0x0603 }, 138 { 0x0610, 0x0615 }, { 0x064B, 0x065E }, { 0x0670, 0x0670 }, 139 { 0x06D6, 0x06E4 }, { 0x06E7, 0x06E8 }, { 0x06EA, 0x06ED }, 140 { 0x070F, 0x070F }, { 0x0711, 0x0711 }, { 0x0730, 0x074A }, 141 { 0x07A6, 0x07B0 }, { 0x07EB, 0x07F3 }, { 0x0901, 0x0902 }, 142 { 0x093C, 0x093C }, { 0x0941, 0x0948 }, { 0x094D, 0x094D }, 143 { 0x0951, 0x0954 }, { 0x0962, 0x0963 }, { 0x0981, 0x0981 }, 144 { 0x09BC, 0x09BC }, { 0x09C1, 0x09C4 }, { 0x09CD, 0x09CD }, 145 { 0x09E2, 0x09E3 }, { 0x0A01, 0x0A02 }, { 0x0A3C, 0x0A3C }, 146 { 0x0A41, 0x0A42 }, { 0x0A47, 0x0A48 }, { 0x0A4B, 0x0A4D }, 147 { 0x0A70, 0x0A71 }, { 0x0A81, 0x0A82 }, { 0x0ABC, 0x0ABC }, 148 { 0x0AC1, 0x0AC5 }, { 0x0AC7, 0x0AC8 }, { 0x0ACD, 0x0ACD }, 149 { 0x0AE2, 0x0AE3 }, { 0x0B01, 0x0B01 }, { 0x0B3C, 0x0B3C }, 150 { 0x0B3F, 0x0B3F }, { 0x0B41, 0x0B43 }, { 0x0B4D, 0x0B4D }, 151 { 0x0B56, 0x0B56 }, { 0x0B82, 0x0B82 }, { 0x0BC0, 0x0BC0 }, 152 { 0x0BCD, 0x0BCD }, { 0x0C3E, 0x0C40 }, { 0x0C46, 0x0C48 }, 153 { 0x0C4A, 0x0C4D }, { 0x0C55, 0x0C56 }, { 0x0CBC, 0x0CBC }, 154 { 0x0CBF, 0x0CBF }, { 0x0CC6, 0x0CC6 }, { 0x0CCC, 0x0CCD }, 155 { 0x0CE2, 0x0CE3 }, { 0x0D41, 0x0D43 }, { 0x0D4D, 0x0D4D }, 156 { 0x0DCA, 0x0DCA }, { 0x0DD2, 0x0DD4 }, { 0x0DD6, 0x0DD6 }, 157 { 0x0E31, 0x0E31 }, { 0x0E34, 0x0E3A }, { 0x0E47, 0x0E4E }, 158 { 0x0EB1, 0x0EB1 }, { 0x0EB4, 0x0EB9 }, { 0x0EBB, 0x0EBC }, 159 { 0x0EC8, 0x0ECD }, { 0x0F18, 0x0F19 }, { 0x0F35, 0x0F35 }, 160 { 0x0F37, 0x0F37 }, { 0x0F39, 0x0F39 }, { 0x0F71, 0x0F7E }, 161 { 0x0F80, 0x0F84 }, { 0x0F86, 0x0F87 }, { 0x0F90, 0x0F97 }, 162 { 0x0F99, 0x0FBC }, { 0x0FC6, 0x0FC6 }, { 0x102D, 0x1030 }, 163 { 0x1032, 0x1032 }, { 0x1036, 0x1037 }, { 0x1039, 0x1039 }, 164 { 0x1058, 0x1059 }, { 0x1160, 0x11FF }, { 0x135F, 0x135F }, 165 { 0x1712, 0x1714 }, { 0x1732, 0x1734 }, { 0x1752, 0x1753 }, 166 { 0x1772, 0x1773 }, { 0x17B4, 0x17B5 }, { 0x17B7, 0x17BD }, 167 { 0x17C6, 0x17C6 }, { 0x17C9, 0x17D3 }, { 0x17DD, 0x17DD }, 168 { 0x180B, 0x180D }, { 0x18A9, 0x18A9 }, { 0x1920, 0x1922 }, 169 { 0x1927, 0x1928 }, { 0x1932, 0x1932 }, { 0x1939, 0x193B }, 170 { 0x1A17, 0x1A18 }, { 0x1B00, 0x1B03 }, { 0x1B34, 0x1B34 }, 171 { 0x1B36, 0x1B3A }, { 0x1B3C, 0x1B3C }, { 0x1B42, 0x1B42 }, 172 { 0x1B6B, 0x1B73 }, { 0x1DC0, 0x1DCA }, { 0x1DFE, 0x1DFF }, 173 { 0x200B, 0x200F }, { 0x202A, 0x202E }, { 0x2060, 0x2063 }, 174 { 0x206A, 0x206F }, { 0x20D0, 0x20EF }, { 0x302A, 0x302F }, 175 { 0x3099, 0x309A }, { 0xA806, 0xA806 }, { 0xA80B, 0xA80B }, 176 { 0xA825, 0xA826 }, { 0xFB1E, 0xFB1E }, { 0xFE00, 0xFE0F }, 177 { 0xFE20, 0xFE23 }, { 0xFEFF, 0xFEFF }, { 0xFFF9, 0xFFFB }, 178 { 0x10A01, 0x10A03 }, { 0x10A05, 0x10A06 }, { 0x10A0C, 0x10A0F }, 179 { 0x10A38, 0x10A3A }, { 0x10A3F, 0x10A3F }, { 0x1D167, 0x1D169 }, 180 { 0x1D173, 0x1D182 }, { 0x1D185, 0x1D18B }, { 0x1D1AA, 0x1D1AD }, 181 { 0x1D242, 0x1D244 }, { 0xE0001, 0xE0001 }, { 0xE0020, 0xE007F }, 182 { 0xE0100, 0xE01EF } 183 }; 184 185 /* test for 8-bit control characters */ 186 if (cmp == 0) 187 return 0; 188 if (cmp < 32 || (cmp >= 0x7f && cmp < 0xa0)) 189 return -1; 190 191 /* binary search in table of non-spacing characters */ 192 if (bisearch(cmp, combining, 193 sizeof(combining) / sizeof(struct interval) - 1)) 194 return 0; 195 196 /* if we arrive here, cmp is not a combining or C0/C1 control character */ 197 198 return 1 + 199 (cmp >= 0x1100 && 200 (cmp <= 0x115f || /* Hangul Jamo init. consonants */ 201 cmp == 0x2329 || cmp == 0x232a || 202 (cmp >= 0x2e80 && cmp <= 0xa4cf && 203 cmp != 0x303f) || /* CJK ... Yi */ 204 (cmp >= 0xac00 && cmp <= 0xd7a3) || /* Hangul Syllables */ 205 (cmp >= 0xf900 && cmp <= 0xfaff) || /* CJK Compatibility Ideographs */ 206 (cmp >= 0xfe10 && cmp <= 0xfe19) || /* Vertical forms */ 207 (cmp >= 0xfe30 && cmp <= 0xfe6f) || /* CJK Compatibility Forms */ 208 (cmp >= 0xff00 && cmp <= 0xff60) || /* Fullwidth Forms */ 209 (cmp >= 0xffe0 && cmp <= 0xffe6) || 210 (cmp >= 0x20000 && cmp <= 0x2fffd) || 211 (cmp >= 0x30000 && cmp <= 0x3fffd))); 212} 213 214 215int mk_wcswidth(const wchar_t *pwcs, size_t n) 216{ 217 int w, width = 0; 218 219 for (;*pwcs && n-- > 0; pwcs++) 220 if ((w = mk_wcwidth(*pwcs)) < 0) 221 return -1; 222 else 223 width += w; 224 225 return width; 226} 227 228 229/* 230 * The following functions are the same as mk_wcwidth() and 231 * mk_wcwidth_cjk(), except that spacing characters in the East Asian 232 * Ambiguous (A) category as defined in Unicode Technical Report #11 233 * have a column width of 2. This variant might be useful for users of 234 * CJK legacy encodings who want to migrate to UCS without changing 235 * the traditional terminal character-width behaviour. It is not 236 * otherwise recommended for general use. 237 */ 238int mk_wcwidth_cjk(wchar_t ucs) 239{ 240 /* sorted list of non-overlapping intervals of East Asian Ambiguous 241 * characters, generated by 242 * 243 * uniset +WIDTH-A -cat=Me -cat=Mn -cat=Cf \ 244 * +E000..F8FF \ 245 * +F0000..FFFFD \ 246 * +100000..10FFFD c 247 * 248 * "WIDTH-A" is a file extracted from EastAsianWidth.txt by selecting 249 * only those with width "A", and omitting: 250 * 251 * 0xAD 252 * all lines with "COMBINING" 253 * 254 * (uniset does not recognize the range expressions in WIDTH-A). 255 */ 256 static const struct interval ambiguous[] = { 257 { 0x00A1, 0x00A1 }, { 0x00A4, 0x00A4 }, { 0x00A7, 0x00A8 }, 258 { 0x00AA, 0x00AA }, { 0x00AE, 0x00AE }, { 0x00B0, 0x00B4 }, 259 { 0x00B6, 0x00BA }, { 0x00BC, 0x00BF }, { 0x00C6, 0x00C6 }, 260 { 0x00D0, 0x00D0 }, { 0x00D7, 0x00D8 }, { 0x00DE, 0x00E1 }, 261 { 0x00E6, 0x00E6 }, { 0x00E8, 0x00EA }, { 0x00EC, 0x00ED }, 262 { 0x00F0, 0x00F0 }, { 0x00F2, 0x00F3 }, { 0x00F7, 0x00FA }, 263 { 0x00FC, 0x00FC }, { 0x00FE, 0x00FE }, { 0x0101, 0x0101 }, 264 { 0x0111, 0x0111 }, { 0x0113, 0x0113 }, { 0x011B, 0x011B }, 265 { 0x0126, 0x0127 }, { 0x012B, 0x012B }, { 0x0131, 0x0133 }, 266 { 0x0138, 0x0138 }, { 0x013F, 0x0142 }, { 0x0144, 0x0144 }, 267 { 0x0148, 0x014B }, { 0x014D, 0x014D }, { 0x0152, 0x0153 }, 268 { 0x0166, 0x0167 }, { 0x016B, 0x016B }, { 0x01CE, 0x01CE }, 269 { 0x01D0, 0x01D0 }, { 0x01D2, 0x01D2 }, { 0x01D4, 0x01D4 }, 270 { 0x01D6, 0x01D6 }, { 0x01D8, 0x01D8 }, { 0x01DA, 0x01DA }, 271 { 0x01DC, 0x01DC }, { 0x0251, 0x0251 }, { 0x0261, 0x0261 }, 272 { 0x02C4, 0x02C4 }, { 0x02C7, 0x02C7 }, { 0x02C9, 0x02CB }, 273 { 0x02CD, 0x02CD }, { 0x02D0, 0x02D0 }, { 0x02D8, 0x02DB }, 274 { 0x02DD, 0x02DD }, { 0x02DF, 0x02DF }, { 0x0391, 0x03A1 }, 275 { 0x03A3, 0x03A9 }, { 0x03B1, 0x03C1 }, { 0x03C3, 0x03C9 }, 276 { 0x0401, 0x0401 }, { 0x0410, 0x044F }, { 0x0451, 0x0451 }, 277 { 0x2010, 0x2010 }, { 0x2013, 0x2016 }, { 0x2018, 0x2019 }, 278 { 0x201C, 0x201D }, { 0x2020, 0x2022 }, { 0x2024, 0x2027 }, 279 { 0x2030, 0x2030 }, { 0x2032, 0x2033 }, { 0x2035, 0x2035 }, 280 { 0x203B, 0x203B }, { 0x203E, 0x203E }, { 0x2074, 0x2074 }, 281 { 0x207F, 0x207F }, { 0x2081, 0x2084 }, { 0x20AC, 0x20AC }, 282 { 0x2103, 0x2103 }, { 0x2105, 0x2105 }, { 0x2109, 0x2109 }, 283 { 0x2113, 0x2113 }, { 0x2116, 0x2116 }, { 0x2121, 0x2122 }, 284 { 0x2126, 0x2126 }, { 0x212B, 0x212B }, { 0x2153, 0x2154 }, 285 { 0x215B, 0x215E }, { 0x2160, 0x216B }, { 0x2170, 0x2179 }, 286 { 0x2190, 0x2199 }, { 0x21B8, 0x21B9 }, { 0x21D2, 0x21D2 }, 287 { 0x21D4, 0x21D4 }, { 0x21E7, 0x21E7 }, { 0x2200, 0x2200 }, 288 { 0x2202, 0x2203 }, { 0x2207, 0x2208 }, { 0x220B, 0x220B }, 289 { 0x220F, 0x220F }, { 0x2211, 0x2211 }, { 0x2215, 0x2215 }, 290 { 0x221A, 0x221A }, { 0x221D, 0x2220 }, { 0x2223, 0x2223 }, 291 { 0x2225, 0x2225 }, { 0x2227, 0x222C }, { 0x222E, 0x222E }, 292 { 0x2234, 0x2237 }, { 0x223C, 0x223D }, { 0x2248, 0x2248 }, 293 { 0x224C, 0x224C }, { 0x2252, 0x2252 }, { 0x2260, 0x2261 }, 294 { 0x2264, 0x2267 }, { 0x226A, 0x226B }, { 0x226E, 0x226F }, 295 { 0x2282, 0x2283 }, { 0x2286, 0x2287 }, { 0x2295, 0x2295 }, 296 { 0x2299, 0x2299 }, { 0x22A5, 0x22A5 }, { 0x22BF, 0x22BF }, 297 { 0x2312, 0x2312 }, { 0x2460, 0x24E9 }, { 0x24EB, 0x254B }, 298 { 0x2550, 0x2573 }, { 0x2580, 0x258F }, { 0x2592, 0x2595 }, 299 { 0x25A0, 0x25A1 }, { 0x25A3, 0x25A9 }, { 0x25B2, 0x25B3 }, 300 { 0x25B6, 0x25B7 }, { 0x25BC, 0x25BD }, { 0x25C0, 0x25C1 }, 301 { 0x25C6, 0x25C8 }, { 0x25CB, 0x25CB }, { 0x25CE, 0x25D1 }, 302 { 0x25E2, 0x25E5 }, { 0x25EF, 0x25EF }, { 0x2605, 0x2606 }, 303 { 0x2609, 0x2609 }, { 0x260E, 0x260F }, { 0x2614, 0x2615 }, 304 { 0x261C, 0x261C }, { 0x261E, 0x261E }, { 0x2640, 0x2640 }, 305 { 0x2642, 0x2642 }, { 0x2660, 0x2661 }, { 0x2663, 0x2665 }, 306 { 0x2667, 0x266A }, { 0x266C, 0x266D }, { 0x266F, 0x266F }, 307 { 0x273D, 0x273D }, { 0x2776, 0x277F }, { 0xE000, 0xF8FF }, 308 { 0xFFFD, 0xFFFD }, { 0xF0000, 0xFFFFD }, { 0x100000, 0x10FFFD } 309 }; 310 311 /* binary search in table of non-spacing characters */ 312 if (bisearch((unsigned long) ucs, ambiguous, 313 sizeof(ambiguous) / sizeof(struct interval) - 1)) 314 return 2; 315 316 return mk_wcwidth(ucs); 317} 318 319 320int mk_wcswidth_cjk(const wchar_t *pwcs, size_t n) 321{ 322 int w, width = 0; 323 324 for (;*pwcs && n-- > 0; pwcs++) 325 if ((w = mk_wcwidth_cjk(*pwcs)) < 0) 326 return -1; 327 else 328 width += w; 329 330 return width; 331} 332