2 * Copyright (C) 1999-2002 Free Software Foundation, Inc.
3 * This file is part of the GNU LIBICONV Library.
5 * The GNU LIBICONV Library is free software; you can redistribute it
6 * and/or modify it under the terms of the GNU Library General Public
7 * License as published by the Free Software Foundation; either version 2
8 * of the License, or (at your option) any later version.
10 * The GNU LIBICONV Library is distributed in the hope that it will be
11 * useful, but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * Library General Public License for more details.
15 * You should have received a copy of the GNU Library General Public
16 * License along with the GNU LIBICONV Library; see the file COPYING.LIB.
17 * If not, write to the Free Software Foundation, Inc., 59 Temple Place -
18 * Suite 330, Boston, MA 02111-1307, USA.
26 * Microsoft CP932 is a slightly extended version of SHIFT_JIS.
27 * The differences between the EASTASIA/JIS/SHIFTJIS.TXT and the
28 * VENDORS/MICSFT/WINDOWS/CP932.TXT tables found on ftp.unicode.org are
31 * 1. CP932 uses ASCII, not JISX0201 Roman.
33 * 2. Some characters in the JISX0208 range are defined differently:
35 * code SHIFTJIS.TXT CP932.TXT
36 * 0x815F 0x005C # REVERSE SOLIDUS 0xFF3C # FULLWIDTH REVERSE SOLIDUS
37 * 0x8160 0x301C # WAVE DASH 0xFF5E # FULLWIDTH TILDE
38 * 0x8161 0x2016 # DOUBLE VERTICAL LINE 0x2225 # PARALLEL TO
39 * 0x817C 0x2212 # MINUS SIGN 0xFF0D # FULLWIDTH HYPHEN-MINUS
40 * 0x8191 0x00A2 # CENT SIGN 0xFFE0 # FULLWIDTH CENT SIGN
41 * 0x8192 0x00A3 # POUND SIGN 0xFFE1 # FULLWIDTH POUND SIGN
42 * 0x81CA 0x00AC # NOT SIGN 0xFFE2 # FULLWIDTH NOT SIGN
44 * We don't implement these changes. SHIFTJIS.TXT makes more sense.
46 * 3. A few new rows. See cp932ext.h.
52 Conversion between SJIS codes (s1,s2) and JISX0208 codes (c1,c2):
53 Example. (s1,s2) = 0x8140, (c1,c2) = 0x2121.
54 0x81 <= s1 <= 0x9F || 0xE0 <= s1 <= 0xEA,
55 0x40 <= s2 <= 0x7E || 0x80 <= s2 <= 0xFC,
56 0x21 <= c1 <= 0x74, 0x21 <= c2 <= 0x7E.
58 94*2*(s1 < 0xE0 ? s1-0x81 : s1-0xC1) + (s2 < 0x80 ? s2-0x40 : s2-0x41)
59 = 94*(c1-0x21)+(c2-0x21)
60 Conversion (s1,s2) -> (c1,c2):
61 t1 := (s1 < 0xE0 ? s1-0x81 : s1-0xC1)
62 t2 := (s2 < 0x80 ? s2-0x40 : s2-0x41)
63 c1 := 2*t1 + (t2 < 0x5E ? 0 : 1) + 0x21
64 c2 := (t2 < 0x5E ? t2 : t2-0x5E) + 0x21
65 Conversion (c1,c2) -> (s1,s2):
66 t1 := (c1 - 0x21) >> 1
67 t2 := ((c1 - 0x21) & 1) * 0x5E + (c2 - 0x21)
68 s1 := (t1 < 0x1F ? t1+0x81 : t1+0xC1)
69 s2 := (t2 < 0x3F ? t2+0x40 : t2+0x41)
73 cp932_mbtowc (conv_t conv, ucs4_t *pwc, const unsigned char *s, int n)
77 return ascii_mbtowc(conv,pwc,s,n);
78 else if (c >= 0xa1 && c <= 0xdf)
79 return jisx0201_mbtowc(conv,pwc,s,n);
83 if ((s1 >= 0x81 && s1 <= 0x9f && s1 != 0x87) || (s1 >= 0xe0 && s1 <= 0xea)) {
87 if ((s2 >= 0x40 && s2 <= 0x7e) || (s2 >= 0x80 && s2 <= 0xfc)) {
88 unsigned char t1 = (s1 < 0xe0 ? s1-0x81 : s1-0xc1);
89 unsigned char t2 = (s2 < 0x80 ? s2-0x40 : s2-0x41);
91 buf[0] = 2*t1 + (t2 < 0x5e ? 0 : 1) + 0x21;
92 buf[1] = (t2 < 0x5e ? t2 : t2-0x5e) + 0x21;
93 return jisx0208_mbtowc(conv,pwc,buf,2);
95 } else if ((s1 == 0x87) || (s1 >= 0xed && s1 <= 0xee) || (s1 >= 0xfa)) {
98 return cp932ext_mbtowc(conv,pwc,s,2);
99 } else if (s1 >= 0xf0 && s1 <= 0xf9) {
100 /* User-defined range. See
101 * Ken Lunde's "CJKV Information Processing", table 4-66, p. 206. */
103 return RET_TOOFEW(0);
105 if ((s2 >= 0x40 && s2 <= 0x7e) || (s2 >= 0x80 && s2 <= 0xfc)) {
106 *pwc = 0xe000 + 188*(s1 - 0xf0) + (s2 < 0x80 ? s2-0x40 : s2-0x41);
115 cp932_wctomb (conv_t conv, unsigned char *r, ucs4_t wc, int n)
117 unsigned char buf[2];
121 ret = ascii_wctomb(conv,buf,wc,1);
122 if (ret != RET_ILUNI) {
124 if (ret != 1) abort();
132 /* Try JIS X 0201-1976 Katakana. */
133 ret = jisx0201_wctomb(conv,buf,wc,1);
134 if (ret != RET_ILUNI) {
136 if (ret != 1) abort();
138 if (c >= 0xa1 && c <= 0xdf) {
144 /* Try JIS X 0208-1990. */
145 ret = jisx0208_wctomb(conv,buf,wc,2);
146 if (ret != RET_ILUNI) {
147 unsigned char c1, c2;
148 if (ret != 2) abort();
153 if ((c1 >= 0x21 && c1 <= 0x74) && (c2 >= 0x21 && c2 <= 0x7e)) {
154 unsigned char t1 = (c1 - 0x21) >> 1;
155 unsigned char t2 = (((c1 - 0x21) & 1) ? 0x5e : 0) + (c2 - 0x21);
156 r[0] = (t1 < 0x1f ? t1+0x81 : t1+0xc1);
157 r[1] = (t2 < 0x3f ? t2+0x40 : t2+0x41);
162 /* Try CP932 extensions. */
163 ret = cp932ext_wctomb(conv,buf,wc,2);
164 if (ret != RET_ILUNI) {
165 if (ret != 2) abort();
173 /* User-defined range. See
174 * Ken Lunde's "CJKV Information Processing", table 4-66, p. 206. */
175 if (wc >= 0xe000 && wc < 0xe758) {
176 unsigned char c1, c2;
179 c1 = (unsigned int) (wc - 0xe000) / 188;
180 c2 = (unsigned int) (wc - 0xe000) % 188;
182 r[1] = (c2 < 0x3f ? c2+0x40 : c2+0x41);