70
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1 /* Functions to handle multilingual characters.
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2 Copyright (C) 1992, 1995 Free Software Foundation, Inc.
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3 Copyright (C) 1995 Sun Microsystems, Inc.
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4
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5 This file is part of XEmacs.
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6
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7 XEmacs is free software; you can redistribute it and/or modify it
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8 under the terms of the GNU General Public License as published by the
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9 Free Software Foundation; either version 2, or (at your option) any
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10 later version.
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11
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12 XEmacs is distributed in the hope that it will be useful, but WITHOUT
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13 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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14 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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15 for more details.
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16
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17 You should have received a copy of the GNU General Public License
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18 along with XEmacs; see the file COPYING. If not, write to
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19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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20 Boston, MA 02111-1307, USA. */
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21
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398
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22 /* Synched up with: FSF 20.3. Not in FSF. */
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70
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23
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298
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24 /* Rewritten by Ben Wing <ben@xemacs.org>. */
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70
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25
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26 #include <config.h>
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27 #include "lisp.h"
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28
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29 #include "buffer.h"
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30 #include "chartab.h"
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31 #include "elhash.h"
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32 #include "lstream.h"
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33 #include "device.h"
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34 #include "faces.h"
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398
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35 #include "mule-ccl.h"
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70
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36
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37 /* The various pre-defined charsets. */
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38
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39 Lisp_Object Vcharset_ascii;
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40 Lisp_Object Vcharset_control_1;
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74
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41 Lisp_Object Vcharset_latin_iso8859_1;
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42 Lisp_Object Vcharset_latin_iso8859_2;
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43 Lisp_Object Vcharset_latin_iso8859_3;
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44 Lisp_Object Vcharset_latin_iso8859_4;
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398
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45 Lisp_Object Vcharset_thai_tis620;
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74
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46 Lisp_Object Vcharset_greek_iso8859_7;
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398
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47 Lisp_Object Vcharset_arabic_iso8859_6;
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74
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48 Lisp_Object Vcharset_hebrew_iso8859_8;
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49 Lisp_Object Vcharset_katakana_jisx0201;
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50 Lisp_Object Vcharset_latin_jisx0201;
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398
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51 Lisp_Object Vcharset_cyrillic_iso8859_5;
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52 Lisp_Object Vcharset_latin_iso8859_9;
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70
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53 Lisp_Object Vcharset_japanese_jisx0208_1978;
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398
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54 Lisp_Object Vcharset_chinese_gb2312;
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70
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55 Lisp_Object Vcharset_japanese_jisx0208;
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398
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56 Lisp_Object Vcharset_korean_ksc5601;
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70
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57 Lisp_Object Vcharset_japanese_jisx0212;
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398
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58 Lisp_Object Vcharset_chinese_cns11643_1;
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59 Lisp_Object Vcharset_chinese_cns11643_2;
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70
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60 Lisp_Object Vcharset_chinese_big5_1;
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61 Lisp_Object Vcharset_chinese_big5_2;
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396
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62
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63 #ifdef ENABLE_COMPOSITE_CHARS
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70
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64 Lisp_Object Vcharset_composite;
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65
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380
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66 /* Hash tables for composite chars. One maps string representing
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70
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67 composed chars to their equivalent chars; one goes the
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68 other way. */
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380
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69 Lisp_Object Vcomposite_char_char2string_hash_table;
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70 Lisp_Object Vcomposite_char_string2char_hash_table;
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70
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71
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396
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72 static int composite_char_row_next;
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73 static int composite_char_col_next;
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74
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75 #endif /* ENABLE_COMPOSITE_CHARS */
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76
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398
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77 struct charset_lookup *chlook;
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70
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78
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398
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79 static const struct lrecord_description charset_lookup_description_1[] = {
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80 { XD_LISP_OBJECT_ARRAY, offsetof (struct charset_lookup, charset_by_leading_byte), 128+4*128*2 },
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81 { XD_END }
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82 };
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83
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84 static const struct struct_description charset_lookup_description = {
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85 sizeof (struct charset_lookup),
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86 charset_lookup_description_1
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87 };
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70
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88
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89 /* Table of number of bytes in the string representation of a character
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90 indexed by the first byte of that representation.
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91
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183
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92 rep_bytes_by_first_byte(c) is more efficient than the equivalent
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93 canonical computation:
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70
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94
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398
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95 XCHARSET_REP_BYTES (CHARSET_BY_LEADING_BYTE (c)) */
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70
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96
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398
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97 const Bytecount rep_bytes_by_first_byte[0xA0] =
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183
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98 { /* 0x00 - 0x7f are for straight ASCII */
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70
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99 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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100 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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101 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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102 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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103 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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104 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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105 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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106 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
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183
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107 /* 0x80 - 0x8f are for Dimension-1 official charsets */
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70
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108 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2,
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183
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109 /* 0x90 - 0x9d are for Dimension-2 official charsets */
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110 /* 0x9e is for Dimension-1 private charsets */
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111 /* 0x9f is for Dimension-2 private charsets */
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70
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112 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 3, 4
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113 };
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114
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115 Lisp_Object Qcharsetp;
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116
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117 /* Qdoc_string, Qdimension, Qchars defined in general.c */
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118 Lisp_Object Qregistry, Qfinal, Qgraphic;
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119 Lisp_Object Qdirection;
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120 Lisp_Object Qreverse_direction_charset;
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392
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121 Lisp_Object Qleading_byte;
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398
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122 Lisp_Object Qshort_name, Qlong_name;
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70
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123
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398
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124 Lisp_Object Qascii,
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125 Qcontrol_1,
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74
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126 Qlatin_iso8859_1,
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127 Qlatin_iso8859_2,
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128 Qlatin_iso8859_3,
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129 Qlatin_iso8859_4,
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398
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130 Qthai_tis620,
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131 Qgreek_iso8859_7,
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74
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132 Qarabic_iso8859_6,
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133 Qhebrew_iso8859_8,
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398
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134 Qkatakana_jisx0201,
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135 Qlatin_jisx0201,
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136 Qcyrillic_iso8859_5,
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74
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137 Qlatin_iso8859_9,
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70
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138 Qjapanese_jisx0208_1978,
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398
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139 Qchinese_gb2312,
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70
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140 Qjapanese_jisx0208,
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398
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141 Qkorean_ksc5601,
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70
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142 Qjapanese_jisx0212,
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398
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143 Qchinese_cns11643_1,
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144 Qchinese_cns11643_2,
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145 Qchinese_big5_1,
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146 Qchinese_big5_2,
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147 Qcomposite;
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70
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148
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149 Lisp_Object Ql2r, Qr2l;
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150
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380
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151 Lisp_Object Vcharset_hash_table;
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70
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152
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153 static Bufbyte next_allocated_1_byte_leading_byte;
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154 static Bufbyte next_allocated_2_byte_leading_byte;
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155
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156 /* Composite characters are characters constructed by overstriking two
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157 or more regular characters.
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158
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159 1) The old Mule implementation involves storing composite characters
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160 in a buffer as a tag followed by all of the actual characters
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161 used to make up the composite character. I think this is a bad
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162 idea; it greatly complicates code that wants to handle strings
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163 one character at a time because it has to deal with the possibility
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164 of great big ungainly characters. It's much more reasonable to
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165 simply store an index into a table of composite characters.
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166
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167 2) The current implementation only allows for 16,384 separate
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168 composite characters over the lifetime of the XEmacs process.
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169 This could become a potential problem if the user
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170 edited lots of different files that use composite characters.
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171 Due to FSF bogosity, increasing the number of allowable
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172 composite characters under Mule would decrease the number
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173 of possible faces that can exist. Mule already has shrunk
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174 this to 2048, and further shrinkage would become uncomfortable.
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175 No such problems exist in XEmacs.
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176
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177 Composite characters could be represented as 0x80 C1 C2 C3,
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178 where each C[1-3] is in the range 0xA0 - 0xFF. This allows
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179 for slightly under 2^20 (one million) composite characters
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180 over the XEmacs process lifetime, and you only need to
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181 increase the size of a Mule character from 19 to 21 bits.
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182 Or you could use 0x80 C1 C2 C3 C4, allowing for about
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183 85 million (slightly over 2^26) composite characters. */
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184
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185
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186 /************************************************************************/
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187 /* Basic Emchar functions */
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188 /************************************************************************/
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189
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190 /* Convert a non-ASCII Mule character C into a one-character Mule-encoded
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191 string in STR. Returns the number of bytes stored.
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192 Do not call this directly. Use the macro set_charptr_emchar() instead.
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193 */
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194
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195 Bytecount
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196 non_ascii_set_charptr_emchar (Bufbyte *str, Emchar c)
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197 {
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198 Bufbyte *p;
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199 Bufbyte lb;
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200 int c1, c2;
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201 Lisp_Object charset;
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202
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203 p = str;
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204 BREAKUP_CHAR (c, charset, c1, c2);
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205 lb = CHAR_LEADING_BYTE (c);
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206 if (LEADING_BYTE_PRIVATE_P (lb))
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207 *p++ = PRIVATE_LEADING_BYTE_PREFIX (lb);
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208 *p++ = lb;
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209 if (EQ (charset, Vcharset_control_1))
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210 c1 += 0x20;
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211 *p++ = c1 | 0x80;
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212 if (c2)
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213 *p++ = c2 | 0x80;
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214
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215 return (p - str);
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216 }
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217
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218 /* Return the first character from a Mule-encoded string in STR,
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219 assuming it's non-ASCII. Do not call this directly.
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220 Use the macro charptr_emchar() instead. */
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221
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222 Emchar
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398
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223 non_ascii_charptr_emchar (const Bufbyte *str)
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70
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224 {
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225 Bufbyte i0 = *str, i1, i2 = 0;
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226 Lisp_Object charset;
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227
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228 if (i0 == LEADING_BYTE_CONTROL_1)
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229 return (Emchar) (*++str - 0x20);
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230
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231 if (LEADING_BYTE_PREFIX_P (i0))
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232 i0 = *++str;
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233
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234 i1 = *++str & 0x7F;
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235
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236 charset = CHARSET_BY_LEADING_BYTE (i0);
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237 if (XCHARSET_DIMENSION (charset) == 2)
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238 i2 = *++str & 0x7F;
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239
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240 return MAKE_CHAR (charset, i1, i2);
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241 }
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242
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243 /* Return whether CH is a valid Emchar, assuming it's non-ASCII.
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244 Do not call this directly. Use the macro valid_char_p() instead. */
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245
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246 int
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247 non_ascii_valid_char_p (Emchar ch)
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248 {
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249 int f1, f2, f3;
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250
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251 /* Must have only lowest 19 bits set */
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252 if (ch & ~0x7FFFF)
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253 return 0;
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254
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255 f1 = CHAR_FIELD1 (ch);
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256 f2 = CHAR_FIELD2 (ch);
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257 f3 = CHAR_FIELD3 (ch);
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258
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259 if (f1 == 0)
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260 {
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261 Lisp_Object charset;
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371
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262
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70
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263 if (f2 < MIN_CHAR_FIELD2_OFFICIAL ||
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264 (f2 > MAX_CHAR_FIELD2_OFFICIAL && f2 < MIN_CHAR_FIELD2_PRIVATE) ||
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265 f2 > MAX_CHAR_FIELD2_PRIVATE)
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266 return 0;
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267 if (f3 < 0x20)
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268 return 0;
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269
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398
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270 if (f3 != 0x20 && f3 != 0x7F && !(f2 >= MIN_CHAR_FIELD2_PRIVATE &&
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271 f2 <= MAX_CHAR_FIELD2_PRIVATE))
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70
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272 return 1;
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273
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274 /*
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275 NOTE: This takes advantage of the fact that
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276 FIELD2_TO_OFFICIAL_LEADING_BYTE and
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277 FIELD2_TO_PRIVATE_LEADING_BYTE are the same.
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278 */
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279 charset = CHARSET_BY_LEADING_BYTE (f2 + FIELD2_TO_OFFICIAL_LEADING_BYTE);
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398
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280 if (EQ (charset, Qnil))
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281 return 0;
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70
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282 return (XCHARSET_CHARS (charset) == 96);
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283 }
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284 else
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285 {
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286 Lisp_Object charset;
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287
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288 if (f1 < MIN_CHAR_FIELD1_OFFICIAL ||
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289 (f1 > MAX_CHAR_FIELD1_OFFICIAL && f1 < MIN_CHAR_FIELD1_PRIVATE) ||
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290 f1 > MAX_CHAR_FIELD1_PRIVATE)
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291 return 0;
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292 if (f2 < 0x20 || f3 < 0x20)
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293 return 0;
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294
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396
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295 #ifdef ENABLE_COMPOSITE_CHARS
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70
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296 if (f1 + FIELD1_TO_OFFICIAL_LEADING_BYTE == LEADING_BYTE_COMPOSITE)
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297 {
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298 if (UNBOUNDP (Fgethash (make_int (ch),
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380
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299 Vcomposite_char_char2string_hash_table,
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70
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300 Qunbound)))
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301 return 0;
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302 return 1;
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303 }
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396
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304 #endif /* ENABLE_COMPOSITE_CHARS */
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70
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305
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398
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306 if (f2 != 0x20 && f2 != 0x7F && f3 != 0x20 && f3 != 0x7F
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307 && !(f1 >= MIN_CHAR_FIELD1_PRIVATE && f1 <= MAX_CHAR_FIELD1_PRIVATE))
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70
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308 return 1;
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309
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310 if (f1 <= MAX_CHAR_FIELD1_OFFICIAL)
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311 charset =
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312 CHARSET_BY_LEADING_BYTE (f1 + FIELD1_TO_OFFICIAL_LEADING_BYTE);
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313 else
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314 charset =
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315 CHARSET_BY_LEADING_BYTE (f1 + FIELD1_TO_PRIVATE_LEADING_BYTE);
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316
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398
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317 if (EQ (charset, Qnil))
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318 return 0;
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70
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319 return (XCHARSET_CHARS (charset) == 96);
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320 }
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321 }
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322
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323
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324 /************************************************************************/
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325 /* Basic string functions */
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326 /************************************************************************/
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327
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328 /* Copy the character pointed to by PTR into STR, assuming it's
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329 non-ASCII. Do not call this directly. Use the macro
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330 charptr_copy_char() instead. */
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331
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332 Bytecount
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398
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333 non_ascii_charptr_copy_char (const Bufbyte *ptr, Bufbyte *str)
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70
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334 {
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335 Bufbyte *strptr = str;
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336 *strptr = *ptr++;
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337 switch (REP_BYTES_BY_FIRST_BYTE (*strptr))
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338 {
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339 /* Notice fallthrough. */
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340 case 4: *++strptr = *ptr++;
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341 case 3: *++strptr = *ptr++;
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342 case 2: *++strptr = *ptr;
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343 break;
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344 default:
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345 abort ();
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346 }
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347 return strptr + 1 - str;
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348 }
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349
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350
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351 /************************************************************************/
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352 /* streams of Emchars */
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353 /************************************************************************/
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354
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355 /* Treat a stream as a stream of Emchar's rather than a stream of bytes.
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356 The functions below are not meant to be called directly; use
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357 the macros in insdel.h. */
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358
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359 Emchar
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360 Lstream_get_emchar_1 (Lstream *stream, int ch)
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361 {
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362 Bufbyte str[MAX_EMCHAR_LEN];
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363 Bufbyte *strptr = str;
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364
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365 str[0] = (Bufbyte) ch;
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366 switch (REP_BYTES_BY_FIRST_BYTE (ch))
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367 {
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368 /* Notice fallthrough. */
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369 case 4:
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370 ch = Lstream_getc (stream);
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371 assert (ch >= 0);
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372 *++strptr = (Bufbyte) ch;
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373 case 3:
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374 ch = Lstream_getc (stream);
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375 assert (ch >= 0);
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376 *++strptr = (Bufbyte) ch;
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377 case 2:
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378 ch = Lstream_getc (stream);
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379 assert (ch >= 0);
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380 *++strptr = (Bufbyte) ch;
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381 break;
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382 default:
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383 abort ();
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384 }
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385 return charptr_emchar (str);
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386 }
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387
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388 int
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389 Lstream_fput_emchar (Lstream *stream, Emchar ch)
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390 {
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391 Bufbyte str[MAX_EMCHAR_LEN];
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392 Bytecount len = set_charptr_emchar (str, ch);
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393 return Lstream_write (stream, str, len);
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394 }
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395
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396 void
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397 Lstream_funget_emchar (Lstream *stream, Emchar ch)
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398 {
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399 Bufbyte str[MAX_EMCHAR_LEN];
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400 Bytecount len = set_charptr_emchar (str, ch);
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401 Lstream_unread (stream, str, len);
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402 }
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403
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404
|
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405 /************************************************************************/
|
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406 /* charset object */
|
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407 /************************************************************************/
|
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408
|
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409 static Lisp_Object
|
398
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410 mark_charset (Lisp_Object obj)
|
70
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411 {
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398
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412 Lisp_Charset *cs = XCHARSET (obj);
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70
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413
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398
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414 mark_object (cs->short_name);
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415 mark_object (cs->long_name);
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416 mark_object (cs->doc_string);
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417 mark_object (cs->registry);
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418 mark_object (cs->ccl_program);
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70
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419 return cs->name;
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420 }
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421
|
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422 static void
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423 print_charset (Lisp_Object obj, Lisp_Object printcharfun, int escapeflag)
|
|
424 {
|
398
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425 Lisp_Charset *cs = XCHARSET (obj);
|
70
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426 char buf[200];
|
183
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427
|
70
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428 if (print_readably)
|
|
429 error ("printing unreadable object #<charset %s 0x%x>",
|
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430 string_data (XSYMBOL (CHARSET_NAME (cs))->name),
|
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431 cs->header.uid);
|
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432
|
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433 write_c_string ("#<charset ", printcharfun);
|
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434 print_internal (CHARSET_NAME (cs), printcharfun, 0);
|
|
435 write_c_string (" ", printcharfun);
|
398
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436 print_internal (CHARSET_SHORT_NAME (cs), printcharfun, 1);
|
|
437 write_c_string (" ", printcharfun);
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|
438 print_internal (CHARSET_LONG_NAME (cs), printcharfun, 1);
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|
439 write_c_string (" ", printcharfun);
|
70
|
440 print_internal (CHARSET_DOC_STRING (cs), printcharfun, 1);
|
|
441 sprintf (buf, " %s %s cols=%d g%d final='%c' reg=",
|
|
442 CHARSET_TYPE (cs) == CHARSET_TYPE_94 ? "94" :
|
|
443 CHARSET_TYPE (cs) == CHARSET_TYPE_96 ? "96" :
|
|
444 CHARSET_TYPE (cs) == CHARSET_TYPE_94X94 ? "94x94" :
|
|
445 "96x96",
|
|
446 CHARSET_DIRECTION (cs) == CHARSET_LEFT_TO_RIGHT ? "l2r" : "r2l",
|
|
447 CHARSET_COLUMNS (cs),
|
|
448 CHARSET_GRAPHIC (cs),
|
|
449 CHARSET_FINAL (cs));
|
|
450 write_c_string (buf, printcharfun);
|
|
451 print_internal (CHARSET_REGISTRY (cs), printcharfun, 0);
|
|
452 sprintf (buf, " 0x%x>", cs->header.uid);
|
|
453 write_c_string (buf, printcharfun);
|
|
454 }
|
|
455
|
398
|
456 static const struct lrecord_description charset_description[] = {
|
|
457 { XD_LISP_OBJECT, offsetof (Lisp_Charset, name) },
|
|
458 { XD_LISP_OBJECT, offsetof (Lisp_Charset, doc_string) },
|
|
459 { XD_LISP_OBJECT, offsetof (Lisp_Charset, registry) },
|
|
460 { XD_LISP_OBJECT, offsetof (Lisp_Charset, short_name) },
|
|
461 { XD_LISP_OBJECT, offsetof (Lisp_Charset, long_name) },
|
|
462 { XD_LISP_OBJECT, offsetof (Lisp_Charset, reverse_direction_charset) },
|
|
463 { XD_LISP_OBJECT, offsetof (Lisp_Charset, ccl_program) },
|
|
464 { XD_END }
|
|
465 };
|
|
466
|
272
|
467 DEFINE_LRECORD_IMPLEMENTATION ("charset", charset,
|
398
|
468 mark_charset, print_charset, 0, 0, 0, charset_description,
|
|
469 Lisp_Charset);
|
70
|
470 /* Make a new charset. */
|
|
471
|
|
472 static Lisp_Object
|
398
|
473 make_charset (int id, Lisp_Object name, unsigned char rep_bytes,
|
70
|
474 unsigned char type, unsigned char columns, unsigned char graphic,
|
398
|
475 Bufbyte final, unsigned char direction, Lisp_Object short_name,
|
|
476 Lisp_Object long_name, Lisp_Object doc,
|
70
|
477 Lisp_Object reg)
|
|
478 {
|
272
|
479 Lisp_Object obj;
|
398
|
480 Lisp_Charset *cs = alloc_lcrecord_type (Lisp_Charset, &lrecord_charset);
|
|
481
|
|
482 zero_lcrecord (cs);
|
|
483
|
70
|
484 XSETCHARSET (obj, cs);
|
|
485
|
213
|
486 CHARSET_ID (cs) = id;
|
70
|
487 CHARSET_NAME (cs) = name;
|
398
|
488 CHARSET_SHORT_NAME (cs) = short_name;
|
|
489 CHARSET_LONG_NAME (cs) = long_name;
|
70
|
490 CHARSET_REP_BYTES (cs) = rep_bytes;
|
|
491 CHARSET_DIRECTION (cs) = direction;
|
|
492 CHARSET_TYPE (cs) = type;
|
|
493 CHARSET_COLUMNS (cs) = columns;
|
|
494 CHARSET_GRAPHIC (cs) = graphic;
|
|
495 CHARSET_FINAL (cs) = final;
|
|
496 CHARSET_DOC_STRING (cs) = doc;
|
|
497 CHARSET_REGISTRY (cs) = reg;
|
|
498 CHARSET_CCL_PROGRAM (cs) = Qnil;
|
|
499 CHARSET_REVERSE_DIRECTION_CHARSET (cs) = Qnil;
|
|
500
|
280
|
501 CHARSET_DIMENSION (cs) = (CHARSET_TYPE (cs) == CHARSET_TYPE_94 ||
|
|
502 CHARSET_TYPE (cs) == CHARSET_TYPE_96) ? 1 : 2;
|
|
503 CHARSET_CHARS (cs) = (CHARSET_TYPE (cs) == CHARSET_TYPE_94 ||
|
|
504 CHARSET_TYPE (cs) == CHARSET_TYPE_94X94) ? 94 : 96;
|
380
|
505
|
70
|
506 if (final)
|
|
507 {
|
|
508 /* some charsets do not have final characters. This includes
|
|
509 ASCII, Control-1, Composite, and the two faux private
|
|
510 charsets. */
|
398
|
511 assert (NILP (chlook->charset_by_attributes[type][final][direction]));
|
|
512 chlook->charset_by_attributes[type][final][direction] = obj;
|
70
|
513 }
|
|
514
|
398
|
515 assert (NILP (chlook->charset_by_leading_byte[id - 128]));
|
|
516 chlook->charset_by_leading_byte[id - 128] = obj;
|
183
|
517
|
70
|
518 /* Some charsets are "faux" and don't have names or really exist at
|
|
519 all except in the leading-byte table. */
|
|
520 if (!NILP (name))
|
380
|
521 Fputhash (name, obj, Vcharset_hash_table);
|
70
|
522 return obj;
|
|
523 }
|
|
524
|
|
525 static int
|
|
526 get_unallocated_leading_byte (int dimension)
|
|
527 {
|
|
528 int lb;
|
|
529
|
|
530 if (dimension == 1)
|
|
531 {
|
|
532 if (next_allocated_1_byte_leading_byte > MAX_LEADING_BYTE_PRIVATE_1)
|
|
533 lb = 0;
|
|
534 else
|
|
535 lb = next_allocated_1_byte_leading_byte++;
|
|
536 }
|
|
537 else
|
|
538 {
|
|
539 if (next_allocated_2_byte_leading_byte > MAX_LEADING_BYTE_PRIVATE_2)
|
|
540 lb = 0;
|
|
541 else
|
|
542 lb = next_allocated_2_byte_leading_byte++;
|
|
543 }
|
|
544
|
|
545 if (!lb)
|
|
546 signal_simple_error
|
|
547 ("No more character sets free for this dimension",
|
|
548 make_int (dimension));
|
|
549
|
|
550 return lb;
|
|
551 }
|
|
552
|
|
553
|
|
554 /************************************************************************/
|
|
555 /* Basic charset Lisp functions */
|
|
556 /************************************************************************/
|
|
557
|
|
558 DEFUN ("charsetp", Fcharsetp, 1, 1, 0, /*
|
|
559 Return non-nil if OBJECT is a charset.
|
|
560 */
|
|
561 (object))
|
|
562 {
|
272
|
563 return CHARSETP (object) ? Qt : Qnil;
|
70
|
564 }
|
|
565
|
|
566 DEFUN ("find-charset", Ffind_charset, 1, 1, 0, /*
|
|
567 Retrieve the charset of the given name.
|
|
568 If CHARSET-OR-NAME is a charset object, it is simply returned.
|
|
569 Otherwise, CHARSET-OR-NAME should be a symbol. If there is no such charset,
|
|
570 nil is returned. Otherwise the associated charset object is returned.
|
|
571 */
|
|
572 (charset_or_name))
|
|
573 {
|
|
574 if (CHARSETP (charset_or_name))
|
|
575 return charset_or_name;
|
272
|
576
|
70
|
577 CHECK_SYMBOL (charset_or_name);
|
380
|
578 return Fgethash (charset_or_name, Vcharset_hash_table, Qnil);
|
70
|
579 }
|
|
580
|
|
581 DEFUN ("get-charset", Fget_charset, 1, 1, 0, /*
|
|
582 Retrieve the charset of the given name.
|
|
583 Same as `find-charset' except an error is signalled if there is no such
|
|
584 charset instead of returning nil.
|
|
585 */
|
|
586 (name))
|
|
587 {
|
|
588 Lisp_Object charset = Ffind_charset (name);
|
|
589
|
|
590 if (NILP (charset))
|
|
591 signal_simple_error ("No such charset", name);
|
|
592 return charset;
|
|
593 }
|
|
594
|
|
595 /* We store the charsets in hash tables with the names as the key and the
|
|
596 actual charset object as the value. Occasionally we need to use them
|
|
597 in a list format. These routines provide us with that. */
|
|
598 struct charset_list_closure
|
|
599 {
|
|
600 Lisp_Object *charset_list;
|
|
601 };
|
|
602
|
241
|
603 static int
|
380
|
604 add_charset_to_list_mapper (Lisp_Object key, Lisp_Object value,
|
70
|
605 void *charset_list_closure)
|
|
606 {
|
|
607 /* This function can GC */
|
185
|
608 struct charset_list_closure *chcl =
|
|
609 (struct charset_list_closure*) charset_list_closure;
|
380
|
610 Lisp_Object *charset_list = chcl->charset_list;
|
70
|
611
|
380
|
612 *charset_list = Fcons (XCHARSET_NAME (value), *charset_list);
|
241
|
613 return 0;
|
70
|
614 }
|
|
615
|
|
616 DEFUN ("charset-list", Fcharset_list, 0, 0, 0, /*
|
|
617 Return a list of the names of all defined charsets.
|
|
618 */
|
|
619 ())
|
|
620 {
|
|
621 Lisp_Object charset_list = Qnil;
|
|
622 struct gcpro gcpro1;
|
|
623 struct charset_list_closure charset_list_closure;
|
|
624
|
|
625 GCPRO1 (charset_list);
|
|
626 charset_list_closure.charset_list = &charset_list;
|
380
|
627 elisp_maphash (add_charset_to_list_mapper, Vcharset_hash_table,
|
70
|
628 &charset_list_closure);
|
|
629 UNGCPRO;
|
|
630
|
|
631 return charset_list;
|
|
632 }
|
|
633
|
|
634 DEFUN ("charset-name", Fcharset_name, 1, 1, 0, /*
|
|
635 Return the name of the given charset.
|
|
636 */
|
|
637 (charset))
|
|
638 {
|
272
|
639 return XCHARSET_NAME (Fget_charset (charset));
|
70
|
640 }
|
|
641
|
|
642 DEFUN ("make-charset", Fmake_charset, 3, 3, 0, /*
|
|
643 Define a new character set.
|
|
644 This function is for use with Mule support.
|
|
645 NAME is a symbol, the name by which the character set is normally referred.
|
|
646 DOC-STRING is a string describing the character set.
|
|
647 PROPS is a property list, describing the specific nature of the
|
|
648 character set. Recognized properties are:
|
|
649
|
398
|
650 'short-name Short version of the charset name (ex: Latin-1)
|
|
651 'long-name Long version of the charset name (ex: ISO8859-1 (Latin-1))
|
70
|
652 'registry A regular expression matching the font registry field for
|
|
653 this character set.
|
|
654 'dimension Number of octets used to index a character in this charset.
|
|
655 Either 1 or 2. Defaults to 1.
|
|
656 'columns Number of columns used to display a character in this charset.
|
|
657 Only used in TTY mode. (Under X, the actual width of a
|
|
658 character can be derived from the font used to display the
|
|
659 characters.) If unspecified, defaults to the dimension
|
|
660 (this is almost always the correct value).
|
|
661 'chars Number of characters in each dimension (94 or 96).
|
|
662 Defaults to 94. Note that if the dimension is 2, the
|
|
663 character set thus described is 94x94 or 96x96.
|
|
664 'final Final byte of ISO 2022 escape sequence. Must be
|
|
665 supplied. Each combination of (DIMENSION, CHARS) defines a
|
|
666 separate namespace for final bytes. Note that ISO
|
|
667 2022 restricts the final byte to the range
|
|
668 0x30 - 0x7E if dimension == 1, and 0x30 - 0x5F if
|
|
669 dimension == 2. Note also that final bytes in the range
|
|
670 0x30 - 0x3F are reserved for user-defined (not official)
|
|
671 character sets.
|
|
672 'graphic 0 (use left half of font on output) or 1 (use right half
|
|
673 of font on output). Defaults to 0. For example, for
|
|
674 a font whose registry is ISO8859-1, the left half
|
|
675 (octets 0x20 - 0x7F) is the `ascii' character set, while
|
|
676 the right half (octets 0xA0 - 0xFF) is the `latin-1'
|
|
677 character set. With 'graphic set to 0, the octets
|
|
678 will have their high bit cleared; with it set to 1,
|
|
679 the octets will have their high bit set.
|
|
680 'direction 'l2r (left-to-right) or 'r2l (right-to-left).
|
|
681 Defaults to 'l2r.
|
|
682 'ccl-program A compiled CCL program used to convert a character in
|
|
683 this charset into an index into the font. This is in
|
|
684 addition to the 'graphic property. The CCL program
|
|
685 is passed the octets of the character, with the high
|
|
686 bit cleared and set depending upon whether the value
|
|
687 of the 'graphic property is 0 or 1.
|
|
688 */
|
|
689 (name, doc_string, props))
|
|
690 {
|
398
|
691 int id, dimension = 1, chars = 94, graphic = 0, final = 0, columns = -1;
|
70
|
692 int direction = CHARSET_LEFT_TO_RIGHT;
|
|
693 int type;
|
|
694 Lisp_Object registry = Qnil;
|
|
695 Lisp_Object charset;
|
|
696 Lisp_Object rest, keyword, value;
|
|
697 Lisp_Object ccl_program = Qnil;
|
398
|
698 Lisp_Object short_name = Qnil, long_name = Qnil;
|
70
|
699
|
|
700 CHECK_SYMBOL (name);
|
|
701 if (!NILP (doc_string))
|
|
702 CHECK_STRING (doc_string);
|
|
703
|
|
704 charset = Ffind_charset (name);
|
|
705 if (!NILP (charset))
|
|
706 signal_simple_error ("Cannot redefine existing charset", name);
|
|
707
|
|
708 EXTERNAL_PROPERTY_LIST_LOOP (rest, keyword, value, props)
|
|
709 {
|
398
|
710 if (EQ (keyword, Qshort_name))
|
|
711 {
|
|
712 CHECK_STRING (value);
|
|
713 short_name = value;
|
|
714 }
|
|
715
|
|
716 if (EQ (keyword, Qlong_name))
|
|
717 {
|
|
718 CHECK_STRING (value);
|
|
719 long_name = value;
|
|
720 }
|
|
721
|
|
722 else if (EQ (keyword, Qdimension))
|
70
|
723 {
|
|
724 CHECK_INT (value);
|
|
725 dimension = XINT (value);
|
|
726 if (dimension < 1 || dimension > 2)
|
|
727 signal_simple_error ("Invalid value for 'dimension", value);
|
|
728 }
|
|
729
|
|
730 else if (EQ (keyword, Qchars))
|
|
731 {
|
|
732 CHECK_INT (value);
|
|
733 chars = XINT (value);
|
|
734 if (chars != 94 && chars != 96)
|
|
735 signal_simple_error ("Invalid value for 'chars", value);
|
|
736 }
|
|
737
|
|
738 else if (EQ (keyword, Qcolumns))
|
|
739 {
|
|
740 CHECK_INT (value);
|
|
741 columns = XINT (value);
|
|
742 if (columns != 1 && columns != 2)
|
|
743 signal_simple_error ("Invalid value for 'columns", value);
|
|
744 }
|
|
745
|
|
746 else if (EQ (keyword, Qgraphic))
|
|
747 {
|
|
748 CHECK_INT (value);
|
|
749 graphic = XINT (value);
|
|
750 if (graphic < 0 || graphic > 1)
|
|
751 signal_simple_error ("Invalid value for 'graphic", value);
|
|
752 }
|
|
753
|
|
754 else if (EQ (keyword, Qregistry))
|
|
755 {
|
|
756 CHECK_STRING (value);
|
|
757 registry = value;
|
|
758 }
|
|
759
|
|
760 else if (EQ (keyword, Qdirection))
|
|
761 {
|
|
762 if (EQ (value, Ql2r))
|
|
763 direction = CHARSET_LEFT_TO_RIGHT;
|
|
764 else if (EQ (value, Qr2l))
|
|
765 direction = CHARSET_RIGHT_TO_LEFT;
|
|
766 else
|
|
767 signal_simple_error ("Invalid value for 'direction", value);
|
|
768 }
|
|
769
|
|
770 else if (EQ (keyword, Qfinal))
|
|
771 {
|
|
772 CHECK_CHAR_COERCE_INT (value);
|
|
773 final = XCHAR (value);
|
|
774 if (final < '0' || final > '~')
|
|
775 signal_simple_error ("Invalid value for 'final", value);
|
|
776 }
|
|
777
|
|
778 else if (EQ (keyword, Qccl_program))
|
|
779 {
|
|
780 CHECK_VECTOR (value);
|
|
781 ccl_program = value;
|
|
782 }
|
|
783
|
|
784 else
|
|
785 signal_simple_error ("Unrecognized property", keyword);
|
|
786 }
|
|
787
|
|
788 if (!final)
|
|
789 error ("'final must be specified");
|
|
790 if (dimension == 2 && final > 0x5F)
|
|
791 signal_simple_error
|
|
792 ("Final must be in the range 0x30 - 0x5F for dimension == 2",
|
|
793 make_char (final));
|
|
794
|
|
795 if (dimension == 1)
|
|
796 type = (chars == 94) ? CHARSET_TYPE_94 : CHARSET_TYPE_96;
|
|
797 else
|
|
798 type = (chars == 94) ? CHARSET_TYPE_94X94 : CHARSET_TYPE_96X96;
|
|
799
|
|
800 if (!NILP (CHARSET_BY_ATTRIBUTES (type, final, CHARSET_LEFT_TO_RIGHT)) ||
|
|
801 !NILP (CHARSET_BY_ATTRIBUTES (type, final, CHARSET_RIGHT_TO_LEFT)))
|
|
802 error
|
|
803 ("Character set already defined for this DIMENSION/CHARS/FINAL combo");
|
|
804
|
398
|
805 id = get_unallocated_leading_byte (dimension);
|
70
|
806
|
|
807 if (NILP (doc_string))
|
|
808 doc_string = build_string ("");
|
|
809
|
|
810 if (NILP (registry))
|
|
811 registry = build_string ("");
|
|
812
|
398
|
813 if (NILP (short_name))
|
|
814 XSETSTRING (short_name, XSYMBOL (name)->name);
|
|
815
|
|
816 if (NILP (long_name))
|
|
817 long_name = doc_string;
|
|
818
|
70
|
819 if (columns == -1)
|
|
820 columns = dimension;
|
398
|
821 charset = make_charset (id, name, dimension + 2, type, columns, graphic,
|
|
822 final, direction, short_name, long_name, doc_string, registry);
|
70
|
823 if (!NILP (ccl_program))
|
|
824 XCHARSET_CCL_PROGRAM (charset) = ccl_program;
|
|
825 return charset;
|
|
826 }
|
|
827
|
280
|
828 DEFUN ("make-reverse-direction-charset", Fmake_reverse_direction_charset,
|
|
829 2, 2, 0, /*
|
70
|
830 Make a charset equivalent to CHARSET but which goes in the opposite direction.
|
|
831 NEW-NAME is the name of the new charset. Return the new charset.
|
|
832 */
|
|
833 (charset, new_name))
|
|
834 {
|
|
835 Lisp_Object new_charset = Qnil;
|
398
|
836 int id, dimension, columns, graphic, final;
|
70
|
837 int direction, type;
|
398
|
838 Lisp_Object registry, doc_string, short_name, long_name;
|
|
839 Lisp_Charset *cs;
|
70
|
840
|
|
841 charset = Fget_charset (charset);
|
|
842 if (!NILP (XCHARSET_REVERSE_DIRECTION_CHARSET (charset)))
|
|
843 signal_simple_error ("Charset already has reverse-direction charset",
|
|
844 charset);
|
|
845
|
|
846 CHECK_SYMBOL (new_name);
|
|
847 if (!NILP (Ffind_charset (new_name)))
|
|
848 signal_simple_error ("Cannot redefine existing charset", new_name);
|
|
849
|
|
850 cs = XCHARSET (charset);
|
183
|
851
|
70
|
852 type = CHARSET_TYPE (cs);
|
|
853 columns = CHARSET_COLUMNS (cs);
|
|
854 dimension = CHARSET_DIMENSION (cs);
|
398
|
855 id = get_unallocated_leading_byte (dimension);
|
70
|
856
|
|
857 graphic = CHARSET_GRAPHIC (cs);
|
|
858 final = CHARSET_FINAL (cs);
|
|
859 direction = CHARSET_RIGHT_TO_LEFT;
|
|
860 if (CHARSET_DIRECTION (cs) == CHARSET_RIGHT_TO_LEFT)
|
|
861 direction = CHARSET_LEFT_TO_RIGHT;
|
|
862 doc_string = CHARSET_DOC_STRING (cs);
|
398
|
863 short_name = CHARSET_SHORT_NAME (cs);
|
|
864 long_name = CHARSET_LONG_NAME (cs);
|
70
|
865 registry = CHARSET_REGISTRY (cs);
|
|
866
|
398
|
867 new_charset = make_charset (id, new_name, dimension + 2, type, columns,
|
|
868 graphic, final, direction, short_name, long_name,
|
|
869 doc_string, registry);
|
70
|
870
|
|
871 CHARSET_REVERSE_DIRECTION_CHARSET (cs) = new_charset;
|
|
872 XCHARSET_REVERSE_DIRECTION_CHARSET (new_charset) = charset;
|
|
873
|
|
874 return new_charset;
|
|
875 }
|
|
876
|
284
|
877 /* #### Reverse direction charsets not yet implemented. */
|
70
|
878 #if 0
|
280
|
879 DEFUN ("charset-reverse-direction-charset", Fcharset_reverse_direction_charset,
|
|
880 1, 1, 0, /*
|
70
|
881 Return the reverse-direction charset parallel to CHARSET, if any.
|
|
882 This is the charset with the same properties (in particular, the same
|
|
883 dimension, number of characters per dimension, and final byte) as
|
|
884 CHARSET but whose characters are displayed in the opposite direction.
|
|
885 */
|
|
886 (charset))
|
|
887 {
|
|
888 charset = Fget_charset (charset);
|
|
889 return XCHARSET_REVERSE_DIRECTION_CHARSET (charset);
|
|
890 }
|
|
891 #endif
|
|
892
|
|
893 DEFUN ("charset-from-attributes", Fcharset_from_attributes, 3, 4, 0, /*
|
|
894 Return a charset with the given DIMENSION, CHARS, FINAL, and DIRECTION.
|
|
895 If DIRECTION is omitted, both directions will be checked (left-to-right
|
|
896 will be returned if character sets exist for both directions).
|
|
897 */
|
|
898 (dimension, chars, final, direction))
|
|
899 {
|
|
900 int dm, ch, fi, di = -1;
|
|
901 int type;
|
|
902 Lisp_Object obj = Qnil;
|
|
903
|
|
904 CHECK_INT (dimension);
|
|
905 dm = XINT (dimension);
|
|
906 if (dm < 1 || dm > 2)
|
|
907 signal_simple_error ("Invalid value for DIMENSION", dimension);
|
|
908
|
|
909 CHECK_INT (chars);
|
|
910 ch = XINT (chars);
|
|
911 if (ch != 94 && ch != 96)
|
|
912 signal_simple_error ("Invalid value for CHARS", chars);
|
|
913
|
|
914 CHECK_CHAR_COERCE_INT (final);
|
|
915 fi = XCHAR (final);
|
|
916 if (fi < '0' || fi > '~')
|
|
917 signal_simple_error ("Invalid value for FINAL", final);
|
|
918
|
|
919 if (EQ (direction, Ql2r))
|
|
920 di = CHARSET_LEFT_TO_RIGHT;
|
|
921 else if (EQ (direction, Qr2l))
|
|
922 di = CHARSET_RIGHT_TO_LEFT;
|
|
923 else if (!NILP (direction))
|
|
924 signal_simple_error ("Invalid value for DIRECTION", direction);
|
|
925
|
|
926 if (dm == 2 && fi > 0x5F)
|
|
927 signal_simple_error
|
|
928 ("Final must be in the range 0x30 - 0x5F for dimension == 2", final);
|
|
929
|
|
930 if (dm == 1)
|
|
931 type = (ch == 94) ? CHARSET_TYPE_94 : CHARSET_TYPE_96;
|
|
932 else
|
|
933 type = (ch == 94) ? CHARSET_TYPE_94X94 : CHARSET_TYPE_96X96;
|
|
934
|
|
935 if (di == -1)
|
|
936 {
|
|
937 obj = CHARSET_BY_ATTRIBUTES (type, fi, CHARSET_LEFT_TO_RIGHT);
|
|
938 if (NILP (obj))
|
|
939 obj = CHARSET_BY_ATTRIBUTES (type, fi, CHARSET_RIGHT_TO_LEFT);
|
|
940 }
|
|
941 else
|
|
942 obj = CHARSET_BY_ATTRIBUTES (type, fi, di);
|
|
943
|
|
944 if (CHARSETP (obj))
|
|
945 return XCHARSET_NAME (obj);
|
|
946 return obj;
|
|
947 }
|
|
948
|
398
|
949 DEFUN ("charset-short-name", Fcharset_short_name, 1, 1, 0, /*
|
|
950 Return short name of CHARSET.
|
|
951 */
|
|
952 (charset))
|
|
953 {
|
|
954 return XCHARSET_SHORT_NAME (Fget_charset (charset));
|
|
955 }
|
|
956
|
|
957 DEFUN ("charset-long-name", Fcharset_long_name, 1, 1, 0, /*
|
|
958 Return long name of CHARSET.
|
|
959 */
|
|
960 (charset))
|
|
961 {
|
|
962 return XCHARSET_LONG_NAME (Fget_charset (charset));
|
|
963 }
|
|
964
|
|
965 DEFUN ("charset-description", Fcharset_description, 1, 1, 0, /*
|
|
966 Return description of CHARSET.
|
70
|
967 */
|
|
968 (charset))
|
|
969 {
|
|
970 return XCHARSET_DOC_STRING (Fget_charset (charset));
|
|
971 }
|
|
972
|
|
973 DEFUN ("charset-dimension", Fcharset_dimension, 1, 1, 0, /*
|
|
974 Return dimension of CHARSET.
|
|
975 */
|
|
976 (charset))
|
|
977 {
|
|
978 return make_int (XCHARSET_DIMENSION (Fget_charset (charset)));
|
|
979 }
|
|
980
|
|
981 DEFUN ("charset-property", Fcharset_property, 2, 2, 0, /*
|
|
982 Return property PROP of CHARSET.
|
|
983 Recognized properties are those listed in `make-charset', as well as
|
|
984 'name and 'doc-string.
|
|
985 */
|
|
986 (charset, prop))
|
|
987 {
|
398
|
988 Lisp_Charset *cs;
|
70
|
989
|
|
990 charset = Fget_charset (charset);
|
|
991 cs = XCHARSET (charset);
|
|
992
|
|
993 CHECK_SYMBOL (prop);
|
|
994 if (EQ (prop, Qname)) return CHARSET_NAME (cs);
|
398
|
995 if (EQ (prop, Qshort_name)) return CHARSET_SHORT_NAME (cs);
|
|
996 if (EQ (prop, Qlong_name)) return CHARSET_LONG_NAME (cs);
|
70
|
997 if (EQ (prop, Qdoc_string)) return CHARSET_DOC_STRING (cs);
|
|
998 if (EQ (prop, Qdimension)) return make_int (CHARSET_DIMENSION (cs));
|
|
999 if (EQ (prop, Qcolumns)) return make_int (CHARSET_COLUMNS (cs));
|
|
1000 if (EQ (prop, Qgraphic)) return make_int (CHARSET_GRAPHIC (cs));
|
|
1001 if (EQ (prop, Qfinal)) return make_char (CHARSET_FINAL (cs));
|
|
1002 if (EQ (prop, Qchars)) return make_int (CHARSET_CHARS (cs));
|
|
1003 if (EQ (prop, Qregistry)) return CHARSET_REGISTRY (cs);
|
|
1004 if (EQ (prop, Qccl_program)) return CHARSET_CCL_PROGRAM (cs);
|
|
1005 if (EQ (prop, Qdirection))
|
272
|
1006 return CHARSET_DIRECTION (cs) == CHARSET_LEFT_TO_RIGHT ? Ql2r : Qr2l;
|
70
|
1007 if (EQ (prop, Qreverse_direction_charset))
|
|
1008 {
|
|
1009 Lisp_Object obj = CHARSET_REVERSE_DIRECTION_CHARSET (cs);
|
371
|
1010 if (NILP (obj))
|
|
1011 return Qnil;
|
|
1012 else
|
|
1013 return XCHARSET_NAME (obj);
|
70
|
1014 }
|
|
1015 signal_simple_error ("Unrecognized charset property name", prop);
|
|
1016 return Qnil; /* not reached */
|
|
1017 }
|
|
1018
|
213
|
1019 DEFUN ("charset-id", Fcharset_id, 1, 1, 0, /*
|
|
1020 Return charset identification number of CHARSET.
|
|
1021 */
|
|
1022 (charset))
|
|
1023 {
|
398
|
1024 return make_int(XCHARSET_LEADING_BYTE (Fget_charset (charset)));
|
213
|
1025 }
|
|
1026
|
70
|
1027 /* #### We need to figure out which properties we really want to
|
|
1028 allow to be set. */
|
|
1029
|
|
1030 DEFUN ("set-charset-ccl-program", Fset_charset_ccl_program, 2, 2, 0, /*
|
|
1031 Set the 'ccl-program property of CHARSET to CCL-PROGRAM.
|
|
1032 */
|
|
1033 (charset, ccl_program))
|
|
1034 {
|
|
1035 charset = Fget_charset (charset);
|
|
1036 CHECK_VECTOR (ccl_program);
|
|
1037 XCHARSET_CCL_PROGRAM (charset) = ccl_program;
|
|
1038 return Qnil;
|
|
1039 }
|
|
1040
|
|
1041 static void
|
|
1042 invalidate_charset_font_caches (Lisp_Object charset)
|
|
1043 {
|
|
1044 /* Invalidate font cache entries for charset on all devices. */
|
380
|
1045 Lisp_Object devcons, concons, hash_table;
|
70
|
1046 DEVICE_LOOP_NO_BREAK (devcons, concons)
|
|
1047 {
|
|
1048 struct device *d = XDEVICE (XCAR (devcons));
|
380
|
1049 hash_table = Fgethash (charset, d->charset_font_cache, Qunbound);
|
|
1050 if (!UNBOUNDP (hash_table))
|
|
1051 Fclrhash (hash_table);
|
70
|
1052 }
|
|
1053 }
|
|
1054
|
|
1055 /* Japanese folks may want to (set-charset-registry 'ascii "jisx0201") */
|
|
1056 DEFUN ("set-charset-registry", Fset_charset_registry, 2, 2, 0, /*
|
|
1057 Set the 'registry property of CHARSET to REGISTRY.
|
|
1058 */
|
|
1059 (charset, registry))
|
|
1060 {
|
|
1061 charset = Fget_charset (charset);
|
|
1062 CHECK_STRING (registry);
|
|
1063 XCHARSET_REGISTRY (charset) = registry;
|
|
1064 invalidate_charset_font_caches (charset);
|
|
1065 face_property_was_changed (Vdefault_face, Qfont, Qglobal);
|
|
1066 return Qnil;
|
|
1067 }
|
183
|
1068
|
70
|
1069
|
|
1070 /************************************************************************/
|
|
1071 /* Lisp primitives for working with characters */
|
|
1072 /************************************************************************/
|
|
1073
|
|
1074 DEFUN ("make-char", Fmake_char, 2, 3, 0, /*
|
398
|
1075 Make a character from CHARSET and octets ARG1 and ARG2.
|
|
1076 ARG2 is required only for characters from two-dimensional charsets.
|
|
1077 For example, (make-char 'latin-iso8859-2 185) will return the Latin 2
|
|
1078 character s with caron.
|
70
|
1079 */
|
|
1080 (charset, arg1, arg2))
|
|
1081 {
|
398
|
1082 Lisp_Charset *cs;
|
70
|
1083 int a1, a2;
|
|
1084 int lowlim, highlim;
|
|
1085
|
|
1086 charset = Fget_charset (charset);
|
|
1087 cs = XCHARSET (charset);
|
|
1088
|
|
1089 if (EQ (charset, Vcharset_ascii)) lowlim = 0, highlim = 127;
|
|
1090 else if (EQ (charset, Vcharset_control_1)) lowlim = 0, highlim = 31;
|
|
1091 else if (CHARSET_CHARS (cs) == 94) lowlim = 33, highlim = 126;
|
|
1092 else /* CHARSET_CHARS (cs) == 96) */ lowlim = 32, highlim = 127;
|
|
1093
|
|
1094 CHECK_INT (arg1);
|
398
|
1095 /* It is useful (and safe, according to Olivier Galibert) to strip
|
|
1096 the 8th bit off ARG1 and ARG2 becaue it allows programmers to
|
|
1097 write (make-char 'latin-iso8859-2 CODE) where code is the actual
|
|
1098 Latin 2 code of the character. */
|
|
1099 a1 = XINT (arg1) & 0x7f;
|
70
|
1100 if (a1 < lowlim || a1 > highlim)
|
|
1101 args_out_of_range_3 (arg1, make_int (lowlim), make_int (highlim));
|
|
1102
|
|
1103 if (CHARSET_DIMENSION (cs) == 1)
|
|
1104 {
|
|
1105 if (!NILP (arg2))
|
|
1106 signal_simple_error
|
|
1107 ("Charset is of dimension one; second octet must be nil", arg2);
|
|
1108 return make_char (MAKE_CHAR (charset, a1, 0));
|
|
1109 }
|
|
1110
|
|
1111 CHECK_INT (arg2);
|
398
|
1112 a2 = XINT (arg2) & 0x7f;
|
70
|
1113 if (a2 < lowlim || a2 > highlim)
|
|
1114 args_out_of_range_3 (arg2, make_int (lowlim), make_int (highlim));
|
|
1115
|
|
1116 return make_char (MAKE_CHAR (charset, a1, a2));
|
|
1117 }
|
|
1118
|
|
1119 DEFUN ("char-charset", Fchar_charset, 1, 1, 0, /*
|
|
1120 Return the character set of char CH.
|
|
1121 */
|
|
1122 (ch))
|
|
1123 {
|
|
1124 CHECK_CHAR_COERCE_INT (ch);
|
|
1125
|
|
1126 return XCHARSET_NAME (CHARSET_BY_LEADING_BYTE
|
|
1127 (CHAR_LEADING_BYTE (XCHAR (ch))));
|
|
1128 }
|
|
1129
|
|
1130 DEFUN ("char-octet", Fchar_octet, 1, 2, 0, /*
|
|
1131 Return the octet numbered N (should be 0 or 1) of char CH.
|
|
1132 N defaults to 0 if omitted.
|
|
1133 */
|
|
1134 (ch, n))
|
|
1135 {
|
|
1136 Lisp_Object charset;
|
398
|
1137 int octet0, octet1;
|
70
|
1138
|
|
1139 CHECK_CHAR_COERCE_INT (ch);
|
398
|
1140
|
|
1141 BREAKUP_CHAR (XCHAR (ch), charset, octet0, octet1);
|
|
1142
|
|
1143 if (NILP (n) || EQ (n, Qzero))
|
|
1144 return make_int (octet0);
|
|
1145 else if (EQ (n, make_int (1)))
|
|
1146 return make_int (octet1);
|
|
1147 else
|
|
1148 signal_simple_error ("Octet number must be 0 or 1", n);
|
|
1149 }
|
|
1150
|
|
1151 DEFUN ("split-char", Fsplit_char, 1, 1, 0, /*
|
|
1152 Return list of charset and one or two position-codes of CHAR.
|
|
1153 */
|
|
1154 (character))
|
|
1155 {
|
|
1156 /* This function can GC */
|
|
1157 struct gcpro gcpro1, gcpro2;
|
|
1158 Lisp_Object charset = Qnil;
|
|
1159 Lisp_Object rc = Qnil;
|
|
1160 int c1, c2;
|
|
1161
|
|
1162 GCPRO2 (charset, rc);
|
|
1163 CHECK_CHAR_COERCE_INT (character);
|
|
1164
|
|
1165 BREAKUP_CHAR (XCHAR (character), charset, c1, c2);
|
|
1166
|
|
1167 if (XCHARSET_DIMENSION (Fget_charset (charset)) == 2)
|
|
1168 {
|
|
1169 rc = list3 (XCHARSET_NAME (charset), make_int (c1), make_int (c2));
|
|
1170 }
|
70
|
1171 else
|
|
1172 {
|
398
|
1173 rc = list2 (XCHARSET_NAME (charset), make_int (c1));
|
70
|
1174 }
|
398
|
1175 UNGCPRO;
|
|
1176
|
|
1177 return rc;
|
70
|
1178 }
|
|
1179
|
|
1180
|
396
|
1181 #ifdef ENABLE_COMPOSITE_CHARS
|
70
|
1182 /************************************************************************/
|
|
1183 /* composite character functions */
|
|
1184 /************************************************************************/
|
|
1185
|
|
1186 Emchar
|
|
1187 lookup_composite_char (Bufbyte *str, int len)
|
|
1188 {
|
|
1189 Lisp_Object lispstr = make_string (str, len);
|
|
1190 Lisp_Object ch = Fgethash (lispstr,
|
380
|
1191 Vcomposite_char_string2char_hash_table,
|
70
|
1192 Qunbound);
|
|
1193 Emchar emch;
|
|
1194
|
|
1195 if (UNBOUNDP (ch))
|
|
1196 {
|
|
1197 if (composite_char_row_next >= 128)
|
|
1198 signal_simple_error ("No more composite chars available", lispstr);
|
|
1199 emch = MAKE_CHAR (Vcharset_composite, composite_char_row_next,
|
|
1200 composite_char_col_next);
|
|
1201 Fputhash (make_char (emch), lispstr,
|
380
|
1202 Vcomposite_char_char2string_hash_table);
|
70
|
1203 Fputhash (lispstr, make_char (emch),
|
380
|
1204 Vcomposite_char_string2char_hash_table);
|
70
|
1205 composite_char_col_next++;
|
|
1206 if (composite_char_col_next >= 128)
|
|
1207 {
|
|
1208 composite_char_col_next = 32;
|
|
1209 composite_char_row_next++;
|
|
1210 }
|
|
1211 }
|
|
1212 else
|
|
1213 emch = XCHAR (ch);
|
|
1214 return emch;
|
|
1215 }
|
|
1216
|
|
1217 Lisp_Object
|
|
1218 composite_char_string (Emchar ch)
|
|
1219 {
|
|
1220 Lisp_Object str = Fgethash (make_char (ch),
|
380
|
1221 Vcomposite_char_char2string_hash_table,
|
70
|
1222 Qunbound);
|
|
1223 assert (!UNBOUNDP (str));
|
|
1224 return str;
|
|
1225 }
|
|
1226
|
396
|
1227 xxDEFUN ("make-composite-char", Fmake_composite_char, 1, 1, 0, /*
|
70
|
1228 Convert a string into a single composite character.
|
|
1229 The character is the result of overstriking all the characters in
|
|
1230 the string.
|
|
1231 */
|
|
1232 (string))
|
|
1233 {
|
|
1234 CHECK_STRING (string);
|
|
1235 return make_char (lookup_composite_char (XSTRING_DATA (string),
|
|
1236 XSTRING_LENGTH (string)));
|
|
1237 }
|
|
1238
|
396
|
1239 xxDEFUN ("composite-char-string", Fcomposite_char_string, 1, 1, 0, /*
|
70
|
1240 Return a string of the characters comprising a composite character.
|
|
1241 */
|
|
1242 (ch))
|
|
1243 {
|
|
1244 Emchar emch;
|
|
1245
|
|
1246 CHECK_CHAR (ch);
|
|
1247 emch = XCHAR (ch);
|
|
1248 if (CHAR_LEADING_BYTE (emch) != LEADING_BYTE_COMPOSITE)
|
|
1249 signal_simple_error ("Must be composite char", ch);
|
|
1250 return composite_char_string (emch);
|
|
1251 }
|
396
|
1252 #endif /* ENABLE_COMPOSITE_CHARS */
|
70
|
1253
|
|
1254
|
|
1255 /************************************************************************/
|
|
1256 /* initialization */
|
|
1257 /************************************************************************/
|
|
1258
|
|
1259 void
|
|
1260 syms_of_mule_charset (void)
|
|
1261 {
|
|
1262 DEFSUBR (Fcharsetp);
|
|
1263 DEFSUBR (Ffind_charset);
|
|
1264 DEFSUBR (Fget_charset);
|
|
1265 DEFSUBR (Fcharset_list);
|
|
1266 DEFSUBR (Fcharset_name);
|
|
1267 DEFSUBR (Fmake_charset);
|
|
1268 DEFSUBR (Fmake_reverse_direction_charset);
|
|
1269 /* DEFSUBR (Freverse_direction_charset); */
|
|
1270 DEFSUBR (Fcharset_from_attributes);
|
398
|
1271 DEFSUBR (Fcharset_short_name);
|
|
1272 DEFSUBR (Fcharset_long_name);
|
|
1273 DEFSUBR (Fcharset_description);
|
70
|
1274 DEFSUBR (Fcharset_dimension);
|
|
1275 DEFSUBR (Fcharset_property);
|
213
|
1276 DEFSUBR (Fcharset_id);
|
70
|
1277 DEFSUBR (Fset_charset_ccl_program);
|
|
1278 DEFSUBR (Fset_charset_registry);
|
|
1279
|
|
1280 DEFSUBR (Fmake_char);
|
|
1281 DEFSUBR (Fchar_charset);
|
|
1282 DEFSUBR (Fchar_octet);
|
398
|
1283 DEFSUBR (Fsplit_char);
|
70
|
1284
|
396
|
1285 #ifdef ENABLE_COMPOSITE_CHARS
|
70
|
1286 DEFSUBR (Fmake_composite_char);
|
|
1287 DEFSUBR (Fcomposite_char_string);
|
396
|
1288 #endif
|
70
|
1289
|
|
1290 defsymbol (&Qcharsetp, "charsetp");
|
|
1291 defsymbol (&Qregistry, "registry");
|
|
1292 defsymbol (&Qfinal, "final");
|
|
1293 defsymbol (&Qgraphic, "graphic");
|
|
1294 defsymbol (&Qdirection, "direction");
|
|
1295 defsymbol (&Qreverse_direction_charset, "reverse-direction-charset");
|
398
|
1296 defsymbol (&Qshort_name, "short-name");
|
|
1297 defsymbol (&Qlong_name, "long-name");
|
70
|
1298
|
|
1299 defsymbol (&Ql2r, "l2r");
|
|
1300 defsymbol (&Qr2l, "r2l");
|
|
1301
|
398
|
1302 /* Charsets, compatible with FSF 20.3
|
74
|
1303 Naming convention is Script-Charset[-Edition] */
|
|
1304 defsymbol (&Qascii, "ascii");
|
|
1305 defsymbol (&Qcontrol_1, "control-1");
|
|
1306 defsymbol (&Qlatin_iso8859_1, "latin-iso8859-1");
|
|
1307 defsymbol (&Qlatin_iso8859_2, "latin-iso8859-2");
|
|
1308 defsymbol (&Qlatin_iso8859_3, "latin-iso8859-3");
|
|
1309 defsymbol (&Qlatin_iso8859_4, "latin-iso8859-4");
|
398
|
1310 defsymbol (&Qthai_tis620, "thai-tis620");
|
|
1311 defsymbol (&Qgreek_iso8859_7, "greek-iso8859-7");
|
74
|
1312 defsymbol (&Qarabic_iso8859_6, "arabic-iso8859-6");
|
|
1313 defsymbol (&Qhebrew_iso8859_8, "hebrew-iso8859-8");
|
|
1314 defsymbol (&Qkatakana_jisx0201, "katakana-jisx0201");
|
|
1315 defsymbol (&Qlatin_jisx0201, "latin-jisx0201");
|
398
|
1316 defsymbol (&Qcyrillic_iso8859_5, "cyrillic-iso8859-5");
|
|
1317 defsymbol (&Qlatin_iso8859_9, "latin-iso8859-9");
|
70
|
1318 defsymbol (&Qjapanese_jisx0208_1978, "japanese-jisx0208-1978");
|
398
|
1319 defsymbol (&Qchinese_gb2312, "chinese-gb2312");
|
70
|
1320 defsymbol (&Qjapanese_jisx0208, "japanese-jisx0208");
|
398
|
1321 defsymbol (&Qkorean_ksc5601, "korean-ksc5601");
|
70
|
1322 defsymbol (&Qjapanese_jisx0212, "japanese-jisx0212");
|
398
|
1323 defsymbol (&Qchinese_cns11643_1, "chinese-cns11643-1");
|
|
1324 defsymbol (&Qchinese_cns11643_2, "chinese-cns11643-2");
|
74
|
1325 defsymbol (&Qchinese_big5_1, "chinese-big5-1");
|
|
1326 defsymbol (&Qchinese_big5_2, "chinese-big5-2");
|
183
|
1327
|
74
|
1328 defsymbol (&Qcomposite, "composite");
|
70
|
1329 }
|
|
1330
|
|
1331 void
|
|
1332 vars_of_mule_charset (void)
|
|
1333 {
|
|
1334 int i, j, k;
|
|
1335
|
398
|
1336 chlook = xnew (struct charset_lookup);
|
|
1337 dumpstruct (&chlook, &charset_lookup_description);
|
|
1338
|
183
|
1339 /* Table of charsets indexed by leading byte. */
|
398
|
1340 for (i = 0; i < countof (chlook->charset_by_leading_byte); i++)
|
|
1341 chlook->charset_by_leading_byte[i] = Qnil;
|
183
|
1342
|
|
1343 /* Table of charsets indexed by type/final-byte/direction. */
|
398
|
1344 for (i = 0; i < countof (chlook->charset_by_attributes); i++)
|
|
1345 for (j = 0; j < countof (chlook->charset_by_attributes[0]); j++)
|
|
1346 for (k = 0; k < countof (chlook->charset_by_attributes[0][0]); k++)
|
|
1347 chlook->charset_by_attributes[i][j][k] = Qnil;
|
70
|
1348
|
|
1349 next_allocated_1_byte_leading_byte = MIN_LEADING_BYTE_PRIVATE_1;
|
|
1350 next_allocated_2_byte_leading_byte = MIN_LEADING_BYTE_PRIVATE_2;
|
|
1351 }
|
|
1352
|
|
1353 void
|
|
1354 complex_vars_of_mule_charset (void)
|
|
1355 {
|
380
|
1356 staticpro (&Vcharset_hash_table);
|
|
1357 Vcharset_hash_table =
|
|
1358 make_lisp_hash_table (50, HASH_TABLE_NON_WEAK, HASH_TABLE_EQ);
|
183
|
1359
|
70
|
1360 /* Predefined character sets. We store them into variables for
|
|
1361 ease of access. */
|
|
1362
|
398
|
1363 staticpro (&Vcharset_ascii);
|
70
|
1364 Vcharset_ascii =
|
398
|
1365 make_charset (LEADING_BYTE_ASCII, Qascii, 1,
|
70
|
1366 CHARSET_TYPE_94, 1, 0, 'B',
|
|
1367 CHARSET_LEFT_TO_RIGHT,
|
398
|
1368 build_string ("ASCII"),
|
|
1369 build_string ("ASCII)"),
|
|
1370 build_string ("ASCII (ISO646 IRV)"),
|
|
1371 build_string ("\\(iso8859-[0-9]*\\|-ascii\\)"));
|
|
1372 staticpro (&Vcharset_control_1);
|
70
|
1373 Vcharset_control_1 =
|
398
|
1374 make_charset (LEADING_BYTE_CONTROL_1, Qcontrol_1, 2,
|
377
|
1375 CHARSET_TYPE_94, 1, 1, 0,
|
70
|
1376 CHARSET_LEFT_TO_RIGHT,
|
398
|
1377 build_string ("C1"),
|
70
|
1378 build_string ("Control characters"),
|
398
|
1379 build_string ("Control characters 128-191"),
|
70
|
1380 build_string (""));
|
398
|
1381 staticpro (&Vcharset_latin_iso8859_1);
|
74
|
1382 Vcharset_latin_iso8859_1 =
|
398
|
1383 make_charset (LEADING_BYTE_LATIN_ISO8859_1, Qlatin_iso8859_1, 2,
|
70
|
1384 CHARSET_TYPE_96, 1, 1, 'A',
|
|
1385 CHARSET_LEFT_TO_RIGHT,
|
398
|
1386 build_string ("Latin-1"),
|
|
1387 build_string ("ISO8859-1 (Latin-1)"),
|
|
1388 build_string ("ISO8859-1 (Latin-1)"),
|
78
|
1389 build_string ("iso8859-1"));
|
398
|
1390 staticpro (&Vcharset_latin_iso8859_2);
|
74
|
1391 Vcharset_latin_iso8859_2 =
|
398
|
1392 make_charset (LEADING_BYTE_LATIN_ISO8859_2, Qlatin_iso8859_2, 2,
|
70
|
1393 CHARSET_TYPE_96, 1, 1, 'B',
|
|
1394 CHARSET_LEFT_TO_RIGHT,
|
398
|
1395 build_string ("Latin-2"),
|
|
1396 build_string ("ISO8859-2 (Latin-2)"),
|
|
1397 build_string ("ISO8859-2 (Latin-2)"),
|
78
|
1398 build_string ("iso8859-2"));
|
398
|
1399 staticpro (&Vcharset_latin_iso8859_3);
|
74
|
1400 Vcharset_latin_iso8859_3 =
|
398
|
1401 make_charset (LEADING_BYTE_LATIN_ISO8859_3, Qlatin_iso8859_3, 2,
|
70
|
1402 CHARSET_TYPE_96, 1, 1, 'C',
|
|
1403 CHARSET_LEFT_TO_RIGHT,
|
398
|
1404 build_string ("Latin-3"),
|
|
1405 build_string ("ISO8859-3 (Latin-3)"),
|
|
1406 build_string ("ISO8859-3 (Latin-3)"),
|
78
|
1407 build_string ("iso8859-3"));
|
398
|
1408 staticpro (&Vcharset_latin_iso8859_4);
|
74
|
1409 Vcharset_latin_iso8859_4 =
|
398
|
1410 make_charset (LEADING_BYTE_LATIN_ISO8859_4, Qlatin_iso8859_4, 2,
|
70
|
1411 CHARSET_TYPE_96, 1, 1, 'D',
|
|
1412 CHARSET_LEFT_TO_RIGHT,
|
398
|
1413 build_string ("Latin-4"),
|
|
1414 build_string ("ISO8859-4 (Latin-4)"),
|
|
1415 build_string ("ISO8859-4 (Latin-4)"),
|
78
|
1416 build_string ("iso8859-4"));
|
398
|
1417 staticpro (&Vcharset_thai_tis620);
|
74
|
1418 Vcharset_thai_tis620 =
|
398
|
1419 make_charset (LEADING_BYTE_THAI_TIS620, Qthai_tis620, 2,
|
70
|
1420 CHARSET_TYPE_96, 1, 1, 'T',
|
|
1421 CHARSET_LEFT_TO_RIGHT,
|
398
|
1422 build_string ("TIS620"),
|
|
1423 build_string ("TIS620 (Thai)"),
|
|
1424 build_string ("TIS620.2529 (Thai)"),
|
78
|
1425 build_string ("tis620"));
|
398
|
1426 staticpro (&Vcharset_greek_iso8859_7);
|
|
1427 Vcharset_greek_iso8859_7 =
|
|
1428 make_charset (LEADING_BYTE_GREEK_ISO8859_7, Qgreek_iso8859_7, 2,
|
|
1429 CHARSET_TYPE_96, 1, 1, 'F',
|
|
1430 CHARSET_LEFT_TO_RIGHT,
|
|
1431 build_string ("ISO8859-7"),
|
|
1432 build_string ("ISO8859-7 (Greek)"),
|
|
1433 build_string ("ISO8859-7 (Greek)"),
|
|
1434 build_string ("iso8859-7"));
|
|
1435 staticpro (&Vcharset_arabic_iso8859_6);
|
|
1436 Vcharset_arabic_iso8859_6 =
|
|
1437 make_charset (LEADING_BYTE_ARABIC_ISO8859_6, Qarabic_iso8859_6, 2,
|
|
1438 CHARSET_TYPE_96, 1, 1, 'G',
|
|
1439 CHARSET_RIGHT_TO_LEFT,
|
|
1440 build_string ("ISO8859-6"),
|
|
1441 build_string ("ISO8859-6 (Arabic)"),
|
|
1442 build_string ("ISO8859-6 (Arabic)"),
|
|
1443 build_string ("iso8859-6"));
|
|
1444 staticpro (&Vcharset_hebrew_iso8859_8);
|
|
1445 Vcharset_hebrew_iso8859_8 =
|
|
1446 make_charset (LEADING_BYTE_HEBREW_ISO8859_8, Qhebrew_iso8859_8, 2,
|
|
1447 CHARSET_TYPE_96, 1, 1, 'H',
|
|
1448 CHARSET_RIGHT_TO_LEFT,
|
|
1449 build_string ("ISO8859-8"),
|
|
1450 build_string ("ISO8859-8 (Hebrew)"),
|
|
1451 build_string ("ISO8859-8 (Hebrew)"),
|
|
1452 build_string ("iso8859-8"));
|
|
1453 staticpro (&Vcharset_katakana_jisx0201);
|
74
|
1454 Vcharset_katakana_jisx0201 =
|
398
|
1455 make_charset (LEADING_BYTE_KATAKANA_JISX0201, Qkatakana_jisx0201, 2,
|
70
|
1456 CHARSET_TYPE_94, 1, 1, 'I',
|
|
1457 CHARSET_LEFT_TO_RIGHT,
|
398
|
1458 build_string ("JISX0201 Kana"),
|
|
1459 build_string ("JISX0201.1976 (Japanese Kana)"),
|
|
1460 build_string ("JISX0201.1976 Japanese Kana"),
|
78
|
1461 build_string ("jisx0201.1976"));
|
398
|
1462 staticpro (&Vcharset_latin_jisx0201);
|
74
|
1463 Vcharset_latin_jisx0201 =
|
398
|
1464 make_charset (LEADING_BYTE_LATIN_JISX0201, Qlatin_jisx0201, 2,
|
70
|
1465 CHARSET_TYPE_94, 1, 0, 'J',
|
|
1466 CHARSET_LEFT_TO_RIGHT,
|
398
|
1467 build_string ("JISX0201 Roman"),
|
|
1468 build_string ("JISX0201.1976 (Japanese Roman)"),
|
|
1469 build_string ("JISX0201.1976 Japanese Roman"),
|
78
|
1470 build_string ("jisx0201.1976"));
|
398
|
1471 staticpro (&Vcharset_cyrillic_iso8859_5);
|
|
1472 Vcharset_cyrillic_iso8859_5 =
|
|
1473 make_charset (LEADING_BYTE_CYRILLIC_ISO8859_5, Qcyrillic_iso8859_5, 2,
|
|
1474 CHARSET_TYPE_96, 1, 1, 'L',
|
|
1475 CHARSET_LEFT_TO_RIGHT,
|
|
1476 build_string ("ISO8859-5"),
|
|
1477 build_string ("ISO8859-5 (Cyrillic)"),
|
|
1478 build_string ("ISO8859-5 (Cyrillic)"),
|
|
1479 build_string ("iso8859-5"));
|
|
1480 staticpro (&Vcharset_latin_iso8859_9);
|
|
1481 Vcharset_latin_iso8859_9 =
|
|
1482 make_charset (LEADING_BYTE_LATIN_ISO8859_9, Qlatin_iso8859_9, 2,
|
|
1483 CHARSET_TYPE_96, 1, 1, 'M',
|
|
1484 CHARSET_LEFT_TO_RIGHT,
|
|
1485 build_string ("Latin-5"),
|
|
1486 build_string ("ISO8859-9 (Latin-5)"),
|
|
1487 build_string ("ISO8859-9 (Latin-5)"),
|
|
1488 build_string ("iso8859-9"));
|
|
1489 staticpro (&Vcharset_japanese_jisx0208_1978);
|
70
|
1490 Vcharset_japanese_jisx0208_1978 =
|
398
|
1491 make_charset (LEADING_BYTE_JAPANESE_JISX0208_1978, Qjapanese_jisx0208_1978, 3,
|
70
|
1492 CHARSET_TYPE_94X94, 2, 0, '@',
|
|
1493 CHARSET_LEFT_TO_RIGHT,
|
398
|
1494 build_string ("JISX0208.1978"),
|
|
1495 build_string ("JISX0208.1978 (Japanese)"),
|
167
|
1496 build_string
|
398
|
1497 ("JISX0208.1978 Japanese Kanji (so called \"old JIS\")"),
|
|
1498 build_string ("\\(jisx0208\\|jisc6226\\)\\.1978"));
|
|
1499 staticpro (&Vcharset_chinese_gb2312);
|
|
1500 Vcharset_chinese_gb2312 =
|
|
1501 make_charset (LEADING_BYTE_CHINESE_GB2312, Qchinese_gb2312, 3,
|
|
1502 CHARSET_TYPE_94X94, 2, 0, 'A',
|
|
1503 CHARSET_LEFT_TO_RIGHT,
|
|
1504 build_string ("GB2312"),
|
|
1505 build_string ("GB2312)"),
|
|
1506 build_string ("GB2312 Chinese simplified"),
|
|
1507 build_string ("gb2312"));
|
|
1508 staticpro (&Vcharset_japanese_jisx0208);
|
70
|
1509 Vcharset_japanese_jisx0208 =
|
398
|
1510 make_charset (LEADING_BYTE_JAPANESE_JISX0208, Qjapanese_jisx0208, 3,
|
70
|
1511 CHARSET_TYPE_94X94, 2, 0, 'B',
|
|
1512 CHARSET_LEFT_TO_RIGHT,
|
398
|
1513 build_string ("JISX0208"),
|
|
1514 build_string ("JISX0208.1983/1990 (Japanese)"),
|
|
1515 build_string ("JISX0208.1983/1990 Japanese Kanji"),
|
78
|
1516 build_string ("jisx0208.19\\(83\\|90\\)"));
|
398
|
1517 staticpro (&Vcharset_korean_ksc5601);
|
|
1518 Vcharset_korean_ksc5601 =
|
|
1519 make_charset (LEADING_BYTE_KOREAN_KSC5601, Qkorean_ksc5601, 3,
|
|
1520 CHARSET_TYPE_94X94, 2, 0, 'C',
|
|
1521 CHARSET_LEFT_TO_RIGHT,
|
|
1522 build_string ("KSC5601"),
|
|
1523 build_string ("KSC5601 (Korean"),
|
|
1524 build_string ("KSC5601 Korean Hangul and Hanja"),
|
|
1525 build_string ("ksc5601"));
|
|
1526 staticpro (&Vcharset_japanese_jisx0212);
|
70
|
1527 Vcharset_japanese_jisx0212 =
|
398
|
1528 make_charset (LEADING_BYTE_JAPANESE_JISX0212, Qjapanese_jisx0212, 3,
|
70
|
1529 CHARSET_TYPE_94X94, 2, 0, 'D',
|
|
1530 CHARSET_LEFT_TO_RIGHT,
|
398
|
1531 build_string ("JISX0212"),
|
|
1532 build_string ("JISX0212 (Japanese)"),
|
|
1533 build_string ("JISX0212 Japanese Supplement"),
|
78
|
1534 build_string ("jisx0212"));
|
70
|
1535
|
78
|
1536 #define CHINESE_CNS_PLANE_RE(n) "cns11643[.-]\\(.*[.-]\\)?" n "$"
|
398
|
1537 staticpro (&Vcharset_chinese_cns11643_1);
|
70
|
1538 Vcharset_chinese_cns11643_1 =
|
398
|
1539 make_charset (LEADING_BYTE_CHINESE_CNS11643_1, Qchinese_cns11643_1, 3,
|
70
|
1540 CHARSET_TYPE_94X94, 2, 0, 'G',
|
|
1541 CHARSET_LEFT_TO_RIGHT,
|
398
|
1542 build_string ("CNS11643-1"),
|
|
1543 build_string ("CNS11643-1 (Chinese traditional)"),
|
167
|
1544 build_string
|
398
|
1545 ("CNS 11643 Plane 1 Chinese traditional"),
|
70
|
1546 build_string (CHINESE_CNS_PLANE_RE("1")));
|
398
|
1547 staticpro (&Vcharset_chinese_cns11643_2);
|
70
|
1548 Vcharset_chinese_cns11643_2 =
|
398
|
1549 make_charset (LEADING_BYTE_CHINESE_CNS11643_2, Qchinese_cns11643_2, 3,
|
70
|
1550 CHARSET_TYPE_94X94, 2, 0, 'H',
|
|
1551 CHARSET_LEFT_TO_RIGHT,
|
398
|
1552 build_string ("CNS11643-2"),
|
|
1553 build_string ("CNS11643-2 (Chinese traditional)"),
|
167
|
1554 build_string
|
398
|
1555 ("CNS 11643 Plane 2 Chinese traditional"),
|
70
|
1556 build_string (CHINESE_CNS_PLANE_RE("2")));
|
398
|
1557 staticpro (&Vcharset_chinese_big5_1);
|
70
|
1558 Vcharset_chinese_big5_1 =
|
398
|
1559 make_charset (LEADING_BYTE_CHINESE_BIG5_1, Qchinese_big5_1, 3,
|
70
|
1560 CHARSET_TYPE_94X94, 2, 0, '0',
|
|
1561 CHARSET_LEFT_TO_RIGHT,
|
398
|
1562 build_string ("Big5"),
|
|
1563 build_string ("Big5 (Level-1)"),
|
167
|
1564 build_string
|
398
|
1565 ("Big5 Level-1 Chinese traditional"),
|
78
|
1566 build_string ("big5"));
|
398
|
1567 staticpro (&Vcharset_chinese_big5_2);
|
70
|
1568 Vcharset_chinese_big5_2 =
|
398
|
1569 make_charset (LEADING_BYTE_CHINESE_BIG5_2, Qchinese_big5_2, 3,
|
70
|
1570 CHARSET_TYPE_94X94, 2, 0, '1',
|
|
1571 CHARSET_LEFT_TO_RIGHT,
|
398
|
1572 build_string ("Big5"),
|
|
1573 build_string ("Big5 (Level-2)"),
|
167
|
1574 build_string
|
398
|
1575 ("Big5 Level-2 Chinese traditional"),
|
78
|
1576 build_string ("big5"));
|
70
|
1577
|
396
|
1578
|
|
1579 #ifdef ENABLE_COMPOSITE_CHARS
|
70
|
1580 /* #### For simplicity, we put composite chars into a 96x96 charset.
|
|
1581 This is going to lead to problems because you can run out of
|
|
1582 room, esp. as we don't yet recycle numbers. */
|
398
|
1583 staticpro (&Vcharset_composite);
|
70
|
1584 Vcharset_composite =
|
398
|
1585 make_charset (LEADING_BYTE_COMPOSITE, Qcomposite, 3,
|
70
|
1586 CHARSET_TYPE_96X96, 2, 0, 0,
|
|
1587 CHARSET_LEFT_TO_RIGHT,
|
398
|
1588 build_string ("Composite"),
|
|
1589 build_string ("Composite characters"),
|
70
|
1590 build_string ("Composite characters"),
|
|
1591 build_string (""));
|
|
1592
|
398
|
1593 /* #### not dumped properly */
|
70
|
1594 composite_char_row_next = 32;
|
|
1595 composite_char_col_next = 32;
|
|
1596
|
380
|
1597 Vcomposite_char_string2char_hash_table =
|
|
1598 make_lisp_hash_table (500, HASH_TABLE_NON_WEAK, HASH_TABLE_EQUAL);
|
|
1599 Vcomposite_char_char2string_hash_table =
|
|
1600 make_lisp_hash_table (500, HASH_TABLE_NON_WEAK, HASH_TABLE_EQ);
|
|
1601 staticpro (&Vcomposite_char_string2char_hash_table);
|
|
1602 staticpro (&Vcomposite_char_char2string_hash_table);
|
396
|
1603 #endif /* ENABLE_COMPOSITE_CHARS */
|
70
|
1604
|
|
1605 }
|