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1 /* |
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2 ********************************************************************** |
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3 * Copyright (C) 2010-2012, International Business Machines |
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4 * Corporation and others. All Rights Reserved. |
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5 ********************************************************************** |
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6 * file name: ucnv_ct.c |
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7 * encoding: US-ASCII |
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8 * tab size: 8 (not used) |
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9 * indentation:4 |
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10 * |
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11 * created on: 2010Dec09 |
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12 * created by: Michael Ow |
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13 */ |
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14 |
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15 #include "unicode/utypes.h" |
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16 |
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17 #if !UCONFIG_NO_CONVERSION && !UCONFIG_NO_LEGACY_CONVERSION |
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18 |
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19 #include "unicode/ucnv.h" |
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20 #include "unicode/uset.h" |
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21 #include "unicode/ucnv_err.h" |
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22 #include "unicode/ucnv_cb.h" |
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23 #include "unicode/utf16.h" |
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24 #include "ucnv_imp.h" |
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25 #include "ucnv_bld.h" |
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26 #include "ucnv_cnv.h" |
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27 #include "ucnvmbcs.h" |
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28 #include "cstring.h" |
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29 #include "cmemory.h" |
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30 |
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31 #define LENGTHOF(array) (int32_t)(sizeof(array)/sizeof((array)[0])) |
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32 |
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33 typedef enum { |
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34 INVALID = -2, |
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35 DO_SEARCH = -1, |
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36 |
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37 COMPOUND_TEXT_SINGLE_0 = 0, |
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38 COMPOUND_TEXT_SINGLE_1 = 1, |
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39 COMPOUND_TEXT_SINGLE_2 = 2, |
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40 COMPOUND_TEXT_SINGLE_3 = 3, |
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41 |
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42 COMPOUND_TEXT_DOUBLE_1 = 4, |
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43 COMPOUND_TEXT_DOUBLE_2 = 5, |
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44 COMPOUND_TEXT_DOUBLE_3 = 6, |
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45 COMPOUND_TEXT_DOUBLE_4 = 7, |
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46 COMPOUND_TEXT_DOUBLE_5 = 8, |
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47 COMPOUND_TEXT_DOUBLE_6 = 9, |
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48 COMPOUND_TEXT_DOUBLE_7 = 10, |
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49 |
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50 COMPOUND_TEXT_TRIPLE_DOUBLE = 11, |
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51 |
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52 IBM_915 = 12, |
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53 IBM_916 = 13, |
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54 IBM_914 = 14, |
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55 IBM_874 = 15, |
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56 IBM_912 = 16, |
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57 IBM_913 = 17, |
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58 ISO_8859_14 = 18, |
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59 IBM_923 = 19, |
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60 NUM_OF_CONVERTERS = 20 |
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61 } COMPOUND_TEXT_CONVERTERS; |
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62 |
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63 #define SEARCH_LENGTH 12 |
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64 |
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65 static const uint8_t escSeqCompoundText[NUM_OF_CONVERTERS][5] = { |
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66 /* Single */ |
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67 { 0x1B, 0x2D, 0x41, 0, 0 }, |
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68 { 0x1B, 0x2D, 0x4D, 0, 0 }, |
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69 { 0x1B, 0x2D, 0x46, 0, 0 }, |
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70 { 0x1B, 0x2D, 0x47, 0, 0 }, |
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71 |
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72 /* Double */ |
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73 { 0x1B, 0x24, 0x29, 0x41, 0 }, |
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74 { 0x1B, 0x24, 0x29, 0x42, 0 }, |
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75 { 0x1B, 0x24, 0x29, 0x43, 0 }, |
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76 { 0x1B, 0x24, 0x29, 0x44, 0 }, |
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77 { 0x1B, 0x24, 0x29, 0x47, 0 }, |
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78 { 0x1B, 0x24, 0x29, 0x48, 0 }, |
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79 { 0x1B, 0x24, 0x29, 0x49, 0 }, |
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80 |
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81 /* Triple/Double */ |
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82 { 0x1B, 0x25, 0x47, 0, 0 }, |
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83 |
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84 /*IBM-915*/ |
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85 { 0x1B, 0x2D, 0x4C, 0, 0 }, |
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86 /*IBM-916*/ |
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87 { 0x1B, 0x2D, 0x48, 0, 0 }, |
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88 /*IBM-914*/ |
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89 { 0x1B, 0x2D, 0x44, 0, 0 }, |
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90 /*IBM-874*/ |
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91 { 0x1B, 0x2D, 0x54, 0, 0 }, |
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92 /*IBM-912*/ |
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93 { 0x1B, 0x2D, 0x42, 0, 0 }, |
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94 /* IBM-913 */ |
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95 { 0x1B, 0x2D, 0x43, 0, 0 }, |
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96 /* ISO-8859_14 */ |
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97 { 0x1B, 0x2D, 0x5F, 0, 0 }, |
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98 /* IBM-923 */ |
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99 { 0x1B, 0x2D, 0x62, 0, 0 }, |
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100 }; |
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101 |
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102 #define ESC_START 0x1B |
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103 |
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104 #define isASCIIRange(codepoint) \ |
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105 ((codepoint == 0x0000) || (codepoint == 0x0009) || (codepoint == 0x000A) || \ |
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106 (codepoint >= 0x0020 && codepoint <= 0x007f) || (codepoint >= 0x00A0 && codepoint <= 0x00FF)) |
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107 |
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108 #define isIBM915(codepoint) \ |
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109 ((codepoint >= 0x0401 && codepoint <= 0x045F) || (codepoint == 0x2116)) |
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110 |
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111 #define isIBM916(codepoint) \ |
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112 ((codepoint >= 0x05D0 && codepoint <= 0x05EA) || (codepoint == 0x2017) || (codepoint == 0x203E)) |
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113 |
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114 #define isCompoundS3(codepoint) \ |
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115 ((codepoint == 0x060C) || (codepoint == 0x061B) || (codepoint == 0x061F) || (codepoint >= 0x0621 && codepoint <= 0x063A) || \ |
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116 (codepoint >= 0x0640 && codepoint <= 0x0652) || (codepoint >= 0x0660 && codepoint <= 0x066D) || (codepoint == 0x200B) || \ |
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117 (codepoint >= 0x0FE70 && codepoint <= 0x0FE72) || (codepoint == 0x0FE74) || (codepoint >= 0x0FE76 && codepoint <= 0x0FEBE)) |
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118 |
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119 #define isCompoundS2(codepoint) \ |
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120 ((codepoint == 0x02BC) || (codepoint == 0x02BD) || (codepoint >= 0x0384 && codepoint <= 0x03CE) || (codepoint == 0x2015)) |
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121 |
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122 #define isIBM914(codepoint) \ |
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123 ((codepoint == 0x0100) || (codepoint == 0x0101) || (codepoint == 0x0112) || (codepoint == 0x0113) || (codepoint == 0x0116) || (codepoint == 0x0117) || \ |
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124 (codepoint == 0x0122) || (codepoint == 0x0123) || (codepoint >= 0x0128 && codepoint <= 0x012B) || (codepoint == 0x012E) || (codepoint == 0x012F) || \ |
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125 (codepoint >= 0x0136 && codepoint <= 0x0138) || (codepoint == 0x013B) || (codepoint == 0x013C) || (codepoint == 0x0145) || (codepoint == 0x0146) || \ |
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126 (codepoint >= 0x014A && codepoint <= 0x014D) || (codepoint == 0x0156) || (codepoint == 0x0157) || (codepoint >= 0x0166 && codepoint <= 0x016B) || \ |
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127 (codepoint == 0x0172) || (codepoint == 0x0173)) |
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128 |
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129 #define isIBM874(codepoint) \ |
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130 ((codepoint >= 0x0E01 && codepoint <= 0x0E3A) || (codepoint >= 0x0E3F && codepoint <= 0x0E5B)) |
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131 |
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132 #define isIBM912(codepoint) \ |
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133 ((codepoint >= 0x0102 && codepoint <= 0x0107) || (codepoint >= 0x010C && codepoint <= 0x0111) || (codepoint >= 0x0118 && codepoint <= 0x011B) || \ |
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134 (codepoint == 0x0139) || (codepoint == 0x013A) || (codepoint == 0x013D) || (codepoint == 0x013E) || (codepoint >= 0x0141 && codepoint <= 0x0144) || \ |
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135 (codepoint == 0x0147) || (codepoint == 0x0147) || (codepoint == 0x0150) || (codepoint == 0x0151) || (codepoint == 0x0154) || (codepoint == 0x0155) || \ |
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136 (codepoint >= 0x0158 && codepoint <= 0x015B) || (codepoint == 0x015E) || (codepoint == 0x015F) || (codepoint >= 0x0160 && codepoint <= 0x0165) || \ |
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137 (codepoint == 0x016E) || (codepoint == 0x016F) || (codepoint == 0x0170) || (codepoint == 0x0171) || (codepoint >= 0x0179 && codepoint <= 0x017E) || \ |
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138 (codepoint == 0x02C7) || (codepoint == 0x02D8) || (codepoint == 0x02D9) || (codepoint == 0x02DB) || (codepoint == 0x02DD)) |
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139 |
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140 #define isIBM913(codepoint) \ |
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141 ((codepoint >= 0x0108 && codepoint <= 0x010B) || (codepoint == 0x011C) || \ |
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142 (codepoint == 0x011D) || (codepoint == 0x0120) || (codepoint == 0x0121) || \ |
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143 (codepoint >= 0x0124 && codepoint <= 0x0127) || (codepoint == 0x0134) || (codepoint == 0x0135) || \ |
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144 (codepoint == 0x015C) || (codepoint == 0x015D) || (codepoint == 0x016C) || (codepoint == 0x016D)) |
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145 |
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146 #define isCompoundS1(codepoint) \ |
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147 ((codepoint == 0x011E) || (codepoint == 0x011F) || (codepoint == 0x0130) || \ |
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148 (codepoint == 0x0131) || (codepoint >= 0x0218 && codepoint <= 0x021B)) |
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149 |
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150 #define isISO8859_14(codepoint) \ |
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151 ((codepoint >= 0x0174 && codepoint <= 0x0177) || (codepoint == 0x1E0A) || \ |
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152 (codepoint == 0x1E0B) || (codepoint == 0x1E1E) || (codepoint == 0x1E1F) || \ |
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153 (codepoint == 0x1E40) || (codepoint == 0x1E41) || (codepoint == 0x1E56) || \ |
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154 (codepoint == 0x1E57) || (codepoint == 0x1E60) || (codepoint == 0x1E61) || \ |
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155 (codepoint == 0x1E6A) || (codepoint == 0x1E6B) || (codepoint == 0x1EF2) || \ |
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156 (codepoint == 0x1EF3) || (codepoint >= 0x1E80 && codepoint <= 0x1E85)) |
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157 |
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158 #define isIBM923(codepoint) \ |
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159 ((codepoint == 0x0152) || (codepoint == 0x0153) || (codepoint == 0x0178) || (codepoint == 0x20AC)) |
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160 |
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161 |
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162 typedef struct{ |
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163 UConverterSharedData *myConverterArray[NUM_OF_CONVERTERS]; |
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164 COMPOUND_TEXT_CONVERTERS state; |
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165 } UConverterDataCompoundText; |
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166 |
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167 /*********** Compound Text Converter Protos ***********/ |
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168 static void |
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169 _CompoundTextOpen(UConverter *cnv, UConverterLoadArgs *pArgs, UErrorCode *errorCode); |
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170 |
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171 static void |
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172 _CompoundTextClose(UConverter *converter); |
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173 |
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174 static void |
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175 _CompoundTextReset(UConverter *converter, UConverterResetChoice choice); |
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176 |
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177 static const char* |
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178 _CompoundTextgetName(const UConverter* cnv); |
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179 |
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180 |
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181 static int32_t findNextEsc(const char *source, const char *sourceLimit) { |
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182 int32_t length = sourceLimit - source; |
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183 int32_t i; |
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184 for (i = 1; i < length; i++) { |
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185 if (*(source + i) == 0x1B) { |
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186 return i; |
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187 } |
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188 } |
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189 |
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190 return length; |
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191 } |
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192 |
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193 static COMPOUND_TEXT_CONVERTERS getState(int codepoint) { |
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194 COMPOUND_TEXT_CONVERTERS state = DO_SEARCH; |
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195 |
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196 if (isASCIIRange(codepoint)) { |
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197 state = COMPOUND_TEXT_SINGLE_0; |
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198 } else if (isIBM912(codepoint)) { |
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199 state = IBM_912; |
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200 }else if (isIBM913(codepoint)) { |
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201 state = IBM_913; |
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202 } else if (isISO8859_14(codepoint)) { |
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203 state = ISO_8859_14; |
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204 } else if (isIBM923(codepoint)) { |
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205 state = IBM_923; |
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206 } else if (isIBM874(codepoint)) { |
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207 state = IBM_874; |
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208 } else if (isIBM914(codepoint)) { |
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209 state = IBM_914; |
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210 } else if (isCompoundS2(codepoint)) { |
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211 state = COMPOUND_TEXT_SINGLE_2; |
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212 } else if (isCompoundS3(codepoint)) { |
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213 state = COMPOUND_TEXT_SINGLE_3; |
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214 } else if (isIBM916(codepoint)) { |
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215 state = IBM_916; |
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216 } else if (isIBM915(codepoint)) { |
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217 state = IBM_915; |
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218 } else if (isCompoundS1(codepoint)) { |
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219 state = COMPOUND_TEXT_SINGLE_1; |
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220 } |
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221 |
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222 return state; |
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223 } |
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224 |
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225 static COMPOUND_TEXT_CONVERTERS findStateFromEscSeq(const char* source, const char* sourceLimit, const uint8_t* toUBytesBuffer, int32_t toUBytesBufferLength, UErrorCode *err) { |
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226 COMPOUND_TEXT_CONVERTERS state = INVALID; |
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227 UBool matchFound = FALSE; |
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228 int32_t i, n, offset = toUBytesBufferLength; |
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229 |
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230 for (i = 0; i < NUM_OF_CONVERTERS; i++) { |
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231 matchFound = TRUE; |
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232 for (n = 0; escSeqCompoundText[i][n] != 0; n++) { |
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233 if (n < toUBytesBufferLength) { |
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234 if (toUBytesBuffer[n] != escSeqCompoundText[i][n]) { |
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235 matchFound = FALSE; |
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236 break; |
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237 } |
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238 } else if ((source + (n - offset)) >= sourceLimit) { |
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239 *err = U_TRUNCATED_CHAR_FOUND; |
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240 matchFound = FALSE; |
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241 break; |
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242 } else if (*(source + (n - offset)) != escSeqCompoundText[i][n]) { |
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243 matchFound = FALSE; |
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244 break; |
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245 } |
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246 } |
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247 |
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248 if (matchFound) { |
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249 break; |
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250 } |
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251 } |
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252 |
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253 if (matchFound) { |
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254 state = (COMPOUND_TEXT_CONVERTERS)i; |
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255 } |
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256 |
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257 return state; |
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258 } |
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259 |
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260 static void |
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261 _CompoundTextOpen(UConverter *cnv, UConverterLoadArgs *pArgs, UErrorCode *errorCode){ |
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262 cnv->extraInfo = uprv_malloc (sizeof (UConverterDataCompoundText)); |
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263 if (cnv->extraInfo != NULL) { |
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264 UConverterDataCompoundText *myConverterData = (UConverterDataCompoundText *) cnv->extraInfo; |
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265 |
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266 UConverterNamePieces stackPieces; |
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267 UConverterLoadArgs stackArgs={ (int32_t)sizeof(UConverterLoadArgs) }; |
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268 |
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269 myConverterData->myConverterArray[COMPOUND_TEXT_SINGLE_0] = NULL; |
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270 myConverterData->myConverterArray[COMPOUND_TEXT_SINGLE_1] = ucnv_loadSharedData("icu-internal-compound-s1", &stackPieces, &stackArgs, errorCode); |
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271 myConverterData->myConverterArray[COMPOUND_TEXT_SINGLE_2] = ucnv_loadSharedData("icu-internal-compound-s2", &stackPieces, &stackArgs, errorCode); |
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272 myConverterData->myConverterArray[COMPOUND_TEXT_SINGLE_3] = ucnv_loadSharedData("icu-internal-compound-s3", &stackPieces, &stackArgs, errorCode); |
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273 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_1] = ucnv_loadSharedData("icu-internal-compound-d1", &stackPieces, &stackArgs, errorCode); |
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274 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_2] = ucnv_loadSharedData("icu-internal-compound-d2", &stackPieces, &stackArgs, errorCode); |
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275 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_3] = ucnv_loadSharedData("icu-internal-compound-d3", &stackPieces, &stackArgs, errorCode); |
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276 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_4] = ucnv_loadSharedData("icu-internal-compound-d4", &stackPieces, &stackArgs, errorCode); |
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277 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_5] = ucnv_loadSharedData("icu-internal-compound-d5", &stackPieces, &stackArgs, errorCode); |
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278 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_6] = ucnv_loadSharedData("icu-internal-compound-d6", &stackPieces, &stackArgs, errorCode); |
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279 myConverterData->myConverterArray[COMPOUND_TEXT_DOUBLE_7] = ucnv_loadSharedData("icu-internal-compound-d7", &stackPieces, &stackArgs, errorCode); |
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280 myConverterData->myConverterArray[COMPOUND_TEXT_TRIPLE_DOUBLE] = ucnv_loadSharedData("icu-internal-compound-t", &stackPieces, &stackArgs, errorCode); |
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281 |
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282 myConverterData->myConverterArray[IBM_915] = ucnv_loadSharedData("ibm-915_P100-1995", &stackPieces, &stackArgs, errorCode); |
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283 myConverterData->myConverterArray[IBM_916] = ucnv_loadSharedData("ibm-916_P100-1995", &stackPieces, &stackArgs, errorCode); |
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284 myConverterData->myConverterArray[IBM_914] = ucnv_loadSharedData("ibm-914_P100-1995", &stackPieces, &stackArgs, errorCode); |
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285 myConverterData->myConverterArray[IBM_874] = ucnv_loadSharedData("ibm-874_P100-1995", &stackPieces, &stackArgs, errorCode); |
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286 myConverterData->myConverterArray[IBM_912] = ucnv_loadSharedData("ibm-912_P100-1995", &stackPieces, &stackArgs, errorCode); |
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287 myConverterData->myConverterArray[IBM_913] = ucnv_loadSharedData("ibm-913_P100-2000", &stackPieces, &stackArgs, errorCode); |
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288 myConverterData->myConverterArray[ISO_8859_14] = ucnv_loadSharedData("iso-8859_14-1998", &stackPieces, &stackArgs, errorCode); |
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289 myConverterData->myConverterArray[IBM_923] = ucnv_loadSharedData("ibm-923_P100-1998", &stackPieces, &stackArgs, errorCode); |
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290 |
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291 if (U_FAILURE(*errorCode) || pArgs->onlyTestIsLoadable) { |
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292 _CompoundTextClose(cnv); |
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293 return; |
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294 } |
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295 |
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296 myConverterData->state = (COMPOUND_TEXT_CONVERTERS)0; |
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297 } else { |
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298 *errorCode = U_MEMORY_ALLOCATION_ERROR; |
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299 } |
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300 } |
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301 |
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302 |
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303 static void |
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304 _CompoundTextClose(UConverter *converter) { |
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305 UConverterDataCompoundText* myConverterData = (UConverterDataCompoundText*)(converter->extraInfo); |
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306 int32_t i; |
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307 |
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308 if (converter->extraInfo != NULL) { |
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309 /*close the array of converter pointers and free the memory*/ |
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310 for (i = 0; i < NUM_OF_CONVERTERS; i++) { |
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311 if (myConverterData->myConverterArray[i] != NULL) { |
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312 ucnv_unloadSharedDataIfReady(myConverterData->myConverterArray[i]); |
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313 } |
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314 } |
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315 |
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316 uprv_free(converter->extraInfo); |
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317 } |
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318 } |
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319 |
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320 static void |
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321 _CompoundTextReset(UConverter *converter, UConverterResetChoice choice) { |
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322 } |
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323 |
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324 static const char* |
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325 _CompoundTextgetName(const UConverter* cnv){ |
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326 return "x11-compound-text"; |
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327 } |
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328 |
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329 static void |
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330 UConverter_fromUnicode_CompoundText_OFFSETS(UConverterFromUnicodeArgs* args, UErrorCode* err){ |
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331 UConverter *cnv = args->converter; |
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332 uint8_t *target = (uint8_t *) args->target; |
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333 const uint8_t *targetLimit = (const uint8_t *) args->targetLimit; |
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334 const UChar* source = args->source; |
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335 const UChar* sourceLimit = args->sourceLimit; |
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336 /* int32_t* offsets = args->offsets; */ |
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337 UChar32 sourceChar; |
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338 UBool useFallback = cnv->useFallback; |
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339 uint8_t tmpTargetBuffer[7]; |
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340 int32_t tmpTargetBufferLength = 0; |
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341 COMPOUND_TEXT_CONVERTERS currentState, tmpState; |
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342 uint32_t pValue; |
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343 int32_t pValueLength = 0; |
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344 int32_t i, n, j; |
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345 |
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346 UConverterDataCompoundText *myConverterData = (UConverterDataCompoundText *) cnv->extraInfo; |
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347 |
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348 currentState = myConverterData->state; |
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349 |
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350 /* check if the last codepoint of previous buffer was a lead surrogate*/ |
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351 if((sourceChar = cnv->fromUChar32)!=0 && target< targetLimit) { |
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352 goto getTrail; |
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353 } |
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354 |
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355 while( source < sourceLimit){ |
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356 if(target < targetLimit){ |
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357 |
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358 sourceChar = *(source++); |
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359 /*check if the char is a First surrogate*/ |
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360 if(U16_IS_SURROGATE(sourceChar)) { |
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361 if(U16_IS_SURROGATE_LEAD(sourceChar)) { |
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362 getTrail: |
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363 /*look ahead to find the trail surrogate*/ |
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364 if(source < sourceLimit) { |
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365 /* test the following code unit */ |
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366 UChar trail=(UChar) *source; |
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367 if(U16_IS_TRAIL(trail)) { |
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368 source++; |
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369 sourceChar=U16_GET_SUPPLEMENTARY(sourceChar, trail); |
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370 cnv->fromUChar32=0x00; |
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371 /* convert this supplementary code point */ |
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372 /* exit this condition tree */ |
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373 } else { |
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374 /* this is an unmatched lead code unit (1st surrogate) */ |
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375 /* callback(illegal) */ |
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376 *err=U_ILLEGAL_CHAR_FOUND; |
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377 cnv->fromUChar32=sourceChar; |
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378 break; |
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379 } |
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380 } else { |
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381 /* no more input */ |
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382 cnv->fromUChar32=sourceChar; |
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383 break; |
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384 } |
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385 } else { |
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386 /* this is an unmatched trail code unit (2nd surrogate) */ |
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387 /* callback(illegal) */ |
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388 *err=U_ILLEGAL_CHAR_FOUND; |
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389 cnv->fromUChar32=sourceChar; |
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390 break; |
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391 } |
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392 } |
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393 |
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394 tmpTargetBufferLength = 0; |
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395 tmpState = getState(sourceChar); |
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396 |
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397 if (tmpState != DO_SEARCH && currentState != tmpState) { |
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398 /* Get escape sequence if necessary */ |
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399 currentState = tmpState; |
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400 for (i = 0; escSeqCompoundText[currentState][i] != 0; i++) { |
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401 tmpTargetBuffer[tmpTargetBufferLength++] = escSeqCompoundText[currentState][i]; |
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402 } |
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403 } |
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404 |
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405 if (tmpState == DO_SEARCH) { |
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406 /* Test all available converters */ |
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407 for (i = 1; i < SEARCH_LENGTH; i++) { |
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408 pValueLength = ucnv_MBCSFromUChar32(myConverterData->myConverterArray[i], sourceChar, &pValue, useFallback); |
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409 if (pValueLength > 0) { |
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410 tmpState = (COMPOUND_TEXT_CONVERTERS)i; |
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411 if (currentState != tmpState) { |
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412 currentState = tmpState; |
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413 for (j = 0; escSeqCompoundText[currentState][j] != 0; j++) { |
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414 tmpTargetBuffer[tmpTargetBufferLength++] = escSeqCompoundText[currentState][j]; |
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415 } |
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416 } |
|
417 for (n = (pValueLength - 1); n >= 0; n--) { |
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418 tmpTargetBuffer[tmpTargetBufferLength++] = (uint8_t)(pValue >> (n * 8)); |
|
419 } |
|
420 break; |
|
421 } |
|
422 } |
|
423 } else if (tmpState == COMPOUND_TEXT_SINGLE_0) { |
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424 tmpTargetBuffer[tmpTargetBufferLength++] = (uint8_t)sourceChar; |
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425 } else { |
|
426 pValueLength = ucnv_MBCSFromUChar32(myConverterData->myConverterArray[currentState], sourceChar, &pValue, useFallback); |
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427 if (pValueLength > 0) { |
|
428 for (n = (pValueLength - 1); n >= 0; n--) { |
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429 tmpTargetBuffer[tmpTargetBufferLength++] = (uint8_t)(pValue >> (n * 8)); |
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430 } |
|
431 } |
|
432 } |
|
433 |
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434 for (i = 0; i < tmpTargetBufferLength; i++) { |
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435 if (target < targetLimit) { |
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436 *target++ = tmpTargetBuffer[i]; |
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437 } else { |
|
438 *err = U_BUFFER_OVERFLOW_ERROR; |
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439 break; |
|
440 } |
|
441 } |
|
442 |
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443 if (*err == U_BUFFER_OVERFLOW_ERROR) { |
|
444 for (; i < tmpTargetBufferLength; i++) { |
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445 args->converter->charErrorBuffer[args->converter->charErrorBufferLength++] = tmpTargetBuffer[i]; |
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446 } |
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447 } |
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448 } else { |
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449 *err = U_BUFFER_OVERFLOW_ERROR; |
|
450 break; |
|
451 } |
|
452 } |
|
453 |
|
454 /*save the state and return */ |
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455 myConverterData->state = currentState; |
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456 args->source = source; |
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457 args->target = (char*)target; |
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458 } |
|
459 |
|
460 |
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461 static void |
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462 UConverter_toUnicode_CompoundText_OFFSETS(UConverterToUnicodeArgs *args, |
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463 UErrorCode* err){ |
|
464 const char *mySource = (char *) args->source; |
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465 UChar *myTarget = args->target; |
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466 const char *mySourceLimit = args->sourceLimit; |
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467 const char *tmpSourceLimit = mySourceLimit; |
|
468 uint32_t mySourceChar = 0x0000; |
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469 COMPOUND_TEXT_CONVERTERS currentState, tmpState; |
|
470 int32_t sourceOffset = 0; |
|
471 UConverterDataCompoundText *myConverterData = (UConverterDataCompoundText *) args->converter->extraInfo; |
|
472 UConverterSharedData* savedSharedData = NULL; |
|
473 |
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474 UConverterToUnicodeArgs subArgs; |
|
475 int32_t minArgsSize; |
|
476 |
|
477 /* set up the subconverter arguments */ |
|
478 if(args->size<sizeof(UConverterToUnicodeArgs)) { |
|
479 minArgsSize = args->size; |
|
480 } else { |
|
481 minArgsSize = (int32_t)sizeof(UConverterToUnicodeArgs); |
|
482 } |
|
483 |
|
484 uprv_memcpy(&subArgs, args, minArgsSize); |
|
485 subArgs.size = (uint16_t)minArgsSize; |
|
486 |
|
487 currentState = tmpState = myConverterData->state; |
|
488 |
|
489 while(mySource < mySourceLimit){ |
|
490 if(myTarget < args->targetLimit){ |
|
491 if (args->converter->toULength > 0) { |
|
492 mySourceChar = args->converter->toUBytes[0]; |
|
493 } else { |
|
494 mySourceChar = (uint8_t)*mySource; |
|
495 } |
|
496 |
|
497 if (mySourceChar == ESC_START) { |
|
498 tmpState = findStateFromEscSeq(mySource, mySourceLimit, args->converter->toUBytes, args->converter->toULength, err); |
|
499 |
|
500 if (*err == U_TRUNCATED_CHAR_FOUND) { |
|
501 for (; mySource < mySourceLimit;) { |
|
502 args->converter->toUBytes[args->converter->toULength++] = *mySource++; |
|
503 } |
|
504 *err = U_ZERO_ERROR; |
|
505 break; |
|
506 } else if (tmpState == INVALID) { |
|
507 if (args->converter->toULength == 0) { |
|
508 mySource++; /* skip over the 0x1b byte */ |
|
509 } |
|
510 *err = U_ILLEGAL_CHAR_FOUND; |
|
511 break; |
|
512 } |
|
513 |
|
514 if (tmpState != currentState) { |
|
515 currentState = tmpState; |
|
516 } |
|
517 |
|
518 sourceOffset = uprv_strlen((char*)escSeqCompoundText[currentState]) - args->converter->toULength; |
|
519 |
|
520 mySource += sourceOffset; |
|
521 |
|
522 args->converter->toULength = 0; |
|
523 } |
|
524 |
|
525 if (currentState == COMPOUND_TEXT_SINGLE_0) { |
|
526 while (mySource < mySourceLimit) { |
|
527 if (*mySource == ESC_START) { |
|
528 break; |
|
529 } |
|
530 if (myTarget < args->targetLimit) { |
|
531 *myTarget++ = 0x00ff&(*mySource++); |
|
532 } else { |
|
533 *err = U_BUFFER_OVERFLOW_ERROR; |
|
534 break; |
|
535 } |
|
536 } |
|
537 } else if (mySource < mySourceLimit){ |
|
538 sourceOffset = findNextEsc(mySource, mySourceLimit); |
|
539 |
|
540 tmpSourceLimit = mySource + sourceOffset; |
|
541 |
|
542 subArgs.source = mySource; |
|
543 subArgs.sourceLimit = tmpSourceLimit; |
|
544 subArgs.target = myTarget; |
|
545 savedSharedData = subArgs.converter->sharedData; |
|
546 subArgs.converter->sharedData = myConverterData->myConverterArray[currentState]; |
|
547 |
|
548 ucnv_MBCSToUnicodeWithOffsets(&subArgs, err); |
|
549 |
|
550 subArgs.converter->sharedData = savedSharedData; |
|
551 |
|
552 mySource = subArgs.source; |
|
553 myTarget = subArgs.target; |
|
554 |
|
555 if (U_FAILURE(*err)) { |
|
556 if(*err == U_BUFFER_OVERFLOW_ERROR) { |
|
557 if(subArgs.converter->UCharErrorBufferLength > 0) { |
|
558 uprv_memcpy(args->converter->UCharErrorBuffer, subArgs.converter->UCharErrorBuffer, |
|
559 subArgs.converter->UCharErrorBufferLength); |
|
560 } |
|
561 args->converter->UCharErrorBufferLength=subArgs.converter->UCharErrorBufferLength; |
|
562 subArgs.converter->UCharErrorBufferLength = 0; |
|
563 } |
|
564 break; |
|
565 } |
|
566 } |
|
567 } else { |
|
568 *err = U_BUFFER_OVERFLOW_ERROR; |
|
569 break; |
|
570 } |
|
571 } |
|
572 myConverterData->state = currentState; |
|
573 args->target = myTarget; |
|
574 args->source = mySource; |
|
575 } |
|
576 |
|
577 static void |
|
578 _CompoundText_GetUnicodeSet(const UConverter *cnv, |
|
579 const USetAdder *sa, |
|
580 UConverterUnicodeSet which, |
|
581 UErrorCode *pErrorCode) { |
|
582 UConverterDataCompoundText *myConverterData = (UConverterDataCompoundText *)cnv->extraInfo; |
|
583 int32_t i; |
|
584 |
|
585 for (i = 1; i < NUM_OF_CONVERTERS; i++) { |
|
586 ucnv_MBCSGetUnicodeSetForUnicode(myConverterData->myConverterArray[i], sa, which, pErrorCode); |
|
587 } |
|
588 sa->add(sa->set, 0x0000); |
|
589 sa->add(sa->set, 0x0009); |
|
590 sa->add(sa->set, 0x000A); |
|
591 sa->addRange(sa->set, 0x0020, 0x007F); |
|
592 sa->addRange(sa->set, 0x00A0, 0x00FF); |
|
593 } |
|
594 |
|
595 static const UConverterImpl _CompoundTextImpl = { |
|
596 |
|
597 UCNV_COMPOUND_TEXT, |
|
598 |
|
599 NULL, |
|
600 NULL, |
|
601 |
|
602 _CompoundTextOpen, |
|
603 _CompoundTextClose, |
|
604 _CompoundTextReset, |
|
605 |
|
606 UConverter_toUnicode_CompoundText_OFFSETS, |
|
607 UConverter_toUnicode_CompoundText_OFFSETS, |
|
608 UConverter_fromUnicode_CompoundText_OFFSETS, |
|
609 UConverter_fromUnicode_CompoundText_OFFSETS, |
|
610 NULL, |
|
611 |
|
612 NULL, |
|
613 _CompoundTextgetName, |
|
614 NULL, |
|
615 NULL, |
|
616 _CompoundText_GetUnicodeSet |
|
617 }; |
|
618 static const UConverterStaticData _CompoundTextStaticData = { |
|
619 sizeof(UConverterStaticData), |
|
620 "COMPOUND_TEXT", |
|
621 0, |
|
622 UCNV_IBM, |
|
623 UCNV_COMPOUND_TEXT, |
|
624 1, |
|
625 6, |
|
626 { 0xef, 0, 0, 0 }, |
|
627 1, |
|
628 FALSE, |
|
629 FALSE, |
|
630 0, |
|
631 0, |
|
632 { 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 } /* reserved */ |
|
633 }; |
|
634 const UConverterSharedData _CompoundTextData = { |
|
635 sizeof(UConverterSharedData), |
|
636 ~((uint32_t) 0), |
|
637 NULL, |
|
638 NULL, |
|
639 &_CompoundTextStaticData, |
|
640 FALSE, |
|
641 &_CompoundTextImpl, |
|
642 0 |
|
643 }; |
|
644 |
|
645 #endif /* #if !UCONFIG_NO_LEGACY_CONVERSION */ |