| 1 | // © 2016 and later: Unicode, Inc. and others. | 
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| 2 | // License & terms of use: http://www.unicode.org/copyright.html | 
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| 3 | /* | 
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| 4 | ********************************************************************** | 
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| 5 | *   Copyright (C) 1999-2011, International Business Machines | 
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| 6 | *   Corporation and others.  All Rights Reserved. | 
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| 7 | ********************************************************************** | 
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| 8 | *   Date        Name        Description | 
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| 9 | *   11/17/99    aliu        Creation. | 
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| 10 | ********************************************************************** | 
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| 11 | */ | 
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| 12 |  | 
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| 13 | #include "unicode/utypes.h" | 
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| 14 |  | 
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| 15 | #if !UCONFIG_NO_TRANSLITERATION | 
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| 16 |  | 
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| 17 | #include "unicode/rep.h" | 
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| 18 | #include "unicode/unifilt.h" | 
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| 19 | #include "unicode/uniset.h" | 
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| 20 | #include "unicode/utf16.h" | 
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| 21 | #include "rbt_rule.h" | 
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| 22 | #include "rbt_data.h" | 
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| 23 | #include "cmemory.h" | 
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| 24 | #include "strmatch.h" | 
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| 25 | #include "strrepl.h" | 
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| 26 | #include "util.h" | 
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| 27 | #include "putilimp.h" | 
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| 28 |  | 
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| 29 | static const UChar FORWARD_OP[] = {32,62,32,0}; // " > " | 
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| 30 |  | 
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| 31 | U_NAMESPACE_BEGIN | 
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| 32 |  | 
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| 33 | /** | 
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| 34 | * Construct a new rule with the given input, output text, and other | 
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| 35 | * attributes.  A cursor position may be specified for the output text. | 
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| 36 | * @param input input string, including key and optional ante and | 
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| 37 | * post context | 
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| 38 | * @param anteContextPos offset into input to end of ante context, or -1 if | 
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| 39 | * none.  Must be <= input.length() if not -1. | 
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| 40 | * @param postContextPos offset into input to start of post context, or -1 | 
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| 41 | * if none.  Must be <= input.length() if not -1, and must be >= | 
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| 42 | * anteContextPos. | 
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| 43 | * @param output output string | 
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| 44 | * @param cursorPosition offset into output at which cursor is located, or -1 if | 
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| 45 | * none.  If less than zero, then the cursor is placed after the | 
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| 46 | * <code>output</code>; that is, -1 is equivalent to | 
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| 47 | * <code>output.length()</code>.  If greater than | 
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| 48 | * <code>output.length()</code> then an exception is thrown. | 
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| 49 | * @param segs array of UnicodeFunctors corresponding to input pattern | 
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| 50 | * segments, or null if there are none.  The array itself is adopted, | 
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| 51 | * but the pointers within it are not. | 
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| 52 | * @param segsCount number of elements in segs[] | 
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| 53 | * @param anchorStart TRUE if the the rule is anchored on the left to | 
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| 54 | * the context start | 
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| 55 | * @param anchorEnd TRUE if the rule is anchored on the right to the | 
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| 56 | * context limit | 
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| 57 | */ | 
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| 58 | TransliterationRule::TransliterationRule(const UnicodeString& input, | 
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| 59 | int32_t anteContextPos, int32_t postContextPos, | 
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| 60 | const UnicodeString& outputStr, | 
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| 61 | int32_t cursorPosition, int32_t cursorOffset, | 
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| 62 | UnicodeFunctor** segs, | 
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| 63 | int32_t segsCount, | 
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| 64 | UBool anchorStart, UBool anchorEnd, | 
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| 65 | const TransliterationRuleData* theData, | 
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| 66 | UErrorCode& status) : | 
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| 67 | UMemory(), | 
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| 68 | segments(0), | 
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| 69 | data(theData) { | 
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| 70 |  | 
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| 71 | if (U_FAILURE(status)) { | 
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| 72 | return; | 
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| 73 | } | 
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| 74 | // Do range checks only when warranted to save time | 
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| 75 | if (anteContextPos < 0) { | 
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| 76 | anteContextLength = 0; | 
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| 77 | } else { | 
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| 78 | if (anteContextPos > input.length()) { | 
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| 79 | // throw new IllegalArgumentException("Invalid ante context"); | 
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| 80 | status = U_ILLEGAL_ARGUMENT_ERROR; | 
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| 81 | return; | 
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| 82 | } | 
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| 83 | anteContextLength = anteContextPos; | 
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| 84 | } | 
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| 85 | if (postContextPos < 0) { | 
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| 86 | keyLength = input.length() - anteContextLength; | 
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| 87 | } else { | 
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| 88 | if (postContextPos < anteContextLength || | 
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| 89 | postContextPos > input.length()) { | 
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| 90 | // throw new IllegalArgumentException("Invalid post context"); | 
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| 91 | status = U_ILLEGAL_ARGUMENT_ERROR; | 
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| 92 | return; | 
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| 93 | } | 
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| 94 | keyLength = postContextPos - anteContextLength; | 
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| 95 | } | 
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| 96 | if (cursorPosition < 0) { | 
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| 97 | cursorPosition = outputStr.length(); | 
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| 98 | } else if (cursorPosition > outputStr.length()) { | 
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| 99 | // throw new IllegalArgumentException("Invalid cursor position"); | 
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| 100 | status = U_ILLEGAL_ARGUMENT_ERROR; | 
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| 101 | return; | 
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| 102 | } | 
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| 103 | // We don't validate the segments array.  The caller must | 
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| 104 | // guarantee that the segments are well-formed (that is, that | 
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| 105 | // all $n references in the output refer to indices of this | 
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| 106 | // array, and that no array elements are null). | 
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| 107 | this->segments = segs; | 
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| 108 | this->segmentsCount = segsCount; | 
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| 109 |  | 
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| 110 | pattern = input; | 
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| 111 | flags = 0; | 
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| 112 | if (anchorStart) { | 
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| 113 | flags |= ANCHOR_START; | 
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| 114 | } | 
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| 115 | if (anchorEnd) { | 
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| 116 | flags |= ANCHOR_END; | 
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| 117 | } | 
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| 118 |  | 
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| 119 | anteContext = NULL; | 
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| 120 | if (anteContextLength > 0) { | 
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| 121 | anteContext = new StringMatcher(pattern, 0, anteContextLength, | 
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| 122 | FALSE, *data); | 
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| 123 | /* test for NULL */ | 
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| 124 | if (anteContext == 0) { | 
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| 125 | status = U_MEMORY_ALLOCATION_ERROR; | 
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| 126 | return; | 
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| 127 | } | 
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| 128 | } | 
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| 129 |  | 
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| 130 | key = NULL; | 
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| 131 | if (keyLength > 0) { | 
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| 132 | key = new StringMatcher(pattern, anteContextLength, anteContextLength + keyLength, | 
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| 133 | FALSE, *data); | 
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| 134 | /* test for NULL */ | 
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| 135 | if (key == 0) { | 
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| 136 | status = U_MEMORY_ALLOCATION_ERROR; | 
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| 137 | return; | 
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| 138 | } | 
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| 139 | } | 
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| 140 |  | 
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| 141 | int32_t postContextLength = pattern.length() - keyLength - anteContextLength; | 
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| 142 | postContext = NULL; | 
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| 143 | if (postContextLength > 0) { | 
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| 144 | postContext = new StringMatcher(pattern, anteContextLength + keyLength, pattern.length(), | 
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| 145 | FALSE, *data); | 
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| 146 | /* test for NULL */ | 
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| 147 | if (postContext == 0) { | 
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| 148 | status = U_MEMORY_ALLOCATION_ERROR; | 
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| 149 | return; | 
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| 150 | } | 
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| 151 | } | 
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| 152 |  | 
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| 153 | this->output = new StringReplacer(outputStr, cursorPosition + cursorOffset, data); | 
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| 154 | /* test for NULL */ | 
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| 155 | if (this->output == 0) { | 
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| 156 | status = U_MEMORY_ALLOCATION_ERROR; | 
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| 157 | return; | 
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| 158 | } | 
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| 159 | } | 
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| 160 |  | 
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| 161 | /** | 
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| 162 | * Copy constructor. | 
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| 163 | */ | 
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| 164 | TransliterationRule::TransliterationRule(TransliterationRule& other) : | 
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| 165 | UMemory(other), | 
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| 166 | anteContext(NULL), | 
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| 167 | key(NULL), | 
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| 168 | postContext(NULL), | 
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| 169 | pattern(other.pattern), | 
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| 170 | anteContextLength(other.anteContextLength), | 
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| 171 | keyLength(other.keyLength), | 
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| 172 | flags(other.flags), | 
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| 173 | data(other.data) { | 
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| 174 |  | 
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| 175 | segments = NULL; | 
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| 176 | segmentsCount = 0; | 
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| 177 | if (other.segmentsCount > 0) { | 
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| 178 | segments = (UnicodeFunctor **)uprv_malloc(other.segmentsCount * sizeof(UnicodeFunctor *)); | 
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| 179 | uprv_memcpy(segments, other.segments, (size_t)other.segmentsCount*sizeof(segments[0])); | 
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| 180 | } | 
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| 181 |  | 
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| 182 | if (other.anteContext != NULL) { | 
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| 183 | anteContext = other.anteContext->clone(); | 
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| 184 | } | 
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| 185 | if (other.key != NULL) { | 
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| 186 | key = other.key->clone(); | 
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| 187 | } | 
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| 188 | if (other.postContext != NULL) { | 
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| 189 | postContext = other.postContext->clone(); | 
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| 190 | } | 
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| 191 | output = other.output->clone(); | 
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| 192 | } | 
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| 193 |  | 
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| 194 | TransliterationRule::~TransliterationRule() { | 
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| 195 | uprv_free(segments); | 
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| 196 | delete anteContext; | 
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| 197 | delete key; | 
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| 198 | delete postContext; | 
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| 199 | delete output; | 
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| 200 | } | 
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| 201 |  | 
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| 202 | /** | 
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| 203 | * Return the preceding context length.  This method is needed to | 
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| 204 | * support the <code>Transliterator</code> method | 
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| 205 | * <code>getMaximumContextLength()</code>.  Internally, this is | 
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| 206 | * implemented as the anteContextLength, optionally plus one if | 
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| 207 | * there is a start anchor.  The one character anchor gap is | 
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| 208 | * needed to make repeated incremental transliteration with | 
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| 209 | * anchors work. | 
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| 210 | */ | 
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| 211 | int32_t TransliterationRule::getContextLength(void) const { | 
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| 212 | return anteContextLength + ((flags & ANCHOR_START) ? 1 : 0); | 
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| 213 | } | 
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| 214 |  | 
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| 215 | /** | 
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| 216 | * Internal method.  Returns 8-bit index value for this rule. | 
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| 217 | * This is the low byte of the first character of the key, | 
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| 218 | * unless the first character of the key is a set.  If it's a | 
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| 219 | * set, or otherwise can match multiple keys, the index value is -1. | 
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| 220 | */ | 
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| 221 | int16_t TransliterationRule::getIndexValue() const { | 
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| 222 | if (anteContextLength == pattern.length()) { | 
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| 223 | // A pattern with just ante context {such as foo)>bar} can | 
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| 224 | // match any key. | 
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| 225 | return -1; | 
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| 226 | } | 
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| 227 | UChar32 c = pattern.char32At(anteContextLength); | 
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| 228 | return (int16_t)(data->lookupMatcher(c) == NULL ? (c & 0xFF) : -1); | 
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| 229 | } | 
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| 230 |  | 
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| 231 | /** | 
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| 232 | * Internal method.  Returns true if this rule matches the given | 
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| 233 | * index value.  The index value is an 8-bit integer, 0..255, | 
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| 234 | * representing the low byte of the first character of the key. | 
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| 235 | * It matches this rule if it matches the first character of the | 
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| 236 | * key, or if the first character of the key is a set, and the set | 
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| 237 | * contains any character with a low byte equal to the index | 
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| 238 | * value.  If the rule contains only ante context, as in foo)>bar, | 
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| 239 | * then it will match any key. | 
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| 240 | */ | 
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| 241 | UBool TransliterationRule::matchesIndexValue(uint8_t v) const { | 
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| 242 | // Delegate to the key, or if there is none, to the postContext. | 
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| 243 | // If there is neither then we match any key; return true. | 
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| 244 | UnicodeMatcher *m = (key != NULL) ? key : postContext; | 
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| 245 | return (m != NULL) ? m->matchesIndexValue(v) : TRUE; | 
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| 246 | } | 
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| 247 |  | 
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| 248 | /** | 
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| 249 | * Return true if this rule masks another rule.  If r1 masks r2 then | 
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| 250 | * r1 matches any input string that r2 matches.  If r1 masks r2 and r2 masks | 
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| 251 | * r1 then r1 == r2.  Examples: "a>x" masks "ab>y".  "a>x" masks "a[b]>y". | 
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| 252 | * "[c]a>x" masks "[dc]a>y". | 
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| 253 | */ | 
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| 254 | UBool TransliterationRule::masks(const TransliterationRule& r2) const { | 
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| 255 | /* Rule r1 masks rule r2 if the string formed of the | 
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| 256 | * antecontext, key, and postcontext overlaps in the following | 
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| 257 | * way: | 
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| 258 | * | 
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| 259 | * r1:      aakkkpppp | 
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| 260 | * r2:     aaakkkkkpppp | 
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| 261 | *            ^ | 
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| 262 | * | 
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| 263 | * The strings must be aligned at the first character of the | 
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| 264 | * key.  The length of r1 to the left of the alignment point | 
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| 265 | * must be <= the length of r2 to the left; ditto for the | 
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| 266 | * right.  The characters of r1 must equal (or be a superset | 
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| 267 | * of) the corresponding characters of r2.  The superset | 
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| 268 | * operation should be performed to check for UnicodeSet | 
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| 269 | * masking. | 
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| 270 | * | 
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| 271 | * Anchors:  Two patterns that differ only in anchors only | 
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| 272 | * mask one another if they are exactly equal, and r2 has | 
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| 273 | * all the anchors r1 has (optionally, plus some).  Here Y | 
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| 274 | * means the row masks the column, N means it doesn't. | 
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| 275 | * | 
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| 276 | *         ab   ^ab    ab$  ^ab$ | 
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| 277 | *   ab    Y     Y     Y     Y | 
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| 278 | *  ^ab    N     Y     N     Y | 
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| 279 | *   ab$   N     N     Y     Y | 
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| 280 | *  ^ab$   N     N     N     Y | 
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| 281 | * | 
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| 282 | * Post context: {a}b masks ab, but not vice versa, since {a}b | 
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| 283 | * matches everything ab matches, and {a}b matches {|a|}b but ab | 
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| 284 | * does not.  Pre context is different (a{b} does not align with | 
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| 285 | * ab). | 
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| 286 | */ | 
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| 287 |  | 
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| 288 | /* LIMITATION of the current mask algorithm: Some rule | 
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| 289 | * maskings are currently not detected.  For example, | 
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| 290 | * "{Lu}]a>x" masks "A]a>y".  This can be added later. TODO | 
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| 291 | */ | 
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| 292 |  | 
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| 293 | int32_t len = pattern.length(); | 
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| 294 | int32_t left = anteContextLength; | 
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| 295 | int32_t left2 = r2.anteContextLength; | 
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| 296 | int32_t right = len - left; | 
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| 297 | int32_t right2 = r2.pattern.length() - left2; | 
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| 298 | int32_t cachedCompare = r2.pattern.compare(left2 - left, len, pattern); | 
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| 299 |  | 
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| 300 | // TODO Clean this up -- some logic might be combinable with the | 
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| 301 | // next statement. | 
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| 302 |  | 
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| 303 | // Test for anchor masking | 
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| 304 | if (left == left2 && right == right2 && | 
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| 305 | keyLength <= r2.keyLength && | 
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| 306 | 0 == cachedCompare) { | 
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| 307 | // The following boolean logic implements the table above | 
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| 308 | return (flags == r2.flags) || | 
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| 309 | (!(flags & ANCHOR_START) && !(flags & ANCHOR_END)) || | 
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| 310 | ((r2.flags & ANCHOR_START) && (r2.flags & ANCHOR_END)); | 
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| 311 | } | 
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| 312 |  | 
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| 313 | return left <= left2 && | 
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| 314 | (right < right2 || | 
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| 315 | (right == right2 && keyLength <= r2.keyLength)) && | 
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| 316 | (0 == cachedCompare); | 
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| 317 | } | 
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| 318 |  | 
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| 319 | static inline int32_t posBefore(const Replaceable& str, int32_t pos) { | 
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| 320 | return (pos > 0) ? | 
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| 321 | pos - U16_LENGTH(str.char32At(pos-1)) : | 
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| 322 | pos - 1; | 
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| 323 | } | 
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| 324 |  | 
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| 325 | static inline int32_t posAfter(const Replaceable& str, int32_t pos) { | 
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| 326 | return (pos >= 0 && pos < str.length()) ? | 
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| 327 | pos + U16_LENGTH(str.char32At(pos)) : | 
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| 328 | pos + 1; | 
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| 329 | } | 
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| 330 |  | 
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| 331 | /** | 
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| 332 | * Attempt a match and replacement at the given position.  Return | 
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| 333 | * the degree of match between this rule and the given text.  The | 
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| 334 | * degree of match may be mismatch, a partial match, or a full | 
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| 335 | * match.  A mismatch means at least one character of the text | 
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| 336 | * does not match the context or key.  A partial match means some | 
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| 337 | * context and key characters match, but the text is not long | 
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| 338 | * enough to match all of them.  A full match means all context | 
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| 339 | * and key characters match. | 
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| 340 | * | 
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| 341 | * If a full match is obtained, perform a replacement, update pos, | 
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| 342 | * and return U_MATCH.  Otherwise both text and pos are unchanged. | 
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| 343 | * | 
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| 344 | * @param text the text | 
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| 345 | * @param pos the position indices | 
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| 346 | * @param incremental if TRUE, test for partial matches that may | 
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| 347 | * be completed by additional text inserted at pos.limit. | 
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| 348 | * @return one of <code>U_MISMATCH</code>, | 
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| 349 | * <code>U_PARTIAL_MATCH</code>, or <code>U_MATCH</code>.  If | 
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| 350 | * incremental is FALSE then U_PARTIAL_MATCH will not be returned. | 
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| 351 | */ | 
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| 352 | UMatchDegree TransliterationRule::matchAndReplace(Replaceable& text, | 
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| 353 | UTransPosition& pos, | 
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| 354 | UBool incremental) const { | 
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| 355 | // Matching and replacing are done in one method because the | 
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| 356 | // replacement operation needs information obtained during the | 
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| 357 | // match.  Another way to do this is to have the match method | 
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| 358 | // create a match result struct with relevant offsets, and to pass | 
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| 359 | // this into the replace method. | 
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| 360 |  | 
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| 361 | // ============================ MATCH =========================== | 
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| 362 |  | 
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| 363 | // Reset segment match data | 
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| 364 | if (segments != NULL) { | 
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| 365 | for (int32_t i=0; i<segmentsCount; ++i) { | 
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| 366 | ((StringMatcher*) segments[i])->resetMatch(); | 
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| 367 | } | 
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| 368 | } | 
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| 369 |  | 
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| 370 | //    int32_t lenDelta, keyLimit; | 
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| 371 | int32_t keyLimit; | 
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| 372 |  | 
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| 373 | // ------------------------ Ante Context ------------------------ | 
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| 374 |  | 
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| 375 | // A mismatch in the ante context, or with the start anchor, | 
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| 376 | // is an outright U_MISMATCH regardless of whether we are | 
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| 377 | // incremental or not. | 
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| 378 | int32_t oText; // offset into 'text' | 
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| 379 | //    int32_t newStart = 0; | 
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| 380 | int32_t minOText; | 
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| 381 |  | 
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| 382 | // Note (1): We process text in 16-bit code units, rather than | 
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| 383 | // 32-bit code points.  This works because stand-ins are | 
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| 384 | // always in the BMP and because we are doing a literal match | 
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| 385 | // operation, which can be done 16-bits at a time. | 
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| 386 |  | 
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| 387 | int32_t anteLimit = posBefore(text, pos.contextStart); | 
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| 388 |  | 
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| 389 | UMatchDegree match; | 
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| 390 |  | 
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| 391 | // Start reverse match at char before pos.start | 
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| 392 | oText = posBefore(text, pos.start); | 
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| 393 |  | 
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| 394 | if (anteContext != NULL) { | 
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| 395 | match = anteContext->matches(text, oText, anteLimit, FALSE); | 
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| 396 | if (match != U_MATCH) { | 
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| 397 | return U_MISMATCH; | 
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| 398 | } | 
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| 399 | } | 
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| 400 |  | 
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| 401 | minOText = posAfter(text, oText); | 
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| 402 |  | 
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| 403 | // ------------------------ Start Anchor ------------------------ | 
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| 404 |  | 
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| 405 | if (((flags & ANCHOR_START) != 0) && oText != anteLimit) { | 
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| 406 | return U_MISMATCH; | 
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| 407 | } | 
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| 408 |  | 
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| 409 | // -------------------- Key and Post Context -------------------- | 
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| 410 |  | 
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| 411 | oText = pos.start; | 
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| 412 |  | 
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| 413 | if (key != NULL) { | 
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| 414 | match = key->matches(text, oText, pos.limit, incremental); | 
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| 415 | if (match != U_MATCH) { | 
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| 416 | return match; | 
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| 417 | } | 
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| 418 | } | 
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| 419 |  | 
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| 420 | keyLimit = oText; | 
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| 421 |  | 
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| 422 | if (postContext != NULL) { | 
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| 423 | if (incremental && keyLimit == pos.limit) { | 
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| 424 | // The key matches just before pos.limit, and there is | 
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| 425 | // a postContext.  Since we are in incremental mode, | 
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| 426 | // we must assume more characters may be inserted at | 
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| 427 | // pos.limit -- this is a partial match. | 
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| 428 | return U_PARTIAL_MATCH; | 
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| 429 | } | 
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| 430 |  | 
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| 431 | match = postContext->matches(text, oText, pos.contextLimit, incremental); | 
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| 432 | if (match != U_MATCH) { | 
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| 433 | return match; | 
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| 434 | } | 
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| 435 | } | 
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| 436 |  | 
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| 437 | // ------------------------- Stop Anchor ------------------------ | 
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| 438 |  | 
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| 439 | if (((flags & ANCHOR_END)) != 0) { | 
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| 440 | if (oText != pos.contextLimit) { | 
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| 441 | return U_MISMATCH; | 
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| 442 | } | 
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| 443 | if (incremental) { | 
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| 444 | return U_PARTIAL_MATCH; | 
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| 445 | } | 
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| 446 | } | 
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| 447 |  | 
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| 448 | // =========================== REPLACE ========================== | 
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| 449 |  | 
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| 450 | // We have a full match.  The key is between pos.start and | 
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| 451 | // keyLimit. | 
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| 452 |  | 
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| 453 | int32_t newStart; | 
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| 454 | int32_t newLength = output->toReplacer()->replace(text, pos.start, keyLimit, newStart); | 
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| 455 | int32_t lenDelta = newLength - (keyLimit - pos.start); | 
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| 456 |  | 
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| 457 | oText += lenDelta; | 
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| 458 | pos.limit += lenDelta; | 
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| 459 | pos.contextLimit += lenDelta; | 
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| 460 | // Restrict new value of start to [minOText, min(oText, pos.limit)]. | 
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| 461 | pos.start = uprv_max(minOText, uprv_min(uprv_min(oText, pos.limit), newStart)); | 
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| 462 | return U_MATCH; | 
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| 463 | } | 
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| 464 |  | 
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| 465 | /** | 
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| 466 | * Create a source string that represents this rule.  Append it to the | 
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| 467 | * given string. | 
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| 468 | */ | 
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| 469 | UnicodeString& TransliterationRule::toRule(UnicodeString& rule, | 
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| 470 | UBool escapeUnprintable) const { | 
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| 471 |  | 
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| 472 | // Accumulate special characters (and non-specials following them) | 
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| 473 | // into quoteBuf.  Append quoteBuf, within single quotes, when | 
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| 474 | // a non-quoted element must be inserted. | 
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| 475 | UnicodeString str, quoteBuf; | 
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| 476 |  | 
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| 477 | // Do not emit the braces '{' '}' around the pattern if there | 
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| 478 | // is neither anteContext nor postContext. | 
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| 479 | UBool emitBraces = | 
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| 480 | (anteContext != NULL) || (postContext != NULL); | 
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| 481 |  | 
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| 482 | // Emit start anchor | 
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| 483 | if ((flags & ANCHOR_START) != 0) { | 
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| 484 | rule.append((UChar)94/*^*/); | 
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| 485 | } | 
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| 486 |  | 
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| 487 | // Emit the input pattern | 
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| 488 | ICU_Utility::appendToRule(rule, anteContext, escapeUnprintable, quoteBuf); | 
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| 489 |  | 
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| 490 | if (emitBraces) { | 
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| 491 | ICU_Utility::appendToRule(rule, (UChar) 0x007B /*{*/, TRUE, escapeUnprintable, quoteBuf); | 
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| 492 | } | 
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| 493 |  | 
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| 494 | ICU_Utility::appendToRule(rule, key, escapeUnprintable, quoteBuf); | 
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| 495 |  | 
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| 496 | if (emitBraces) { | 
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| 497 | ICU_Utility::appendToRule(rule, (UChar) 0x007D /*}*/, TRUE, escapeUnprintable, quoteBuf); | 
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| 498 | } | 
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| 499 |  | 
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| 500 | ICU_Utility::appendToRule(rule, postContext, escapeUnprintable, quoteBuf); | 
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| 501 |  | 
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| 502 | // Emit end anchor | 
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| 503 | if ((flags & ANCHOR_END) != 0) { | 
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| 504 | rule.append((UChar)36/*$*/); | 
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| 505 | } | 
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| 506 |  | 
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| 507 | ICU_Utility::appendToRule(rule, UnicodeString(TRUE, FORWARD_OP, 3), TRUE, escapeUnprintable, quoteBuf); | 
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| 508 |  | 
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| 509 | // Emit the output pattern | 
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| 510 |  | 
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| 511 | ICU_Utility::appendToRule(rule, output->toReplacer()->toReplacerPattern(str, escapeUnprintable), | 
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| 512 | TRUE, escapeUnprintable, quoteBuf); | 
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| 513 |  | 
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| 514 | ICU_Utility::appendToRule(rule, (UChar) 0x003B /*;*/, TRUE, escapeUnprintable, quoteBuf); | 
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| 515 |  | 
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| 516 | return rule; | 
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| 517 | } | 
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| 518 |  | 
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| 519 | void TransliterationRule::setData(const TransliterationRuleData* d) { | 
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| 520 | data = d; | 
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| 521 | if (anteContext != NULL) anteContext->setData(d); | 
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| 522 | if (postContext != NULL) postContext->setData(d); | 
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| 523 | if (key != NULL) key->setData(d); | 
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| 524 | // assert(output != NULL); | 
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| 525 | output->setData(d); | 
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| 526 | // Don't have to do segments since they are in the context or key | 
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| 527 | } | 
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| 528 |  | 
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| 529 | /** | 
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| 530 | * Union the set of all characters that may be modified by this rule | 
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| 531 | * into the given set. | 
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| 532 | */ | 
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| 533 | void TransliterationRule::addSourceSetTo(UnicodeSet& toUnionTo) const { | 
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| 534 | int32_t limit = anteContextLength + keyLength; | 
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| 535 | for (int32_t i=anteContextLength; i<limit; ) { | 
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| 536 | UChar32 ch = pattern.char32At(i); | 
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| 537 | i += U16_LENGTH(ch); | 
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| 538 | const UnicodeMatcher* matcher = data->lookupMatcher(ch); | 
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| 539 | if (matcher == NULL) { | 
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| 540 | toUnionTo.add(ch); | 
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| 541 | } else { | 
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| 542 | matcher->addMatchSetTo(toUnionTo); | 
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| 543 | } | 
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| 544 | } | 
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| 545 | } | 
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| 546 |  | 
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| 547 | /** | 
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| 548 | * Union the set of all characters that may be emitted by this rule | 
|---|
| 549 | * into the given set. | 
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| 550 | */ | 
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| 551 | void TransliterationRule::addTargetSetTo(UnicodeSet& toUnionTo) const { | 
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| 552 | output->toReplacer()->addReplacementSetTo(toUnionTo); | 
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| 553 | } | 
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| 554 |  | 
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| 555 | U_NAMESPACE_END | 
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| 556 |  | 
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| 557 | #endif /* #if !UCONFIG_NO_TRANSLITERATION */ | 
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| 558 |  | 
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| 559 | //eof | 
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| 560 |  | 
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