| 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/unifilt.h" | 
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| 18 | #include "unicode/uniset.h" | 
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| 19 | #include "cpdtrans.h" | 
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| 20 | #include "uvector.h" | 
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| 21 | #include "tridpars.h" | 
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| 22 | #include "cmemory.h" | 
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| 23 |  | 
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| 24 | // keep in sync with Transliterator | 
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| 25 | //static const UChar ID_SEP   = 0x002D; /*-*/ | 
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| 26 | static const UChar ID_DELIM = 0x003B; /*;*/ | 
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| 27 | static const UChar NEWLINE  = 10; | 
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| 28 |  | 
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| 29 | static const UChar COLON_COLON[] = {0x3A, 0x3A, 0}; //"::" | 
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| 30 |  | 
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| 31 | U_NAMESPACE_BEGIN | 
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| 32 |  | 
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| 33 | const UChar CompoundTransliterator::PASS_STRING[] = { 0x0025, 0x0050, 0x0061, 0x0073, 0x0073, 0 }; // "%Pass" | 
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| 34 |  | 
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| 35 | UOBJECT_DEFINE_RTTI_IMPLEMENTATION(CompoundTransliterator) | 
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| 36 |  | 
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| 37 | /** | 
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| 38 | * Constructs a new compound transliterator given an array of | 
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| 39 | * transliterators.  The array of transliterators may be of any | 
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| 40 | * length, including zero or one, however, useful compound | 
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| 41 | * transliterators have at least two components. | 
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| 42 | * @param transliterators array of <code>Transliterator</code> | 
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| 43 | * objects | 
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| 44 | * @param transliteratorCount The number of | 
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| 45 | * <code>Transliterator</code> objects in transliterators. | 
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| 46 | * @param filter the filter.  Any character for which | 
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| 47 | * <tt>filter.contains()</tt> returns <tt>false</tt> will not be | 
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| 48 | * altered by this transliterator.  If <tt>filter</tt> is | 
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| 49 | * <tt>null</tt> then no filtering is applied. | 
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| 50 | */ | 
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| 51 | CompoundTransliterator::CompoundTransliterator( | 
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| 52 | Transliterator* const transliterators[], | 
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| 53 | int32_t transliteratorCount, | 
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| 54 | UnicodeFilter* adoptedFilter) : | 
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| 55 | Transliterator(joinIDs(transliterators, transliteratorCount), adoptedFilter), | 
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| 56 | trans(0), count(0), numAnonymousRBTs(0)  { | 
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| 57 | setTransliterators(transliterators, transliteratorCount); | 
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| 58 | } | 
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| 59 |  | 
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| 60 | /** | 
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| 61 | * Splits an ID of the form "ID;ID;..." into a compound using each | 
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| 62 | * of the IDs. | 
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| 63 | * @param id of above form | 
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| 64 | * @param forward if false, does the list in reverse order, and | 
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| 65 | * takes the inverse of each ID. | 
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| 66 | */ | 
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| 67 | CompoundTransliterator::CompoundTransliterator(const UnicodeString& id, | 
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| 68 | UTransDirection direction, | 
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| 69 | UnicodeFilter* adoptedFilter, | 
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| 70 | UParseError& /*parseError*/, | 
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| 71 | UErrorCode& status) : | 
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| 72 | Transliterator(id, adoptedFilter), | 
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| 73 | trans(0), numAnonymousRBTs(0) { | 
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| 74 | // TODO add code for parseError...currently unused, but | 
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| 75 | // later may be used by parsing code... | 
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| 76 | init(id, direction, TRUE, status); | 
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| 77 | } | 
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| 78 |  | 
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| 79 | CompoundTransliterator::CompoundTransliterator(const UnicodeString& id, | 
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| 80 | UParseError& /*parseError*/, | 
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| 81 | UErrorCode& status) : | 
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| 82 | Transliterator(id, 0), // set filter to 0 here! | 
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| 83 | trans(0), numAnonymousRBTs(0) { | 
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| 84 | // TODO add code for parseError...currently unused, but | 
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| 85 | // later may be used by parsing code... | 
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| 86 | init(id, UTRANS_FORWARD, TRUE, status); | 
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| 87 | } | 
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| 88 |  | 
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| 89 |  | 
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| 90 | /** | 
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| 91 | * Private constructor for use of TransliteratorAlias | 
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| 92 | */ | 
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| 93 | CompoundTransliterator::CompoundTransliterator(const UnicodeString& newID, | 
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| 94 | UVector& list, | 
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| 95 | UnicodeFilter* adoptedFilter, | 
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| 96 | int32_t anonymousRBTs, | 
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| 97 | UParseError& /*parseError*/, | 
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| 98 | UErrorCode& status) : | 
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| 99 | Transliterator(newID, adoptedFilter), | 
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| 100 | trans(0), numAnonymousRBTs(anonymousRBTs) | 
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| 101 | { | 
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| 102 | init(list, UTRANS_FORWARD, FALSE, status); | 
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| 103 | } | 
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| 104 |  | 
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| 105 | /** | 
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| 106 | * Private constructor for Transliterator from a vector of | 
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| 107 | * transliterators.  The caller is responsible for fixing up the | 
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| 108 | * ID. | 
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| 109 | */ | 
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| 110 | CompoundTransliterator::CompoundTransliterator(UVector& list, | 
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| 111 | UParseError& /*parseError*/, | 
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| 112 | UErrorCode& status) : | 
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| 113 | Transliterator(UnicodeString(), NULL), | 
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| 114 | trans(0), numAnonymousRBTs(0) | 
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| 115 | { | 
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| 116 | // TODO add code for parseError...currently unused, but | 
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| 117 | // later may be used by parsing code... | 
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| 118 | init(list, UTRANS_FORWARD, FALSE, status); | 
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| 119 | // assume caller will fixup ID | 
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| 120 | } | 
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| 121 |  | 
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| 122 | CompoundTransliterator::CompoundTransliterator(UVector& list, | 
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| 123 | int32_t anonymousRBTs, | 
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| 124 | UParseError& /*parseError*/, | 
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| 125 | UErrorCode& status) : | 
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| 126 | Transliterator(UnicodeString(), NULL), | 
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| 127 | trans(0), numAnonymousRBTs(anonymousRBTs) | 
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| 128 | { | 
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| 129 | init(list, UTRANS_FORWARD, FALSE, status); | 
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| 130 | } | 
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| 131 |  | 
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| 132 | /** | 
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| 133 | * Finish constructing a transliterator: only to be called by | 
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| 134 | * constructors.  Before calling init(), set trans and filter to NULL. | 
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| 135 | * @param id the id containing ';'-separated entries | 
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| 136 | * @param direction either FORWARD or REVERSE | 
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| 137 | * @param idSplitPoint the index into id at which the | 
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| 138 | * adoptedSplitTransliterator should be inserted, if there is one, or | 
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| 139 | * -1 if there is none. | 
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| 140 | * @param adoptedSplitTransliterator a transliterator to be inserted | 
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| 141 | * before the entry at offset idSplitPoint in the id string.  May be | 
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| 142 | * NULL to insert no entry. | 
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| 143 | * @param fixReverseID if TRUE, then reconstruct the ID of reverse | 
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| 144 | * entries by calling getID() of component entries.  Some constructors | 
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| 145 | * do not require this because they apply a facade ID anyway. | 
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| 146 | * @param status the error code indicating success or failure | 
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| 147 | */ | 
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| 148 | void CompoundTransliterator::init(const UnicodeString& id, | 
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| 149 | UTransDirection direction, | 
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| 150 | UBool fixReverseID, | 
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| 151 | UErrorCode& status) { | 
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| 152 | // assert(trans == 0); | 
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| 153 |  | 
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| 154 | if (U_FAILURE(status)) { | 
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| 155 | return; | 
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| 156 | } | 
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| 157 |  | 
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| 158 | UVector list(status); | 
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| 159 | UnicodeSet* compoundFilter = NULL; | 
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| 160 | UnicodeString regenID; | 
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| 161 | if (!TransliteratorIDParser::parseCompoundID(id, direction, | 
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| 162 | regenID, list, compoundFilter)) { | 
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| 163 | status = U_INVALID_ID; | 
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| 164 | delete compoundFilter; | 
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| 165 | return; | 
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| 166 | } | 
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| 167 |  | 
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| 168 | TransliteratorIDParser::instantiateList(list, status); | 
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| 169 |  | 
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| 170 | init(list, direction, fixReverseID, status); | 
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| 171 |  | 
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| 172 | if (compoundFilter != NULL) { | 
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| 173 | adoptFilter(compoundFilter); | 
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| 174 | } | 
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| 175 | } | 
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| 176 |  | 
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| 177 | /** | 
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| 178 | * Finish constructing a transliterator: only to be called by | 
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| 179 | * constructors.  Before calling init(), set trans and filter to NULL. | 
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| 180 | * @param list a vector of transliterator objects to be adopted.  It | 
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| 181 | * should NOT be empty.  The list should be in declared order.  That | 
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| 182 | * is, it should be in the FORWARD order; if direction is REVERSE then | 
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| 183 | * the list order will be reversed. | 
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| 184 | * @param direction either FORWARD or REVERSE | 
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| 185 | * @param fixReverseID if TRUE, then reconstruct the ID of reverse | 
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| 186 | * entries by calling getID() of component entries.  Some constructors | 
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| 187 | * do not require this because they apply a facade ID anyway. | 
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| 188 | * @param status the error code indicating success or failure | 
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| 189 | */ | 
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| 190 | void CompoundTransliterator::init(UVector& list, | 
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| 191 | UTransDirection direction, | 
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| 192 | UBool fixReverseID, | 
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| 193 | UErrorCode& status) { | 
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| 194 | // assert(trans == 0); | 
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| 195 |  | 
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| 196 | // Allocate array | 
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| 197 | if (U_SUCCESS(status)) { | 
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| 198 | count = list.size(); | 
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| 199 | trans = (Transliterator **)uprv_malloc(count * sizeof(Transliterator *)); | 
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| 200 | /* test for NULL */ | 
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| 201 | if (trans == 0) { | 
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| 202 | status = U_MEMORY_ALLOCATION_ERROR; | 
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| 203 | return; | 
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| 204 | } | 
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| 205 | } | 
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| 206 |  | 
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| 207 | if (U_FAILURE(status) || trans == 0) { | 
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| 208 | // assert(trans == 0); | 
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| 209 | return; | 
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| 210 | } | 
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| 211 |  | 
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| 212 | // Move the transliterators from the vector into an array. | 
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| 213 | // Reverse the order if necessary. | 
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| 214 | int32_t i; | 
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| 215 | for (i=0; i<count; ++i) { | 
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| 216 | int32_t j = (direction == UTRANS_FORWARD) ? i : count - 1 - i; | 
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| 217 | trans[i] = (Transliterator*) list.elementAt(j); | 
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| 218 | } | 
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| 219 |  | 
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| 220 | // If the direction is UTRANS_REVERSE then we may need to fix the | 
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| 221 | // ID. | 
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| 222 | if (direction == UTRANS_REVERSE && fixReverseID) { | 
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| 223 | UnicodeString newID; | 
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| 224 | for (i=0; i<count; ++i) { | 
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| 225 | if (i > 0) { | 
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| 226 | newID.append(ID_DELIM); | 
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| 227 | } | 
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| 228 | newID.append(trans[i]->getID()); | 
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| 229 | } | 
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| 230 | setID(newID); | 
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| 231 | } | 
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| 232 |  | 
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| 233 | computeMaximumContextLength(); | 
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| 234 | } | 
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| 235 |  | 
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| 236 | /** | 
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| 237 | * Return the IDs of the given list of transliterators, concatenated | 
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| 238 | * with ID_DELIM delimiting them.  Equivalent to the perlish expression | 
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| 239 | * join(ID_DELIM, map($_.getID(), transliterators). | 
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| 240 | */ | 
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| 241 | UnicodeString CompoundTransliterator::joinIDs(Transliterator* const transliterators[], | 
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| 242 | int32_t transCount) { | 
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| 243 | UnicodeString id; | 
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| 244 | for (int32_t i=0; i<transCount; ++i) { | 
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| 245 | if (i > 0) { | 
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| 246 | id.append(ID_DELIM); | 
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| 247 | } | 
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| 248 | id.append(transliterators[i]->getID()); | 
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| 249 | } | 
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| 250 | return id; // Return temporary | 
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| 251 | } | 
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| 252 |  | 
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| 253 | /** | 
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| 254 | * Copy constructor. | 
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| 255 | */ | 
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| 256 | CompoundTransliterator::CompoundTransliterator(const CompoundTransliterator& t) : | 
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| 257 | Transliterator(t), trans(0), count(0), numAnonymousRBTs(-1) { | 
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| 258 | *this = t; | 
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| 259 | } | 
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| 260 |  | 
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| 261 | /** | 
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| 262 | * Destructor | 
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| 263 | */ | 
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| 264 | CompoundTransliterator::~CompoundTransliterator() { | 
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| 265 | freeTransliterators(); | 
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| 266 | } | 
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| 267 |  | 
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| 268 | void CompoundTransliterator::freeTransliterators(void) { | 
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| 269 | if (trans != 0) { | 
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| 270 | for (int32_t i=0; i<count; ++i) { | 
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| 271 | delete trans[i]; | 
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| 272 | } | 
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| 273 | uprv_free(trans); | 
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| 274 | } | 
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| 275 | trans = 0; | 
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| 276 | count = 0; | 
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| 277 | } | 
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| 278 |  | 
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| 279 | /** | 
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| 280 | * Assignment operator. | 
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| 281 | */ | 
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| 282 | CompoundTransliterator& CompoundTransliterator::operator=( | 
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| 283 | const CompoundTransliterator& t) | 
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| 284 | { | 
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| 285 | Transliterator::operator=(t); | 
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| 286 | int32_t i = 0; | 
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| 287 | UBool failed = FALSE; | 
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| 288 | if (trans != NULL) { | 
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| 289 | for (i=0; i<count; ++i) { | 
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| 290 | delete trans[i]; | 
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| 291 | trans[i] = 0; | 
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| 292 | } | 
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| 293 | } | 
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| 294 | if (t.count > count) { | 
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| 295 | if (trans != NULL) { | 
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| 296 | uprv_free(trans); | 
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| 297 | } | 
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| 298 | trans = (Transliterator **)uprv_malloc(t.count * sizeof(Transliterator *)); | 
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| 299 | } | 
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| 300 | count = t.count; | 
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| 301 | if (trans != NULL) { | 
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| 302 | for (i=0; i<count; ++i) { | 
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| 303 | trans[i] = t.trans[i]->clone(); | 
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| 304 | if (trans[i] == NULL) { | 
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| 305 | failed = TRUE; | 
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| 306 | break; | 
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| 307 | } | 
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| 308 | } | 
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| 309 | } | 
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| 310 |  | 
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| 311 | // if memory allocation failed delete backwards trans array | 
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| 312 | if (failed && i > 0) { | 
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| 313 | int32_t n; | 
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| 314 | for (n = i-1; n >= 0; n--) { | 
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| 315 | uprv_free(trans[n]); | 
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| 316 | trans[n] = NULL; | 
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| 317 | } | 
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| 318 | } | 
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| 319 | numAnonymousRBTs = t.numAnonymousRBTs; | 
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| 320 | return *this; | 
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| 321 | } | 
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| 322 |  | 
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| 323 | /** | 
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| 324 | * Transliterator API. | 
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| 325 | */ | 
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| 326 | CompoundTransliterator* CompoundTransliterator::clone() const { | 
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| 327 | return new CompoundTransliterator(*this); | 
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| 328 | } | 
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| 329 |  | 
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| 330 | /** | 
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| 331 | * Returns the number of transliterators in this chain. | 
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| 332 | * @return number of transliterators in this chain. | 
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| 333 | */ | 
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| 334 | int32_t CompoundTransliterator::getCount(void) const { | 
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| 335 | return count; | 
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| 336 | } | 
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| 337 |  | 
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| 338 | /** | 
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| 339 | * Returns the transliterator at the given index in this chain. | 
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| 340 | * @param index index into chain, from 0 to <code>getCount() - 1</code> | 
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| 341 | * @return transliterator at the given index | 
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| 342 | */ | 
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| 343 | const Transliterator& CompoundTransliterator::getTransliterator(int32_t index) const { | 
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| 344 | return *trans[index]; | 
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| 345 | } | 
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| 346 |  | 
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| 347 | void CompoundTransliterator::setTransliterators(Transliterator* const transliterators[], | 
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| 348 | int32_t transCount) { | 
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| 349 | Transliterator** a = (Transliterator **)uprv_malloc(transCount * sizeof(Transliterator *)); | 
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| 350 | if (a == NULL) { | 
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| 351 | return; | 
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| 352 | } | 
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| 353 | int32_t i = 0; | 
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| 354 | UBool failed = FALSE; | 
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| 355 | for (i=0; i<transCount; ++i) { | 
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| 356 | a[i] = transliterators[i]->clone(); | 
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| 357 | if (a[i] == NULL) { | 
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| 358 | failed = TRUE; | 
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| 359 | break; | 
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| 360 | } | 
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| 361 | } | 
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| 362 | if (failed && i > 0) { | 
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| 363 | int32_t n; | 
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| 364 | for (n = i-1; n >= 0; n--) { | 
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| 365 | uprv_free(a[n]); | 
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| 366 | a[n] = NULL; | 
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| 367 | } | 
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| 368 | return; | 
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| 369 | } | 
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| 370 | adoptTransliterators(a, transCount); | 
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| 371 | } | 
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| 372 |  | 
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| 373 | void CompoundTransliterator::adoptTransliterators(Transliterator* adoptedTransliterators[], | 
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| 374 | int32_t transCount) { | 
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| 375 | // First free trans[] and set count to zero.  Once this is done, | 
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| 376 | // orphan the filter.  Set up the new trans[]. | 
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| 377 | freeTransliterators(); | 
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| 378 | trans = adoptedTransliterators; | 
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| 379 | count = transCount; | 
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| 380 | computeMaximumContextLength(); | 
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| 381 | setID(joinIDs(trans, count)); | 
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| 382 | } | 
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| 383 |  | 
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| 384 | /** | 
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| 385 | * Append c to buf, unless buf is empty or buf already ends in c. | 
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| 386 | */ | 
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| 387 | static void _smartAppend(UnicodeString& buf, UChar c) { | 
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| 388 | if (buf.length() != 0 && | 
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| 389 | buf.charAt(buf.length() - 1) != c) { | 
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| 390 | buf.append(c); | 
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| 391 | } | 
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| 392 | } | 
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| 393 |  | 
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| 394 | UnicodeString& CompoundTransliterator::toRules(UnicodeString& rulesSource, | 
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| 395 | UBool escapeUnprintable) const { | 
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| 396 | // We do NOT call toRules() on our component transliterators, in | 
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| 397 | // general.  If we have several rule-based transliterators, this | 
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| 398 | // yields a concatenation of the rules -- not what we want.  We do | 
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| 399 | // handle compound RBT transliterators specially -- those for which | 
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| 400 | // compoundRBTIndex >= 0.  For the transliterator at compoundRBTIndex, | 
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| 401 | // we do call toRules() recursively. | 
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| 402 | rulesSource.truncate(0); | 
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| 403 | if (numAnonymousRBTs >= 1 && getFilter() != NULL) { | 
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| 404 | // If we are a compound RBT and if we have a global | 
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| 405 | // filter, then emit it at the top. | 
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| 406 | UnicodeString pat; | 
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| 407 | rulesSource.append(COLON_COLON, 2).append(getFilter()->toPattern(pat, escapeUnprintable)).append(ID_DELIM); | 
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| 408 | } | 
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| 409 | for (int32_t i=0; i<count; ++i) { | 
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| 410 | UnicodeString rule; | 
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| 411 |  | 
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| 412 | // Anonymous RuleBasedTransliterators (inline rules and | 
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| 413 | // ::BEGIN/::END blocks) are given IDs that begin with | 
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| 414 | // "%Pass": use toRules() to write all the rules to the output | 
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| 415 | // (and insert "::Null;" if we have two in a row) | 
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| 416 | if (trans[i]->getID().startsWith(PASS_STRING, 5)) { | 
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| 417 | trans[i]->toRules(rule, escapeUnprintable); | 
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| 418 | if (numAnonymousRBTs > 1 && i > 0 && trans[i - 1]->getID().startsWith(PASS_STRING, 5)) | 
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| 419 | rule = UNICODE_STRING_SIMPLE( "::Null;") + rule; | 
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| 420 |  | 
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| 421 | // we also use toRules() on CompoundTransliterators (which we | 
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| 422 | // check for by looking for a semicolon in the ID)-- this gets | 
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| 423 | // the list of their child transliterators output in the right | 
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| 424 | // format | 
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| 425 | } else if (trans[i]->getID().indexOf(ID_DELIM) >= 0) { | 
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| 426 | trans[i]->toRules(rule, escapeUnprintable); | 
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| 427 |  | 
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| 428 | // for everything else, use Transliterator::toRules() | 
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| 429 | } else { | 
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| 430 | trans[i]->Transliterator::toRules(rule, escapeUnprintable); | 
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| 431 | } | 
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| 432 | _smartAppend(rulesSource, NEWLINE); | 
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| 433 | rulesSource.append(rule); | 
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| 434 | _smartAppend(rulesSource, ID_DELIM); | 
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| 435 | } | 
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| 436 | return rulesSource; | 
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| 437 | } | 
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| 438 |  | 
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| 439 | /** | 
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| 440 | * Implement Transliterator framework | 
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| 441 | */ | 
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| 442 | void CompoundTransliterator::handleGetSourceSet(UnicodeSet& result) const { | 
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| 443 | UnicodeSet set; | 
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| 444 | result.clear(); | 
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| 445 | for (int32_t i=0; i<count; ++i) { | 
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| 446 | result.addAll(trans[i]->getSourceSet(set)); | 
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| 447 | // Take the example of Hiragana-Latin.  This is really | 
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| 448 | // Hiragana-Katakana; Katakana-Latin.  The source set of | 
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| 449 | // these two is roughly [:Hiragana:] and [:Katakana:]. | 
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| 450 | // But the source set for the entire transliterator is | 
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| 451 | // actually [:Hiragana:] ONLY -- that is, the first | 
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| 452 | // non-empty source set. | 
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| 453 |  | 
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| 454 | // This is a heuristic, and not 100% reliable. | 
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| 455 | if (!result.isEmpty()) { | 
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| 456 | break; | 
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| 457 | } | 
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| 458 | } | 
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| 459 | } | 
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| 460 |  | 
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| 461 | /** | 
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| 462 | * Override Transliterator framework | 
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| 463 | */ | 
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| 464 | UnicodeSet& CompoundTransliterator::getTargetSet(UnicodeSet& result) const { | 
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| 465 | UnicodeSet set; | 
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| 466 | result.clear(); | 
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| 467 | for (int32_t i=0; i<count; ++i) { | 
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| 468 | // This is a heuristic, and not 100% reliable. | 
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| 469 | result.addAll(trans[i]->getTargetSet(set)); | 
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| 470 | } | 
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| 471 | return result; | 
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| 472 | } | 
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| 473 |  | 
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| 474 | /** | 
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| 475 | * Implements {@link Transliterator#handleTransliterate}. | 
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| 476 | */ | 
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| 477 | void CompoundTransliterator::handleTransliterate(Replaceable& text, UTransPosition& index, | 
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| 478 | UBool incremental) const { | 
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| 479 | /* Call each transliterator with the same contextStart and | 
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| 480 | * start, but with the limit as modified | 
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| 481 | * by preceding transliterators.  The start index must be | 
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| 482 | * reset for each transliterator to give each a chance to | 
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| 483 | * transliterate the text.  The initial contextStart index is known | 
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| 484 | * to still point to the same place after each transliterator | 
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| 485 | * is called because each transliterator will not change the | 
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| 486 | * text between contextStart and the initial start index. | 
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| 487 | * | 
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| 488 | * IMPORTANT: After the first transliterator, each subsequent | 
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| 489 | * transliterator only gets to transliterate text committed by | 
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| 490 | * preceding transliterators; that is, the start (output | 
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| 491 | * value) of transliterator i becomes the limit (input value) | 
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| 492 | * of transliterator i+1.  Finally, the overall limit is fixed | 
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| 493 | * up before we return. | 
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| 494 | * | 
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| 495 | * Assumptions we make here: | 
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| 496 | * (1) contextStart <= start <= limit <= contextLimit <= text.length() | 
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| 497 | * (2) start <= start' <= limit'  ;cursor doesn't move back | 
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| 498 | * (3) start <= limit'            ;text before cursor unchanged | 
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| 499 | * - start' is the value of start after calling handleKT | 
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| 500 | * - limit' is the value of limit after calling handleKT | 
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| 501 | */ | 
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| 502 |  | 
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| 503 | /** | 
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| 504 | * Example: 3 transliterators.  This example illustrates the | 
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| 505 | * mechanics we need to implement.  C, S, and L are the contextStart, | 
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| 506 | * start, and limit.  gl is the globalLimit.  contextLimit is | 
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| 507 | * equal to limit throughout. | 
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| 508 | * | 
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| 509 | * 1. h-u, changes hex to Unicode | 
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| 510 | * | 
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| 511 | *    4  7  a  d  0      4  7  a | 
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| 512 | *    abc/u0061/u    =>  abca/u | 
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| 513 | *    C  S       L       C   S L   gl=f->a | 
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| 514 | * | 
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| 515 | * 2. upup, changes "x" to "XX" | 
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| 516 | * | 
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| 517 | *    4  7  a       4  7  a | 
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| 518 | *    abca/u    =>  abcAA/u | 
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| 519 | *    C  SL         C    S | 
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| 520 | *                       L    gl=a->b | 
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| 521 | * 3. u-h, changes Unicode to hex | 
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| 522 | * | 
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| 523 | *    4  7  a        4  7  a  d  0  3 | 
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| 524 | *    abcAA/u    =>  abc/u0041/u0041/u | 
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| 525 | *    C  S L         C              S | 
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| 526 | *                                  L   gl=b->15 | 
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| 527 | * 4. return | 
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| 528 | * | 
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| 529 | *    4  7  a  d  0  3 | 
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| 530 | *    abc/u0041/u0041/u | 
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| 531 | *    C S L | 
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| 532 | */ | 
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| 533 |  | 
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| 534 | if (count < 1) { | 
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| 535 | index.start = index.limit; | 
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| 536 | return; // Short circuit for empty compound transliterators | 
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| 537 | } | 
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| 538 |  | 
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| 539 | // compoundLimit is the limit value for the entire compound | 
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| 540 | // operation.  We overwrite index.limit with the previous | 
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| 541 | // index.start.  After each transliteration, we update | 
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| 542 | // compoundLimit for insertions or deletions that have happened. | 
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| 543 | int32_t compoundLimit = index.limit; | 
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| 544 |  | 
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| 545 | // compoundStart is the start for the entire compound | 
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| 546 | // operation. | 
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| 547 | int32_t compoundStart = index.start; | 
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| 548 |  | 
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| 549 | int32_t delta = 0; // delta in length | 
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| 550 |  | 
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| 551 | // Give each transliterator a crack at the run of characters. | 
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| 552 | // See comments at the top of the method for more detail. | 
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| 553 | for (int32_t i=0; i<count; ++i) { | 
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| 554 | index.start = compoundStart; // Reset start | 
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| 555 | int32_t limit = index.limit; | 
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| 556 |  | 
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| 557 | if (index.start == index.limit) { | 
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| 558 | // Short circuit for empty range | 
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| 559 | break; | 
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| 560 | } | 
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| 561 |  | 
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| 562 | trans[i]->filteredTransliterate(text, index, incremental); | 
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| 563 |  | 
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| 564 | // In a properly written transliterator, start == limit after | 
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| 565 | // handleTransliterate() returns when incremental is false. | 
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| 566 | // Catch cases where the subclass doesn't do this, and throw | 
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| 567 | // an exception.  (Just pinning start to limit is a bad idea, | 
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| 568 | // because what's probably happening is that the subclass | 
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| 569 | // isn't transliterating all the way to the end, and it should | 
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| 570 | // in non-incremental mode.) | 
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| 571 | if (!incremental && index.start != index.limit) { | 
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| 572 | // We can't throw an exception, so just fudge things | 
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| 573 | index.start = index.limit; | 
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| 574 | } | 
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| 575 |  | 
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| 576 | // Cumulative delta for insertions/deletions | 
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| 577 | delta += index.limit - limit; | 
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| 578 |  | 
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| 579 | if (incremental) { | 
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| 580 | // In the incremental case, only allow subsequent | 
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| 581 | // transliterators to modify what has already been | 
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| 582 | // completely processed by prior transliterators.  In the | 
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| 583 | // non-incrmental case, allow each transliterator to | 
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| 584 | // process the entire text. | 
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| 585 | index.limit = index.start; | 
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| 586 | } | 
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| 587 | } | 
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| 588 |  | 
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| 589 | compoundLimit += delta; | 
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| 590 |  | 
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| 591 | // Start is good where it is -- where the last transliterator left | 
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| 592 | // it.  Limit needs to be put back where it was, modulo | 
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| 593 | // adjustments for deletions/insertions. | 
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| 594 | index.limit = compoundLimit; | 
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| 595 | } | 
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| 596 |  | 
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| 597 | /** | 
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| 598 | * Sets the length of the longest context required by this transliterator. | 
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| 599 | * This is <em>preceding</em> context. | 
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| 600 | */ | 
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| 601 | void CompoundTransliterator::computeMaximumContextLength(void) { | 
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| 602 | int32_t max = 0; | 
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| 603 | for (int32_t i=0; i<count; ++i) { | 
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| 604 | int32_t len = trans[i]->getMaximumContextLength(); | 
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| 605 | if (len > max) { | 
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| 606 | max = len; | 
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| 607 | } | 
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| 608 | } | 
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| 609 | setMaximumContextLength(max); | 
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| 610 | } | 
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| 611 |  | 
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| 612 | U_NAMESPACE_END | 
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| 613 |  | 
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| 614 | #endif /* #if !UCONFIG_NO_TRANSLITERATION */ | 
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| 615 |  | 
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| 616 | /* eof */ | 
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| 617 |  | 
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