075c882906
X-SVN-Rev: 9116
1383 lines
54 KiB
C++
1383 lines
54 KiB
C++
/*
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**********************************************************************
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* Copyright (C) 2001, International Business Machines
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* Corporation and others. All Rights Reserved.
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**********************************************************************
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* Date Name Description
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* 05/23/00 aliu Creation.
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**********************************************************************
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*/
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#include "unicode/utypes.h"
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#include "unicode/translit.h"
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#include "unicode/rbt.h"
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#include "unicode/uniset.h"
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#include "unicode/uchar.h"
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#include "unicode/normlzr.h"
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#include "unicode/uchar.h"
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#include "unicode/parseerr.h"
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#include "unicode/usetiter.h"
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#include "transrt.h"
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#include "testutil.h"
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#include <string.h>
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#define CASE(id,test) case id: \
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name = #test; \
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if (exec) { \
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logln(#test "---"); \
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logln((UnicodeString)""); \
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test(); \
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} \
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break
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#define EXHAUSTIVE(id,test) case id: \
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if(quick==FALSE){ \
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name = #test; \
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if (exec){ \
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logln(#test "---"); \
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logln((UnicodeString)""); \
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test(); \
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} \
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}else{ \
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name=""; \
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} \
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break
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void
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TransliteratorRoundTripTest::runIndexedTest(int32_t index, UBool exec,
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const char* &name, char* /*par*/) {
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switch (index) {
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CASE(0, TestCyrillic);
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// CASE(0,TestKana);
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CASE(1,TestHiragana);
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CASE(2,TestKatakana);
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CASE(3,TestJamo);
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CASE(4,TestHangul);
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CASE(5,TestGreek);
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CASE(6,TestGreekUNGEGN);
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CASE(7,Testel);
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CASE(8,TestCyrillic);
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CASE(9,TestDevanagariLatin);
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CASE(10,TestInterIndic);
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default: name = ""; break;
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}
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}
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//--------------------------------------------------------------------
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// Legal
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//--------------------------------------------------------------------
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class Legal {
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public:
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Legal() {}
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virtual ~Legal() {}
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virtual UBool is(const UnicodeString& /*sourceString*/) const {return TRUE;}
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};
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class LegalJamo : public Legal {
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// any initial must be followed by a medial (or initial)
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// any medial must follow an initial (or medial)
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// any final must follow a medial (or final)
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public:
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LegalJamo() {}
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virtual ~LegalJamo() {}
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virtual UBool is(const UnicodeString& sourceString) const;
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int getType(UChar c) const;
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};
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UBool LegalJamo::is(const UnicodeString& sourceString) const {
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int t;
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UnicodeString decomp;
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UErrorCode ec = U_ZERO_ERROR;
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Normalizer::decompose(sourceString, FALSE, 0, decomp, ec);
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if (U_FAILURE(ec)) {
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return FALSE;
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}
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for (int i = 0; i < decomp.length(); ++i) { // don't worry about surrogates
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switch (getType(decomp.charAt(i))) {
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case 0: t = getType(decomp.charAt(i+1));
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if (t != 0 && t != 1) { return FALSE; }
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break;
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case 1: t = getType(decomp.charAt(i-1));
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if (t != 0 && t != 1) { return FALSE; }
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break;
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case 2: t = getType(decomp.charAt(i-1));
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if (t != 1 && t != 2) { return FALSE; }
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break;
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}
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}
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return TRUE;
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}
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int LegalJamo::getType(UChar c) const {
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if (0x1100 <= c && c <= 0x1112)
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return 0;
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else if (0x1161 <= c && c <= 0x1175)
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return 1;
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else if (0x11A8 <= c && c <= 0x11C2)
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return 2;
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return -1; // other
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}
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class LegalGreek : public Legal {
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UBool full;
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public:
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LegalGreek(UBool _full) { full = _full; }
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virtual ~LegalGreek() {}
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virtual UBool is(const UnicodeString& sourceString) const;
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static UBool isVowel(UChar c);
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static UBool isRho(UChar c);
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};
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UBool LegalGreek::is(const UnicodeString& sourceString) const {
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UnicodeString decomp;
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UErrorCode ec = U_ZERO_ERROR;
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Normalizer::decompose(sourceString, FALSE, 0, decomp, ec);
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// modern is simpler: don't care about anything but a grave
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if (full == FALSE) {
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// A special case which is legal but should be
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// excluded from round trip
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// if (sourceString == UnicodeString("\\u039C\\u03C0", "")) {
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// return FALSE;
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// }
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for (int32_t i = 0; i < decomp.length(); ++i) {
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UChar c = decomp.charAt(i);
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// exclude all the accents
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if (c == 0x0313 || c == 0x0314 || c == 0x0300 || c == 0x0302
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|| c == 0x0342 || c == 0x0345
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) return FALSE;
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}
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return TRUE;
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}
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// Legal greek has breathing marks IFF there is a vowel or RHO at the start
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// IF it has them, it has exactly one.
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// IF it starts with a RHO, then the breathing mark must come before the second letter.
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// Since there are no surrogates in greek, don't worry about them
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UBool firstIsVowel = FALSE;
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UBool firstIsRho = FALSE;
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UBool noLetterYet = TRUE;
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int32_t breathingCount = 0;
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int32_t letterCount = 0;
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for (int32_t i = 0; i < decomp.length(); ++i) {
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UChar c = decomp.charAt(i);
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if (u_isalpha(c)) {
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++letterCount;
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if (noLetterYet) {
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noLetterYet = FALSE;
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firstIsVowel = isVowel(c);
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firstIsRho = isRho(c);
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}
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if (firstIsRho && letterCount == 2 && breathingCount == 0) {
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return FALSE;
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}
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}
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if (c == 0x0313 || c == 0x0314) {
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++breathingCount;
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}
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}
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if (firstIsVowel || firstIsRho) return breathingCount == 1;
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return breathingCount == 0;
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}
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UBool LegalGreek::isVowel(UChar c) {
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switch (c) {
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case 0x03B1:
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case 0x03B5:
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case 0x03B7:
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case 0x03B9:
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case 0x03BF:
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case 0x03C5:
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case 0x03C9:
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case 0x0391:
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case 0x0395:
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case 0x0397:
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case 0x0399:
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case 0x039F:
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case 0x03A5:
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case 0x03A9:
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return TRUE;
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}
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return FALSE;
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}
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UBool LegalGreek::isRho(UChar c) {
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switch (c) {
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case 0x03C1:
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case 0x03A1:
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return TRUE;
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}
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return FALSE;
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}
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// AbbreviatedUnicodeSetIterator Interface ---------------------------------------------
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class AbbreviatedUnicodeSetIterator : public UnicodeSetIterator {
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public :
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AbbreviatedUnicodeSetIterator();
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virtual ~AbbreviatedUnicodeSetIterator();
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void reset(UnicodeSet& set, UBool abb = FALSE);
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/**
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* ICU "poor man's RTTI", returns a UClassID for the actual class.
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*
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* @draft ICU 2.2
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*/
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virtual inline UClassID getDynamicClassID() const { return getStaticClassID(); }
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/**
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* ICU "poor man's RTTI", returns a UClassID for this class.
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*
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* @draft ICU 2.2
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*/
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static inline UClassID getStaticClassID() { return (UClassID)&fgClassID; }
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private :
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UBool abbreviated;
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virtual void loadRange(int32_t range);
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/**
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* The address of this static class variable serves as this class's ID
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* for ICU "poor man's RTTI".
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*/
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static const char fgClassID;
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};
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// AbbreviatedUnicodeSetIterator Implementation ---------------------------------------
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const char AbbreviatedUnicodeSetIterator::fgClassID=0;
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AbbreviatedUnicodeSetIterator::AbbreviatedUnicodeSetIterator() :
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UnicodeSetIterator(), abbreviated(FALSE) {
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}
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AbbreviatedUnicodeSetIterator::~AbbreviatedUnicodeSetIterator() {
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}
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void AbbreviatedUnicodeSetIterator::reset(UnicodeSet& newSet, UBool abb) {
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UnicodeSetIterator::reset(newSet);
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abbreviated = abb;
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}
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void AbbreviatedUnicodeSetIterator::loadRange(int32_t range) {
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UnicodeSetIterator::loadRange(range);
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if (abbreviated && (endElement > nextElement + 50)) {
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endElement = nextElement + 50;
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}
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}
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//--------------------------------------------------------------------
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// RTTest Interface
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//--------------------------------------------------------------------
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class RTTest : public IntlTest {
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// PrintWriter out;
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UnicodeString transliteratorID;
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int32_t errorLimit;
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int32_t errorCount;
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int32_t pairLimit;
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UnicodeSet sourceRange;
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UnicodeSet targetRange;
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UnicodeSet toSource;
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UnicodeSet toTarget;
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UnicodeSet roundtripExclusionsSet;
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IntlTest* parent;
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Legal* legalSource; // NOT owned
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UnicodeSet badCharacters;
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public:
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/*
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* create a test for the given script transliterator.
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*/
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RTTest(const UnicodeString& transliteratorIDStr);
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virtual ~RTTest();
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void setErrorLimit(int32_t limit);
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void setPairLimit(int32_t limit);
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void test(const UnicodeString& sourceRange,
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const UnicodeString& targetRange,
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const char* roundtripExclusions,
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IntlTest* parent,
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UBool quick,
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Legal* adoptedLegal);
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private:
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// Added to do better equality check.
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static UBool isSame(const UnicodeString& a, const UnicodeString& b);
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static UBool isCamel(const UnicodeString& a);
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UBool checkIrrelevants(Transliterator *t, const UnicodeString& irrelevants);
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void test2(UBool quick);
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void logWrongScript(const UnicodeString& label,
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const UnicodeString& from,
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const UnicodeString& to);
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void logNotCanonical(const UnicodeString& label,
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const UnicodeString& from,
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const UnicodeString& to,
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const UnicodeString& fromCan,
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const UnicodeString& toCan);
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void logFails(const UnicodeString& label);
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void logToRulesFails(const UnicodeString& label,
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const UnicodeString& from,
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const UnicodeString& to,
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const UnicodeString& toCan);
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void logRoundTripFailure(const UnicodeString& from,
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const UnicodeString& toID,
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const UnicodeString& to,
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const UnicodeString& backID,
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const UnicodeString& back);
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};
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//--------------------------------------------------------------------
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// RTTest Implementation
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//--------------------------------------------------------------------
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/*
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* create a test for the given script transliterator.
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*/
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RTTest::RTTest(const UnicodeString& transliteratorIDStr) {
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transliteratorID = transliteratorIDStr;
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errorLimit = 500;
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errorCount = 0;
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pairLimit = 0x10000;
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}
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RTTest::~RTTest() {
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}
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void RTTest::setErrorLimit(int32_t limit) {
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errorLimit = limit;
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}
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void RTTest::setPairLimit(int32_t limit) {
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pairLimit = limit;
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}
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UBool RTTest::isSame(const UnicodeString& a, const UnicodeString& b) {
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if (a == b) return TRUE;
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if (a.caseCompare(b, U_FOLD_CASE_DEFAULT)==0 && isCamel(a)) return TRUE;
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UnicodeString aa, bb;
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UErrorCode ec = U_ZERO_ERROR;
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Normalizer::decompose(a, FALSE, 0, aa, ec);
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Normalizer::decompose(b, FALSE, 0, bb, ec);
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if (aa == bb) return TRUE;
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if (aa.caseCompare(bb, U_FOLD_CASE_DEFAULT)==0 && isCamel(aa)) return TRUE;
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return FALSE;
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}
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UBool RTTest::isCamel(const UnicodeString& a) {
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// see if string is of the form aB; e.g. lower, then upper or title
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UChar32 cp;
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UBool haveLower = FALSE;
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for (int32_t i = 0; i < a.length(); i += UTF_CHAR_LENGTH(cp)) {
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cp = a.char32At(i);
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int8_t t = u_charType(cp);
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switch (t) {
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case U_UPPERCASE_LETTER:
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if (haveLower) return TRUE;
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break;
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case U_TITLECASE_LETTER:
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if (haveLower) return TRUE;
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// drop through, since second letter is lower.
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case U_LOWERCASE_LETTER:
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haveLower = TRUE;
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break;
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}
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}
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return FALSE;
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}
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void RTTest::test(const UnicodeString& sourceRangeVal,
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const UnicodeString& targetRangeVal,
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const char* roundtripExclusions,
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IntlTest* logVal, UBool quickRt,
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Legal* adoptedLegal)
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{
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UErrorCode status = U_ZERO_ERROR;
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this->parent = logVal;
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this->legalSource = adoptedLegal;
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UnicodeSet neverOk("[:Other:]", status);
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UnicodeSet okAnyway("[^[:Letter:]]", status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: Initializing UnicodeSet with [:Other:] or [^[:Letter:]]");
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return;
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}
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this->sourceRange.clear();
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this->sourceRange.applyPattern(sourceRangeVal, status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: UnicodeSet::applyPattern(" +
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sourceRangeVal + ")");
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return;
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}
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this->sourceRange.removeAll(neverOk);
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this->targetRange.clear();
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this->targetRange.applyPattern(targetRangeVal, status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: UnicodeSet::applyPattern(" +
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targetRangeVal + ")");
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return;
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}
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this->targetRange.removeAll(neverOk);
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this->toSource.clear();
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this->toSource.applyPattern(sourceRangeVal, status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: UnicodeSet::applyPattern(" +
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sourceRangeVal + ")");
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return;
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}
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this->toSource.addAll(okAnyway);
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this->toTarget.clear();
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this->toTarget.applyPattern(targetRangeVal, status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: UnicodeSet::applyPattern(" +
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targetRangeVal + ")");
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return;
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}
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this->toTarget.addAll(okAnyway);
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this->roundtripExclusionsSet.clear();
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if (roundtripExclusions != NULL && strlen(roundtripExclusions) > 0) {
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this->roundtripExclusionsSet.applyPattern(roundtripExclusions, status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: UnicodeSet::applyPattern(%s)", roundtripExclusions);
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return;
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}
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}
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badCharacters.clear();
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badCharacters.applyPattern("[:Other:]", status);
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if (U_FAILURE(status)) {
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parent->errln("FAIL: UnicodeSet::applyPattern([:Other:])");
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return;
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}
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test2(quickRt);
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if (errorCount > 0) {
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char str[100];
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int32_t length = transliteratorID.extract(str, 100, NULL, status);
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str[length] = 0;
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parent->errln("FAIL: %s errors: %d %s", str, errorCount, (errorCount > errorLimit ? " (at least!)" : " ")); // + ", see " + logFileName);
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} else {
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char str[100];
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int32_t length = transliteratorID.extract(str, 100, NULL, status);
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str[length] = 0;
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parent->logln("%s ok", str);
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}
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}
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UBool RTTest::checkIrrelevants(Transliterator *t,
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const UnicodeString& irrelevants) {
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for (int i = 0; i < irrelevants.length(); ++i) {
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UChar c = irrelevants.charAt(i);
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UnicodeString cs(c);
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UnicodeString targ = cs;
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t->transliterate(targ);
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if (cs == targ) return TRUE;
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}
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return FALSE;
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}
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void RTTest::test2(UBool quickRt) {
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UnicodeString cs, targ, reverse;
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UErrorCode status = U_ZERO_ERROR;
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UParseError parseError ;
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Transliterator* sourceToTarget =
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Transliterator::createInstance(transliteratorID, UTRANS_FORWARD, parseError,
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status);
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if (sourceToTarget == NULL) {
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parent->errln("FAIL: createInstance(" + transliteratorID +
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") returned NULL. Error: " + u_errorName(status)
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+ "\n\tpreContext : " + prettify(parseError.preContext)
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+ "\n\tpostContext : " + prettify(parseError.postContext));
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return;
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}
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Transliterator* targetToSource = sourceToTarget->createInverse(status);
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if (targetToSource == NULL) {
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parent->errln("FAIL: " + transliteratorID +
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".createInverse() returned NULL. Error:" + u_errorName(status)
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+ "\n\tpreContext : " + prettify(parseError.preContext)
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+ "\n\tpostContext : " + prettify(parseError.postContext));
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delete sourceToTarget;
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return;
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}
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AbbreviatedUnicodeSetIterator usi;
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AbbreviatedUnicodeSetIterator usi2;
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parent->logln("Checking that at least one irrelevant character is not NFC'ed");
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// string is from NFC_NO in the UCD
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UnicodeString irrelevants = CharsToUnicodeString("\\u2000\\u2001\\u2126\\u212A\\u212B\\u2329");
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if (checkIrrelevants(sourceToTarget, irrelevants) == FALSE) {
|
|
logFails("Source-Target, irrelevants");
|
|
}
|
|
if (checkIrrelevants(targetToSource, irrelevants) == FALSE) {
|
|
logFails("Target-Source, irrelevants");
|
|
}
|
|
|
|
if (!quickRt){
|
|
parent->logln("Checking that toRules works");
|
|
UnicodeString rules = "";
|
|
|
|
UParseError parseError;
|
|
rules = sourceToTarget->toRules(rules, TRUE);
|
|
// parent->logln((UnicodeString)"toRules => " + rules);
|
|
Transliterator *sourceToTarget2 = Transliterator::createFromRules(
|
|
"s2t2", rules,
|
|
UTRANS_FORWARD,
|
|
parseError, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: createFromRules %s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
|
|
rules = targetToSource->toRules(rules, FALSE);
|
|
Transliterator *targetToSource2 = Transliterator::createFromRules(
|
|
"t2s2", rules,
|
|
UTRANS_FORWARD,
|
|
parseError, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: createFromRules %s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
|
|
usi.reset(sourceRange);
|
|
for (;;) {
|
|
if (!usi.next() || usi.isString()) break;
|
|
UChar32 c = usi.getCodepoint();
|
|
|
|
UnicodeString cs((UChar32)c);
|
|
UnicodeString targ = cs;
|
|
sourceToTarget->transliterate(targ);
|
|
UnicodeString targ2 = cs;
|
|
sourceToTarget2->transliterate(targ2);
|
|
if (targ != targ2) {
|
|
logToRulesFails("Source-Target, toRules", cs, targ, targ2);
|
|
}
|
|
}
|
|
|
|
usi.reset(targetRange);
|
|
for (;;) {
|
|
if (!usi.next() || usi.isString()) break;
|
|
UChar32 c = usi.getCodepoint();
|
|
|
|
UnicodeString cs((UChar32)c);
|
|
UnicodeString targ = cs;
|
|
targetToSource->transliterate(targ);
|
|
UnicodeString targ2 = cs;
|
|
targetToSource2->transliterate(targ2);
|
|
if (targ != targ2) {
|
|
logToRulesFails("Target-Source, toRules", cs, targ, targ2);
|
|
}
|
|
}
|
|
delete sourceToTarget2;
|
|
delete targetToSource2;
|
|
}
|
|
|
|
parent->logln("Checking that all source characters convert to target - Singles");
|
|
|
|
UnicodeSet failSourceTarg;
|
|
usi.reset(sourceRange);
|
|
for (;;) {
|
|
if (!usi.next() || usi.isString()) break;
|
|
UChar32 c = usi.getCodepoint();
|
|
|
|
UnicodeString cs((UChar32)c);
|
|
UnicodeString targ = cs;
|
|
sourceToTarget->transliterate(targ);
|
|
if (toTarget.containsAll(targ) == FALSE
|
|
|| badCharacters.containsSome(targ) == TRUE) {
|
|
UnicodeString targD;
|
|
Normalizer::decompose(targ, FALSE, 0, targD, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
if (toTarget.containsAll(targD) == FALSE ||
|
|
badCharacters.containsSome(targD) == TRUE) {
|
|
logWrongScript("Source-Target", cs, targ);
|
|
failSourceTarg.add(c);
|
|
continue;
|
|
}
|
|
}
|
|
|
|
UnicodeString cs2;
|
|
Normalizer::decompose(cs, FALSE, 0, cs2, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
UnicodeString targ2 = cs2;
|
|
sourceToTarget->transliterate(targ2);
|
|
if (targ != targ2) {
|
|
logNotCanonical("Source-Target", cs, targ,cs2, targ2);
|
|
}
|
|
}
|
|
|
|
parent->logln("Checking that all source characters convert to target - Doubles");
|
|
|
|
UnicodeSet sourceRangeMinusFailures(sourceRange);
|
|
sourceRangeMinusFailures.removeAll(failSourceTarg);
|
|
|
|
usi.reset(sourceRangeMinusFailures, quickRt);
|
|
for (;;) {
|
|
if (!usi.next() || usi.isString()) break;
|
|
UChar32 c = usi.getCodepoint();
|
|
|
|
usi2.reset(sourceRangeMinusFailures, quickRt);
|
|
for (;;) {
|
|
if (!usi2.next() || usi2.isString()) break;
|
|
UChar32 d = usi2.getCodepoint();
|
|
|
|
UnicodeString cs;
|
|
cs += (UChar32)c;
|
|
cs += (UChar32)d;
|
|
UnicodeString targ = cs;
|
|
sourceToTarget->transliterate(targ);
|
|
if (toTarget.containsAll(targ) == FALSE ||
|
|
badCharacters.containsSome(targ) == TRUE)
|
|
{
|
|
UnicodeString targD;
|
|
Normalizer::decompose(targ, FALSE, 0, targD, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
if (toTarget.containsAll(targD) == FALSE ||
|
|
badCharacters.containsSome(targD) == TRUE) {
|
|
logWrongScript("Source-Target", cs, targ);
|
|
continue;
|
|
}
|
|
}
|
|
UnicodeString cs2;
|
|
Normalizer::decompose(cs, FALSE, 0, cs2, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
UnicodeString targ2 = cs2;
|
|
sourceToTarget->transliterate(targ2);
|
|
if (targ != targ2) {
|
|
logNotCanonical("Source-Target", cs, targ, cs2,targ2);
|
|
}
|
|
}
|
|
}
|
|
|
|
parent->logln("Checking that target characters convert to source and back - Singles");
|
|
|
|
UnicodeSet failTargSource;
|
|
UnicodeSet failRound;
|
|
|
|
usi.reset(targetRange);
|
|
for (;;) {
|
|
if (!usi.next()) break;
|
|
|
|
if(usi.isString()){
|
|
cs = usi.getString();
|
|
}else{
|
|
cs = (UnicodeString)usi.getCodepoint();
|
|
}
|
|
|
|
UChar32 c = cs.char32At(0);
|
|
|
|
targ = cs;
|
|
targetToSource->transliterate(targ);
|
|
reverse = targ;
|
|
sourceToTarget->transliterate(reverse);
|
|
|
|
if (toSource.containsAll(targ) == FALSE ||
|
|
badCharacters.containsSome(targ) == TRUE) {
|
|
UnicodeString targD;
|
|
Normalizer::decompose(targ, FALSE, 0, targD, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition%s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
if (toSource.containsAll(targD) == FALSE ||
|
|
badCharacters.containsSome(targD) == TRUE) {
|
|
logWrongScript("Target-Source", cs, targ);
|
|
failTargSource.add(c);
|
|
continue;
|
|
}
|
|
}
|
|
if (isSame(cs, reverse) == FALSE &&
|
|
roundtripExclusionsSet.contains(c) == FALSE
|
|
&& roundtripExclusionsSet.contains(cs)==FALSE) {
|
|
logRoundTripFailure(cs,targetToSource->getID(), targ,sourceToTarget->getID(), reverse);
|
|
failRound.add(c);
|
|
continue;
|
|
}
|
|
|
|
UnicodeString targ2;
|
|
Normalizer::decompose(targ, FALSE, 0, targ2, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition%s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
UnicodeString reverse2 = targ2;
|
|
sourceToTarget->transliterate(reverse2);
|
|
if (reverse != reverse2) {
|
|
logNotCanonical("Target-Source", targ, reverse, targ2, reverse2);
|
|
}
|
|
}
|
|
|
|
parent->logln("Checking that target characters convert to source and back - Doubles");
|
|
int32_t count = 0;
|
|
|
|
UnicodeSet targetRangeMinusFailures(targetRange);
|
|
targetRangeMinusFailures.removeAll(failTargSource);
|
|
targetRangeMinusFailures.removeAll(failRound);
|
|
|
|
usi.reset(targetRangeMinusFailures, quickRt);
|
|
UnicodeString targ2;
|
|
UnicodeString reverse2;
|
|
UnicodeString targD;
|
|
for (;;) {
|
|
if (!usi.next() || usi.isString()) break;
|
|
UChar32 c = usi.getCodepoint();
|
|
if (++count > pairLimit) {
|
|
//throw new TestTruncated("Test truncated at " + pairLimit + " x 64k pairs");
|
|
parent->logln("");
|
|
parent->logln((UnicodeString)"Test truncated at " + pairLimit + " x 64k pairs");
|
|
return;
|
|
}
|
|
|
|
usi2.reset(targetRangeMinusFailures, quickRt);
|
|
for (;;) {
|
|
if (!usi2.next() || usi2.isString())
|
|
break;
|
|
UChar32 d = usi2.getCodepoint();
|
|
cs.truncate(0); // empty the variable without construction/destruction
|
|
cs += c;
|
|
cs += d;
|
|
|
|
targ = cs;
|
|
targetToSource->transliterate(targ);
|
|
reverse = targ;
|
|
sourceToTarget->transliterate(reverse);
|
|
|
|
if (toSource.containsAll(targ) == FALSE ||
|
|
badCharacters.containsSome(targ) == TRUE)
|
|
{
|
|
targD.truncate(0); // empty the variable without construction/destruction
|
|
Normalizer::decompose(targ, FALSE, 0, targD, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition%s\n",
|
|
u_errorName(status));
|
|
return;
|
|
}
|
|
if (toSource.containsAll(targD) == FALSE
|
|
|| badCharacters.containsSome(targD) == TRUE)
|
|
{
|
|
logWrongScript("Target-Source", cs, targ);
|
|
continue;
|
|
}
|
|
}
|
|
if (isSame(cs, reverse) == FALSE &&
|
|
roundtripExclusionsSet.contains(c) == FALSE&&
|
|
roundtripExclusionsSet.contains(d) == FALSE &&
|
|
roundtripExclusionsSet.contains(cs)== FALSE)
|
|
{
|
|
logRoundTripFailure(cs,targetToSource->getID(), targ, sourceToTarget->getID(),reverse);
|
|
continue;
|
|
}
|
|
|
|
targ2.truncate(0); // empty the variable without construction/destruction
|
|
Normalizer::decompose(targ, FALSE, 0, targ2, status);
|
|
if (U_FAILURE(status)) {
|
|
parent->errln("FAIL: Internal error during decomposition%s\n", u_errorName(status));
|
|
return;
|
|
}
|
|
reverse2 = targ2;
|
|
sourceToTarget->transliterate(reverse2);
|
|
if (reverse != reverse2) {
|
|
logNotCanonical("Target-Source", targ,reverse, targ2, reverse2);
|
|
}
|
|
}
|
|
}
|
|
parent->logln("");
|
|
delete sourceToTarget;
|
|
delete targetToSource;
|
|
}
|
|
|
|
void RTTest::logWrongScript(const UnicodeString& label,
|
|
const UnicodeString& from,
|
|
const UnicodeString& to) {
|
|
parent->errln((UnicodeString)"FAIL " +
|
|
label + ": " +
|
|
from + "(" + TestUtility::hex(from) + ") => " +
|
|
to + "(" + TestUtility::hex(to) + ")");
|
|
++errorCount;
|
|
}
|
|
|
|
void RTTest::logNotCanonical(const UnicodeString& label,
|
|
const UnicodeString& from,
|
|
const UnicodeString& to,
|
|
const UnicodeString& fromCan,
|
|
const UnicodeString& toCan) {
|
|
parent->errln((UnicodeString)"FAIL (can.equiv)" +
|
|
label + ": " +
|
|
from + "(" + TestUtility::hex(from) + ") => " +
|
|
to + "(" + TestUtility::hex(to) + ")" +
|
|
fromCan + "(" + TestUtility::hex(fromCan) + ") => " +
|
|
toCan + " (" +
|
|
TestUtility::hex(toCan) + ")"
|
|
);
|
|
++errorCount;
|
|
}
|
|
|
|
void RTTest::logFails(const UnicodeString& label) {
|
|
parent->errln((UnicodeString)"<br>FAIL " + label);
|
|
++errorCount;
|
|
}
|
|
|
|
void RTTest::logToRulesFails(const UnicodeString& label,
|
|
const UnicodeString& from,
|
|
const UnicodeString& to,
|
|
const UnicodeString& otherTo)
|
|
{
|
|
parent->errln((UnicodeString)"FAIL: " +
|
|
label + ": " +
|
|
from + "(" + TestUtility::hex(from) + ") => " +
|
|
to + "(" + TestUtility::hex(to) + ")" +
|
|
"!=" +
|
|
otherTo + " (" +
|
|
TestUtility::hex(otherTo) + ")"
|
|
);
|
|
++errorCount;
|
|
}
|
|
|
|
|
|
void RTTest::logRoundTripFailure(const UnicodeString& from,
|
|
const UnicodeString& toID,
|
|
const UnicodeString& to,
|
|
const UnicodeString& backID,
|
|
const UnicodeString& back) {
|
|
if (legalSource->is(from) == FALSE) return; // skip illegals
|
|
|
|
parent->errln((UnicodeString)"FAIL Roundtrip: " +
|
|
from + "(" + TestUtility::hex(from) + ") => " +
|
|
to + "(" + TestUtility::hex(to) + ") "+toID+" => " +
|
|
back + "(" + TestUtility::hex(back) + ") "+backID+" => ");
|
|
++errorCount;
|
|
}
|
|
|
|
//--------------------------------------------------------------------
|
|
// Specific Tests
|
|
//--------------------------------------------------------------------
|
|
|
|
/*
|
|
Note: Unicode 3.2 added new Hiragana/Katakana characters:
|
|
|
|
3095..3096 ; 3.2 # [2] HIRAGANA LETTER SMALL KA..HIRAGANA LETTER SMALL KE
|
|
309F..30A0 ; 3.2 # [2] HIRAGANA DIGRAPH YORI..KATAKANA-HIRAGANA DOUBLE HYPHEN
|
|
30FF ; 3.2 # KATAKANA DIGRAPH KOTO
|
|
31F0..31FF ; 3.2 # [16] KATAKANA LETTER SMALL KU..KATAKANA LETTER SMALL RO
|
|
|
|
We will not add them to the rules until they are more supported (e.g. in fonts on Windows)
|
|
A bug has been filed to remind us to do this: #1979.
|
|
*/
|
|
|
|
static const char KATAKANA[] = "[[[:katakana:][\\u30A1-\\u30FA\\u30FC]]-[\\u30FF\\u31F0-\\u31FF]]";
|
|
static const char HIRAGANA[] = "[[[:hiragana:][\\u3040-\\u3094]]-[\\u3095-\\u3096\\u309F-\\u30A0]]";
|
|
static const char LENGTH[] = "[\\u30FC]";
|
|
static const char HALFWIDTH_KATAKANA[] = "[\\uFF65-\\uFF9D]";
|
|
static const char KATAKANA_ITERATION[] = "[\\u30FD\\u30FE]";
|
|
static const char HIRAGANA_ITERATION[] = "[\\u309D\\u309E]";
|
|
static const int32_t TEMP_MAX=256;
|
|
|
|
void TransliteratorRoundTripTest::TestKana() {
|
|
RTTest test("Katakana-Hiragana");
|
|
Legal *legal = new Legal();
|
|
char temp[TEMP_MAX];
|
|
strcpy(temp, "[");
|
|
strcat(temp, HALFWIDTH_KATAKANA);
|
|
strcat(temp, LENGTH);
|
|
strcat(temp, "]");
|
|
test.test(KATAKANA, UnicodeString("[") + HIRAGANA + LENGTH + UnicodeString("]"),
|
|
temp,
|
|
this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestHiragana() {
|
|
RTTest test("Latin-Hiragana");
|
|
Legal *legal = new Legal();
|
|
test.test(UnicodeString("[a-zA-Z]", ""),
|
|
HIRAGANA,
|
|
HIRAGANA_ITERATION, this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestKatakana() {
|
|
RTTest test("Latin-Katakana");
|
|
Legal *legal = new Legal();
|
|
char temp[TEMP_MAX];
|
|
strcpy(temp, "[");
|
|
strcat(temp, KATAKANA_ITERATION);
|
|
strcat(temp, HALFWIDTH_KATAKANA);
|
|
strcat(temp, "]");
|
|
test.test(UnicodeString("[a-zA-Z]", ""),
|
|
KATAKANA,
|
|
temp,
|
|
this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestJamo() {
|
|
RTTest t("Latin-Jamo");
|
|
Legal *legal = new LegalJamo();
|
|
t.test(UnicodeString("[a-zA-Z]", ""),
|
|
UnicodeString("[\\u1100-\\u1112 \\u1161-\\u1175 \\u11A8-\\u11C2]",
|
|
""),
|
|
NULL, this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestHangul() {
|
|
RTTest t("Latin-Hangul");
|
|
Legal *legal = new Legal();
|
|
t.test(UnicodeString("[a-zA-Z]", ""),
|
|
UnicodeString("[\\uAC00-\\uD7A4]", ""),
|
|
NULL, this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestGreek() {
|
|
RTTest test("Latin-Greek");
|
|
LegalGreek *legal = new LegalGreek(TRUE);
|
|
test.test(UnicodeString("[a-zA-Z]", ""),
|
|
UnicodeString("[\\u003B\\u00B7[:Greek:]-[\\u03D7-\\u03EF]]",
|
|
""),
|
|
"[\\u00B5\\u037A\\u03D0-\\u03F5]", /* exclusions */
|
|
this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
|
|
void TransliteratorRoundTripTest::TestGreekUNGEGN() {
|
|
RTTest test("Latin-Greek/UNGEGN");
|
|
LegalGreek *legal = new LegalGreek(FALSE);
|
|
test.test(UnicodeString("[a-zA-Z]", ""),
|
|
UnicodeString("[\\u003B\\u00B7[:Greek:]-[\\u03D7-\\u03EF]]",
|
|
""),
|
|
"[\\u00B5\\u037A\\u03D0-\\uFFFF {\\u039C\\u03C0}]", /* roundtrip exclusions */
|
|
this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::Testel() {
|
|
RTTest test("Latin-el");
|
|
LegalGreek *legal = new LegalGreek(FALSE);
|
|
test.test(UnicodeString("[a-zA-Z]", ""),
|
|
UnicodeString("[\\u003B\\u00B7[:Greek:]-[\\u03D7-\\u03EF]]",
|
|
""),
|
|
"[\\u00B5\\u037A\\u03D0-\\uFFFF {\\u039C\\u03C0}]", /* exclusions */
|
|
this, quick, legal);
|
|
delete legal;
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestCyrillic() {
|
|
RTTest test("Latin-Cyrillic");
|
|
Legal *legal = new Legal();
|
|
test.test(UnicodeString("[a-zA-Z\\u0110\\u0111]", ""),
|
|
UnicodeString("[\\u0400-\\u045F]", ""), NULL, this, quick,
|
|
legal);
|
|
delete legal;
|
|
}
|
|
|
|
|
|
// Inter-Indic Tests ----------------------------------
|
|
class LegalIndic :public Legal{
|
|
UnicodeSet vowelSignSet;
|
|
UnicodeSet avagraha;
|
|
UnicodeSet nukta;
|
|
UnicodeSet virama;
|
|
UnicodeSet sanskritStressSigns;
|
|
UnicodeSet chandrabindu;
|
|
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public:
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LegalIndic(){
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UErrorCode status = U_ZERO_ERROR;
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vowelSignSet.addAll( UnicodeSet("[\\u0902\\u0903\\u093e-\\u094c\\u0962\\u0963]",status));/* Devanagari */
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vowelSignSet.addAll( UnicodeSet("[\\u0982\\u0983\\u09be-\\u09cc\\u09e2\\u09e3\\u09D7]",status));/* Bengali */
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vowelSignSet.addAll( UnicodeSet("[\\u0a02\\u0a03\\u0a3e-\\u0a4c\\u0a62\\u0a63\\u0a70\\u0a71]",status));/* Gurmukhi */
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vowelSignSet.addAll( UnicodeSet("[\\u0a82\\u0a83\\u0abe-\\u0acc\\u0ae2\\u0ae3]",status));/* Gujarati */
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vowelSignSet.addAll( UnicodeSet("[\\u0b02\\u0b03\\u0b3e-\\u0b4c\\u0b62\\u0b63\\u0b56\\u0b57]",status));/* Oriya */
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vowelSignSet.addAll( UnicodeSet("[\\u0b82\\u0b83\\u0bbe-\\u0bcc\\u0be2\\u0be3\\u0bd7]",status));/* Tamil */
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vowelSignSet.addAll( UnicodeSet("[\\u0c02\\u0c03\\u0c3e-\\u0c4c\\u0c62\\u0c63\\u0c55\\u0c56]",status));/* Telugu */
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vowelSignSet.addAll( UnicodeSet("[\\u0c82\\u0c83\\u0cbe-\\u0ccc\\u0ce2\\u0ce3\\u0cd5\\u0cd6]",status));/* Kannada */
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vowelSignSet.addAll( UnicodeSet("[\\u0d02\\u0d03\\u0d3e-\\u0d4c\\u0d62\\u0d63\\u0d57]",status));/* Malayalam */
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avagraha.addAll(UnicodeSet("[\\u093d\\u0abd\\u0b3d]",status));
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nukta.addAll(UnicodeSet("[\\u093c\\u09bc\\u0a3c\\u0abc\\u0b3c]",status));
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virama.addAll(UnicodeSet("[\\u094d\\u09cd\\u0a4d\\u0acd\\u0b4d\\u0bcd\\u0c4d\\u0ccd\\u0d4d]",status));
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sanskritStressSigns.addAll(UnicodeSet("[\\u0951\\u0952\\u0953\\u0954]",status));
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chandrabindu.addAll(UnicodeSet("[\\u0901\\u0981\\u0A81\\u0b01\\u0c01]",status));
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}
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virtual UBool is(const UnicodeString& sourceString) const;
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virtual ~LegalIndic() {};
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};
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UBool LegalIndic::is(const UnicodeString& sourceString) const{
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int cp=sourceString.charAt(0);
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// A vowel sign cannot be the first char
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if(vowelSignSet.contains(cp)){
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return FALSE;
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}else if(avagraha.contains(cp)){
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return FALSE;
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}else if(virama.contains(cp)){
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return FALSE;
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}else if(nukta.contains(cp)){
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return FALSE;
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}else if(sanskritStressSigns.contains(cp)){
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return FALSE;
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}else if(chandrabindu.contains(cp) &&
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((sourceString.length()>1) &&
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vowelSignSet.contains(sourceString.charAt(1)))){
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return FALSE;
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}
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return TRUE;
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}
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static const char latinForIndic[] = "[['.0-9A-Za-z~\\u00C0-\\u00C5\\u00C7-\\u00CF\\u00D1-\\u00D6\\u00D9-\\u00DD"
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"\\u00E0-\\u00E5\\u00E7-\\u00EF\\u00F1-\\u00F6\\u00F9-\\u00FD\\u00FF-\\u010F"
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"\\u0112-\\u0125\\u0128-\\u0130\\u0134-\\u0137\\u0139-\\u013E\\u0143-\\u0148"
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"\\u014C-\\u0151\\u0154-\\u0165\\u0168-\\u017E\\u01A0-\\u01A1\\u01AF-\\u01B0"
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"\\u01CD-\\u01DC\\u01DE-\\u01E3\\u01E6-\\u01ED\\u01F0\\u01F4-\\u01F5\\u01F8-\\u01FB"
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"\\u0200-\\u021B\\u021E-\\u021F\\u0226-\\u0233\\u0303-\\u0304\\u0306\\u0314-\\u0315"
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"\\u0325\\u040E\\u0419\\u0439\\u045E\\u04C1-\\u04C2\\u04D0-\\u04D1\\u04D6-\\u04D7"
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"\\u04E2-\\u04E3\\u04EE-\\u04EF\\u1E00-\\u1E99\\u1EA0-\\u1EF9\\u1F01\\u1F03\\u1F05"
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"\\u1F07\\u1F09\\u1F0B\\u1F0D\\u1F0F\\u1F11\\u1F13\\u1F15\\u1F19\\u1F1B\\u1F1D\\u1F21"
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"\\u1F23\\u1F25\\u1F27\\u1F29\\u1F2B\\u1F2D\\u1F2F\\u1F31\\u1F33\\u1F35\\u1F37\\u1F39"
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"\\u1F3B\\u1F3D\\u1F3F\\u1F41\\u1F43\\u1F45\\u1F49\\u1F4B\\u1F4D\\u1F51\\u1F53\\u1F55"
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"\\u1F57\\u1F59\\u1F5B\\u1F5D\\u1F5F\\u1F61\\u1F63\\u1F65\\u1F67\\u1F69\\u1F6B\\u1F6D"
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"\\u1F6F\\u1F81\\u1F83\\u1F85\\u1F87\\u1F89\\u1F8B\\u1F8D\\u1F8F\\u1F91\\u1F93\\u1F95"
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"\\u1F97\\u1F99\\u1F9B\\u1F9D\\u1F9F\\u1FA1\\u1FA3\\u1FA5\\u1FA7\\u1FA9\\u1FAB\\u1FAD"
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"\\u1FAF-\\u1FB1\\u1FB8-\\u1FB9\\u1FD0-\\u1FD1\\u1FD8-\\u1FD9\\u1FE0-\\u1FE1\\u1FE5"
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"\\u1FE8-\\u1FE9\\u1FEC\\u212A-\\u212B\\uE04D\\uE064]"
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"-[\\uE000-\\uE080 \\u01E2\\u01E3]& [[:latin:][:mark:]]]";
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void TransliteratorRoundTripTest::TestDevanagariLatin() {
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{
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UErrorCode status = U_ZERO_ERROR;
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Transliterator* t1 = Transliterator::createInstance("[\\u0000-\\u00FE \\u0982\\u0983 [:Bengali:][:nonspacing mark:]];NFD;Bengali-InterIndic;InterIndic-Gujarati;NFC;( [ \\u0000-\\u00FE [:Gujarati:][[:nonspacing mark:]])",UTRANS_FORWARD, status);
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if(t1){
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t1->createInverse(status);
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if(U_FAILURE(status)){
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errln("FAIL: could not create the Inverse:-( \n");
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}
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}
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}
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RTTest test("Latin-Devanagari");
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Legal *legal = new LegalIndic();
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test.test(UnicodeString(latinForIndic, ""),
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UnicodeString("[:Devanagari:]", ""), NULL, this, quick,
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legal);
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delete legal;
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}
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/* Defined this way for HP/UX11CC :-( */
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static const int32_t INTER_INDIC_ARRAY_WIDTH = 4;
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static const char * const interIndicArray[] = {
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"BENGALI-DEVANAGARI", "[:BENGALI:]", "[:Devanagari:]",
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"[\\u0951-\\u0954\\u0943-\\u0949\\u094a\\u0962\\u0963\\u090D\\u090e\\u0911\\u0912\\u0929\\u0933\\u0934\\u0935\\u093d\\u0950\\u0958\\u0959\\u095a\\u095b\\u095e\\u09f0\\u09f1]", /*roundtrip exclusions*/
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"DEVANAGARI-BENGALI", "[:Devanagari:]", "[:BENGALI:]",
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"[\\u0951-\\u0954\\u09D7\\u090D\\u090e\\u0911\\u0912\\u0929\\u0933\\u0934\\u0935\\u093d\\u0950\\u0958\\u0959\\u095a\\u095b\\u095e\\u09f0\\u09f1]", /*roundtrip exclusions*/
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"GURMUKHI-DEVANAGARI", "[:GURMUKHI:]", "[:Devanagari:]",
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"[\\u0936\\u0933\\u0951-\\u0954\\u0902\\u0903\\u0943-\\u0949\\u094a\\u0962\\u0963\\u090B\\u090C\\u090D\\u090e\\u0911\\u0912\\u0934\\u0937\\u093D\\u0950\\u0960\\u0961\\u0a72\\u0a73\\u0a74]", /*roundtrip exclusions*/
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"DEVANAGARI-GURMUKHI", "[:Devanagari:]", "[:GURMUKHI:]",
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"[\\u0946\\u0A5C\\u0951-\\u0954\\u0A70\\u0A71\\u090B\\u090C\\u090D\\u090e\\u0911\\u0912\\u0934\\u0937\\u093D\\u0950\\u0960\\u0961\\u0a72\\u0a73\\u0a74]", /*roundtrip exclusions*/
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"GUJARATI-DEVANAGARI", "[:GUJARATI:]", "[:Devanagari:]",
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"[\\u0946\\u094A\\u0962\\u0963\\u0951-\\u0954\\u0961\\u090c\\u090e\\u0912]", /*roundtrip exclusions*/
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"DEVANAGARI-GUJARATI", "[:Devanagari:]", "[:GUJARATI:]",
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"[\\u0951-\\u0954\\u0961\\u090c\\u090e\\u0912]", /*roundtrip exclusions*/
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"ORIYA-DEVANAGARI", "[:ORIYA:]", "[:Devanagari:]",
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"[\\u0943-\\u094a\\u0962\\u0963\\u0951-\\u0954\\u0950\\u090D\\u090e\\u0912\\u0911\\u0931\\u0935]", /*roundtrip exclusions*/
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"DEVANAGARI-ORIYA", "[:Devanagari:]", "[:ORIYA:]",
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"[\\u0b5f\\u0b56\\u0b57\\u0950\\u090D\\u090e\\u0912\\u0911\\u0931\\u0935]", /*roundtrip exclusions*/
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"Tamil-DEVANAGARI", "[:tamil:]", "[:Devanagari:]",
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"[\\u0901\\u093c\\u0943-\\u094a\\u0951-\\u0954\\u0962\\u0963\\u090B\\u090C\\u090D\\u0911\\u0916\\u0917\\u0918\\u091B\\u091D\\u0920\\u0921\\u0922\\u0925\\u0926\\u0927\\u092B\\u092C\\u092D\\u0936\\u093d\\u0950[\\u0958-\\u0961]]", /*roundtrip exclusions*/
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"DEVANAGARI-Tamil", "[:Devanagari:]", "[:tamil:]",
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"[\\u0bd7]", /*roundtrip exclusions*/
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"Telugu-DEVANAGARI", "[:telugu:]", "[:Devanagari:]",
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"[\\u093c\\u0950\\u0945\\u0949\\u0951-\\u0954\\u0962\\u0963\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
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"DEVANAGARI-TELUGU", "[:Devanagari:]", "[:TELUGU:]",
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"[\\u0c55\\u0c56\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
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"KANNADA-DEVANAGARI", "[:KANNADA:]", "[:Devanagari:]",
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"[\\u0901\\u0946\\u093c\\u0950\\u0945\\u0949\\u0951-\\u0954\\u0962\\u0963\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
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"DEVANAGARI-KANNADA", "[:Devanagari:]", "[:KANNADA:]",
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"[\\u0cde\\u0cd5\\u0cd6\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
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"MALAYALAM-DEVANAGARI", "[:MALAYALAM:]", "[:Devanagari:]",
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"[\\u0901\\u094a\\u094b\\u094c\\u093c\\u0950\\u0944\\u0945\\u0949\\u0951-\\u0954\\u0962\\u0963\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
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"DEVANAGARI-MALAYALAM", "[:Devanagari:]", "[:MALAYALAM:]",
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"[\\u0d4c\\u0d57\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
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"GURMUKHI-BENGALI", "[:GURMUKHI:]", "[:BENGALI:]",
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"[\\u09b6\\u09e2\\u09e3\\u09c3\\u09c4\\u09d7\\u098B\\u098C\\u09B7\\u09E0\\u09E1\\u09F0\\u09F1]", /*roundtrip exclusions*/
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"BENGALI-GURMUKHI", "[:BENGALI:]", "[:GURMUKHI:]",
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"[\\u0a5c\\u0a47\\u0a70\\u0a71\\u0A33\\u0A35\\u0A59\\u0A5A\\u0A5B\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
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"GUJARATI-BENGALI", "[:GUJARATI:]", "[:BENGALI:]",
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"[\\u09d7\\u09e2\\u09e3\\u098c\\u09e1\\u09f0\\u09f1]", /*roundtrip exclusions*/
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"BENGALI-GUJARATI", "[:BENGALI:]", "[:GUJARATI:]",
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"[\\u0A82\\u0a83\\u0Ac9\\u0Ac5\\u0ac7\\u0A8D\\u0A91\\u0AB3\\u0AB5\\u0ABD\\u0AD0]", /*roundtrip exclusions*/
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"ORIYA-BENGALI", "[:ORIYA:]", "[:BENGALI:]",
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"[\\u09c4\\u09e2\\u09e3\\u09f0\\u09f1]", /*roundtrip exclusions*/
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"BENGALI-ORIYA", "[:BENGALI:]", "[:ORIYA:]",
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"[\\u0b5f\\u0b56\\u0b33\\u0b3d]", /*roundtrip exclusions*/
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"Tamil-BENGALI", "[:tamil:]", "[:BENGALI:]",
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"[\\u0981\\u09bc\\u09c3\\u09c4\\u09e2\\u09e3\\u09f0\\u09f1\\u098B\\u098C\\u0996\\u0997\\u0998\\u099B\\u099D\\u09A0\\u09A1\\u09A2\\u09A5\\u09A6\\u09A7\\u09AB\\u09AC\\u09AD\\u09B6\\u09DC\\u09DD\\u09DF\\u09E0\\u09E1]", /*roundtrip exclusions*/
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"BENGALI-Tamil", "[:BENGALI:]", "[:tamil:]",
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"[\\u0bc6\\u0bc7\\u0bca\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB3\\u0BB4\\u0BB5]", /*roundtrip exclusions*/
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"Telugu-BENGALI", "[:telugu:]", "[:BENGALI:]",
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"[\\u09e2\\u09e3\\u09bc\\u09d7\\u09f0\\u09f1\\u09dc\\u09dd\\u09df]", /*roundtrip exclusions*/
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"BENGALI-TELUGU", "[:BENGALI:]", "[:TELUGU:]",
|
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"[\\u0c55\\u0c56\\u0c47\\u0c46\\u0c4a\\u0C0E\\u0C12\\u0C31\\u0C33\\u0C35]", /*roundtrip exclusions*/
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"KANNADA-BENGALI", "[:KANNADA:]", "[:BENGALI:]",
|
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"[\\u0981\\u09e2\\u09e3\\u09bc\\u09d7\\u09f0\\u09f1\\u09dc\\u09dd\\u09df]", /*roundtrip exclusions*/
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"BENGALI-KANNADA", "[:BENGALI:]", "[:KANNADA:]",
|
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"[\\u0cc6\\u0cca\\u0cd5\\u0cd6\\u0cc7\\u0C8E\\u0C92\\u0CB1\\u0cb3\\u0cb5\\u0cde]", /*roundtrip exclusions*/
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"MALAYALAM-BENGALI", "[:MALAYALAM:]", "[:BENGALI:]",
|
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"[\\u0981\\u09e2\\u09e3\\u09bc\\u09c4\\u09f0\\u09f1\\u09dc\\u09dd\\u09df]", /*roundtrip exclusions*/
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"BENGALI-MALAYALAM", "[:BENGALI:]", "[:MALAYALAM:]",
|
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"[\\u0d46\\u0d4a\\u0d47\\u0d31-\\u0d35\\u0d0e\\u0d12]", /*roundtrip exclusions*/
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|
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"GUJARATI-GURMUKHI", "[:GUJARATI:]", "[:GURMUKHI:]",
|
|
"[\\u0ab3\\u0ab6\\u0A70\\u0a71\\u0a82\\u0a83\\u0ac3\\u0ac4\\u0ac5\\u0ac9\\u0a5c\\u0a72\\u0a73\\u0a74\\u0a8b\\u0a8d\\u0a91\\u0abd]", /*roundtrip exclusions*/
|
|
|
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"GURMUKHI-GUJARATI", "[:GURMUKHI:]", "[:GUJARATI:]",
|
|
"[\\u0ab3\\u0ab6\\u0A70\\u0a71\\u0a82\\u0a83\\u0ac3\\u0ac4\\u0ac5\\u0ac9\\u0a5c\\u0a72\\u0a73\\u0a74\\u0a8b\\u0a8d\\u0a91\\u0ab7\\u0abd\\u0ad0\\u0ae0]", /*roundtrip exclusions*/
|
|
|
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"ORIYA-GURMUKHI", "[:ORIYA:]", "[:GURMUKHI:]",
|
|
"[\\u0a5c\\u0a21\\u0a47\\u0a71\\u0b02\\u0b03\\u0b33\\u0b36\\u0b43\\u0b56\\u0b57\\u0B0B\\u0B0C\\u0B37\\u0B3D\\u0B5F\\u0B60\\u0B61\\u0a35\\u0a72\\u0a73\\u0a74]", /*roundtrip exclusions*/
|
|
|
|
"GURMUKHI-ORIYA", "[:GURMUKHI:]", "[:ORIYA:]",
|
|
"[\\u0a71\\u0b02\\u0b03\\u0b33\\u0b36\\u0b43\\u0b56\\u0b57\\u0B0B\\u0B0C\\u0B37\\u0B3D\\u0B5F\\u0B60\\u0B61]", /*roundtrip exclusions*/
|
|
|
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"TAMIL-GURMUKHI", "[:TAMIL:]", "[:GURMUKHI:]",
|
|
"[\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0a47\\u0A16\\u0A17\\u0A18\\u0A1B\\u0A1D\\u0A20\\u0A21\\u0A22\\u0A25\\u0A26\\u0A27\\u0A2B\\u0A2C\\u0A2D\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
|
|
|
|
"GURMUKHI-TAMIL", "[:GURMUKHI:]", "[:TAMIL:]",
|
|
"[\\u0bc6\\u0bca\\u0bd7\\u0bb7\\u0bb3\\u0b83\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB4]", /*roundtrip exclusions*/
|
|
|
|
"TELUGU-GURMUKHI", "[:TELUGU:]", "[:GURMUKHI:]",
|
|
"[\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
|
|
|
|
"GURMUKHI-TELUGU", "[:GURMUKHI:]", "[:TELUGU:]",
|
|
"[\\u0c02\\u0c03\\u0c33\\u0c36\\u0c44\\u0c43\\u0c46\\u0c4a\\u0c56\\u0c55\\u0C0B\\u0C0C\\u0C0E\\u0C12\\u0C31\\u0C37\\u0C60\\u0C61]", /*roundtrip exclusions*/
|
|
|
|
"KANNADA-GURMUKHI", "[:KANNADA:]", "[:GURMUKHI:]",
|
|
"[\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
|
|
|
|
"GURMUKHI-KANNADA", "[:GURMUKHI:]", "[:KANNADA:]",
|
|
"[\\u0c83\\u0cb3\\u0cb6\\u0cc4\\u0cc3\\u0cc6\\u0cca\\u0cd5\\u0cd6\\u0C8B\\u0C8C\\u0C8E\\u0C92\\u0CB1\\u0CB7\\u0CE0\\u0CE1]", /*roundtrip exclusions*/
|
|
|
|
"MALAYALAM-GURMUKHI", "[:MALAYALAM:]", "[:GURMUKHI:]",
|
|
"[\\u0a4b\\u0a4c\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
|
|
|
|
"GURMUKHI-MALAYALAM", "[:GURMUKHI:]", "[:MALAYALAM:]",
|
|
"[\\u0d03\\u0d33\\u0d36\\u0d43\\u0d46\\u0d4a\\u0d4c\\u0d57\\u0D0B\\u0D0C\\u0D0E\\u0D12\\u0D31\\u0D34\\u0D37\\u0D60\\u0D61]", /*roundtrip exclusions*/
|
|
|
|
"GUJARATI-ORIYA", "[:GUJARATI:]", "[:ORIYA:]",
|
|
"[\\u0b56\\u0b57\\u0B0C\\u0B5F\\u0B61]", /*roundtrip exclusions*/
|
|
|
|
"ORIYA-GUJARATI", "[:ORIYA:]", "[:GUJARATI:]",
|
|
"[\\u0Ac4\\u0Ac5\\u0Ac9\\u0Ac7\\u0A8D\\u0A91\\u0AB5\\u0Ad0]", /*roundtrip exclusions*/
|
|
|
|
"TAMIL-GUJARATI", "[:TAMIL:]", "[:GUJARATI:]",
|
|
"[\\u0A81\\u0abc\\u0ac3\\u0Ac4\\u0Ac5\\u0Ac9\\u0Ac7\\u0A8B\\u0A8D\\u0A91\\u0A96\\u0A97\\u0A98\\u0A9B\\u0A9D\\u0AA0\\u0AA1\\u0AA2\\u0AA5\\u0AA6\\u0AA7\\u0AAB\\u0AAC\\u0AAD\\u0AB6\\u0ABD\\u0AD0\\u0AE0]", /*roundtrip exclusions*/
|
|
|
|
"GUJARATI-TAMIL", "[:GUJARATI:]", "[:TAMIL:]",
|
|
"[\\u0Bc6\\u0Bca\\u0Bd7\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB4]", /*roundtrip exclusions*/
|
|
|
|
"TELUGU-GUJARATI", "[:TELUGU:]", "[:GUJARATI:]",
|
|
"[\\u0abc\\u0Ac5\\u0Ac9\\u0A8D\\u0A91\\u0ABD\\u0Ad0]", /*roundtrip exclusions*/
|
|
|
|
"GUJARATI-TELUGU", "[:GUJARATI:]", "[:TELUGU:]",
|
|
"[\\u0c46\\u0c4a\\u0c55\\u0c56\\u0C0C\\u0C0E\\u0C12\\u0C31\\u0C61]", /*roundtrip exclusions*/
|
|
|
|
"KANNADA-GUJARATI", "[:KANNADA:]", "[:GUJARATI:]",
|
|
"[\\u0A81\\u0abc\\u0Ac5\\u0Ac9\\u0A8D\\u0A91\\u0ABD\\u0Ad0]", /*roundtrip exclusions*/
|
|
|
|
"GUJARATI-KANNADA", "[:GUJARATI:]", "[:KANNADA:]",
|
|
"[\\u0cc6\\u0cca\\u0cd5\\u0cd6\\u0C8C\\u0C8E\\u0C92\\u0CB1\\u0CDE\\u0CE1]", /*roundtrip exclusions*/
|
|
|
|
"MALAYALAM-GUJARATI", "[:MALAYALAM:]", "[:GUJARATI:]",
|
|
"[\\u0A81\\u0ac4\\u0acb\\u0acc\\u0abc\\u0Ac5\\u0Ac9\\u0A8D\\u0A91\\u0ABD\\u0Ad0]", /*roundtrip exclusions*/
|
|
|
|
"GUJARATI-MALAYALAM", "[:GUJARATI:]", "[:MALAYALAM:]",
|
|
"[\\u0d46\\u0d4a\\u0d4c\\u0d55\\u0d57\\u0D0C\\u0D0E\\u0D12\\u0D31\\u0D34\\u0D61]", /*roundtrip exclusions*/
|
|
|
|
"TAMIL-ORIYA", "[:TAMIL:]", "[:ORIYA:]",
|
|
"[\\u0B01\\u0b3c\\u0b43\\u0b56\\u0B0B\\u0B0C\\u0B16\\u0B17\\u0B18\\u0B1B\\u0B1D\\u0B20\\u0B21\\u0B22\\u0B25\\u0B26\\u0B27\\u0B2B\\u0B2C\\u0B2D\\u0B36\\u0B3D\\u0B5C\\u0B5D\\u0B5F\\u0B60\\u0B61]", /*roundtrip exclusions*/
|
|
|
|
"ORIYA-TAMIL", "[:ORIYA:]", "[:TAMIL:]",
|
|
"[\\u0bc6\\u0bca\\u0bc7\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB4\\u0BB5]", /*roundtrip exclusions*/
|
|
|
|
"TELUGU-ORIYA", "[:TELUGU:]", "[:ORIYA:]",
|
|
"[\\u0b3c\\u0b57\\u0b56\\u0B3D\\u0B5C\\u0B5D\\u0B5F]", /*roundtrip exclusions*/
|
|
|
|
"ORIYA-TELUGU", "[:ORIYA:]", "[:TELUGU:]",
|
|
"[\\u0c44\\u0c46\\u0c4a\\u0c55\\u0c47\\u0C0E\\u0C12\\u0C31\\u0C35]", /*roundtrip exclusions*/
|
|
|
|
"KANNADA-ORIYA", "[:KANNADA:]", "[:ORIYA:]",
|
|
"[\\u0B01\\u0b3c\\u0b57\\u0B3D\\u0B5C\\u0B5D\\u0B5F]", /*roundtrip exclusions*/
|
|
|
|
"ORIYA-KANNADA", "[:ORIYA:]", "[:KANNADA:]",
|
|
"[\\u0cc4\\u0cc6\\u0cca\\u0cd5\\u0cc7\\u0C8E\\u0C92\\u0CB1\\u0CB5\\u0CDE]", /*roundtrip exclusions*/
|
|
|
|
"MALAYALAM-ORIYA", "[:MALAYALAM:]", "[:ORIYA:]",
|
|
"[\\u0B01\\u0b3c\\u0b56\\u0B3D\\u0B5C\\u0B5D\\u0B5F]", /*roundtrip exclusions*/
|
|
|
|
"ORIYA-MALAYALAM", "[:ORIYA:]", "[:MALAYALAM:]",
|
|
"[\\u0D47\\u0D46\\u0D4a\\u0D0E\\u0D12\\u0D31\\u0D34\\u0D35]", /*roundtrip exclusions*/
|
|
|
|
"TELUGU-TAMIL", "[:TELUGU:]", "[:TAMIL:]",
|
|
"[\\u0bd7\\u0ba9\\u0bb4]", /*roundtrip exclusions*/
|
|
|
|
"TAMIL-TELUGU", "[:TAMIL:]", "[:TELUGU:]",
|
|
"[\\u0C01\\u0c43\\u0c44\\u0c46\\u0c47\\u0c55\\u0c56\\u0c66\\u0C0B\\u0C0C\\u0C16\\u0C17\\u0C18\\u0C1B\\u0C1D\\u0C20\\u0C21\\u0C22\\u0C25\\u0C26\\u0C27\\u0C2B\\u0C2C\\u0C2D\\u0C36\\u0C60\\u0C61]", /*roundtrip exclusions*/
|
|
|
|
"KANNADA-TAMIL", "[:KANNADA:]", "[:TAMIL:]",
|
|
"[\\u0bd7\\u0bc6\\u0ba9\\u0bb4]", /*roundtrip exclusions*/
|
|
|
|
"TAMIL-KANNADA", "[:TAMIL:]", "[:KANNADA:]",
|
|
"[\\u0cc3\\u0cc4\\u0cc6\\u0cc7\\u0cd5\\u0cd6\\u0C8B\\u0C8C\\u0C96\\u0C97\\u0C98\\u0C9B\\u0C9D\\u0CA0\\u0CA1\\u0CA2\\u0CA5\\u0CA6\\u0CA7\\u0CAB\\u0CAC\\u0CAD\\u0CB6\\u0CDE\\u0CE0\\u0CE1]", /*roundtrip exclusions*/
|
|
|
|
"MALAYALAM-TAMIL", "[:MALAYALAM:]", "[:TAMIL:]",
|
|
"[\\u0ba9]", /*roundtrip exclusions*/
|
|
|
|
"TAMIL-MALAYALAM", "[:TAMIL:]", "[:MALAYALAM:]",
|
|
"[\\u0d43\\u0d12\\u0D0B\\u0D0C\\u0D16\\u0D17\\u0D18\\u0D1B\\u0D1D\\u0D20\\u0D21\\u0D22\\u0D25\\u0D26\\u0D27\\u0D2B\\u0D2C\\u0D2D\\u0D36\\u0D60\\u0D61]", /*roundtrip exclusions*/
|
|
|
|
"KANNADA-TELUGU", "[:KANNADA:]", "[:TELUGU:]",
|
|
"[\\u0C01\\u0c3f\\u0c46\\u0c48\\u0c4a]", /*roundtrip exclusions*/
|
|
|
|
"TELUGU-KANNADA", "[:TELUGU:]", "[:KANNADA:]",
|
|
"[\\u0cc8\\u0cd5\\u0cd6\\u0CDE]", /*roundtrip exclusions*/
|
|
|
|
"MALAYALAM-TELUGU", "[:MALAYALAM:]", "[:TELUGU:]",
|
|
"[\\u0C01\\u0c44\\u0c4a\\u0c4c\\u0c4b\\u0c55\\u0c56]", /*roundtrip exclusions*/
|
|
|
|
"TELUGU-MALAYALAM", "[:TELUGU:]", "[:MALAYALAM:]",
|
|
"[\\u0d4c\\u0d57\\u0D34]", /*roundtrip exclusions*/
|
|
|
|
"MALAYALAM-KANNADA", "[:MALAYALAM:]", "[:KANNADA:]",
|
|
"[\\u0cc4\\u0cc6\\u0cca\\u0ccc\\u0ccb\\u0cd5\\u0cd6\\u0cDe]", /*roundtrip exclusions*/
|
|
|
|
"KANNADA-MALAYALAM", "[:KANNADA:]", "[:MALAYALAM:]",
|
|
"[\\u0d4c\\u0d57\\u0d46\\u0D34]", /*roundtrip exclusions*/
|
|
|
|
"Latin-Bengali",latinForIndic, "[[:Bengali:][\\u0964\\u0965]]",
|
|
"[\\u0965\\u09f0\\u09f1]" /*roundtrip exclusions*/ ,
|
|
|
|
"Latin-Gurmukhi", latinForIndic, "[[:Gurmukhi:][\\u0964\\u0965]]",
|
|
"[\\u0965\\u0a72\\u0a73\\u0a74]" /*roundtrip exclusions*/,
|
|
|
|
"Latin-Gujarati",latinForIndic, "[[:Gujarati:][\\u0964\\u0965]]",
|
|
"[\\u0965]" /*roundtrip exclusions*/,
|
|
|
|
"Latin-Oriya",latinForIndic, "[[:Oriya:][\\u0964\\u0965]]",
|
|
"[\\u0965]" /*roundtrip exclusions*/,
|
|
|
|
"Latin-Tamil",latinForIndic, "[:Tamil:]",
|
|
NULL /*roundtrip exclusions*/,
|
|
|
|
"Latin-Telugu",latinForIndic, "[:Telugu:]",
|
|
NULL /*roundtrip exclusions*/,
|
|
|
|
"Latin-Kannada",latinForIndic, "[:Kannada:]",
|
|
NULL /*roundtrip exclusions*/,
|
|
|
|
"Latin-Malayalam",latinForIndic, "[:Malayalam:]",
|
|
NULL /*roundtrip exclusions*/
|
|
|
|
};
|
|
|
|
void TransliteratorRoundTripTest::TestDebug(const char* name,const char fromSet[],
|
|
const char* toSet,const char* exclusions,UBool quick){
|
|
|
|
RTTest test(name);
|
|
Legal *legal = new LegalIndic();
|
|
test.test(UnicodeString(fromSet,""),UnicodeString(toSet,""),exclusions,this,quick,legal);
|
|
}
|
|
|
|
void TransliteratorRoundTripTest::TestInterIndic() {
|
|
int32_t num = (int32_t)(sizeof(interIndicArray)/(INTER_INDIC_ARRAY_WIDTH*sizeof(char*)));
|
|
if(quick){
|
|
logln("Testing only 5 of %i. Skipping rest (use -e for exhaustive)",num);
|
|
num = 5;
|
|
}
|
|
for(int i = 0; i < num;i++){
|
|
RTTest test(interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 0]);
|
|
Legal *legal = new LegalIndic();
|
|
test.test(UnicodeString(interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 1], ""),
|
|
UnicodeString(interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 2], ""),
|
|
interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 3], /* roundtrip exclusions */
|
|
this, quick, legal);
|
|
delete legal;
|
|
}
|
|
//TestDebug("Latin-Telugu", latinForIndic, "[:Telugu:]",FALSE,NULL);
|
|
}
|
|
|
|
// end indic tests ----------------------------------------------------------
|