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1 // © 2016 and later: Unicode, Inc. and others.
2 // License & terms of use: http://www.unicode.org/copyright.html
3 /*
4 **********************************************************************
5 *   Copyright (C) 2000-2016, International Business Machines
6 *   Corporation and others.  All Rights Reserved.
7 **********************************************************************
8 *   Date        Name        Description
9 *   05/23/00    aliu        Creation.
10 **********************************************************************
11 */
12 
13 #include "unicode/utypes.h"
14 
15 #if !UCONFIG_NO_TRANSLITERATION
16 
17 #include "unicode/translit.h"
18 #include "rbt.h"
19 #include "unicode/calendar.h"
20 #include "unicode/uniset.h"
21 #include "unicode/uchar.h"
22 #include "unicode/normlzr.h"
23 #include "unicode/uchar.h"
24 #include "unicode/parseerr.h"
25 #include "unicode/usetiter.h"
26 #include "unicode/putil.h"
27 #include "unicode/uversion.h"
28 #include "unicode/locid.h"
29 #include "unicode/ulocdata.h"
30 #include "unicode/utf8.h"
31 #include "unicode/utf16.h"
32 #include "putilimp.h"
33 #include "cmemory.h"
34 #include "transrt.h"
35 #include "testutil.h"
36 #include "uassert.h"
37 #include <string.h>
38 #include <stdio.h>
39 
40 #define CASE(id,test) case id:                          \
41                           name = #test;                 \
42                           if (exec) {                   \
43                               logln(#test "---");       \
44                               logln((UnicodeString)""); \
45                               UDate t = uprv_getUTCtime(); \
46                               test();                   \
47                               t = uprv_getUTCtime() - t; \
48                               logln((UnicodeString)#test " took " + t/U_MILLIS_PER_DAY + " seconds"); \
49                           }                             \
50                           break
51 
52 #define EXHAUSTIVE(id,test) case id:                            \
53                               if(quick==FALSE){                 \
54                                   name = #test;                 \
55                                   if (exec){                    \
56                                       logln(#test "---");       \
57                                       logln((UnicodeString)""); \
58                                       test();                   \
59                                   }                             \
60                               }else{                            \
61                                 name="";                        \
62                               }                                 \
63                               break
64 void
runIndexedTest(int32_t index,UBool exec,const char * & name,char *)65 TransliteratorRoundTripTest::runIndexedTest(int32_t index, UBool exec,
66                                    const char* &name, char* /*par*/) {
67     switch (index) {
68         CASE(0, TestCyrillic);
69         // CASE(0,TestKana);
70         CASE(1,TestHiragana);
71         CASE(2,TestKatakana);
72         CASE(3,TestJamo);
73         CASE(4,TestHangul);
74         CASE(5,TestGreek);
75         CASE(6,TestGreekUNGEGN);
76         CASE(7,Testel);
77         CASE(8,TestDevanagariLatin);
78         CASE(9,TestInterIndic);
79         CASE(10, TestHebrew);
80         CASE(11, TestArabic);
81         CASE(12, TestHan);
82         default: name = ""; break;
83     }
84 }
85 
86 
87 //--------------------------------------------------------------------
88 // TransliteratorPointer
89 //--------------------------------------------------------------------
90 
91 /**
92  * A transliterator pointer wrapper that deletes the contained
93  * pointer automatically when the wrapper goes out of scope.
94  * Sometimes called a "janitor" or "smart pointer".
95  */
96 class TransliteratorPointer {
97     Transliterator* t;
98     // disallowed:
99     TransliteratorPointer(const TransliteratorPointer& rhs);
100     TransliteratorPointer& operator=(const TransliteratorPointer& rhs);
101 public:
TransliteratorPointer(Transliterator * adopted)102     TransliteratorPointer(Transliterator* adopted) {
103         t = adopted;
104     }
~TransliteratorPointer()105     ~TransliteratorPointer() {
106         delete t;
107     }
operator ->()108     inline Transliterator* operator->() { return t; }
operator const Transliterator*() const109     inline operator const Transliterator*() const { return t; }
operator Transliterator*()110     inline operator Transliterator*() { return t; }
111 };
112 
113 //--------------------------------------------------------------------
114 // Legal
115 //--------------------------------------------------------------------
116 
117 class Legal {
118 public:
Legal()119     Legal() {}
~Legal()120     virtual ~Legal() {}
is(const UnicodeString &) const121     virtual UBool is(const UnicodeString& /*sourceString*/) const {return TRUE;}
122 };
123 
124 class LegalJamo : public Legal {
125     // any initial must be followed by a medial (or initial)
126     // any medial must follow an initial (or medial)
127     // any final must follow a medial (or final)
128 public:
LegalJamo()129     LegalJamo() {}
~LegalJamo()130     virtual ~LegalJamo() {}
131     virtual UBool is(const UnicodeString& sourceString) const;
132             int   getType(UChar c) const;
133 };
134 
is(const UnicodeString & sourceString) const135 UBool LegalJamo::is(const UnicodeString& sourceString) const {
136     int t;
137     UnicodeString decomp;
138     UErrorCode ec = U_ZERO_ERROR;
139     Normalizer::decompose(sourceString, FALSE, 0, decomp, ec);
140     if (U_FAILURE(ec)) {
141         return FALSE;
142     }
143     for (int i = 0; i < decomp.length(); ++i) { // don't worry about surrogates
144         switch (getType(decomp.charAt(i))) {
145         case 0: t = getType(decomp.charAt(i+1));
146                 if (t != 0 && t != 1) { return FALSE; }
147                 break;
148         case 1: t = getType(decomp.charAt(i-1));
149                 if (t != 0 && t != 1) { return FALSE; }
150                 break;
151         case 2: t = getType(decomp.charAt(i-1));
152                 if (t != 1 && t != 2) { return FALSE; }
153                 break;
154         }
155     }
156     return TRUE;
157 }
158 
getType(UChar c) const159 int LegalJamo::getType(UChar c) const {
160     if (0x1100 <= c && c <= 0x1112)
161         return 0;
162     else if (0x1161 <= c && c  <= 0x1175)
163              return 1;
164          else if (0x11A8 <= c && c  <= 0x11C2)
165                   return 2;
166     return -1; // other
167 }
168 
169 class LegalGreek : public Legal {
170     UBool full;
171 public:
LegalGreek(UBool _full)172     LegalGreek(UBool _full) { full = _full; }
~LegalGreek()173     virtual ~LegalGreek() {}
174 
175     virtual UBool is(const UnicodeString& sourceString) const;
176 
177     static UBool isVowel(UChar c);
178 
179     static UBool isRho(UChar c);
180 };
181 
is(const UnicodeString & sourceString) const182 UBool LegalGreek::is(const UnicodeString& sourceString) const {
183     UnicodeString decomp;
184     UErrorCode ec = U_ZERO_ERROR;
185     Normalizer::decompose(sourceString, FALSE, 0, decomp, ec);
186 
187     // modern is simpler: don't care about anything but a grave
188     if (full == FALSE) {
189         // A special case which is legal but should be
190         // excluded from round trip
191         // if (sourceString == UnicodeString("\\u039C\\u03C0", "")) {
192         //    return FALSE;
193         // }
194         for (int32_t i = 0; i < decomp.length(); ++i) {
195             UChar c = decomp.charAt(i);
196             // exclude all the accents
197             if (c == 0x0313 || c == 0x0314 || c == 0x0300 || c == 0x0302
198                 || c == 0x0342 || c == 0x0345
199                 ) return FALSE;
200         }
201         return TRUE;
202     }
203 
204     // Legal greek has breathing marks IFF there is a vowel or RHO at the start
205     // IF it has them, it has exactly one.
206     // IF it starts with a RHO, then the breathing mark must come before the second letter.
207     // Since there are no surrogates in greek, don't worry about them
208     UBool firstIsVowel = FALSE;
209     UBool firstIsRho = FALSE;
210     UBool noLetterYet = TRUE;
211     int32_t breathingCount = 0;
212     int32_t letterCount = 0;
213     for (int32_t i = 0; i < decomp.length(); ++i) {
214         UChar c = decomp.charAt(i);
215         if (u_isalpha(c)) {
216             ++letterCount;
217             if (noLetterYet) {
218                 noLetterYet =  FALSE;
219                 firstIsVowel = isVowel(c);
220                 firstIsRho = isRho(c);
221             }
222             if (firstIsRho && letterCount == 2 && breathingCount == 0) {
223                 return FALSE;
224             }
225         }
226         if (c == 0x0313 || c == 0x0314) {
227             ++breathingCount;
228         }
229     }
230 
231     if (firstIsVowel || firstIsRho) return breathingCount == 1;
232     return breathingCount == 0;
233 }
234 
isVowel(UChar c)235 UBool LegalGreek::isVowel(UChar c) {
236     switch (c) {
237     case 0x03B1:
238     case 0x03B5:
239     case 0x03B7:
240     case 0x03B9:
241     case 0x03BF:
242     case 0x03C5:
243     case 0x03C9:
244     case 0x0391:
245     case 0x0395:
246     case 0x0397:
247     case 0x0399:
248     case 0x039F:
249     case 0x03A5:
250     case 0x03A9:
251         return TRUE;
252     }
253     return FALSE;
254 }
255 
isRho(UChar c)256 UBool LegalGreek::isRho(UChar c) {
257     switch (c) {
258     case 0x03C1:
259     case 0x03A1:
260         return TRUE;
261     }
262     return FALSE;
263 }
264 
265 // AbbreviatedUnicodeSetIterator Interface ---------------------------------------------
266 //
267 //      Iterate over a UnicodeSet, only returning a sampling of the contained code points.
268 //        density is the approximate total number of code points to returned for the entire set.
269 //
270 
271 class AbbreviatedUnicodeSetIterator : public UnicodeSetIterator {
272 public :
273 
274     AbbreviatedUnicodeSetIterator();
275     virtual ~AbbreviatedUnicodeSetIterator();
276     void reset(UnicodeSet& set, UBool abb = FALSE, int32_t density = 100);
277 
278     /**
279      * ICU "poor man's RTTI", returns a UClassID for this class.
280      */
getStaticClassID()281     static inline UClassID getStaticClassID() { return (UClassID)&fgClassID; }
282 
283     /**
284      * ICU "poor man's RTTI", returns a UClassID for the actual class.
285      */
getDynamicClassID() const286     virtual inline UClassID getDynamicClassID() const { return getStaticClassID(); }
287 
288 private :
289     UBool abbreviated;
290     int32_t perRange;           // The maximum number of code points to be returned from each range
291     virtual void loadRange(int32_t range);
292 
293     /**
294      * The address of this static class variable serves as this class's ID
295      * for ICU "poor man's RTTI".
296      */
297     static const char fgClassID;
298 };
299 
300 // AbbreviatedUnicodeSetIterator Implementation ---------------------------------------
301 
302 const char AbbreviatedUnicodeSetIterator::fgClassID=0;
303 
AbbreviatedUnicodeSetIterator()304 AbbreviatedUnicodeSetIterator::AbbreviatedUnicodeSetIterator() :
305     UnicodeSetIterator(), abbreviated(FALSE) {
306 }
307 
~AbbreviatedUnicodeSetIterator()308 AbbreviatedUnicodeSetIterator::~AbbreviatedUnicodeSetIterator() {
309 }
310 
reset(UnicodeSet & newSet,UBool abb,int32_t density)311 void AbbreviatedUnicodeSetIterator::reset(UnicodeSet& newSet, UBool abb, int32_t density) {
312     UnicodeSetIterator::reset(newSet);
313     abbreviated = abb;
314     perRange = newSet.getRangeCount();
315     if (perRange != 0) {
316         perRange = density / perRange;
317     }
318 }
319 
loadRange(int32_t myRange)320 void AbbreviatedUnicodeSetIterator::loadRange(int32_t myRange) {
321     UnicodeSetIterator::loadRange(myRange);
322     if (abbreviated && (endElement > nextElement + perRange)) {
323         endElement = nextElement + perRange;
324     }
325 }
326 
327 //--------------------------------------------------------------------
328 // RTTest Interface
329 //--------------------------------------------------------------------
330 
331 class RTTest : public IntlTest {
332 
333     // PrintWriter out;
334 
335     UnicodeString transliteratorID;
336     int32_t errorLimit;
337     int32_t errorCount;
338     int32_t pairLimit;
339     UnicodeSet sourceRange;
340     UnicodeSet targetRange;
341     UnicodeSet toSource;
342     UnicodeSet toTarget;
343     UnicodeSet roundtripExclusionsSet;
344     IntlTest* parent;
345     Legal* legalSource; // NOT owned
346     UnicodeSet badCharacters;
347 
348 public:
349 
350     /*
351      * create a test for the given script transliterator.
352      */
353     RTTest(const UnicodeString& transliteratorIDStr);
354 
355     virtual ~RTTest();
356 
357     void setErrorLimit(int32_t limit);
358 
359     void setPairLimit(int32_t limit);
360 
361     void test(const UnicodeString& sourceRange,
362               const UnicodeString& targetRange,
363               const char* roundtripExclusions,
364               IntlTest* parent,
365               UBool     quick,
366               Legal* adoptedLegal,
367               int32_t density = 100);
368 
369 private:
370 
371     // Added to do better equality check.
372 
373     static UBool isSame(const UnicodeString& a, const UnicodeString& b);
374 
375     static UBool isCamel(const UnicodeString& a);
376 
377     UBool checkIrrelevants(Transliterator *t, const UnicodeString& irrelevants);
378 
379     void test2(UBool quick, int32_t density);
380 
381     void logWrongScript(const UnicodeString& label,
382                         const UnicodeString& from,
383                         const UnicodeString& to);
384 
385     void logNotCanonical(const UnicodeString& label,
386                          const UnicodeString& from,
387                          const UnicodeString& to,
388                          const UnicodeString& fromCan,
389                          const UnicodeString& toCan);
390 
391     void logFails(const UnicodeString& label);
392 
393     void logToRulesFails(const UnicodeString& label,
394                          const UnicodeString& from,
395                          const UnicodeString& to,
396                          const UnicodeString& toCan);
397 
398     void logRoundTripFailure(const UnicodeString& from,
399                              const UnicodeString& toID,
400                              const UnicodeString& to,
401                              const UnicodeString& backID,
402                              const UnicodeString& back);
403 };
404 
405 //--------------------------------------------------------------------
406 // RTTest Implementation
407 //--------------------------------------------------------------------
408 
409 /*
410  * create a test for the given script transliterator.
411  */
RTTest(const UnicodeString & transliteratorIDStr)412 RTTest::RTTest(const UnicodeString& transliteratorIDStr) {
413     transliteratorID = transliteratorIDStr;
414     errorLimit = 500;
415     errorCount = 0;
416     pairLimit  = 0x10000;
417 }
418 
~RTTest()419 RTTest::~RTTest() {
420 }
421 
setErrorLimit(int32_t limit)422 void RTTest::setErrorLimit(int32_t limit) {
423     errorLimit = limit;
424 }
425 
setPairLimit(int32_t limit)426 void RTTest::setPairLimit(int32_t limit) {
427     pairLimit = limit;
428 }
429 
isSame(const UnicodeString & a,const UnicodeString & b)430 UBool RTTest::isSame(const UnicodeString& a, const UnicodeString& b) {
431     if (a == b) return TRUE;
432     if (a.caseCompare(b, U_FOLD_CASE_DEFAULT)==0 && isCamel(a)) return TRUE;
433     UnicodeString aa, bb;
434     UErrorCode ec = U_ZERO_ERROR;
435     Normalizer::decompose(a, FALSE, 0, aa, ec);
436     Normalizer::decompose(b, FALSE, 0, bb, ec);
437     if (aa == bb) return TRUE;
438     if (aa.caseCompare(bb, U_FOLD_CASE_DEFAULT)==0 && isCamel(aa)) return TRUE;
439     return FALSE;
440 }
441 
isCamel(const UnicodeString & a)442 UBool RTTest::isCamel(const UnicodeString& a) {
443     // see if string is of the form aB; e.g. lower, then upper or title
444     UChar32 cp;
445     UBool haveLower = FALSE;
446     for (int32_t i = 0; i < a.length(); i += U16_LENGTH(cp)) {
447         cp = a.char32At(i);
448         int8_t t = u_charType(cp);
449         switch (t) {
450         case U_UPPERCASE_LETTER:
451             if (haveLower) return TRUE;
452             break;
453         case U_TITLECASE_LETTER:
454             if (haveLower) return TRUE;
455             // fall through, since second letter is lower.
456             U_FALLTHROUGH;
457         case U_LOWERCASE_LETTER:
458             haveLower = TRUE;
459             break;
460         }
461     }
462     return FALSE;
463 }
464 
test(const UnicodeString & sourceRangeVal,const UnicodeString & targetRangeVal,const char * roundtripExclusions,IntlTest * logVal,UBool quickRt,Legal * adoptedLegal,int32_t density)465 void RTTest::test(const UnicodeString& sourceRangeVal,
466                   const UnicodeString& targetRangeVal,
467                   const char* roundtripExclusions,
468                   IntlTest* logVal, UBool quickRt,
469                   Legal* adoptedLegal,
470                   int32_t density)
471 {
472 
473     UErrorCode status = U_ZERO_ERROR;
474 
475     this->parent = logVal;
476     this->legalSource = adoptedLegal;
477 
478     UnicodeSet neverOk("[:Other:]", status);
479     UnicodeSet okAnyway("[^[:Letter:]]", status);
480 
481     if (U_FAILURE(status)) {
482         parent->dataerrln("FAIL: Initializing UnicodeSet with [:Other:] or [^[:Letter:]] - Error: %s", u_errorName(status));
483         return;
484     }
485 
486     this->sourceRange.clear();
487     this->sourceRange.applyPattern(sourceRangeVal, status);
488     if (U_FAILURE(status)) {
489         parent->errln("FAIL: UnicodeSet::applyPattern(" +
490                    sourceRangeVal + ")");
491         return;
492     }
493     this->sourceRange.removeAll(neverOk);
494 
495     this->targetRange.clear();
496     this->targetRange.applyPattern(targetRangeVal, status);
497     if (U_FAILURE(status)) {
498         parent->errln("FAIL: UnicodeSet::applyPattern(" +
499                    targetRangeVal + ")");
500         return;
501     }
502     this->targetRange.removeAll(neverOk);
503 
504     this->toSource.clear();
505     this->toSource.applyPattern(sourceRangeVal, status);
506     if (U_FAILURE(status)) {
507         parent->errln("FAIL: UnicodeSet::applyPattern(" +
508                    sourceRangeVal + ")");
509         return;
510     }
511     this->toSource.addAll(okAnyway);
512 
513     this->toTarget.clear();
514     this->toTarget.applyPattern(targetRangeVal, status);
515     if (U_FAILURE(status)) {
516         parent->errln("FAIL: UnicodeSet::applyPattern(" +
517                    targetRangeVal + ")");
518         return;
519     }
520     this->toTarget.addAll(okAnyway);
521 
522     this->roundtripExclusionsSet.clear();
523     if (roundtripExclusions != NULL && strlen(roundtripExclusions) > 0) {
524         this->roundtripExclusionsSet.applyPattern(UnicodeString(roundtripExclusions, -1, US_INV), status);
525         if (U_FAILURE(status)) {
526             parent->errln("FAIL: UnicodeSet::applyPattern(%s)", roundtripExclusions);
527             return;
528         }
529     }
530 
531     badCharacters.clear();
532     badCharacters.applyPattern("[:Other:]", status);
533     if (U_FAILURE(status)) {
534         parent->errln("FAIL: UnicodeSet::applyPattern([:Other:])");
535         return;
536     }
537 
538     test2(quickRt, density);
539 
540     if (errorCount > 0) {
541         char str[100];
542         int32_t length = transliteratorID.extract(str, 100, NULL, status);
543         str[length] = 0;
544         parent->errln("FAIL: %s errors: %d %s", str, errorCount, (errorCount > errorLimit ? " (at least!)" : " ")); // + ", see " + logFileName);
545     } else {
546         char str[100];
547         int32_t length = transliteratorID.extract(str, 100, NULL, status);
548         str[length] = 0;
549         parent->logln("%s ok", str);
550     }
551 }
552 
checkIrrelevants(Transliterator * t,const UnicodeString & irrelevants)553 UBool RTTest::checkIrrelevants(Transliterator *t,
554                                const UnicodeString& irrelevants) {
555     for (int i = 0; i < irrelevants.length(); ++i) {
556         UChar c = irrelevants.charAt(i);
557         UnicodeString srcStr(c);
558         UnicodeString targ = srcStr;
559         t->transliterate(targ);
560         if (srcStr == targ) return TRUE;
561     }
562     return FALSE;
563 }
564 
test2(UBool quickRt,int32_t density)565 void RTTest::test2(UBool quickRt, int32_t density) {
566 
567     UnicodeString srcStr, targ, reverse;
568     UErrorCode status = U_ZERO_ERROR;
569     UParseError parseError ;
570     TransliteratorPointer sourceToTarget(
571         Transliterator::createInstance(transliteratorID, UTRANS_FORWARD, parseError,
572                                        status));
573     if ((Transliterator *)sourceToTarget == NULL) {
574         parent->dataerrln("FAIL: createInstance(" + transliteratorID +
575                    ") returned NULL. Error: " + u_errorName(status)
576                    + "\n\tpreContext : " + prettify(parseError.preContext)
577                    + "\n\tpostContext : " + prettify(parseError.postContext));
578 
579                 return;
580     }
581     TransliteratorPointer targetToSource(sourceToTarget->createInverse(status));
582     if ((Transliterator *)targetToSource == NULL) {
583         parent->errln("FAIL: " + transliteratorID +
584                    ".createInverse() returned NULL. Error:" + u_errorName(status)
585                    + "\n\tpreContext : " + prettify(parseError.preContext)
586                    + "\n\tpostContext : " + prettify(parseError.postContext));
587         return;
588     }
589 
590     AbbreviatedUnicodeSetIterator usi;
591     AbbreviatedUnicodeSetIterator usi2;
592 
593     parent->logln("Checking that at least one irrelevant character is not NFC'ed");
594     // string is from NFC_NO in the UCD
595     UnicodeString irrelevants = CharsToUnicodeString("\\u2000\\u2001\\u2126\\u212A\\u212B\\u2329");
596 
597     if (checkIrrelevants(sourceToTarget, irrelevants) == FALSE) {
598         logFails("Source-Target, irrelevants");
599     }
600     if (checkIrrelevants(targetToSource, irrelevants) == FALSE) {
601         logFails("Target-Source, irrelevants");
602     }
603 
604     if (!quickRt){
605       parent->logln("Checking that toRules works");
606       UnicodeString rules = "";
607 
608       UParseError parseError;
609       rules = sourceToTarget->toRules(rules, TRUE);
610       // parent->logln((UnicodeString)"toRules => " + rules);
611       TransliteratorPointer sourceToTarget2(Transliterator::createFromRules(
612                                                        "s2t2", rules,
613                                                        UTRANS_FORWARD,
614                                                        parseError, status));
615       if (U_FAILURE(status)) {
616           parent->errln("FAIL: createFromRules %s\n", u_errorName(status));
617           return;
618       }
619 
620       rules = targetToSource->toRules(rules, FALSE);
621       TransliteratorPointer targetToSource2(Transliterator::createFromRules(
622                                                        "t2s2", rules,
623                                                        UTRANS_FORWARD,
624                                                        parseError, status));
625       if (U_FAILURE(status)) {
626           parent->errln("FAIL: createFromRules %s\n", u_errorName(status));
627           return;
628       }
629 
630       usi.reset(sourceRange);
631       for (;;) {
632           if (!usi.next() || usi.isString()) break;
633           UChar32 c = usi.getCodepoint();
634 
635           UnicodeString srcStr((UChar32)c);
636           UnicodeString targ = srcStr;
637           sourceToTarget->transliterate(targ);
638           UnicodeString targ2 = srcStr;
639           sourceToTarget2->transliterate(targ2);
640           if (targ != targ2) {
641               logToRulesFails("Source-Target, toRules", srcStr, targ, targ2);
642           }
643       }
644 
645       usi.reset(targetRange);
646       for (;;) {
647           if (!usi.next() || usi.isString()) break;
648           UChar32 c = usi.getCodepoint();
649 
650           UnicodeString srcStr((UChar32)c);
651           UnicodeString targ = srcStr;
652           targetToSource->transliterate(targ);
653           UnicodeString targ2 = srcStr;
654           targetToSource2->transliterate(targ2);
655           if (targ != targ2) {
656               logToRulesFails("Target-Source, toRules", srcStr, targ, targ2);
657           }
658       }
659     }
660 
661     parent->logln("Checking that all source characters convert to target - Singles");
662 
663     UnicodeSet failSourceTarg;
664     usi.reset(sourceRange);
665     for (;;) {
666         if (!usi.next() || usi.isString()) break;
667         UChar32 c = usi.getCodepoint();
668 
669         UnicodeString srcStr((UChar32)c);
670         UnicodeString targ = srcStr;
671         sourceToTarget->transliterate(targ);
672         if (toTarget.containsAll(targ) == FALSE
673             || badCharacters.containsSome(targ) == TRUE) {
674             UnicodeString targD;
675             Normalizer::decompose(targ, FALSE, 0, targD, status);
676             if (U_FAILURE(status)) {
677                 parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
678                 return;
679             }
680             if (toTarget.containsAll(targD) == FALSE ||
681                 badCharacters.containsSome(targD) == TRUE) {
682                 logWrongScript("Source-Target", srcStr, targ);
683                 failSourceTarg.add(c);
684                 continue;
685             }
686         }
687 
688         UnicodeString cs2;
689         Normalizer::decompose(srcStr, FALSE, 0, cs2, status);
690         if (U_FAILURE(status)) {
691             parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
692             return;
693         }
694         UnicodeString targ2 = cs2;
695         sourceToTarget->transliterate(targ2);
696         if (targ != targ2) {
697             logNotCanonical("Source-Target", srcStr, targ,cs2, targ2);
698         }
699     }
700 
701     parent->logln("Checking that all source characters convert to target - Doubles");
702 
703     UnicodeSet sourceRangeMinusFailures(sourceRange);
704     sourceRangeMinusFailures.removeAll(failSourceTarg);
705 
706     usi.reset(sourceRangeMinusFailures, quickRt, density);
707     for (;;) {
708         if (!usi.next() || usi.isString()) break;
709         UChar32 c = usi.getCodepoint();
710 
711         usi2.reset(sourceRangeMinusFailures, quickRt, density);
712         for (;;) {
713             if (!usi2.next() || usi2.isString()) break;
714             UChar32 d = usi2.getCodepoint();
715 
716             UnicodeString srcStr;
717             srcStr += (UChar32)c;
718             srcStr += (UChar32)d;
719             UnicodeString targ = srcStr;
720             sourceToTarget->transliterate(targ);
721             if (toTarget.containsAll(targ) == FALSE ||
722                 badCharacters.containsSome(targ) == TRUE)
723             {
724                 UnicodeString targD;
725                 Normalizer::decompose(targ, FALSE, 0, targD, status);
726                 if (U_FAILURE(status)) {
727                     parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
728                     return;
729                 }
730                 if (toTarget.containsAll(targD) == FALSE ||
731                     badCharacters.containsSome(targD) == TRUE) {
732                     logWrongScript("Source-Target", srcStr, targ);
733                     continue;
734                 }
735             }
736             UnicodeString cs2;
737             Normalizer::decompose(srcStr, FALSE, 0, cs2, status);
738             if (U_FAILURE(status)) {
739                 parent->errln("FAIL: Internal error during decomposition %s\n", u_errorName(status));
740                 return;
741             }
742             UnicodeString targ2 = cs2;
743             sourceToTarget->transliterate(targ2);
744             if (targ != targ2) {
745                 logNotCanonical("Source-Target", srcStr, targ, cs2,targ2);
746             }
747         }
748     }
749 
750     parent->logln("Checking that target characters convert to source and back - Singles");
751 
752     UnicodeSet failTargSource;
753     UnicodeSet failRound;
754 
755     usi.reset(targetRange);
756     for (;;) {
757         if (!usi.next()) break;
758 
759         if(usi.isString()){
760             srcStr = usi.getString();
761         }else{
762             srcStr = (UnicodeString)usi.getCodepoint();
763         }
764 
765         UChar32 c = srcStr.char32At(0);
766 
767         targ = srcStr;
768         targetToSource->transliterate(targ);
769         reverse = targ;
770         sourceToTarget->transliterate(reverse);
771 
772         if (toSource.containsAll(targ) == FALSE ||
773             badCharacters.containsSome(targ) == TRUE) {
774             UnicodeString targD;
775             Normalizer::decompose(targ, FALSE, 0, targD, status);
776             if (U_FAILURE(status)) {
777                 parent->errln("FAIL: Internal error during decomposition%s\n", u_errorName(status));
778                 return;
779             }
780             if (toSource.containsAll(targD) == FALSE) {
781                 logWrongScript("Target-Source", srcStr, targ);
782                 failTargSource.add(c);
783                 continue;
784             }
785             if (badCharacters.containsSome(targD) == TRUE) {
786                 logWrongScript("Target-Source*", srcStr, targ);
787                 failTargSource.add(c);
788                 continue;
789             }
790         }
791         if (isSame(srcStr, reverse) == FALSE &&
792             roundtripExclusionsSet.contains(c) == FALSE
793             && roundtripExclusionsSet.contains(srcStr)==FALSE) {
794             logRoundTripFailure(srcStr,targetToSource->getID(), targ,sourceToTarget->getID(), reverse);
795             failRound.add(c);
796             continue;
797         }
798 
799         UnicodeString targ2;
800         Normalizer::decompose(targ, FALSE, 0, targ2, status);
801         if (U_FAILURE(status)) {
802             parent->errln("FAIL: Internal error during decomposition%s\n", u_errorName(status));
803             return;
804         }
805         UnicodeString reverse2 = targ2;
806         sourceToTarget->transliterate(reverse2);
807         if (reverse != reverse2) {
808             logNotCanonical("Target-Source", targ, reverse, targ2, reverse2);
809         }
810     }
811 
812     parent->logln("Checking that target characters convert to source and back - Doubles");
813     int32_t count = 0;
814 
815     UnicodeSet targetRangeMinusFailures(targetRange);
816     targetRangeMinusFailures.removeAll(failTargSource);
817     targetRangeMinusFailures.removeAll(failRound);
818 
819     usi.reset(targetRangeMinusFailures, quickRt, density);
820     UnicodeString targ2;
821     UnicodeString reverse2;
822     UnicodeString targD;
823     for (;;) {
824         if (!usi.next() || usi.isString()) break;
825         UChar32 c = usi.getCodepoint();
826         if (++count > pairLimit) {
827             //throw new TestTruncated("Test truncated at " + pairLimit + " x 64k pairs");
828             parent->logln("");
829             parent->logln((UnicodeString)"Test truncated at " + pairLimit + " x 64k pairs");
830             return;
831         }
832 
833         usi2.reset(targetRangeMinusFailures, quickRt, density);
834         for (;;) {
835             if (!usi2.next() || usi2.isString())
836                 break;
837             UChar32 d = usi2.getCodepoint();
838             srcStr.truncate(0);  // empty the variable without construction/destruction
839             srcStr += c;
840             srcStr += d;
841 
842             targ = srcStr;
843             targetToSource->transliterate(targ);
844             reverse = targ;
845             sourceToTarget->transliterate(reverse);
846 
847             if (toSource.containsAll(targ) == FALSE ||
848                 badCharacters.containsSome(targ) == TRUE)
849             {
850                 targD.truncate(0);  // empty the variable without construction/destruction
851                 Normalizer::decompose(targ, FALSE, 0, targD, status);
852                 if (U_FAILURE(status)) {
853                     parent->errln("FAIL: Internal error during decomposition%s\n",
854                                u_errorName(status));
855                     return;
856                 }
857                 if (toSource.containsAll(targD) == FALSE
858                     || badCharacters.containsSome(targD) == TRUE)
859                 {
860                     logWrongScript("Target-Source", srcStr, targ);
861                     continue;
862                 }
863             }
864             if (isSame(srcStr, reverse) == FALSE &&
865                 roundtripExclusionsSet.contains(c) == FALSE&&
866                 roundtripExclusionsSet.contains(d) == FALSE &&
867                 roundtripExclusionsSet.contains(srcStr)== FALSE)
868             {
869                 logRoundTripFailure(srcStr,targetToSource->getID(), targ, sourceToTarget->getID(),reverse);
870                 continue;
871             }
872 
873             targ2.truncate(0);  // empty the variable without construction/destruction
874             Normalizer::decompose(targ, FALSE, 0, targ2, status);
875             if (U_FAILURE(status)) {
876                 parent->errln("FAIL: Internal error during decomposition%s\n", u_errorName(status));
877                 return;
878             }
879             reverse2 = targ2;
880             sourceToTarget->transliterate(reverse2);
881             if (reverse != reverse2) {
882                 logNotCanonical("Target-Source", targ,reverse, targ2, reverse2);
883             }
884         }
885     }
886     parent->logln("");
887 }
888 
logWrongScript(const UnicodeString & label,const UnicodeString & from,const UnicodeString & to)889 void RTTest::logWrongScript(const UnicodeString& label,
890                             const UnicodeString& from,
891                             const UnicodeString& to) {
892     parent->errln((UnicodeString)"FAIL " +
893                label + ": " +
894                from + "(" + TestUtility::hex(from) + ") => " +
895                to + "(" + TestUtility::hex(to) + ")");
896     ++errorCount;
897 }
898 
logNotCanonical(const UnicodeString & label,const UnicodeString & from,const UnicodeString & to,const UnicodeString & fromCan,const UnicodeString & toCan)899 void RTTest::logNotCanonical(const UnicodeString& label,
900                              const UnicodeString& from,
901                              const UnicodeString& to,
902                              const UnicodeString& fromCan,
903                              const UnicodeString& toCan) {
904     parent->errln((UnicodeString)"FAIL (can.equiv)" +
905                label + ": " +
906                from + "(" + TestUtility::hex(from) + ") => " +
907                to + "(" + TestUtility::hex(to) + ")" +
908                fromCan + "(" + TestUtility::hex(fromCan) + ") => " +
909                toCan + " (" +
910                TestUtility::hex(toCan) + ")"
911                );
912     ++errorCount;
913 }
914 
logFails(const UnicodeString & label)915 void RTTest::logFails(const UnicodeString& label) {
916     parent->errln((UnicodeString)"<br>FAIL " + label);
917     ++errorCount;
918 }
919 
logToRulesFails(const UnicodeString & label,const UnicodeString & from,const UnicodeString & to,const UnicodeString & otherTo)920 void RTTest::logToRulesFails(const UnicodeString& label,
921                              const UnicodeString& from,
922                              const UnicodeString& to,
923                              const UnicodeString& otherTo)
924 {
925     parent->errln((UnicodeString)"FAIL: " +
926                label + ": " +
927                from + "(" + TestUtility::hex(from) + ") => " +
928                to + "(" + TestUtility::hex(to) + ")" +
929                "!=" +
930                otherTo + " (" +
931                TestUtility::hex(otherTo) + ")"
932                );
933     ++errorCount;
934 }
935 
936 
logRoundTripFailure(const UnicodeString & from,const UnicodeString & toID,const UnicodeString & to,const UnicodeString & backID,const UnicodeString & back)937 void RTTest::logRoundTripFailure(const UnicodeString& from,
938                                  const UnicodeString& toID,
939                                  const UnicodeString& to,
940                                  const UnicodeString& backID,
941                                  const UnicodeString& back) {
942     if (legalSource->is(from) == FALSE) return; // skip illegals
943 
944     parent->errln((UnicodeString)"FAIL Roundtrip: " +
945                from + "(" + TestUtility::hex(from) + ") => " +
946                to + "(" + TestUtility::hex(to) + ")  "+toID+" => " +
947                back + "(" + TestUtility::hex(back) + ") "+backID+" => ");
948     ++errorCount;
949 }
950 
951 //--------------------------------------------------------------------
952 // Specific Tests
953 //--------------------------------------------------------------------
954 
955     /*
956     Note: Unicode 3.2 added new Hiragana/Katakana characters:
957 
958 3095..3096    ; 3.2 #   [2] HIRAGANA LETTER SMALL KA..HIRAGANA LETTER SMALL KE
959 309F..30A0    ; 3.2 #   [2] HIRAGANA DIGRAPH YORI..KATAKANA-HIRAGANA DOUBLE HYPHEN
960 30FF          ; 3.2 #       KATAKANA DIGRAPH KOTO
961 31F0..31FF    ; 3.2 #  [16] KATAKANA LETTER SMALL KU..KATAKANA LETTER SMALL RO
962 
963     Unicode 5.2 added another Hiragana character:
964 1F200         ; 5.2 #       SQUARE HIRAGANA HOKA
965 
966     We will not add them to the rules until they are more supported (e.g. in fonts on Windows)
967     A bug has been filed to remind us to do this: #1979.
968     */
969 
970 static const char KATAKANA[] = "[[[:katakana:][\\u30A1-\\u30FA\\u30FC]]-[\\u30FF\\u31F0-\\u31FF]-[:^age=5.2:]]";
971 static const char HIRAGANA[] = "[[[:hiragana:][\\u3040-\\u3094]]-[\\u3095-\\u3096\\u309F-\\u30A0\\U0001F200-\\U0001F2FF]-[:^age=5.2:]]";
972 static const char LENGTH[] = "[\\u30FC]";
973 static const char HALFWIDTH_KATAKANA[] = "[\\uFF65-\\uFF9D]";
974 static const char KATAKANA_ITERATION[] = "[\\u30FD\\u30FE]";
975 static const char HIRAGANA_ITERATION[] = "[\\u309D\\u309E]";
976 static const int32_t TEMP_MAX=256;
977 
TestKana()978 void TransliteratorRoundTripTest::TestKana() {
979     RTTest test("Katakana-Hiragana");
980     Legal *legal = new Legal();
981     char temp[TEMP_MAX];
982     strcpy(temp, "[");
983     strcat(temp, HALFWIDTH_KATAKANA);
984     strcat(temp, LENGTH);
985     strcat(temp, "]");
986     test.test(KATAKANA, UnicodeString("[") + HIRAGANA + LENGTH + UnicodeString("]"),
987               temp,
988               this, quick, legal);
989     delete legal;
990 }
991 
TestHiragana()992 void TransliteratorRoundTripTest::TestHiragana() {
993     RTTest test("Latin-Hiragana");
994     Legal *legal = new Legal();
995     test.test(UnicodeString("[a-zA-Z]", ""),
996               UnicodeString(HIRAGANA, -1, US_INV),
997               HIRAGANA_ITERATION, this, quick, legal);
998     delete legal;
999 }
1000 
TestKatakana()1001 void TransliteratorRoundTripTest::TestKatakana() {
1002     RTTest test("Latin-Katakana");
1003     Legal *legal = new Legal();
1004     char temp[TEMP_MAX];
1005     strcpy(temp, "[");
1006     strcat(temp, KATAKANA_ITERATION);
1007     strcat(temp, HALFWIDTH_KATAKANA);
1008     strcat(temp, "]");
1009     test.test(UnicodeString("[a-zA-Z]", ""),
1010               UnicodeString(KATAKANA, -1, US_INV),
1011               temp,
1012               this, quick, legal);
1013     delete legal;
1014 }
1015 
TestJamo()1016 void TransliteratorRoundTripTest::TestJamo() {
1017     RTTest t("Latin-Jamo");
1018     Legal *legal = new LegalJamo();
1019     t.test(UnicodeString("[a-zA-Z]", ""),
1020            UnicodeString("[\\u1100-\\u1112 \\u1161-\\u1175 \\u11A8-\\u11C2]",
1021                          ""),
1022            NULL, this, quick, legal);
1023     delete legal;
1024 }
1025 
TestHangul()1026 void TransliteratorRoundTripTest::TestHangul() {
1027     RTTest t("Latin-Hangul");
1028     Legal *legal = new Legal();
1029     if (quick) t.setPairLimit(1000);
1030     t.test(UnicodeString("[a-zA-Z]", ""),
1031            UnicodeString("[\\uAC00-\\uD7A4]", ""),
1032            NULL, this, quick, legal, 1);
1033     delete legal;
1034 }
1035 
1036 
1037 #define ASSERT_SUCCESS(status) UPRV_BLOCK_MACRO_BEGIN { \
1038     if (U_FAILURE(status)) { \
1039         errcheckln(status, "error at file %s, line %d, status = %s", __FILE__, __LINE__, \
1040                    u_errorName(status)); \
1041         return; \
1042     } \
1043 } UPRV_BLOCK_MACRO_END
1044 
1045 
writeStringInU8(FILE * out,const UnicodeString & s)1046 static void writeStringInU8(FILE *out, const UnicodeString &s) {
1047     int i;
1048     for (i=0; i<s.length(); i=s.moveIndex32(i, 1)) {
1049         UChar32  c = s.char32At(i);
1050         uint8_t  bufForOneChar[10];
1051         UBool    isError = FALSE;
1052         int32_t  destIdx = 0;
1053         U8_APPEND(bufForOneChar, destIdx, (int32_t)sizeof(bufForOneChar), c, isError);
1054         U_ASSERT(!isError);
1055         (void)isError;
1056         fwrite(bufForOneChar, 1, destIdx, out);
1057     }
1058 }
1059 
1060 
1061 
1062 
TestHan()1063 void TransliteratorRoundTripTest::TestHan() {
1064     UErrorCode  status = U_ZERO_ERROR;
1065     LocalULocaleDataPointer uld(ulocdata_open("zh",&status));
1066     LocalUSetPointer USetExemplars(uset_openEmpty());
1067     assertTrue("", USetExemplars.isValid(), false, false, __FILE__, __LINE__);
1068     if (! USetExemplars.isValid()) return;
1069     ulocdata_getExemplarSet(uld.getAlias(), USetExemplars.getAlias(), 0, ULOCDATA_ES_STANDARD, &status);
1070     ASSERT_SUCCESS(status);
1071 
1072     UnicodeString source;
1073     UChar32       c;
1074     int           i;
1075     for (i=0; ;i++) {
1076         // Add all of the Chinese exemplar chars to the string "source".
1077         c = uset_charAt(USetExemplars.getAlias(), i);
1078         if (c == (UChar32)-1) {
1079             break;
1080         }
1081         source.append(c);
1082     }
1083 
1084     // transform with Han translit
1085     Transliterator *hanTL = Transliterator::createInstance("Han-Latin", UTRANS_FORWARD, status);
1086     ASSERT_SUCCESS(status);
1087     UnicodeString target=source;
1088     hanTL->transliterate(target);
1089     // now verify that there are no Han characters left
1090     UnicodeSet allHan("[:han:]", status);
1091     ASSERT_SUCCESS(status);
1092     if (allHan.containsSome(target)) {
1093         errln("file %s, line %d, No Han must be left after Han-Latin transliteration",
1094             __FILE__, __LINE__);
1095     }
1096 
1097     // check the pinyin translit
1098     Transliterator *pn = Transliterator::createInstance("Latin-NumericPinyin", UTRANS_FORWARD, status);
1099     ASSERT_SUCCESS(status);
1100     UnicodeString target2 = target;
1101     pn->transliterate(target2);
1102 
1103     // verify that there are no marks
1104     Transliterator *nfd = Transliterator::createInstance("nfd", UTRANS_FORWARD, status);
1105     ASSERT_SUCCESS(status);
1106 
1107     UnicodeString nfded = target2;
1108     nfd->transliterate(nfded);
1109     UnicodeSet allMarks(UNICODE_STRING_SIMPLE("[\\u0304\\u0301\\u030C\\u0300\\u0306]"), status); // look only for Pinyin tone marks, not all marks (there are some others in there)
1110     ASSERT_SUCCESS(status);
1111     assertFalse("NumericPinyin must contain no marks", allMarks.containsSome(nfded));
1112 
1113     // verify roundtrip
1114     Transliterator *np = pn->createInverse(status);
1115     ASSERT_SUCCESS(status);
1116     UnicodeString target3 = target2;
1117     np->transliterate(target3);
1118     UBool roundtripOK = (target3.compare(target) == 0);
1119     assertTrue("NumericPinyin must roundtrip", roundtripOK);
1120     if (!roundtripOK) {
1121         const char *filename = "numeric-pinyin.log.txt";
1122         FILE *out = fopen(filename, "w");
1123         errln("Creating log file %s\n", filename);
1124         fprintf(out, "Pinyin:                ");
1125         writeStringInU8(out, target);
1126         fprintf(out, "\nPinyin-Numeric-Pinyin: ");
1127         writeStringInU8(out, target2);
1128         fprintf(out, "\nNumeric-Pinyin-Pinyin: ");
1129         writeStringInU8(out, target3);
1130         fprintf(out, "\n");
1131         fclose(out);
1132     }
1133 
1134     delete hanTL;
1135     delete pn;
1136     delete nfd;
1137     delete np;
1138 }
1139 
1140 
TestGreek()1141 void TransliteratorRoundTripTest::TestGreek() {
1142     logKnownIssue( "cldrbug:1911");
1143     // It is left in its current state as a regression test.
1144 
1145     RTTest test("Latin-Greek");
1146     LegalGreek *legal = new LegalGreek(TRUE);
1147 
1148     test.test(UnicodeString("[a-zA-Z]", ""),
1149         UnicodeString("[\\u003B\\u00B7[[:Greek:]&[:Letter:]]-["
1150             "\\u1D26-\\u1D2A" // L&   [5] GREEK LETTER SMALL CAPITAL GAMMA..GREEK LETTER SMALL CAPITAL PSI
1151             "\\u1D5D-\\u1D61" // Lm   [5] MODIFIER LETTER SMALL BETA..MODIFIER LETTER SMALL CHI
1152             "\\u1D66-\\u1D6A" // L&   [5] GREEK SUBSCRIPT SMALL LETTER BETA..GREEK SUBSCRIPT SMALL LETTER CHI
1153             "\\u03D7-\\u03EF" // \N{GREEK KAI SYMBOL}..\N{COPTIC SMALL LETTER DEI}
1154             "] & [:Age=4.0:]]",
1155 
1156               //UnicodeString("[[\\u003B\\u00B7[:Greek:]-[\\u0374\\u0385\\u1fcd\\u1fce\\u1fdd\\u1fde\\u1fed-\\u1fef\\u1ffd\\u03D7-\\u03EF]]&[:Age=3.2:]]",
1157                             ""),
1158               "[\\u00B5\\u037A\\u03D0-\\u03F5\\u03f9]", /* exclusions */
1159               this, quick, legal, 50);
1160 
1161 
1162     delete legal;
1163 }
1164 
1165 
TestGreekUNGEGN()1166 void TransliteratorRoundTripTest::TestGreekUNGEGN() {
1167     logKnownIssue( "cldrbug:1911");
1168     // It is left in its current state as a regression test.
1169 
1170     RTTest test("Latin-Greek/UNGEGN");
1171     LegalGreek *legal = new LegalGreek(FALSE);
1172 
1173     test.test(UnicodeString("[a-zA-Z]", ""),
1174         UnicodeString("[\\u003B\\u00B7[[:Greek:]&[:Letter:]]-["
1175             "\\u1D26-\\u1D2A" // L&   [5] GREEK LETTER SMALL CAPITAL GAMMA..GREEK LETTER SMALL CAPITAL PSI
1176             "\\u1D5D-\\u1D61" // Lm   [5] MODIFIER LETTER SMALL BETA..MODIFIER LETTER SMALL CHI
1177             "\\u1D66-\\u1D6A" // L&   [5] GREEK SUBSCRIPT SMALL LETTER BETA..GREEK SUBSCRIPT SMALL LETTER CHI
1178             "\\u03D7-\\u03EF" // \N{GREEK KAI SYMBOL}..\N{COPTIC SMALL LETTER DEI}
1179             "] & [:Age=4.0:]]",
1180               //UnicodeString("[[\\u003B\\u00B7[:Greek:]-[\\u0374\\u0385\\u1fce\\u1fde\\u03D7-\\u03EF]]&[:Age=3.2:]]",
1181                             ""),
1182               "[\\u0385\\u00B5\\u037A\\u03D0-\\uFFFF {\\u039C\\u03C0}]", /* roundtrip exclusions */
1183               this, quick, legal);
1184 
1185     delete legal;
1186 }
1187 
Testel()1188 void TransliteratorRoundTripTest::Testel() {
1189     logKnownIssue( "cldrbug:1911");
1190     // It is left in its current state as a regression test.
1191 
1192     RTTest test("Latin-el");
1193     LegalGreek *legal = new LegalGreek(FALSE);
1194 
1195     test.test(UnicodeString("[a-zA-Z]", ""),
1196         UnicodeString("[\\u003B\\u00B7[[:Greek:]&[:Letter:]]-["
1197             "\\u1D26-\\u1D2A" // L&   [5] GREEK LETTER SMALL CAPITAL GAMMA..GREEK LETTER SMALL CAPITAL PSI
1198             "\\u1D5D-\\u1D61" // Lm   [5] MODIFIER LETTER SMALL BETA..MODIFIER LETTER SMALL CHI
1199             "\\u1D66-\\u1D6A" // L&   [5] GREEK SUBSCRIPT SMALL LETTER BETA..GREEK SUBSCRIPT SMALL LETTER CHI
1200             "\\u03D7-\\u03EF" // \N{GREEK KAI SYMBOL}..\N{COPTIC SMALL LETTER DEI}
1201             "] & [:Age=4.0:]]",
1202               //UnicodeString("[[\\u003B\\u00B7[:Greek:]-[\\u0374\\u0385\\u1fce\\u1fde\\u03D7-\\u03EF]]&[:Age=3.2:]]",
1203                             ""),
1204               "[\\u00B5\\u037A\\u03D0-\\uFFFF {\\u039C\\u03C0}]", /* exclusions */
1205               this, quick, legal);
1206 
1207 
1208     delete legal;
1209 }
1210 
1211 
TestArabic()1212 void TransliteratorRoundTripTest::TestArabic() {
1213     UnicodeString ARABIC("[\\u060C\\u061B\\u061F\\u0621\\u0627-\\u063A\\u0641-\\u0655\\u0660-\\u066C\\u067E\\u0686\\u0698\\u06A4\\u06AD\\u06AF\\u06CB-\\u06CC\\u06F0-\\u06F9]", -1, US_INV);
1214     Legal *legal = new Legal();
1215     RTTest test("Latin-Arabic");
1216         test.test(UNICODE_STRING_SIMPLE("[a-zA-Z\\u02BE\\u02BF\\u207F]"), ARABIC, "[a-zA-Z\\u02BE\\u02BF\\u207F]",this, quick, legal); //
1217    delete legal;
1218 }
1219 class LegalHebrew : public Legal {
1220 private:
1221     UnicodeSet FINAL;
1222     UnicodeSet NON_FINAL;
1223     UnicodeSet LETTER;
1224 public:
1225     LegalHebrew(UErrorCode& error);
~LegalHebrew()1226     virtual ~LegalHebrew() {}
1227     virtual UBool is(const UnicodeString& sourceString) const;
1228 };
1229 
LegalHebrew(UErrorCode & error)1230 LegalHebrew::LegalHebrew(UErrorCode& error){
1231     FINAL.applyPattern(UNICODE_STRING_SIMPLE("[\\u05DA\\u05DD\\u05DF\\u05E3\\u05E5]"), error);
1232     NON_FINAL.applyPattern(UNICODE_STRING_SIMPLE("[\\u05DB\\u05DE\\u05E0\\u05E4\\u05E6]"), error);
1233     LETTER.applyPattern("[:letter:]", error);
1234 }
is(const UnicodeString & sourceString) const1235 UBool LegalHebrew::is(const UnicodeString& sourceString)const{
1236 
1237     if (sourceString.length() == 0) return TRUE;
1238     // don't worry about surrogates.
1239     for (int i = 0; i < sourceString.length(); ++i) {
1240         UChar ch = sourceString.charAt(i);
1241         UChar next = i+1 == sourceString.length() ? 0x0000 : sourceString.charAt(i);
1242         if (FINAL.contains(ch)) {
1243             if (LETTER.contains(next)) return FALSE;
1244         } else if (NON_FINAL.contains(ch)) {
1245             if (!LETTER.contains(next)) return FALSE;
1246         }
1247     }
1248     return TRUE;
1249 }
TestHebrew()1250 void TransliteratorRoundTripTest::TestHebrew() {
1251     logKnownIssue( "cldrbug:1911");
1252     // It is left in its current state as a regression test.
1253 
1254     //long start = System.currentTimeMillis();
1255     UErrorCode error = U_ZERO_ERROR;
1256     LegalHebrew* legal = new LegalHebrew(error);
1257     if(U_FAILURE(error)){
1258         dataerrln("Could not construct LegalHebrew object. Error: %s", u_errorName(error));
1259         return;
1260     }
1261     RTTest test("Latin-Hebrew");
1262     test.test(UNICODE_STRING_SIMPLE("[a-zA-Z\\u02BC\\u02BB]"), UNICODE_STRING_SIMPLE("[[[:hebrew:]-[\\u05BD\\uFB00-\\uFBFF]]&[:Age=4.0:]]"), "[\\u05F0\\u05F1\\u05F2]", this, quick, legal);
1263 
1264     //showElapsed(start, "TestHebrew");
1265     delete legal;
1266 }
TestCyrillic()1267 void TransliteratorRoundTripTest::TestCyrillic() {
1268     RTTest test("Latin-Cyrillic");
1269     Legal *legal = new Legal();
1270 
1271     test.test(UnicodeString("[a-zA-Z\\u0110\\u0111\\u02BA\\u02B9]", ""),
1272               UnicodeString("[[\\u0400-\\u045F] & [:Age=3.2:]]", ""), NULL, this, quick,
1273               legal);
1274 
1275     delete legal;
1276 }
1277 
1278 
1279 // Inter-Indic Tests ----------------------------------
1280 class LegalIndic :public Legal{
1281     UnicodeSet vowelSignSet;
1282     UnicodeSet avagraha;
1283     UnicodeSet nukta;
1284     UnicodeSet virama;
1285     UnicodeSet sanskritStressSigns;
1286     UnicodeSet chandrabindu;
1287 
1288 public:
1289     LegalIndic();
1290     virtual UBool is(const UnicodeString& sourceString) const;
~LegalIndic()1291     virtual ~LegalIndic() {}
1292 };
is(const UnicodeString & sourceString) const1293 UBool LegalIndic::is(const UnicodeString& sourceString) const{
1294     int cp=sourceString.charAt(0);
1295 
1296     // A vowel sign cannot be the first char
1297     if(vowelSignSet.contains(cp)){
1298         return FALSE;
1299     }else if(avagraha.contains(cp)){
1300         return FALSE;
1301     }else if(virama.contains(cp)){
1302         return FALSE;
1303     }else if(nukta.contains(cp)){
1304         return FALSE;
1305     }else if(sanskritStressSigns.contains(cp)){
1306         return FALSE;
1307     }else if(chandrabindu.contains(cp) &&
1308                 ((sourceString.length()>1) &&
1309                     vowelSignSet.contains(sourceString.charAt(1)))){
1310         return FALSE;
1311     }
1312     return TRUE;
1313 }
LegalIndic()1314 LegalIndic::LegalIndic(){
1315         UErrorCode status = U_ZERO_ERROR;
1316         vowelSignSet.addAll( UnicodeSet("[\\u0902\\u0903\\u0904\\u093e-\\u094c\\u0962\\u0963]",status));/* Devanagari */
1317         vowelSignSet.addAll( UnicodeSet("[\\u0982\\u0983\\u09be-\\u09cc\\u09e2\\u09e3\\u09D7]",status));/* Bengali */
1318         vowelSignSet.addAll( UnicodeSet("[\\u0a02\\u0a03\\u0a3e-\\u0a4c\\u0a62\\u0a63\\u0a70\\u0a71]",status));/* Gurmukhi */
1319         vowelSignSet.addAll( UnicodeSet("[\\u0a82\\u0a83\\u0abe-\\u0acc\\u0ae2\\u0ae3]",status));/* Gujarati */
1320         vowelSignSet.addAll( UnicodeSet("[\\u0b02\\u0b03\\u0b3e-\\u0b4c\\u0b62\\u0b63\\u0b56\\u0b57]",status));/* Oriya */
1321         vowelSignSet.addAll( UnicodeSet("[\\u0b82\\u0b83\\u0bbe-\\u0bcc\\u0be2\\u0be3\\u0bd7]",status));/* Tamil */
1322         vowelSignSet.addAll( UnicodeSet("[\\u0c02\\u0c03\\u0c3e-\\u0c4c\\u0c62\\u0c63\\u0c55\\u0c56]",status));/* Telugu */
1323         vowelSignSet.addAll( UnicodeSet("[\\u0c82\\u0c83\\u0cbe-\\u0ccc\\u0ce2\\u0ce3\\u0cd5\\u0cd6]",status));/* Kannada */
1324         vowelSignSet.addAll( UnicodeSet("[\\u0d02\\u0d03\\u0d3e-\\u0d4c\\u0d62\\u0d63\\u0d57]",status));/* Malayalam */
1325 
1326         avagraha.addAll(UnicodeSet("[\\u093d\\u09bd\\u0abd\\u0b3d\\u0cbd]",status));
1327         nukta.addAll(UnicodeSet("[\\u093c\\u09bc\\u0a3c\\u0abc\\u0b3c\\u0cbc]",status));
1328         virama.addAll(UnicodeSet("[\\u094d\\u09cd\\u0a4d\\u0acd\\u0b4d\\u0bcd\\u0c4d\\u0ccd\\u0d4d]",status));
1329         sanskritStressSigns.addAll(UnicodeSet("[\\u0951\\u0952\\u0953\\u0954\\u097d]",status));
1330         chandrabindu.addAll(UnicodeSet("[\\u0901\\u0981\\u0A81\\u0b01\\u0c01]",status));
1331 
1332     }
1333 
1334 static const char latinForIndic[] = "[['.0-9A-Za-z~\\u00C0-\\u00C5\\u00C7-\\u00CF\\u00D1-\\u00D6\\u00D9-\\u00DD"
1335                                    "\\u00E0-\\u00E5\\u00E7-\\u00EF\\u00F1-\\u00F6\\u00F9-\\u00FD\\u00FF-\\u010F"
1336                                    "\\u0112-\\u0125\\u0128-\\u0130\\u0134-\\u0137\\u0139-\\u013E\\u0143-\\u0148"
1337                                    "\\u014C-\\u0151\\u0154-\\u0165\\u0168-\\u017E\\u01A0-\\u01A1\\u01AF-\\u01B0"
1338                                    "\\u01CD-\\u01DC\\u01DE-\\u01E3\\u01E6-\\u01ED\\u01F0\\u01F4-\\u01F5\\u01F8-\\u01FB"
1339                                    "\\u0200-\\u021B\\u021E-\\u021F\\u0226-\\u0233\\u0294\\u0303-\\u0304\\u0306\\u0314-\\u0315"
1340                                    "\\u0325\\u040E\\u0419\\u0439\\u045E\\u04C1-\\u04C2\\u04D0-\\u04D1\\u04D6-\\u04D7"
1341                                    "\\u04E2-\\u04E3\\u04EE-\\u04EF\\u1E00-\\u1E99\\u1EA0-\\u1EF9\\u1F01\\u1F03\\u1F05"
1342                                    "\\u1F07\\u1F09\\u1F0B\\u1F0D\\u1F0F\\u1F11\\u1F13\\u1F15\\u1F19\\u1F1B\\u1F1D\\u1F21"
1343                                    "\\u1F23\\u1F25\\u1F27\\u1F29\\u1F2B\\u1F2D\\u1F2F\\u1F31\\u1F33\\u1F35\\u1F37\\u1F39"
1344                                    "\\u1F3B\\u1F3D\\u1F3F\\u1F41\\u1F43\\u1F45\\u1F49\\u1F4B\\u1F4D\\u1F51\\u1F53\\u1F55"
1345                                    "\\u1F57\\u1F59\\u1F5B\\u1F5D\\u1F5F\\u1F61\\u1F63\\u1F65\\u1F67\\u1F69\\u1F6B\\u1F6D"
1346                                    "\\u1F6F\\u1F81\\u1F83\\u1F85\\u1F87\\u1F89\\u1F8B\\u1F8D\\u1F8F\\u1F91\\u1F93\\u1F95"
1347                                    "\\u1F97\\u1F99\\u1F9B\\u1F9D\\u1F9F\\u1FA1\\u1FA3\\u1FA5\\u1FA7\\u1FA9\\u1FAB\\u1FAD"
1348                                    "\\u1FAF-\\u1FB1\\u1FB8-\\u1FB9\\u1FD0-\\u1FD1\\u1FD8-\\u1FD9\\u1FE0-\\u1FE1\\u1FE5"
1349                                    "\\u1FE8-\\u1FE9\\u1FEC\\u212A-\\u212B\\uE04D\\uE064]"
1350                                    "-[\\uE000-\\uE080 \\u01E2\\u01E3]& [[:latin:][:mark:]]]";
1351 
TestDevanagariLatin()1352 void TransliteratorRoundTripTest::TestDevanagariLatin() {
1353     {
1354         UErrorCode status = U_ZERO_ERROR;
1355         UParseError parseError;
1356         TransliteratorPointer t1(Transliterator::createInstance("[\\u0964-\\u0965\\u0981-\\u0983\\u0985-\\u098C\\u098F-\\u0990\\u0993-\\u09A8\\u09AA-\\u09B0\\u09B2\\u09B6-\\u09B9\\u09BC\\u09BE-\\u09C4\\u09C7-\\u09C8\\u09CB-\\u09CD\\u09D7\\u09DC-\\u09DD\\u09DF-\\u09E3\\u09E6-\\u09FA];NFD;Bengali-InterIndic;InterIndic-Gujarati;NFC;",UTRANS_FORWARD, parseError, status));
1357         if((Transliterator *)t1 != NULL){
1358             TransliteratorPointer t2(t1->createInverse(status));
1359             if(U_FAILURE(status)){
1360                 errln("FAIL: could not create the Inverse:-( \n");
1361             }
1362         }else {
1363             dataerrln("FAIL: could not create the transliterator. Error: %s\n", u_errorName(status));
1364         }
1365 
1366     }
1367     RTTest test("Latin-Devanagari");
1368     Legal *legal = new LegalIndic();
1369     logKnownIssue( "cldrbug:1911");
1370     // It is left in its current state as a regression test.
1371 
1372     test.test(UnicodeString(latinForIndic, ""),
1373         UnicodeString("[[[:Devanagari:][\\u094d][\\u0964\\u0965]]&[:Age=4.1:]-[\\u0970]]", ""), "[\\u0965\\u0904]", this, quick,
1374             legal, 50);
1375 
1376     delete legal;
1377 }
1378 
1379 /* Defined this way for HP/UX11CC :-( */
1380 static const int32_t INTER_INDIC_ARRAY_WIDTH = 4;
1381 static const char * const interIndicArray[] = {
1382 
1383     "BENGALI-DEVANAGARI", "[:BENGALI:]", "[[:Devanagari:]-[\\u0970]]",
1384     "[\\u0904\\u0951-\\u0954\\u0943-\\u0949\\u094a\\u0962\\u0963\\u090D\\u090e\\u0911\\u0912\\u0929\\u0933\\u0934\\u0935\\u093d\\u0950\\u0958\\u0959\\u095a\\u095b\\u095e\\u097d]", /*roundtrip exclusions*/
1385 
1386     "DEVANAGARI-BENGALI", "[[:Devanagari:]-[\\u0970]]", "[:BENGALI:]",
1387     "[\\u0951-\\u0954\\u0951-\\u0954\\u09D7\\u090D\\u090e\\u0911\\u0912\\u0929\\u0933\\u0934\\u0935\\u093d\\u0950\\u0958\\u0959\\u095a\\u095b\\u095e\\u09f0\\u09f1\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1388 
1389     "GURMUKHI-DEVANAGARI", "[:GURMUKHI:]", "[[:Devanagari:]-[\\u0970]]",
1390     "[\\u0904\\u0901\\u0902\\u0936\\u0933\\u0951-\\u0954\\u0902\\u0903\\u0943-\\u0949\\u094a\\u0962\\u0963\\u090B\\u090C\\u090D\\u090e\\u0911\\u0912\\u0934\\u0937\\u093D\\u0950\\u0960\\u0961\\u097d]", /*roundtrip exclusions*/
1391 
1392     "DEVANAGARI-GURMUKHI", "[[:Devanagari:]-[\\u0970]]", "[:GURMUKHI:]",
1393     "[\\u0904\\u0A02\\u0946\\u0A5C\\u0951-\\u0954\\u0A70\\u0A71\\u090B\\u090C\\u090D\\u090e\\u0911\\u0912\\u0934\\u0937\\u093D\\u0950\\u0960\\u0961\\u0a72\\u0a73\\u0a74]", /*roundtrip exclusions*/
1394 
1395     "GUJARATI-DEVANAGARI", "[:GUJARATI:]", "[[:Devanagari:]-[\\u0970]]",
1396     "[\\u0946\\u094A\\u0962\\u0963\\u0951-\\u0954\\u0961\\u090c\\u090e\\u0912\\u097d]", /*roundtrip exclusions*/
1397 
1398     "DEVANAGARI-GUJARATI", "[[:Devanagari:]-[\\u0970]]", "[:GUJARATI:]",
1399     "[\\u0951-\\u0954\\u0961\\u090c\\u090e\\u0912]", /*roundtrip exclusions*/
1400 
1401     "ORIYA-DEVANAGARI", "[:ORIYA:]", "[[:Devanagari:]-[\\u0970]]",
1402     "[\\u0904\\u0943-\\u094a\\u0962\\u0963\\u0951-\\u0954\\u0950\\u090D\\u090e\\u0912\\u0911\\u0931\\u0935\\u097d]", /*roundtrip exclusions*/
1403 
1404     "DEVANAGARI-ORIYA", "[[:Devanagari:]-[\\u0970]]", "[:ORIYA:]",
1405     "[\\u0b5f\\u0b56\\u0b57\\u0b70\\u0b71\\u0950\\u090D\\u090e\\u0912\\u0911\\u0931]", /*roundtrip exclusions*/
1406 
1407     "Tamil-DEVANAGARI", "[:tamil:]", "[[:Devanagari:]-[\\u0970]]",
1408     "[\\u0901\\u0904\\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]\\u097d]", /*roundtrip exclusions*/
1409 
1410     "DEVANAGARI-Tamil", "[[:Devanagari:]-[\\u0970]]", "[:tamil:]",
1411     "[\\u0bd7\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1412 
1413     "Telugu-DEVANAGARI", "[:telugu:]", "[[:Devanagari:]-[\\u0970]]",
1414     "[\\u0904\\u093c\\u0950\\u0945\\u0949\\u0951-\\u0954\\u0962\\u0963\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]\\u097d]", /*roundtrip exclusions*/
1415 
1416     "DEVANAGARI-TELUGU", "[[:Devanagari:]-[\\u0970]]", "[:TELUGU:]",
1417     "[\\u0c55\\u0c56\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
1418 
1419     "KANNADA-DEVANAGARI", "[:KANNADA:]", "[[:Devanagari:]-[\\u0970]]",
1420     "[\\u0901\\u0904\\u0946\\u093c\\u0950\\u0945\\u0949\\u0951-\\u0954\\u0962\\u0963\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]\\u097d]", /*roundtrip exclusions*/
1421 
1422     "DEVANAGARI-KANNADA", "[[:Devanagari:]-[\\u0970]]", "[:KANNADA:]",
1423     "[{\\u0cb0\\u0cbc}{\\u0cb3\\u0cbc}\\u0cde\\u0cd5\\u0cd6\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
1424 
1425     "MALAYALAM-DEVANAGARI", "[:MALAYALAM:]", "[[:Devanagari:]-[\\u0970]]",
1426     "[\\u0901\\u0904\\u094a\\u094b\\u094c\\u093c\\u0950\\u0944\\u0945\\u0949\\u0951-\\u0954\\u0962\\u0963\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]\\u097d]", /*roundtrip exclusions*/
1427 
1428     "DEVANAGARI-MALAYALAM", "[[:Devanagari:]-[\\u0970]]", "[:MALAYALAM:]",
1429     "[\\u0d4c\\u0d57\\u0950\\u090D\\u0911\\u093d\\u0929\\u0934[\\u0958-\\u095f]]", /*roundtrip exclusions*/
1430 
1431     "GURMUKHI-BENGALI", "[:GURMUKHI:]", "[:BENGALI:]",
1432     "[\\u0981\\u0982\\u09b6\\u09e2\\u09e3\\u09c3\\u09c4\\u09d7\\u098B\\u098C\\u09B7\\u09E0\\u09E1\\u09F0\\u09F1\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1433 
1434     "BENGALI-GURMUKHI", "[:BENGALI:]", "[:GURMUKHI:]",
1435     "[\\u0A02\\u0a5c\\u0a47\\u0a70\\u0a71\\u0A33\\u0A35\\u0A59\\u0A5A\\u0A5B\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
1436 
1437     "GUJARATI-BENGALI", "[:GUJARATI:]", "[:BENGALI:]",
1438     "[\\u09d7\\u09e2\\u09e3\\u098c\\u09e1\\u09f0\\u09f1\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1439 
1440     "BENGALI-GUJARATI", "[:BENGALI:]", "[:GUJARATI:]",
1441     "[\\u0A82\\u0a83\\u0Ac9\\u0Ac5\\u0ac7\\u0A8D\\u0A91\\u0AB3\\u0AB5\\u0ABD\\u0AD0]", /*roundtrip exclusions*/
1442 
1443     "ORIYA-BENGALI", "[:ORIYA:]", "[:BENGALI:]",
1444     "[\\u09c4\\u09e2\\u09e3\\u09f0\\u09f1\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1445 
1446     "BENGALI-ORIYA", "[:BENGALI:]", "[:ORIYA:]",
1447     "[\\u0b35\\u0b71\\u0b5f\\u0b56\\u0b33\\u0b3d]", /*roundtrip exclusions*/
1448 
1449     "Tamil-BENGALI", "[:tamil:]", "[:BENGALI:]",
1450     "[\\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\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1451 
1452     "BENGALI-Tamil", "[:BENGALI:]", "[:tamil:]",
1453     "[\\u0bc6\\u0bc7\\u0bca\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB3\\u0BB4\\u0BB5\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1454 
1455     "Telugu-BENGALI", "[:telugu:]", "[:BENGALI:]",
1456     "[\\u09e2\\u09e3\\u09bc\\u09d7\\u09f0\\u09f1\\u09dc\\u09dd\\u09df\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1457 
1458     "BENGALI-TELUGU", "[:BENGALI:]", "[:TELUGU:]",
1459     "[\\u0c55\\u0c56\\u0c47\\u0c46\\u0c4a\\u0C0E\\u0C12\\u0C31\\u0C33\\u0C35]", /*roundtrip exclusions*/
1460 
1461     "KANNADA-BENGALI", "[:KANNADA:]", "[:BENGALI:]",
1462     "[\\u0981\\u09e2\\u09e3\\u09bc\\u09d7\\u09dc\\u09dd\\u09df\\u09f0\\u09f1\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1463 
1464     "BENGALI-KANNADA", "[:BENGALI:]", "[:KANNADA:]",
1465     "[{\\u0cb0\\u0cbc}{\\u0cb3\\u0cbc}\\u0cc6\\u0cca\\u0cd5\\u0cd6\\u0cc7\\u0C8E\\u0C92\\u0CB1\\u0cb3\\u0cb5\\u0cde]", /*roundtrip exclusions*/
1466 
1467     "MALAYALAM-BENGALI", "[:MALAYALAM:]", "[:BENGALI:]",
1468     "[\\u0981\\u09e2\\u09e3\\u09bc\\u09c4\\u09f0\\u09f1\\u09dc\\u09dd\\u09df\\u09dc\\u09dd\\u09df\\u09f2-\\u09fa\\u09ce]", /*roundtrip exclusions*/
1469 
1470     "BENGALI-MALAYALAM", "[:BENGALI:]", "[:MALAYALAM:]",
1471     "[\\u0d46\\u0d4a\\u0d47\\u0d31-\\u0d35\\u0d0e\\u0d12]", /*roundtrip exclusions*/
1472 
1473     "GUJARATI-GURMUKHI", "[:GUJARATI:]", "[:GURMUKHI:]",
1474     "[\\u0A02\\u0ab3\\u0ab6\\u0A70\\u0a71\\u0a82\\u0a83\\u0ac3\\u0ac4\\u0ac5\\u0ac9\\u0a5c\\u0a72\\u0a73\\u0a74\\u0a8b\\u0a8d\\u0a91\\u0abd]", /*roundtrip exclusions*/
1475 
1476     "GURMUKHI-GUJARATI", "[:GURMUKHI:]", "[:GUJARATI:]",
1477     "[\\u0a5c\\u0A70\\u0a71\\u0a72\\u0a73\\u0a74\\u0a82\\u0a83\\u0a8b\\u0a8c\\u0a8d\\u0a91\\u0ab3\\u0ab6\\u0ab7\\u0abd\\u0ac3\\u0ac4\\u0ac5\\u0ac9\\u0ad0\\u0ae0\\u0ae1]", /*roundtrip exclusions*/
1478 
1479     "ORIYA-GURMUKHI", "[:ORIYA:]", "[:GURMUKHI:]",
1480     "[\\u0A01\\u0A02\\u0a5c\\u0a21\\u0a47\\u0a71\\u0b02\\u0b03\\u0b33\\u0b36\\u0b43\\u0b56\\u0b57\\u0B0B\\u0B0C\\u0B37\\u0B3D\\u0B5F\\u0B60\\u0B61\\u0a35\\u0a72\\u0a73\\u0a74]", /*roundtrip exclusions*/
1481 
1482     "GURMUKHI-ORIYA", "[:GURMUKHI:]", "[:ORIYA:]",
1483     "[\\u0b01\\u0b02\\u0b03\\u0b33\\u0b36\\u0b43\\u0b56\\u0b57\\u0B0B\\u0B0C\\u0B37\\u0B3D\\u0B5F\\u0B60\\u0B61\\u0b70\\u0b71]", /*roundtrip exclusions*/
1484 
1485     "TAMIL-GURMUKHI", "[:TAMIL:]", "[:GURMUKHI:]",
1486     "[\\u0A01\\u0A02\\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*/
1487 
1488     "GURMUKHI-TAMIL", "[:GURMUKHI:]", "[:TAMIL:]",
1489     "[\\u0b82\\u0bc6\\u0bca\\u0bd7\\u0bb7\\u0bb3\\u0b83\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB4\\u0bb6\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1490 
1491     "TELUGU-GURMUKHI", "[:TELUGU:]", "[:GURMUKHI:]",
1492     "[\\u0A02\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
1493 
1494     "GURMUKHI-TELUGU", "[:GURMUKHI:]", "[:TELUGU:]",
1495     "[\\u0c01\\u0c02\\u0c03\\u0c33\\u0c36\\u0c44\\u0c43\\u0c46\\u0c4a\\u0c56\\u0c55\\u0C0B\\u0C0C\\u0C0E\\u0C12\\u0C31\\u0C37\\u0C60\\u0C61]", /*roundtrip exclusions*/
1496 
1497     "KANNADA-GURMUKHI", "[:KANNADA:]", "[:GURMUKHI:]",
1498     "[\\u0A01\\u0A02\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
1499 
1500     "GURMUKHI-KANNADA", "[:GURMUKHI:]", "[:KANNADA:]",
1501     "[{\\u0cb0\\u0cbc}{\\u0cb3\\u0cbc}\\u0c82\\u0c83\\u0cb3\\u0cb6\\u0cc4\\u0cc3\\u0cc6\\u0cca\\u0cd5\\u0cd6\\u0C8B\\u0C8C\\u0C8E\\u0C92\\u0CB1\\u0CB7\\u0cbd\\u0CE0\\u0CE1\\u0cde]", /*roundtrip exclusions*/
1502 
1503     "MALAYALAM-GURMUKHI", "[:MALAYALAM:]", "[:GURMUKHI:]",
1504     "[\\u0A01\\u0A02\\u0a4b\\u0a4c\\u0a33\\u0a36\\u0a3c\\u0a70\\u0a71\\u0A59\\u0A5A\\u0A5B\\u0A5C\\u0A5E\\u0A72\\u0A73\\u0A74]", /*roundtrip exclusions*/
1505 
1506     "GURMUKHI-MALAYALAM", "[:GURMUKHI:]", "[:MALAYALAM:]",
1507     "[\\u0d02\\u0d03\\u0d33\\u0d36\\u0d43\\u0d46\\u0d4a\\u0d4c\\u0d57\\u0D0B\\u0D0C\\u0D0E\\u0D12\\u0D31\\u0D34\\u0D37\\u0D60\\u0D61]", /*roundtrip exclusions*/
1508 
1509     "GUJARATI-ORIYA", "[:GUJARATI:]", "[:ORIYA:]",
1510     "[\\u0b56\\u0b57\\u0B0C\\u0B5F\\u0B61\\u0b70\\u0b71]", /*roundtrip exclusions*/
1511 
1512     "ORIYA-GUJARATI", "[:ORIYA:]", "[:GUJARATI:]",
1513     "[\\u0Ac4\\u0Ac5\\u0Ac9\\u0Ac7\\u0A8D\\u0A91\\u0AB5\\u0Ad0]", /*roundtrip exclusions*/
1514 
1515     "TAMIL-GUJARATI", "[:TAMIL:]", "[:GUJARATI:]",
1516     "[\\u0A81\\u0a8c\\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\\u0AE1]", /*roundtrip exclusions*/
1517 
1518     "GUJARATI-TAMIL", "[:GUJARATI:]", "[:TAMIL:]",
1519     "[\\u0Bc6\\u0Bca\\u0Bd7\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB4\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1520 
1521     "TELUGU-GUJARATI", "[:TELUGU:]", "[:GUJARATI:]",
1522     "[\\u0abc\\u0Ac5\\u0Ac9\\u0A8D\\u0A91\\u0ABD\\u0Ad0]", /*roundtrip exclusions*/
1523 
1524     "GUJARATI-TELUGU", "[:GUJARATI:]", "[:TELUGU:]",
1525     "[\\u0c46\\u0c4a\\u0c55\\u0c56\\u0C0C\\u0C0E\\u0C12\\u0C31\\u0C61]", /*roundtrip exclusions*/
1526 
1527     "KANNADA-GUJARATI", "[:KANNADA:]", "[:GUJARATI:]",
1528     "[\\u0A81\\u0abc\\u0Ac5\\u0Ac9\\u0A8D\\u0A91\\u0ABD\\u0Ad0]", /*roundtrip exclusions*/
1529 
1530     "GUJARATI-KANNADA", "[:GUJARATI:]", "[:KANNADA:]",
1531     "[{\\u0cb0\\u0cbc}{\\u0cb3\\u0cbc}\\u0cc6\\u0cca\\u0cd5\\u0cd6\\u0C8C\\u0C8E\\u0C92\\u0CB1\\u0CDE\\u0CE1]", /*roundtrip exclusions*/
1532 
1533     "MALAYALAM-GUJARATI", "[:MALAYALAM:]", "[:GUJARATI:]",
1534     "[\\u0A81\\u0ac4\\u0acb\\u0acc\\u0abc\\u0Ac5\\u0Ac9\\u0A8D\\u0A91\\u0ABD\\u0Ad0]", /*roundtrip exclusions*/
1535 
1536     "GUJARATI-MALAYALAM", "[:GUJARATI:]", "[:MALAYALAM:]",
1537     "[\\u0d46\\u0d4a\\u0d4c\\u0d55\\u0d57\\u0D0C\\u0D0E\\u0D12\\u0D31\\u0D34\\u0D61]", /*roundtrip exclusions*/
1538 
1539     "TAMIL-ORIYA", "[:TAMIL:]", "[:ORIYA:]",
1540     "[\\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\\u0b70\\u0b71]", /*roundtrip exclusions*/
1541 
1542     "ORIYA-TAMIL", "[:ORIYA:]", "[:TAMIL:]",
1543     "[\\u0bc6\\u0bca\\u0bc7\\u0B8E\\u0B92\\u0BA9\\u0BB1\\u0BB4\\u0BB5\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1544 
1545     "TELUGU-ORIYA", "[:TELUGU:]", "[:ORIYA:]",
1546     "[\\u0b3c\\u0b57\\u0b56\\u0B3D\\u0B5C\\u0B5D\\u0B5F\\u0b70\\u0b71]", /*roundtrip exclusions*/
1547 
1548     "ORIYA-TELUGU", "[:ORIYA:]", "[:TELUGU:]",
1549     "[\\u0c44\\u0c46\\u0c4a\\u0c55\\u0c47\\u0C0E\\u0C12\\u0C31\\u0C35]", /*roundtrip exclusions*/
1550 
1551     "KANNADA-ORIYA", "[:KANNADA:]", "[:ORIYA:]",
1552     "[\\u0B01\\u0b3c\\u0b57\\u0B3D\\u0B5C\\u0B5D\\u0B5F\\u0b70\\u0b71]", /*roundtrip exclusions*/
1553 
1554     "ORIYA-KANNADA", "[:ORIYA:]", "[:KANNADA:]",
1555     "[{\\u0cb0\\u0cbc}{\\u0cb3\\u0cbc}\\u0cc4\\u0cc6\\u0cca\\u0cd5\\u0cc7\\u0C8E\\u0C92\\u0CB1\\u0CB5\\u0CDE]", /*roundtrip exclusions*/
1556 
1557     "MALAYALAM-ORIYA", "[:MALAYALAM:]", "[:ORIYA:]",
1558     "[\\u0B01\\u0b3c\\u0b56\\u0B3D\\u0B5C\\u0B5D\\u0B5F\\u0b70\\u0b71]", /*roundtrip exclusions*/
1559 
1560     "ORIYA-MALAYALAM", "[:ORIYA:]", "[:MALAYALAM:]",
1561     "[\\u0D47\\u0D46\\u0D4a\\u0D0E\\u0D12\\u0D31\\u0D34\\u0D35]", /*roundtrip exclusions*/
1562 
1563     "TELUGU-TAMIL", "[:TELUGU:]", "[:TAMIL:]",
1564     "[\\u0bd7\\u0ba9\\u0bb4\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1565 
1566     "TAMIL-TELUGU", "[:TAMIL:]", "[:TELUGU:]",
1567     "[\\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*/
1568 
1569     "KANNADA-TAMIL", "[:KANNADA:]", "[:TAMIL:]",
1570     "[\\u0bd7\\u0bc6\\u0ba9\\u0bb4\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1571 
1572     "TAMIL-KANNADA", "[:TAMIL:]", "[:KANNADA:]",
1573     "[\\u0cc3\\u0cc4\\u0cc6\\u0cc7\\u0cd5\\u0cd6\\u0C8B\\u0C8C\\u0C96\\u0C97\\u0C98\\u0C9B\\u0C9D\\u0CA0\\u0CA1\\u0CA2\\u0CA5\\u0CA6\\u0CA7\\u0CAB\\u0CAC\\u0CAD\\u0CB6\\u0cbc\\u0cbd\\u0CDE\\u0CE0\\u0CE1]", /*roundtrip exclusions*/
1574 
1575     "MALAYALAM-TAMIL", "[:MALAYALAM:]", "[:TAMIL:]",
1576     "[\\u0ba9\\u0BF0\\u0BF1\\u0BF2]", /*roundtrip exclusions*/
1577 
1578     "TAMIL-MALAYALAM", "[:TAMIL:]", "[:MALAYALAM:]",
1579     "[\\u0d43\\u0d12\\u0D0B\\u0D0C\\u0D16\\u0D17\\u0D18\\u0D1B\\u0D1D\\u0D20\\u0D21\\u0D22\\u0D25\\u0D26\\u0D27\\u0D2B\\u0D2C\\u0D2D\\u0D36\\u0D60\\u0D61]", /*roundtrip exclusions*/
1580 
1581     "KANNADA-TELUGU", "[:KANNADA:]", "[:TELUGU:]",
1582     "[\\u0C01\\u0c3f\\u0c46\\u0c48\\u0c4a]", /*roundtrip exclusions*/
1583 
1584     "TELUGU-KANNADA", "[:TELUGU:]", "[:KANNADA:]",
1585     "[\\u0cc8\\u0cd5\\u0cd6\\u0cbc\\u0cbd\\u0CDE]", /*roundtrip exclusions*/
1586 
1587     "MALAYALAM-TELUGU", "[:MALAYALAM:]", "[:TELUGU:]",
1588     "[\\u0C01\\u0c44\\u0c4a\\u0c4c\\u0c4b\\u0c55\\u0c56]", /*roundtrip exclusions*/
1589 
1590     "TELUGU-MALAYALAM", "[:TELUGU:]", "[:MALAYALAM:]",
1591     "[\\u0d4c\\u0d57\\u0D34]", /*roundtrip exclusions*/
1592 
1593     "MALAYALAM-KANNADA", "[:MALAYALAM:]", "[:KANNADA:]",
1594     "[\\u0cbc\\u0cbd\\u0cc4\\u0cc6\\u0cca\\u0ccc\\u0ccb\\u0cd5\\u0cd6\\u0cDe]", /*roundtrip exclusions*/
1595 
1596     "KANNADA-MALAYALAM", "[:KANNADA:]", "[:MALAYALAM:]",
1597     "[\\u0d4c\\u0d57\\u0d46\\u0D34]", /*roundtrip exclusions*/
1598 
1599     "Latin-Bengali",latinForIndic, "[[:Bengali:][\\u0964\\u0965]]",
1600     "[\\u0965\\u09f0-\\u09fa\\u09ce]" /*roundtrip exclusions*/ ,
1601 
1602     "Latin-Gurmukhi", latinForIndic, "[[:Gurmukhi:][\\u0964\\u0965]]",
1603     "[\\u0a01\\u0965\\u0a02\\u0a72\\u0a73\\u0a74]" /*roundtrip exclusions*/,
1604 
1605     "Latin-Gujarati",latinForIndic, "[[:Gujarati:][\\u0964\\u0965]]",
1606     "[\\u0965]" /*roundtrip exclusions*/,
1607 
1608     "Latin-Oriya",latinForIndic, "[[:Oriya:][\\u0964\\u0965]]",
1609     "[\\u0965\\u0b70]" /*roundtrip exclusions*/,
1610 
1611     "Latin-Tamil",latinForIndic, "[:Tamil:]",
1612     "[\\u0BF0\\u0BF1\\u0BF2]" /*roundtrip exclusions*/,
1613 
1614     "Latin-Telugu",latinForIndic, "[:Telugu:]",
1615     NULL /*roundtrip exclusions*/,
1616 
1617     "Latin-Kannada",latinForIndic, "[:Kannada:]",
1618     NULL /*roundtrip exclusions*/,
1619 
1620     "Latin-Malayalam",latinForIndic, "[:Malayalam:]",
1621     NULL /*roundtrip exclusions*/
1622 };
1623 
TestDebug(const char * name,const char fromSet[],const char * toSet,const char * exclusions)1624 void TransliteratorRoundTripTest::TestDebug(const char* name,const char fromSet[],
1625                                             const char* toSet,const char* exclusions){
1626 
1627     RTTest test(name);
1628     Legal *legal = new LegalIndic();
1629     test.test(UnicodeString(fromSet,""),UnicodeString(toSet,""),exclusions,this,quick,legal);
1630 }
1631 
TestInterIndic()1632 void TransliteratorRoundTripTest::TestInterIndic() {
1633     //TestDebug("Latin-Gurmukhi", latinForIndic, "[:Gurmukhi:]","[\\u0965\\u0a02\\u0a72\\u0a73\\u0a74]",TRUE);
1634     int32_t num = UPRV_LENGTHOF(interIndicArray)/INTER_INDIC_ARRAY_WIDTH;
1635     if(quick){
1636         logln("Testing only 5 of %i. Skipping rest (use -e for exhaustive)",num);
1637         num = 5;
1638     }
1639     for(int i = 0; i < num;i++){
1640         RTTest test(interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 0]);
1641         Legal *legal = new LegalIndic();
1642         logln(UnicodeString("Stress testing ") + interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 0]);
1643       if( !logKnownIssue( "cldrbug:1911" ) ) {
1644         /* "full test" */
1645         // CLDR bug #1911: This test should be moved into CLDR.
1646         test.test(  interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 1],
1647                     interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 2],
1648                     interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 3], // roundtrip exclusions
1649                     this, quick, legal, 50);
1650       } else {
1651         // It is left in its current state as a regression test.
1652         // CLDR should test, and remove the age filter.
1653           /* regression test - ""temporary"" until CLDR#1911 is fixed */
1654         // start
1655         UnicodeString source("[");
1656         source.append(interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 1]);
1657         source.append(" & [:Age=4.1:]]");
1658         UnicodeString target("[");
1659         target.append(interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 2]);
1660         target.append(" & [:Age=4.1:]]");
1661         test.test(  source,
1662                     target,
1663                     interIndicArray[i*INTER_INDIC_ARRAY_WIDTH + 3], // roundtrip exclusions
1664                     this, quick, legal, 50);
1665         // end
1666         delete legal;
1667       }
1668     }
1669 }
1670 
1671 // end indic tests ----------------------------------------------------------
1672 
1673 #endif /* #if !UCONFIG_NO_TRANSLITERATION */
1674