2 ********************************************************************************
3 * Copyright (C) 1999-2012 International Business Machines Corporation and
4 * others. All Rights Reserved.
5 ********************************************************************************
6 * Date Name Description
7 * 10/20/99 alan Creation.
8 * 03/22/2000 Madhu Added additional tests
9 ********************************************************************************
15 #include "unicode/utypes.h"
17 #include "unicode/ucnv.h"
18 #include "unicode/uniset.h"
19 #include "unicode/uchar.h"
20 #include "unicode/usetiter.h"
21 #include "unicode/ustring.h"
22 #include "unicode/parsepos.h"
23 #include "unicode/symtable.h"
24 #include "unicode/uversion.h"
27 #define LENGTHOF(array) (int32_t)(sizeof(array)/sizeof((array)[0]))
29 #define TEST_ASSERT_SUCCESS(status) {if (U_FAILURE(status)) { \
30 dataerrln("fail in file \"%s\", line %d: \"%s\"", __FILE__, __LINE__, \
31 u_errorName(status));}}
33 #define TEST_ASSERT(expr) {if (!(expr)) { \
34 dataerrln("fail in file \"%s\", line %d", __FILE__, __LINE__); }}
36 UnicodeString
operator+(const UnicodeString
& left
, const UnicodeSet
& set
) {
39 return left
+ UnicodeSetTest::escape(pat
);
42 #define CASE(id,test) case id: \
51 UnicodeSetTest::UnicodeSetTest() : utf8Cnv(NULL
) {
54 UConverter
*UnicodeSetTest::openUTF8Converter() {
56 UErrorCode errorCode
=U_ZERO_ERROR
;
57 utf8Cnv
=ucnv_open("UTF-8", &errorCode
);
62 UnicodeSetTest::~UnicodeSetTest() {
67 UnicodeSetTest::runIndexedTest(int32_t index
, UBool exec
,
68 const char* &name
, char* /*par*/) {
69 // if (exec) logln((UnicodeString)"TestSuite UnicodeSetTest");
72 CASE(1,TestAddRemove
);
73 CASE(2,TestCategories
);
74 CASE(3,TestCloneEqualHash
);
75 CASE(4,TestMinimalRep
);
77 CASE(6,TestScriptSet
);
78 CASE(7,TestPropertySet
);
80 CASE(9,TestExhaustive
);
81 CASE(10,TestToPattern
);
85 CASE(14,TestCloseOver
);
86 CASE(15,TestEscapePattern
);
87 CASE(16,TestInvalidCodePoint
);
88 CASE(17,TestSymbolTable
);
89 CASE(18,TestSurrogate
);
90 CASE(19,TestPosixClasses
);
91 CASE(20,TestIteration
);
92 CASE(21,TestFreezable
);
94 CASE(23,TestStringSpan
);
95 default: name
= ""; break;
99 static const char NOT
[] = "%%%%";
102 * UVector was improperly copying contents
103 * This code will crash this is still true
105 void UnicodeSetTest::Testj2268() {
107 t
.add(UnicodeString("abc"));
109 UnicodeString ustrPat
;
110 test
.toPattern(ustrPat
, TRUE
);
116 void UnicodeSetTest::TestToPattern() {
117 UErrorCode ec
= U_ZERO_ERROR
;
119 // Test that toPattern() round trips with syntax characters and
122 static const char* OTHER_TOPATTERN_TESTS
[] = {
123 "[[:latin:]&[:greek:]]",
124 "[[:latin:]-[:greek:]]",
125 "[:nonspacing mark:]",
129 for (int32_t j
=0; OTHER_TOPATTERN_TESTS
[j
]!=NULL
; ++j
) {
131 UnicodeSet
s(OTHER_TOPATTERN_TESTS
[j
], ec
);
133 dataerrln((UnicodeString
)"FAIL: bad pattern " + OTHER_TOPATTERN_TESTS
[j
] + " - " + UnicodeString(u_errorName(ec
)));
136 checkPat(OTHER_TOPATTERN_TESTS
[j
], s
);
139 for (UChar32 i
= 0; i
<= 0x10FFFF; ++i
) {
140 if ((i
<= 0xFF && !u_isalpha(i
)) || u_isspace(i
)) {
142 // check various combinations to make sure they all work.
143 if (i
!= 0 && !toPatternAux(i
, i
)){
146 if (!toPatternAux(0, i
)){
149 if (!toPatternAux(i
, 0xFFFF)){
156 // Test pattern behavior of multicharacter strings.
159 UnicodeSet
* s
= new UnicodeSet("[a-z {aa} {ab}]", ec
);
161 // This loop isn't a loop. It's here to make the compiler happy.
162 // If you're curious, try removing it and changing the 'break'
163 // statements (except for the last) to goto's.
165 if (U_FAILURE(ec
)) break;
166 const char* exp1
[] = {"aa", "ab", NOT
, "ac", NULL
};
167 expectToPattern(*s
, "[a-z{aa}{ab}]", exp1
);
170 const char* exp2
[] = {"aa", "ab", "ac", NOT
, "xy", NULL
};
171 expectToPattern(*s
, "[a-z{aa}{ab}{ac}]", exp2
);
173 s
->applyPattern(UNICODE_STRING_SIMPLE("[a-z {\\{l} {r\\}}]"), ec
);
174 if (U_FAILURE(ec
)) break;
175 const char* exp3
[] = {"{l", "r}", NOT
, "xy", NULL
};
176 expectToPattern(*s
, UNICODE_STRING_SIMPLE("[a-z{r\\}}{\\{l}]"), exp3
);
179 const char* exp4
[] = {"{l", "r}", "[]", NOT
, "xy", NULL
};
180 expectToPattern(*s
, UNICODE_STRING_SIMPLE("[a-z{\\[\\]}{r\\}}{\\{l}]"), exp4
);
182 s
->applyPattern(UNICODE_STRING_SIMPLE("[a-z {\\u4E01\\u4E02}{\\n\\r}]"), ec
);
183 if (U_FAILURE(ec
)) break;
184 const char* exp5
[] = {"\\u4E01\\u4E02", "\n\r", NULL
};
185 expectToPattern(*s
, UNICODE_STRING_SIMPLE("[a-z{\\u000A\\u000D}{\\u4E01\\u4E02}]"), exp5
);
189 s
->add(UnicodeString("abc", ""));
190 s
->add(UnicodeString("abc", ""));
191 const char* exp6
[] = {"abc", NOT
, "ab", NULL
};
192 expectToPattern(*s
, "[{abc}]", exp6
);
197 if (U_FAILURE(ec
)) errln("FAIL: pattern parse error");
201 // JB#3400: For 2 character ranges prefer [ab] to [a-b]
203 s
.add((UChar
)97, (UChar
)98); // 'a', 'b'
204 expectToPattern(s
, "[ab]", NULL
);
207 UBool
UnicodeSetTest::toPatternAux(UChar32 start
, UChar32 end
) {
209 // use Integer.toString because Utility.hex doesn't handle ints
210 UnicodeString pat
= "";
211 // TODO do these in hex
212 //String source = "0x" + Integer.toString(start,16).toUpperCase();
213 //if (start != end) source += "..0x" + Integer.toString(end,16).toUpperCase();
214 UnicodeString source
;
215 source
= source
+ (uint32_t)start
;
217 source
= source
+ ".." + (uint32_t)end
;
219 testSet
.add(start
, end
);
220 return checkPat(source
, testSet
);
223 UBool
UnicodeSetTest::checkPat(const UnicodeString
& source
,
224 const UnicodeSet
& testSet
) {
225 // What we want to make sure of is that a pattern generated
226 // by toPattern(), with or without escaped unprintables, can
227 // be passed back into the UnicodeSet constructor.
230 testSet
.toPattern(pat0
, TRUE
);
232 if (!checkPat(source
+ " (escaped)", testSet
, pat0
)) return FALSE
;
234 //String pat1 = unescapeLeniently(pat0);
235 //if (!checkPat(source + " (in code)", testSet, pat1)) return false;
238 testSet
.toPattern(pat2
, FALSE
);
239 if (!checkPat(source
, testSet
, pat2
)) return FALSE
;
241 //String pat3 = unescapeLeniently(pat2);
242 // if (!checkPat(source + " (in code)", testSet, pat3)) return false;
244 //logln(source + " => " + pat0 + ", " + pat1 + ", " + pat2 + ", " + pat3);
245 logln((UnicodeString
)source
+ " => " + pat0
+ ", " + pat2
);
249 UBool
UnicodeSetTest::checkPat(const UnicodeString
& source
,
250 const UnicodeSet
& testSet
,
251 const UnicodeString
& pat
) {
252 UErrorCode ec
= U_ZERO_ERROR
;
253 UnicodeSet
testSet2(pat
, ec
);
254 if (testSet2
!= testSet
) {
255 errln((UnicodeString
)"Fail toPattern: " + source
+ " => " + pat
);
262 UnicodeSetTest::TestPatterns(void) {
264 expectPattern(set
, UnicodeString("[[a-m]&[d-z]&[k-y]]", ""), "km");
265 expectPattern(set
, UnicodeString("[[a-z]-[m-y]-[d-r]]", ""), "aczz");
266 expectPattern(set
, UnicodeString("[a\\-z]", ""), "--aazz");
267 expectPattern(set
, UnicodeString("[-az]", ""), "--aazz");
268 expectPattern(set
, UnicodeString("[az-]", ""), "--aazz");
269 expectPattern(set
, UnicodeString("[[[a-z]-[aeiou]i]]", ""), "bdfnptvz");
271 // Throw in a test of complement
274 exp
.append((UChar
)0x0000).append("aeeoouu").append((UChar
)(0x007a+1)).append((UChar
)0xFFFF);
275 expectPairs(set
, exp
);
279 UnicodeSetTest::TestCategories(void) {
280 UErrorCode status
= U_ZERO_ERROR
;
281 const char* pat
= " [:Lu:] "; // Whitespace ok outside [:..:]
282 UnicodeSet
set(pat
, status
);
283 if (U_FAILURE(status
)) {
284 dataerrln((UnicodeString
)"Fail: Can't construct set with " + pat
+ " - " + UnicodeString(u_errorName(status
)));
287 expectContainment(set
, pat
, "ABC", "abc");
291 int32_t failures
= 0;
292 // Make sure generation of L doesn't pollute cached Lu set
293 // First generate L, then Lu
294 set
.applyPattern("[:L:]", status
);
295 if (U_FAILURE(status
)) { errln("FAIL"); return; }
296 for (i
=0; i
<0x200; ++i
) {
297 UBool l
= u_isalpha((UChar
)i
);
298 if (l
!= set
.contains(i
)) {
299 errln((UnicodeString
)"FAIL: L contains " + (unsigned short)i
+ " = " +
301 if (++failures
== 10) break;
305 set
.applyPattern("[:Lu:]", status
);
306 if (U_FAILURE(status
)) { errln("FAIL"); return; }
307 for (i
=0; i
<0x200; ++i
) {
308 UBool lu
= (u_charType((UChar
)i
) == U_UPPERCASE_LETTER
);
309 if (lu
!= set
.contains(i
)) {
310 errln((UnicodeString
)"FAIL: Lu contains " + (unsigned short)i
+ " = " +
312 if (++failures
== 20) break;
317 UnicodeSetTest::TestCloneEqualHash(void) {
318 UErrorCode status
= U_ZERO_ERROR
;
319 // set1 and set2 used to be built with the obsolete constructor taking
320 // UCharCategory values; replaced with pattern constructors
322 UnicodeSet
*set1
=new UnicodeSet(UNICODE_STRING_SIMPLE("\\p{Lowercase Letter}"), status
); // :Ll: Letter, lowercase
323 UnicodeSet
*set1a
=new UnicodeSet(UNICODE_STRING_SIMPLE("[:Ll:]"), status
); // Letter, lowercase
324 if (U_FAILURE(status
)){
325 dataerrln((UnicodeString
)"FAIL: Can't construst set with category->Ll" + " - " + UnicodeString(u_errorName(status
)));
328 UnicodeSet
*set2
=new UnicodeSet(UNICODE_STRING_SIMPLE("\\p{Decimal Number}"), status
); //Number, Decimal digit
329 UnicodeSet
*set2a
=new UnicodeSet(UNICODE_STRING_SIMPLE("[:Nd:]"), status
); //Number, Decimal digit
330 if (U_FAILURE(status
)){
331 errln((UnicodeString
)"FAIL: Can't construct set with category->Nd");
335 if (*set1
!= *set1a
) {
336 errln("FAIL: category constructor for Ll broken");
338 if (*set2
!= *set2a
) {
339 errln("FAIL: category constructor for Nd broken");
344 logln("Testing copy construction");
345 UnicodeSet
*set1copy
=new UnicodeSet(*set1
);
346 if(*set1
!= *set1copy
|| *set1
== *set2
||
347 getPairs(*set1
) != getPairs(*set1copy
) ||
348 set1
->hashCode() != set1copy
->hashCode()){
349 errln("FAIL : Error in copy construction");
353 logln("Testing =operator");
354 UnicodeSet set1equal
=*set1
;
355 UnicodeSet set2equal
=*set2
;
356 if(set1equal
!= *set1
|| set1equal
!= *set1copy
|| set2equal
!= *set2
||
357 set2equal
== *set1
|| set2equal
== *set1copy
|| set2equal
== set1equal
){
358 errln("FAIL: Error in =operator");
361 logln("Testing clone()");
362 UnicodeSet
*set1clone
=(UnicodeSet
*)set1
->clone();
363 UnicodeSet
*set2clone
=(UnicodeSet
*)set2
->clone();
364 if(*set1clone
!= *set1
|| *set1clone
!= *set1copy
|| *set1clone
!= set1equal
||
365 *set2clone
!= *set2
|| *set2clone
== *set1copy
|| *set2clone
!= set2equal
||
366 *set2clone
== *set1
|| *set2clone
== set1equal
|| *set2clone
== *set1clone
){
367 errln("FAIL: Error in clone");
370 logln("Testing hashcode");
371 if(set1
->hashCode() != set1equal
.hashCode() || set1
->hashCode() != set1clone
->hashCode() ||
372 set2
->hashCode() != set2equal
.hashCode() || set2
->hashCode() != set2clone
->hashCode() ||
373 set1copy
->hashCode() != set1equal
.hashCode() || set1copy
->hashCode() != set1clone
->hashCode() ||
374 set1
->hashCode() == set2
->hashCode() || set1copy
->hashCode() == set2
->hashCode() ||
375 set2
->hashCode() == set1clone
->hashCode() || set2
->hashCode() == set1equal
.hashCode() ){
376 errln("FAIL: Error in hashCode()");
388 UnicodeSetTest::TestAddRemove(void) {
389 UnicodeSet set
; // Construct empty set
390 doAssert(set
.isEmpty() == TRUE
, "set should be empty");
391 doAssert(set
.size() == 0, "size should be 0");
393 doAssert(set
.size() == 0x110000, "size should be 0x110000");
395 set
.add(0x0061, 0x007a);
396 expectPairs(set
, "az");
397 doAssert(set
.isEmpty() == FALSE
, "set should not be empty");
398 doAssert(set
.size() != 0, "size should not be equal to 0");
399 doAssert(set
.size() == 26, "size should be equal to 26");
400 set
.remove(0x006d, 0x0070);
401 expectPairs(set
, "alqz");
402 doAssert(set
.size() == 22, "size should be equal to 22");
403 set
.remove(0x0065, 0x0067);
404 expectPairs(set
, "adhlqz");
405 doAssert(set
.size() == 19, "size should be equal to 19");
406 set
.remove(0x0064, 0x0069);
407 expectPairs(set
, "acjlqz");
408 doAssert(set
.size() == 16, "size should be equal to 16");
409 set
.remove(0x0063, 0x0072);
410 expectPairs(set
, "absz");
411 doAssert(set
.size() == 10, "size should be equal to 10");
412 set
.add(0x0066, 0x0071);
413 expectPairs(set
, "abfqsz");
414 doAssert(set
.size() == 22, "size should be equal to 22");
415 set
.remove(0x0061, 0x0067);
416 expectPairs(set
, "hqsz");
417 set
.remove(0x0061, 0x007a);
418 expectPairs(set
, "");
419 doAssert(set
.isEmpty() == TRUE
, "set should be empty");
420 doAssert(set
.size() == 0, "size should be 0");
422 doAssert(set
.isEmpty() == FALSE
, "set should not be empty");
423 doAssert(set
.size() == 1, "size should not be equal to 1");
426 expectPairs(set
, "ac");
427 doAssert(set
.size() == 3, "size should not be equal to 3");
430 expectPairs(set
, "acpq");
431 doAssert(set
.size() == 5, "size should not be equal to 5");
433 expectPairs(set
, "");
434 doAssert(set
.isEmpty() == TRUE
, "set should be empty");
435 doAssert(set
.size() == 0, "size should be 0");
437 // Try removing an entire set from another set
438 expectPattern(set
, "[c-x]", "cx");
440 expectPattern(set2
, "[f-ky-za-bc[vw]]", "acfkvwyz");
442 expectPairs(set
, "deluxx");
444 // Try adding an entire set to another set
445 expectPattern(set
, "[jackiemclean]", "aacceein");
446 expectPattern(set2
, "[hitoshinamekatajamesanderson]", "aadehkmort");
448 expectPairs(set
, "aacehort");
449 doAssert(set
.containsAll(set2
) == TRUE
, "set should contain all the elements in set2");
451 // Try retaining an set of elements contained in another set (intersection)
453 expectPattern(set3
, "[a-c]", "ac");
454 doAssert(set
.containsAll(set3
) == FALSE
, "set doesn't contain all the elements in set3");
456 expectPairs(set3
, "aacc");
457 doAssert(set
.containsAll(set3
) == TRUE
, "set should contain all the elements in set3");
459 expectPairs(set
, "aacc");
460 doAssert(set
.size() == set3
.size(), "set.size() should be set3.size()");
461 doAssert(set
.containsAll(set3
) == TRUE
, "set should contain all the elements in set3");
463 doAssert(set
.size() != set3
.size(), "set.size() != set3.size()");
465 // Test commutativity
466 expectPattern(set
, "[hitoshinamekatajamesanderson]", "aadehkmort");
467 expectPattern(set2
, "[jackiemclean]", "aacceein");
469 expectPairs(set
, "aacehort");
470 doAssert(set
.containsAll(set2
) == TRUE
, "set should contain all the elements in set2");
478 * Make sure minimal representation is maintained.
480 void UnicodeSetTest::TestMinimalRep() {
481 UErrorCode status
= U_ZERO_ERROR
;
482 // This is pretty thoroughly tested by checkCanonicalRep()
483 // run against the exhaustive operation results. Use the code
484 // here for debugging specific spot problems.
486 // 1 overlap against 2
487 UnicodeSet
set("[h-km-q]", status
);
488 if (U_FAILURE(status
)) { errln("FAIL"); return; }
489 UnicodeSet
set2("[i-o]", status
);
490 if (U_FAILURE(status
)) { errln("FAIL"); return; }
492 expectPairs(set
, "hq");
494 set
.applyPattern("[a-m]", status
);
495 if (U_FAILURE(status
)) { errln("FAIL"); return; }
496 set2
.applyPattern("[e-o]", status
);
497 if (U_FAILURE(status
)) { errln("FAIL"); return; }
499 expectPairs(set
, "ao");
501 set
.applyPattern("[e-o]", status
);
502 if (U_FAILURE(status
)) { errln("FAIL"); return; }
503 set2
.applyPattern("[a-m]", status
);
504 if (U_FAILURE(status
)) { errln("FAIL"); return; }
506 expectPairs(set
, "ao");
507 // 1 overlap against 3
508 set
.applyPattern("[a-eg-mo-w]", status
);
509 if (U_FAILURE(status
)) { errln("FAIL"); return; }
510 set2
.applyPattern("[d-q]", status
);
511 if (U_FAILURE(status
)) { errln("FAIL"); return; }
513 expectPairs(set
, "aw");
516 void UnicodeSetTest::TestAPI() {
517 UErrorCode status
= U_ZERO_ERROR
;
520 if (!set
.isEmpty() || set
.getRangeCount() != 0) {
521 errln((UnicodeString
)"FAIL, set should be empty but isn't: " +
525 // clear(), isEmpty()
528 errln((UnicodeString
)"FAIL, set shouldn't be empty but is: " +
532 if (!set
.isEmpty()) {
533 errln((UnicodeString
)"FAIL, set should be empty but isn't: " +
539 if (set
.size() != 0) {
540 errln((UnicodeString
)"FAIL, size should be 0, but is " + set
.size() +
544 if (set
.size() != 1) {
545 errln((UnicodeString
)"FAIL, size should be 1, but is " + set
.size() +
548 set
.add(0x0031, 0x0039);
549 if (set
.size() != 10) {
550 errln((UnicodeString
)"FAIL, size should be 10, but is " + set
.size() +
554 // contains(first, last)
556 set
.applyPattern("[A-Y 1-8 b-d l-y]", status
);
557 if (U_FAILURE(status
)) { errln("FAIL"); return; }
558 for (int32_t i
= 0; i
<set
.getRangeCount(); ++i
) {
559 UChar32 a
= set
.getRangeStart(i
);
560 UChar32 b
= set
.getRangeEnd(i
);
561 if (!set
.contains(a
, b
)) {
562 errln((UnicodeString
)"FAIL, should contain " + (unsigned short)a
+ '-' + (unsigned short)b
+
563 " but doesn't: " + set
);
565 if (set
.contains((UChar32
)(a
-1), b
)) {
566 errln((UnicodeString
)"FAIL, shouldn't contain " +
567 (unsigned short)(a
-1) + '-' + (unsigned short)b
+
568 " but does: " + set
);
570 if (set
.contains(a
, (UChar32
)(b
+1))) {
571 errln((UnicodeString
)"FAIL, shouldn't contain " +
572 (unsigned short)a
+ '-' + (unsigned short)(b
+1) +
573 " but does: " + set
);
577 // Ported InversionList test.
578 UnicodeSet
a((UChar32
)3,(UChar32
)10);
579 UnicodeSet
b((UChar32
)7,(UChar32
)15);
582 logln((UnicodeString
)"a [3-10]: " + a
);
583 logln((UnicodeString
)"b [7-15]: " + b
);
586 UnicodeSet
exp((UChar32
)3,(UChar32
)15);
588 logln((UnicodeString
)"c.set(a).add(b): " + c
);
590 errln((UnicodeString
)"FAIL: c.set(a).add(b) = " + c
+ ", expect " + exp
);
593 exp
.set((UChar32
)0, (UChar32
)2);
594 exp
.add((UChar32
)16, UnicodeSet::MAX_VALUE
);
596 logln((UnicodeString
)"c.complement(): " + c
);
598 errln((UnicodeString
)"FAIL: c.complement() = " + c
+ ", expect " + exp
);
601 exp
.set((UChar32
)3, (UChar32
)15);
603 logln((UnicodeString
)"c.complement(): " + c
);
605 errln((UnicodeString
)"FAIL: c.complement() = " + c
+ ", expect " + exp
);
609 exp
.set((UChar32
)3,(UChar32
)6);
610 exp
.add((UChar32
)11,(UChar32
) 15);
612 logln((UnicodeString
)"c.set(a).exclusiveOr(b): " + c
);
614 errln((UnicodeString
)"FAIL: c.set(a).exclusiveOr(b) = " + c
+ ", expect " + exp
);
618 bitsToSet(setToBits(c
), c
);
620 logln((UnicodeString
)"bitsToSet(setToBits(c)): " + c
);
622 errln((UnicodeString
)"FAIL: bitsToSet(setToBits(c)) = " + c
+ ", expect " + exp
);
625 // Additional tests for coverage JB#2118
626 //UnicodeSet::complement(class UnicodeString const &)
627 //UnicodeSet::complementAll(class UnicodeString const &)
628 //UnicodeSet::containsNone(class UnicodeSet const &)
629 //UnicodeSet::containsNone(long,long)
630 //UnicodeSet::containsSome(class UnicodeSet const &)
631 //UnicodeSet::containsSome(long,long)
632 //UnicodeSet::removeAll(class UnicodeString const &)
633 //UnicodeSet::retain(long)
634 //UnicodeSet::retainAll(class UnicodeString const &)
635 //UnicodeSet::serialize(unsigned short *,long,enum UErrorCode &)
636 //UnicodeSetIterator::getString(void)
638 set
.complement("ab");
639 exp
.applyPattern("[{ab}]", status
);
640 if (U_FAILURE(status
)) { errln("FAIL"); return; }
641 if (set
!= exp
) { errln("FAIL: complement(\"ab\")"); return; }
643 UnicodeSetIterator
iset(set
);
644 if (!iset
.next() || !iset
.isString()) {
645 errln("FAIL: UnicodeSetIterator::next/isString");
646 } else if (iset
.getString() != "ab") {
647 errln("FAIL: UnicodeSetIterator::getString");
650 set
.add((UChar32
)0x61, (UChar32
)0x7A);
651 set
.complementAll("alan");
652 exp
.applyPattern("[{ab}b-kmo-z]", status
);
653 if (U_FAILURE(status
)) { errln("FAIL"); return; }
654 if (set
!= exp
) { errln("FAIL: complementAll(\"alan\")"); return; }
656 exp
.applyPattern("[a-z]", status
);
657 if (U_FAILURE(status
)) { errln("FAIL"); return; }
658 if (set
.containsNone(exp
)) { errln("FAIL: containsNone(UnicodeSet)"); }
659 if (!set
.containsSome(exp
)) { errln("FAIL: containsSome(UnicodeSet)"); }
660 exp
.applyPattern("[aln]", status
);
661 if (U_FAILURE(status
)) { errln("FAIL"); return; }
662 if (!set
.containsNone(exp
)) { errln("FAIL: containsNone(UnicodeSet)"); }
663 if (set
.containsSome(exp
)) { errln("FAIL: containsSome(UnicodeSet)"); }
665 if (set
.containsNone((UChar32
)0x61, (UChar32
)0x7A)) {
666 errln("FAIL: containsNone(UChar32, UChar32)");
668 if (!set
.containsSome((UChar32
)0x61, (UChar32
)0x7A)) {
669 errln("FAIL: containsSome(UChar32, UChar32)");
671 if (!set
.containsNone((UChar32
)0x41, (UChar32
)0x5A)) {
672 errln("FAIL: containsNone(UChar32, UChar32)");
674 if (set
.containsSome((UChar32
)0x41, (UChar32
)0x5A)) {
675 errln("FAIL: containsSome(UChar32, UChar32)");
678 set
.removeAll("liu");
679 exp
.applyPattern("[{ab}b-hj-kmo-tv-z]", status
);
680 if (U_FAILURE(status
)) { errln("FAIL"); return; }
681 if (set
!= exp
) { errln("FAIL: removeAll(\"liu\")"); return; }
683 set
.retainAll("star");
684 exp
.applyPattern("[rst]", status
);
685 if (U_FAILURE(status
)) { errln("FAIL"); return; }
686 if (set
!= exp
) { errln("FAIL: retainAll(\"star\")"); return; }
688 set
.retain((UChar32
)0x73);
689 exp
.applyPattern("[s]", status
);
690 if (U_FAILURE(status
)) { errln("FAIL"); return; }
691 if (set
!= exp
) { errln("FAIL: retain('s')"); return; }
694 int32_t slen
= set
.serialize(buf
, sizeof(buf
)/sizeof(buf
[0]), status
);
695 if (U_FAILURE(status
)) { errln("FAIL: serialize"); return; }
696 if (slen
!= 3 || buf
[0] != 2 || buf
[1] != 0x73 || buf
[2] != 0x74) {
697 errln("FAIL: serialize");
701 // Conversions to and from USet
702 UnicodeSet
*uniset
= &set
;
703 USet
*uset
= uniset
->toUSet();
704 TEST_ASSERT((void *)uset
== (void *)uniset
);
705 UnicodeSet
*setx
= UnicodeSet::fromUSet(uset
);
706 TEST_ASSERT((void *)setx
== (void *)uset
);
707 const UnicodeSet
*constSet
= uniset
;
708 const USet
*constUSet
= constSet
->toUSet();
709 TEST_ASSERT((void *)constUSet
== (void *)constSet
);
710 const UnicodeSet
*constSetx
= UnicodeSet::fromUSet(constUSet
);
711 TEST_ASSERT((void *)constSetx
== (void *)constUSet
);
713 // span(UnicodeString) and spanBack(UnicodeString) convenience methods
714 UnicodeString longString
=UNICODE_STRING_SIMPLE("aaaaaaaaaabbbbbbbbbbcccccccccc");
715 UnicodeSet
ac(0x61, 0x63);
716 ac
.remove(0x62).freeze();
717 if( ac
.span(longString
, -5, USET_SPAN_CONTAINED
)!=10 ||
718 ac
.span(longString
, 0, USET_SPAN_CONTAINED
)!=10 ||
719 ac
.span(longString
, 5, USET_SPAN_CONTAINED
)!=10 ||
720 ac
.span(longString
, 10, USET_SPAN_CONTAINED
)!=10 ||
721 ac
.span(longString
, 15, USET_SPAN_CONTAINED
)!=15 ||
722 ac
.span(longString
, 20, USET_SPAN_CONTAINED
)!=30 ||
723 ac
.span(longString
, 25, USET_SPAN_CONTAINED
)!=30 ||
724 ac
.span(longString
, 30, USET_SPAN_CONTAINED
)!=30 ||
725 ac
.span(longString
, 35, USET_SPAN_CONTAINED
)!=30 ||
726 ac
.span(longString
, INT32_MAX
, USET_SPAN_CONTAINED
)!=30
728 errln("UnicodeSet.span(UnicodeString, ...) returns incorrect end indexes");
730 if( ac
.spanBack(longString
, -5, USET_SPAN_CONTAINED
)!=0 ||
731 ac
.spanBack(longString
, 0, USET_SPAN_CONTAINED
)!=0 ||
732 ac
.spanBack(longString
, 5, USET_SPAN_CONTAINED
)!=0 ||
733 ac
.spanBack(longString
, 10, USET_SPAN_CONTAINED
)!=0 ||
734 ac
.spanBack(longString
, 15, USET_SPAN_CONTAINED
)!=15 ||
735 ac
.spanBack(longString
, 20, USET_SPAN_CONTAINED
)!=20 ||
736 ac
.spanBack(longString
, 25, USET_SPAN_CONTAINED
)!=20 ||
737 ac
.spanBack(longString
, 30, USET_SPAN_CONTAINED
)!=20 ||
738 ac
.spanBack(longString
, 35, USET_SPAN_CONTAINED
)!=20 ||
739 ac
.spanBack(longString
, INT32_MAX
, USET_SPAN_CONTAINED
)!=20
741 errln("UnicodeSet.spanBack(UnicodeString, ...) returns incorrect start indexes");
745 void UnicodeSetTest::TestIteration() {
746 UErrorCode ec
= U_ZERO_ERROR
;
750 // 6 code points, 3 ranges, 2 strings, 8 total elements
751 // Iteration will access them in sorted order - a, b, c, y, z, U0001abcd, "str1", "str2"
752 UnicodeSet
set(UNICODE_STRING_SIMPLE("[zabyc\\U0001abcd{str1}{str2}]"), ec
);
753 TEST_ASSERT_SUCCESS(ec
);
754 UnicodeSetIterator
it(set
);
756 for (outerLoop
=0; outerLoop
<3; outerLoop
++) {
757 // Run the test multiple times, to check that iterator.reset() is working.
758 for (i
=0; i
<10; i
++) {
759 UBool nextv
= it
.next();
760 UBool isString
= it
.isString();
761 int32_t codePoint
= it
.getCodepoint();
762 //int32_t codePointEnd = it.getCodepointEnd();
763 UnicodeString s
= it
.getString();
766 TEST_ASSERT(nextv
== TRUE
);
767 TEST_ASSERT(isString
== FALSE
);
768 TEST_ASSERT(codePoint
==0x61);
769 TEST_ASSERT(s
== "a");
772 TEST_ASSERT(nextv
== TRUE
);
773 TEST_ASSERT(isString
== FALSE
);
774 TEST_ASSERT(codePoint
==0x62);
775 TEST_ASSERT(s
== "b");
778 TEST_ASSERT(nextv
== TRUE
);
779 TEST_ASSERT(isString
== FALSE
);
780 TEST_ASSERT(codePoint
==0x63);
781 TEST_ASSERT(s
== "c");
784 TEST_ASSERT(nextv
== TRUE
);
785 TEST_ASSERT(isString
== FALSE
);
786 TEST_ASSERT(codePoint
==0x79);
787 TEST_ASSERT(s
== "y");
790 TEST_ASSERT(nextv
== TRUE
);
791 TEST_ASSERT(isString
== FALSE
);
792 TEST_ASSERT(codePoint
==0x7a);
793 TEST_ASSERT(s
== "z");
796 TEST_ASSERT(nextv
== TRUE
);
797 TEST_ASSERT(isString
== FALSE
);
798 TEST_ASSERT(codePoint
==0x1abcd);
799 TEST_ASSERT(s
== UnicodeString((UChar32
)0x1abcd));
802 TEST_ASSERT(nextv
== TRUE
);
803 TEST_ASSERT(isString
== TRUE
);
804 TEST_ASSERT(s
== "str1");
807 TEST_ASSERT(nextv
== TRUE
);
808 TEST_ASSERT(isString
== TRUE
);
809 TEST_ASSERT(s
== "str2");
812 TEST_ASSERT(nextv
== FALSE
);
815 TEST_ASSERT(nextv
== FALSE
);
819 it
.reset(); // prepare to run the iteration again.
826 void UnicodeSetTest::TestStrings() {
827 UErrorCode ec
= U_ZERO_ERROR
;
829 UnicodeSet
* testList
[] = {
830 UnicodeSet::createFromAll("abc"),
831 new UnicodeSet("[a-c]", ec
),
833 &(UnicodeSet::createFrom("ch")->add('a','z').add("ll")),
834 new UnicodeSet("[{ll}{ch}a-z]", ec
),
836 UnicodeSet::createFrom("ab}c"),
837 new UnicodeSet("[{ab\\}c}]", ec
),
839 &((new UnicodeSet('a','z'))->add('A', 'Z').retain('M','m').complement('X')),
840 new UnicodeSet("[[a-zA-Z]&[M-m]-[X]]", ec
),
846 errln("FAIL: couldn't construct test sets");
849 for (int32_t i
= 0; testList
[i
] != NULL
; i
+=2) {
851 UnicodeString pat0
, pat1
;
852 testList
[i
]->toPattern(pat0
, TRUE
);
853 testList
[i
+1]->toPattern(pat1
, TRUE
);
854 if (*testList
[i
] == *testList
[i
+1]) {
855 logln((UnicodeString
)"Ok: " + pat0
+ " == " + pat1
);
857 logln((UnicodeString
)"FAIL: " + pat0
+ " != " + pat1
);
861 delete testList
[i
+1];
866 * Test the [:Latin:] syntax.
868 void UnicodeSetTest::TestScriptSet() {
869 expectContainment(UNICODE_STRING_SIMPLE("[:Latin:]"), "aA", CharsToUnicodeString("\\u0391\\u03B1"));
871 expectContainment(UNICODE_STRING_SIMPLE("[:Greek:]"), CharsToUnicodeString("\\u0391\\u03B1"), "aA");
874 expectContainment(UNICODE_STRING_SIMPLE("[[:Common:][:Inherited:]]"), CharsToUnicodeString("\\U00003099\\U0001D169\\u0000"), "aA");
879 * Test the [:Latin:] syntax.
881 void UnicodeSetTest::TestPropertySet() {
882 static const char* const DATA
[] = {
883 // Pattern, Chars IN, Chars NOT in
893 "\\P{ GENERAL Category = upper case letter }",
897 #if !UCONFIG_NO_NORMALIZATION
898 // Combining class: @since ICU 2.2
899 // Check both symbolic and numeric
904 "\\p{Canonical Combining Class = 11}",
908 "[:c c c = iota subscript :]",
913 // Bidi class: @since ICU 2.2
914 "\\p{bidiclass=lefttoright}",
918 // Binary properties: @since ICU 2.2
925 // weiv: )(and * were removed from math in Unicode 4.0.1
929 // JB#1767 \N{}, \p{ASCII}
934 "[\\N{ latin small letter a }[:name= latin small letter z:]]",
950 "\\u03D8\\u03D9", // 3.2
953 "\\u1800\\u3400\\U0002f800",
954 "\\u0220\\u034f\\u30ff\\u33ff\\ufe73\\U00010000\\U00050000",
956 // JB#2350: Case_Sensitive
957 "[:Case Sensitive:]",
958 "A\\u1FFC\\U00010410",
959 ";\\u00B4\\U00010500",
961 // JB#2832: C99-compatibility props
968 " \\u0003\\u0007\\u0009\\u000A\\u000D",
971 "!@#%&*()[]{}-_\\/;:,.?'\"",
978 // Regex compatibility test
979 "[-b]", // leading '-' is literal
983 "[^-b]", // leading '-' is literal
987 "[b-]", // trailing '-' is literal
991 "[^b-]", // trailing '-' is literal
995 "[a-b-]", // trailing '-' is literal
999 "[[a-q]&[p-z]-]", // trailing '-' is literal
1003 "[\\s|\\)|:|$|\\>]", // from regex tests
1007 "[\\uDC00cd]", // JB#2906: isolated trail at start
1009 "ab\\uD800\\U00010000",
1011 "[ab\\uD800]", // JB#2906: isolated trail at start
1013 "cd\\uDC00\\U00010000",
1015 "[ab\\uD800cd]", // JB#2906: isolated lead in middle
1017 "ef\\uDC00\\U00010000",
1019 "[ab\\uDC00cd]", // JB#2906: isolated trail in middle
1021 "ef\\uD800\\U00010000",
1023 #if !UCONFIG_NO_NORMALIZATION
1024 "[:^lccc=0:]", // Lead canonical class
1026 "abcd\\u00c0\\u00c5",
1028 "[:^tccc=0:]", // Trail canonical class
1029 "\\u0300\\u0301\\u00c0\\u00c5",
1032 "[[:^lccc=0:][:^tccc=0:]]", // Lead and trail canonical class
1033 "\\u0300\\u0301\\u00c0\\u00c5",
1036 "[[:^lccc=0:]-[:^tccc=0:]]", // Stuff that starts with an accent but ends with a base (none right now)
1038 "abcd\\u0300\\u0301\\u00c0\\u00c5",
1040 "[[:ccc=0:]-[:lccc=0:]-[:tccc=0:]]", // Weirdos. Complete canonical class is zero, but both lead and trail are not
1041 "\\u0F73\\u0F75\\u0F81",
1042 "abcd\\u0300\\u0301\\u00c0\\u00c5",
1043 #endif /* !UCONFIG_NO_NORMALIZATION */
1046 "A\\uE000\\uF8FF\\uFDC7\\U00010000\\U0010FFFD",
1047 "\\u0888\\uFDD3\\uFFFE\\U00050005",
1049 // Script_Extensions, new in Unicode 6.0
1051 "\\u061E\\u061F\\u0620\\u0621\\u063F\\u0640\\u0650\\u065E\\uFDF1\\uFDF2\\uFDF3",
1052 "\\u061D\\uFDEF\\uFDFE",
1054 // U+FDF2 has Script=Arabic and also Arab in its Script_Extensions,
1055 // so scx-sc is missing U+FDF2.
1056 "[[:Script_Extensions=Arabic:]-[:Arab:]]",
1057 "\\u0640\\u064B\\u0650\\u0655\\uFDFD",
1061 static const int32_t DATA_LEN
= sizeof(DATA
)/sizeof(DATA
[0]);
1063 for (int32_t i
=0; i
<DATA_LEN
; i
+=3) {
1064 expectContainment(UnicodeString(DATA
[i
], -1, US_INV
), CharsToUnicodeString(DATA
[i
+1]),
1065 CharsToUnicodeString(DATA
[i
+2]));
1070 * Test that Posix style character classes [:digit:], etc.
1071 * have the Unicode definitions from TR 18.
1073 void UnicodeSetTest::TestPosixClasses() {
1075 UErrorCode status
= U_ZERO_ERROR
;
1076 UnicodeSet
s1("[:alpha:]", status
);
1077 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{Alphabetic}"), status
);
1078 TEST_ASSERT_SUCCESS(status
);
1079 TEST_ASSERT(s1
==s2
);
1082 UErrorCode status
= U_ZERO_ERROR
;
1083 UnicodeSet
s1("[:lower:]", status
);
1084 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{lowercase}"), status
);
1085 TEST_ASSERT_SUCCESS(status
);
1086 TEST_ASSERT(s1
==s2
);
1089 UErrorCode status
= U_ZERO_ERROR
;
1090 UnicodeSet
s1("[:upper:]", status
);
1091 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{Uppercase}"), status
);
1092 TEST_ASSERT_SUCCESS(status
);
1093 TEST_ASSERT(s1
==s2
);
1096 UErrorCode status
= U_ZERO_ERROR
;
1097 UnicodeSet
s1("[:punct:]", status
);
1098 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{gc=Punctuation}"), status
);
1099 TEST_ASSERT_SUCCESS(status
);
1100 TEST_ASSERT(s1
==s2
);
1103 UErrorCode status
= U_ZERO_ERROR
;
1104 UnicodeSet
s1("[:digit:]", status
);
1105 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{gc=DecimalNumber}"), status
);
1106 TEST_ASSERT_SUCCESS(status
);
1107 TEST_ASSERT(s1
==s2
);
1110 UErrorCode status
= U_ZERO_ERROR
;
1111 UnicodeSet
s1("[:xdigit:]", status
);
1112 UnicodeSet
s2(UNICODE_STRING_SIMPLE("[\\p{DecimalNumber}\\p{HexDigit}]"), status
);
1113 TEST_ASSERT_SUCCESS(status
);
1114 TEST_ASSERT(s1
==s2
);
1117 UErrorCode status
= U_ZERO_ERROR
;
1118 UnicodeSet
s1("[:alnum:]", status
);
1119 UnicodeSet
s2(UNICODE_STRING_SIMPLE("[\\p{Alphabetic}\\p{DecimalNumber}]"), status
);
1120 TEST_ASSERT_SUCCESS(status
);
1121 TEST_ASSERT(s1
==s2
);
1124 UErrorCode status
= U_ZERO_ERROR
;
1125 UnicodeSet
s1("[:space:]", status
);
1126 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{Whitespace}"), status
);
1127 TEST_ASSERT_SUCCESS(status
);
1128 TEST_ASSERT(s1
==s2
);
1131 UErrorCode status
= U_ZERO_ERROR
;
1132 UnicodeSet
s1("[:blank:]", status
);
1133 TEST_ASSERT_SUCCESS(status
);
1134 UnicodeSet
s2(UNICODE_STRING_SIMPLE("[\\p{Whitespace}-[\\u000a\\u000B\\u000c\\u000d\\u0085\\p{LineSeparator}\\p{ParagraphSeparator}]]"),
1136 TEST_ASSERT_SUCCESS(status
);
1137 TEST_ASSERT(s1
==s2
);
1140 UErrorCode status
= U_ZERO_ERROR
;
1141 UnicodeSet
s1("[:cntrl:]", status
);
1142 TEST_ASSERT_SUCCESS(status
);
1143 UnicodeSet
s2(UNICODE_STRING_SIMPLE("\\p{Control}"), status
);
1144 TEST_ASSERT_SUCCESS(status
);
1145 TEST_ASSERT(s1
==s2
);
1148 UErrorCode status
= U_ZERO_ERROR
;
1149 UnicodeSet
s1("[:graph:]", status
);
1150 TEST_ASSERT_SUCCESS(status
);
1151 UnicodeSet
s2(UNICODE_STRING_SIMPLE("[^\\p{Whitespace}\\p{Control}\\p{Surrogate}\\p{Unassigned}]"), status
);
1152 TEST_ASSERT_SUCCESS(status
);
1153 TEST_ASSERT(s1
==s2
);
1156 UErrorCode status
= U_ZERO_ERROR
;
1157 UnicodeSet
s1("[:print:]", status
);
1158 TEST_ASSERT_SUCCESS(status
);
1159 UnicodeSet
s2(UNICODE_STRING_SIMPLE("[[:graph:][:blank:]-[\\p{Control}]]") ,status
);
1160 TEST_ASSERT_SUCCESS(status
);
1161 TEST_ASSERT(s1
==s2
);
1165 * Test cloning of UnicodeSet. For C++, we test the copy constructor.
1167 void UnicodeSetTest::TestClone() {
1168 UErrorCode ec
= U_ZERO_ERROR
;
1169 UnicodeSet
s("[abcxyz]", ec
);
1171 expectContainment(t
, "abc", "def");
1175 * Test the indexOf() and charAt() methods.
1177 void UnicodeSetTest::TestIndexOf() {
1178 UErrorCode ec
= U_ZERO_ERROR
;
1179 UnicodeSet
set("[a-cx-y3578]", ec
);
1180 if (U_FAILURE(ec
)) {
1181 errln("FAIL: UnicodeSet constructor");
1184 for (int32_t i
=0; i
<set
.size(); ++i
) {
1185 UChar32 c
= set
.charAt(i
);
1186 if (set
.indexOf(c
) != i
) {
1187 errln("FAIL: charAt(%d) = %X => indexOf() => %d",
1188 i
, c
, set
.indexOf(c
));
1191 UChar32 c
= set
.charAt(set
.size());
1193 errln("FAIL: charAt(<out of range>) = %X", c
);
1195 int32_t j
= set
.indexOf((UChar32
)0x71/*'q'*/);
1197 errln((UnicodeString
)"FAIL: indexOf('q') = " + j
);
1204 void UnicodeSetTest::TestCloseOver() {
1205 UErrorCode ec
= U_ZERO_ERROR
;
1207 char CASE
[] = {(char)USET_CASE_INSENSITIVE
};
1208 char CASE_MAPPINGS
[] = {(char)USET_ADD_CASE_MAPPINGS
};
1209 const char* DATA
[] = {
1210 // selector, input, output
1212 "[aq\\u00DF{Bc}{bC}{Fi}]",
1213 "[aAqQ\\u00DF\\u1E9E\\uFB01{ss}{bc}{fi}]", // U+1E9E LATIN CAPITAL LETTER SHARP S is new in Unicode 5.1
1216 "[\\u01F1]", // 'DZ'
1217 "[\\u01F1\\u01F2\\u01F3]",
1221 "[\\u1FB4{\\u03AC\\u03B9}]",
1227 CASE
, // make sure binary search finds limits
1229 "[aA\\uFF3A\\uFF5A]",
1232 "[a-z]","[A-Za-z\\u017F\\u212A]",
1238 CASE
, "[i]", "[iI]",
1240 CASE
, "[\\u0130]", "[\\u0130{i\\u0307}]", // dotted I
1241 CASE
, "[{i\\u0307}]", "[\\u0130{i\\u0307}]", // i with dot
1243 CASE
, "[\\u0131]", "[\\u0131]", // dotless i
1245 CASE
, "[\\u0390]", "[\\u0390\\u1FD3{\\u03B9\\u0308\\u0301}]",
1247 CASE
, "[\\u03c2]", "[\\u03a3\\u03c2\\u03c3]", // sigmas
1249 CASE
, "[\\u03f2]", "[\\u03f2\\u03f9]", // lunate sigmas
1251 CASE
, "[\\u03f7]", "[\\u03f7\\u03f8]",
1253 CASE
, "[\\u1fe3]", "[\\u03b0\\u1fe3{\\u03c5\\u0308\\u0301}]",
1255 CASE
, "[\\ufb05]", "[\\ufb05\\ufb06{st}]",
1256 CASE
, "[{st}]", "[\\ufb05\\ufb06{st}]",
1258 CASE
, "[\\U0001044F]", "[\\U00010427\\U0001044F]",
1260 CASE
, "[{a\\u02BE}]", "[\\u1E9A{a\\u02BE}]", // first in sorted table
1262 CASE
, "[{\\u1f7c\\u03b9}]", "[\\u1ff2{\\u1f7c\\u03b9}]", // last in sorted table
1264 #if !UCONFIG_NO_FILE_IO
1266 "[aq\\u00DF{Bc}{bC}{Fi}]",
1267 "[aAqQ\\u00DF{ss}{Ss}{SS}{Bc}{BC}{bC}{bc}{FI}{Fi}{fi}]",
1271 "[\\u01F1]", // 'DZ'
1272 "[\\u01F1\\u01F2\\u01F3]",
1284 for (int32_t i
=0; DATA
[i
]!=NULL
; i
+=3) {
1285 int32_t selector
= DATA
[i
][0];
1286 UnicodeString
pat(DATA
[i
+1], -1, US_INV
);
1287 UnicodeString
exp(DATA
[i
+2], -1, US_INV
);
1288 s
.applyPattern(pat
, ec
);
1289 s
.closeOver(selector
);
1290 t
.applyPattern(exp
, ec
);
1291 if (U_FAILURE(ec
)) {
1292 errln("FAIL: applyPattern failed");
1296 logln((UnicodeString
)"Ok: " + pat
+ ".closeOver(" + selector
+ ") => " + exp
);
1298 dataerrln((UnicodeString
)"FAIL: " + pat
+ ".closeOver(" + selector
+ ") => " +
1299 s
.toPattern(buf
, TRUE
) + ", expected " + exp
);
1306 * This was used to compare the old implementation (using USET_CASE)
1307 * with the new one (using 0x100 temporarily)
1308 * while transitioning from hardcoded case closure tables in uniset.cpp
1309 * (moved to uniset_props.cpp) to building the data by gencase into ucase.icu.
1310 * and using ucase.c functions for closure.
1311 * See Jitterbug 3432 RFE: Move uniset.cpp data to a data file
1313 * Note: The old and new implementation never fully matched because
1314 * the old implementation turned out to not map U+0130 and U+0131 correctly
1315 * (dotted I and dotless i) and because the old implementation's data tables
1316 * were outdated compared to Unicode 4.0.1 at the time of the change to the
1317 * new implementation. (So sigmas and some other characters were not handled
1318 * according to the newer Unicode version.)
1320 UnicodeSet
sens("[:case_sensitive:]", ec
), sens2
, s2
;
1321 UnicodeSetIterator
si(sens
);
1322 UnicodeString str
, buf2
;
1323 const UnicodeString
*pStr
;
1326 if(!si
.isString()) {
1327 c
=si
.getCodepoint();
1336 s
.closeOver(USET_CASE
);
1339 errln("FAIL: closeOver(U+%04x) differs: ", c
);
1340 errln((UnicodeString
)"old "+s
.toPattern(buf
, TRUE
)+" new: "+t
.toPattern(buf2
, TRUE
));
1344 // remove all code points
1345 // should contain all full case folding mapping strings
1346 sens2
.remove(0, 0x10ffff);
1350 pStr
=&si
.getString();
1354 s
.closeOver(USET_CASE
);
1357 errln((UnicodeString
)"FAIL: closeOver("+s2
.toPattern(buf
, TRUE
)+") differs: ");
1358 errln((UnicodeString
)"old "+s
.toPattern(buf
, TRUE
)+" new: "+t
.toPattern(buf2
, TRUE
));
1364 // Test the pattern API
1365 s
.applyPattern("[abc]", USET_CASE_INSENSITIVE
, NULL
, ec
);
1366 if (U_FAILURE(ec
)) {
1367 errln("FAIL: applyPattern failed");
1369 expectContainment(s
, "abcABC", "defDEF");
1371 UnicodeSet
v("[^abc]", USET_CASE_INSENSITIVE
, NULL
, ec
);
1372 if (U_FAILURE(ec
)) {
1373 errln("FAIL: constructor failed");
1375 expectContainment(v
, "defDEF", "abcABC");
1377 UnicodeSet
cm("[abck]", USET_ADD_CASE_MAPPINGS
, NULL
, ec
);
1378 if (U_FAILURE(ec
)) {
1379 errln("FAIL: construct w/case mappings failed");
1381 expectContainment(cm
, "abckABCK", CharsToUnicodeString("defDEF\\u212A"));
1385 void UnicodeSetTest::TestEscapePattern() {
1386 const char pattern
[] =
1387 "[\\uFEFF \\u200A-\\u200E \\U0001D173-\\U0001D17A \\U000F0000-\\U000FFFFD ]";
1389 "[\\u200A-\\u200E\\uFEFF\\U0001D173-\\U0001D17A\\U000F0000-\\U000FFFFD]";
1390 // We test this with two passes; in the second pass we
1391 // pre-unescape the pattern. Since U+200E is Pattern_White_Space,
1392 // this fails -- which is what we expect.
1393 for (int32_t pass
=1; pass
<=2; ++pass
) {
1394 UErrorCode ec
= U_ZERO_ERROR
;
1395 UnicodeString
pat(pattern
, -1, US_INV
);
1397 pat
= pat
.unescape();
1399 // Pattern is only good for pass 1
1400 UBool isPatternValid
= (pass
==1);
1402 UnicodeSet
set(pat
, ec
);
1403 if (U_SUCCESS(ec
) != isPatternValid
){
1404 errln((UnicodeString
)"FAIL: applyPattern(" +
1405 escape(pat
) + ") => " +
1409 if (U_FAILURE(ec
)) {
1412 if (set
.contains((UChar
)0x0644)){
1413 errln((UnicodeString
)"FAIL: " + escape(pat
) + " contains(U+0664)");
1416 UnicodeString newpat
;
1417 set
.toPattern(newpat
, TRUE
);
1418 if (newpat
== UnicodeString(exp
, -1, US_INV
)) {
1419 logln(escape(pat
) + " => " + newpat
);
1421 errln((UnicodeString
)"FAIL: " + escape(pat
) + " => " + newpat
);
1424 for (int32_t i
=0; i
<set
.getRangeCount(); ++i
) {
1425 UnicodeString
str("Range ");
1426 str
.append((UChar
)(0x30 + i
))
1428 .append((UChar32
)set
.getRangeStart(i
))
1430 .append((UChar32
)set
.getRangeEnd(i
));
1431 str
= str
+ " (" + set
.getRangeStart(i
) + " - " +
1432 set
.getRangeEnd(i
) + ")";
1433 if (set
.getRangeStart(i
) < 0) {
1434 errln((UnicodeString
)"FAIL: " + escape(str
));
1442 void UnicodeSetTest::expectRange(const UnicodeString
& label
,
1443 const UnicodeSet
& set
,
1444 UChar32 start
, UChar32 end
) {
1445 UnicodeSet
exp(start
, end
);
1448 logln(label
+ " => " + set
.toPattern(pat
, TRUE
));
1451 errln((UnicodeString
)"FAIL: " + label
+ " => " +
1452 set
.toPattern(pat
, TRUE
) +
1453 ", expected " + exp
.toPattern(xpat
, TRUE
));
1457 void UnicodeSetTest::TestInvalidCodePoint() {
1459 const UChar32 DATA
[] = {
1460 // Test range Expected range
1461 0, 0x10FFFF, 0, 0x10FFFF,
1462 (UChar32
)-1, 8, 0, 8,
1463 8, 0x110000, 8, 0x10FFFF
1465 const int32_t DATA_LENGTH
= sizeof(DATA
)/sizeof(DATA
[0]);
1470 for (i
=0; i
<DATA_LENGTH
; i
+=4) {
1471 UChar32 start
= DATA
[i
];
1472 UChar32 end
= DATA
[i
+1];
1473 UChar32 xstart
= DATA
[i
+2];
1474 UChar32 xend
= DATA
[i
+3];
1476 // Try various API using the test code points
1478 UnicodeSet
set(start
, end
);
1479 expectRange((UnicodeString
)"ct(" + start
+ "," + end
+ ")",
1483 set
.set(start
, end
);
1484 expectRange((UnicodeString
)"set(" + start
+ "," + end
+ ")",
1487 UBool b
= set
.contains(start
);
1488 b
= set
.contains(start
, end
);
1489 b
= set
.containsNone(start
, end
);
1490 b
= set
.containsSome(start
, end
);
1492 /*int32_t index = set.indexOf(start);*/
1496 set
.add(start
, end
);
1497 expectRange((UnicodeString
)"add(" + start
+ "," + end
+ ")",
1500 set
.set(0, 0x10FFFF);
1501 set
.retain(start
, end
);
1502 expectRange((UnicodeString
)"retain(" + start
+ "," + end
+ ")",
1506 set
.set(0, 0x10FFFF);
1508 set
.remove(start
, end
);
1510 expectRange((UnicodeString
)"!remove(" + start
+ "," + end
+ ")",
1513 set
.set(0, 0x10FFFF);
1514 set
.complement(start
, end
);
1516 expectRange((UnicodeString
)"!complement(" + start
+ "," + end
+ ")",
1518 set
.complement(start
);
1521 const UChar32 DATA2
[] = {
1527 const int32_t DATA2_LENGTH
= sizeof(DATA2
)/sizeof(DATA2
[0]);
1529 for (i
=0; i
<DATA2_LENGTH
; ++i
) {
1530 UChar32 c
= DATA2
[i
], end
= 0x10FFFF;
1531 UBool valid
= (c
>= 0 && c
<= 0x10FFFF);
1533 UnicodeSet
set(0, 0x10FFFF);
1535 // For single-codepoint contains, invalid codepoints are NOT contained
1536 UBool b
= set
.contains(c
);
1538 logln((UnicodeString
)"[\\u0000-\\U0010FFFF].contains(" + c
+
1541 errln((UnicodeString
)"FAIL: [\\u0000-\\U0010FFFF].contains(" + c
+
1545 // For codepoint range contains, containsNone, and containsSome,
1546 // invalid or empty (start > end) ranges have UNDEFINED behavior.
1547 b
= set
.contains(c
, end
);
1548 logln((UnicodeString
)"* [\\u0000-\\U0010FFFF].contains(" + c
+
1549 "," + end
+ ") = " + b
);
1551 b
= set
.containsNone(c
, end
);
1552 logln((UnicodeString
)"* [\\u0000-\\U0010FFFF].containsNone(" + c
+
1553 "," + end
+ ") = " + b
);
1555 b
= set
.containsSome(c
, end
);
1556 logln((UnicodeString
)"* [\\u0000-\\U0010FFFF].containsSome(" + c
+
1557 "," + end
+ ") = " + b
);
1559 int32_t index
= set
.indexOf(c
);
1560 if ((index
>= 0) == valid
) {
1561 logln((UnicodeString
)"[\\u0000-\\U0010FFFF].indexOf(" + c
+
1564 errln((UnicodeString
)"FAIL: [\\u0000-\\U0010FFFF].indexOf(" + c
+
1570 // Used by TestSymbolTable
1571 class TokenSymbolTable
: public SymbolTable
{
1575 TokenSymbolTable(UErrorCode
& ec
) : contents(FALSE
, ec
) {
1576 contents
.setValueDeleter(uprv_deleteUObject
);
1579 ~TokenSymbolTable() {}
1582 * (Non-SymbolTable API) Add the given variable and value to
1583 * the table. Variable should NOT contain leading '$'.
1585 void add(const UnicodeString
& var
, const UnicodeString
& value
,
1587 if (U_SUCCESS(ec
)) {
1588 contents
.put(var
, new UnicodeString(value
), ec
);
1595 virtual const UnicodeString
* lookup(const UnicodeString
& s
) const {
1596 return (const UnicodeString
*) contents
.get(s
);
1602 virtual const UnicodeFunctor
* lookupMatcher(UChar32
/*ch*/) const {
1609 virtual UnicodeString
parseReference(const UnicodeString
& text
,
1610 ParsePosition
& pos
, int32_t limit
) const {
1611 int32_t start
= pos
.getIndex();
1613 UnicodeString result
;
1615 UChar c
= text
.charAt(i
);
1616 if ((i
==start
&& !u_isIDStart(c
)) || !u_isIDPart(c
)) {
1621 if (i
== start
) { // No valid name chars
1622 return result
; // Indicate failure with empty string
1625 text
.extractBetween(start
, i
, result
);
1630 void UnicodeSetTest::TestSymbolTable() {
1631 // Multiple test cases can be set up here. Each test case
1632 // is terminated by null:
1633 // var, value, var, value,..., input pat., exp. output pat., null
1634 const char* DATA
[] = {
1635 "us", "a-z", "[0-1$us]", "[0-1a-z]", NULL
,
1636 "us", "[a-z]", "[0-1$us]", "[0-1[a-z]]", NULL
,
1637 "us", "\\[a\\-z\\]", "[0-1$us]", "[-01\\[\\]az]", NULL
,
1641 for (int32_t i
=0; DATA
[i
]!=NULL
; ++i
) {
1642 UErrorCode ec
= U_ZERO_ERROR
;
1643 TokenSymbolTable
sym(ec
);
1644 if (U_FAILURE(ec
)) {
1645 errln("FAIL: couldn't construct TokenSymbolTable");
1650 while (DATA
[i
+2] != NULL
) {
1651 sym
.add(UnicodeString(DATA
[i
], -1, US_INV
), UnicodeString(DATA
[i
+1], -1, US_INV
), ec
);
1652 if (U_FAILURE(ec
)) {
1653 errln("FAIL: couldn't add to TokenSymbolTable");
1659 // Input pattern and expected output pattern
1660 UnicodeString inpat
= UnicodeString(DATA
[i
], -1, US_INV
), exppat
= UnicodeString(DATA
[i
+1], -1, US_INV
);
1663 ParsePosition
pos(0);
1664 UnicodeSet
us(inpat
, pos
, USET_IGNORE_SPACE
, &sym
, ec
);
1665 if (U_FAILURE(ec
)) {
1666 errln("FAIL: couldn't construct UnicodeSet");
1671 if (pos
.getIndex() != inpat
.length()) {
1672 errln((UnicodeString
)"Failed to read to end of string \""
1673 + inpat
+ "\": read to "
1674 + pos
.getIndex() + ", length is "
1678 UnicodeSet
us2(exppat
, ec
);
1679 if (U_FAILURE(ec
)) {
1680 errln("FAIL: couldn't construct expected UnicodeSet");
1686 errln((UnicodeString
)"Failed, got " + us
.toPattern(a
, TRUE
) +
1687 ", expected " + us2
.toPattern(b
, TRUE
));
1689 logln((UnicodeString
)"Ok, got " + us
.toPattern(a
, TRUE
));
1694 void UnicodeSetTest::TestSurrogate() {
1695 const char* DATA
[] = {
1696 // These should all behave identically
1697 "[abc\\uD800\\uDC00]",
1698 // "[abc\uD800\uDC00]", // Can't do this on C -- only Java
1702 for (int i
=0; DATA
[i
] != 0; ++i
) {
1703 UErrorCode ec
= U_ZERO_ERROR
;
1704 logln((UnicodeString
)"Test pattern " + i
+ " :" + UnicodeString(DATA
[i
], -1, US_INV
));
1705 UnicodeString str
= UnicodeString(DATA
[i
], -1, US_INV
);
1706 UnicodeSet
set(str
, ec
);
1707 if (U_FAILURE(ec
)) {
1708 errln("FAIL: UnicodeSet constructor");
1711 expectContainment(set
,
1712 CharsToUnicodeString("abc\\U00010000"),
1713 CharsToUnicodeString("\\uD800;\\uDC00")); // split apart surrogate-pair
1714 if (set
.size() != 4) {
1715 errln((UnicodeString
)"FAIL: " + UnicodeString(DATA
[i
], -1, US_INV
) + ".size() == " +
1716 set
.size() + ", expected 4");
1721 void UnicodeSetTest::TestExhaustive() {
1722 // exhaustive tests. Simulate UnicodeSets with integers.
1723 // That gives us very solid tests (except for large memory tests).
1725 int32_t limit
= 128;
1727 UnicodeSet x
, y
, z
, aa
;
1729 for (int32_t i
= 0; i
< limit
; ++i
) {
1731 logln((UnicodeString
)"Testing " + i
+ ", " + x
);
1732 _testComplement(i
, x
, y
);
1734 // AS LONG AS WE ARE HERE, check roundtrip
1735 checkRoundTrip(bitsToSet(i
, aa
));
1737 for (int32_t j
= 0; j
< limit
; ++j
) {
1738 _testAdd(i
,j
, x
,y
,z
);
1739 _testXor(i
,j
, x
,y
,z
);
1740 _testRetain(i
,j
, x
,y
,z
);
1741 _testRemove(i
,j
, x
,y
,z
);
1746 void UnicodeSetTest::_testComplement(int32_t a
, UnicodeSet
& x
, UnicodeSet
& z
) {
1750 int32_t c
= setToBits(z
);
1752 errln((UnicodeString
)"FAILED: add: ~" + x
+ " != " + z
);
1753 errln((UnicodeString
)"FAILED: add: ~" + a
+ " != " + c
);
1755 checkCanonicalRep(z
, (UnicodeString
)"complement " + a
);
1758 void UnicodeSetTest::_testAdd(int32_t a
, int32_t b
, UnicodeSet
& x
, UnicodeSet
& y
, UnicodeSet
& z
) {
1763 int32_t c
= setToBits(z
);
1765 errln((UnicodeString
)"FAILED: add: " + x
+ " | " + y
+ " != " + z
);
1766 errln((UnicodeString
)"FAILED: add: " + a
+ " | " + b
+ " != " + c
);
1768 checkCanonicalRep(z
, (UnicodeString
)"add " + a
+ "," + b
);
1771 void UnicodeSetTest::_testRetain(int32_t a
, int32_t b
, UnicodeSet
& x
, UnicodeSet
& y
, UnicodeSet
& z
) {
1776 int32_t c
= setToBits(z
);
1778 errln((UnicodeString
)"FAILED: retain: " + x
+ " & " + y
+ " != " + z
);
1779 errln((UnicodeString
)"FAILED: retain: " + a
+ " & " + b
+ " != " + c
);
1781 checkCanonicalRep(z
, (UnicodeString
)"retain " + a
+ "," + b
);
1784 void UnicodeSetTest::_testRemove(int32_t a
, int32_t b
, UnicodeSet
& x
, UnicodeSet
& y
, UnicodeSet
& z
) {
1789 int32_t c
= setToBits(z
);
1790 if (c
!= (a
&~ b
)) {
1791 errln((UnicodeString
)"FAILED: remove: " + x
+ " &~ " + y
+ " != " + z
);
1792 errln((UnicodeString
)"FAILED: remove: " + a
+ " &~ " + b
+ " != " + c
);
1794 checkCanonicalRep(z
, (UnicodeString
)"remove " + a
+ "," + b
);
1797 void UnicodeSetTest::_testXor(int32_t a
, int32_t b
, UnicodeSet
& x
, UnicodeSet
& y
, UnicodeSet
& z
) {
1802 int32_t c
= setToBits(z
);
1804 errln((UnicodeString
)"FAILED: complement: " + x
+ " ^ " + y
+ " != " + z
);
1805 errln((UnicodeString
)"FAILED: complement: " + a
+ " ^ " + b
+ " != " + c
);
1807 checkCanonicalRep(z
, (UnicodeString
)"complement " + a
+ "," + b
);
1811 * Check that ranges are monotonically increasing and non-
1814 void UnicodeSetTest::checkCanonicalRep(const UnicodeSet
& set
, const UnicodeString
& msg
) {
1815 int32_t n
= set
.getRangeCount();
1817 errln((UnicodeString
)"FAIL result of " + msg
+
1818 ": range count should be >= 0 but is " +
1819 n
/*+ " for " + set.toPattern())*/);
1823 for (int32_t i
=0; i
<n
; ++i
) {
1824 UChar32 start
= set
.getRangeStart(i
);
1825 UChar32 end
= set
.getRangeEnd(i
);
1827 errln((UnicodeString
)"FAIL result of " + msg
+
1828 ": range " + (i
+1) +
1829 " start > end: " + (int)start
+ ", " + (int)end
+
1832 if (i
> 0 && start
<= last
) {
1833 errln((UnicodeString
)"FAIL result of " + msg
+
1834 ": range " + (i
+1) +
1835 " overlaps previous range: " + (int)start
+ ", " + (int)end
+
1843 * Convert a bitmask to a UnicodeSet.
1845 UnicodeSet
& UnicodeSetTest::bitsToSet(int32_t a
, UnicodeSet
& result
) {
1847 for (UChar32 i
= 0; i
< 32; ++i
) {
1848 if ((a
& (1<<i
)) != 0) {
1856 * Convert a UnicodeSet to a bitmask. Only the characters
1857 * U+0000 to U+0020 are represented in the bitmask.
1859 int32_t UnicodeSetTest::setToBits(const UnicodeSet
& x
) {
1861 for (int32_t i
= 0; i
< 32; ++i
) {
1862 if (x
.contains((UChar32
)i
)) {
1870 * Return the representation of an inversion list based UnicodeSet
1871 * as a pairs list. Ranges are listed in ascending Unicode order.
1872 * For example, the set [a-zA-M3] is represented as "33AMaz".
1874 UnicodeString
UnicodeSetTest::getPairs(const UnicodeSet
& set
) {
1875 UnicodeString pairs
;
1876 for (int32_t i
=0; i
<set
.getRangeCount(); ++i
) {
1877 UChar32 start
= set
.getRangeStart(i
);
1878 UChar32 end
= set
.getRangeEnd(i
);
1881 i
= set
.getRangeCount(); // Should be unnecessary
1883 pairs
.append((UChar
)start
).append((UChar
)end
);
1889 * Basic consistency check for a few items.
1890 * That the iterator works, and that we can create a pattern and
1891 * get the same thing back
1893 void UnicodeSetTest::checkRoundTrip(const UnicodeSet
& s
) {
1894 UErrorCode ec
= U_ZERO_ERROR
;
1897 checkEqual(s
, t
, "copy ct");
1900 checkEqual(s
, t
, "operator=");
1902 copyWithIterator(t
, s
, FALSE
);
1903 checkEqual(s
, t
, "iterator roundtrip");
1905 copyWithIterator(t
, s
, TRUE
); // try range
1906 checkEqual(s
, t
, "iterator roundtrip");
1908 UnicodeString pat
; s
.toPattern(pat
, FALSE
);
1909 t
.applyPattern(pat
, ec
);
1910 if (U_FAILURE(ec
)) {
1911 errln("FAIL: applyPattern");
1914 checkEqual(s
, t
, "toPattern(false)");
1917 s
.toPattern(pat
, TRUE
);
1918 t
.applyPattern(pat
, ec
);
1919 if (U_FAILURE(ec
)) {
1920 errln("FAIL: applyPattern");
1923 checkEqual(s
, t
, "toPattern(true)");
1927 void UnicodeSetTest::copyWithIterator(UnicodeSet
& t
, const UnicodeSet
& s
, UBool withRange
) {
1929 UnicodeSetIterator
it(s
);
1931 while (it
.nextRange()) {
1932 if (it
.isString()) {
1933 t
.add(it
.getString());
1935 t
.add(it
.getCodepoint(), it
.getCodepointEnd());
1940 if (it
.isString()) {
1941 t
.add(it
.getString());
1943 t
.add(it
.getCodepoint());
1949 UBool
UnicodeSetTest::checkEqual(const UnicodeSet
& s
, const UnicodeSet
& t
, const char* message
) {
1950 UnicodeString source
; s
.toPattern(source
, TRUE
);
1951 UnicodeString result
; t
.toPattern(result
, TRUE
);
1953 errln((UnicodeString
)"FAIL: " + message
1954 + "; source = " + source
1955 + "; result = " + result
1959 logln((UnicodeString
)"Ok: " + message
1960 + "; source = " + source
1961 + "; result = " + result
1968 UnicodeSetTest::expectContainment(const UnicodeString
& pat
,
1969 const UnicodeString
& charsIn
,
1970 const UnicodeString
& charsOut
) {
1971 UErrorCode ec
= U_ZERO_ERROR
;
1972 UnicodeSet
set(pat
, ec
);
1973 if (U_FAILURE(ec
)) {
1974 dataerrln((UnicodeString
)"FAIL: pattern \"" +
1975 pat
+ "\" => " + u_errorName(ec
));
1978 expectContainment(set
, pat
, charsIn
, charsOut
);
1982 UnicodeSetTest::expectContainment(const UnicodeSet
& set
,
1983 const UnicodeString
& charsIn
,
1984 const UnicodeString
& charsOut
) {
1987 expectContainment(set
, pat
, charsIn
, charsOut
);
1991 UnicodeSetTest::expectContainment(const UnicodeSet
& set
,
1992 const UnicodeString
& setName
,
1993 const UnicodeString
& charsIn
,
1994 const UnicodeString
& charsOut
) {
1999 for (i
=0; i
<charsIn
.length(); i
+=U16_LENGTH(c
)) {
2000 c
= charsIn
.char32At(i
);
2001 if (!set
.contains(c
)) {
2005 if (bad
.length() > 0) {
2006 errln((UnicodeString
)"Fail: set " + setName
+ " does not contain " + prettify(bad
) +
2007 ", expected containment of " + prettify(charsIn
));
2009 logln((UnicodeString
)"Ok: set " + setName
+ " contains " + prettify(charsIn
));
2013 for (i
=0; i
<charsOut
.length(); i
+=U16_LENGTH(c
)) {
2014 c
= charsOut
.char32At(i
);
2015 if (set
.contains(c
)) {
2019 if (bad
.length() > 0) {
2020 errln((UnicodeString
)"Fail: set " + setName
+ " contains " + prettify(bad
) +
2021 ", expected non-containment of " + prettify(charsOut
));
2023 logln((UnicodeString
)"Ok: set " + setName
+ " does not contain " + prettify(charsOut
));
2028 UnicodeSetTest::expectPattern(UnicodeSet
& set
,
2029 const UnicodeString
& pattern
,
2030 const UnicodeString
& expectedPairs
){
2031 UErrorCode status
= U_ZERO_ERROR
;
2032 set
.applyPattern(pattern
, status
);
2033 if (U_FAILURE(status
)) {
2034 errln(UnicodeString("FAIL: applyPattern(\"") + pattern
+
2038 if (getPairs(set
) != expectedPairs
) {
2039 errln(UnicodeString("FAIL: applyPattern(\"") + pattern
+
2041 escape(getPairs(set
)) + "\", expected \"" +
2042 escape(expectedPairs
) + "\"");
2044 logln(UnicodeString("Ok: applyPattern(\"") + pattern
+
2046 escape(getPairs(set
)) + "\"");
2049 // the result of calling set.toPattern(), which is the string representation of
2050 // this set(set), is passed to a UnicodeSet constructor, and tested that it
2051 // will produce another set that is equal to this one.
2052 UnicodeString temppattern
;
2053 set
.toPattern(temppattern
);
2054 UnicodeSet
*tempset
=new UnicodeSet(temppattern
, status
);
2055 if (U_FAILURE(status
)) {
2056 errln(UnicodeString("FAIL: applyPattern(\""+ pattern
+ "\").toPattern() => " + temppattern
+ " => invalid pattern"));
2059 if(*tempset
!= set
|| getPairs(*tempset
) != getPairs(set
)){
2060 errln(UnicodeString("FAIL: applyPattern(\""+ pattern
+ "\").toPattern() => " + temppattern
+ " => pairs \""+ escape(getPairs(*tempset
)) + "\", expected pairs \"" +
2061 escape(getPairs(set
)) + "\""));
2063 logln(UnicodeString("Ok: applyPattern(\""+ pattern
+ "\").toPattern() => " + temppattern
+ " => pairs \"" + escape(getPairs(*tempset
)) + "\""));
2071 UnicodeSetTest::expectPairs(const UnicodeSet
& set
, const UnicodeString
& expectedPairs
) {
2072 if (getPairs(set
) != expectedPairs
) {
2073 errln(UnicodeString("FAIL: Expected pair list \"") +
2074 escape(expectedPairs
) + "\", got \"" +
2075 escape(getPairs(set
)) + "\"");
2079 void UnicodeSetTest::expectToPattern(const UnicodeSet
& set
,
2080 const UnicodeString
& expPat
,
2081 const char** expStrings
) {
2083 set
.toPattern(pat
, TRUE
);
2084 if (pat
== expPat
) {
2085 logln((UnicodeString
)"Ok: toPattern() => \"" + pat
+ "\"");
2087 errln((UnicodeString
)"FAIL: toPattern() => \"" + pat
+ "\", expected \"" + expPat
+ "\"");
2090 if (expStrings
== NULL
) {
2094 for (int32_t i
=0; expStrings
[i
] != NULL
; ++i
) {
2095 if (expStrings
[i
] == NOT
) { // sic; pointer comparison
2099 UnicodeString s
= CharsToUnicodeString(expStrings
[i
]);
2100 UBool contained
= set
.contains(s
);
2101 if (contained
== in
) {
2102 logln((UnicodeString
)"Ok: " + expPat
+
2103 (contained
? " contains {" : " does not contain {") +
2104 escape(expStrings
[i
]) + "}");
2106 errln((UnicodeString
)"FAIL: " + expPat
+
2107 (contained
? " contains {" : " does not contain {") +
2108 escape(expStrings
[i
]) + "}");
2113 static UChar
toHexString(int32_t i
) { return (UChar
)(i
+ (i
< 10 ? 0x30 : (0x41 - 10))); }
2116 UnicodeSetTest::doAssert(UBool condition
, const char *message
)
2119 errln(UnicodeString("ERROR : ") + message
);
2124 UnicodeSetTest::escape(const UnicodeString
& s
) {
2126 for (int32_t i
=0; i
<s
.length(); )
2128 UChar32 c
= s
.char32At(i
);
2129 if (0x0020 <= c
&& c
<= 0x007F) {
2133 buf
+= (UChar
)0x5c; buf
+= (UChar
)0x75;
2135 buf
+= (UChar
)0x5c; buf
+= (UChar
)0x55;
2136 buf
+= toHexString((c
& 0xF0000000) >> 28);
2137 buf
+= toHexString((c
& 0x0F000000) >> 24);
2138 buf
+= toHexString((c
& 0x00F00000) >> 20);
2139 buf
+= toHexString((c
& 0x000F0000) >> 16);
2141 buf
+= toHexString((c
& 0xF000) >> 12);
2142 buf
+= toHexString((c
& 0x0F00) >> 8);
2143 buf
+= toHexString((c
& 0x00F0) >> 4);
2144 buf
+= toHexString(c
& 0x000F);
2151 void UnicodeSetTest::TestFreezable() {
2152 UErrorCode errorCode
=U_ZERO_ERROR
;
2153 UnicodeString idPattern
=UNICODE_STRING("[:ID_Continue:]", 15);
2154 UnicodeSet
idSet(idPattern
, errorCode
);
2155 if(U_FAILURE(errorCode
)) {
2156 dataerrln("FAIL: unable to create UnicodeSet([:ID_Continue:]) - %s", u_errorName(errorCode
));
2160 UnicodeString wsPattern
=UNICODE_STRING("[:White_Space:]", 15);
2161 UnicodeSet
wsSet(wsPattern
, errorCode
);
2162 if(U_FAILURE(errorCode
)) {
2163 dataerrln("FAIL: unable to create UnicodeSet([:White_Space:]) - %s", u_errorName(errorCode
));
2167 idSet
.add(idPattern
);
2168 UnicodeSet
frozen(idSet
);
2171 if(idSet
.isFrozen() || !frozen
.isFrozen()) {
2172 errln("FAIL: isFrozen() is wrong");
2174 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2175 errln("FAIL: a copy-constructed frozen set differs from its original");
2179 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2180 errln("FAIL: a frozen set was modified by operator=");
2183 UnicodeSet
frozen2(frozen
);
2184 if(frozen2
!=frozen
|| frozen2
!=idSet
) {
2185 errln("FAIL: a copied frozen set differs from its frozen original");
2187 if(!frozen2
.isFrozen()) {
2188 errln("FAIL: copy-constructing a frozen set results in a thawed one");
2190 UnicodeSet
frozen3(5, 55); // Set to some values to really test assignment below, not copy construction.
2191 if(frozen3
.contains(0, 4) || !frozen3
.contains(5, 55) || frozen3
.contains(56, 0x10ffff)) {
2192 errln("FAIL: UnicodeSet(5, 55) failed");
2195 if(!frozen3
.isFrozen()) {
2196 errln("FAIL: copying a frozen set results in a thawed one");
2199 UnicodeSet
*cloned
=(UnicodeSet
*)frozen
.clone();
2200 if(!cloned
->isFrozen() || *cloned
!=frozen
|| cloned
->containsSome(0xd802, 0xd805)) {
2201 errln("FAIL: clone() failed");
2203 cloned
->add(0xd802, 0xd805);
2204 if(cloned
->containsSome(0xd802, 0xd805)) {
2205 errln("FAIL: unable to modify clone");
2209 UnicodeSet
*thawed
=(UnicodeSet
*)frozen
.cloneAsThawed();
2210 if(thawed
->isFrozen() || *thawed
!=frozen
|| thawed
->containsSome(0xd802, 0xd805)) {
2211 errln("FAIL: cloneAsThawed() failed");
2213 thawed
->add(0xd802, 0xd805);
2214 if(!thawed
->contains(0xd802, 0xd805)) {
2215 errln("FAIL: unable to modify thawed clone");
2220 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2221 errln("FAIL: UnicodeSet::set() modified a frozen set");
2225 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2226 errln("FAIL: UnicodeSet::clear() modified a frozen set");
2229 frozen
.closeOver(USET_CASE_INSENSITIVE
);
2230 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2231 errln("FAIL: UnicodeSet::closeOver() modified a frozen set");
2235 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2236 errln("FAIL: UnicodeSet::compact() modified a frozen set");
2241 applyPattern(wsPattern
, errorCode
).
2242 applyPattern(wsPattern
, USET_IGNORE_SPACE
, NULL
, errorCode
).
2243 applyPattern(wsPattern
, pos
, USET_IGNORE_SPACE
, NULL
, errorCode
).
2244 applyIntPropertyValue(UCHAR_CANONICAL_COMBINING_CLASS
, 230, errorCode
).
2245 applyPropertyAlias(UNICODE_STRING_SIMPLE("Assigned"), UnicodeString(), errorCode
);
2246 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2247 errln("FAIL: UnicodeSet::applyXYZ() modified a frozen set");
2252 add(0xd802, 0xd805).
2256 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2257 errln("FAIL: UnicodeSet::addXYZ() modified a frozen set");
2263 retainAll(wsPattern
).
2265 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2266 errln("FAIL: UnicodeSet::retainXYZ() modified a frozen set");
2273 removeAll(idPattern
).
2275 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2276 errln("FAIL: UnicodeSet::removeXYZ() modified a frozen set");
2282 complement(0x64, 0x69).
2283 complement(idPattern
).
2284 complementAll(idPattern
).
2285 complementAll(idSet
);
2286 if(frozen
!=idSet
|| !(frozen
==idSet
)) {
2287 errln("FAIL: UnicodeSet::complementXYZ() modified a frozen set");
2291 // Test span() etc. -------------------------------------------------------- ***
2293 // Append the UTF-8 version of the string to t and return the appended UTF-8 length.
2295 appendUTF8(const UChar
*s
, int32_t length
, char *t
, int32_t capacity
) {
2296 UErrorCode errorCode
=U_ZERO_ERROR
;
2298 u_strToUTF8(t
, capacity
, &length8
, s
, length
, &errorCode
);
2299 if(U_SUCCESS(errorCode
)) {
2302 // The string contains an unpaired surrogate.
2303 // Ignore this string.
2308 class UnicodeSetWithStringsIterator
;
2310 // Make the strings in a UnicodeSet easily accessible.
2311 class UnicodeSetWithStrings
{
2313 UnicodeSetWithStrings(const UnicodeSet
&normalSet
) :
2314 set(normalSet
), stringsLength(0), hasSurrogates(FALSE
) {
2315 int32_t size
=set
.size();
2316 if(size
>0 && set
.charAt(size
-1)<0) {
2317 // If a set's last element is not a code point, then it must contain strings.
2318 // Iterate over the set, skip all code point ranges, and cache the strings.
2319 // Convert them to UTF-8 for spanUTF8().
2320 UnicodeSetIterator
iter(set
);
2321 const UnicodeString
*s
;
2323 int32_t length8
, utf8Count
=0;
2324 while(iter
.nextRange() && stringsLength
<LENGTHOF(strings
)) {
2325 if(iter
.isString()) {
2326 // Store the pointer to the set's string element
2327 // which we happen to know is a stable pointer.
2328 strings
[stringsLength
]=s
=&iter
.getString();
2330 utf8Lengths
[stringsLength
]=length8
=
2331 appendUTF8(s
->getBuffer(), s
->length(),
2332 s8
, (int32_t)(sizeof(utf8
)-utf8Count
));
2334 hasSurrogates
=TRUE
; // Contains unpaired surrogates.
2343 const UnicodeSet
&getSet() const {
2347 UBool
hasStrings() const {
2348 return (UBool
)(stringsLength
>0);
2351 UBool
hasStringsWithSurrogates() const {
2352 return hasSurrogates
;
2356 friend class UnicodeSetWithStringsIterator
;
2358 const UnicodeSet
&set
;
2360 const UnicodeString
*strings
[20];
2361 int32_t stringsLength
;
2362 UBool hasSurrogates
;
2365 int32_t utf8Lengths
[20];
2367 int32_t nextStringIndex
;
2368 int32_t nextUTF8Start
;
2371 class UnicodeSetWithStringsIterator
{
2373 UnicodeSetWithStringsIterator(const UnicodeSetWithStrings
&set
) :
2374 fSet(set
), nextStringIndex(0), nextUTF8Start(0) {
2378 nextStringIndex
=nextUTF8Start
=0;
2381 const UnicodeString
*nextString() {
2382 if(nextStringIndex
<fSet
.stringsLength
) {
2383 return fSet
.strings
[nextStringIndex
++];
2389 // Do not mix with calls to nextString().
2390 const char *nextUTF8(int32_t &length
) {
2391 if(nextStringIndex
<fSet
.stringsLength
) {
2392 const char *s8
=fSet
.utf8
+nextUTF8Start
;
2393 nextUTF8Start
+=length
=fSet
.utf8Lengths
[nextStringIndex
++];
2402 const UnicodeSetWithStrings
&fSet
;
2403 int32_t nextStringIndex
;
2404 int32_t nextUTF8Start
;
2407 // Compare 16-bit Unicode strings (which may be malformed UTF-16)
2408 // at code point boundaries.
2409 // That is, each edge of a match must not be in the middle of a surrogate pair.
2411 matches16CPB(const UChar
*s
, int32_t start
, int32_t limit
, const UnicodeString
&t
) {
2414 int32_t length
=t
.length();
2415 return 0==t
.compare(s
, length
) &&
2416 !(0<start
&& U16_IS_LEAD(s
[-1]) && U16_IS_TRAIL(s
[0])) &&
2417 !(length
<limit
&& U16_IS_LEAD(s
[length
-1]) && U16_IS_TRAIL(s
[length
]));
2420 // Implement span() with contains() for comparison.
2421 static int32_t containsSpanUTF16(const UnicodeSetWithStrings
&set
, const UChar
*s
, int32_t length
,
2422 USetSpanCondition spanCondition
) {
2423 const UnicodeSet
&realSet(set
.getSet());
2424 if(!set
.hasStrings()) {
2425 if(spanCondition
!=USET_SPAN_NOT_CONTAINED
) {
2426 spanCondition
=USET_SPAN_CONTAINED
; // Pin to 0/1 values.
2430 int32_t start
=0, prev
;
2431 while((prev
=start
)<length
) {
2432 U16_NEXT(s
, start
, length
, c
);
2433 if(realSet
.contains(c
)!=spanCondition
) {
2438 } else if(spanCondition
==USET_SPAN_NOT_CONTAINED
) {
2439 UnicodeSetWithStringsIterator
iter(set
);
2441 int32_t start
, next
;
2442 for(start
=next
=0; start
<length
;) {
2443 U16_NEXT(s
, next
, length
, c
);
2444 if(realSet
.contains(c
)) {
2447 const UnicodeString
*str
;
2449 while((str
=iter
.nextString())!=NULL
) {
2450 if(str
->length()<=(length
-start
) && matches16CPB(s
, start
, length
, *str
)) {
2451 // spanNeedsStrings=TRUE;
2458 } else /* USET_SPAN_CONTAINED or USET_SPAN_SIMPLE */ {
2459 UnicodeSetWithStringsIterator
iter(set
);
2461 int32_t start
, next
, maxSpanLimit
=0;
2462 for(start
=next
=0; start
<length
;) {
2463 U16_NEXT(s
, next
, length
, c
);
2464 if(!realSet
.contains(c
)) {
2465 next
=start
; // Do not span this single, not-contained code point.
2467 const UnicodeString
*str
;
2469 while((str
=iter
.nextString())!=NULL
) {
2470 if(str
->length()<=(length
-start
) && matches16CPB(s
, start
, length
, *str
)) {
2471 // spanNeedsStrings=TRUE;
2472 int32_t matchLimit
=start
+str
->length();
2473 if(matchLimit
==length
) {
2476 if(spanCondition
==USET_SPAN_CONTAINED
) {
2477 // Iterate for the shortest match at each position.
2478 // Recurse for each but the shortest match.
2480 next
=matchLimit
; // First match from start.
2482 if(matchLimit
<next
) {
2483 // Remember shortest match from start for iteration.
2488 // Recurse for non-shortest match from start.
2489 int32_t spanLength
=containsSpanUTF16(set
, s
+matchLimit
, length
-matchLimit
,
2490 USET_SPAN_CONTAINED
);
2491 if((matchLimit
+spanLength
)>maxSpanLimit
) {
2492 maxSpanLimit
=matchLimit
+spanLength
;
2493 if(maxSpanLimit
==length
) {
2498 } else /* spanCondition==USET_SPAN_SIMPLE */ {
2499 if(matchLimit
>next
) {
2500 // Remember longest match from start.
2507 break; // No match from start.
2511 if(start
>maxSpanLimit
) {
2514 return maxSpanLimit
;
2519 static int32_t containsSpanBackUTF16(const UnicodeSetWithStrings
&set
, const UChar
*s
, int32_t length
,
2520 USetSpanCondition spanCondition
) {
2524 const UnicodeSet
&realSet(set
.getSet());
2525 if(!set
.hasStrings()) {
2526 if(spanCondition
!=USET_SPAN_NOT_CONTAINED
) {
2527 spanCondition
=USET_SPAN_CONTAINED
; // Pin to 0/1 values.
2531 int32_t prev
=length
;
2533 U16_PREV(s
, 0, length
, c
);
2534 if(realSet
.contains(c
)!=spanCondition
) {
2537 } while((prev
=length
)>0);
2539 } else if(spanCondition
==USET_SPAN_NOT_CONTAINED
) {
2540 UnicodeSetWithStringsIterator
iter(set
);
2542 int32_t prev
=length
, length0
=length
;
2544 U16_PREV(s
, 0, length
, c
);
2545 if(realSet
.contains(c
)) {
2548 const UnicodeString
*str
;
2550 while((str
=iter
.nextString())!=NULL
) {
2551 if(str
->length()<=prev
&& matches16CPB(s
, prev
-str
->length(), length0
, *str
)) {
2552 // spanNeedsStrings=TRUE;
2556 } while((prev
=length
)>0);
2558 } else /* USET_SPAN_CONTAINED or USET_SPAN_SIMPLE */ {
2559 UnicodeSetWithStringsIterator
iter(set
);
2561 int32_t prev
=length
, minSpanStart
=length
, length0
=length
;
2563 U16_PREV(s
, 0, length
, c
);
2564 if(!realSet
.contains(c
)) {
2565 length
=prev
; // Do not span this single, not-contained code point.
2567 const UnicodeString
*str
;
2569 while((str
=iter
.nextString())!=NULL
) {
2570 if(str
->length()<=prev
&& matches16CPB(s
, prev
-str
->length(), length0
, *str
)) {
2571 // spanNeedsStrings=TRUE;
2572 int32_t matchStart
=prev
-str
->length();
2576 if(spanCondition
==USET_SPAN_CONTAINED
) {
2577 // Iterate for the shortest match at each position.
2578 // Recurse for each but the shortest match.
2580 length
=matchStart
; // First match from prev.
2582 if(matchStart
>length
) {
2583 // Remember shortest match from prev for iteration.
2584 int32_t temp
=length
;
2588 // Recurse for non-shortest match from prev.
2589 int32_t spanStart
=containsSpanBackUTF16(set
, s
, matchStart
,
2590 USET_SPAN_CONTAINED
);
2591 if(spanStart
<minSpanStart
) {
2592 minSpanStart
=spanStart
;
2593 if(minSpanStart
==0) {
2598 } else /* spanCondition==USET_SPAN_SIMPLE */ {
2599 if(matchStart
<length
) {
2600 // Remember longest match from prev.
2607 break; // No match from prev.
2609 } while((prev
=length
)>0);
2610 if(prev
<minSpanStart
) {
2613 return minSpanStart
;
2618 static int32_t containsSpanUTF8(const UnicodeSetWithStrings
&set
, const char *s
, int32_t length
,
2619 USetSpanCondition spanCondition
) {
2620 const UnicodeSet
&realSet(set
.getSet());
2621 if(!set
.hasStrings()) {
2622 if(spanCondition
!=USET_SPAN_NOT_CONTAINED
) {
2623 spanCondition
=USET_SPAN_CONTAINED
; // Pin to 0/1 values.
2627 int32_t start
=0, prev
;
2628 while((prev
=start
)<length
) {
2629 U8_NEXT_OR_FFFD(s
, start
, length
, c
);
2630 if(realSet
.contains(c
)!=spanCondition
) {
2635 } else if(spanCondition
==USET_SPAN_NOT_CONTAINED
) {
2636 UnicodeSetWithStringsIterator
iter(set
);
2638 int32_t start
, next
;
2639 for(start
=next
=0; start
<length
;) {
2640 U8_NEXT_OR_FFFD(s
, next
, length
, c
);
2641 if(realSet
.contains(c
)) {
2647 while((s8
=iter
.nextUTF8(length8
))!=NULL
) {
2648 if(length8
!=0 && length8
<=(length
-start
) && 0==memcmp(s
+start
, s8
, length8
)) {
2649 // spanNeedsStrings=TRUE;
2656 } else /* USET_SPAN_CONTAINED or USET_SPAN_SIMPLE */ {
2657 UnicodeSetWithStringsIterator
iter(set
);
2659 int32_t start
, next
, maxSpanLimit
=0;
2660 for(start
=next
=0; start
<length
;) {
2661 U8_NEXT_OR_FFFD(s
, next
, length
, c
);
2662 if(!realSet
.contains(c
)) {
2663 next
=start
; // Do not span this single, not-contained code point.
2668 while((s8
=iter
.nextUTF8(length8
))!=NULL
) {
2669 if(length8
!=0 && length8
<=(length
-start
) && 0==memcmp(s
+start
, s8
, length8
)) {
2670 // spanNeedsStrings=TRUE;
2671 int32_t matchLimit
=start
+length8
;
2672 if(matchLimit
==length
) {
2675 if(spanCondition
==USET_SPAN_CONTAINED
) {
2676 // Iterate for the shortest match at each position.
2677 // Recurse for each but the shortest match.
2679 next
=matchLimit
; // First match from start.
2681 if(matchLimit
<next
) {
2682 // Remember shortest match from start for iteration.
2687 // Recurse for non-shortest match from start.
2688 int32_t spanLength
=containsSpanUTF8(set
, s
+matchLimit
, length
-matchLimit
,
2689 USET_SPAN_CONTAINED
);
2690 if((matchLimit
+spanLength
)>maxSpanLimit
) {
2691 maxSpanLimit
=matchLimit
+spanLength
;
2692 if(maxSpanLimit
==length
) {
2697 } else /* spanCondition==USET_SPAN_SIMPLE */ {
2698 if(matchLimit
>next
) {
2699 // Remember longest match from start.
2706 break; // No match from start.
2710 if(start
>maxSpanLimit
) {
2713 return maxSpanLimit
;
2718 static int32_t containsSpanBackUTF8(const UnicodeSetWithStrings
&set
, const char *s
, int32_t length
,
2719 USetSpanCondition spanCondition
) {
2723 const UnicodeSet
&realSet(set
.getSet());
2724 if(!set
.hasStrings()) {
2725 if(spanCondition
!=USET_SPAN_NOT_CONTAINED
) {
2726 spanCondition
=USET_SPAN_CONTAINED
; // Pin to 0/1 values.
2730 int32_t prev
=length
;
2732 U8_PREV_OR_FFFD(s
, 0, length
, c
);
2733 if(realSet
.contains(c
)!=spanCondition
) {
2736 } while((prev
=length
)>0);
2738 } else if(spanCondition
==USET_SPAN_NOT_CONTAINED
) {
2739 UnicodeSetWithStringsIterator
iter(set
);
2741 int32_t prev
=length
;
2743 U8_PREV_OR_FFFD(s
, 0, length
, c
);
2744 if(realSet
.contains(c
)) {
2750 while((s8
=iter
.nextUTF8(length8
))!=NULL
) {
2751 if(length8
!=0 && length8
<=prev
&& 0==memcmp(s
+prev
-length8
, s8
, length8
)) {
2752 // spanNeedsStrings=TRUE;
2756 } while((prev
=length
)>0);
2758 } else /* USET_SPAN_CONTAINED or USET_SPAN_SIMPLE */ {
2759 UnicodeSetWithStringsIterator
iter(set
);
2761 int32_t prev
=length
, minSpanStart
=length
;
2763 U8_PREV_OR_FFFD(s
, 0, length
, c
);
2764 if(!realSet
.contains(c
)) {
2765 length
=prev
; // Do not span this single, not-contained code point.
2770 while((s8
=iter
.nextUTF8(length8
))!=NULL
) {
2771 if(length8
!=0 && length8
<=prev
&& 0==memcmp(s
+prev
-length8
, s8
, length8
)) {
2772 // spanNeedsStrings=TRUE;
2773 int32_t matchStart
=prev
-length8
;
2777 if(spanCondition
==USET_SPAN_CONTAINED
) {
2778 // Iterate for the shortest match at each position.
2779 // Recurse for each but the shortest match.
2781 length
=matchStart
; // First match from prev.
2783 if(matchStart
>length
) {
2784 // Remember shortest match from prev for iteration.
2785 int32_t temp
=length
;
2789 // Recurse for non-shortest match from prev.
2790 int32_t spanStart
=containsSpanBackUTF8(set
, s
, matchStart
,
2791 USET_SPAN_CONTAINED
);
2792 if(spanStart
<minSpanStart
) {
2793 minSpanStart
=spanStart
;
2794 if(minSpanStart
==0) {
2799 } else /* spanCondition==USET_SPAN_SIMPLE */ {
2800 if(matchStart
<length
) {
2801 // Remember longest match from prev.
2808 break; // No match from prev.
2810 } while((prev
=length
)>0);
2811 if(prev
<minSpanStart
) {
2814 return minSpanStart
;
2819 // spans to be performed and compared
2833 SPAN_CONTAINED
=0x100,
2835 SPAN_CONDITION
=0x300,
2840 static inline USetSpanCondition
invertSpanCondition(USetSpanCondition spanCondition
, USetSpanCondition contained
) {
2841 return spanCondition
== USET_SPAN_NOT_CONTAINED
? contained
: USET_SPAN_NOT_CONTAINED
;
2844 static inline int32_t slen(const void *s
, UBool isUTF16
) {
2845 return isUTF16
? u_strlen((const UChar
*)s
) : strlen((const char *)s
);
2849 * Count spans on a string with the method according to type and set the span limits.
2850 * The set may be the complement of the original.
2851 * When using spanBack() and comparing with span(), use a span condition for the first spanBack()
2852 * according to the expected number of spans.
2853 * Sets typeName to an empty string if there is no such type.
2854 * Returns -1 if the span option is filtered out.
2856 static int32_t getSpans(const UnicodeSetWithStrings
&set
, UBool isComplement
,
2857 const void *s
, int32_t length
, UBool isUTF16
,
2858 uint32_t whichSpans
,
2859 int type
, const char *&typeName
,
2860 int32_t limits
[], int32_t limitsCapacity
,
2861 int32_t expectCount
) {
2862 const UnicodeSet
&realSet(set
.getSet());
2863 int32_t start
, count
;
2864 USetSpanCondition spanCondition
, firstSpanCondition
, contained
;
2867 if(type
<0 || 7<type
) {
2872 static const char *const typeNames16
[]={
2873 "contains", "contains(LM)",
2875 "containsBack", "containsBack(LM)",
2876 "spanBack", "spanBack(LM)"
2879 static const char *const typeNames8
[]={
2880 "containsUTF8", "containsUTF8(LM)",
2881 "spanUTF8", "spanUTF8(LM)",
2882 "containsBackUTF8", "containsBackUTF8(LM)", // not implemented
2883 "spanBackUTF8", "spanBackUTF8(LM)"
2886 typeName
= isUTF16
? typeNames16
[type
] : typeNames8
[type
];
2888 // filter span options
2891 if((whichSpans
&SPAN_FWD
)==0) {
2897 if((whichSpans
&SPAN_BACK
)==0) {
2903 // use USET_SPAN_CONTAINED
2904 if((whichSpans
&SPAN_CONTAINED
)==0) {
2907 contained
=USET_SPAN_CONTAINED
;
2909 // use USET_SPAN_SIMPLE
2910 if((whichSpans
&SPAN_SIMPLE
)==0) {
2913 contained
=USET_SPAN_SIMPLE
;
2916 // Default first span condition for going forward with an uncomplemented set.
2917 spanCondition
=USET_SPAN_NOT_CONTAINED
;
2919 spanCondition
=invertSpanCondition(spanCondition
, contained
);
2922 // First span condition for span(), used to terminate the spanBack() iteration.
2923 firstSpanCondition
=spanCondition
;
2925 // spanBack(): Its initial span condition is span()'s last span condition,
2926 // which is the opposite of span()'s first span condition
2927 // if we expect an even number of spans.
2928 // (The loop inverts spanCondition (expectCount-1) times
2929 // before the expectCount'th span() call.)
2930 // If we do not compare forward and backward directions, then we do not have an
2931 // expectCount and just start with firstSpanCondition.
2932 if(!isForward
&& (whichSpans
&SPAN_FWD
)!=0 && (expectCount
&1)==0) {
2933 spanCondition
=invertSpanCondition(spanCondition
, contained
);
2942 length
=slen(s
, isUTF16
);
2945 start
+= isUTF16
? containsSpanUTF16(set
, (const UChar
*)s
+start
, length
-start
, spanCondition
) :
2946 containsSpanUTF8(set
, (const char *)s
+start
, length
-start
, spanCondition
);
2947 if(count
<limitsCapacity
) {
2948 limits
[count
]=start
;
2954 spanCondition
=invertSpanCondition(spanCondition
, contained
);
2961 start
+= isUTF16
? realSet
.span((const UChar
*)s
+start
, length
>=0 ? length
-start
: length
, spanCondition
) :
2962 realSet
.spanUTF8((const char *)s
+start
, length
>=0 ? length
-start
: length
, spanCondition
);
2963 if(count
<limitsCapacity
) {
2964 limits
[count
]=start
;
2967 if(length
>=0 ? start
>=length
:
2968 isUTF16
? ((const UChar
*)s
)[start
]==0 :
2969 ((const char *)s
)[start
]==0
2973 spanCondition
=invertSpanCondition(spanCondition
, contained
);
2979 length
=slen(s
, isUTF16
);
2983 if(count
<=limitsCapacity
) {
2984 limits
[limitsCapacity
-count
]=length
;
2986 length
= isUTF16
? containsSpanBackUTF16(set
, (const UChar
*)s
, length
, spanCondition
) :
2987 containsSpanBackUTF8(set
, (const char *)s
, length
, spanCondition
);
2988 if(length
==0 && spanCondition
==firstSpanCondition
) {
2991 spanCondition
=invertSpanCondition(spanCondition
, contained
);
2993 if(count
<limitsCapacity
) {
2994 memmove(limits
, limits
+(limitsCapacity
-count
), count
*4);
3001 if(count
<=limitsCapacity
) {
3002 limits
[limitsCapacity
-count
]= length
>=0 ? length
: slen(s
, isUTF16
);
3004 // Note: Length<0 is tested only for the first spanBack().
3005 // If we wanted to keep length<0 for all spanBack()s, we would have to
3006 // temporarily modify the string by placing a NUL where the previous spanBack() stopped.
3007 length
= isUTF16
? realSet
.spanBack((const UChar
*)s
, length
, spanCondition
) :
3008 realSet
.spanBackUTF8((const char *)s
, length
, spanCondition
);
3009 if(length
==0 && spanCondition
==firstSpanCondition
) {
3012 spanCondition
=invertSpanCondition(spanCondition
, contained
);
3014 if(count
<limitsCapacity
) {
3015 memmove(limits
, limits
+(limitsCapacity
-count
), count
*4);
3026 // sets to be tested; odd index=isComplement
3035 static const char *const setNames
[SET_COUNT
]={
3043 * Verify that we get the same results whether we look at text with contains(),
3044 * span() or spanBack(), using unfrozen or frozen versions of the set,
3045 * and using the set or its complement (switching the spanConditions accordingly).
3046 * The latter verifies that
3047 * set.span(spanCondition) == set.complement().span(!spanCondition).
3049 * The expectLimits[] are either provided by the caller (with expectCount>=0)
3050 * or returned to the caller (with an input expectCount<0).
3052 void UnicodeSetTest::testSpan(const UnicodeSetWithStrings
*sets
[4],
3053 const void *s
, int32_t length
, UBool isUTF16
,
3054 uint32_t whichSpans
,
3055 int32_t expectLimits
[], int32_t &expectCount
,
3056 const char *testName
, int32_t index
) {
3057 int32_t limits
[500];
3058 int32_t limitsCount
;
3061 const char *typeName
;
3064 for(i
=0; i
<SET_COUNT
; ++i
) {
3066 // Even-numbered sets are original, uncomplemented sets.
3067 if((whichSpans
&SPAN_SET
)==0) {
3071 // Odd-numbered sets are complemented.
3072 if((whichSpans
&SPAN_COMPLEMENT
)==0) {
3076 for(type
=0;; ++type
) {
3077 limitsCount
=getSpans(*sets
[i
], (UBool
)(i
&1),
3081 limits
, LENGTHOF(limits
), expectCount
);
3082 if(typeName
[0]==0) {
3083 break; // All types tried.
3086 continue; // Span option filtered out.
3089 expectCount
=limitsCount
;
3090 if(limitsCount
>LENGTHOF(limits
)) {
3091 errln("FAIL: %s[0x%lx].%s.%s span count=%ld > %ld capacity - too many spans",
3092 testName
, (long)index
, setNames
[i
], typeName
, (long)limitsCount
, (long)LENGTHOF(limits
));
3095 memcpy(expectLimits
, limits
, limitsCount
*4);
3096 } else if(limitsCount
!=expectCount
) {
3097 errln("FAIL: %s[0x%lx].%s.%s span count=%ld != %ld",
3098 testName
, (long)index
, setNames
[i
], typeName
, (long)limitsCount
, (long)expectCount
);
3100 for(j
=0; j
<limitsCount
; ++j
) {
3101 if(limits
[j
]!=expectLimits
[j
]) {
3102 errln("FAIL: %s[0x%lx].%s.%s span count=%ld limits[%d]=%ld != %ld",
3103 testName
, (long)index
, setNames
[i
], typeName
, (long)limitsCount
,
3104 j
, (long)limits
[j
], (long)expectLimits
[j
]);
3112 // Compare span() with containsAll()/containsNone(),
3113 // but only if we have expectLimits[] from the uncomplemented set.
3114 if(isUTF16
&& (whichSpans
&SPAN_SET
)!=0) {
3115 const UChar
*s16
=(const UChar
*)s
;
3116 UnicodeString string
;
3117 int32_t prev
=0, limit
, length
;
3118 for(i
=0; i
<expectCount
; ++i
) {
3119 limit
=expectLimits
[i
];
3122 string
.setTo(FALSE
, s16
+prev
, length
); // read-only alias
3124 if(!sets
[SLOW
]->getSet().containsAll(string
)) {
3125 errln("FAIL: %s[0x%lx].%s.containsAll(%ld..%ld)==FALSE contradicts span()",
3126 testName
, (long)index
, setNames
[SLOW
], (long)prev
, (long)limit
);
3129 if(!sets
[FAST
]->getSet().containsAll(string
)) {
3130 errln("FAIL: %s[0x%lx].%s.containsAll(%ld..%ld)==FALSE contradicts span()",
3131 testName
, (long)index
, setNames
[FAST
], (long)prev
, (long)limit
);
3135 if(!sets
[SLOW
]->getSet().containsNone(string
)) {
3136 errln("FAIL: %s[0x%lx].%s.containsNone(%ld..%ld)==FALSE contradicts span()",
3137 testName
, (long)index
, setNames
[SLOW
], (long)prev
, (long)limit
);
3140 if(!sets
[FAST
]->getSet().containsNone(string
)) {
3141 errln("FAIL: %s[0x%lx].%s.containsNone(%ld..%ld)==FALSE contradicts span()",
3142 testName
, (long)index
, setNames
[FAST
], (long)prev
, (long)limit
);
3152 // Specifically test either UTF-16 or UTF-8.
3153 void UnicodeSetTest::testSpan(const UnicodeSetWithStrings
*sets
[4],
3154 const void *s
, int32_t length
, UBool isUTF16
,
3155 uint32_t whichSpans
,
3156 const char *testName
, int32_t index
) {
3157 int32_t expectLimits
[500];
3158 int32_t expectCount
=-1;
3159 testSpan(sets
, s
, length
, isUTF16
, whichSpans
, expectLimits
, expectCount
, testName
, index
);
3162 UBool
stringContainsUnpairedSurrogate(const UChar
*s
, int32_t length
) {
3169 if(0xd800<=c
&& c
<0xe000) {
3170 if(c
>=0xdc00 || length
==0 || !U16_IS_TRAIL(c2
=*s
++)) {
3177 while((c
=*s
++)!=0) {
3178 if(0xd800<=c
&& c
<0xe000) {
3179 if(c
>=0xdc00 || !U16_IS_TRAIL(c2
=*s
++)) {
3188 // Test both UTF-16 and UTF-8 versions of span() etc. on the same sets and text,
3189 // unless either UTF is turned off in whichSpans.
3190 // Testing UTF-16 and UTF-8 together requires that surrogate code points
3191 // have the same contains(c) value as U+FFFD.
3192 void UnicodeSetTest::testSpanBothUTFs(const UnicodeSetWithStrings
*sets
[4],
3193 const UChar
*s16
, int32_t length16
,
3194 uint32_t whichSpans
,
3195 const char *testName
, int32_t index
) {
3196 int32_t expectLimits
[500];
3197 int32_t expectCount
;
3199 expectCount
=-1; // Get expectLimits[] from testSpan().
3201 if((whichSpans
&SPAN_UTF16
)!=0) {
3202 testSpan(sets
, s16
, length16
, TRUE
, whichSpans
, expectLimits
, expectCount
, testName
, index
);
3204 if((whichSpans
&SPAN_UTF8
)==0) {
3208 // Convert s16[] and expectLimits[] to UTF-8.
3210 int32_t offsets
[3000];
3212 const UChar
*s16Limit
=s16
+length16
;
3214 char *tLimit
=t
+sizeof(s8
);
3216 UErrorCode errorCode
=U_ZERO_ERROR
;
3218 // Convert with substitution: Turn unpaired surrogates into U+FFFD.
3219 ucnv_fromUnicode(openUTF8Converter(), &t
, tLimit
, &s16
, s16Limit
, o
, TRUE
, &errorCode
);
3220 if(U_FAILURE(errorCode
)) {
3221 errln("FAIL: %s[0x%lx] ucnv_fromUnicode(to UTF-8) fails with %s",
3222 testName
, (long)index
, u_errorName(errorCode
));
3223 ucnv_resetFromUnicode(utf8Cnv
);
3226 int32_t length8
=(int32_t)(t
-(char *)s8
);
3228 // Convert expectLimits[].
3229 int32_t i
, j
, expect
;
3230 for(i
=j
=0; i
<expectCount
; ++i
) {
3231 expect
=expectLimits
[i
];
3232 if(expect
==length16
) {
3233 expectLimits
[i
]=length8
;
3235 while(offsets
[j
]<expect
) {
3242 testSpan(sets
, s8
, length8
, FALSE
, whichSpans
, expectLimits
, expectCount
, testName
, index
);
3245 static UChar32
nextCodePoint(UChar32 c
) {
3246 // Skip some large and boring ranges.
3267 // Verify that all implementations represent the same set.
3268 void UnicodeSetTest::testSpanContents(const UnicodeSetWithStrings
*sets
[4], uint32_t whichSpans
, const char *testName
) {
3269 // contains(U+FFFD) is inconsistent with contains(some surrogates),
3270 // or the set contains strings with unpaired surrogates which don't translate to valid UTF-8:
3271 // Skip the UTF-8 part of the test - if the string contains surrogates -
3272 // because it is likely to produce a different result.
3273 UBool inconsistentSurrogates
=
3274 (!(sets
[0]->getSet().contains(0xfffd) ?
3275 sets
[0]->getSet().contains(0xd800, 0xdfff) :
3276 sets
[0]->getSet().containsNone(0xd800, 0xdfff)) ||
3277 sets
[0]->hasStringsWithSurrogates());
3281 uint32_t localWhichSpans
;
3284 for(first
=c
=0;; c
=nextCodePoint(c
)) {
3285 if(c
>0x10ffff || length
>(LENGTHOF(s
)-U16_MAX_LENGTH
)) {
3286 localWhichSpans
=whichSpans
;
3287 if(stringContainsUnpairedSurrogate(s
, length
) && inconsistentSurrogates
) {
3288 localWhichSpans
&=~SPAN_UTF8
;
3290 testSpanBothUTFs(sets
, s
, length
, localWhichSpans
, testName
, first
);
3297 U16_APPEND_UNSAFE(s
, length
, c
);
3301 // Test with a particular, interesting string.
3302 // Specify length and try NUL-termination.
3303 void UnicodeSetTest::testSpanUTF16String(const UnicodeSetWithStrings
*sets
[4], uint32_t whichSpans
, const char *testName
) {
3304 static const UChar s
[]={
3305 0x61, 0x62, 0x20, // Latin, space
3306 0x3b1, 0x3b2, 0x3b3, // Greek
3307 0xd900, // lead surrogate
3308 0x3000, 0x30ab, 0x30ad, // wide space, Katakana
3309 0xdc05, // trail surrogate
3310 0xa0, 0xac00, 0xd7a3, // nbsp, Hangul
3311 0xd900, 0xdc05, // unassigned supplementary
3312 0xd840, 0xdfff, 0xd860, 0xdffe, // Han supplementary
3313 0xd7a4, 0xdc05, 0xd900, 0x2028, // unassigned, surrogates in wrong order, LS
3317 if((whichSpans
&SPAN_UTF16
)==0) {
3320 testSpan(sets
, s
, -1, TRUE
, (whichSpans
&~SPAN_UTF8
), testName
, 0);
3321 testSpan(sets
, s
, LENGTHOF(s
)-1, TRUE
, (whichSpans
&~SPAN_UTF8
), testName
, 1);
3324 void UnicodeSetTest::testSpanUTF8String(const UnicodeSetWithStrings
*sets
[4], uint32_t whichSpans
, const char *testName
) {
3325 static const char s
[]={
3328 /* trail byte in lead position */
3333 /* truncated multi-byte sequences */
3345 "\xCE\xB1\xCE\xB2\xCE\xB3" // Greek
3347 /* trail byte in lead position */
3364 "\xE3\x80\x80\xE3\x82\xAB\xE3\x82\xAD" // wide space, Katakana
3366 /* trail byte in lead position */
3377 "\xC2\xA0\xEA\xB0\x80\xED\x9E\xA3" // nbsp, Hangul
3379 /* trail byte in lead position */
3385 "\xF1\x90\x80\x85" // unassigned supplementary
3387 /* trail byte in lead position */
3390 "\xfc\x80\x80\x80\x80"
3392 "\xF0\xA0\x8F\xBF\xF0\xA8\x8F\xBE" // Han supplementary
3394 /* trail byte in lead position */
3397 /* complete sequences but non-shortest forms or out of range etc. */
3403 "\xf8\x80\x80\x80\x80"
3404 "\xfc\x80\x80\x80\x80\x80"
3408 /* trail byte in lead position */
3411 "\xED\x9E\xA4\xE2\x80\xA8" // unassigned, LS, NUL-terminated
3414 if((whichSpans
&SPAN_UTF8
)==0) {
3417 testSpan(sets
, s
, -1, FALSE
, (whichSpans
&~SPAN_UTF16
), testName
, 0);
3418 testSpan(sets
, s
, LENGTHOF(s
)-1, FALSE
, (whichSpans
&~SPAN_UTF16
), testName
, 1);
3421 // Take a set of span options and multiply them so that
3422 // each portion only has one of the options a, b and c.
3423 // If b==0, then the set of options is just modified with mask and a.
3424 // If b!=0 and c==0, then the set of options is just modified with mask, a and b.
3426 addAlternative(uint32_t whichSpans
[], int32_t whichSpansCount
,
3427 uint32_t mask
, uint32_t a
, uint32_t b
, uint32_t c
) {
3431 for(i
=0; i
<whichSpansCount
; ++i
) {
3432 s
=whichSpans
[i
]&mask
;
3435 whichSpans
[whichSpansCount
+i
]=s
|b
;
3437 whichSpans
[2*whichSpansCount
+i
]=s
|c
;
3441 return b
==0 ? whichSpansCount
: c
==0 ? 2*whichSpansCount
: 3*whichSpansCount
;
3444 #define _63_a "aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa"
3445 #define _64_a "aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa"
3446 #define _63_b "bbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb"
3447 #define _64_b "bbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbbb"
3449 void UnicodeSetTest::TestSpan() {
3450 // "[...]" is a UnicodeSet pattern.
3451 // "*" performs tests on all Unicode code points and on a selection of
3452 // malformed UTF-8/16 strings.
3453 // "-options" limits the scope of testing for the current set.
3454 // By default, the test verifies that equivalent boundaries are found
3455 // for UTF-16 and UTF-8, going forward and backward,
3456 // alternating USET_SPAN_NOT_CONTAINED with
3457 // either USET_SPAN_CONTAINED or USET_SPAN_SIMPLE.
3458 // Single-character options:
3459 // 8 -- UTF-16 and UTF-8 boundaries may differ.
3460 // Cause: contains(U+FFFD) is inconsistent with contains(some surrogates),
3461 // or the set contains strings with unpaired surrogates
3462 // which do not translate to valid UTF-8.
3463 // c -- set.span() and set.complement().span() boundaries may differ.
3464 // Cause: Set strings are not complemented.
3465 // b -- span() and spanBack() boundaries may differ.
3466 // Cause: Strings in the set overlap, and spanBack(USET_SPAN_CONTAINED)
3467 // and spanBack(USET_SPAN_SIMPLE) are defined to
3468 // match with non-overlapping substrings.
3469 // For example, with a set containing "ab" and "ba",
3470 // span() of "aba" yields boundaries { 0, 2, 3 }
3471 // because the initial "ab" matches from 0 to 2,
3472 // while spanBack() yields boundaries { 0, 1, 3 }
3473 // because the final "ba" matches from 1 to 3.
3474 // l -- USET_SPAN_CONTAINED and USET_SPAN_SIMPLE boundaries may differ.
3475 // Cause: Strings in the set overlap, and a longer match may
3476 // require a sequence including non-longest substrings.
3477 // For example, with a set containing "ab", "abc" and "cd",
3478 // span(contained) of "abcd" spans the entire string
3479 // but span(longest match) only spans the first 3 characters.
3480 // Each "-options" first resets all options and then applies the specified options.
3481 // A "-" without options resets the options.
3482 // The options are also reset for each new set.
3483 // Other strings will be spanned.
3484 static const char *const testdata
[]={
3491 "[\\u0000-\\U0010FFFF]",
3493 "[\\u0000\\u0080\\u0800\\U00010000]",
3495 "[\\u007F\\u07FF\\uFFFF\\U0010FFFF]",
3497 "[[[:ID_Continue:]-[\\u30ab\\u30ad]]{\\u3000\\u30ab}{\\u3000\\u30ab\\u30ad}]",
3500 "[[[:ID_Continue:]-[\\u30ab\\u30ad]]{\\u30ab\\u30ad}{\\u3000\\u30ab\\u30ad}]",
3504 // Overlapping strings cause overlapping attempts to match.
3505 "[x{xy}{xya}{axy}{ax}]",
3508 // More repetitions of "xya" would take too long with the recursive
3509 // reference implementation.
3510 // containsAll()=FALSE
3513 "xyaxyaxyaxya" // set.complement().span(longest match) will stop here.
3514 "xx" // set.complement().span(contained) will stop between the two 'x'es.
3517 "xyaxyaxyaxya" // span() ends here.
3520 // containsAll()=TRUE
3531 "byayaxya", // span() -> { 4, 7, 8 } spanBack() -> { 5, 8 }
3533 "byayaxy", // span() -> { 4, 7 } complement.span() -> { 7 }
3534 "byayax", // span() -> { 4, 6 } complement.span() -> { 6 }
3536 "byaya", // span() -> { 5 }
3537 "byay", // span() -> { 4 }
3538 "bya", // span() -> { 3 }
3540 // span(longest match) will not span the whole string.
3550 // spanBack(longest match) will not span the whole string.
3559 // Test with non-ASCII set strings - test proper handling of surrogate pairs
3560 // and UTF-8 trail bytes.
3561 // Copies of above test sets and strings, but transliterated to have
3562 // different code points with similar trail units.
3563 // Previous: a b c d
3564 // Unicode: 042B 30AB 200AB 204AB
3565 // UTF-16: 042B 30AB D840 DCAB D841 DCAB
3566 // UTF-8: D0 AB E3 82 AB F0 A0 82 AB F0 A0 92 AB
3567 "[\\u042B{\\u042B\\u30AB}{\\u042B\\u30AB\\U000200AB}{\\U000200AB\\U000204AB}]",
3569 "\\u042B\\U000200AB\\U000204AB\\u042B\\u30AB\\U000200AB\\U000204AB\\u042B\\u30AB\\U000200AB\\U000200AB\\U000204AB",
3571 "[\\U000204AB{\\U000200AB\\U000204AB}{\\u30AB\\U000200AB\\U000204AB}{\\u042B\\u30AB}]",
3573 "\\u042B\\u30AB\\u30AB\\U000200AB\\U000204AB\\u042B\\u30AB\\U000200AB\\U000204AB\\u042B\\u30AB\\U000204AB",
3575 // Stress bookkeeping and recursion.
3576 // The following strings are barely doable with the recursive
3577 // reference implementation.
3578 // The not-contained character at the end prevents an early exit from the span().
3582 "bbbbbbbbbbbbbbbbbbbbbbbb-",
3583 // On complement sets, span() and spanBack() get different results
3584 // because b is not in the complement set and there is an odd number of b's
3585 // in the test string.
3587 "bbbbbbbbbbbbbbbbbbbbbbbbb-",
3589 // Test with set strings with an initial or final code point span
3591 "[a{" _64_a _64_a _64_a _64_a
"b}"
3592 "{a" _64_b _64_b _64_b _64_b
"}]",
3594 _64_a _64_a _64_a _63_a
"b",
3595 _64_a _64_a _64_a _64_a
"b",
3596 _64_a _64_a _64_a _64_a
"aaaabbbb",
3597 "a" _64_b _64_b _64_b _63_b
,
3598 "a" _64_b _64_b _64_b _64_b
,
3599 "aaaabbbb" _64_b _64_b _64_b _64_b
,
3601 // Test with strings containing unpaired surrogates.
3602 // They are not representable in UTF-8, and a leading trail surrogate
3603 // and a trailing lead surrogate must not match in the middle of a proper surrogate pair.
3604 // U+20001 == \\uD840\\uDC01
3605 // U+20400 == \\uD841\\uDC00
3606 "[a\\U00020001\\U00020400{ab}{b\\uD840}{\\uDC00a}]",
3608 "aaab\\U00020001ba\\U00020400aba\\uD840ab\\uD840\\U00020000b\\U00020000a\\U00020000\\uDC00a\\uDC00babbb"
3610 uint32_t whichSpans
[96]={ SPAN_ALL
};
3611 int32_t whichSpansCount
=1;
3613 UnicodeSet
*sets
[SET_COUNT
]={ NULL
};
3614 const UnicodeSetWithStrings
*sets_with_str
[SET_COUNT
]={ NULL
};
3616 char testName
[1024];
3617 char *testNameLimit
=testName
;
3620 for(i
=0; i
<LENGTHOF(testdata
); ++i
) {
3621 const char *s
=testdata
[i
];
3623 // Create new test sets from this pattern.
3624 for(j
=0; j
<SET_COUNT
; ++j
) {
3625 delete sets_with_str
[j
];
3628 UErrorCode errorCode
=U_ZERO_ERROR
;
3629 sets
[SLOW
]=new UnicodeSet(UnicodeString(s
, -1, US_INV
).unescape(), errorCode
);
3630 if(U_FAILURE(errorCode
)) {
3631 dataerrln("FAIL: Unable to create UnicodeSet(%s) - %s", s
, u_errorName(errorCode
));
3634 sets
[SLOW_NOT
]=new UnicodeSet(*sets
[SLOW
]);
3635 sets
[SLOW_NOT
]->complement();
3636 // Intermediate set: Test cloning of a frozen set.
3637 UnicodeSet
*fast
=new UnicodeSet(*sets
[SLOW
]);
3639 sets
[FAST
]=(UnicodeSet
*)fast
->clone();
3641 UnicodeSet
*fastNot
=new UnicodeSet(*sets
[SLOW_NOT
]);
3643 sets
[FAST_NOT
]=(UnicodeSet
*)fastNot
->clone();
3646 for(j
=0; j
<SET_COUNT
; ++j
) {
3647 sets_with_str
[j
]=new UnicodeSetWithStrings(*sets
[j
]);
3650 strcpy(testName
, s
);
3651 testNameLimit
=strchr(testName
, 0);
3652 *testNameLimit
++=':';
3655 whichSpans
[0]=SPAN_ALL
;
3657 } else if(s
[0]=='-') {
3658 whichSpans
[0]=SPAN_ALL
;
3664 whichSpansCount
=addAlternative(whichSpans
, whichSpansCount
,
3671 whichSpansCount
=addAlternative(whichSpans
, whichSpansCount
,
3678 // test USET_SPAN_CONTAINED FWD & BACK, and separately
3679 // USET_SPAN_SIMPLE only FWD, and separately
3680 // USET_SPAN_SIMPLE only BACK
3681 whichSpansCount
=addAlternative(whichSpans
, whichSpansCount
,
3682 ~(SPAN_DIRS
|SPAN_CONDITION
),
3683 SPAN_DIRS
|SPAN_CONTAINED
,
3684 SPAN_FWD
|SPAN_SIMPLE
,
3685 SPAN_BACK
|SPAN_SIMPLE
);
3688 whichSpansCount
=addAlternative(whichSpans
, whichSpansCount
,
3695 errln("FAIL: unrecognized span set option in \"%s\"", testdata
[i
]);
3699 } else if(0==strcmp(s
, "*")) {
3700 strcpy(testNameLimit
, "bad_string");
3701 for(j
=0; j
<whichSpansCount
; ++j
) {
3702 if(whichSpansCount
>1) {
3703 sprintf(testNameLimit
+10 /* strlen("bad_string") */,
3707 testSpanUTF16String(sets_with_str
, whichSpans
[j
], testName
);
3708 testSpanUTF8String(sets_with_str
, whichSpans
[j
], testName
);
3711 strcpy(testNameLimit
, "contents");
3712 for(j
=0; j
<whichSpansCount
; ++j
) {
3713 if(whichSpansCount
>1) {
3714 sprintf(testNameLimit
+8 /* strlen("contents") */,
3718 testSpanContents(sets_with_str
, whichSpans
[j
], testName
);
3721 UnicodeString string
=UnicodeString(s
, -1, US_INV
).unescape();
3722 strcpy(testNameLimit
, "test_string");
3723 for(j
=0; j
<whichSpansCount
; ++j
) {
3724 if(whichSpansCount
>1) {
3725 sprintf(testNameLimit
+11 /* strlen("test_string") */,
3729 testSpanBothUTFs(sets_with_str
, string
.getBuffer(), string
.length(), whichSpans
[j
], testName
, i
);
3733 for(j
=0; j
<SET_COUNT
; ++j
) {
3734 delete sets_with_str
[j
];
3739 // Test select patterns and strings, and test USET_SPAN_SIMPLE.
3740 void UnicodeSetTest::TestStringSpan() {
3741 static const char *pattern
="[x{xy}{xya}{axy}{ax}]";
3742 static const char *const string
=
3744 "xyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxya"
3746 "xyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxya"
3748 "xyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxyaxy"
3751 UErrorCode errorCode
=U_ZERO_ERROR
;
3752 UnicodeString pattern16
=UnicodeString(pattern
, -1, US_INV
);
3753 UnicodeSet
set(pattern16
, errorCode
);
3754 if(U_FAILURE(errorCode
)) {
3755 errln("FAIL: Unable to create UnicodeSet(%s) - %s", pattern
, u_errorName(errorCode
));
3759 UnicodeString string16
=UnicodeString(string
, -1, US_INV
).unescape();
3761 if(set
.containsAll(string16
)) {
3762 errln("FAIL: UnicodeSet(%s).containsAll(%s) should be FALSE", pattern
, string
);
3765 // Remove trailing "aaaa".
3766 string16
.truncate(string16
.length()-4);
3767 if(!set
.containsAll(string16
)) {
3768 errln("FAIL: UnicodeSet(%s).containsAll(%s[:-4]) should be TRUE", pattern
, string
);
3771 string16
=UNICODE_STRING_SIMPLE("byayaxya");
3772 const UChar
*s16
=string16
.getBuffer();
3773 int32_t length16
=string16
.length();
3774 if( set
.span(s16
, 8, USET_SPAN_NOT_CONTAINED
)!=4 ||
3775 set
.span(s16
, 7, USET_SPAN_NOT_CONTAINED
)!=4 ||
3776 set
.span(s16
, 6, USET_SPAN_NOT_CONTAINED
)!=4 ||
3777 set
.span(s16
, 5, USET_SPAN_NOT_CONTAINED
)!=5 ||
3778 set
.span(s16
, 4, USET_SPAN_NOT_CONTAINED
)!=4 ||
3779 set
.span(s16
, 3, USET_SPAN_NOT_CONTAINED
)!=3
3781 errln("FAIL: UnicodeSet(%s).span(while not) returns the wrong value", pattern
);
3784 pattern
="[a{ab}{abc}{cd}]";
3785 pattern16
=UnicodeString(pattern
, -1, US_INV
);
3786 set
.applyPattern(pattern16
, errorCode
);
3787 if(U_FAILURE(errorCode
)) {
3788 errln("FAIL: Unable to create UnicodeSet(%s) - %s", pattern
, u_errorName(errorCode
));
3791 string16
=UNICODE_STRING_SIMPLE("acdabcdabccd");
3792 s16
=string16
.getBuffer();
3793 length16
=string16
.length();
3794 if( set
.span(s16
, 12, USET_SPAN_CONTAINED
)!=12 ||
3795 set
.span(s16
, 12, USET_SPAN_SIMPLE
)!=6 ||
3796 set
.span(s16
+7, 5, USET_SPAN_SIMPLE
)!=5
3798 errln("FAIL: UnicodeSet(%s).span(while longest match) returns the wrong value", pattern
);
3801 pattern
="[d{cd}{bcd}{ab}]";
3802 pattern16
=UnicodeString(pattern
, -1, US_INV
);
3803 set
.applyPattern(pattern16
, errorCode
).freeze();
3804 if(U_FAILURE(errorCode
)) {
3805 errln("FAIL: Unable to create UnicodeSet(%s) - %s", pattern
, u_errorName(errorCode
));
3808 string16
=UNICODE_STRING_SIMPLE("abbcdabcdabd");
3809 s16
=string16
.getBuffer();
3810 length16
=string16
.length();
3811 if( set
.spanBack(s16
, 12, USET_SPAN_CONTAINED
)!=0 ||
3812 set
.spanBack(s16
, 12, USET_SPAN_SIMPLE
)!=6 ||
3813 set
.spanBack(s16
, 5, USET_SPAN_SIMPLE
)!=0
3815 errln("FAIL: UnicodeSet(%s).spanBack(while longest match) returns the wrong value", pattern
);