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1/********************************************************************
2 * COPYRIGHT:
3 * Copyright (c) 1997-2004, International Business Machines Corporation and
4 * others. All Rights Reserved.
5 ********************************************************************/
6/********************************************************************************
7*
8* File CBIAPTS.C
9*
10* Modification History:
11* Name Description
12* Madhu Katragadda Creation
13*********************************************************************************/
14/*C API TEST FOR BREAKITERATOR */
15/**
16* This is an API test. It doesn't test very many cases, and doesn't
17* try to test the full functionality. It just calls each function in the class and
18* verifies that it works on a basic level.
19**/
20
21#include "unicode/utypes.h"
22
23#if !UCONFIG_NO_BREAK_ITERATION
24
25#include <stdlib.h>
26#include <string.h>
27#include "unicode/uloc.h"
28#include "unicode/ubrk.h"
29#include "unicode/ustring.h"
30#include "unicode/ucnv.h"
31#include "cintltst.h"
32#include "cbiapts.h"
33
34#define TEST_ASSET_SUCCESS(status) {if (U_FAILURE(status)) { \
35log_err("Failure at file %s, line %d, error = %s\n", __FILE__, __LINE__, u_errorName(status));}}
36
37#define TEST_ASSERT(expr) {if ((expr)==FALSE) { \
38log_err("Test Failure at file %s, line %d\n", __FILE__, __LINE__);}}
39
40static void TestBreakIteratorSafeClone(void);
41static void TestBreakIteratorRules(void);
42static void TestBreakIteratorRuleError(void);
43static void TestBreakIteratorStatusVec(void);
44
45void addBrkIterAPITest(TestNode** root);
46
47void addBrkIterAPITest(TestNode** root)
48{
49 addTest(root, &TestBreakIteratorCAPI, "tstxtbd/cbiapts/TestBreakIteratorCAPI");
50 addTest(root, &TestBreakIteratorSafeClone, "tstxtbd/cbiapts/TestBreakIteratorSafeClone");
51 addTest(root, &TestBreakIteratorRules, "tstxtbd/cbiapts/TestBreakIteratorRules");
52 addTest(root, &TestBreakIteratorRuleError, "tstxtbd/cbiapts/TestBreakIteratorRuleError");
53 addTest(root, &TestBreakIteratorStatusVec, "tstxtbd/cbiapts/TestBreakIteratorStatusVec");
54}
55
56#define CLONETEST_ITERATOR_COUNT 2
57
58/*
59 * Utility function for converting char * to UChar * strings, to
60 * simplify the test code. Converted strings are put in heap allocated
61 * storage. A hook (probably a local in the caller's code) allows all
62 * strings converted with that hook to be freed with a single call.
63 */
64typedef struct StringStruct {
65 struct StringStruct *link;
66 UChar str[1];
67 } StringStruct;
68
69
70static UChar* toUChar(const char *src, void **freeHook) {
71 /* Structure of the memory that we allocate on the heap */
72
73 int32_t numUChars;
74 int32_t destSize;
75 UChar stackBuf[2000 + sizeof(void *)/sizeof(UChar)];
76 StringStruct *dest;
77 UConverter *cnv;
78
79 UErrorCode status = U_ZERO_ERROR;
80 if (src == NULL) {
81 return NULL;
82 };
83
84 cnv = ucnv_open(NULL, &status);
85 if(U_FAILURE(status) || cnv == NULL) {
86 return NULL;
87 }
88 ucnv_reset(cnv);
89 numUChars = ucnv_toUChars(cnv,
90 stackBuf,
91 2000,
92 src, -1,
93 &status);
94
95 destSize = (numUChars+1) * sizeof(UChar) + sizeof(struct StringStruct);
96 dest = (StringStruct *)malloc(destSize);
97 if (dest != NULL) {
98 if (status == U_BUFFER_OVERFLOW_ERROR || status == U_STRING_NOT_TERMINATED_WARNING) {
99 ucnv_toUChars(cnv, dest->str, numUChars+1, src, -1, &status);
100 } else if (status == U_ZERO_ERROR) {
101 u_strcpy(dest->str, stackBuf);
102 } else {
103 free(dest);
104 dest = NULL;
105 }
106 }
107
108 ucnv_reset(cnv); /* be good citizens */
109 ucnv_close(cnv);
110 if (dest == NULL) {
111 return NULL;
112 }
113
114 dest->link = (StringStruct*)(*freeHook);
115 *freeHook = dest;
116 return dest->str;
117}
118
119static void freeToUCharStrings(void **hook) {
120 StringStruct *s = *(StringStruct **)hook;
121 while (s != NULL) {
122 StringStruct *next = s->link;
123 free(s);
124 s = next;
125 }
126}
127
128
129static void TestBreakIteratorCAPI()
130{
131 UErrorCode status = U_ZERO_ERROR;
132 UBreakIterator *word, *sentence, *line, *character, *b, *bogus;
133 int32_t start,pos,end,to;
134 int32_t i;
135 int32_t count = 0;
136
137 UChar text[50];
138
139 /* Note: the adjacent "" are concatenating strings, not adding a \" to the
140 string, which is probably what whoever wrote this intended. Don't fix,
141 because it would throw off the hard coded break positions in the following
142 tests. */
143 u_uastrcpy(text, "He's from Africa. ""Mr. Livingston, I presume?"" Yeah");
144
145
146/*test ubrk_open()*/
147 log_verbose("\nTesting BreakIterator open functions\n");
148
149 /* Use french for fun */
150 word = ubrk_open(UBRK_WORD, "en_US", text, u_strlen(text), &status);
151 if(status == U_FILE_ACCESS_ERROR) {
152 log_data_err("Check your data - it doesn't seem to be around\n");
153 return;
154 } else if(U_FAILURE(status)){
155 log_err("FAIL: Error in ubrk_open() for word breakiterator: %s\n", myErrorName(status));
156 }
157 else{
158 log_verbose("PASS: Successfully opened word breakiterator\n");
159 }
160
161 sentence = ubrk_open(UBRK_SENTENCE, "en_US", text, u_strlen(text), &status);
162 if(U_FAILURE(status)){
163 log_err("FAIL: Error in ubrk_open() for sentence breakiterator: %s\n", myErrorName(status));
164 return;
165 }
166 else{
167 log_verbose("PASS: Successfully opened sentence breakiterator\n");
168 }
169
170 line = ubrk_open(UBRK_LINE, "en_US", text, u_strlen(text), &status);
171 if(U_FAILURE(status)){
172 log_err("FAIL: Error in ubrk_open() for line breakiterator: %s\n", myErrorName(status));
173 return;
174 }
175 else{
176 log_verbose("PASS: Successfully opened line breakiterator\n");
177 }
178
179 character = ubrk_open(UBRK_CHARACTER, "en_US", text, u_strlen(text), &status);
180 if(U_FAILURE(status)){
181 log_err("FAIL: Error in ubrk_open() for character breakiterator: %s\n", myErrorName(status));
182 return;
183 }
184 else{
185 log_verbose("PASS: Successfully opened character breakiterator\n");
186 }
187 /*trying to open an illegal iterator*/
188 bogus = ubrk_open((UBreakIteratorType)5, "en_US", text, u_strlen(text), &status);
189 if(U_SUCCESS(status)){
190 log_err("FAIL: Error in ubrk_open() for BOGUS breakiterator. Expected U_MEMORY_ALLOCATION_ERROR\n");
191 }
192 if(U_FAILURE(status)){
193 if(status != U_MEMORY_ALLOCATION_ERROR){
194 log_err("FAIL: Error in ubrk_open() for BOGUS breakiterator. Expected U_MEMORY_ALLOCATION_ERROR\n Got %s\n", myErrorName(status));
195 }
196 }
197 status=U_ZERO_ERROR;
198
199
200/* ======= Test ubrk_countAvialable() and ubrk_getAvialable() */
201
202 log_verbose("\nTesting ubrk_countAvailable() and ubrk_getAvailable()\n");
203 count=ubrk_countAvailable();
204 /* use something sensible w/o hardcoding the count */
205 if(count < 0){
206 log_err("FAIL: Error in ubrk_countAvialable() returned %d\n", count);
207 }
208 else{
209 log_verbose("PASS: ubrk_countAvialable() successful returned %d\n", count);
210 }
211 for(i=0;i<count;i++)
212 {
213 log_verbose("%s\n", ubrk_getAvailable(i));
214 if (ubrk_getAvailable(i) == 0)
215 log_err("No locale for which breakiterator is applicable\n");
216 else
217 log_verbose("A locale %s for which breakiterator is applicable\n",ubrk_getAvailable(i));
218 }
219
220/*========Test ubrk_first(), ubrk_last()...... and other functions*/
221
222 log_verbose("\nTesting the functions for word\n");
223 start = ubrk_first(word);
224 if(start!=0)
225 log_err("error ubrk_start(word) did not return 0\n");
226 log_verbose("first (word = %d\n", (int32_t)start);
227 pos=ubrk_next(word);
228 if(pos!=4)
229 log_err("error ubrk_next(word) did not return 4\n");
230 log_verbose("next (word = %d\n", (int32_t)pos);
231 pos=ubrk_following(word, 4);
232 if(pos!=5)
233 log_err("error ubrl_following(word,4) did not return 6\n");
234 log_verbose("next (word = %d\n", (int32_t)pos);
235 end=ubrk_last(word);
236 if(end!=49)
237 log_err("error ubrk_last(word) did not return 49\n");
238 log_verbose("last (word = %d\n", (int32_t)end);
239
240 pos=ubrk_previous(word);
241 log_verbose("%d %d\n", end, pos);
242
243 pos=ubrk_previous(word);
244 log_verbose("%d \n", pos);
245
246 if (ubrk_isBoundary(word, 2) != FALSE) {
247 log_err("error ubrk_isBoundary(word, 2) did not return FALSE\n");
248 }
249 pos=ubrk_current(word);
250 if (pos != 4) {
251 log_err("error ubrk_current() != 4 after ubrk_isBoundary(word, 2)\n");
252 }
253 if (ubrk_isBoundary(word, 4) != TRUE) {
254 log_err("error ubrk_isBoundary(word, 4) did not return TRUE\n");
255 }
256
257
258
259 log_verbose("\nTesting the functions for character\n");
260 ubrk_first(character);
261 pos = ubrk_following(character, 5);
262 if(pos!=6)
263 log_err("error ubrk_following(character,5) did not return 6\n");
264 log_verbose("Following (character,5) = %d\n", (int32_t)pos);
265 pos=ubrk_following(character, 18);
266 if(pos!=19)
267 log_err("error ubrk_following(character,18) did not return 19\n");
268 log_verbose("Followingcharacter,18) = %d\n", (int32_t)pos);
269 pos=ubrk_preceding(character, 22);
270 if(pos!=21)
271 log_err("error ubrk_preceding(character,22) did not return 21\n");
272 log_verbose("preceding(character,22) = %d\n", (int32_t)pos);
273
274
275 log_verbose("\nTesting the functions for line\n");
276 pos=ubrk_first(line);
277 if(pos != 0)
278 log_err("error ubrk_first(line) returned %d, expected 0\n", (int32_t)pos);
279 pos = ubrk_next(line);
280 pos=ubrk_following(line, 18);
281 if(pos!=22)
282 log_err("error ubrk_following(line) did not return 22\n");
283 log_verbose("following (line) = %d\n", (int32_t)pos);
284
285
286 log_verbose("\nTesting the functions for sentence\n");
287 ubrk_first(sentence);
288 pos = ubrk_current(sentence);
289 log_verbose("Current(sentence) = %d\n", (int32_t)pos);
290 pos = ubrk_last(sentence);
291 if(pos!=49)
292 log_err("error ubrk_last for sentence did not return 49\n");
293 log_verbose("Last (sentence) = %d\n", (int32_t)pos);
294 ubrk_first(sentence);
295 to = ubrk_following( sentence, 0 );
296 if (to == 0) log_err("ubrk_following returned 0\n");
297 to = ubrk_preceding( sentence, to );
298 if (to != 0) log_err("ubrk_preceding didn't return 0\n");
299 if (ubrk_first(sentence)!=ubrk_current(sentence)) {
300 log_err("error in ubrk_first() or ubrk_current()\n");
301 }
302
303
304 /*---- */
305/*Testing ubrk_open and ubrk_close()*/
306 log_verbose("\nTesting open and close for us locale\n");
307 b = ubrk_open(UBRK_WORD, "fr_FR", text, u_strlen(text), &status);
308 if (U_FAILURE(status)) {
309 log_err("ubrk_open for word returned NULL: %s\n", myErrorName(status));
310 }
311 ubrk_close(b);
312
313 ubrk_close(word);
314 ubrk_close(sentence);
315 ubrk_close(line);
316 ubrk_close(character);
317}
318
319static void TestBreakIteratorSafeClone(void)
320{
321 UChar text[51]; /* Keep this odd to test for 64-bit memory alignment */
322 /* NOTE: This doesn't reliably force mis-alignment of following items. */
323 uint8_t buffer [CLONETEST_ITERATOR_COUNT] [U_BRK_SAFECLONE_BUFFERSIZE];
324 int32_t bufferSize = U_BRK_SAFECLONE_BUFFERSIZE;
325
326 UBreakIterator * someIterators [CLONETEST_ITERATOR_COUNT];
327 UBreakIterator * someClonedIterators [CLONETEST_ITERATOR_COUNT];
328
329 UBreakIterator * brk;
330 UErrorCode status = U_ZERO_ERROR;
331 int32_t start,pos;
332 int32_t i;
333
334 /*Testing ubrk_safeClone */
335
336 /* Note: the adjacent "" are concatenating strings, not adding a \" to the
337 string, which is probably what whoever wrote this intended. Don't fix,
338 because it would throw off the hard coded break positions in the following
339 tests. */
340 u_uastrcpy(text, "He's from Africa. ""Mr. Livingston, I presume?"" Yeah");
341
342 /* US & Thai - rule-based & dictionary based */
343 someIterators[0] = ubrk_open(UBRK_WORD, "en_US", text, u_strlen(text), &status);
344 if(!someIterators[0] || U_FAILURE(status)) {
345 log_data_err("Couldn't open en_US word break iterator - %s\n", u_errorName(status));
346 return;
347 }
348
349 someIterators[1] = ubrk_open(UBRK_WORD, "th_TH", text, u_strlen(text), &status);
350 if(!someIterators[1] || U_FAILURE(status)) {
351 log_data_err("Couldn't open th_TH word break iterator - %s\n", u_errorName(status));
352 return;
353 }
354
355 /* test each type of iterator */
356 for (i = 0; i < CLONETEST_ITERATOR_COUNT; i++)
357 {
358
359 /* Check the various error & informational states */
360
361 /* Null status - just returns NULL */
362 if (0 != ubrk_safeClone(someIterators[i], buffer[i], &bufferSize, 0))
363 {
364 log_err("FAIL: Cloned Iterator failed to deal correctly with null status\n");
365 }
366 /* error status - should return 0 & keep error the same */
367 status = U_MEMORY_ALLOCATION_ERROR;
368 if (0 != ubrk_safeClone(someIterators[i], buffer[i], &bufferSize, &status) || status != U_MEMORY_ALLOCATION_ERROR)
369 {
370 log_err("FAIL: Cloned Iterator failed to deal correctly with incoming error status\n");
371 }
372 status = U_ZERO_ERROR;
373
374 /* Null buffer size pointer - just returns NULL & set error to U_ILLEGAL_ARGUMENT_ERROR*/
375 if (0 != ubrk_safeClone(someIterators[i], buffer[i], 0, &status) || status != U_ILLEGAL_ARGUMENT_ERROR)
376 {
377 log_err("FAIL: Cloned Iterator failed to deal correctly with null bufferSize pointer\n");
378 }
379 status = U_ZERO_ERROR;
380
381 /* buffer size pointer is 0 - fill in pbufferSize with a size */
382 bufferSize = 0;
383 if (0 != ubrk_safeClone(someIterators[i], buffer[i], &bufferSize, &status) || U_FAILURE(status) || bufferSize <= 0)
384 {
385 log_err("FAIL: Cloned Iterator failed a sizing request ('preflighting')\n");
386 }
387 /* Verify our define is large enough */
388 if (U_BRK_SAFECLONE_BUFFERSIZE < bufferSize)
389 {
390 log_err("FAIL: Pre-calculated buffer size is too small\n");
391 }
392 /* Verify we can use this run-time calculated size */
393 if (0 == (brk = ubrk_safeClone(someIterators[i], buffer[i], &bufferSize, &status)) || U_FAILURE(status))
394 {
395 log_err("FAIL: Iterator can't be cloned with run-time size\n");
396 }
397 if (brk)
398 ubrk_close(brk);
399 /* size one byte too small - should allocate & let us know */
400 --bufferSize;
401 if (0 == (brk = ubrk_safeClone(someIterators[i], 0, &bufferSize, &status)) || status != U_SAFECLONE_ALLOCATED_WARNING)
402 {
403 log_err("FAIL: Cloned Iterator failed to deal correctly with too-small buffer size\n");
404 }
405 if (brk)
406 ubrk_close(brk);
407 status = U_ZERO_ERROR;
408 bufferSize = U_BRK_SAFECLONE_BUFFERSIZE;
409
410 /* Null buffer pointer - return Iterator & set error to U_SAFECLONE_ALLOCATED_ERROR */
411 if (0 == (brk = ubrk_safeClone(someIterators[i], 0, &bufferSize, &status)) || status != U_SAFECLONE_ALLOCATED_WARNING)
412 {
413 log_err("FAIL: Cloned Iterator failed to deal correctly with null buffer pointer\n");
414 }
415 if (brk)
416 ubrk_close(brk);
417 status = U_ZERO_ERROR;
418
419 /* Mis-aligned buffer pointer. */
420 {
421 char stackBuf[U_BRK_SAFECLONE_BUFFERSIZE+sizeof(void *)];
422 void *p;
423 int32_t offset;
424
425 brk = ubrk_safeClone(someIterators[i], &stackBuf[1], &bufferSize, &status);
426 if (U_FAILURE(status) || brk == 0) {
427 log_err("FAIL: Cloned Iterator failed with misaligned buffer pointer\n");
428 }
429 if (status == U_SAFECLONE_ALLOCATED_WARNING) {
430 log_err("FAIL: Cloned Iterator allocated when using a mis-aligned buffer.\n");
431 }
432 offset = (int32_t)((char *)&p-(char*)brk);
433 if (offset < 0) {
434 offset = -offset;
435 }
436 if (offset % sizeof(void *) != 0) {
437 log_err("FAIL: Cloned Iterator failed to align correctly with misaligned buffer pointer\n");
438 }
439 if (brk)
440 ubrk_close(brk);
441 }
442
443
444 /* Null Iterator - return NULL & set U_ILLEGAL_ARGUMENT_ERROR */
445 if (0 != ubrk_safeClone(0, buffer[i], &bufferSize, &status) || status != U_ILLEGAL_ARGUMENT_ERROR)
446 {
447 log_err("FAIL: Cloned Iterator failed to deal correctly with null Iterator pointer\n");
448 }
449 status = U_ZERO_ERROR;
450
451 /* Do these cloned Iterators work at all - make a first & next call */
452 bufferSize = U_BRK_SAFECLONE_BUFFERSIZE;
453 someClonedIterators[i] = ubrk_safeClone(someIterators[i], buffer[i], &bufferSize, &status);
454
455 start = ubrk_first(someClonedIterators[i]);
456 if(start!=0)
457 log_err("error ubrk_start(clone) did not return 0\n");
458 pos=ubrk_next(someClonedIterators[i]);
459 if(pos!=4)
460 log_err("error ubrk_next(clone) did not return 4\n");
461
462 ubrk_close(someClonedIterators[i]);
463 ubrk_close(someIterators[i]);
464 }
465}
466
467
468/*
469// Open a break iterator from char * rules. Take care of conversion
470// of the rules and error checking.
471*/
472static UBreakIterator * testOpenRules(char *rules) {
473 UErrorCode status = U_ZERO_ERROR;
474 UChar *ruleSourceU = NULL;
475 void *strCleanUp = NULL;
476 UParseError parseErr;
477 UBreakIterator *bi;
478
479 ruleSourceU = toUChar(rules, &strCleanUp);
480
481 bi = ubrk_openRules(ruleSourceU, -1, /* The rules */
482 NULL, -1, /* The text to be iterated over. */
483 &parseErr, &status);
484
485 if (U_FAILURE(status)) {
486 log_err("FAIL: ubrk_openRules: ICU Error \"%s\"\n", u_errorName(status));
487 bi = 0;
488 };
489 freeToUCharStrings(&strCleanUp);
490 return bi;
491
492}
493
494/*
495 * TestBreakIteratorRules - Verify that a break iterator can be created from
496 * a set of source rules.
497 */
498static void TestBreakIteratorRules() {
499 /* Rules will keep together any run of letters not including 'a', OR
500 * keep together 'abc', but only when followed by 'def', OTHERWISE
501 * just return one char at a time.
502 */
503 char rules[] = "abc{666}/def;\n [\\p{L} - [a]]* {2}; . {1};";
504 /* 0123456789012345678 */
505 char data[] = "abcdex abcdefgh-def"; /* the test data string */
506 char breaks[] = "** ** * ** *"; /* * the expected break positions */
507 char tags[] = "01 21 6 21 2"; /* expected tag values at break positions */
508 int32_t tagMap[] = {0, 1, 2, 3, 4, 5, 666};
509
510 UChar *uData;
511 void *freeHook = NULL;
512 UErrorCode status = U_ZERO_ERROR;
513 int32_t pos;
514 int i;
515
516 UBreakIterator *bi = testOpenRules(rules);
517 if (bi == NULL) {return;}
518 uData = toUChar(data, &freeHook);
519 ubrk_setText(bi, uData, -1, &status);
520
521 pos = ubrk_first(bi);
522 for (i=0; i<sizeof(breaks); i++) {
523 if (pos == i && breaks[i] != '*') {
524 log_err("FAIL: unexpected break at position %d found\n", pos);
525 break;
526 }
527 if (pos != i && breaks[i] == '*') {
528 log_err("FAIL: expected break at position %d not found.\n", i);
529 break;
530 }
531 if (pos == i) {
532 int32_t tag, expectedTag;
533 tag = ubrk_getRuleStatus(bi);
534 expectedTag = tagMap[tags[i]&0xf];
535 if (tag != expectedTag) {
536 log_err("FAIL: incorrect tag value. Position = %d; expected tag %d, got %d",
537 pos, expectedTag, tag);
538 break;
539 }
540 pos = ubrk_next(bi);
541 }
542 }
543
544 freeToUCharStrings(&freeHook);
545 ubrk_close(bi);
546}
547
548static void TestBreakIteratorRuleError() {
549/*
550 * TestBreakIteratorRuleError - Try to create a BI from rules with syntax errors,
551 * check that the error is reported correctly.
552 */
553 char rules[] = " # This is a rule comment on line 1\n"
554 "[:L:]; # this rule is OK.\n"
555 "abcdefg); # Error, mismatched parens\n";
556 UChar *uRules;
557 void *freeHook = NULL;
558 UErrorCode status = U_ZERO_ERROR;
559 UParseError parseErr;
560 UBreakIterator *bi;
561
562 uRules = toUChar(rules, &freeHook);
563 bi = ubrk_openRules(uRules, -1, /* The rules */
564 NULL, -1, /* The text to be iterated over. */
565 &parseErr, &status);
566 if (U_SUCCESS(status)) {
567 log_err("FAIL: construction of break iterator succeeded when it should have failed.\n");
568 ubrk_close(bi);
569 } else {
570 if (parseErr.line != 3 || parseErr.offset != 8) {
571 log_err("FAIL: incorrect error position reported. Got line %d, char %d, expected line 3, char 7",
572 parseErr.line, parseErr.offset);
573 }
574 }
575 freeToUCharStrings(&freeHook);
576}
577
578
579/*
580* TestsBreakIteratorStatusVals() Test the ubrk_getRuleStatusVec() funciton
581*/
582static void TestBreakIteratorStatusVec() {
583 #define RULE_STRING_LENGTH 200
584 UChar rules[RULE_STRING_LENGTH];
585
586 #define TEST_STRING_LENGTH 25
587 UChar testString[TEST_STRING_LENGTH];
588 UBreakIterator *bi = NULL;
589 int32_t pos = 0;
590 int32_t vals[10];
591 int32_t numVals;
592 UErrorCode status = U_ZERO_ERROR;
593
594 u_uastrncpy(rules, "[A-N]{100}; \n"
595 "[a-w]{200}; \n"
596 "[\\p{L}]{300}; \n"
597 "[\\p{N}]{400}; \n"
598 "[0-5]{500}; \n"
599 "!.*;\n", RULE_STRING_LENGTH);
600 u_uastrncpy(testString, "ABC", TEST_STRING_LENGTH);
601
602
603 bi = ubrk_openRules(rules, -1, testString, -1, NULL, &status);
604 TEST_ASSET_SUCCESS(status);
605 TEST_ASSERT(bi != NULL);
606
607 pos = ubrk_next(bi);
608 TEST_ASSERT(pos == 1);
609
610 memset(vals, -1, sizeof(vals));
611 numVals = ubrk_getRuleStatusVec(bi, vals, 10, &status);
612 TEST_ASSET_SUCCESS(status);
613 TEST_ASSERT(numVals == 2);
614 TEST_ASSERT(vals[0] == 100);
615 TEST_ASSERT(vals[1] == 300);
616 TEST_ASSERT(vals[2] == -1);
617
618 numVals = ubrk_getRuleStatusVec(bi, vals, 0, &status);
619 TEST_ASSERT(status == U_BUFFER_OVERFLOW_ERROR);
620 TEST_ASSERT(numVals == 2);
621
622 ubrk_close(bi);
623}
624
625
626#endif /* #if !UCONFIG_NO_BREAK_ITERATION */