1 /******************************************************************** 2 * Copyright (c) 1997-2011 International Business Machines 3 * Corporation and others. All Rights Reserved. 4 ********************************************************************/ 5 /***************************************************************************** 6 * 7 * File CAPITEST.C 8 * 9 * Modification History: 10 * Name Description 11 * Madhu Katragadda Ported for C API 12 * Brian Rower Added TestOpenVsOpenRules 13 ****************************************************************************** 14 *//* C API TEST For COLLATOR */ 15 16 #include "unicode/utypes.h" 17 18 #if !UCONFIG_NO_COLLATION 19 20 #include <stdio.h> 21 #include <stdlib.h> 22 #include <string.h> 23 #include "unicode/uloc.h" 24 #include "unicode/ulocdata.h" 25 #include "unicode/ustring.h" 26 #include "unicode/ures.h" 27 #include "unicode/ucoleitr.h" 28 #include "cintltst.h" 29 #include "capitst.h" 30 #include "ccolltst.h" 31 #include "putilimp.h" 32 #include "cmemory.h" 33 #include "cstring.h" 34 35 static void TestAttribute(void); 36 static void TestDefault(void); 37 static void TestDefaultKeyword(void); 38 static void TestBengaliSortKey(void); 39 int TestBufferSize(); /* defined in "colutil.c" */ 40 41 42 43 44 /* next two function is modified from "i18n/ucol.cpp" to avoid include "ucol_imp.h" */ 45 static void uprv_appendByteToHexString(char *dst, uint8_t val) { 46 uint32_t len = (uint32_t)strlen(dst); 47 sprintf(dst+len, "%02X", val); 48 } 49 50 static char* U_EXPORT2 ucol_sortKeyToString(const UCollator *coll, const uint8_t *sortkey, char *buffer, uint32_t *len) { 51 int32_t strength = UCOL_PRIMARY; 52 uint32_t res_size = 0; 53 UBool doneCase = FALSE; 54 55 char *current = buffer; 56 const uint8_t *currentSk = sortkey; 57 58 UErrorCode error_code = U_ZERO_ERROR; 59 60 strcpy(current, "["); 61 62 while(strength <= UCOL_QUATERNARY && strength <= ucol_getAttribute(coll,UCOL_STRENGTH, &error_code)) { 63 if(U_FAILURE(error_code)) { 64 log_err("ucol_getAttribute returned error: %s\n", u_errorName(error_code)); 65 } 66 if(strength > UCOL_PRIMARY) { 67 strcat(current, " . "); 68 } 69 while(*currentSk != 0x01 && *currentSk != 0x00) { /* print a level */ 70 uprv_appendByteToHexString(current, *currentSk++); 71 strcat(current, " "); 72 } 73 if(ucol_getAttribute(coll,UCOL_CASE_LEVEL, &error_code) == UCOL_ON && strength == UCOL_SECONDARY && doneCase == FALSE) { 74 doneCase = TRUE; 75 } else if(ucol_getAttribute(coll,UCOL_CASE_LEVEL, &error_code) == UCOL_OFF || doneCase == TRUE || strength != UCOL_SECONDARY) { 76 strength ++; 77 } 78 if(U_FAILURE(error_code)) { 79 log_err("ucol_getAttribute returned error: %s\n", u_errorName(error_code)); 80 } 81 uprv_appendByteToHexString(current, *currentSk++); /* This should print '01' */ 82 if(strength == UCOL_QUATERNARY && ucol_getAttribute(coll,UCOL_ALTERNATE_HANDLING, &error_code) == UCOL_NON_IGNORABLE) { 83 break; 84 } 85 } 86 87 if(ucol_getAttribute(coll,UCOL_STRENGTH, &error_code) == UCOL_IDENTICAL) { 88 strcat(current, " . "); 89 while(*currentSk != 0) { 90 uprv_appendByteToHexString(current, *currentSk++); 91 strcat(current, " "); 92 } 93 94 uprv_appendByteToHexString(current, *currentSk++); 95 } 96 if(U_FAILURE(error_code)) { 97 log_err("ucol_getAttribute returned error: %s\n", u_errorName(error_code)); 98 } 99 strcat(current, "]"); 100 101 if(res_size > *len) { 102 return NULL; 103 } 104 105 return buffer; 106 } 107 /* end of avoid include "ucol_imp.h" */ 108 109 110 void addCollAPITest(TestNode** root) 111 { 112 /* WEIVTODO: return tests here */ 113 addTest(root, &TestProperty, "tscoll/capitst/TestProperty"); 114 addTest(root, &TestRuleBasedColl, "tscoll/capitst/TestRuleBasedColl"); 115 addTest(root, &TestCompare, "tscoll/capitst/TestCompare"); 116 addTest(root, &TestSortKey, "tscoll/capitst/TestSortKey"); 117 addTest(root, &TestHashCode, "tscoll/capitst/TestHashCode"); 118 addTest(root, &TestElemIter, "tscoll/capitst/TestElemIter"); 119 addTest(root, &TestGetAll, "tscoll/capitst/TestGetAll"); 120 /*addTest(root, &TestGetDefaultRules, "tscoll/capitst/TestGetDefaultRules");*/ 121 addTest(root, &TestDecomposition, "tscoll/capitst/TestDecomposition"); 122 addTest(root, &TestSafeClone, "tscoll/capitst/TestSafeClone"); 123 addTest(root, &TestCloneBinary, "tscoll/capitst/TestCloneBinary"); 124 addTest(root, &TestGetSetAttr, "tscoll/capitst/TestGetSetAttr"); 125 addTest(root, &TestBounds, "tscoll/capitst/TestBounds"); 126 addTest(root, &TestGetLocale, "tscoll/capitst/TestGetLocale"); 127 addTest(root, &TestSortKeyBufferOverrun, "tscoll/capitst/TestSortKeyBufferOverrun"); 128 addTest(root, &TestAttribute, "tscoll/capitst/TestAttribute"); 129 addTest(root, &TestGetTailoredSet, "tscoll/capitst/TestGetTailoredSet"); 130 addTest(root, &TestMergeSortKeys, "tscoll/capitst/TestMergeSortKeys"); 131 addTest(root, &TestShortString, "tscoll/capitst/TestShortString"); 132 /* BEGIN android-removed 133 To save space, Android does not include the collation tailoring rules. 134 We skip the tailing tests for collations. */ 135 /* addTest(root, &TestGetContractionsAndUnsafes, "tscoll/capitst/TestGetContractionsAndUnsafes"); */ 136 /* END android-removed */ 137 addTest(root, &TestOpenBinary, "tscoll/capitst/TestOpenBinary"); 138 addTest(root, &TestDefault, "tscoll/capitst/TestDefault"); 139 addTest(root, &TestDefaultKeyword, "tscoll/capitst/TestDefaultKeyword"); 140 /* BEGIN android-removed 141 To save space, Android does not build full collation tables and tailing rules. 142 We skip the related tests. */ 143 /* addTest(root, &TestOpenVsOpenRules, "tscoll/capitst/TestOpenVsOpenRules"); */ 144 /* addTest(root, &TestGetKeywordValuesForLocale, "tscoll/capitst/TestGetKeywordValuesForLocale"); */ 145 /* END android-removed */ 146 addTest(root, &TestBengaliSortKey, "tscoll/capitst/TestBengaliSortKey"); 147 } 148 149 void TestGetSetAttr(void) { 150 UErrorCode status = U_ZERO_ERROR; 151 UCollator *coll = ucol_open(NULL, &status); 152 struct attrTest { 153 UColAttribute att; 154 UColAttributeValue val[5]; 155 uint32_t valueSize; 156 UColAttributeValue nonValue; 157 } attrs[] = { 158 {UCOL_FRENCH_COLLATION, {UCOL_ON, UCOL_OFF}, 2, UCOL_SHIFTED}, 159 {UCOL_ALTERNATE_HANDLING, {UCOL_NON_IGNORABLE, UCOL_SHIFTED}, 2, UCOL_OFF},/* attribute for handling variable elements*/ 160 {UCOL_CASE_FIRST, {UCOL_OFF, UCOL_LOWER_FIRST, UCOL_UPPER_FIRST}, 3, UCOL_SHIFTED},/* who goes first, lower case or uppercase */ 161 {UCOL_CASE_LEVEL, {UCOL_ON, UCOL_OFF}, 2, UCOL_SHIFTED},/* do we have an extra case level */ 162 {UCOL_NORMALIZATION_MODE, {UCOL_ON, UCOL_OFF}, 2, UCOL_SHIFTED},/* attribute for normalization */ 163 {UCOL_DECOMPOSITION_MODE, {UCOL_ON, UCOL_OFF}, 2, UCOL_SHIFTED}, 164 {UCOL_STRENGTH, {UCOL_PRIMARY, UCOL_SECONDARY, UCOL_TERTIARY, UCOL_QUATERNARY, UCOL_IDENTICAL}, 5, UCOL_SHIFTED},/* attribute for strength */ 165 {UCOL_HIRAGANA_QUATERNARY_MODE, {UCOL_ON, UCOL_OFF}, 2, UCOL_SHIFTED},/* when turned on, this attribute */ 166 }; 167 UColAttribute currAttr; 168 UColAttributeValue value; 169 uint32_t i = 0, j = 0; 170 171 if (coll == NULL) { 172 log_err_status(status, "Unable to open collator. %s\n", u_errorName(status)); 173 return; 174 } 175 for(i = 0; i<sizeof(attrs)/sizeof(attrs[0]); i++) { 176 currAttr = attrs[i].att; 177 ucol_setAttribute(coll, currAttr, UCOL_DEFAULT, &status); 178 if(U_FAILURE(status)) { 179 log_err_status(status, "ucol_setAttribute with the default value returned error: %s\n", u_errorName(status)); 180 break; 181 } 182 value = ucol_getAttribute(coll, currAttr, &status); 183 if(U_FAILURE(status)) { 184 log_err("ucol_getAttribute returned error: %s\n", u_errorName(status)); 185 break; 186 } 187 for(j = 0; j<attrs[i].valueSize; j++) { 188 ucol_setAttribute(coll, currAttr, attrs[i].val[j], &status); 189 if(U_FAILURE(status)) { 190 log_err("ucol_setAttribute with the value %i returned error: %s\n", attrs[i].val[j], u_errorName(status)); 191 break; 192 } 193 } 194 status = U_ZERO_ERROR; 195 ucol_setAttribute(coll, currAttr, attrs[i].nonValue, &status); 196 if(U_SUCCESS(status)) { 197 log_err("ucol_setAttribute with the bad value didn't return an error\n"); 198 break; 199 } 200 status = U_ZERO_ERROR; 201 202 ucol_setAttribute(coll, currAttr, value, &status); 203 if(U_FAILURE(status)) { 204 log_err("ucol_setAttribute with the default valuereturned error: %s\n", u_errorName(status)); 205 break; 206 } 207 } 208 status = U_ZERO_ERROR; 209 value = ucol_getAttribute(coll, UCOL_ATTRIBUTE_COUNT, &status); 210 if(U_SUCCESS(status)) { 211 log_err("ucol_getAttribute for UCOL_ATTRIBUTE_COUNT didn't return an error\n"); 212 } 213 status = U_ZERO_ERROR; 214 ucol_setAttribute(coll, UCOL_ATTRIBUTE_COUNT, UCOL_DEFAULT, &status); 215 if(U_SUCCESS(status)) { 216 log_err("ucol_setAttribute for UCOL_ATTRIBUTE_COUNT didn't return an error\n"); 217 } 218 status = U_ZERO_ERROR; 219 ucol_close(coll); 220 } 221 222 223 static void doAssert(int condition, const char *message) 224 { 225 if (condition==0) { 226 log_err("ERROR : %s\n", message); 227 } 228 } 229 230 #if 0 231 /* We don't have default rules, at least not in the previous sense */ 232 void TestGetDefaultRules(){ 233 uint32_t size=0; 234 UErrorCode status=U_ZERO_ERROR; 235 UCollator *coll=NULL; 236 int32_t len1 = 0, len2=0; 237 uint8_t *binColData = NULL; 238 239 UResourceBundle *res = NULL; 240 UResourceBundle *binColl = NULL; 241 uint8_t *binResult = NULL; 242 243 244 const UChar * defaultRulesArray=ucol_getDefaultRulesArray(&size); 245 log_verbose("Test the function ucol_getDefaultRulesArray()\n"); 246 247 coll = ucol_openRules(defaultRulesArray, size, UCOL_ON, UCOL_PRIMARY, &status); 248 if(U_SUCCESS(status) && coll !=NULL) { 249 binColData = (uint8_t*)ucol_cloneRuleData(coll, &len1, &status); 250 251 } 252 253 254 status=U_ZERO_ERROR; 255 res=ures_open(NULL, "root", &status); 256 if(U_FAILURE(status)){ 257 log_err("ERROR: Failed to get resource for \"root Locale\" with %s", myErrorName(status)); 258 return; 259 } 260 binColl=ures_getByKey(res, "%%Collation", binColl, &status); 261 if(U_SUCCESS(status)){ 262 binResult=(uint8_t*)ures_getBinary(binColl, &len2, &status); 263 if(U_FAILURE(status)){ 264 log_err("ERROR: ures_getBinary() failed\n"); 265 } 266 }else{ 267 log_err("ERROR: ures_getByKey(locale(default), %%Collation) failed"); 268 } 269 270 271 if(len1 != len2){ 272 log_err("Error: ucol_getDefaultRulesArray() failed to return the correct length.\n"); 273 } 274 if(memcmp(binColData, binResult, len1) != 0){ 275 log_err("Error: ucol_getDefaultRulesArray() failed\n"); 276 } 277 278 free(binColData); 279 ures_close(binColl); 280 ures_close(res); 281 ucol_close(coll); 282 283 } 284 #endif 285 286 /* Collator Properties 287 ucol_open, ucol_strcoll, getStrength/setStrength 288 getDecomposition/setDecomposition, getDisplayName*/ 289 void TestProperty() 290 { 291 UCollator *col, *ruled; 292 UChar *disName; 293 int32_t len = 0; 294 UChar *source, *target; 295 int32_t tempLength; 296 UErrorCode status = U_ZERO_ERROR; 297 /* 298 * Expected version of the English collator. 299 * Currently, the major/minor version numbers change when the builder code 300 * changes, 301 * number 2 is from the tailoring data version and 302 * number 3 is the UCA version. 303 * This changes with every UCA version change, and the expected value 304 * needs to be adjusted. 305 * Same in intltest/apicoll.cpp. 306 */ 307 UVersionInfo currVersionArray = {0x31, 0xC0, 0x05, 0x2A}; /* from ICU 4.4/UCA 5.2 */ 308 UVersionInfo versionArray = {0, 0, 0, 0}; 309 UVersionInfo versionUCAArray = {0, 0, 0, 0}; 310 UVersionInfo versionUCDArray = {0, 0, 0, 0}; 311 312 log_verbose("The property tests begin : \n"); 313 log_verbose("Test ucol_strcoll : \n"); 314 col = ucol_open("en_US", &status); 315 if (U_FAILURE(status)) { 316 log_err_status(status, "Default Collator creation failed.: %s\n", myErrorName(status)); 317 return; 318 } 319 320 ucol_getVersion(col, versionArray); 321 /* Check for a version greater than some value rather than equality 322 * so that we need not update the expected version each time. */ 323 if (uprv_memcmp(versionArray, currVersionArray, 4)<0) { 324 log_err("Testing ucol_getVersion() - unexpected result: %02x.%02x.%02x.%02x\n", 325 versionArray[0], versionArray[1], versionArray[2], versionArray[3]); 326 } else { 327 log_verbose("ucol_getVersion() result: %02x.%02x.%02x.%02x\n", 328 versionArray[0], versionArray[1], versionArray[2], versionArray[3]); 329 } 330 331 /* Assume that the UCD and UCA versions are the same, 332 * rather than hardcoding (and updating each time) a particular UCA version. */ 333 u_getUnicodeVersion(versionUCDArray); 334 ucol_getUCAVersion(col, versionUCAArray); 335 if (0!=uprv_memcmp(versionUCAArray, versionUCDArray, 4)) { 336 log_err("Testing ucol_getUCAVersion() - unexpected result: %hu.%hu.%hu.%hu\n", 337 versionUCAArray[0], versionUCAArray[1], versionUCAArray[2], versionUCAArray[3]); 338 } 339 340 source=(UChar*)malloc(sizeof(UChar) * 12); 341 target=(UChar*)malloc(sizeof(UChar) * 12); 342 343 344 u_uastrcpy(source, "ab"); 345 u_uastrcpy(target, "abc"); 346 347 doAssert((ucol_strcoll(col, source, u_strlen(source), target, u_strlen(target)) == UCOL_LESS), "ab < abc comparison failed"); 348 349 u_uastrcpy(source, "ab"); 350 u_uastrcpy(target, "AB"); 351 352 doAssert((ucol_strcoll(col, source, u_strlen(source), target, u_strlen(target)) == UCOL_LESS), "ab < AB comparison failed"); 353 /* u_uastrcpy(source, "black-bird"); 354 u_uastrcpy(target, "blackbird"); */ 355 u_uastrcpy(target, "black-bird"); 356 u_uastrcpy(source, "blackbird"); 357 358 doAssert((ucol_strcoll(col, source, u_strlen(source), target, u_strlen(target)) == UCOL_GREATER), 359 "black-bird > blackbird comparison failed"); 360 u_uastrcpy(source, "black bird"); 361 u_uastrcpy(target, "black-bird"); 362 doAssert((ucol_strcoll(col, source, u_strlen(source), target, u_strlen(target)) == UCOL_LESS), 363 "black bird < black-bird comparison failed"); 364 u_uastrcpy(source, "Hello"); 365 u_uastrcpy(target, "hello"); 366 367 doAssert((ucol_strcoll(col, source, u_strlen(source), target, u_strlen(target)) == UCOL_GREATER), 368 "Hello > hello comparison failed"); 369 free(source); 370 free(target); 371 log_verbose("Test ucol_strcoll ends.\n"); 372 373 log_verbose("testing ucol_getStrength() method ...\n"); 374 doAssert( (ucol_getStrength(col) == UCOL_TERTIARY), "collation object has the wrong strength"); 375 doAssert( (ucol_getStrength(col) != UCOL_PRIMARY), "collation object's strength is primary difference"); 376 377 log_verbose("testing ucol_setStrength() method ...\n"); 378 ucol_setStrength(col, UCOL_SECONDARY); 379 doAssert( (ucol_getStrength(col) != UCOL_TERTIARY), "collation object's strength is secondary difference"); 380 doAssert( (ucol_getStrength(col) != UCOL_PRIMARY), "collation object's strength is primary difference"); 381 doAssert( (ucol_getStrength(col) == UCOL_SECONDARY), "collation object has the wrong strength"); 382 383 384 log_verbose("Get display name for the default collation in German : \n"); 385 386 len=ucol_getDisplayName("en_US", "de_DE", NULL, 0, &status); 387 if(status==U_BUFFER_OVERFLOW_ERROR){ 388 status=U_ZERO_ERROR; 389 disName=(UChar*)malloc(sizeof(UChar) * (len+1)); 390 ucol_getDisplayName("en_US", "de_DE", disName, len+1, &status); 391 log_verbose("the display name for default collation in german: %s\n", austrdup(disName) ); 392 free(disName); 393 } 394 if(U_FAILURE(status)){ 395 log_err("ERROR: in getDisplayName: %s\n", myErrorName(status)); 396 return; 397 } 398 log_verbose("Default collation getDisplayName ended.\n"); 399 400 /* BEGIN android-removed 401 To save space, Android does not include the collation tailoring rules. 402 Skip the related tests. 403 404 ruled = ucol_open("da_DK", &status); 405 log_verbose("ucol_getRules() testing ...\n"); 406 ucol_getRules(ruled, &tempLength); 407 doAssert( tempLength != 0, "getRules() result incorrect" ); 408 log_verbose("getRules tests end.\n"); 409 { 410 UChar *buffer = (UChar *)malloc(200000*sizeof(UChar)); 411 int32_t bufLen = 200000; 412 buffer[0] = '\0'; 413 log_verbose("ucol_getRulesEx() testing ...\n"); 414 tempLength = ucol_getRulesEx(col,UCOL_TAILORING_ONLY,buffer,bufLen ); 415 doAssert( tempLength == 0x00, "getRulesEx() result incorrect" ); 416 log_verbose("getRules tests end.\n"); 417 418 log_verbose("ucol_getRulesEx() testing ...\n"); 419 tempLength=ucol_getRulesEx(col,UCOL_FULL_RULES,buffer,bufLen ); 420 doAssert( tempLength != 0, "getRulesEx() result incorrect" ); 421 log_verbose("getRules tests end.\n"); 422 free(buffer); 423 } 424 ucol_close(ruled); 425 ucol_close(col); 426 427 END android-removed */ 428 429 log_verbose("open an collator for french locale"); 430 col = ucol_open("fr_FR", &status); 431 if (U_FAILURE(status)) { 432 log_err("ERROR: Creating French collation failed.: %s\n", myErrorName(status)); 433 return; 434 } 435 ucol_setStrength(col, UCOL_PRIMARY); 436 log_verbose("testing ucol_getStrength() method again ...\n"); 437 doAssert( (ucol_getStrength(col) != UCOL_TERTIARY), "collation object has the wrong strength"); 438 doAssert( (ucol_getStrength(col) == UCOL_PRIMARY), "collation object's strength is not primary difference"); 439 440 log_verbose("testing French ucol_setStrength() method ...\n"); 441 ucol_setStrength(col, UCOL_TERTIARY); 442 doAssert( (ucol_getStrength(col) == UCOL_TERTIARY), "collation object's strength is not tertiary difference"); 443 doAssert( (ucol_getStrength(col) != UCOL_PRIMARY), "collation object's strength is primary difference"); 444 doAssert( (ucol_getStrength(col) != UCOL_SECONDARY), "collation object's strength is secondary difference"); 445 ucol_close(col); 446 447 log_verbose("Get display name for the french collation in english : \n"); 448 len=ucol_getDisplayName("fr_FR", "en_US", NULL, 0, &status); 449 if(status==U_BUFFER_OVERFLOW_ERROR){ 450 status=U_ZERO_ERROR; 451 disName=(UChar*)malloc(sizeof(UChar) * (len+1)); 452 ucol_getDisplayName("fr_FR", "en_US", disName, len+1, &status); 453 log_verbose("the display name for french collation in english: %s\n", austrdup(disName) ); 454 free(disName); 455 } 456 if(U_FAILURE(status)){ 457 log_err("ERROR: in getDisplayName: %s\n", myErrorName(status)); 458 return; 459 } 460 log_verbose("Default collation getDisplayName ended.\n"); 461 462 } 463 464 /* Test RuleBasedCollator and getRules*/ 465 void TestRuleBasedColl() 466 { 467 UCollator *col1, *col2, *col3, *col4; 468 UCollationElements *iter1, *iter2; 469 UChar ruleset1[60]; 470 UChar ruleset2[50]; 471 UChar teststr[10]; 472 UChar teststr2[10]; 473 const UChar *rule1, *rule2, *rule3, *rule4; 474 int32_t tempLength; 475 UErrorCode status = U_ZERO_ERROR; 476 u_uastrcpy(ruleset1, "&9 < a, A < b, B < c, C; ch, cH, Ch, CH < d, D, e, E"); 477 u_uastrcpy(ruleset2, "&9 < a, A < b, B < c, C < d, D, e, E"); 478 479 480 col1 = ucol_openRules(ruleset1, u_strlen(ruleset1), UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL,&status); 481 if (U_FAILURE(status)) { 482 log_err_status(status, "RuleBased Collator creation failed.: %s\n", myErrorName(status)); 483 return; 484 } 485 else 486 log_verbose("PASS: RuleBased Collator creation passed\n"); 487 488 status = U_ZERO_ERROR; 489 col2 = ucol_openRules(ruleset2, u_strlen(ruleset2), UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL, &status); 490 if (U_FAILURE(status)) { 491 log_err("RuleBased Collator creation failed.: %s\n", myErrorName(status)); 492 return; 493 } 494 else 495 log_verbose("PASS: RuleBased Collator creation passed\n"); 496 497 498 status = U_ZERO_ERROR; 499 col3= ucol_open(NULL, &status); 500 if (U_FAILURE(status)) { 501 log_err("Default Collator creation failed.: %s\n", myErrorName(status)); 502 return; 503 } 504 else 505 log_verbose("PASS: Default Collator creation passed\n"); 506 507 rule1 = ucol_getRules(col1, &tempLength); 508 rule2 = ucol_getRules(col2, &tempLength); 509 rule3 = ucol_getRules(col3, &tempLength); 510 511 doAssert((u_strcmp(rule1, rule2) != 0), "Default collator getRules failed"); 512 doAssert((u_strcmp(rule2, rule3) != 0), "Default collator getRules failed"); 513 doAssert((u_strcmp(rule1, rule3) != 0), "Default collator getRules failed"); 514 515 col4=ucol_openRules(rule2, u_strlen(rule2), UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL, &status); 516 if (U_FAILURE(status)) { 517 log_err("RuleBased Collator creation failed.: %s\n", myErrorName(status)); 518 return; 519 } 520 rule4= ucol_getRules(col4, &tempLength); 521 doAssert((u_strcmp(rule2, rule4) == 0), "Default collator getRules failed"); 522 523 ucol_close(col1); 524 ucol_close(col2); 525 ucol_close(col3); 526 ucol_close(col4); 527 528 /* tests that modifier ! is always ignored */ 529 u_uastrcpy(ruleset1, "!&a<b"); 530 teststr[0] = 0x0e40; 531 teststr[1] = 0x0e01; 532 teststr[2] = 0x0e2d; 533 col1 = ucol_openRules(ruleset1, u_strlen(ruleset1), UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL, &status); 534 if (U_FAILURE(status)) { 535 log_err("RuleBased Collator creation failed.: %s\n", myErrorName(status)); 536 return; 537 } 538 col2 = ucol_open("en_US", &status); 539 if (U_FAILURE(status)) { 540 log_err("en_US Collator creation failed.: %s\n", myErrorName(status)); 541 return; 542 } 543 iter1 = ucol_openElements(col1, teststr, 3, &status); 544 iter2 = ucol_openElements(col2, teststr, 3, &status); 545 if(U_FAILURE(status)) { 546 log_err("ERROR: CollationElement iterator creation failed.: %s\n", myErrorName(status)); 547 return; 548 } 549 while (TRUE) { 550 /* testing with en since thai has its own tailoring */ 551 uint32_t ce = ucol_next(iter1, &status); 552 uint32_t ce2 = ucol_next(iter2, &status); 553 if(U_FAILURE(status)) { 554 log_err("ERROR: CollationElement iterator creation failed.: %s\n", myErrorName(status)); 555 return; 556 } 557 if (ce2 != ce) { 558 log_err("! modifier test failed"); 559 } 560 if (ce == UCOL_NULLORDER) { 561 break; 562 } 563 } 564 ucol_closeElements(iter1); 565 ucol_closeElements(iter2); 566 ucol_close(col1); 567 ucol_close(col2); 568 /* test that we can start a rule without a & or < */ 569 u_uastrcpy(ruleset1, "< z < a"); 570 col1 = ucol_openRules(ruleset1, u_strlen(ruleset1), UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL, &status); 571 if (U_FAILURE(status)) { 572 log_err("RuleBased Collator creation failed.: %s\n", myErrorName(status)); 573 return; 574 } 575 u_uastrcpy(teststr, "z"); 576 u_uastrcpy(teststr2, "a"); 577 if (ucol_greaterOrEqual(col1, teststr, 1, teststr2, 1)) { 578 log_err("Rule \"z < a\" fails"); 579 } 580 ucol_close(col1); 581 } 582 583 void TestCompare() 584 { 585 UErrorCode status = U_ZERO_ERROR; 586 UCollator *col; 587 UChar* test1; 588 UChar* test2; 589 590 log_verbose("The compare tests begin : \n"); 591 status=U_ZERO_ERROR; 592 col = ucol_open("en_US", &status); 593 if(U_FAILURE(status)) { 594 log_err_status(status, "ucal_open() collation creation failed.: %s\n", myErrorName(status)); 595 return; 596 } 597 test1=(UChar*)malloc(sizeof(UChar) * 6); 598 test2=(UChar*)malloc(sizeof(UChar) * 6); 599 u_uastrcpy(test1, "Abcda"); 600 u_uastrcpy(test2, "abcda"); 601 602 log_verbose("Use tertiary comparison level testing ....\n"); 603 604 doAssert( (!ucol_equal(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" != \"abcda\" "); 605 doAssert( (ucol_greater(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" >>> \"abcda\" "); 606 doAssert( (ucol_greaterOrEqual(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" >>> \"abcda\""); 607 608 ucol_setStrength(col, UCOL_SECONDARY); 609 log_verbose("Use secondary comparison level testing ....\n"); 610 611 doAssert( (ucol_equal(col, test1, u_strlen(test1), test2, u_strlen(test2) )), "Result should be \"Abcda\" == \"abcda\""); 612 doAssert( (!ucol_greater(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" == \"abcda\""); 613 doAssert( (ucol_greaterOrEqual(col, test1, u_strlen(test1), test2, u_strlen(test2) )), "Result should be \"Abcda\" == \"abcda\""); 614 615 ucol_setStrength(col, UCOL_PRIMARY); 616 log_verbose("Use primary comparison level testing ....\n"); 617 618 doAssert( (ucol_equal(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" == \"abcda\""); 619 doAssert( (!ucol_greater(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" == \"abcda\""); 620 doAssert( (ucol_greaterOrEqual(col, test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"Abcda\" == \"abcda\""); 621 622 623 log_verbose("The compare tests end.\n"); 624 ucol_close(col); 625 free(test1); 626 free(test2); 627 628 } 629 /* 630 --------------------------------------------- 631 tests decomposition setting 632 */ 633 void TestDecomposition() { 634 UErrorCode status = U_ZERO_ERROR; 635 UCollator *en_US, *el_GR, *vi_VN; 636 en_US = ucol_open("en_US", &status); 637 el_GR = ucol_open("el_GR", &status); 638 vi_VN = ucol_open("vi_VN", &status); 639 640 if (U_FAILURE(status)) { 641 log_err_status(status, "ERROR: collation creation failed.: %s\n", myErrorName(status)); 642 return; 643 } 644 645 if (ucol_getAttribute(vi_VN, UCOL_NORMALIZATION_MODE, &status) != UCOL_ON || 646 U_FAILURE(status)) 647 { 648 log_err("ERROR: vi_VN collation did not have cannonical decomposition for normalization!\n"); 649 } 650 651 status = U_ZERO_ERROR; 652 if (ucol_getAttribute(el_GR, UCOL_NORMALIZATION_MODE, &status) != UCOL_ON || 653 U_FAILURE(status)) 654 { 655 log_err("ERROR: el_GR collation did not have cannonical decomposition for normalization!\n"); 656 } 657 658 status = U_ZERO_ERROR; 659 if (ucol_getAttribute(en_US, UCOL_NORMALIZATION_MODE, &status) != UCOL_OFF || 660 U_FAILURE(status)) 661 { 662 log_err("ERROR: en_US collation had cannonical decomposition for normalization!\n"); 663 } 664 665 ucol_close(en_US); 666 ucol_close(el_GR); 667 ucol_close(vi_VN); 668 } 669 670 #define CLONETEST_COLLATOR_COUNT 4 671 672 void TestSafeClone() { 673 UChar test1[6]; 674 UChar test2[6]; 675 static const UChar umlautUStr[] = {0x00DC, 0}; 676 static const UChar oeStr[] = {0x0055, 0x0045, 0}; 677 UCollator * someCollators [CLONETEST_COLLATOR_COUNT]; 678 UCollator * someClonedCollators [CLONETEST_COLLATOR_COUNT]; 679 UCollator * col; 680 UErrorCode err = U_ZERO_ERROR; 681 int8_t index = 6; /* Leave this here to test buffer alingment in memory*/ 682 uint8_t buffer [CLONETEST_COLLATOR_COUNT] [U_COL_SAFECLONE_BUFFERSIZE]; 683 int32_t bufferSize = U_COL_SAFECLONE_BUFFERSIZE; 684 const char sampleRuleChars[] = "&Z < CH"; 685 UChar sampleRule[sizeof(sampleRuleChars)]; 686 687 if (TestBufferSize()) { 688 log_err("U_COL_SAFECLONE_BUFFERSIZE should be larger than sizeof(UCollator)\n"); 689 return; 690 } 691 692 u_uastrcpy(test1, "abCda"); 693 u_uastrcpy(test2, "abcda"); 694 u_uastrcpy(sampleRule, sampleRuleChars); 695 696 /* one default collator & two complex ones */ 697 someCollators[0] = ucol_open("en_US", &err); 698 someCollators[1] = ucol_open("ko", &err); 699 someCollators[2] = ucol_open("ja_JP", &err); 700 someCollators[3] = ucol_openRules(sampleRule, -1, UCOL_ON, UCOL_TERTIARY, NULL, &err); 701 if(U_FAILURE(err)) { 702 for (index = 0; index < CLONETEST_COLLATOR_COUNT; index++) { 703 ucol_close(someCollators[index]); 704 } 705 log_data_err("Couldn't open one or more collators\n"); 706 return; 707 } 708 709 /* Check the various error & informational states: */ 710 711 /* Null status - just returns NULL */ 712 if (0 != ucol_safeClone(someCollators[0], buffer[0], &bufferSize, 0)) 713 { 714 log_err("FAIL: Cloned Collator failed to deal correctly with null status\n"); 715 } 716 /* error status - should return 0 & keep error the same */ 717 err = U_MEMORY_ALLOCATION_ERROR; 718 if (0 != ucol_safeClone(someCollators[0], buffer[0], &bufferSize, &err) || err != U_MEMORY_ALLOCATION_ERROR) 719 { 720 log_err("FAIL: Cloned Collator failed to deal correctly with incoming error status\n"); 721 } 722 err = U_ZERO_ERROR; 723 724 /* Null buffer size pointer - just returns NULL & set error to U_ILLEGAL_ARGUMENT_ERROR*/ 725 if (0 != ucol_safeClone(someCollators[0], buffer[0], 0, &err) || err != U_ILLEGAL_ARGUMENT_ERROR) 726 { 727 log_err("FAIL: Cloned Collator failed to deal correctly with null bufferSize pointer\n"); 728 } 729 err = U_ZERO_ERROR; 730 731 /* buffer size pointer is 0 - fill in pbufferSize with a size */ 732 bufferSize = 0; 733 if (0 != ucol_safeClone(someCollators[0], buffer[0], &bufferSize, &err) || U_FAILURE(err) || bufferSize <= 0) 734 { 735 log_err("FAIL: Cloned Collator failed a sizing request ('preflighting')\n"); 736 } 737 /* Verify our define is large enough */ 738 if (U_COL_SAFECLONE_BUFFERSIZE < bufferSize) 739 { 740 log_err("FAIL: Pre-calculated buffer size is too small\n"); 741 } 742 /* Verify we can use this run-time calculated size */ 743 if (0 == (col = ucol_safeClone(someCollators[0], buffer[0], &bufferSize, &err)) || U_FAILURE(err)) 744 { 745 log_err("FAIL: Collator can't be cloned with run-time size\n"); 746 } 747 if (col) ucol_close(col); 748 /* size one byte too small - should allocate & let us know */ 749 --bufferSize; 750 if (0 == (col = ucol_safeClone(someCollators[0], 0, &bufferSize, &err)) || err != U_SAFECLONE_ALLOCATED_WARNING) 751 { 752 log_err("FAIL: Cloned Collator failed to deal correctly with too-small buffer size\n"); 753 } 754 if (col) ucol_close(col); 755 err = U_ZERO_ERROR; 756 bufferSize = U_COL_SAFECLONE_BUFFERSIZE; 757 758 759 /* Null buffer pointer - return Collator & set error to U_SAFECLONE_ALLOCATED_ERROR */ 760 if (0 == (col = ucol_safeClone(someCollators[0], 0, &bufferSize, &err)) || err != U_SAFECLONE_ALLOCATED_WARNING) 761 { 762 log_err("FAIL: Cloned Collator failed to deal correctly with null buffer pointer\n"); 763 } 764 if (col) ucol_close(col); 765 err = U_ZERO_ERROR; 766 767 /* Null Collator - return NULL & set U_ILLEGAL_ARGUMENT_ERROR */ 768 if (0 != ucol_safeClone(0, buffer[0], &bufferSize, &err) || err != U_ILLEGAL_ARGUMENT_ERROR) 769 { 770 log_err("FAIL: Cloned Collator failed to deal correctly with null Collator pointer\n"); 771 } 772 773 err = U_ZERO_ERROR; 774 775 /* Test that a cloned collator doesn't accidentally use UCA. */ 776 col=ucol_open("de@collation=phonebook", &err); 777 bufferSize = U_COL_SAFECLONE_BUFFERSIZE; 778 someClonedCollators[0] = ucol_safeClone(col, buffer[0], &bufferSize, &err); 779 doAssert( (ucol_greater(col, umlautUStr, u_strlen(umlautUStr), oeStr, u_strlen(oeStr))), "Original German phonebook collation sorts differently than expected"); 780 doAssert( (ucol_greater(someClonedCollators[0], umlautUStr, u_strlen(umlautUStr), oeStr, u_strlen(oeStr))), "Cloned German phonebook collation sorts differently than expected"); 781 if (!ucol_equals(someClonedCollators[0], col)) { 782 log_err("FAIL: Cloned German phonebook collator is not equal to original.\n"); 783 } 784 ucol_close(col); 785 ucol_close(someClonedCollators[0]); 786 787 err = U_ZERO_ERROR; 788 789 /* change orig & clone & make sure they are independent */ 790 791 for (index = 0; index < CLONETEST_COLLATOR_COUNT; index++) 792 { 793 ucol_setStrength(someCollators[index], UCOL_IDENTICAL); 794 bufferSize = 1; 795 err = U_ZERO_ERROR; 796 ucol_close(ucol_safeClone(someCollators[index], buffer[index], &bufferSize, &err)); 797 if (err != U_SAFECLONE_ALLOCATED_WARNING) { 798 log_err("FAIL: collator number %d was not allocated.\n", index); 799 log_err("FAIL: status of Collator[%d] is %d (hex: %x).\n", index, err, err); 800 } 801 802 bufferSize = U_COL_SAFECLONE_BUFFERSIZE; 803 err = U_ZERO_ERROR; 804 someClonedCollators[index] = ucol_safeClone(someCollators[index], buffer[index], &bufferSize, &err); 805 if (someClonedCollators[index] == NULL 806 || someClonedCollators[index] < (UCollator *)buffer[index] 807 || someClonedCollators[index] > (UCollator *)(buffer[index]+(U_COL_SAFECLONE_BUFFERSIZE-1))) 808 { 809 log_err("FAIL: Cloned collator didn't use provided buffer.\n"); 810 return; 811 } 812 if (!ucol_equals(someClonedCollators[index], someCollators[index])) { 813 log_err("FAIL: Cloned collator is not equal to original at index = %d.\n", index); 814 } 815 816 /* Check the usability */ 817 ucol_setStrength(someCollators[index], UCOL_PRIMARY); 818 ucol_setAttribute(someCollators[index], UCOL_CASE_LEVEL, UCOL_OFF, &err); 819 820 doAssert( (ucol_equal(someCollators[index], test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"abcda\" == \"abCda\""); 821 822 /* Close the original to make sure that the clone is usable. */ 823 ucol_close(someCollators[index]); 824 825 ucol_setStrength(someClonedCollators[index], UCOL_TERTIARY); 826 ucol_setAttribute(someClonedCollators[index], UCOL_CASE_LEVEL, UCOL_OFF, &err); 827 doAssert( (ucol_greater(someClonedCollators[index], test1, u_strlen(test1), test2, u_strlen(test2))), "Result should be \"abCda\" >>> \"abcda\" "); 828 829 ucol_close(someClonedCollators[index]); 830 } 831 } 832 833 void TestCloneBinary(){ 834 UErrorCode err = U_ZERO_ERROR; 835 UCollator * col = ucol_open("en_US", &err); 836 UCollator * c; 837 int32_t size; 838 uint8_t * buffer; 839 840 if (U_FAILURE(err)) { 841 log_data_err("Couldn't open collator. Error: %s\n", u_errorName(err)); 842 return; 843 } 844 845 size = ucol_cloneBinary(col, NULL, 0, &err); 846 if(size==0 || err!=U_BUFFER_OVERFLOW_ERROR) { 847 log_err("ucol_cloneBinary - couldn't check size. Error: %s\n", u_errorName(err)); 848 return; 849 } 850 err = U_ZERO_ERROR; 851 852 buffer = (uint8_t *) malloc(size); 853 ucol_cloneBinary(col, buffer, size, &err); 854 if(U_FAILURE(err)) { 855 log_err("ucol_cloneBinary - couldn't clone.. Error: %s\n", u_errorName(err)); 856 free(buffer); 857 return; 858 } 859 860 /* how to check binary result ? */ 861 862 c = ucol_openBinary(buffer, size, col, &err); 863 if(U_FAILURE(err)) { 864 log_err("ucol_openBinary failed. Error: %s\n", u_errorName(err)); 865 } else { 866 UChar t[] = {0x41, 0x42, 0x43, 0}; /* ABC */ 867 uint8_t *k1, *k2; 868 int l1, l2; 869 l1 = ucol_getSortKey(col, t, -1, NULL,0); 870 l2 = ucol_getSortKey(c, t, -1, NULL,0); 871 k1 = (uint8_t *) malloc(sizeof(uint8_t) * l1); 872 k2 = (uint8_t *) malloc(sizeof(uint8_t) * l2); 873 ucol_getSortKey(col, t, -1, k1, l1); 874 ucol_getSortKey(col, t, -1, k2, l2); 875 if (strcmp((char *)k1,(char *)k2) != 0){ 876 log_err("ucol_openBinary - new collator should equal to old one\n"); 877 }; 878 free(k1); 879 free(k2); 880 } 881 free(buffer); 882 ucol_close(c); 883 ucol_close(col); 884 } 885 886 887 static void TestBengaliSortKey(void) 888 { 889 const char *curLoc = "bn"; 890 UChar str1[] = { 0x09BE, 0 }; 891 UChar str2[] = { 0x0B70, 0 }; 892 UCollator *c2 = NULL; 893 const UChar *rules; 894 int32_t rulesLength=-1; 895 uint8_t *sortKey1; 896 int32_t sortKeyLen1 = 0; 897 uint8_t *sortKey2; 898 int32_t sortKeyLen2 = 0; 899 UErrorCode status = U_ZERO_ERROR; 900 char sortKeyStr1[2048]; 901 uint32_t sortKeyStrLen1 = sizeof(sortKeyStr1)/sizeof(sortKeyStr1[0]); 902 char sortKeyStr2[2048]; 903 uint32_t sortKeyStrLen2 = sizeof(sortKeyStr2)/sizeof(sortKeyStr2[0]); 904 UCollationResult result; 905 906 static UChar preRules[41] = { 0x26, 0x9fa, 0x3c, 0x98c, 0x3c, 0x9e1, 0x3c, 0x98f, 0x3c, 0x990, 0x3c, 0x993, 0x3c, 0x994, 0x3c, 0x9bc, 0x3c, 0x982, 0x3c, 0x983, 0x3c, 0x981, 0x3c, 0x9b0, 0x3c, 0x9b8, 0x3c, 0x9b9, 0x3c, 0x9bd, 0x3c, 0x9be, 0x3c, 0x9bf, 0x3c, 0x9c8, 0x3c, 0x9cb, 0x3d, 0x9cb , 0}; 907 908 rules = preRules; 909 910 log_verbose("Rules: %s\n", aescstrdup(rules, rulesLength)); 911 912 c2 = ucol_openRules(rules, rulesLength, UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL, &status); 913 if (U_FAILURE(status)) { 914 log_data_err("ERROR: Creating collator from rules failed with locale: %s : %s\n", curLoc, myErrorName(status)); 915 return; 916 } 917 918 sortKeyLen1 = ucol_getSortKey(c2, str1, -1, NULL, 0); 919 sortKey1 = (uint8_t*)malloc(sortKeyLen1+1); 920 ucol_getSortKey(c2,str1,-1,sortKey1, sortKeyLen1+1); 921 ucol_sortKeyToString(c2, sortKey1, sortKeyStr1, &sortKeyStrLen1); 922 923 924 sortKeyLen2 = ucol_getSortKey(c2, str2, -1, NULL, 0); 925 sortKey2 = (uint8_t*)malloc(sortKeyLen2+1); 926 ucol_getSortKey(c2,str2,-1,sortKey2, sortKeyLen2+1); 927 928 ucol_sortKeyToString(c2, sortKey2, sortKeyStr2, &sortKeyStrLen2); 929 930 931 932 result=ucol_strcoll(c2, str1, -1, str2, -1); 933 if(result!=UCOL_LESS) { 934 log_err("Error: %s was not less than %s: result=%d.\n", aescstrdup(str1,-1), aescstrdup(str2,-1), result); 935 log_info("[%s] -> %s (%d, from rule)\n", aescstrdup(str1,-1), sortKeyStr1, sortKeyLen1); 936 log_info("[%s] -> %s (%d, from rule)\n", aescstrdup(str2,-1), sortKeyStr2, sortKeyLen2); 937 } else { 938 log_verbose("OK: %s was less than %s: result=%d.\n", aescstrdup(str1,-1), aescstrdup(str2,-1), result); 939 log_verbose("[%s] -> %s (%d, from rule)\n", aescstrdup(str1,-1), sortKeyStr1, sortKeyLen1); 940 log_verbose("[%s] -> %s (%d, from rule)\n", aescstrdup(str2,-1), sortKeyStr2, sortKeyLen2); 941 } 942 943 free(sortKey1); 944 free(sortKey2); 945 ucol_close(c2); 946 947 } 948 949 /* 950 TestOpenVsOpenRules ensures that collators from ucol_open and ucol_openRules 951 will generate identical sort keys 952 */ 953 void TestOpenVsOpenRules(){ 954 955 /* create an array of all the locales */ 956 int32_t numLocales = uloc_countAvailable(); 957 int32_t sizeOfStdSet; 958 uint32_t adder; 959 UChar str[41]; /* create an array of UChar of size maximum strSize + 1 */ 960 USet *stdSet; 961 char* curLoc; 962 UCollator * c1; 963 UCollator * c2; 964 const UChar* rules; 965 int32_t rulesLength; 966 int32_t sortKeyLen1, sortKeyLen2; 967 uint8_t *sortKey1 = NULL, *sortKey2 = NULL; 968 ULocaleData *uld; 969 int32_t x, y, z; 970 USet *eSet; 971 int32_t eSize; 972 int strSize; 973 974 UErrorCode err = U_ZERO_ERROR; 975 976 /* create a set of standard characters that aren't very interesting... 977 and then we can find some interesting ones later */ 978 979 stdSet = uset_open(0x61, 0x7A); 980 uset_addRange(stdSet, 0x41, 0x5A); 981 uset_addRange(stdSet, 0x30, 0x39); 982 sizeOfStdSet = uset_size(stdSet); 983 984 adder = 1; 985 if(getTestOption(QUICK_OPTION)) 986 { 987 adder = 10; 988 } 989 990 for(x = 0; x < numLocales; x+=adder){ 991 curLoc = (char *)uloc_getAvailable(x); 992 log_verbose("Processing %s\n", curLoc); 993 994 /* create a collator the normal API way */ 995 c1 = ucol_open(curLoc, &err); 996 if (U_FAILURE(err)) { 997 log_err("ERROR: Normal collation creation failed with locale: %s : %s\n", curLoc, myErrorName(err)); 998 return; 999 } 1000 1001 /* grab the rules */ 1002 rules = ucol_getRules(c1, &rulesLength); 1003 1004 /* use those rules to create a collator from rules */ 1005 c2 = ucol_openRules(rules, rulesLength, UCOL_DEFAULT, UCOL_DEFAULT_STRENGTH, NULL, &err); 1006 if (U_FAILURE(err)) { 1007 log_err("ERROR: Creating collator from rules failed with locale: %s : %s\n", curLoc, myErrorName(err)); 1008 return; 1009 } 1010 1011 uld = ulocdata_open(curLoc, &err); 1012 1013 /*now that we have some collators, we get several strings */ 1014 1015 for(y = 0; y < 5; y++){ 1016 1017 /* get a set of ALL the characters in this locale */ 1018 eSet = ulocdata_getExemplarSet(uld, NULL, 0, ULOCDATA_ES_STANDARD, &err); 1019 eSize = uset_size(eSet); 1020 1021 /* make a string with these characters in it */ 1022 strSize = (rand()%40) + 1; 1023 1024 for(z = 0; z < strSize; z++){ 1025 str[z] = uset_charAt(eSet, rand()%eSize); 1026 } 1027 1028 /* change the set to only include 'abnormal' characters (not A-Z, a-z, 0-9 */ 1029 uset_removeAll(eSet, stdSet); 1030 eSize = uset_size(eSet); 1031 1032 /* if there are some non-normal characters left, put a few into the string, just to make sure we have some */ 1033 if(eSize > 0){ 1034 str[2%strSize] = uset_charAt(eSet, rand()%eSize); 1035 str[3%strSize] = uset_charAt(eSet, rand()%eSize); 1036 str[5%strSize] = uset_charAt(eSet, rand()%eSize); 1037 str[10%strSize] = uset_charAt(eSet, rand()%eSize); 1038 str[13%strSize] = uset_charAt(eSet, rand()%eSize); 1039 } 1040 /* terminate the string */ 1041 str[strSize-1] = '\0'; 1042 log_verbose("String used: %S\n", str); 1043 1044 /* get sort keys for both of them, and check that the keys are identicle */ 1045 sortKeyLen1 = ucol_getSortKey(c1, str, u_strlen(str), NULL, 0); 1046 sortKey1 = (uint8_t*)malloc(sizeof(uint8_t) * (sortKeyLen1 + 1)); 1047 /*memset(sortKey1, 0xFE, sortKeyLen1);*/ 1048 ucol_getSortKey(c1, str, u_strlen(str), sortKey1, sortKeyLen1 + 1); 1049 1050 sortKeyLen2 = ucol_getSortKey(c2, str, u_strlen(str), NULL, 0); 1051 sortKey2 = (uint8_t*)malloc(sizeof(uint8_t) * (sortKeyLen2 + 1)); 1052 /*memset(sortKey2, 0xFE, sortKeyLen2);*/ 1053 ucol_getSortKey(c2, str, u_strlen(str), sortKey2, sortKeyLen2 + 1); 1054 1055 /* Check that the lengths are the same */ 1056 doAssert((sortKeyLen1 == sortKeyLen2), "Sort key lengths do not match."); 1057 1058 /* check that the keys are the same */ 1059 doAssert((memcmp(sortKey1, sortKey2, sortKeyLen1) == 0), "Keys are not equivalent"); 1060 1061 /* clean up after each string */ 1062 free(sortKey1); 1063 free(sortKey2); 1064 uset_close(eSet); 1065 } 1066 /* clean up after each locale */ 1067 ulocdata_close(uld); 1068 ucol_close(c1); 1069 ucol_close(c2); 1070 } 1071 /* final clean up */ 1072 uset_close(stdSet); 1073 } 1074 /* 1075 ---------------------------------------------------------------------------- 1076 ctor -- Tests the getSortKey 1077 */ 1078 void TestSortKey() 1079 { 1080 uint8_t *sortk1 = NULL, *sortk2 = NULL, *sortk3 = NULL, *sortkEmpty = NULL; 1081 int32_t sortklen, osortklen; 1082 uint32_t toStringLen=0; 1083 UCollator *col; 1084 UChar *test1, *test2, *test3; 1085 UErrorCode status = U_ZERO_ERROR; 1086 char toStringBuffer[256], *resultP; 1087 1088 1089 uint8_t s1[] = { 0x9f, 0x00 }; 1090 uint8_t s2[] = { 0x61, 0x00 }; 1091 int strcmpResult; 1092 1093 strcmpResult = strcmp((const char *)s1, (const char *)s2); 1094 log_verbose("strcmp(0x9f..., 0x61...) = %d\n", strcmpResult); 1095 1096 if(strcmpResult <= 0) { 1097 log_err("ERR: expected strcmp(\"9f 00\", \"61 00\") to be >=0 (GREATER).. got %d. Calling strcmp() for sortkeys may not work! \n", 1098 strcmpResult); 1099 } 1100 1101 1102 log_verbose("testing SortKey begins...\n"); 1103 /* this is supposed to open default date format, but later on it treats it like it is "en_US" 1104 - very bad if you try to run the tests on machine where default locale is NOT "en_US" */ 1105 /* col = ucol_open(NULL, &status); */ 1106 col = ucol_open("en_US", &status); 1107 if (U_FAILURE(status)) { 1108 log_err_status(status, "ERROR: Default collation creation failed.: %s\n", myErrorName(status)); 1109 return; 1110 } 1111 1112 1113 if(ucol_getStrength(col) != UCOL_DEFAULT_STRENGTH) 1114 { 1115 log_err("ERROR: default collation did not have UCOL_DEFAULT_STRENGTH !\n"); 1116 } 1117 /* Need to use identical strength */ 1118 ucol_setAttribute(col, UCOL_STRENGTH, UCOL_IDENTICAL, &status); 1119 1120 test1=(UChar*)malloc(sizeof(UChar) * 6); 1121 test2=(UChar*)malloc(sizeof(UChar) * 6); 1122 test3=(UChar*)malloc(sizeof(UChar) * 6); 1123 1124 memset(test1,0xFE, sizeof(UChar)*6); 1125 memset(test2,0xFE, sizeof(UChar)*6); 1126 memset(test3,0xFE, sizeof(UChar)*6); 1127 1128 1129 u_uastrcpy(test1, "Abcda"); 1130 u_uastrcpy(test2, "abcda"); 1131 u_uastrcpy(test3, "abcda"); 1132 1133 log_verbose("Use tertiary comparison level testing ....\n"); 1134 1135 sortklen=ucol_getSortKey(col, test1, u_strlen(test1), NULL, 0); 1136 sortk1=(uint8_t*)malloc(sizeof(uint8_t) * (sortklen+1)); 1137 memset(sortk1,0xFE, sortklen); 1138 ucol_getSortKey(col, test1, u_strlen(test1), sortk1, sortklen+1); 1139 1140 sortklen=ucol_getSortKey(col, test2, u_strlen(test2), NULL, 0); 1141 sortk2=(uint8_t*)malloc(sizeof(uint8_t) * (sortklen+1)); 1142 memset(sortk2,0xFE, sortklen); 1143 ucol_getSortKey(col, test2, u_strlen(test2), sortk2, sortklen+1); 1144 1145 osortklen = sortklen; 1146 sortklen=ucol_getSortKey(col, test2, u_strlen(test3), NULL, 0); 1147 sortk3=(uint8_t*)malloc(sizeof(uint8_t) * (sortklen+1)); 1148 memset(sortk3,0xFE, sortklen); 1149 ucol_getSortKey(col, test2, u_strlen(test2), sortk3, sortklen+1); 1150 1151 doAssert( (sortklen == osortklen), "Sortkey length should be the same (abcda, abcda)"); 1152 1153 doAssert( (memcmp(sortk1, sortk2, sortklen) > 0), "Result should be \"Abcda\" > \"abcda\""); 1154 doAssert( (memcmp(sortk2, sortk1, sortklen) < 0), "Result should be \"abcda\" < \"Abcda\""); 1155 doAssert( (memcmp(sortk2, sortk3, sortklen) == 0), "Result should be \"abcda\" == \"abcda\""); 1156 1157 resultP = ucol_sortKeyToString(col, sortk3, toStringBuffer, &toStringLen); 1158 doAssert( (resultP != 0), "sortKeyToString failed!"); 1159 1160 #if 1 /* verobse log of sortkeys */ 1161 { 1162 char junk2[1000]; 1163 char junk3[1000]; 1164 int i; 1165 1166 strcpy(junk2, "abcda[2] "); 1167 strcpy(junk3, " abcda[3] "); 1168 1169 for(i=0;i<sortklen;i++) 1170 { 1171 sprintf(junk2+strlen(junk2), "%02X ",(int)( 0xFF & sortk2[i])); 1172 sprintf(junk3+strlen(junk3), "%02X ",(int)( 0xFF & sortk3[i])); 1173 } 1174 1175 log_verbose("%s\n", junk2); 1176 log_verbose("%s\n", junk3); 1177 } 1178 #endif 1179 1180 free(sortk1); 1181 free(sortk2); 1182 free(sortk3); 1183 1184 log_verbose("Use secondary comparision level testing ...\n"); 1185 ucol_setStrength(col, UCOL_SECONDARY); 1186 sortklen=ucol_getSortKey(col, test1, u_strlen(test1), NULL, 0); 1187 sortk1=(uint8_t*)malloc(sizeof(uint8_t) * (sortklen+1)); 1188 ucol_getSortKey(col, test1, u_strlen(test1), sortk1, sortklen+1); 1189 sortklen=ucol_getSortKey(col, test2, u_strlen(test2), NULL, 0); 1190 sortk2=(uint8_t*)malloc(sizeof(uint8_t) * (sortklen+1)); 1191 ucol_getSortKey(col, test2, u_strlen(test2), sortk2, sortklen+1); 1192 1193 doAssert( !(memcmp(sortk1, sortk2, sortklen) > 0), "Result should be \"Abcda\" == \"abcda\""); 1194 doAssert( !(memcmp(sortk2, sortk1, sortklen) < 0), "Result should be \"abcda\" == \"Abcda\""); 1195 doAssert( (memcmp(sortk1, sortk2, sortklen) == 0), "Result should be \"abcda\" == \"abcda\""); 1196 1197 log_verbose("getting sortkey for an empty string\n"); 1198 ucol_setAttribute(col, UCOL_STRENGTH, UCOL_TERTIARY, &status); 1199 sortklen = ucol_getSortKey(col, test1, 0, NULL, 0); 1200 sortkEmpty = (uint8_t*)malloc(sizeof(uint8_t) * sortklen+1); 1201 sortklen = ucol_getSortKey(col, test1, 0, sortkEmpty, sortklen+1); 1202 if(sortklen != 3 || sortkEmpty[0] != 1 || sortkEmpty[0] != 1 || sortkEmpty[2] != 0) { 1203 log_err("Empty string generated wrong sortkey!\n"); 1204 } 1205 free(sortkEmpty); 1206 1207 log_verbose("testing passing invalid string\n"); 1208 sortklen = ucol_getSortKey(col, NULL, 0, NULL, 0); 1209 if(sortklen != 0) { 1210 log_err("Invalid string didn't return sortkey size of 0\n"); 1211 } 1212 1213 1214 log_verbose("testing sortkey ends...\n"); 1215 ucol_close(col); 1216 free(test1); 1217 free(test2); 1218 free(test3); 1219 free(sortk1); 1220 free(sortk2); 1221 1222 } 1223 void TestHashCode() 1224 { 1225 uint8_t *sortk1, *sortk2, *sortk3; 1226 int32_t sortk1len, sortk2len, sortk3len; 1227 UCollator *col; 1228 UChar *test1, *test2, *test3; 1229 UErrorCode status = U_ZERO_ERROR; 1230 log_verbose("testing getHashCode begins...\n"); 1231 col = ucol_open("en_US", &status); 1232 if (U_FAILURE(status)) { 1233 log_err_status(status, "ERROR: Default collation creation failed.: %s\n", myErrorName(status)); 1234 return; 1235 } 1236 test1=(UChar*)malloc(sizeof(UChar) * 6); 1237 test2=(UChar*)malloc(sizeof(UChar) * 6); 1238 test3=(UChar*)malloc(sizeof(UChar) * 6); 1239 u_uastrcpy(test1, "Abcda"); 1240 u_uastrcpy(test2, "abcda"); 1241 u_uastrcpy(test3, "abcda"); 1242 1243 log_verbose("Use tertiary comparison level testing ....\n"); 1244 sortk1len=ucol_getSortKey(col, test1, u_strlen(test1), NULL, 0); 1245 sortk1=(uint8_t*)malloc(sizeof(uint8_t) * (sortk1len+1)); 1246 ucol_getSortKey(col, test1, u_strlen(test1), sortk1, sortk1len+1); 1247 sortk2len=ucol_getSortKey(col, test2, u_strlen(test2), NULL, 0); 1248 sortk2=(uint8_t*)malloc(sizeof(uint8_t) * (sortk2len+1)); 1249 ucol_getSortKey(col, test2, u_strlen(test2), sortk2, sortk2len+1); 1250 sortk3len=ucol_getSortKey(col, test2, u_strlen(test3), NULL, 0); 1251 sortk3=(uint8_t*)malloc(sizeof(uint8_t) * (sortk3len+1)); 1252 ucol_getSortKey(col, test2, u_strlen(test2), sortk3, sortk3len+1); 1253 1254 1255 log_verbose("ucol_hashCode() testing ...\n"); 1256 1257 doAssert( ucol_keyHashCode(sortk1, sortk1len) != ucol_keyHashCode(sortk2, sortk2len), "Hash test1 result incorrect" ); 1258 doAssert( !(ucol_keyHashCode(sortk1, sortk1len) == ucol_keyHashCode(sortk2, sortk2len)), "Hash test2 result incorrect" ); 1259 doAssert( ucol_keyHashCode(sortk2, sortk2len) == ucol_keyHashCode(sortk3, sortk3len), "Hash result not equal" ); 1260 1261 log_verbose("hashCode tests end.\n"); 1262 ucol_close(col); 1263 free(sortk1); 1264 free(sortk2); 1265 free(sortk3); 1266 free(test1); 1267 free(test2); 1268 free(test3); 1269 1270 1271 } 1272 /* 1273 *---------------------------------------------------------------------------- 1274 * Tests the UCollatorElements API. 1275 * 1276 */ 1277 void TestElemIter() 1278 { 1279 int32_t offset; 1280 int32_t order1, order2, order3; 1281 UChar *testString1, *testString2; 1282 UCollator *col; 1283 UCollationElements *iterator1, *iterator2, *iterator3; 1284 UErrorCode status = U_ZERO_ERROR; 1285 log_verbose("testing UCollatorElements begins...\n"); 1286 col = ucol_open("en_US", &status); 1287 ucol_setAttribute(col, UCOL_NORMALIZATION_MODE, UCOL_OFF, &status); 1288 if (U_FAILURE(status)) { 1289 log_err_status(status, "ERROR: Default collation creation failed.: %s\n", myErrorName(status)); 1290 return; 1291 } 1292 1293 testString1=(UChar*)malloc(sizeof(UChar) * 150); 1294 testString2=(UChar*)malloc(sizeof(UChar) * 150); 1295 u_uastrcpy(testString1, "XFILE What subset of all possible test cases has the highest probability of detecting the most errors?"); 1296 u_uastrcpy(testString2, "Xf_ile What subset of all possible test cases has the lowest probability of detecting the least errors?"); 1297 1298 log_verbose("Constructors and comparison testing....\n"); 1299 1300 iterator1 = ucol_openElements(col, testString1, u_strlen(testString1), &status); 1301 if(U_FAILURE(status)) { 1302 log_err("ERROR: Default collationElement iterator creation failed.: %s\n", myErrorName(status)); 1303 ucol_close(col); 1304 return; 1305 } 1306 else{ log_verbose("PASS: Default collationElement iterator1 creation passed\n");} 1307 1308 iterator2 = ucol_openElements(col, testString1, u_strlen(testString1), &status); 1309 if(U_FAILURE(status)) { 1310 log_err("ERROR: Default collationElement iterator creation failed.: %s\n", myErrorName(status)); 1311 ucol_close(col); 1312 return; 1313 } 1314 else{ log_verbose("PASS: Default collationElement iterator2 creation passed\n");} 1315 1316 iterator3 = ucol_openElements(col, testString2, u_strlen(testString2), &status); 1317 if(U_FAILURE(status)) { 1318 log_err("ERROR: Default collationElement iterator creation failed.: %s\n", myErrorName(status)); 1319 ucol_close(col); 1320 return; 1321 } 1322 else{ log_verbose("PASS: Default collationElement iterator3 creation passed\n");} 1323 1324 offset=ucol_getOffset(iterator1); 1325 ucol_setOffset(iterator1, 6, &status); 1326 if (U_FAILURE(status)) { 1327 log_err("Error in setOffset for UCollatorElements iterator.: %s\n", myErrorName(status)); 1328 return; 1329 } 1330 if(ucol_getOffset(iterator1)==6) 1331 log_verbose("setOffset and getOffset working fine\n"); 1332 else{ 1333 log_err("error in set and get Offset got %d instead of 6\n", ucol_getOffset(iterator1)); 1334 } 1335 1336 ucol_setOffset(iterator1, 0, &status); 1337 order1 = ucol_next(iterator1, &status); 1338 if (U_FAILURE(status)) { 1339 log_err("Somehow ran out of memory stepping through the iterator1.: %s\n", myErrorName(status)); 1340 return; 1341 } 1342 order2=ucol_getOffset(iterator2); 1343 doAssert((order1 != order2), "The first iterator advance failed"); 1344 order2 = ucol_next(iterator2, &status); 1345 if (U_FAILURE(status)) { 1346 log_err("Somehow ran out of memory stepping through the iterator2.: %s\n", myErrorName(status)); 1347 return; 1348 } 1349 order3 = ucol_next(iterator3, &status); 1350 if (U_FAILURE(status)) { 1351 log_err("Somehow ran out of memory stepping through the iterator3.: %s\n", myErrorName(status)); 1352 return; 1353 } 1354 1355 doAssert((order1 == order2), "The second iterator advance failed should be the same as first one"); 1356 1357 doAssert( (ucol_primaryOrder(order1) == ucol_primaryOrder(order3)), "The primary orders should be identical"); 1358 doAssert( (ucol_secondaryOrder(order1) == ucol_secondaryOrder(order3)), "The secondary orders should be identical"); 1359 doAssert( (ucol_tertiaryOrder(order1) == ucol_tertiaryOrder(order3)), "The tertiary orders should be identical"); 1360 1361 order1=ucol_next(iterator1, &status); 1362 if (U_FAILURE(status)) { 1363 log_err("Somehow ran out of memory stepping through the iterator2.: %s\n", myErrorName(status)); 1364 return; 1365 } 1366 order3=ucol_next(iterator3, &status); 1367 if (U_FAILURE(status)) { 1368 log_err("Somehow ran out of memory stepping through the iterator2.: %s\n", myErrorName(status)); 1369 return; 1370 } 1371 doAssert( (ucol_primaryOrder(order1) == ucol_primaryOrder(order3)), "The primary orders should be identical"); 1372 doAssert( (ucol_tertiaryOrder(order1) != ucol_tertiaryOrder(order3)), "The tertiary orders should be different"); 1373 1374 order1=ucol_next(iterator1, &status); 1375 if (U_FAILURE(status)) { 1376 log_err("Somehow ran out of memory stepping through the iterator2.: %s\n", myErrorName(status)); 1377 return; 1378 } 1379 order3=ucol_next(iterator3, &status); 1380 if (U_FAILURE(status)) { 1381 log_err("Somehow ran out of memory stepping through the iterator2.: %s\n", myErrorName(status)); 1382 return; 1383 } 1384 /* this here, my friends, is either pure lunacy or something so obsolete that even it's mother 1385 * doesn't care about it. Essentialy, this test complains if secondary values for 'I' and '_' 1386 * are the same. According to the UCA, this is not true. Therefore, remove the test. 1387 * Besides, if primary strengths for two code points are different, it doesn't matter one bit 1388 * what is the relation between secondary or any other strengths. 1389 * killed by weiv 06/11/2002. 1390 */ 1391 /* 1392 doAssert( ((order1 & UCOL_SECONDARYMASK) != (order3 & UCOL_SECONDARYMASK)), "The secondary orders should be different"); 1393 */ 1394 doAssert( (order1 != UCOL_NULLORDER), "Unexpected end of iterator reached"); 1395 1396 free(testString1); 1397 free(testString2); 1398 ucol_closeElements(iterator1); 1399 ucol_closeElements(iterator2); 1400 ucol_closeElements(iterator3); 1401 ucol_close(col); 1402 1403 log_verbose("testing CollationElementIterator ends...\n"); 1404 } 1405 1406 void TestGetLocale() { 1407 UErrorCode status = U_ZERO_ERROR; 1408 const char *rules = "&a<x<y<z"; 1409 UChar rlz[256] = {0}; 1410 uint32_t rlzLen = u_unescape(rules, rlz, 256); 1411 1412 UCollator *coll = NULL; 1413 const char *locale = NULL; 1414 1415 int32_t i = 0; 1416 1417 /* Now that the collation tree is separate, actual==valid at all times. [alan] */ 1418 static const struct { 1419 const char* requestedLocale; 1420 const char* validLocale; 1421 const char* actualLocale; 1422 } testStruct[] = { 1423 { "sr_RS", "sr_Cyrl_RS", "sr" }, 1424 { "sh_YU", "sr_Latn_RS", "hr" }, /* this used to be sh, but now sh collation aliases hr */ 1425 { "en_BE_FOO", "en_BE", "root" }, 1426 { "de_DE_NONEXISTANT", "de_DE", "de" } 1427 }; 1428 1429 /* test opening collators for different locales */ 1430 for(i = 0; i<sizeof(testStruct)/sizeof(testStruct[0]); i++) { 1431 status = U_ZERO_ERROR; 1432 coll = ucol_open(testStruct[i].requestedLocale, &status); 1433 if(U_FAILURE(status)) { 1434 log_err_status(status, "Failed to open collator for %s with %s\n", testStruct[i].requestedLocale, u_errorName(status)); 1435 ucol_close(coll); 1436 continue; 1437 } 1438 locale = ucol_getLocaleByType(coll, ULOC_REQUESTED_LOCALE, &status); 1439 if(strcmp(locale, testStruct[i].requestedLocale) != 0) { 1440 log_err("[Coll %s]: Error in requested locale, expected %s, got %s\n", testStruct[i].requestedLocale, testStruct[i].requestedLocale, locale); 1441 } 1442 locale = ucol_getLocaleByType(coll, ULOC_VALID_LOCALE, &status); 1443 if(strcmp(locale, testStruct[i].validLocale) != 0) { 1444 log_err("[Coll %s]: Error in valid locale, expected %s, got %s\n", testStruct[i].requestedLocale, testStruct[i].validLocale, locale); 1445 } 1446 locale = ucol_getLocaleByType(coll, ULOC_ACTUAL_LOCALE, &status); 1447 if(strcmp(locale, testStruct[i].actualLocale) != 0) { 1448 log_err("[Coll %s]: Error in actual locale, expected %s, got %s\n", testStruct[i].requestedLocale, testStruct[i].actualLocale, locale); 1449 } 1450 ucol_close(coll); 1451 } 1452 1453 /* completely non-existant locale for collator should get a default collator */ 1454 { 1455 UCollator *defaultColl = ucol_open(NULL, &status); 1456 coll = ucol_open("blahaha", &status); 1457 if(U_SUCCESS(status)) { 1458 if(strcmp(ucol_getLocaleByType(coll, ULOC_REQUESTED_LOCALE, &status), "blahaha")) { 1459 log_err("Nonexisting locale didn't preserve the requested locale\n"); 1460 } 1461 if(strcmp(ucol_getLocaleByType(coll, ULOC_VALID_LOCALE, &status), 1462 ucol_getLocaleByType(defaultColl, ULOC_VALID_LOCALE, &status))) { 1463 log_err("Valid locale for nonexisting locale locale collator differs " 1464 "from valid locale for default collator\n"); 1465 } 1466 if(strcmp(ucol_getLocaleByType(coll, ULOC_ACTUAL_LOCALE, &status), 1467 ucol_getLocaleByType(defaultColl, ULOC_ACTUAL_LOCALE, &status))) { 1468 log_err("Actual locale for nonexisting locale locale collator differs " 1469 "from actual locale for default collator\n"); 1470 } 1471 ucol_close(coll); 1472 ucol_close(defaultColl); 1473 } else { 1474 log_data_err("Couldn't open collators\n"); 1475 } 1476 } 1477 1478 1479 1480 /* collator instantiated from rules should have all three locales NULL */ 1481 coll = ucol_openRules(rlz, rlzLen, UCOL_DEFAULT, UCOL_DEFAULT, NULL, &status); 1482 locale = ucol_getLocaleByType(coll, ULOC_REQUESTED_LOCALE, &status); 1483 if(locale != NULL) { 1484 log_err("For collator instantiated from rules, requested locale returned %s instead of NULL\n", locale); 1485 } 1486 locale = ucol_getLocaleByType(coll, ULOC_VALID_LOCALE, &status); 1487 if(locale != NULL) { 1488 log_err("For collator instantiated from rules, valid locale returned %s instead of NULL\n", locale); 1489 } 1490 locale = ucol_getLocaleByType(coll, ULOC_ACTUAL_LOCALE, &status); 1491 if(locale != NULL) { 1492 log_err("For collator instantiated from rules, actual locale returned %s instead of NULL\n", locale); 1493 } 1494 ucol_close(coll); 1495 1496 } 1497 1498 1499 void TestGetAll() 1500 { 1501 int32_t i, count; 1502 count=ucol_countAvailable(); 1503 /* use something sensible w/o hardcoding the count */ 1504 if(count < 0){ 1505 log_err("Error in countAvailable(), it returned %d\n", count); 1506 } 1507 else{ 1508 log_verbose("PASS: countAvailable() successful, it returned %d\n", count); 1509 } 1510 for(i=0;i<count;i++) 1511 log_verbose("%s\n", ucol_getAvailable(i)); 1512 1513 1514 } 1515 1516 1517 struct teststruct { 1518 const char *original; 1519 uint8_t key[256]; 1520 } ; 1521 1522 static int compare_teststruct(const void *string1, const void *string2) { 1523 return(strcmp((const char *)((struct teststruct *)string1)->key, (const char *)((struct teststruct *)string2)->key)); 1524 } 1525 1526 void TestBounds() { 1527 UErrorCode status = U_ZERO_ERROR; 1528 1529 UCollator *coll = ucol_open("sh", &status); 1530 1531 uint8_t sortkey[512], lower[512], upper[512]; 1532 UChar buffer[512]; 1533 1534 static const char * const test[] = { 1535 "John Smith", 1536 "JOHN SMITH", 1537 "john SMITH", 1538 "j\\u00F6hn sm\\u00EFth", 1539 "J\\u00F6hn Sm\\u00EFth", 1540 "J\\u00D6HN SM\\u00CFTH", 1541 "john smithsonian", 1542 "John Smithsonian", 1543 }; 1544 1545 struct teststruct tests[] = { 1546 {"\\u010CAKI MIHALJ" } , 1547 {"\\u010CAKI MIHALJ" } , 1548 {"\\u010CAKI PIRO\\u0160KA" }, 1549 {"\\u010CABAI ANDRIJA" } , 1550 {"\\u010CABAI LAJO\\u0160" } , 1551 {"\\u010CABAI MARIJA" } , 1552 {"\\u010CABAI STEVAN" } , 1553 {"\\u010CABAI STEVAN" } , 1554 {"\\u010CABARKAPA BRANKO" } , 1555 {"\\u010CABARKAPA MILENKO" } , 1556 {"\\u010CABARKAPA MIROSLAV" } , 1557 {"\\u010CABARKAPA SIMO" } , 1558 {"\\u010CABARKAPA STANKO" } , 1559 {"\\u010CABARKAPA TAMARA" } , 1560 {"\\u010CABARKAPA TOMA\\u0160" } , 1561 {"\\u010CABDARI\\u0106 NIKOLA" } , 1562 {"\\u010CABDARI\\u0106 ZORICA" } , 1563 {"\\u010CABI NANDOR" } , 1564 {"\\u010CABOVI\\u0106 MILAN" } , 1565 {"\\u010CABRADI AGNEZIJA" } , 1566 {"\\u010CABRADI IVAN" } , 1567 {"\\u010CABRADI JELENA" } , 1568 {"\\u010CABRADI LJUBICA" } , 1569 {"\\u010CABRADI STEVAN" } , 1570 {"\\u010CABRDA MARTIN" } , 1571 {"\\u010CABRILO BOGDAN" } , 1572 {"\\u010CABRILO BRANISLAV" } , 1573 {"\\u010CABRILO LAZAR" } , 1574 {"\\u010CABRILO LJUBICA" } , 1575 {"\\u010CABRILO SPASOJA" } , 1576 {"\\u010CADE\\u0160 ZDENKA" } , 1577 {"\\u010CADESKI BLAGOJE" } , 1578 {"\\u010CADOVSKI VLADIMIR" } , 1579 {"\\u010CAGLJEVI\\u0106 TOMA" } , 1580 {"\\u010CAGOROVI\\u0106 VLADIMIR" } , 1581 {"\\u010CAJA VANKA" } , 1582 {"\\u010CAJI\\u0106 BOGOLJUB" } , 1583 {"\\u010CAJI\\u0106 BORISLAV" } , 1584 {"\\u010CAJI\\u0106 RADOSLAV" } , 1585 {"\\u010CAK\\u0160IRAN MILADIN" } , 1586 {"\\u010CAKAN EUGEN" } , 1587 {"\\u010CAKAN EVGENIJE" } , 1588 {"\\u010CAKAN IVAN" } , 1589 {"\\u010CAKAN JULIJAN" } , 1590 {"\\u010CAKAN MIHAJLO" } , 1591 {"\\u010CAKAN STEVAN" } , 1592 {"\\u010CAKAN VLADIMIR" } , 1593 {"\\u010CAKAN VLADIMIR" } , 1594 {"\\u010CAKAN VLADIMIR" } , 1595 {"\\u010CAKARA ANA" } , 1596 {"\\u010CAKAREVI\\u0106 MOMIR" } , 1597 {"\\u010CAKAREVI\\u0106 NEDELJKO" } , 1598 {"\\u010CAKI \\u0160ANDOR" } , 1599 {"\\u010CAKI AMALIJA" } , 1600 {"\\u010CAKI ANDRA\\u0160" } , 1601 {"\\u010CAKI LADISLAV" } , 1602 {"\\u010CAKI LAJO\\u0160" } , 1603 {"\\u010CAKI LASLO" } , 1604 }; 1605 1606 1607 1608 int32_t i = 0, j = 0, k = 0, buffSize = 0, skSize = 0, lowerSize = 0, upperSize = 0; 1609 int32_t arraySize = sizeof(tests)/sizeof(tests[0]); 1610 1611 if(U_SUCCESS(status) && coll) { 1612 for(i = 0; i<arraySize; i++) { 1613 buffSize = u_unescape(tests[i].original, buffer, 512); 1614 skSize = ucol_getSortKey(coll, buffer, buffSize, tests[i].key, 512); 1615 } 1616 1617 qsort(tests, arraySize, sizeof(struct teststruct), compare_teststruct); 1618 1619 for(i = 0; i < arraySize-1; i++) { 1620 for(j = i+1; j < arraySize; j++) { 1621 lowerSize = ucol_getBound(tests[i].key, -1, UCOL_BOUND_LOWER, 1, lower, 512, &status); 1622 upperSize = ucol_getBound(tests[j].key, -1, UCOL_BOUND_UPPER, 1, upper, 512, &status); 1623 for(k = i; k <= j; k++) { 1624 if(strcmp((const char *)lower, (const char *)tests[k].key) > 0) { 1625 log_err("Problem with lower! j = %i (%s vs %s)\n", k, tests[k].original, tests[i].original); 1626 } 1627 if(strcmp((const char *)upper, (const char *)tests[k].key) <= 0) { 1628 log_err("Problem with upper! j = %i (%s vs %s)\n", k, tests[k].original, tests[j].original); 1629 } 1630 } 1631 } 1632 } 1633 1634 1635 #if 0 1636 for(i = 0; i < 1000; i++) { 1637 lowerRND = (rand()/(RAND_MAX/arraySize)); 1638 upperRND = lowerRND + (rand()/(RAND_MAX/(arraySize-lowerRND))); 1639 1640 lowerSize = ucol_getBound(tests[lowerRND].key, -1, UCOL_BOUND_LOWER, 1, lower, 512, &status); 1641 upperSize = ucol_getBound(tests[upperRND].key, -1, UCOL_BOUND_UPPER_LONG, 1, upper, 512, &status); 1642 1643 for(j = lowerRND; j<=upperRND; j++) { 1644 if(strcmp(lower, tests[j].key) > 0) { 1645 log_err("Problem with lower! j = %i (%s vs %s)\n", j, tests[j].original, tests[lowerRND].original); 1646 } 1647 if(strcmp(upper, tests[j].key) <= 0) { 1648 log_err("Problem with upper! j = %i (%s vs %s)\n", j, tests[j].original, tests[upperRND].original); 1649 } 1650 } 1651 } 1652 #endif 1653 1654 1655 1656 1657 1658 for(i = 0; i<sizeof(test)/sizeof(test[0]); i++) { 1659 buffSize = u_unescape(test[i], buffer, 512); 1660 skSize = ucol_getSortKey(coll, buffer, buffSize, sortkey, 512); 1661 lowerSize = ucol_getBound(sortkey, skSize, UCOL_BOUND_LOWER, 1, lower, 512, &status); 1662 upperSize = ucol_getBound(sortkey, skSize, UCOL_BOUND_UPPER_LONG, 1, upper, 512, &status); 1663 for(j = i+1; j<sizeof(test)/sizeof(test[0]); j++) { 1664 buffSize = u_unescape(test[j], buffer, 512); 1665 skSize = ucol_getSortKey(coll, buffer, buffSize, sortkey, 512); 1666 if(strcmp((const char *)lower, (const char *)sortkey) > 0) { 1667 log_err("Problem with lower! i = %i, j = %i (%s vs %s)\n", i, j, test[i], test[j]); 1668 } 1669 if(strcmp((const char *)upper, (const char *)sortkey) <= 0) { 1670 log_err("Problem with upper! i = %i, j = %i (%s vs %s)\n", i, j, test[i], test[j]); 1671 } 1672 } 1673 } 1674 ucol_close(coll); 1675 } else { 1676 log_data_err("Couldn't open collator\n"); 1677 } 1678 1679 } 1680 1681 static void doOverrunTest(UCollator *coll, const UChar *uString, int32_t strLen) { 1682 int32_t skLen = 0, skLen2 = 0; 1683 uint8_t sortKey[256]; 1684 int32_t i, j; 1685 uint8_t filler = 0xFF; 1686 1687 skLen = ucol_getSortKey(coll, uString, strLen, NULL, 0); 1688 1689 for(i = 0; i < skLen; i++) { 1690 memset(sortKey, filler, 256); 1691 skLen2 = ucol_getSortKey(coll, uString, strLen, sortKey, i); 1692 if(skLen != skLen2) { 1693 log_err("For buffer size %i, got different sortkey length. Expected %i got %i\n", i, skLen, skLen2); 1694 } 1695 for(j = i; j < 256; j++) { 1696 if(sortKey[j] != filler) { 1697 log_err("Something run over index %i\n", j); 1698 break; 1699 } 1700 } 1701 } 1702 } 1703 1704 /* j1865 reports that if a shorter buffer is passed to 1705 * to get sort key, a buffer overrun happens in some 1706 * cases. This test tries to check this. 1707 */ 1708 void TestSortKeyBufferOverrun(void) { 1709 UErrorCode status = U_ZERO_ERROR; 1710 const char* cString = "A very Merry liTTle-lamB.."; 1711 UChar uString[256]; 1712 int32_t strLen = 0; 1713 UCollator *coll = ucol_open("root", &status); 1714 strLen = u_unescape(cString, uString, 256); 1715 1716 if(U_SUCCESS(status)) { 1717 log_verbose("testing non ignorable\n"); 1718 ucol_setAttribute(coll, UCOL_ALTERNATE_HANDLING, UCOL_NON_IGNORABLE, &status); 1719 doOverrunTest(coll, uString, strLen); 1720 1721 log_verbose("testing shifted\n"); 1722 ucol_setAttribute(coll, UCOL_ALTERNATE_HANDLING, UCOL_SHIFTED, &status); 1723 doOverrunTest(coll, uString, strLen); 1724 1725 log_verbose("testing shifted quaternary\n"); 1726 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_QUATERNARY, &status); 1727 doOverrunTest(coll, uString, strLen); 1728 1729 log_verbose("testing with french secondaries\n"); 1730 ucol_setAttribute(coll, UCOL_FRENCH_COLLATION, UCOL_ON, &status); 1731 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_TERTIARY, &status); 1732 ucol_setAttribute(coll, UCOL_ALTERNATE_HANDLING, UCOL_NON_IGNORABLE, &status); 1733 doOverrunTest(coll, uString, strLen); 1734 1735 } 1736 ucol_close(coll); 1737 } 1738 1739 static void TestAttribute() 1740 { 1741 UErrorCode error = U_ZERO_ERROR; 1742 UCollator *coll = ucol_open(NULL, &error); 1743 1744 if (U_FAILURE(error)) { 1745 log_err_status(error, "Creation of default collator failed\n"); 1746 return; 1747 } 1748 1749 ucol_setAttribute(coll, UCOL_FRENCH_COLLATION, UCOL_OFF, &error); 1750 if (ucol_getAttribute(coll, UCOL_FRENCH_COLLATION, &error) != UCOL_OFF || 1751 U_FAILURE(error)) { 1752 log_err_status(error, "Setting and retrieving of the french collation failed\n"); 1753 } 1754 1755 ucol_setAttribute(coll, UCOL_FRENCH_COLLATION, UCOL_ON, &error); 1756 if (ucol_getAttribute(coll, UCOL_FRENCH_COLLATION, &error) != UCOL_ON || 1757 U_FAILURE(error)) { 1758 log_err_status(error, "Setting and retrieving of the french collation failed\n"); 1759 } 1760 1761 ucol_setAttribute(coll, UCOL_ALTERNATE_HANDLING, UCOL_SHIFTED, &error); 1762 if (ucol_getAttribute(coll, UCOL_ALTERNATE_HANDLING, &error) != UCOL_SHIFTED || 1763 U_FAILURE(error)) { 1764 log_err_status(error, "Setting and retrieving of the alternate handling failed\n"); 1765 } 1766 1767 ucol_setAttribute(coll, UCOL_ALTERNATE_HANDLING, UCOL_NON_IGNORABLE, &error); 1768 if (ucol_getAttribute(coll, UCOL_ALTERNATE_HANDLING, &error) != UCOL_NON_IGNORABLE || 1769 U_FAILURE(error)) { 1770 log_err_status(error, "Setting and retrieving of the alternate handling failed\n"); 1771 } 1772 1773 ucol_setAttribute(coll, UCOL_CASE_FIRST, UCOL_LOWER_FIRST, &error); 1774 if (ucol_getAttribute(coll, UCOL_CASE_FIRST, &error) != UCOL_LOWER_FIRST || 1775 U_FAILURE(error)) { 1776 log_err_status(error, "Setting and retrieving of the case first attribute failed\n"); 1777 } 1778 1779 ucol_setAttribute(coll, UCOL_CASE_FIRST, UCOL_UPPER_FIRST, &error); 1780 if (ucol_getAttribute(coll, UCOL_CASE_FIRST, &error) != UCOL_UPPER_FIRST || 1781 U_FAILURE(error)) { 1782 log_err_status(error, "Setting and retrieving of the case first attribute failed\n"); 1783 } 1784 1785 ucol_setAttribute(coll, UCOL_CASE_LEVEL, UCOL_ON, &error); 1786 if (ucol_getAttribute(coll, UCOL_CASE_LEVEL, &error) != UCOL_ON || 1787 U_FAILURE(error)) { 1788 log_err_status(error, "Setting and retrieving of the case level attribute failed\n"); 1789 } 1790 1791 ucol_setAttribute(coll, UCOL_CASE_LEVEL, UCOL_OFF, &error); 1792 if (ucol_getAttribute(coll, UCOL_CASE_LEVEL, &error) != UCOL_OFF || 1793 U_FAILURE(error)) { 1794 log_err_status(error, "Setting and retrieving of the case level attribute failed\n"); 1795 } 1796 1797 ucol_setAttribute(coll, UCOL_NORMALIZATION_MODE, UCOL_ON, &error); 1798 if (ucol_getAttribute(coll, UCOL_NORMALIZATION_MODE, &error) != UCOL_ON || 1799 U_FAILURE(error)) { 1800 log_err_status(error, "Setting and retrieving of the normalization on/off attribute failed\n"); 1801 } 1802 1803 ucol_setAttribute(coll, UCOL_NORMALIZATION_MODE, UCOL_OFF, &error); 1804 if (ucol_getAttribute(coll, UCOL_NORMALIZATION_MODE, &error) != UCOL_OFF || 1805 U_FAILURE(error)) { 1806 log_err_status(error, "Setting and retrieving of the normalization on/off attribute failed\n"); 1807 } 1808 1809 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_PRIMARY, &error); 1810 if (ucol_getAttribute(coll, UCOL_STRENGTH, &error) != UCOL_PRIMARY || 1811 U_FAILURE(error)) { 1812 log_err_status(error, "Setting and retrieving of the collation strength failed\n"); 1813 } 1814 1815 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_SECONDARY, &error); 1816 if (ucol_getAttribute(coll, UCOL_STRENGTH, &error) != UCOL_SECONDARY || 1817 U_FAILURE(error)) { 1818 log_err_status(error, "Setting and retrieving of the collation strength failed\n"); 1819 } 1820 1821 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_TERTIARY, &error); 1822 if (ucol_getAttribute(coll, UCOL_STRENGTH, &error) != UCOL_TERTIARY || 1823 U_FAILURE(error)) { 1824 log_err_status(error, "Setting and retrieving of the collation strength failed\n"); 1825 } 1826 1827 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_QUATERNARY, &error); 1828 if (ucol_getAttribute(coll, UCOL_STRENGTH, &error) != UCOL_QUATERNARY || 1829 U_FAILURE(error)) { 1830 log_err_status(error, "Setting and retrieving of the collation strength failed\n"); 1831 } 1832 1833 ucol_setAttribute(coll, UCOL_STRENGTH, UCOL_IDENTICAL, &error); 1834 if (ucol_getAttribute(coll, UCOL_STRENGTH, &error) != UCOL_IDENTICAL || 1835 U_FAILURE(error)) { 1836 log_err_status(error, "Setting and retrieving of the collation strength failed\n"); 1837 } 1838 1839 ucol_close(coll); 1840 } 1841 1842 void TestGetTailoredSet() { 1843 struct { 1844 const char *rules; 1845 const char *tests[20]; 1846 int32_t testsize; 1847 } setTest[] = { 1848 { "&a < \\u212b", { "\\u212b", "A\\u030a", "\\u00c5" }, 3}, 1849 { "& S < \\u0161 <<< \\u0160", { "\\u0161", "s\\u030C", "\\u0160", "S\\u030C" }, 4} 1850 }; 1851 1852 int32_t i = 0, j = 0; 1853 UErrorCode status = U_ZERO_ERROR; 1854 UParseError pError; 1855 1856 UCollator *coll = NULL; 1857 UChar buff[1024]; 1858 int32_t buffLen = 0; 1859 USet *set = NULL; 1860 1861 for(i = 0; i < sizeof(setTest)/sizeof(setTest[0]); i++) { 1862 buffLen = u_unescape(setTest[i].rules, buff, 1024); 1863 coll = ucol_openRules(buff, buffLen, UCOL_DEFAULT, UCOL_DEFAULT, &pError, &status); 1864 if(U_SUCCESS(status)) { 1865 set = ucol_getTailoredSet(coll, &status); 1866 if(uset_size(set) != setTest[i].testsize) { 1867 log_err("Tailored set size different (%d) than expected (%d)\n", uset_size(set), setTest[i].testsize); 1868 } 1869 for(j = 0; j < setTest[i].testsize; j++) { 1870 buffLen = u_unescape(setTest[i].tests[j], buff, 1024); 1871 if(!uset_containsString(set, buff, buffLen)) { 1872 log_err("Tailored set doesn't contain %s... It should\n", setTest[i].tests[j]); 1873 } 1874 } 1875 uset_close(set); 1876 } else { 1877 log_err_status(status, "Couldn't open collator with rules %s\n", setTest[i].rules); 1878 } 1879 ucol_close(coll); 1880 } 1881 } 1882 1883 static int tMemCmp(const uint8_t *first, const uint8_t *second) { 1884 int32_t firstLen = (int32_t)strlen((const char *)first); 1885 int32_t secondLen = (int32_t)strlen((const char *)second); 1886 return memcmp(first, second, uprv_min(firstLen, secondLen)); 1887 } 1888 static const char * strengthsC[] = { 1889 "UCOL_PRIMARY", 1890 "UCOL_SECONDARY", 1891 "UCOL_TERTIARY", 1892 "UCOL_QUATERNARY", 1893 "UCOL_IDENTICAL" 1894 }; 1895 1896 void TestMergeSortKeys(void) { 1897 UErrorCode status = U_ZERO_ERROR; 1898 UCollator *coll = ucol_open("en", &status); 1899 if(U_SUCCESS(status)) { 1900 1901 const char* cases[] = { 1902 "abc", 1903 "abcd", 1904 "abcde" 1905 }; 1906 uint32_t casesSize = sizeof(cases)/sizeof(cases[0]); 1907 const char* prefix = "foo"; 1908 const char* suffix = "egg"; 1909 char outBuff1[256], outBuff2[256]; 1910 1911 uint8_t **sortkeys = (uint8_t **)malloc(casesSize*sizeof(uint8_t *)); 1912 uint8_t **mergedPrefixkeys = (uint8_t **)malloc(casesSize*sizeof(uint8_t *)); 1913 uint8_t **mergedSuffixkeys = (uint8_t **)malloc(casesSize*sizeof(uint8_t *)); 1914 uint32_t *sortKeysLen = (uint32_t *)malloc(casesSize*sizeof(uint32_t)); 1915 uint8_t prefixKey[256], suffixKey[256]; 1916 uint32_t prefixKeyLen = 0, suffixKeyLen = 0, i = 0; 1917 UChar buffer[256]; 1918 uint32_t unescapedLen = 0, l1 = 0, l2 = 0; 1919 UColAttributeValue strength; 1920 1921 log_verbose("ucol_mergeSortkeys test\n"); 1922 log_verbose("Testing order of the test cases\n"); 1923 genericLocaleStarter("en", cases, casesSize); 1924 1925 for(i = 0; i<casesSize; i++) { 1926 sortkeys[i] = (uint8_t *)malloc(256*sizeof(uint8_t)); 1927 mergedPrefixkeys[i] = (uint8_t *)malloc(256*sizeof(uint8_t)); 1928 mergedSuffixkeys[i] = (uint8_t *)malloc(256*sizeof(uint8_t)); 1929 } 1930 1931 unescapedLen = u_unescape(prefix, buffer, 256); 1932 prefixKeyLen = ucol_getSortKey(coll, buffer, unescapedLen, prefixKey, 256); 1933 1934 unescapedLen = u_unescape(suffix, buffer, 256); 1935 suffixKeyLen = ucol_getSortKey(coll, buffer, unescapedLen, suffixKey, 256); 1936 1937 log_verbose("Massaging data with prefixes and different strengths\n"); 1938 strength = UCOL_PRIMARY; 1939 while(strength <= UCOL_IDENTICAL) { 1940 log_verbose("Strength %s\n", strengthsC[strength<=UCOL_QUATERNARY?strength:4]); 1941 ucol_setAttribute(coll, UCOL_STRENGTH, strength, &status); 1942 for(i = 0; i<casesSize; i++) { 1943 unescapedLen = u_unescape(cases[i], buffer, 256); 1944 sortKeysLen[i] = ucol_getSortKey(coll, buffer, unescapedLen, sortkeys[i], 256); 1945 ucol_mergeSortkeys(prefixKey, prefixKeyLen, sortkeys[i], sortKeysLen[i], mergedPrefixkeys[i], 256); 1946 ucol_mergeSortkeys(sortkeys[i], sortKeysLen[i], suffixKey, suffixKeyLen, mergedSuffixkeys[i], 256); 1947 if(i>0) { 1948 if(tMemCmp(mergedPrefixkeys[i-1], mergedPrefixkeys[i]) >= 0) { 1949 log_err("Error while comparing prefixed keys @ strength %s:\n", strengthsC[strength<=UCOL_QUATERNARY?strength:4]); 1950 log_err("%s\n%s\n", 1951 ucol_sortKeyToString(coll, mergedPrefixkeys[i-1], outBuff1, &l1), 1952 ucol_sortKeyToString(coll, mergedPrefixkeys[i], outBuff2, &l2)); 1953 } 1954 if(tMemCmp(mergedSuffixkeys[i-1], mergedSuffixkeys[i]) >= 0) { 1955 log_err("Error while comparing suffixed keys @ strength %s:\n", strengthsC[strength<=UCOL_QUATERNARY?strength:4]); 1956 log_err("%s\n%s\n", 1957 ucol_sortKeyToString(coll, mergedSuffixkeys[i-1], outBuff1, &l1), 1958 ucol_sortKeyToString(coll, mergedSuffixkeys[i], outBuff2, &l2)); 1959 } 1960 } 1961 } 1962 if(strength == UCOL_QUATERNARY) { 1963 strength = UCOL_IDENTICAL; 1964 } else { 1965 strength++; 1966 } 1967 } 1968 1969 { 1970 uint8_t smallBuf[3]; 1971 uint32_t reqLen = 0; 1972 log_verbose("testing buffer overflow\n"); 1973 reqLen = ucol_mergeSortkeys(prefixKey, prefixKeyLen, suffixKey, suffixKeyLen, smallBuf, 3); 1974 if(reqLen != (prefixKeyLen+suffixKeyLen-1)) { 1975 log_err("Wrong preflight size for merged sortkey\n"); 1976 } 1977 } 1978 1979 { 1980 UChar empty = 0; 1981 uint8_t emptyKey[20], abcKey[50], mergedKey[100]; 1982 int32_t emptyKeyLen = 0, abcKeyLen = 0, mergedKeyLen = 0; 1983 1984 log_verbose("testing merging with sortkeys generated for empty strings\n"); 1985 emptyKeyLen = ucol_getSortKey(coll, &empty, 0, emptyKey, 20); 1986 unescapedLen = u_unescape(cases[0], buffer, 256); 1987 abcKeyLen = ucol_getSortKey(coll, buffer, unescapedLen, abcKey, 50); 1988 mergedKeyLen = ucol_mergeSortkeys(emptyKey, emptyKeyLen, abcKey, abcKeyLen, mergedKey, 100); 1989 if(mergedKey[0] != 2) { 1990 log_err("Empty sortkey didn't produce a level separator\n"); 1991 } 1992 /* try with zeros */ 1993 mergedKeyLen = ucol_mergeSortkeys(emptyKey, 0, abcKey, abcKeyLen, mergedKey, 100); 1994 if(mergedKeyLen != 0 || mergedKey[0] != 0) { 1995 log_err("Empty key didn't produce null mergedKey\n"); 1996 } 1997 mergedKeyLen = ucol_mergeSortkeys(abcKey, abcKeyLen, emptyKey, 0, mergedKey, 100); 1998 if(mergedKeyLen != 0 || mergedKey[0] != 0) { 1999 log_err("Empty key didn't produce null mergedKey\n"); 2000 } 2001 2002 } 2003 2004 for(i = 0; i<casesSize; i++) { 2005 free(sortkeys[i]); 2006 free(mergedPrefixkeys[i]); 2007 free(mergedSuffixkeys[i]); 2008 } 2009 free(sortkeys); 2010 free(mergedPrefixkeys); 2011 free(mergedSuffixkeys); 2012 free(sortKeysLen); 2013 ucol_close(coll); 2014 /* need to finish this up */ 2015 } else { 2016 log_data_err("Couldn't open collator"); 2017 } 2018 } 2019 static void TestShortString(void) 2020 { 2021 struct { 2022 const char *input; 2023 const char *expectedOutput; 2024 const char *locale; 2025 UErrorCode expectedStatus; 2026 int32_t expectedOffset; 2027 uint32_t expectedIdentifier; 2028 } testCases[] = { 2029 /* 2030 * The following expectedOutput contains a collation weight (2700 from UCA 6.0) 2031 * which is the primary weight for the T character (U+0041) in the input. 2032 * When that character gets a different weight in FractionalUCA.txt, 2033 * the expectedOutput needs to be adjusted. 2034 * That is, when we upgrade to a new UCA version or change collation 2035 * in such a way that the absolute weight for 'A' changes, 2036 * we will get a test failure here and need to adjust the test case. 2037 */ 2038 {"LDE_RDE_KPHONEBOOK_T0041_ZLATN","B2700_KPHONEBOOK_LDE", "de@collation=phonebook", U_USING_FALLBACK_WARNING, 0, 0 }, 2039 2040 {"LEN_RUS_NO_AS_S4","AS_LROOT_NO_S4", NULL, U_USING_DEFAULT_WARNING, 0, 0 }, 2041 {"LDE_VPHONEBOOK_EO_SI","EO_KPHONEBOOK_LDE_SI", "de@collation=phonebook", U_ZERO_ERROR, 0, 0 }, 2042 {"LDE_Kphonebook","KPHONEBOOK_LDE", "de@collation=phonebook", U_ZERO_ERROR, 0, 0 }, 2043 {"Xqde_DE@collation=phonebookq_S3_EX","KPHONEBOOK_LDE", "de@collation=phonebook", U_USING_FALLBACK_WARNING, 0, 0 }, 2044 {"LFR_FO", "FO_LROOT", NULL, U_USING_DEFAULT_WARNING, 0, 0 }, 2045 {"SO_LX_AS", "", NULL, U_ILLEGAL_ARGUMENT_ERROR, 8, 0 }, 2046 {"S3_ASS_MMM", "", NULL, U_ILLEGAL_ARGUMENT_ERROR, 5, 0 } 2047 }; 2048 2049 int32_t i = 0; 2050 UCollator *coll = NULL, *fromNormalized = NULL; 2051 UParseError parseError; 2052 UErrorCode status = U_ZERO_ERROR; 2053 char fromShortBuffer[256], normalizedBuffer[256], fromNormalizedBuffer[256]; 2054 const char* locale = NULL; 2055 2056 2057 for(i = 0; i < sizeof(testCases)/sizeof(testCases[0]); i++) { 2058 status = U_ZERO_ERROR; 2059 if(testCases[i].locale) { 2060 locale = testCases[i].locale; 2061 } else { 2062 locale = NULL; 2063 } 2064 2065 coll = ucol_openFromShortString(testCases[i].input, FALSE, &parseError, &status); 2066 if(status != testCases[i].expectedStatus) { 2067 log_err_status(status, "Got status '%s' that is different from expected '%s' for '%s'\n", 2068 u_errorName(status), u_errorName(testCases[i].expectedStatus), testCases[i].input); 2069 continue; 2070 } 2071 2072 if(U_SUCCESS(status)) { 2073 ucol_getShortDefinitionString(coll, locale, fromShortBuffer, 256, &status); 2074 2075 if(strcmp(fromShortBuffer, testCases[i].expectedOutput)) { 2076 log_err("Got short string '%s' from the collator. Expected '%s' for input '%s'\n", 2077 fromShortBuffer, testCases[i].expectedOutput, testCases[i].input); 2078 } 2079 2080 ucol_normalizeShortDefinitionString(testCases[i].input, normalizedBuffer, 256, &parseError, &status); 2081 fromNormalized = ucol_openFromShortString(normalizedBuffer, FALSE, &parseError, &status); 2082 ucol_getShortDefinitionString(fromNormalized, locale, fromNormalizedBuffer, 256, &status); 2083 2084 if(strcmp(fromShortBuffer, fromNormalizedBuffer)) { 2085 log_err("Strings obtained from collators instantiated by short string ('%s') and from normalized string ('%s') differ\n", 2086 fromShortBuffer, fromNormalizedBuffer); 2087 } 2088 2089 2090 if(!ucol_equals(coll, fromNormalized)) { 2091 log_err("Collator from short string ('%s') differs from one obtained through a normalized version ('%s')\n", 2092 testCases[i].input, normalizedBuffer); 2093 } 2094 2095 ucol_close(fromNormalized); 2096 ucol_close(coll); 2097 2098 } else { 2099 if(parseError.offset != testCases[i].expectedOffset) { 2100 log_err("Got parse error offset %i, but expected %i instead for '%s'\n", 2101 parseError.offset, testCases[i].expectedOffset, testCases[i].input); 2102 } 2103 } 2104 } 2105 2106 } 2107 2108 static void 2109 doSetsTest(const char *locale, const USet *ref, USet *set, const char* inSet, const char* outSet, UErrorCode *status) { 2110 UChar buffer[512]; 2111 int32_t bufLen; 2112 2113 uset_clear(set); 2114 bufLen = u_unescape(inSet, buffer, 512); 2115 uset_applyPattern(set, buffer, bufLen, 0, status); 2116 if(U_FAILURE(*status)) { 2117 log_err("%s: Failure setting pattern %s\n", locale, u_errorName(*status)); 2118 } 2119 2120 if(!uset_containsAll(ref, set)) { 2121 log_err("%s: Some stuff from %s is not present in the set\n", locale, inSet); 2122 } 2123 2124 uset_clear(set); 2125 bufLen = u_unescape(outSet, buffer, 512); 2126 uset_applyPattern(set, buffer, bufLen, 0, status); 2127 if(U_FAILURE(*status)) { 2128 log_err("%s: Failure setting pattern %s\n", locale, u_errorName(*status)); 2129 } 2130 2131 if(!uset_containsNone(ref, set)) { 2132 log_err("%s: Some stuff from %s is present in the set\n", locale, outSet); 2133 } 2134 } 2135 2136 2137 2138 2139 static void 2140 TestGetContractionsAndUnsafes(void) 2141 { 2142 static struct { 2143 const char* locale; 2144 const char* inConts; 2145 const char* outConts; 2146 const char* inExp; 2147 const char* outExp; 2148 const char* unsafeCodeUnits; 2149 const char* safeCodeUnits; 2150 } tests[] = { 2151 { "ru", 2152 "[{\\u0418\\u0306}{\\u0438\\u0306}]", 2153 "[\\u0439\\u0457]", 2154 "[\\u00e6]", 2155 "[ae]", 2156 "[\\u0418\\u0438]", 2157 "[aAbB\\u0430\\u0410\\u0433\\u0413]" 2158 }, 2159 { "uk", 2160 "[{\\u0406\\u0308}{\\u0456\\u0308}{\\u0418\\u0306}{\\u0438\\u0306}]", 2161 "[\\u0407\\u0419\\u0439\\u0457]", 2162 "[\\u00e6]", 2163 "[ae]", 2164 "[\\u0406\\u0456\\u0418\\u0438]", 2165 "[aAbBxv]", 2166 }, 2167 { "sh", 2168 "[{C\\u0301}{C\\u030C}{C\\u0341}{DZ\\u030C}{Dz\\u030C}{D\\u017D}{D\\u017E}{lj}{nj}]", 2169 "[{\\u309d\\u3099}{\\u30fd\\u3099}]", 2170 "[\\u00e6]", 2171 "[a]", 2172 "[nlcdzNLCDZ]", 2173 "[jabv]" 2174 }, 2175 { "ja", 2176 "[{\\u3053\\u3099\\u309D}{\\u3053\\u3099\\u309D\\u3099}{\\u3053\\u3099\\u309E}{\\u3053\\u3099\\u30FC}{\\u3053\\u309D}{\\u3053\\u309D\\u3099}{\\u3053\\u309E}{\\u3053\\u30FC}{\\u30B3\\u3099\\u30FC}{\\u30B3\\u3099\\u30FD}{\\u30B3\\u3099\\u30FD\\u3099}{\\u30B3\\u3099\\u30FE}{\\u30B3\\u30FC}{\\u30B3\\u30FD}{\\u30B3\\u30FD\\u3099}{\\u30B3\\u30FE}]", 2177 "[{\\u30FD\\u3099}{\\u309D\\u3099}{\\u3053\\u3099}{\\u30B3\\u3099}{lj}{nj}]", 2178 "[\\u30FE\\u00e6]", 2179 "[a]", 2180 "[\\u3099]", 2181 "[]" 2182 } 2183 }; 2184 2185 2186 2187 2188 UErrorCode status = U_ZERO_ERROR; 2189 UCollator *coll = NULL; 2190 int32_t i = 0; 2191 int32_t noConts = 0; 2192 USet *conts = uset_open(0,0); 2193 USet *exp = uset_open(0, 0); 2194 USet *set = uset_open(0,0); 2195 int32_t setBufferLen = 65536; 2196 UChar buffer[65536]; 2197 int32_t setLen = 0; 2198 2199 for(i = 0; i < sizeof(tests)/sizeof(tests[0]); i++) { 2200 log_verbose("Testing locale: %s\n", tests[i].locale); 2201 coll = ucol_open(tests[i].locale, &status); 2202 if (coll == NULL || U_FAILURE(status)) { 2203 log_err_status(status, "Unable to open collator for locale %s ==> %s\n", tests[i].locale, u_errorName(status)); 2204 continue; 2205 } 2206 ucol_getContractionsAndExpansions(coll, conts, exp, TRUE, &status); 2207 doSetsTest(tests[i].locale, conts, set, tests[i].inConts, tests[i].outConts, &status); 2208 setLen = uset_toPattern(conts, buffer, setBufferLen, TRUE, &status); 2209 if(U_SUCCESS(status)) { 2210 /*log_verbose("Contractions %i: %s\n", uset_getItemCount(conts), aescstrdup(buffer, setLen));*/ 2211 } else { 2212 log_err("error %s. %i\n", u_errorName(status), setLen); 2213 status = U_ZERO_ERROR; 2214 } 2215 doSetsTest(tests[i].locale, exp, set, tests[i].inExp, tests[i].outExp, &status); 2216 setLen = uset_toPattern(exp, buffer, setBufferLen, TRUE, &status); 2217 if(U_SUCCESS(status)) { 2218 /*log_verbose("Expansions %i: %s\n", uset_getItemCount(exp), aescstrdup(buffer, setLen));*/ 2219 } else { 2220 log_err("error %s. %i\n", u_errorName(status), setLen); 2221 status = U_ZERO_ERROR; 2222 } 2223 2224 noConts = ucol_getUnsafeSet(coll, conts, &status); 2225 doSetsTest(tests[i].locale, conts, set, tests[i].unsafeCodeUnits, tests[i].safeCodeUnits, &status); 2226 setLen = uset_toPattern(conts, buffer, setBufferLen, TRUE, &status); 2227 if(U_SUCCESS(status)) { 2228 log_verbose("Unsafe %i: %s\n", uset_getItemCount(exp), aescstrdup(buffer, setLen)); 2229 } else { 2230 log_err("error %s. %i\n", u_errorName(status), setLen); 2231 status = U_ZERO_ERROR; 2232 } 2233 2234 ucol_close(coll); 2235 } 2236 2237 2238 uset_close(conts); 2239 uset_close(exp); 2240 uset_close(set); 2241 } 2242 2243 static void 2244 TestOpenBinary(void) 2245 { 2246 UErrorCode status = U_ZERO_ERROR; 2247 /* 2248 char rule[] = "&h < d < c < b"; 2249 char *wUCA[] = { "a", "h", "d", "c", "b", "i" }; 2250 char *noUCA[] = {"d", "c", "b", "a", "h", "i" }; 2251 */ 2252 /* we have to use Cyrillic letters because latin-1 always gets copied */ 2253 const char rule[] = "&\\u0452 < \\u0434 < \\u0433 < \\u0432"; /* &dje < d < g < v */ 2254 const char *wUCA[] = { "\\u0430", "\\u0452", "\\u0434", "\\u0433", "\\u0432", "\\u0435" }; /* a, dje, d, g, v, e */ 2255 const char *noUCA[] = {"\\u0434", "\\u0433", "\\u0432", "\\u0430", "\\u0435", "\\u0452" }; /* d, g, v, a, e, dje */ 2256 2257 UChar uRules[256]; 2258 int32_t uRulesLen = u_unescape(rule, uRules, 256); 2259 2260 UCollator *coll = ucol_openRules(uRules, uRulesLen, UCOL_DEFAULT, UCOL_DEFAULT, NULL, &status); 2261 UCollator *UCA = NULL; 2262 UCollator *cloneNOUCA = NULL, *cloneWUCA = NULL; 2263 2264 uint8_t imageBuffer[32768]; 2265 uint8_t *image = imageBuffer; 2266 int32_t imageBufferCapacity = 32768; 2267 2268 int32_t imageSize; 2269 2270 if((coll==NULL)||(U_FAILURE(status))) { 2271 log_data_err("could not load collators or error occured: %s\n", 2272 u_errorName(status)); 2273 return; 2274 } 2275 UCA = ucol_open("root", &status); 2276 if((UCA==NULL)||(U_FAILURE(status))) { 2277 log_data_err("could not load UCA collator or error occured: %s\n", 2278 u_errorName(status)); 2279 return; 2280 } 2281 imageSize = ucol_cloneBinary(coll, image, imageBufferCapacity, &status); 2282 if(U_FAILURE(status)) { 2283 image = (uint8_t *)malloc(imageSize*sizeof(uint8_t)); 2284 status = U_ZERO_ERROR; 2285 imageSize = ucol_cloneBinary(coll, imageBuffer, imageSize, &status); 2286 } 2287 2288 2289 cloneWUCA = ucol_openBinary(image, imageSize, UCA, &status); 2290 cloneNOUCA = ucol_openBinary(image, imageSize, NULL, &status); 2291 2292 genericOrderingTest(coll, wUCA, sizeof(wUCA)/sizeof(wUCA[0])); 2293 2294 genericOrderingTest(cloneWUCA, wUCA, sizeof(wUCA)/sizeof(wUCA[0])); 2295 genericOrderingTest(cloneNOUCA, noUCA, sizeof(noUCA)/sizeof(noUCA[0])); 2296 2297 if(image != imageBuffer) { 2298 free(image); 2299 } 2300 ucol_close(coll); 2301 ucol_close(cloneNOUCA); 2302 ucol_close(cloneWUCA); 2303 ucol_close(UCA); 2304 } 2305 2306 static void TestDefault(void) { 2307 /* Tests for code coverage. */ 2308 UErrorCode status = U_ZERO_ERROR; 2309 UCollator *coll = ucol_open("es@collation=pinyin", &status); 2310 if (coll == NULL || status == U_FILE_ACCESS_ERROR) { 2311 log_data_err("Unable to open collator es@collation=pinyin\n"); 2312 return; 2313 } 2314 if (status != U_USING_DEFAULT_WARNING) { 2315 /* What do you mean that you know about using pinyin collation in Spanish!? This should be in the zh locale. */ 2316 log_err("es@collation=pinyin should return U_USING_DEFAULT_WARNING, but returned %s\n", u_errorName(status)); 2317 } 2318 ucol_close(coll); 2319 if (ucol_getKeywordValues("funky", &status) != NULL) { 2320 log_err("Collators should not know about the funky keyword.\n"); 2321 } 2322 if (status != U_ILLEGAL_ARGUMENT_ERROR) { 2323 log_err("funky keyword didn't fail as expected %s\n", u_errorName(status)); 2324 } 2325 if (ucol_getKeywordValues("collation", &status) != NULL) { 2326 log_err("ucol_getKeywordValues should not work when given a bad status.\n"); 2327 } 2328 } 2329 2330 static void TestDefaultKeyword(void) { 2331 /* Tests for code coverage. */ 2332 UErrorCode status = U_ZERO_ERROR; 2333 const char *loc = "zh_TW@collation=default"; 2334 UCollator *coll = ucol_open(loc, &status); 2335 if(U_FAILURE(status)) { 2336 log_info("Warning: ucol_open(%s, ...) returned %s, at least it didn't crash.\n", loc, u_errorName(status)); 2337 } else if (status != U_USING_FALLBACK_WARNING) { 2338 /* Hmm, skip the following test for CLDR 1.9 data and/or ICU 4.6, no longer seems to apply */ 2339 #if 0 2340 log_err("ucol_open(%s, ...) should return an error or some sort of U_USING_FALLBACK_WARNING, but returned %s\n", loc, u_errorName(status)); 2341 #endif 2342 } 2343 ucol_close(coll); 2344 } 2345 2346 static void TestGetKeywordValuesForLocale(void) { 2347 #define INCLUDE_UNIHAN_COLLATION 0 2348 #define PREFERRED_SIZE 16 2349 #define MAX_NUMBER_OF_KEYWORDS 8 2350 const char *PREFERRED[PREFERRED_SIZE][MAX_NUMBER_OF_KEYWORDS+1] = { 2351 { "und", "standard", "ducet", "search", NULL, NULL, NULL, NULL, NULL }, 2352 { "en_US", "standard", "ducet", "search", NULL, NULL, NULL, NULL, NULL }, 2353 { "en_029", "standard", "ducet", "search", NULL, NULL, NULL, NULL, NULL }, 2354 { "de_DE", "standard", "phonebook", "search", "ducet", NULL, NULL, NULL, NULL }, 2355 { "de_Latn_DE", "standard", "phonebook", "search", "ducet", NULL, NULL, NULL, NULL }, 2356 #if INCLUDE_UNIHAN_COLLATION 2357 { "zh", "pinyin", "big5han", "gb2312han", "standard", "stroke", "unihan", "ducet", "search" }, 2358 { "zh_Hans", "pinyin", "big5han", "gb2312han", "standard", "stroke", "unihan", "ducet", "search" }, 2359 { "zh_CN", "pinyin", "big5han", "gb2312han", "standard", "stroke", "unihan", "ducet", "search" }, 2360 { "zh_Hant", "stroke", "big5han", "gb2312han", "pinyin", "standard", "unihan", "ducet", "search" }, 2361 { "zh_TW", "stroke", "big5han", "gb2312han", "pinyin", "standard", "unihan", "ducet", "search" }, 2362 { "zh__PINYIN", "pinyin", "big5han", "gb2312han", "standard", "stroke", "unihan", "ducet", "search" }, 2363 #else 2364 { "zh", "pinyin", "big5han", "gb2312han", "standard", "stroke", "ducet", "search", NULL }, 2365 { "zh_Hans", "pinyin", "big5han", "gb2312han", "standard", "stroke", "ducet", "search", NULL }, 2366 { "zh_CN", "pinyin", "big5han", "gb2312han", "standard", "stroke", "ducet", "search", NULL }, 2367 { "zh_Hant", "stroke", "big5han", "gb2312han", "pinyin", "standard", "ducet", "search", NULL }, 2368 { "zh_TW", "stroke", "big5han", "gb2312han", "pinyin", "standard", "ducet", "search", NULL }, 2369 { "zh__PINYIN", "pinyin", "big5han", "gb2312han", "standard", "stroke", "ducet", "search", NULL }, 2370 #endif 2371 { "es_ES", "standard", "search", "traditional", "ducet", NULL, NULL, NULL, NULL }, 2372 { "es__TRADITIONAL","traditional", "search", "standard", "ducet", NULL, NULL, NULL, NULL }, 2373 { "und@collation=phonebook", "standard", "ducet", "search", NULL, NULL, NULL, NULL, NULL }, 2374 { "de_DE@collation=big5han", "standard", "phonebook", "search", "ducet", NULL, NULL, NULL, NULL }, 2375 { "zzz@collation=xxx", "standard", "ducet", "search", NULL, NULL, NULL, NULL, NULL } 2376 }; 2377 #if INCLUDE_UNIHAN_COLLATION 2378 const int32_t expectedLength[PREFERRED_SIZE] = { 3, 3, 3, 4, 4, 8, 8, 8, 8, 8, 8, 4, 4, 3, 4, 3 }; 2379 #else 2380 const int32_t expectedLength[PREFERRED_SIZE] = { 3, 3, 3, 4, 4, 7, 7, 7, 7, 7, 7, 4, 4, 3, 4, 3 }; 2381 #endif 2382 2383 UErrorCode status = U_ZERO_ERROR; 2384 UEnumeration *keywordValues = NULL; 2385 int32_t i, n, size, valueLength; 2386 const char *locale = NULL, *value = NULL; 2387 UBool errorOccurred = FALSE; 2388 2389 for (i = 0; i < PREFERRED_SIZE; i++) { 2390 locale = PREFERRED[i][0]; 2391 value = NULL; 2392 valueLength = 0; 2393 size = 0; 2394 2395 keywordValues = ucol_getKeywordValuesForLocale("collation", locale, TRUE, &status); 2396 if (keywordValues == NULL || U_FAILURE(status)) { 2397 log_err_status(status, "Error getting keyword values: %s\n", u_errorName(status)); 2398 break; 2399 } 2400 size = uenum_count(keywordValues, &status); 2401 2402 if (size == expectedLength[i]) { 2403 for (n = 0; n < expectedLength[i]; n++) { 2404 if ((value = uenum_next(keywordValues, &valueLength, &status)) != NULL && U_SUCCESS(status)) { 2405 if (uprv_strcmp(value, PREFERRED[i][n+1]) != 0) { 2406 log_err("Keyword values differ: Got [%s] Expected [%s] for locale: %s\n", value, PREFERRED[i][n+1], locale); 2407 errorOccurred = TRUE; 2408 break; 2409 } 2410 2411 } else { 2412 log_err("While getting keyword value from locale: %s got this error: %s\n", locale, u_errorName(status)); 2413 errorOccurred = TRUE; 2414 break; 2415 } 2416 } 2417 if (errorOccurred) { 2418 break; 2419 } 2420 } else { 2421 log_err("Number of keywords (%d) does not match expected size (%d) for locale: %s\n", size, expectedLength[i], locale); 2422 break; 2423 } 2424 uenum_close(keywordValues); 2425 keywordValues = NULL; 2426 } 2427 if (keywordValues != NULL) { 2428 uenum_close(keywordValues); 2429 } 2430 } 2431 2432 2433 #endif /* #if !UCONFIG_NO_COLLATION */ 2434