ubidi_close(pBiDi);
return;
}
+ // Quick callback test (API coverage).
+ if (ubidi_getCustomizedClass(pBiDi, u'A')!=AL ||
+ ubidi_getCustomizedClass(pBiDi, u'H')!=R ||
+ ubidi_getCustomizedClass(pBiDi, u'^')!=PDF ||
+ ubidi_getCustomizedClass(pBiDi, u'~')!=BN) {
+ log_err("ubidi_getCustomizedClass() returns different values than "
+ "expected from overrideBidiClass() customClasses[]\n");
+ }
+
verifyCallbackParams(oldFn, oldContext, NULL, NULL, 0);
ubidi_getClassCallback(pBiDi, &oldFn, &oldContext);
}
}
}
+
+ // API coverage
+ status = U_ZERO_ERROR;
+ static const char *const supported[] = { "en-US", "en-GB", "de-DE", "ja-JP" };
+ const char * desired[] = { "de-LI", "en-IN", "zu", "fr" };
+ available = uenum_openCharStringsEnumeration(supported, UPRV_LENGTHOF(supported), &status);
+ tmp[0]=0;
+ rc = uloc_acceptLanguage(tmp, 199, &outResult, desired, UPRV_LENGTHOF(desired), available, &status);
+ if (U_FAILURE(status) || rc != 5 || uprv_strcmp(tmp, "de_DE") != 0 || outResult == ULOC_ACCEPT_FAILED) {
+ log_err("uloc_acceptLanguage() failed to do a simple match\n");
+ }
+ uenum_close(available);
}
static const char* LOCALE_ALIAS[][2] = {
u_errorName(status) );
continue;
}
+ // API coverage: Expect to get back the dialect handling which is
+ // the first item in the displayOptions test data.
+ UDialectHandling dh = uldn_getDialectHandling(uldn);
+ UDisplayContext dhContext = (UDisplayContext)dh; // same numeric values
+ if (dhContext != uloPtr->displayOptions[0]) {
+ log_err("uldn_getDialectHandling()=%03X != expected UDisplayContext %03X\n",
+ dhContext, uloPtr->displayOptions[0]);
+ }
const UldnItem * itemPtr = uloPtr->testItems;
int32_t itemCount = uloPtr->countItems;
for (; itemCount-- > 0; itemPtr++) {
static void TestAppendRestoreMiddle(void);
static void TestGetEasyToUseInstance(void);
+static void TestAPICoverage(void);
static const char* const canonTests[][3] = {
/* Input*/ /*Decomposed*/ /*Composed*/
addTest(root, &TestGetRawDecomposition, "tsnorm/cnormtst/TestGetRawDecomposition");
addTest(root, &TestAppendRestoreMiddle, "tsnorm/cnormtst/TestAppendRestoreMiddle");
addTest(root, &TestGetEasyToUseInstance, "tsnorm/cnormtst/TestGetEasyToUseInstance");
+ addTest(root, &TestAPICoverage, "tsnorm/cnormtst/TestAPICoverage");
}
static const char* const modeStrings[]={
}
}
+static void
+TestAPICoverage() {
+ UErrorCode errorCode = U_ZERO_ERROR;
+ const UNormalizer2 *n2 = unorm2_getNFDInstance(&errorCode);
+ if (U_FAILURE(errorCode)) {
+ log_err_status(errorCode, "unorm2_getNFDInstance() failed: %s\n", u_errorName(errorCode));
+ return;
+ }
+
+ if (!unorm2_hasBoundaryBefore(n2, u'C') || unorm2_hasBoundaryBefore(n2, 0x300)) {
+ log_err("unorm2_hasBoundaryBefore() returns unexpected results\n");
+ }
+
+ if (!unorm2_hasBoundaryAfter(n2, u'C') || unorm2_hasBoundaryAfter(n2, 0x300)) {
+ log_err("unorm2_hasBoundaryAfter() returns unexpected results\n");
+ }
+
+ if (!unorm2_isInert(n2, 0x50005) || unorm2_isInert(n2, 0x300)) {
+ log_err("unorm2_isInert() returns unexpected results\n");
+ }
+
+ errorCode = U_ZERO_ERROR;
+ if (!unorm2_isNormalized(n2, u"c\u0327\u0300", 3, &errorCode) ||
+ unorm2_isNormalized(n2, u"c\u0300\u0327", 3, &errorCode) ||
+ U_FAILURE(errorCode)) {
+ log_err("unorm2_isNormalized() returns unexpected results\n");
+ }
+
+ errorCode = U_ZERO_ERROR;
+ if (unorm2_quickCheck(n2, u"c\u0327\u0300", 3, &errorCode) == UNORM_NO ||
+ unorm2_quickCheck(n2, u"c\u0300\u0327", 3, &errorCode) == UNORM_YES ||
+ U_FAILURE(errorCode)) {
+ log_err("unorm2_quickCheck() returns unexpected results\n");
+ }
+
+ errorCode = U_ZERO_ERROR;
+ if (unorm2_spanQuickCheckYes(n2, u"c\u0327\u0300", 3, &errorCode) != 3 ||
+ unorm2_spanQuickCheckYes(n2, u"c\u0300\u0327", 3, &errorCode) != 1 ||
+ U_FAILURE(errorCode)) {
+ log_err("unorm2_spanQuickCheckYes() returns unexpected results\n");
+ }
+
+ errorCode = U_ZERO_ERROR;
+ UChar first[10] = { u'c', 0x300, 0, 0, 0, 0, 0, 0, 0, 0 };
+ int32_t length = unorm2_normalizeSecondAndAppend(
+ n2, first, 2, UPRV_LENGTHOF(first), u"\u0327d", 2, &errorCode);
+ if (U_FAILURE(errorCode) || length != 4 || u_strcmp(first, u"c\u0327\u0300d") != 0) {
+ log_err("unorm2_normalizeSecondAndAppend() returns unexpected results\n");
+ }
+}
+
#endif /* #if !UCONFIG_NO_NORMALIZATION */
utext_close(uta);
}
-
+ {
+ // utext_equals() checks for the same type of text provider,
+ // same string pointer(!), and same index.
+ status = U_ZERO_ERROR;
+ const UChar *s = u"aßカ🚲";
+ UText *ut1 = utext_openUChars(NULL, s, -1, &status);
+ UText *ut2 = utext_openUChars(NULL, s, 5, &status);
+ TEST_SUCCESS(status);
+ TEST_ASSERT(utext_equals(ut1, ut2));
+ UChar32 c = utext_next32(ut1);
+ TEST_ASSERT(c == u'a');
+ TEST_ASSERT(!utext_equals(ut1, ut2)); // indexes out of sync
+ c = utext_next32(ut2);
+ TEST_ASSERT(c == u'a');
+ TEST_ASSERT(utext_equals(ut1, ut2)); // back in sync
+ utext_close(ut1);
+ utext_close(ut2);
+ }
}
-