ICU-900 Fixed some compiler warnings.
X-SVN-Rev: 4747
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dd88d34144
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6de44560c8
@ -222,7 +222,7 @@ void TransliteratorTest::TestRuleBasedInverse(void) {
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"caccb", "xyzzy",
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"caccb", "xyzzy",
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};
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};
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int32_t DATA_length = sizeof(DATA) / sizeof(DATA[0]);
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int32_t DATA_length = (int32_t)(sizeof(DATA) / sizeof(DATA[0]));
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UErrorCode status = U_ZERO_ERROR;
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UErrorCode status = U_ZERO_ERROR;
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RuleBasedTransliterator fwd("<ID>", RULES, status);
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RuleBasedTransliterator fwd("<ID>", RULES, status);
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@ -264,7 +264,7 @@ void TransliteratorTest::TestKeyboard(void) {
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0, "AycAY", // null means finishKeyboardTransliteration
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0, "AycAY", // null means finishKeyboardTransliteration
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};
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};
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keyboardAux(t, DATA, sizeof(DATA)/sizeof(DATA[0]));
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keyboardAux(t, DATA, (int32_t)(sizeof(DATA)/sizeof(DATA[0])));
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}
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}
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/**
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/**
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@ -296,7 +296,7 @@ void TransliteratorTest::TestKeyboard2(void) {
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0, "AycAY", // null means finishKeyboardTransliteration
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0, "AycAY", // null means finishKeyboardTransliteration
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};
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};
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keyboardAux(t, DATA, sizeof(DATA)/sizeof(DATA[0]));
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keyboardAux(t, DATA, (int32_t)(sizeof(DATA)/sizeof(DATA[0])));
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}
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}
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/**
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/**
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@ -328,7 +328,7 @@ void TransliteratorTest::TestKeyboard3(void) {
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errln("FAIL: RBT constructor failed");
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errln("FAIL: RBT constructor failed");
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return;
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return;
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}
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}
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keyboardAux(t, DATA, sizeof(DATA)/sizeof(DATA[0]));
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keyboardAux(t, DATA, (int32_t)(sizeof(DATA)/sizeof(DATA[0])));
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}
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}
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void TransliteratorTest::keyboardAux(const Transliterator& t,
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void TransliteratorTest::keyboardAux(const Transliterator& t,
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@ -634,7 +634,7 @@ void TransliteratorTest::TestJ329(void) {
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{ FALSE, "a > b; c > d" },
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{ FALSE, "a > b; c > d" },
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{ TRUE, "a > b; no operator; c > d" },
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{ TRUE, "a > b; no operator; c > d" },
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};
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};
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int32_t DATA_length = sizeof(DATA) / sizeof(DATA[0]);
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int32_t DATA_length = (int32_t)(sizeof(DATA) / sizeof(DATA[0]));
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for (int32_t i=0; i<DATA_length; ++i) {
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for (int32_t i=0; i<DATA_length; ++i) {
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UErrorCode status = U_ZERO_ERROR;
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UErrorCode status = U_ZERO_ERROR;
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@ -673,7 +673,7 @@ void TransliteratorTest::TestSegments(void) {
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"abc.123.xyz.456",
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"abc.123.xyz.456",
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"ab1-c23.xy4-z56",
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"ab1-c23.xy4-z56",
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};
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};
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int32_t DATA_length = sizeof(DATA)/sizeof(*DATA);
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int32_t DATA_length = (int32_t)(sizeof(DATA)/sizeof(*DATA));
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for (int32_t i=0; i<DATA_length; i+=3) {
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for (int32_t i=0; i<DATA_length; i+=3) {
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logln("Pattern: " + prettify(DATA[i]));
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logln("Pattern: " + prettify(DATA[i]));
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@ -703,7 +703,7 @@ void TransliteratorTest::TestCursorOffset(void) {
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"prbetaxyz preBETApost",
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"prbetaxyz preBETApost",
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};
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};
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int32_t DATA_length = sizeof(DATA)/sizeof(*DATA);
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int32_t DATA_length = (int32_t)(sizeof(DATA)/sizeof(*DATA));
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for (int32_t i=0; i<DATA_length; i+=3) {
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for (int32_t i=0; i<DATA_length; i+=3) {
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logln("Pattern: " + prettify(DATA[i]));
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logln("Pattern: " + prettify(DATA[i]));
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@ -742,7 +742,7 @@ void TransliteratorTest::TestArbitraryVariableValues(void) {
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"ab xYzxyz stY78",
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"ab xYzxyz stY78",
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"ABE ENDEND 1129",
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"ABE ENDEND 1129",
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};
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};
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int32_t DATA_length = sizeof(DATA)/sizeof(*DATA);
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int32_t DATA_length = (int32_t)(sizeof(DATA)/sizeof(*DATA));
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for (int32_t i=0; i<DATA_length; i+=3) {
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for (int32_t i=0; i<DATA_length; i+=3) {
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logln("Pattern: " + prettify(DATA[i]));
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logln("Pattern: " + prettify(DATA[i]));
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@ -785,7 +785,7 @@ void TransliteratorTest::TestPositionHandling(void) {
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3, 8, 3, 8,
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3, 8, 3, 8,
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};
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};
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int32_t n = sizeof(DATA) / sizeof(DATA[0]) / 3;
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int32_t n = (int32_t)(sizeof(DATA) / sizeof(DATA[0])) / 3;
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for (int32_t i=0; i<n; i++) {
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for (int32_t i=0; i<n; i++) {
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UErrorCode status = U_ZERO_ERROR;
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UErrorCode status = U_ZERO_ERROR;
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Transliterator *t = new RuleBasedTransliterator("<ID>",
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Transliterator *t = new RuleBasedTransliterator("<ID>",
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@ -840,7 +840,7 @@ void TransliteratorTest::TestHiraganaKatakana(void) {
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"\\u307C\\u3051\\u3060\\u3042\\u3093\\u30FC",
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"\\u307C\\u3051\\u3060\\u3042\\u3093\\u30FC",
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"\\u30DC\\u30F6\\u30C0\\u30FC\\u30F3\\u30FC",
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"\\u30DC\\u30F6\\u30C0\\u30FC\\u30F3\\u30FC",
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};
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};
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int32_t DATA_length = sizeof(DATA) / sizeof(DATA[0]);
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int32_t DATA_length = (int32_t)(sizeof(DATA) / sizeof(DATA[0]));
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for (int32_t i=0; i<DATA_length; i+=3) {
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for (int32_t i=0; i<DATA_length; i+=3) {
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UnicodeString h = CharsToUnicodeString(DATA[i+1]);
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UnicodeString h = CharsToUnicodeString(DATA[i+1]);
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