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@@ -1739,6 +1739,114 @@ scalbn_regularCases(void *args)
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return TEST_COMPLETED;
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}
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+/* SDL_cos tests functions */
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+
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+/**
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+ * \brief Checks positive and negative infinity.
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+ */
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+static int
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+cos_infCases(void *args)
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+{
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+ double result;
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+
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+ result = SDL_cos(INFINITY);
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+ SDLTest_AssertCheck(isnan(result),
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+ "Cos(%f), expected %f, got %f",
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+ INFINITY, NAN, result);
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+
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+ result = SDL_cos(-INFINITY);
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+ SDLTest_AssertCheck(isnan(result),
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+ "Cos(%f), expected %f, got %f",
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+ -INFINITY, NAN, result);
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+
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+ return TEST_COMPLETED;
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+}
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+
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+/**
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+ * \brief Checks for nan.
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+ */
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+static int
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+cos_nanCase(void *args)
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+{
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+ const double result = SDL_cos(NAN);
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+ SDLTest_AssertCheck(isnan(result),
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+ "Cos(%f), expected %f, got %f",
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+ NAN, NAN, result);
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+ return TEST_COMPLETED;
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+}
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+
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+/**
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+ * \brief Checks a set of regular values.
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+ */
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+static int
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+cos_regularCases(void *args)
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+{
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+ const d_to_d regular_cases[] = {
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+ { -M_PI, -1.0 },
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+ { -0.0, 1.0 },
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+ { 0.0, 1.0 },
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+ { M_PI, -1.0 }
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+ };
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+ return helper_dtod("Cos", SDL_cos, regular_cases, SDL_arraysize(regular_cases));
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+}
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+
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+/**
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+ * \brief Checks cosine precision for the first 10 decimals.
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+ */
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+static int
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+cos_precisionTest(void *args)
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+{
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+ Uint32 i;
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+ Uint32 iterations = 20;
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+ double angle = 0.0;
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+ double step = 2.0 * M_PI / iterations;
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+ const Sint64 expected[] = {
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+ 10000000000, 9510565162, 8090169943, 5877852522, 3090169943,
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+ 0, -3090169943, -5877852522, -8090169943, -9510565162,
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+ -10000000000, -9510565162, -8090169943, -5877852522, -3090169943,
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+ 0, 3090169943, 5877852522, 8090169943, 9510565162
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+ };
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+ for (i = 0; i < iterations; i++, angle += step) {
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+ Sint64 result = (Sint64) (SDL_cos(angle) * 10000000000);
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+ SDLTest_AssertCheck(result == expected[i],
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+ "Cos(%f), expected %lld, got %lld",
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+ angle, expected[i], result);
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+ }
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+ return TEST_COMPLETED;
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+}
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+
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+/**
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+ * \brief Checks a range of values between 0 and UINT32_MAX.
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+ */
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+static int
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+cos_rangeTest(void *args)
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+{
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+ Uint32 i;
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+ double test_value = 0.0;
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+
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+ SDLTest_AssertPass("Cos: Testing a range of %u values with steps of %u",
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+ RANGE_TEST_ITERATIONS,
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+ RANGE_TEST_STEP);
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+
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+ for (i = 0; i < RANGE_TEST_ITERATIONS; i++, test_value += RANGE_TEST_STEP) {
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+ double result;
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+ /* These are tested elsewhere */
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+ if (isnan(test_value) || isinf(test_value)) {
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+ continue;
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+ }
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+
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+ /* Only log failures to save performances */
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+ result = SDL_cos(test_value);
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+ if (result < -1.0 || result > 1.0) {
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+ SDLTest_AssertCheck(SDL_FALSE,
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+ "Cos(%.1f), expected [%.1f,%.1f], got %.1f",
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+ test_value, -1.0, 1.0, result);
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+ return TEST_ABORTED;
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+ }
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+ }
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+ return TEST_COMPLETED;
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+}
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+
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/* ================= Test References ================== */
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/* SDL_floor test cases */
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@@ -2092,6 +2200,29 @@ static const SDLTest_TestCaseReference scalbnTestRegular = {
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"Check a set of regular cases", TEST_ENABLED
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};
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+/* SDL_cos test cases */
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+
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+static const SDLTest_TestCaseReference cosTestInf = {
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+ (SDLTest_TestCaseFp) cos_infCases, "cos_infCases",
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+ "Check for positive and negative infinity", TEST_ENABLED
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+};
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+static const SDLTest_TestCaseReference cosTestNan = {
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+ (SDLTest_TestCaseFp) cos_nanCase, "cos_nanCase",
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+ "Check the NaN special case", TEST_ENABLED
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+};
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+static const SDLTest_TestCaseReference cosTestRegular = {
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+ (SDLTest_TestCaseFp) cos_regularCases, "cos_regularCases",
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+ "Check a set of regular cases", TEST_ENABLED
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+};
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+static const SDLTest_TestCaseReference cosTestPrecision = {
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+ (SDLTest_TestCaseFp) cos_precisionTest, "cos_precisionTest",
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+ "Check cosine precision to the tenth decimal", TEST_ENABLED
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+};
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+static const SDLTest_TestCaseReference cosTestRange = {
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+ (SDLTest_TestCaseFp) cos_rangeTest, "cos_rangeTest",
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+ "Check a range of positive integer", TEST_ENABLED
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+};
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+
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static const SDLTest_TestCaseReference *mathTests[] = {
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&floorTestInf, &floorTestZero, &floorTestNan,
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&floorTestRound, &floorTestFraction, &floorTestRange,
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@@ -2133,6 +2264,9 @@ static const SDLTest_TestCaseReference *mathTests[] = {
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&scalbnTestInf, &scalbnTestBaseZero, &scalbnTestExpZero,
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&scalbnTestNan, &scalbnTestRegular,
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+ &cosTestInf, &cosTestNan, &cosTestRegular,
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+ &cosTestPrecision, &cosTestRange,
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+
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NULL
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};
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