mirror of https://github.com/encounter/SDL.git
133 lines
4.4 KiB
C
133 lines
4.4 KiB
C
/**
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* Math test suite
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*/
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#include <math.h>
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#include "SDL.h"
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#include "SDL_test.h"
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/* ================= Test Case Implementation ================== */
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/* SDL_floor tests functions */
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/**
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* \brief Checks edge cases (0 and infinity) for themselves.
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*/
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static int floor_edgeCases(void* args) {
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double result;
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result = SDL_floor(INFINITY);
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SDLTest_AssertCheck(INFINITY == result, "Floor(%f), expected %f, got %f",
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INFINITY, INFINITY, result);
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result = SDL_floor(-INFINITY);
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SDLTest_AssertCheck(-INFINITY == result, "Floor(%f), expected %f, got %f",
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-INFINITY, -INFINITY, result);
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result = SDL_floor(0.0);
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SDLTest_AssertCheck(0.0 == result, "Floor(%.1f), expected %.1f, got %.1f",
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0.0, 0.0, result);
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result = SDL_floor(-0.0);
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SDLTest_AssertCheck(-0.0 == result, "Floor(%.1f), expected %.1f, got %.1f",
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-0.0, -0.0, result);
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return TEST_COMPLETED;
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}
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/**
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* \brief Checks the NaN case.
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*/
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static int floor_nanCase(void* args) {
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SDLTest_AssertCheck(isnan(SDL_floor(NAN)), "Floor(nan), expected nan");
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return TEST_COMPLETED;
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}
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/**
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* \brief Checks round values (x.0) for themselves
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*/
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static int floor_roundNumbersCases(void* args) {
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Uint32 i;
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const double round_cases[] = {1.0, -1.0, 15.0, -15.0,
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125.0, -125.0, 1024.0, -1024.0};
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for (i = 0; i < SDL_arraysize(round_cases); i++) {
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const double result = SDL_floor(round_cases[i]);
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SDLTest_AssertCheck(result == round_cases[i],
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"Floor(%.1f), expected %.1f, got %.1f", round_cases[i],
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round_cases[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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* \brief Checks a set of fractions
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*/
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static int floor_fractionCases(void* args) {
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Uint32 i;
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const struct {
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double input, expected;
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} frac_cases[] = {{1.0 / 2.0, 0.0}, {-1.0 / 2.0, -1.0},
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{4.0 / 3.0, 1.0}, {-4.0 / 3.0, -2.0},
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{76.0 / 7.0, 10.0}, {-76.0 / 7.0, -11.0},
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{535.0 / 8.0, 66.0}, {-535.0 / 8.0, -67.0},
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{19357.0 / 53.0, 365.0}, {-19357.0 / 53.0, -366.0}};
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for (i = 0; i < SDL_arraysize(frac_cases); i++) {
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const double result = SDL_floor(frac_cases[i].input);
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SDLTest_AssertCheck(result == frac_cases[i].expected,
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"Floor(%f), expected %.1f, got %f", frac_cases[i].input,
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frac_cases[i].expected, result);
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}
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return TEST_COMPLETED;
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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 floor_rangeTest(void* args) {
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const Uint32 ITERATIONS = 10000000;
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const Uint32 STEP = SDL_MAX_UINT32 / ITERATIONS;
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Uint32 i;
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double test_value = 0.0;
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SDLTest_AssertPass("Floor: Testing a range of %u values with %u steps",
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ITERATIONS, STEP);
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for (i = 0; i < ITERATIONS; i++, test_value += 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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result = SDL_floor(test_value);
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if (result != test_value) { /* Only log failures to save performances */
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SDLTest_AssertPass("Floor(%.1f), expected %.1f, got %.1f", test_value,
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test_value, 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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/* ================= Test References ================== */
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/* SDL_floor test cases */
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static const SDLTest_TestCaseReference floorTest1 = {
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(SDLTest_TestCaseFp)floor_edgeCases, "floor_edgeCases",
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"Check positive and negative infinity and 0", TEST_ENABLED};
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static const SDLTest_TestCaseReference floorTest2 = {
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(SDLTest_TestCaseFp)floor_nanCase, "floor_nanCase",
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"Check the NaN special case", TEST_ENABLED};
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static const SDLTest_TestCaseReference floorTest3 = {
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(SDLTest_TestCaseFp)floor_roundNumbersCases, "floor_roundNumberCases",
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"Check a set of round numbers", TEST_ENABLED};
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static const SDLTest_TestCaseReference floorTest4 = {
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(SDLTest_TestCaseFp)floor_fractionCases, "floor_fractionCases",
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"Check a set of fractions", TEST_ENABLED};
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static const SDLTest_TestCaseReference floorTest5 = {
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(SDLTest_TestCaseFp)floor_rangeTest, "floor_rangeTest",
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"Check a range of positive integer", TEST_ENABLED};
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static const SDLTest_TestCaseReference* mathTests[] = {
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&floorTest1, &floorTest2, &floorTest3, &floorTest4, &floorTest5, NULL};
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SDLTest_TestSuiteReference mathTestSuite = {"Math", NULL, mathTests, NULL};
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