g_free(s);
}
+static void test_period(uint64_t frequency, const char *expected)
+{
+ char *s;
+
+ s = sr_period_string(frequency);
+ fail_unless(s != NULL);
+ fail_unless(!strcmp(s, expected),
+ "Invalid result for '%s': %s.", expected, s);
+ g_free(s);
+}
+
static void test_rational(const char *input, struct sr_rational expected)
{
int ret;
}
END_TEST
+START_TEST(test_hz_period)
+{
+ test_period(1, "1000 ms");
+ test_period(5, "200 ms");
+ test_period(72, "13 ms");
+ test_period(388, "2 ms");
+
+ /* Again, but now using SR_HZ(). */
+ test_period(SR_HZ(1), "1000 ms");
+ test_period(SR_HZ(5), "200 ms");
+ test_period(SR_HZ(72), "13 ms");
+ test_period(SR_HZ(388), "2 ms");
+}
+END_TEST
+
+START_TEST(test_ghz_period)
+{
+ /* Note: Numbers > 2^32 need a ULL suffix. */
+
+ test_period(1000000000, "1000 ps");
+ test_period(5000000000ULL, "200 ps");
+ test_period(72000000000ULL, "13 ps");
+ test_period(388000000000ULL, "2 ps");
+
+ /* Again, but now using SR_GHZ(). */
+ test_period(SR_GHZ(1), "1000 ps");
+ test_period(SR_GHZ(5), "200 ps");
+ test_period(SR_GHZ(72), "13 ps");
+ test_period(SR_GHZ(388), "2 ps");
+}
+END_TEST
+
START_TEST(test_integral)
{
test_rational("1", (struct sr_rational){1, 1});
tcase_add_test(tc, test_khz);
tcase_add_test(tc, test_mhz);
tcase_add_test(tc, test_ghz);
+ tcase_add_test(tc, test_hz_period);
+ tcase_add_test(tc, test_ghz_period);
tcase_add_test(tc, test_integral);
tcase_add_test(tc, test_fractional);
tcase_add_test(tc, test_exponent);