return 0;
}
+/*
+ * Compute the day of the week and the day of the year from the year, month
+ * and day. The day of the year is straightforward, the day of the week uses
+ * a form of Zeller's congruence. For this months start with March and are
+ * numbered 4 through 15.
+ */
+static void determine_days(struct tm *tm)
+{
+ static const int ydays[12] = {
+ 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334
+ };
+ int y = tm->tm_year + 1900;
+ int m = tm->tm_mon;
+ int d = tm->tm_mday;
+ int c;
+
+ tm->tm_yday = ydays[m] + d - 1;
+ if (m >= 2) {
+ /* March and onwards can be one day further into the year */
+ tm->tm_yday += leap_year(y);
+ m += 2;
+ } else {
+ /* Treat January and February as part of the previous year */
+ m += 14;
+ y--;
+ }
+ c = y / 100;
+ y %= 100;
+ /* Zeller's congruance */
+ tm->tm_wday = (d + (13 * m) / 5 + y + y / 4 + c / 4 + 5 * c + 6) % 7;
+}
+
int asn1_time_to_tm(struct tm *tm, const ASN1_TIME *d)
{
static const int min[9] = { 0, 0, 1, 1, 0, 0, 0, 0, 0 };
if (n > md)
goto err;
tmp.tm_mday = n;
+ determine_days(&tmp);
break;
case 4:
tmp.tm_hour = n;
return rv;
}
+static const struct {
+ int y, m, d;
+ int yd, wd;
+} day_of_week_tests[] = {
+ /*YYYY MM DD DoY DoW */
+ { 1900, 1, 1, 0, 1 },
+ { 1900, 2, 28, 58, 3 },
+ { 1900, 3, 1, 59, 4 },
+ { 1900, 12, 31, 364, 1 },
+ { 1901, 1, 1, 0, 2 },
+ { 1970, 1, 1, 0, 4 },
+ { 1999, 1, 10, 9, 0 },
+ { 1999, 12, 31, 364, 5 },
+ { 2000, 1, 1, 0, 6 },
+ { 2000, 2, 28, 58, 1 },
+ { 2000, 2, 29, 59, 2 },
+ { 2000, 3, 1, 60, 3 },
+ { 2000, 12, 31, 365, 0 },
+ { 2001, 1, 1, 0, 1 },
+ { 2008, 1, 1, 0, 2 },
+ { 2008, 2, 28, 58, 4 },
+ { 2008, 2, 29, 59, 5 },
+ { 2008, 3, 1, 60, 6 },
+ { 2008, 12, 31, 365, 3 },
+ { 2009, 1, 1, 0, 4 },
+ { 2011, 1, 1, 0, 6 },
+ { 2011, 2, 28, 58, 1 },
+ { 2011, 3, 1, 59, 2 },
+ { 2011, 12, 31, 364, 6 },
+ { 2012, 1, 1, 0, 0 },
+ { 2019, 1, 2, 1, 3 },
+ { 2019, 2, 2, 32, 6 },
+ { 2019, 3, 2, 60, 6 },
+ { 2019, 4, 2, 91, 2 },
+ { 2019, 5, 2, 121, 4 },
+ { 2019, 6, 2, 152, 0 },
+ { 2019, 7, 2, 182, 2 },
+ { 2019, 8, 2, 213, 5 },
+ { 2019, 9, 2, 244, 1 },
+ { 2019, 10, 2, 274, 3 },
+ { 2019, 11, 2, 305, 6 },
+ { 2019, 12, 2, 335, 1 },
+ { 2020, 1, 2, 1, 4 },
+ { 2020, 2, 2, 32, 0 },
+ { 2020, 3, 2, 61, 1 },
+ { 2020, 4, 2, 92, 4 },
+ { 2020, 5, 2, 122, 6 },
+ { 2020, 6, 2, 153, 2 },
+ { 2020, 7, 2, 183, 4 },
+ { 2020, 8, 2, 214, 0 },
+ { 2020, 9, 2, 245, 3 },
+ { 2020, 10, 2, 275, 5 },
+ { 2020, 11, 2, 306, 1 },
+ { 2020, 12, 2, 336, 3 }
+};
+
+static int test_days(int n)
+{
+ char d[16];
+ ASN1_TIME *a = NULL;
+ struct tm t;
+ int r;
+
+ BIO_snprintf(d, sizeof(d), "%04d%02d%02d050505Z",
+ day_of_week_tests[n].y, day_of_week_tests[n].m,
+ day_of_week_tests[n].d);
+
+ if (!TEST_ptr(a = ASN1_TIME_new()))
+ return 0;
+
+ r = TEST_true(ASN1_TIME_set_string(a, d))
+ && TEST_true(ASN1_TIME_to_tm(a, &t))
+ && TEST_int_eq(t.tm_yday, day_of_week_tests[n].yd)
+ && TEST_int_eq(t.tm_wday, day_of_week_tests[n].wd);
+
+ ASN1_TIME_free(a);
+ return r;
+}
+
void register_tests()
{
ADD_TEST(test_x509_cmp_time_current);
ADD_ALL_TESTS(test_x509_cmp_time, OSSL_NELEM(x509_cmp_tests));
ADD_ALL_TESTS(test_x509_time, OSSL_NELEM(x509_format_tests));
+ ADD_ALL_TESTS(test_days, OSSL_NELEM(day_of_week_tests));
}