Systemd/src/test/test-date.c
Yu Watanabe 68bdd2d2d3 time-util: make parse_timestamp() return -EINVAL if the input is very old date (#6327)
This reverts 7635ab8e74 and makes parse_timestamp()
return -EINVAL if the input is older than 1970-01-01.

Fixes #6290.
2017-07-11 19:12:48 +02:00

114 lines
3.4 KiB
C

/***
This file is part of systemd.
Copyright 2012 Lennart Poettering
systemd is free software; you can redistribute it and/or modify it
under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version.
systemd is distributed in the hope that it will be useful, but
WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
Lesser General Public License for more details.
You should have received a copy of the GNU Lesser General Public License
along with systemd; If not, see <http://www.gnu.org/licenses/>.
***/
#include <string.h>
#include "alloc-util.h"
#include "string-util.h"
#include "util.h"
static void test_should_pass(const char *p) {
usec_t t, q;
char buf[FORMAT_TIMESTAMP_MAX], buf_relative[FORMAT_TIMESTAMP_RELATIVE_MAX];
log_info("Test: %s", p);
assert_se(parse_timestamp(p, &t) >= 0);
assert_se(format_timestamp_us(buf, sizeof(buf), t));
log_info("\"%s\"\"%s\"", p, buf);
assert_se(parse_timestamp(buf, &q) >= 0);
assert_se(q == t);
assert_se(format_timestamp_relative(buf_relative, sizeof(buf_relative), t));
log_info("%s", strna(buf_relative));
}
static void test_should_parse(const char *p) {
usec_t t;
log_info("Test: %s", p);
assert_se(parse_timestamp(p, &t) >= 0);
log_info("\"%s\"\"@%" PRI_USEC "\"", p, t);
}
static void test_should_fail(const char *p) {
usec_t t;
int r;
log_info("Test: %s", p);
r = parse_timestamp(p, &t);
if (r >= 0)
log_info("\"%s\"\"@%" PRI_USEC "\" (unexpected)", p, t);
else
log_info("parse_timestamp() returns %d (expected)", r);
assert_se(r < 0);
}
static void test_one(const char *p) {
_cleanup_free_ char *with_utc;
with_utc = strjoin(p, " UTC");
test_should_pass(p);
test_should_pass(with_utc);
}
static void test_one_noutc(const char *p) {
_cleanup_free_ char *with_utc;
with_utc = strjoin(p, " UTC");
test_should_pass(p);
test_should_fail(with_utc);
}
int main(int argc, char *argv[]) {
test_one("17:41");
test_one("18:42:44");
test_one("18:42:44.0");
test_one("18:42:44.999999999999");
test_one("12-10-02 12:13:14");
test_one("12-10-2 12:13:14");
test_one("12-10-03 12:13");
test_one("2012-12-30 18:42");
test_one("2012-10-02");
test_one("Tue 2012-10-02");
test_one("yesterday");
test_one("today");
test_one("tomorrow");
test_one_noutc("now");
test_one_noutc("+2d");
test_one_noutc("+2y 4d");
test_one_noutc("5months ago");
test_one_noutc("@1395716396");
test_should_parse("1970-1-1 UTC");
test_should_pass("1970-1-1 00:00:01 UTC");
test_should_fail("1969-12-31 UTC");
test_should_fail("-100y");
test_should_fail("today UTC UTC");
#if SIZEOF_TIME_T == 8
test_should_pass("9999-12-30 23:59:59 UTC");
test_should_fail("9999-12-31 00:00:00 UTC");
test_should_fail("10000-01-01 00:00:00 UTC");
#elif SIZEOF_TIME_T == 4
test_should_pass("2038-01-19 03:14:07 UTC");
test_should_fail("2038-01-19 03:14:08 UTC");
#endif
return 0;
}