示例#1
0
文件: ctime.c 项目: LucidOne/Rovio
static void
test( CYG_ADDRWORD data )
{
    time_t t;
    char *ret;
    
    // make this predictable - independent of the user option
    cyg_libc_time_setzoneoffsets(0, 3600);
    cyg_libc_time_setdst( CYG_LIBC_TIME_DSTOFF );

    t = (time_t)130710184;

    ret = ctime(&t);
    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Thu Feb 21 20:23:04 1974\n"),
                       "ctime test #1");

    t = (time_t)946689894;

    ret = ctime(&t);
    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Sat Jan 01 01:24:54 2000\n"),
                       "ctime Y2K test #2");

    cyg_libc_time_setdst( CYG_LIBC_TIME_DSTON );

    t = (time_t)-113186106;

    ret = ctime(&t);
    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Tue Jun 01 00:24:54 1966\n"),
                       "ctime test #3");

#ifdef CYGFUN_LIBC_TIME_POSIX
    cyg_libc_time_setdst( CYG_LIBC_TIME_DSTOFF );

    t = (time_t)915510061;
    
    {
        char ret2[26];

        ret = ctime_r(&t, ret2);
        CYG_TEST_PASS_FAIL(!my_strcmp(ret2, "Tue Jan 05 04:21:01 1999\n"),
                           "ctime_r test #1");
    }
#endif

    CYG_TEST_FINISH("Finished tests from testcase " __FILE__ " for C library "
                    "ctime() function");
} // test()
示例#2
0
static void
test( CYG_ADDRWORD data )
{
    struct tm tm1, tm2;
    time_t t;
    
    // make this predictable - independent of the user option
    cyg_libc_time_setzoneoffsets(0, 3600);

    tm1.tm_sec = 4;
    tm1.tm_min = 23;
    tm1.tm_hour = 20;
    tm1.tm_mday = 21;
    tm1.tm_mon = 1;
    tm1.tm_year = 74;
    tm1.tm_isdst = 0;

    tm2 = tm1;
    tm2.tm_wday = 4;
    tm2.tm_yday = 51;

    t = mktime(&tm1);
    CYG_TEST_PASS_FAIL(!cmp_structtm(&tm1, &tm2), "mktime test #1");
    CYG_TEST_PASS_FAIL(t == 130710184, "mktime return test #1");

    tm1.tm_sec = 61;
    tm1.tm_min = 20;
    tm1.tm_hour = 4;
    tm1.tm_mday = 5;
    tm1.tm_mon = 0;
    tm1.tm_year = 99;
    tm1.tm_isdst = 0;

    tm2 = tm1;
    tm2.tm_sec=1;
    tm2.tm_min = 21;
    tm2.tm_wday = 2;
    tm2.tm_yday = 4;

    t = mktime(&tm1);
    CYG_TEST_PASS_FAIL(!cmp_structtm(&tm1, &tm2), "mktime test #2");
    CYG_TEST_PASS_FAIL(t == 915510061, "mktime return test #2");

    tm1.tm_sec = 54;
    tm1.tm_min = 24;
    tm1.tm_hour = 1;
    tm1.tm_mday = 1;
    tm1.tm_mon = 0;
    tm1.tm_year = 100;
    tm1.tm_isdst = 0;

    tm2 = tm1;
    tm2.tm_wday = 6;
    tm2.tm_yday = 0;

    t = mktime(&tm1);
    CYG_TEST_PASS_FAIL(!cmp_structtm(&tm1, &tm2), "mktime Y2K test #3");
    CYG_TEST_PASS_FAIL(t == 946689894, "mktime Y2K return test #3");

    tm1.tm_sec = 54;
    tm1.tm_min = 24;
    tm1.tm_hour = 23;
    tm1.tm_mday = 31;
    tm1.tm_mon = 4;
    tm1.tm_year = 66;
    tm1.tm_isdst = 1;

    tm2 = tm1;
    tm2.tm_wday = 2;
    tm2.tm_yday = 150;

    t = mktime(&tm1);
    CYG_TEST_PASS_FAIL(!cmp_structtm(&tm1, &tm2), "mktime test #4");
    CYG_TEST_PASS_FAIL(t == -113186106, "mktime return test #4");

    CYG_TEST_FINISH("Finished tests from testcase " __FILE__ " for C library "
                    "mktime() function");
} // test()
示例#3
0
static void
test( CYG_ADDRWORD data )
{
    struct tm tm1;
    char *ret;
    
    tm1.tm_sec = 4;
    tm1.tm_min = 23;
    tm1.tm_hour = 20;
    tm1.tm_mday = 21;
    tm1.tm_mon = 1;
    tm1.tm_year = 74;
    tm1.tm_wday = 4;
    tm1.tm_yday = 51;
    tm1.tm_isdst = 0;

    ret = asctime(&tm1);

    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Thu Feb 21 20:23:04 1974\n"),
                       "asctime test #1");
    tm1.tm_sec = 3;
    tm1.tm_min = 51;
    tm1.tm_hour = 5;
    tm1.tm_mday = 2;
    tm1.tm_mon = 11;
    tm1.tm_year = 68;
    tm1.tm_wday = 1;
    tm1.tm_yday = 336;
    tm1.tm_isdst = 0;

    ret = asctime(&tm1);

    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Mon Dec 02 05:51:03 1968\n"),
                       "asctime test #2");

    // make this predictable - independent of the user option
    cyg_libc_time_setzoneoffsets(0, 3600);

    tm1.tm_sec = 3;
    tm1.tm_min = 51;
    tm1.tm_hour = 5;
    tm1.tm_mday = 2;
    tm1.tm_mon = 6;
    tm1.tm_year = 68;
    tm1.tm_wday = 2;
    tm1.tm_yday = 183;
    tm1.tm_isdst = 1;

    ret = asctime(&tm1);

    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Tue Jul 02 05:51:03 1968\n"),
                       "asctime test #3");

    tm1.tm_sec = 0;
    tm1.tm_min = 0;
    tm1.tm_hour = 0;
    tm1.tm_mday = 1;
    tm1.tm_mon = 0;
    tm1.tm_year = 0;
    tm1.tm_wday = 1;
    tm1.tm_yday = 0;
    tm1.tm_isdst = 0;

    ret = asctime(&tm1);

    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Mon Jan 01 00:00:00 1900\n"),
                       "asctime test #4");

    tm1.tm_sec = 0;
    tm1.tm_min = 0;
    tm1.tm_hour = 0;
    tm1.tm_mday = 1;
    tm1.tm_mon = 0;
    tm1.tm_year = 100;
    tm1.tm_wday = 6;
    tm1.tm_yday = 0;
    tm1.tm_isdst = 0;

    ret = asctime(&tm1);

    CYG_TEST_PASS_FAIL(!my_strcmp(ret, "Sat Jan 01 00:00:00 2000\n"),
                       "asctime Y2K test #5");

#ifdef CYGFUN_LIBC_TIME_POSIX
    {
        char ret2[100];
        
        tm1.tm_sec = 3;
        tm1.tm_min = 51;
        tm1.tm_hour = 5;
        tm1.tm_mday = 2;
        tm1.tm_mon = 11;
        tm1.tm_year = 68;
        tm1.tm_wday = 1;
        tm1.tm_yday = 336;
        tm1.tm_isdst = 0;
        
        ret = asctime_r(&tm1, ret2);
        
        CYG_TEST_PASS_FAIL((ret==ret2) &&
                           !my_strcmp(ret, "Mon Dec 02 05:51:03 1968\n"),
                           "asctime_r test #1");

    }
#endif


    CYG_TEST_FINISH("Finished tests from testcase " __FILE__ " for C library "
                    "asctime() function");
} // test()