605 lines
13 KiB
C
605 lines
13 KiB
C
/* $OpenBSD: a_time_tm.c,v 1.27 2022/11/26 16:08:50 tb Exp $ */
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/*
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* Copyright (c) 2015 Bob Beck <beck@openbsd.org>
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*
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* Permission to use, copy, modify, and distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#include <ctype.h>
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#include <limits.h>
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#include <stdio.h>
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#include <string.h>
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#include <time.h>
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#include <openssl/asn1t.h>
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#include <openssl/err.h>
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#include "bytestring.h"
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#include "asn1_local.h"
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#define RFC5280 0
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#define GENTIME_LENGTH 15
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#define UTCTIME_LENGTH 13
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int
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ASN1_time_tm_cmp(struct tm *tm1, struct tm *tm2)
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{
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if (tm1->tm_year < tm2->tm_year)
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return (-1);
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if (tm1->tm_year > tm2->tm_year)
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return (1);
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if (tm1->tm_mon < tm2->tm_mon)
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return (-1);
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if (tm1->tm_mon > tm2->tm_mon)
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return (1);
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if (tm1->tm_mday < tm2->tm_mday)
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return (-1);
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if (tm1->tm_mday > tm2->tm_mday)
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return (1);
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if (tm1->tm_hour < tm2->tm_hour)
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return (-1);
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if (tm1->tm_hour > tm2->tm_hour)
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return (1);
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if (tm1->tm_min < tm2->tm_min)
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return (-1);
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if (tm1->tm_min > tm2->tm_min)
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return (1);
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if (tm1->tm_sec < tm2->tm_sec)
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return (-1);
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if (tm1->tm_sec > tm2->tm_sec)
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return (1);
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return 0;
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}
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int
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ASN1_time_tm_clamp_notafter(struct tm *tm)
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{
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#ifdef SMALL_TIME_T
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struct tm broken_os_epoch_tm;
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time_t broken_os_epoch_time = INT_MAX;
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if (!asn1_time_time_t_to_tm(&broken_os_epoch_time, &broken_os_epoch_tm))
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return 0;
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if (ASN1_time_tm_cmp(tm, &broken_os_epoch_tm) == 1)
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memcpy(tm, &broken_os_epoch_tm, sizeof(*tm));
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#endif
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return 1;
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}
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/* Convert time to GeneralizedTime, X.690, 11.7. */
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ASN1_TIME *
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tm_to_gentime(struct tm *tm, ASN1_TIME *atime)
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{
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char *time_str = NULL;
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int year;
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year = tm->tm_year + 1900;
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if (year < 0 || year > 9999) {
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ASN1error(ASN1_R_ILLEGAL_TIME_VALUE);
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goto err;
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}
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if (asprintf(&time_str, "%04u%02u%02u%02u%02u%02uZ", year,
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tm->tm_mon + 1, tm->tm_mday, tm->tm_hour, tm->tm_min,
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tm->tm_sec) == -1) {
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time_str = NULL;
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ASN1error(ERR_R_MALLOC_FAILURE);
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goto err;
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}
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if (atime == NULL)
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atime = ASN1_TIME_new();
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if (atime == NULL) {
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ASN1error(ERR_R_MALLOC_FAILURE);
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goto err;
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}
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free(atime->data);
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atime->data = time_str;
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atime->length = GENTIME_LENGTH;
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atime->type = V_ASN1_GENERALIZEDTIME;
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return (atime);
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err:
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free(time_str);
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return (NULL);
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}
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/* Convert time to UTCTime, X.690, 11.8. */
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ASN1_TIME *
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tm_to_utctime(struct tm *tm, ASN1_TIME *atime)
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{
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char *time_str = NULL;
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if (tm->tm_year >= 150 || tm->tm_year < 50) {
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ASN1error(ASN1_R_ILLEGAL_TIME_VALUE);
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goto err;
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}
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if (asprintf(&time_str, "%02u%02u%02u%02u%02u%02uZ",
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tm->tm_year % 100, tm->tm_mon + 1, tm->tm_mday,
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tm->tm_hour, tm->tm_min, tm->tm_sec) == -1) {
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time_str = NULL;
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ASN1error(ERR_R_MALLOC_FAILURE);
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goto err;
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}
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if (atime == NULL)
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atime = ASN1_TIME_new();
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if (atime == NULL) {
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ASN1error(ERR_R_MALLOC_FAILURE);
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goto err;
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}
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free(atime->data);
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atime->data = time_str;
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atime->length = UTCTIME_LENGTH;
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atime->type = V_ASN1_UTCTIME;
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return (atime);
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err:
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free(time_str);
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return (NULL);
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}
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ASN1_TIME *
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tm_to_rfc5280_time(struct tm *tm, ASN1_TIME *atime)
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{
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int year;
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year = tm->tm_year + 1900;
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if (year < 1950 || year > 9999) {
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ASN1error(ASN1_R_ILLEGAL_TIME_VALUE);
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return (NULL);
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}
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if (year < 2050)
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return (tm_to_utctime(tm, atime));
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return (tm_to_gentime(tm, atime));
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}
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static int
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cbs_get_two_digit_value(CBS *cbs, int *out)
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{
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uint8_t first_digit, second_digit;
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if (!CBS_get_u8(cbs, &first_digit))
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return 0;
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if (!isdigit(first_digit))
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return 0;
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if (!CBS_get_u8(cbs, &second_digit))
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return 0;
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if (!isdigit(second_digit))
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return 0;
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*out = (first_digit - '0') * 10 + (second_digit - '0');
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return 1;
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}
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static int
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is_valid_day(int year, int month, int day)
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{
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if (day < 1)
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return 0;
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switch (month) {
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case 1:
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case 3:
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case 5:
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case 7:
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case 8:
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case 10:
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case 12:
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return day <= 31;
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case 4:
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case 6:
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case 9:
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case 11:
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return day <= 30;
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case 2:
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if ((year % 4 == 0 && year % 100 != 0) || year % 400 == 0)
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return day <= 29;
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else
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return day <= 28;
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default:
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return 0;
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}
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}
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/*
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* asn1_time_parse_cbs returns one if |cbs| is a valid DER-encoded, ASN.1 Time
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* body within the limitations imposed by RFC 5280, or zero otherwise. The time
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* is expected to parse as a Generalized Time if is_gentime is true, and as a
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* UTC Time otherwise. If |out_tm| is non-NULL, |*out_tm| will be zeroed, and
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* then set to the corresponding time in UTC. This function does not compute
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* |out_tm->tm_wday| or |out_tm->tm_yday|. |cbs| is not consumed.
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*/
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int
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asn1_time_parse_cbs(const CBS *cbs, int is_gentime, struct tm *out_tm)
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{
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int year, month, day, hour, min, sec, val;
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CBS copy;
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uint8_t tz;
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CBS_dup(cbs, ©);
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if (is_gentime) {
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if (!cbs_get_two_digit_value(©, &val))
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return 0;
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year = val * 100;
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if (!cbs_get_two_digit_value(©, &val))
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return 0;
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year += val;
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} else {
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year = 1900;
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if (!cbs_get_two_digit_value(©, &val))
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return 0;
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year += val;
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if (year < 1950)
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year += 100;
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if (year >= 2050)
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return 0; /* A Generalized time must be used. */
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}
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if (!cbs_get_two_digit_value(©, &month))
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return 0;
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if (month < 1 || month > 12)
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return 0; /* Reject invalid months. */
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if (!cbs_get_two_digit_value(©, &day))
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return 0;
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if (!is_valid_day(year, month, day))
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return 0; /* Reject invalid days. */
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if (!cbs_get_two_digit_value(©, &hour))
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return 0;
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if (hour > 23)
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return 0; /* Reject invalid hours. */
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if (!cbs_get_two_digit_value(©, &min))
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return 0;
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if (min > 59)
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return 0; /* Reject invalid minutes. */
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if (!cbs_get_two_digit_value(©, &sec))
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return 0;
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if (sec > 59)
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return 0; /* Reject invalid seconds. Leap seconds are invalid. */
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if (!CBS_get_u8(©, &tz))
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return 0;
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if (tz != 'Z')
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return 0; /* Reject anything but Z on the end. */
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if (CBS_len(©) != 0)
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return 0; /* Reject invalid lengths. */
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if (out_tm != NULL) {
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memset(out_tm, 0, sizeof(*out_tm));
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/* Fill in the tm fields corresponding to what we validated. */
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out_tm->tm_year = year - 1900;
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out_tm->tm_mon = month - 1;
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out_tm->tm_mday = day;
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out_tm->tm_hour = hour;
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out_tm->tm_min = min;
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out_tm->tm_sec = sec;
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}
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return 1;
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}
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/*
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* Parse an RFC 5280 format ASN.1 time string.
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*
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* mode must be:
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* 0 if we expect to parse a time as specified in RFC 5280 for an X509 object.
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* V_ASN1_UTCTIME if we wish to parse an RFC5280 format UTC time.
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* V_ASN1_GENERALIZEDTIME if we wish to parse an RFC5280 format Generalized time.
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*
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* Returns:
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* -1 if the string was invalid.
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* V_ASN1_UTCTIME if the string validated as a UTC time string.
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* V_ASN1_GENERALIZEDTIME if the string validated as a Generalized time string.
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*
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* Fills in *tm with the corresponding time if tm is non NULL.
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*/
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int
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ASN1_time_parse(const char *bytes, size_t len, struct tm *tm, int mode)
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{
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struct tm tml, *tmp = tm ? tm : &tml;
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int type = 0;
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CBS cbs;
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if (bytes == NULL)
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return (-1);
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CBS_init(&cbs, bytes, len);
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if (CBS_len(&cbs) == UTCTIME_LENGTH)
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type = V_ASN1_UTCTIME;
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if (CBS_len(&cbs) == GENTIME_LENGTH)
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type = V_ASN1_GENERALIZEDTIME;
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if (asn1_time_parse_cbs(&cbs, type == V_ASN1_GENERALIZEDTIME, tmp)) {
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if (mode != 0 && mode != type)
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return -1;
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return type;
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}
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return -1;
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}
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/*
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* ASN1_TIME generic functions.
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*/
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static int
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ASN1_TIME_set_string_internal(ASN1_TIME *s, const char *str, int mode)
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{
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int type;
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char *tmp;
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if ((type = ASN1_time_parse(str, strlen(str), NULL, mode)) == -1)
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return (0);
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if (mode != 0 && mode != type)
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return (0);
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if (s == NULL)
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return (1);
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if ((tmp = strdup(str)) == NULL)
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return (0);
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free(s->data);
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s->data = tmp;
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s->length = strlen(tmp);
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s->type = type;
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return (1);
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}
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static ASN1_TIME *
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ASN1_TIME_adj_internal(ASN1_TIME *s, time_t t, int offset_day, long offset_sec,
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int mode)
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{
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struct tm tm;
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if (!asn1_time_time_t_to_tm(&t, &tm))
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return (NULL);
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if (offset_day != 0 || offset_sec != 0) {
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if (!OPENSSL_gmtime_adj(&tm, offset_day, offset_sec))
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return (NULL);
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}
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switch (mode) {
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case V_ASN1_UTCTIME:
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return (tm_to_utctime(&tm, s));
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case V_ASN1_GENERALIZEDTIME:
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return (tm_to_gentime(&tm, s));
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case RFC5280:
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return (tm_to_rfc5280_time(&tm, s));
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default:
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return (NULL);
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}
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}
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ASN1_TIME *
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ASN1_TIME_set(ASN1_TIME *s, time_t t)
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{
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return (ASN1_TIME_adj(s, t, 0, 0));
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}
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ASN1_TIME *
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ASN1_TIME_set_tm(ASN1_TIME *s, struct tm *tm)
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{
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time_t t;
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if (!asn1_time_tm_to_time_t(tm, &t))
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return NULL;
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return (ASN1_TIME_adj(s, t, 0, 0));
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}
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ASN1_TIME *
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ASN1_TIME_adj(ASN1_TIME *s, time_t t, int offset_day, long offset_sec)
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{
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return (ASN1_TIME_adj_internal(s, t, offset_day, offset_sec, RFC5280));
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}
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int
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ASN1_TIME_check(const ASN1_TIME *t)
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{
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if (t->type != V_ASN1_GENERALIZEDTIME && t->type != V_ASN1_UTCTIME)
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return (0);
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return (t->type == ASN1_time_parse(t->data, t->length, NULL, t->type));
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}
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ASN1_GENERALIZEDTIME *
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ASN1_TIME_to_generalizedtime(const ASN1_TIME *t, ASN1_GENERALIZEDTIME **out)
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{
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ASN1_GENERALIZEDTIME *agt = NULL;
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struct tm tm;
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if (t->type != V_ASN1_GENERALIZEDTIME && t->type != V_ASN1_UTCTIME)
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return (NULL);
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if (t->type != ASN1_time_parse(t->data, t->length, &tm, t->type))
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return (NULL);
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if (out != NULL)
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agt = *out;
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if ((agt = tm_to_gentime(&tm, agt)) == NULL)
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return (NULL);
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if (out != NULL)
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*out = agt;
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return (agt);
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}
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int
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ASN1_TIME_set_string(ASN1_TIME *s, const char *str)
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{
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return (ASN1_TIME_set_string_internal(s, str, 0));
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}
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static int
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ASN1_TIME_cmp_time_t_internal(const ASN1_TIME *s, time_t t2, int mode)
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{
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struct tm tm1, tm2;
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/*
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* This function has never handled failure conditions properly
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* The OpenSSL version used to simply follow NULL pointers on failure.
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* BoringSSL and OpenSSL now make it return -2 on failure.
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*
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* The danger is that users of this function will not differentiate the
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* -2 failure case from s < t2. Callers must be careful. Sadly this is
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* one of those pervasive things from OpenSSL we must continue with.
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*/
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if (ASN1_time_parse(s->data, s->length, &tm1, mode) == -1)
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return -2;
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if (!asn1_time_time_t_to_tm(&t2, &tm2))
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return -2;
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return ASN1_time_tm_cmp(&tm1, &tm2);
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}
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int
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ASN1_TIME_compare(const ASN1_TIME *t1, const ASN1_TIME *t2)
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{
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struct tm tm1, tm2;
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if (t1->type != V_ASN1_UTCTIME && t1->type != V_ASN1_GENERALIZEDTIME)
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return -2;
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if (t2->type != V_ASN1_UTCTIME && t2->type != V_ASN1_GENERALIZEDTIME)
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return -2;
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if (ASN1_time_parse(t1->data, t1->length, &tm1, t1->type) == -1)
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return -2;
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if (ASN1_time_parse(t1->data, t2->length, &tm2, t2->type) == -1)
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return -2;
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return ASN1_time_tm_cmp(&tm1, &tm2);
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}
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int
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ASN1_TIME_cmp_time_t(const ASN1_TIME *s, time_t t)
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{
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if (s->type == V_ASN1_UTCTIME)
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return ASN1_TIME_cmp_time_t_internal(s, t, V_ASN1_UTCTIME);
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if (s->type == V_ASN1_GENERALIZEDTIME)
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return ASN1_TIME_cmp_time_t_internal(s, t,
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V_ASN1_GENERALIZEDTIME);
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return -2;
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}
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/*
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* ASN1_UTCTIME wrappers
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*/
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int
|
|
ASN1_UTCTIME_check(const ASN1_UTCTIME *d)
|
|
{
|
|
if (d->type != V_ASN1_UTCTIME)
|
|
return (0);
|
|
return (d->type == ASN1_time_parse(d->data, d->length, NULL, d->type));
|
|
}
|
|
|
|
int
|
|
ASN1_UTCTIME_set_string(ASN1_UTCTIME *s, const char *str)
|
|
{
|
|
if (s != NULL && s->type != V_ASN1_UTCTIME)
|
|
return (0);
|
|
return (ASN1_TIME_set_string_internal(s, str, V_ASN1_UTCTIME));
|
|
}
|
|
|
|
ASN1_UTCTIME *
|
|
ASN1_UTCTIME_set(ASN1_UTCTIME *s, time_t t)
|
|
{
|
|
return (ASN1_UTCTIME_adj(s, t, 0, 0));
|
|
}
|
|
|
|
ASN1_UTCTIME *
|
|
ASN1_UTCTIME_adj(ASN1_UTCTIME *s, time_t t, int offset_day, long offset_sec)
|
|
{
|
|
return (ASN1_TIME_adj_internal(s, t, offset_day, offset_sec,
|
|
V_ASN1_UTCTIME));
|
|
}
|
|
|
|
int
|
|
ASN1_UTCTIME_cmp_time_t(const ASN1_UTCTIME *s, time_t t)
|
|
{
|
|
if (s->type == V_ASN1_UTCTIME)
|
|
return ASN1_TIME_cmp_time_t_internal(s, t, V_ASN1_UTCTIME);
|
|
return -2;
|
|
}
|
|
|
|
/*
|
|
* ASN1_GENERALIZEDTIME wrappers
|
|
*/
|
|
|
|
int
|
|
ASN1_GENERALIZEDTIME_check(const ASN1_GENERALIZEDTIME *d)
|
|
{
|
|
if (d->type != V_ASN1_GENERALIZEDTIME)
|
|
return (0);
|
|
return (d->type == ASN1_time_parse(d->data, d->length, NULL, d->type));
|
|
}
|
|
|
|
int
|
|
ASN1_GENERALIZEDTIME_set_string(ASN1_GENERALIZEDTIME *s, const char *str)
|
|
{
|
|
if (s != NULL && s->type != V_ASN1_GENERALIZEDTIME)
|
|
return (0);
|
|
return (ASN1_TIME_set_string_internal(s, str, V_ASN1_GENERALIZEDTIME));
|
|
}
|
|
|
|
ASN1_GENERALIZEDTIME *
|
|
ASN1_GENERALIZEDTIME_set(ASN1_GENERALIZEDTIME *s, time_t t)
|
|
{
|
|
return (ASN1_GENERALIZEDTIME_adj(s, t, 0, 0));
|
|
}
|
|
|
|
ASN1_GENERALIZEDTIME *
|
|
ASN1_GENERALIZEDTIME_adj(ASN1_GENERALIZEDTIME *s, time_t t, int offset_day,
|
|
long offset_sec)
|
|
{
|
|
return (ASN1_TIME_adj_internal(s, t, offset_day, offset_sec,
|
|
V_ASN1_GENERALIZEDTIME));
|
|
}
|
|
|
|
int
|
|
ASN1_TIME_normalize(ASN1_TIME *t)
|
|
{
|
|
struct tm tm;
|
|
|
|
if (!ASN1_TIME_to_tm(t, &tm))
|
|
return 0;
|
|
return tm_to_rfc5280_time(&tm, t) != NULL;
|
|
}
|
|
|
|
int
|
|
ASN1_TIME_set_string_X509(ASN1_TIME *s, const char *str)
|
|
{
|
|
return ASN1_TIME_set_string_internal(s, str, RFC5280);
|
|
}
|